WO2022051910A1 - Harmonic reducer and industrial robot - Google Patents

Harmonic reducer and industrial robot Download PDF

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Publication number
WO2022051910A1
WO2022051910A1 PCT/CN2020/114056 CN2020114056W WO2022051910A1 WO 2022051910 A1 WO2022051910 A1 WO 2022051910A1 CN 2020114056 W CN2020114056 W CN 2020114056W WO 2022051910 A1 WO2022051910 A1 WO 2022051910A1
Authority
WO
WIPO (PCT)
Prior art keywords
shaft
harmonic reducer
sealing
hole
cavity
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2020/114056
Other languages
French (fr)
Inventor
Xiaodong Cao
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ABB Schweiz AG
Original Assignee
ABB Schweiz AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ABB Schweiz AG filed Critical ABB Schweiz AG
Priority to EP20952699.5A priority Critical patent/EP4211367B1/en
Priority to US18/007,158 priority patent/US12104687B2/en
Priority to PCT/CN2020/114056 priority patent/WO2022051910A1/en
Priority to CN202080104704.7A priority patent/CN116209844B/en
Publication of WO2022051910A1 publication Critical patent/WO2022051910A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H57/00General details of gearing
    • F16H57/02Gearboxes; Mounting gearing therein
    • F16H57/027Gearboxes; Mounting gearing therein characterised by means for venting gearboxes, e.g. air breathers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25JMANIPULATORS; CHAMBERS PROVIDED WITH MANIPULATION DEVICES
    • B25J9/00Program-controlled manipulators
    • B25J9/10Program-controlled manipulators characterised by positioning means for manipulator elements
    • B25J9/102Gears specially adapted therefor, e.g. reduction gears
    • B25J9/1025Harmonic drives
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H19/00Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion
    • F16H19/08Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion for interconverting rotary motion and oscillating motion
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H49/00Other gearings
    • F16H49/001Wave gearings, e.g. harmonic drive transmissions
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H57/00General details of gearing
    • F16H57/02Gearboxes; Mounting gearing therein
    • F16H57/029Gearboxes; Mounting gearing therein characterised by means for sealing the gearboxes, e.g. to improve airtightness
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H57/00General details of gearing
    • F16H57/04Features relating to lubrication or cooling or heating
    • F16H57/042Guidance of lubricant
    • F16H57/043Guidance of lubricant within rotary parts, e.g. axial channels or radial openings in shafts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H57/00General details of gearing
    • F16H57/04Features relating to lubrication or cooling or heating
    • F16H57/045Lubricant storage reservoirs, e.g. reservoirs in addition to a gear sump for collecting lubricant in the upper part of a gear case
    • F16H57/0454Sealings between different partitions of a gearing or to a reservoir
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H19/00Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion
    • F16H19/08Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion for interconverting rotary motion and oscillating motion
    • F16H2019/085Gearings comprising essentially only toothed gears or friction members and not capable of conveying indefinitely-continuing rotary motion for interconverting rotary motion and oscillating motion by using flexible members
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

Definitions

  • Embodiments of the present disclosure generally relate to the field of reducers, and more particularly, to a harmonic reducer and an industrial robot.
  • Harmonic reducers are widely used for driving various devices or machines, such as industrial robots, electric tools, automobiles and the like, due to small size, light weight and high precision thereof.
  • a conventional harmonic reducer includes three basic components, i.e., a flexible spline, a circular spline, and a wave generator.
  • the wave generator may be rotated so as to cause the flexible spline to produce controllable elastic deformation and mesh with the circular spline. In this way, the harmonic reducer may achieve the transferring of motion and power.
  • Lubricant is typically provided inside the harmonic reducer so as to reduce the friction between various components of the harmonic reducer.
  • a high pressure may be built up in an internal space of the harmonic reducer due to various causes, such as temperature rising and vaporization of the lubricant caused by the temperature rising.
  • the internal pressure buildup may cause the lubricant to leak out of the harmonic reducer through oil seals of the harmonic reducer.
  • the leakage of the lubricant would degrade the lubricating performance of the harmonic reducer and contaminate the robot and work objects processed by the robot.
  • a gas release hole closed by a plug may be provided on the harmonic reducer.
  • an operator may open the plug to release the gas inside the harmonic reducer when the internal pressure of the harmonic reducer is increased.
  • the operator may open the plug to release the gas after the harmonic reducer has been preheated.
  • the operator would not be able to open the plug on the harmonic reducer to release the gas with high pressure.
  • the manual operation of the operator on the harmonic reducer may bring injury to the operator.
  • various example embodiments of the present disclosure provide a harmonic reducer that can prevent both internal pressure buildup and lubricant leakage.
  • example embodiments of the present disclosure provide a harmonic reducer.
  • the harmonic reducer comprises a shaft comprising a first through hole extending from a first end to a second end of the shaft in an axial direction of the shaft; a wave generator arranged on the shaft and being rotatable along with the shaft; a flexible spline arranged around the wave generator; a circular spline arranged around the flexible spline; a first flange coupled to the shaft via a first bearing and coupled to the flexible spline; and a second flange coupled to the shaft via a second bearing and coupled to the circular spline, wherein one of the first and second flanges is arranged near to the first end of the shaft, and wherein a cavity is provided between the one of the first and second flanges and the first end of the shaft, and is in fluid communication with an external environment via the first through hole.
  • the harmonic reducer further comprises a porous material arranged in the first through hole.
  • the harmonic reducer further comprises a sealing mechanism configured to selectively allow the cavity to be in fluid communication with the external environment via the first through hole in accordance with an internal pressure of the cavity.
  • the sealing mechanism comprises: a base element coupled to the first end of the shaft and comprising a second through hole in fluid communication with the first through hole; a first sealing element arranged on the base element and comprising one or more openings and a sealing surface surrounding the one or more openings, the one or more openings being configured to communicate the cavity with the second through hole; and a second sealing element arranged between the first sealing element and the base element, and comprising an elastic sealing lip configured to contact the sealing surface of the first sealing element to block the communication between the cavity and the second through hole when the internal pressure of the cavity is below a pressure threshold and configured to be pushed away from the sealing surface of the first sealing element to communicate the cavity with the second through hole when the internal pressure of the cavity is above the pressure threshold.
  • the base element comprises: a mounting part inserted into the first through hole at the first end of the shaft, the second through hole being provided on the mounting part; and a receiving part comprising a first receiving space, a second receiving space, and a step between the first receiving space and the second receiving space, the second receiving space being closer to the mounting part than the first receiving space.
  • the first sealing element further comprises: a sealing part arranged in the first receiving space and supported by the step, the one or more openings and the sealing surface being provided on the sealing part; and a mounting pillar coupled to the sealing part and configured to mount the second sealing element.
  • the second sealing element further comprises: a supporting part configured to support the elastic sealing lip and comprising a mounting hole into which the mounting pillar of the first sealing element is inserted.
  • the base element further comprises a groove at its outer surface.
  • the sealing mechanism comprises: a second sealing element arranged at the second end of the shaft and comprising an elastic sealing lip configured to contact the second end of the shaft to block the communication between the first through hole and the external environment when the internal pressure of the cavity is below a pressure threshold and configured to be pushed away from the second end of the shaft to communicate the first through hole with the external environment when the internal pressure of the cavity is above the pressure threshold.
  • the second sealing element further comprises: a supporting part configured to support the elastic sealing lip and comprising a mounting hole.
  • the harmonic reducer further comprises a pulley arranged on the shaft near to the second end of the shaft and being rotatable together with the shaft, wherein the sealing mechanism further comprises a second base element configured to support the second sealing element and comprising: a pair of mounting parts coupled to the pulley; and a second mounting pillar inserted into the mounting hole of the second sealing element to fix the supporting part of the second sealing element.
  • the harmonic reducer further comprises one or more channels arranged between the one of the first and second flanges and corresponding one of the first and second bearings.
  • the harmonic reducer further comprises a bearing sleeve arranged around the corresponding one of the first and second bearings.
  • the harmonic reducer further comprises a cross roller bearing comprising an outer ring coupled to the flexible spline and an inner ring coupled to the circular spline.
  • example embodiments of the present disclosure provide an industrial robot comprising a harmonic reducer according to the first aspect of the present disclosure.
  • the cavity inside the harmonic reducer may be in fluid communication with the external environment via the first through hole in the shaft.
  • the gas inside the harmonic reducer may be released into the external environment via the first through hole, such that the internal pressure of the harmonic reducer could be maintained at a low level. In this way, the lubricant leakage via the oil seals of the harmonic reducer could be prevented effectively.
  • the rotation of the shaft would cause the lubricant (if any) adhered on the shaft to be subjected to a centrifugal force. Under the centrifugal force, the lubricant would fly away from the shaft during the high speed rotation of the shaft. In this way, the lubricant could be prevented from leaking out of the harmonic reducer via the first through hole in the shaft to a large extent.
  • a sealing mechanism is provided in the harmonic reducer so as to selectively allow the cavity to be in fluid communication with the external environment via the first through hole.
  • the sealing mechanism When the internal pressure of the cavity is below the pressure threshold, the sealing mechanism would block the communication between the cavity and the external environment. When the internal pressure of the cavity is above the pressure threshold, the sealing mechanism would allow the cavity to be in communication with the external environment. In this way, the internal pressure of the harmonic reducer could be maintained at a low level.
  • the lubricant may be further prevented from leaking out of the harmonic reducer via the first through hole of the shaft.
  • the sealing mechanism could prevent debris in the external environment from entering the harmonic reducer via the first through hole.
  • Fig. 1 illustrates a cross-sectional view of a harmonic reducer in accordance with a first embodiment of the present disclosure
  • Fig. 2 illustrates a cross-sectional view of a harmonic reducer in accordance with a second embodiment of the present disclosure
  • Fig. 3 illustrates a cross-sectional view of a harmonic reducer in accordance with a third embodiment of the present disclosure
  • Fig. 4 is a partially enlarged view of the harmonic reducer as shown in Fig. 3;
  • Fig. 5 is an exploded view of a sealing mechanism of the harmonic reducer as shown in Fig. 3;
  • Fig. 6 is an exploded view of the sealing mechanism as shown in Fig. 5 when viewed in another direction;
  • Fig. 7 illustrates a cross-sectional view of a harmonic reducer in accordance with a fourth embodiment of the present disclosure
  • Fig. 8 is a partially enlarged view of the harmonic reducer as shown in Fig. 7;
  • Fig. 9 is an exploded view of a sealing mechanism of the harmonic reducer as shown in Fig. 7;
  • Fig. 10 illustrates a cross-sectional view of a harmonic reducer in accordance with a fifth embodiment of the present disclosure
  • Fig. 11 illustrates a cross-sectional view of a harmonic reducer in accordance with a sixth embodiment of the present disclosure
  • Fig. 12 is a perspective view of a first flange of the harmonic reducer as shown in Fig. 11;
  • Fig. 13 illustrates a relative arrangement between the first flange and the first bearing of the harmonic reducer as shown in Fig. 11;
  • Fig. 14 illustrates a cross-sectional view of a harmonic reducer in accordance with a seventh embodiment of the present disclosure
  • Fig. 15 is a partially enlarged view of the harmonic reducer as shown in Fig. 14;
  • Fig. 16 is a perspective view of a second base element of the harmonic reducer as shown in Fig. 14.
  • the term ā€œcomprisesā€ or ā€œincludesā€ and its variants are to be read as open terms that mean ā€œincludes, but is not limited to. ā€
  • the term ā€œorā€ is to be read as ā€œand/orā€ unless the context clearly indicates otherwise.
  • the term ā€œbased onā€ is to be read as ā€œbased at least in part on. ā€
  • the term ā€œbeing operable toā€ is to mean a function, an action, a motion or a state can be achieved by an operation induced by a user or an external mechanism.
  • the term ā€œone embodimentā€ and ā€œan embodimentā€ are to be read as ā€œat least one embodiment. ā€
  • the term ā€œanother embodimentā€ is to be read as ā€œat least one other embodiment. ā€
  • the terms ā€œfirst, ā€ ā€œsecond, ā€ and the like may refer to different or same objects. Other definitions, explicit and implicit, may be included below. A definition of a term is consistent throughout the description unless the context clearly indicates otherwise.
  • the internal pressure buildup of the harmonic reducer may cause the lubricant to leak out of the harmonic reducer through the oil seals.
  • a through hole is provided in the shaft of the harmonic reducer such that the cavity in the harmonic reducer may be in fluid communication with the external environment.
  • Fig. 1 illustrates a cross-sectional view of a harmonic reducer in accordance with a first embodiment of the present disclosure.
  • the harmonic reducer 100 generally includes a shaft 4, a wave generator 13, a flexible spline 11, a circular spline 12, a first flange 21, and a second flange 22.
  • the shaft 4 is an input shaft of the harmonic reducer 100 and is adapted to receive a drive power (torque) input from a driver, such as a motor. As shown in Fig. 1, the shaft 4 includes a first end 401 and a second end 402 opposite to the first end 401. The first end 401 is arranged inside the harmonic reducer 100 and the second end 402 is arranged outside the harmonic reducer 100. The shaft 4 is provided with a first through hole 403 extending from the first end 401 to the second end 402 of the shaft 4 in an axial direction X of the shaft 4.
  • the wave generator 13 is arranged on the shaft 4 and is rotatable along with the shaft 4. That is, the wave generator 13 may rotate in synchronization with the shaft 4.
  • the flexible spline 11 is arranged around the wave generator 13.
  • the circular spline 12 is arranged around the flexible spline 11.
  • the wave generator 13 may be rotated so as to cause the flexible spline 11 to produce controllable elastic deformation and mesh with the circular spline 12.
  • the number of teeth of the circular spline 12 is more than the number of teeth of the flexible spline 11 by two. With such an arrangement, the harmonic reducer 100 may achieve the transferring of motion and power. It is noted that the constructions and operating principles of the wave generator 13, the flexible spline 11, and the circular spline 12 are known in the art, and will not be described in detail any more herein.
  • the first flange 21 is coupled to the shaft 4 via a first bearing 31.
  • the second flange 22 is coupled to the shaft 4 via a second bearing 32.
  • the shaft 4 may be supported by the first flange 21 and the second flange 22.
  • the first flange 21 is further coupled to the flexible spline 11 and the second flange 22 is further coupled to the circular spline 12.
  • the flexible spline 11 may rotate in synchronization with the first flange 21 at a low speed, and the circular spline 12 and the second flange 22 would not rotate.
  • the first end 401 of the shaft 4 is arranged inside the harmonic reducer 100 and near to the first flange 21.
  • a cavity 5 is provided between the first flange 21 and the first end 401 of the shaft 4.
  • the cavity 5 is in fluid communication with internal spaces 9 of the harmonic reducer 100 via for example gaps on the first bearing 31.
  • the cavity 5 and the internal spaces 9 of the harmonic reducer 100 may be at substantially the same pressure.
  • the cavity 5 is in fluid communication with the external environment via the first through hole 403. If the pressure inside the harmonic reducer 100 is increased due to for example the temperature rising, the gas inside the harmonic reducer 100 may be released into the external environment via the first through hole 403.
  • lubricant is typically provided in the internal spaces 9 of the harmonic reducer 100.
  • the gas in the internal spaces 9 may be released into the cavity 5 and then into the external environment via the first through hole 403, such that the pressure of the internal spaces 9 could be maintained at a low level. In this way, the lubricant leakage via oil seals 81 of the harmonic reducer 100 could be prevented effectively.
  • the rotation of the shaft 4 would cause the lubricant (if any) adhered on the shaft 4 to be subjected to a centrifugal force. Under the centrifugal force, the lubricant would fly away from the shaft 4 during the high speed rotation of the shaft 4. In this way, the lubricant could be prevented from leaking out of the harmonic reducer 100 via the first through hole 403 to a large extent.
  • the harmonic reducer 100 further includes a cross roller bearing 14.
  • the cross roller bearing 14 includes an outer ring 141 coupled to the flexible spline 11 and an inner ring 142 coupled to the circular spline 12.
  • the cross roller bearing 14 may be replaced by other types of bearings. The scope of the present disclosure is not intended to be limited in this respect.
  • Fig. 2 illustrates a cross-sectional view of a harmonic reducer in accordance with a second embodiment of the present disclosure.
  • the construction of the harmonic reducer 100 as shown in Fig. 2 is similar to that of the harmonic reducer 100 as shown in Fig. 1, except that the harmonic reducer 100 as shown in Fig. 2 further includes a porous material 404 arranged in the first through hole 403.
  • the porous material 404 is permeable to the gas and non-permeable to the lubricant.
  • the porous material 404 may adsorb the lubricant mixed in the gas from the cavity 5 on one hand, and may prevent debris in the external environment from entering the cavity 5 via the first through hole 403 on the other hand.
  • Fig. 3 illustrates a cross-sectional view of a harmonic reducer in accordance with a third embodiment of the present disclosure.
  • the construction of the harmonic reducer 100 as shown in Fig. 3 is similar to that of the harmonic reducer 100 as shown in Fig. 1, except that the harmonic reducer 100 as shown in Fig. 3 further includes a sealing mechanism 6.
  • the sealing mechanism 6 is configured to selectively allow the cavity 5 to be in fluid communication with the external environment in accordance with an internal pressure of the cavity 5.
  • the sealing mechanism 6 may allow the cavity 5 to be in communication with the external environment.
  • the sealing mechanism 6 may block the communication between the cavity 5 and the external environment.
  • the sealing mechanism 6 may have various constructions.
  • Figs. 4-6 illustrate an example construction and arrangement of the sealing mechanism 6.
  • the sealing mechanism 6 includes a base element 60, a first sealing element 61, and a second sealing element 62.
  • the base element 60 is arranged at the first end 401 of the shaft 4 and adapted to support the first and second sealing elements 61, 62.
  • the base element 60 may be detachably mounted onto the shaft 4, for example through screws or in other manners.
  • the base element 60 may be soldered on the first end 401 of the shaft 4 or even formed as a part of the shaft 4.
  • the base element 60 includes a mounting part 601 adapted to be mounted onto the shaft 4 and a receiving part 602 adapted to receive the first and second sealing elements 61, 62.
  • the mounting part 601 is provided with a second through hole 603 in fluid communication with the first through hole 403.
  • the mounting part 601 may be inserted into the first through hole 403 of the shaft 4, and coupled to the shaft 4 through screws or interference fit, or in various other manners.
  • the receiving part 602 includes a first receiving space 604, a second receiving space 605, and a step 606 between the first receiving space 604 and the second receiving space 605.
  • the second receiving space 605 is in fluid communication with the second through hole 603, and in turn, in fluid communication with the first through hole 403.
  • the second receiving space 605 is closer to the mounting part 601 than the first receiving space 604. That is, the second receiving space 605 is disposed at a lower portion of the receiving part 602, and the first receiving space 604 is disposed at an upper portion of the receiving part 602.
  • the first and second sealing elements 61, 62 are arranged in the first and second receiving spaces 604, 605, as will be described in detail hereinafter.
  • the first sealing element 61 is arranged on the base element 60 and includes one or more openings 613 and a sealing surface 614 surrounding the one or more openings 613.
  • the one or more openings 613 are configured to communicate the cavity 5 with the second through hole 603.
  • the sealing surface 614 is configured to cooperate with the second sealing element 62. When the sealing surface 614 is in contact with the second sealing element 62, the one or more openings 613 would be closed, and when the sealing surface 614 is not in contact with the second sealing element 62, the one or more openings 613 would be opened.
  • the first sealing element 61 includes a sealing part 611 and a mounting pillar 612.
  • the sealing part 611 is arranged in the first receiving space 604 and supported by the step 606.
  • the sealing part 611 may be adhered onto the receiving part 602 or fixed in the first receiving space 604 through interference fit.
  • the one or more openings 613 and the sealing surface 614 are provided on the sealing part 611.
  • the sealing surface 614 is a part of a bottom surface of the sealing part 611.
  • the mounting pillar 612 is adapted to mount the second sealing element 62.
  • the second sealing element 62 is arranged between the first sealing element 61 and the base element 60 so as to selectively allow or block the fluid communication between the cavity 5 and the first through hole 403 of the shaft 4.
  • the second sealing element 62 is generally located in the second receiving space 605.
  • the second sealing element 62 includes an elastic sealing lip 622.
  • the elastic sealing lip 622 is configured to contact the sealing surface 614 of the first sealing element 61 to block the communication between the cavity 5 and the second through hole 603 when the internal pressure of the cavity 5 is below a pressure threshold and configured to be pushed away from the sealing surface 614 of the first sealing element 61 to communicate the cavity 5 with the second through hole 603 when the internal pressure of the cavity 5 is above the pressure threshold.
  • the elastic sealing lip 622 is formed on a supporting part 621.
  • the supporting part 621 is configured to support the elastic sealing lip 622 and includes a mounting hole 623 into which the mounting pillar 612 of the first sealing element 61 is inserted.
  • the second sealing element 62 may be coupled onto the first sealing element 61 easily and reliably.
  • the second sealing element 62 may be made of rubber material or other elastic materials as a whole. In some other embodiments, only the elastic sealing lip 622 is made of rubber material or other elastic materials, and the elastic sealing lip 622 is coupled to the supporting part 621 of a different material.
  • the sealing mechanism 6 may provide additional advantages.
  • the internal pressure of the harmonic reducer 100 could be maintained at a low level.
  • the sealing surface 614 of the first sealing element 61 and the elastic sealing lip 622 of the second sealing element 62 the openings 613 on the first sealing element 61 may be blocked most of the time.
  • the lubricant may be further prevented from leaking out of the harmonic reducer 100 via the first through hole 403 of the shaft 4, and the sealing mechanism 6 could prevent debris in the external environment from entering the harmonic reducer 100 via the first through hole 403.
  • Fig. 7 illustrates a cross-sectional view of a harmonic reducer in accordance with a fourth embodiment of the present disclosure.
  • the construction of the harmonic reducer 100 as shown in Fig. 7 is similar to that of the harmonic reducer 100 as shown in Fig. 3, except that the base element 60 further includes a groove 607 at its outer surface.
  • Figs. 8 and 9 illustrate details of the groove 607.
  • the groove 607 is arranged at an outer surface of the receiving part 602 of the base element 60.
  • the groove 607 includes a bottom surface and two oblique sidewalls. The oblique sidewalls of the groove 607 would cause the lubricant adhered on the base element 60 to fly away from the base element 60 more easily.
  • Fig. 10 illustrates a cross-sectional view of a harmonic reducer in accordance with a fifth embodiment of the present disclosure.
  • the construction of the harmonic reducer 100 as shown in Fig. 10 is similar to that of the harmonic reducer 100 as shown in Fig. 7, except that the harmonic reducer 100 as shown in Fig. 10 further includes a pulley 70 arranged on the shaft 4.
  • the pulley 70 is positioned near to the second end 402 of the shaft 4 and rotatable together with the shaft 4.
  • the shaft 4 of the harmonic reducer 100 may be driven by a driver via a belt.
  • a large amount of lubricant would probably accumulate in the cavity 5.
  • one or more channels may be provided between the cavity 5 and the internal spaces 9.
  • Figs. 11-13 illustrate an example approach for removing the lubricant in the cavity 5.
  • Fig. 11 illustrates a cross-sectional view of a harmonic reducer in accordance with a sixth embodiment of the present disclosure
  • Fig. 12 is a perspective view of the first flange of the harmonic reducer as shown in Fig. 11
  • Fig. 13 illustrates a relative arrangement between the first flange and the first bearing of the harmonic reducer as shown in Fig. 11.
  • the construction of the harmonic reducer 100 as shown in Fig. 11 is similar to that of the harmonic reducer 100 as shown in Fig. 10, except that the harmonic reducer 100 further includes one or more channels 210 arranged between the first flange 21 and the first bearing 31. Through the channels 210, the lubricant in the cavity 5 may flow back into the internal spaces 9.
  • the harmonic reducer 100 further includes a bearing sleeve 71 arranged around the first bearing 31.
  • the bearing sleeve 71 may protect the first bearing 31 from being worn by the first flange 21.
  • Fig. 14 illustrates a cross-sectional view of a harmonic reducer in accordance with a seventh embodiment of the present disclosure
  • Fig. 15 is a partially enlarged view of the harmonic reducer as shown in Fig. 14
  • Fig. 16 is a perspective view of a second base element of the harmonic reducer as shown in Fig. 14.
  • the construction of the harmonic reducer 100 as shown in Fig. 14 is similar to that of the harmonic reducer 100 as shown in Fig. 10, except that the sealing mechanism 6 as shown in Fig. 14 is of a different structure and is arranged at a different position.
  • the sealing mechanism 6 includes a second sealing element 62.
  • the construction of the second sealing element 62 as shown in Figs. 14 and 15 is similar to that of the second sealing element 62 as shown in Figs. 4-6.
  • the second sealing element 62 includes an elastic sealing lip 622 and a supporting part 621 adapted to support the elastic sealing lip 622.
  • the elastic sealing lip 622 is configured to contact the second end 402 of the shaft 4 to block the communication between the first through hole 403 and the external environment when the internal pressure of the cavity 5 is below the pressure threshold and configured to be pushed away from the second end 402 of the shaft 4 to communicate the first through hole 403 with the external environment when the internal pressure of the cavity 5 is above the pressure threshold.
  • the sealing mechanism 6 further includes a second base element 63 configured to support the second sealing element 62.
  • the second base element 63 includes a second mounting pillar 632 and a pair of mounting parts 631.
  • the mounting parts 631 are coupled to the pulley 70.
  • the second mounting pillar 632 is inserted into the mounting hole 623 of the second sealing element 62 to fix the supporting part 621 of the second sealing element 62, such that the second sealing element 62 is positioned at the second end 402 of the shaft 4.
  • the harmonic reducer 100 further includes a third base element 72 arranged at the first end 401 of the shaft 4.
  • the construction of the third base element 72 is similar to that of the base element 60 as shown in Fig. 7. It is to be understood that in other embodiments, the third base element 72 may be removed, as that shown in Figs. 1 and 2.
  • the first end 401 of the shaft 4 is arranged near to the first flange 21 and the cavity 5 is provided between the first flange 21 and the first end 401 of the shaft 4.
  • the first end 401 of the shaft 4 may be arranged inside the harmonic reducer 100 near to the second flange 22, and the cavity 5 is provided between the second flange 22 and the first end 401 of the shaft 4.
  • the sealing mechanism 6 and other arrangements as described above is also applicable.
  • the sealing mechanism 6 as described above with reference to Figs. 3-13 may be arranged in the cavity 5 near to the second flange 22, and the sealing mechanism 6 as described above with reference to Figs. 14-16 may be arranged at the second end 402 of the shaft 4 near to the first flange 21.
  • the pulley 70 may be arranged at the second end 402 of the shaft 4 near to the first flange 21.
  • the harmonic reducer 100 may be used in various devices or machines, such as industrial robots, electric tools, and automobiles.
  • the harmonic reducer 100 may be used for driving a joint of an industrial robot.
  • inventive embodiments are presented by way of example only and that, within the scope of the appended claims and equivalents thereto, inventive embodiments may be practiced otherwise than as specifically described and claimed.
  • inventive embodiments of the present disclosure are directed to each individual feature, system, article, material, kit, and/or method described herein.

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Abstract

A harmonic reducer (100) and an industrial robot. The harmonic reducer (100) comprises a shaft (4) comprising a first through hole (403) extending from a first end (401) to a second end (402) of the shaft (4) in an axial direction (X) of the shaft (4); a wave generator (13) arranged on the shaft (4) and being rotatable along with the shaft (4); a flexible spline (11) arranged around the wave generator (13); a circular spline (12) arranged around the flexible spline (11); a first flange (21) coupled to the shaft (4) via a first bearing (31) and coupled to the flexible spline (11); and a second flange (22) coupled to the shaft (4) via a second bearing (32) and coupled to the circular spline (12), wherein one of the first and second flanges (21,22) is arranged near to the first end (401) of the shaft (4), and wherein a cavity (5) is provided between one of the first and second flanges (21,22) and the first end (401) of the shaft (4), and is in fluid communication with an external environment via the first through hole (403). According to the present disclosure, the lubricant leakage via the oil seals of the harmonic reducer (100) could be prevented effectively.

Description

HARMONICĀ REDUCERĀ ANDĀ INDUSTRIALĀ ROBOT FIELD
EmbodimentsĀ ofĀ theĀ presentĀ disclosureĀ generallyĀ relateĀ toĀ theĀ fieldĀ ofĀ reducers,Ā andĀ moreĀ particularly,Ā toĀ aĀ harmonicĀ reducerĀ andĀ anĀ industrialĀ robot.
BACKGROUND
HarmonicĀ reducersĀ areĀ widelyĀ usedĀ forĀ drivingĀ variousĀ devicesĀ orĀ machines,Ā suchĀ asĀ industrialĀ robots,Ā electricĀ tools,Ā automobilesĀ andĀ theĀ like,Ā dueĀ toĀ smallĀ size,Ā lightĀ weightĀ andĀ highĀ precisionĀ thereof.Ā AĀ conventionalĀ harmonicĀ reducerĀ includesĀ threeĀ basicĀ components,Ā i.e.,Ā aĀ flexibleĀ spline,Ā aĀ circularĀ spline,Ā andĀ aĀ waveĀ generator.Ā DuringĀ operationĀ ofĀ theĀ harmonicĀ reducer,Ā theĀ waveĀ generatorĀ mayĀ beĀ rotatedĀ soĀ asĀ toĀ causeĀ theĀ flexibleĀ splineĀ toĀ produceĀ controllableĀ elasticĀ deformationĀ andĀ meshĀ withĀ theĀ circularĀ spline.Ā InĀ thisĀ way,Ā theĀ harmonicĀ reducerĀ mayĀ achieveĀ theĀ transferringĀ ofĀ motionĀ andĀ power.
LubricantĀ isĀ typicallyĀ providedĀ insideĀ theĀ harmonicĀ reducerĀ soĀ asĀ toĀ reduceĀ theĀ frictionĀ betweenĀ variousĀ componentsĀ ofĀ theĀ harmonicĀ reducer.Ā DuringĀ operationĀ ofĀ theĀ harmonicĀ reducer,Ā aĀ highĀ pressureĀ mayĀ beĀ builtĀ upĀ inĀ anĀ internalĀ spaceĀ ofĀ theĀ harmonicĀ reducerĀ dueĀ toĀ variousĀ causes,Ā suchĀ asĀ temperatureĀ risingĀ andĀ vaporizationĀ ofĀ theĀ lubricantĀ causedĀ byĀ theĀ temperatureĀ rising.Ā TheĀ internalĀ pressureĀ buildupĀ mayĀ causeĀ theĀ lubricantĀ toĀ leakĀ outĀ ofĀ theĀ harmonicĀ reducerĀ throughĀ oilĀ sealsĀ ofĀ theĀ harmonicĀ reducer.Ā ForĀ example,Ā inĀ caseĀ thatĀ theĀ harmonicĀ reducerĀ isĀ utilizedĀ toĀ driveĀ aĀ jointĀ ofĀ anĀ industrialĀ robot,Ā theĀ leakageĀ ofĀ theĀ lubricantĀ wouldĀ degradeĀ theĀ lubricatingĀ performanceĀ ofĀ theĀ harmonicĀ reducerĀ andĀ contaminateĀ theĀ robotĀ andĀ workĀ objectsĀ processedĀ byĀ theĀ robot.
Conventionally,Ā toĀ preventĀ suchĀ anĀ internalĀ pressureĀ buildup,Ā aĀ gasĀ releaseĀ holeĀ closedĀ byĀ aĀ plugĀ mayĀ beĀ providedĀ onĀ theĀ harmonicĀ reducer.Ā WithĀ suchĀ anĀ arrangement,Ā anĀ operatorĀ mayĀ openĀ theĀ plugĀ toĀ releaseĀ theĀ gasĀ insideĀ theĀ harmonicĀ reducerĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ harmonicĀ reducerĀ isĀ increased.Ā ForĀ example,Ā theĀ operatorĀ mayĀ openĀ theĀ plugĀ toĀ releaseĀ theĀ gasĀ afterĀ theĀ harmonicĀ reducerĀ hasĀ beenĀ preheated.Ā However,Ā duringĀ operationĀ ofĀ aĀ deviceĀ includingĀ theĀ harmonicĀ reducer,Ā suchĀ asĀ theĀ industrialĀ robot,Ā theĀ operatorĀ wouldĀ notĀ beĀ ableĀ toĀ openĀ theĀ plugĀ onĀ theĀ  harmonicĀ reducerĀ toĀ releaseĀ theĀ gasĀ withĀ highĀ pressure.Ā Moreover,Ā theĀ manualĀ operationĀ ofĀ theĀ operatorĀ onĀ theĀ harmonicĀ reducerĀ mayĀ bringĀ injuryĀ toĀ theĀ operator.
Thus,Ā thereĀ isĀ aĀ needĀ forĀ aĀ solutionĀ forĀ preventingĀ theĀ internalĀ pressureĀ buildupĀ andĀ theĀ lubricantĀ leakageĀ ofĀ theĀ harmonicĀ reducer.
SUMMARY
InĀ viewĀ ofĀ theĀ foregoingĀ problems,Ā variousĀ exampleĀ embodimentsĀ ofĀ theĀ presentĀ disclosureĀ provideĀ aĀ harmonicĀ reducerĀ thatĀ canĀ preventĀ bothĀ internalĀ pressureĀ buildupĀ andĀ lubricantĀ leakage.
InĀ aĀ firstĀ aspectĀ ofĀ theĀ presentĀ disclosure,Ā exampleĀ embodimentsĀ ofĀ theĀ presentĀ disclosureĀ provideĀ aĀ harmonicĀ reducer.Ā TheĀ harmonicĀ reducerĀ comprisesĀ aĀ shaftĀ comprisingĀ aĀ firstĀ throughĀ holeĀ extendingĀ fromĀ aĀ firstĀ endĀ toĀ aĀ secondĀ endĀ ofĀ theĀ shaftĀ inĀ anĀ axialĀ directionĀ ofĀ theĀ shaft;Ā aĀ waveĀ generatorĀ arrangedĀ onĀ theĀ shaftĀ andĀ beingĀ rotatableĀ alongĀ withĀ theĀ shaft;Ā aĀ flexibleĀ splineĀ arrangedĀ aroundĀ theĀ waveĀ generator;Ā aĀ circularĀ splineĀ arrangedĀ aroundĀ theĀ flexibleĀ spline;Ā aĀ firstĀ flangeĀ coupledĀ toĀ theĀ shaftĀ viaĀ aĀ firstĀ bearingĀ andĀ coupledĀ toĀ theĀ flexibleĀ spline;Ā andĀ aĀ secondĀ flangeĀ coupledĀ toĀ theĀ shaftĀ viaĀ aĀ secondĀ bearingĀ andĀ coupledĀ toĀ theĀ circularĀ spline,Ā whereinĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ flangesĀ isĀ arrangedĀ nearĀ toĀ theĀ firstĀ endĀ ofĀ theĀ shaft,Ā andĀ whereinĀ aĀ cavityĀ isĀ providedĀ betweenĀ theĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ flangesĀ andĀ theĀ firstĀ endĀ ofĀ theĀ shaft,Ā andĀ isĀ inĀ fluidĀ communicationĀ withĀ anĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ hole.
InĀ someĀ embodiments,Ā theĀ harmonicĀ reducerĀ furtherĀ comprisesĀ aĀ porousĀ materialĀ arrangedĀ inĀ theĀ firstĀ throughĀ hole.
InĀ someĀ embodiments,Ā theĀ harmonicĀ reducerĀ furtherĀ comprisesĀ aĀ sealingĀ mechanismĀ configuredĀ toĀ selectivelyĀ allowĀ theĀ cavityĀ toĀ beĀ inĀ fluidĀ communicationĀ withĀ theĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ holeĀ inĀ accordanceĀ withĀ anĀ internalĀ pressureĀ ofĀ theĀ cavity.
InĀ someĀ embodiments,Ā theĀ sealingĀ mechanismĀ comprises:Ā aĀ baseĀ elementĀ coupledĀ toĀ theĀ firstĀ endĀ ofĀ theĀ shaftĀ andĀ comprisingĀ aĀ secondĀ throughĀ holeĀ inĀ fluidĀ communicationĀ withĀ theĀ firstĀ throughĀ hole;Ā aĀ firstĀ sealingĀ elementĀ arrangedĀ onĀ theĀ baseĀ elementĀ andĀ comprisingĀ oneĀ orĀ moreĀ openingsĀ andĀ aĀ sealingĀ surfaceĀ surroundingĀ theĀ oneĀ orĀ moreĀ openings,Ā theĀ oneĀ orĀ moreĀ openingsĀ beingĀ configuredĀ toĀ communicateĀ  theĀ cavityĀ withĀ theĀ secondĀ throughĀ hole;Ā andĀ aĀ secondĀ sealingĀ elementĀ arrangedĀ betweenĀ theĀ firstĀ sealingĀ elementĀ andĀ theĀ baseĀ element,Ā andĀ comprisingĀ anĀ elasticĀ sealingĀ lipĀ configuredĀ toĀ contactĀ theĀ sealingĀ surfaceĀ ofĀ theĀ firstĀ sealingĀ elementĀ toĀ blockĀ theĀ communicationĀ betweenĀ theĀ cavityĀ andĀ theĀ secondĀ throughĀ holeĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ isĀ belowĀ aĀ pressureĀ thresholdĀ andĀ configuredĀ toĀ beĀ pushedĀ awayĀ fromĀ theĀ sealingĀ surfaceĀ ofĀ theĀ firstĀ sealingĀ elementĀ toĀ communicateĀ theĀ cavityĀ withĀ theĀ secondĀ throughĀ holeĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ isĀ aboveĀ theĀ pressureĀ threshold.
InĀ someĀ embodiments,Ā theĀ baseĀ elementĀ comprises:Ā aĀ mountingĀ partĀ insertedĀ intoĀ theĀ firstĀ throughĀ holeĀ atĀ theĀ firstĀ endĀ ofĀ theĀ shaft,Ā theĀ secondĀ throughĀ holeĀ beingĀ providedĀ onĀ theĀ mountingĀ part;Ā andĀ aĀ receivingĀ partĀ comprisingĀ aĀ firstĀ receivingĀ space,Ā aĀ secondĀ receivingĀ space,Ā andĀ aĀ stepĀ betweenĀ theĀ firstĀ receivingĀ spaceĀ andĀ theĀ secondĀ receivingĀ space,Ā theĀ secondĀ receivingĀ spaceĀ beingĀ closerĀ toĀ theĀ mountingĀ partĀ thanĀ theĀ firstĀ receivingĀ space.
InĀ someĀ embodiments,Ā theĀ firstĀ sealingĀ elementĀ furtherĀ comprises:Ā aĀ sealingĀ partĀ arrangedĀ inĀ theĀ firstĀ receivingĀ spaceĀ andĀ supportedĀ byĀ theĀ step,Ā theĀ oneĀ orĀ moreĀ openingsĀ andĀ theĀ sealingĀ surfaceĀ beingĀ providedĀ onĀ theĀ sealingĀ part;Ā andĀ aĀ mountingĀ pillarĀ coupledĀ toĀ theĀ sealingĀ partĀ andĀ configuredĀ toĀ mountĀ theĀ secondĀ sealingĀ element.
InĀ someĀ embodiments,Ā theĀ secondĀ sealingĀ elementĀ furtherĀ comprises:Ā aĀ supportingĀ partĀ configuredĀ toĀ supportĀ theĀ elasticĀ sealingĀ lipĀ andĀ comprisingĀ aĀ mountingĀ holeĀ intoĀ whichĀ theĀ mountingĀ pillarĀ ofĀ theĀ firstĀ sealingĀ elementĀ isĀ inserted.
InĀ someĀ embodiments,Ā theĀ baseĀ elementĀ furtherĀ comprisesĀ aĀ grooveĀ atĀ itsĀ outerĀ surface.
InĀ someĀ embodiments,Ā theĀ sealingĀ mechanismĀ comprises:Ā aĀ secondĀ sealingĀ elementĀ arrangedĀ atĀ theĀ secondĀ endĀ ofĀ theĀ shaftĀ andĀ comprisingĀ anĀ elasticĀ sealingĀ lipĀ configuredĀ toĀ contactĀ theĀ secondĀ endĀ ofĀ theĀ shaftĀ toĀ blockĀ theĀ communicationĀ betweenĀ theĀ firstĀ throughĀ holeĀ andĀ theĀ externalĀ environmentĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ isĀ belowĀ aĀ pressureĀ thresholdĀ andĀ configuredĀ toĀ beĀ pushedĀ awayĀ fromĀ theĀ secondĀ endĀ ofĀ theĀ shaftĀ toĀ communicateĀ theĀ firstĀ throughĀ holeĀ withĀ theĀ externalĀ environmentĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ isĀ aboveĀ theĀ pressureĀ threshold.
InĀ someĀ embodiments,Ā theĀ secondĀ sealingĀ elementĀ furtherĀ comprises:Ā aĀ supportingĀ partĀ configuredĀ toĀ supportĀ theĀ elasticĀ sealingĀ lipĀ andĀ comprisingĀ aĀ  mountingĀ hole.
InĀ someĀ embodiments,Ā theĀ harmonicĀ reducerĀ furtherĀ comprisesĀ aĀ pulleyĀ arrangedĀ onĀ theĀ shaftĀ nearĀ toĀ theĀ secondĀ endĀ ofĀ theĀ shaftĀ andĀ beingĀ rotatableĀ togetherĀ withĀ theĀ shaft,Ā whereinĀ theĀ sealingĀ mechanismĀ furtherĀ comprisesĀ aĀ secondĀ baseĀ elementĀ configuredĀ toĀ supportĀ theĀ secondĀ sealingĀ elementĀ andĀ comprising:Ā aĀ pairĀ ofĀ mountingĀ partsĀ coupledĀ toĀ theĀ pulley;Ā andĀ aĀ secondĀ mountingĀ pillarĀ insertedĀ intoĀ theĀ mountingĀ holeĀ ofĀ theĀ secondĀ sealingĀ elementĀ toĀ fixĀ theĀ supportingĀ partĀ ofĀ theĀ secondĀ sealingĀ element.
InĀ someĀ embodiments,Ā theĀ harmonicĀ reducerĀ furtherĀ comprisesĀ oneĀ orĀ moreĀ channelsĀ arrangedĀ betweenĀ theĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ flangesĀ andĀ correspondingĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ bearings.
InĀ someĀ embodiments,Ā theĀ harmonicĀ reducerĀ furtherĀ comprisesĀ aĀ bearingĀ sleeveĀ arrangedĀ aroundĀ theĀ correspondingĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ bearings.
InĀ someĀ embodiments,Ā theĀ harmonicĀ reducerĀ furtherĀ comprisesĀ aĀ crossĀ rollerĀ bearingĀ comprisingĀ anĀ outerĀ ringĀ coupledĀ toĀ theĀ flexibleĀ splineĀ andĀ anĀ innerĀ ringĀ coupledĀ toĀ theĀ circularĀ spline.
InĀ aĀ secondĀ aspectĀ ofĀ theĀ presentĀ disclosure,Ā exampleĀ embodimentsĀ ofĀ theĀ presentĀ disclosureĀ provideĀ anĀ industrialĀ robotĀ comprisingĀ aĀ harmonicĀ reducerĀ accordingĀ toĀ theĀ firstĀ aspectĀ ofĀ theĀ presentĀ disclosure.
AccordingĀ toĀ variousĀ embodimentsĀ ofĀ theĀ presentĀ disclosure,Ā theĀ cavityĀ insideĀ theĀ harmonicĀ reducerĀ mayĀ beĀ inĀ fluidĀ communicationĀ withĀ theĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ holeĀ inĀ theĀ shaft.Ā WhenĀ theĀ temperatureĀ ofĀ theĀ harmonicĀ reducerĀ isĀ increased,Ā theĀ gasĀ insideĀ theĀ harmonicĀ reducerĀ mayĀ beĀ releasedĀ intoĀ theĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ hole,Ā suchĀ thatĀ theĀ internalĀ pressureĀ ofĀ theĀ harmonicĀ reducerĀ couldĀ beĀ maintainedĀ atĀ aĀ lowĀ level.Ā InĀ thisĀ way,Ā theĀ lubricantĀ leakageĀ viaĀ theĀ oilĀ sealsĀ ofĀ theĀ harmonicĀ reducerĀ couldĀ beĀ preventedĀ effectively.
Moreover,Ā duringĀ operationĀ ofĀ theĀ harmonicĀ reducer,Ā theĀ rotationĀ ofĀ theĀ shaftĀ wouldĀ causeĀ theĀ lubricantĀ (ifĀ any)Ā adheredĀ onĀ theĀ shaftĀ toĀ beĀ subjectedĀ toĀ aĀ centrifugalĀ force.Ā UnderĀ theĀ centrifugalĀ force,Ā theĀ lubricantĀ wouldĀ flyĀ awayĀ fromĀ theĀ shaftĀ duringĀ theĀ highĀ speedĀ rotationĀ ofĀ theĀ shaft.Ā InĀ thisĀ way,Ā theĀ lubricantĀ couldĀ beĀ preventedĀ fromĀ leakingĀ outĀ ofĀ theĀ harmonicĀ reducerĀ viaĀ theĀ firstĀ throughĀ holeĀ inĀ theĀ shaftĀ toĀ aĀ largeĀ extent.
Furthermore,Ā accordingĀ toĀ someĀ embodimentsĀ ofĀ theĀ presentĀ disclosure,Ā aĀ sealingĀ mechanismĀ isĀ providedĀ inĀ theĀ harmonicĀ reducerĀ soĀ asĀ toĀ selectivelyĀ allowĀ theĀ cavityĀ toĀ beĀ inĀ fluidĀ communicationĀ withĀ theĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ hole.Ā WhenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ isĀ belowĀ theĀ pressureĀ threshold,Ā theĀ sealingĀ mechanismĀ wouldĀ blockĀ theĀ communicationĀ betweenĀ theĀ cavityĀ andĀ theĀ externalĀ environment.Ā WhenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ isĀ aboveĀ theĀ pressureĀ threshold,Ā theĀ sealingĀ mechanismĀ wouldĀ allowĀ theĀ cavityĀ toĀ beĀ inĀ communicationĀ withĀ theĀ externalĀ environment.Ā InĀ thisĀ way,Ā theĀ internalĀ pressureĀ ofĀ theĀ harmonicĀ reducerĀ couldĀ beĀ maintainedĀ atĀ aĀ lowĀ level.Ā Moreover,Ā theĀ lubricantĀ mayĀ beĀ furtherĀ preventedĀ fromĀ leakingĀ outĀ ofĀ theĀ harmonicĀ reducerĀ viaĀ theĀ firstĀ throughĀ holeĀ ofĀ theĀ shaft.Ā Furthermore,Ā theĀ sealingĀ mechanismĀ couldĀ preventĀ debrisĀ inĀ theĀ externalĀ environmentĀ fromĀ enteringĀ theĀ harmonicĀ reducerĀ viaĀ theĀ firstĀ throughĀ hole.
DESCRIPTIONĀ OFĀ DRAWINGS
ThroughĀ theĀ followingĀ detailedĀ descriptionsĀ withĀ referenceĀ toĀ theĀ accompanyingĀ drawings,Ā theĀ aboveĀ andĀ otherĀ objectives,Ā featuresĀ andĀ advantagesĀ ofĀ theĀ exampleĀ embodimentsĀ disclosedĀ hereinĀ willĀ becomeĀ moreĀ comprehensible.Ā InĀ theĀ drawings,Ā severalĀ exampleĀ embodimentsĀ disclosedĀ hereinĀ willĀ beĀ illustratedĀ inĀ anĀ exampleĀ andĀ inĀ aĀ non-limitingĀ manner,Ā wherein:
Fig.Ā 1Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ firstĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 2Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ secondĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 3Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ thirdĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 4Ā isĀ aĀ partiallyĀ enlargedĀ viewĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 3;
Fig.Ā 5Ā isĀ anĀ explodedĀ viewĀ ofĀ aĀ sealingĀ mechanismĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 3;
Fig.Ā 6Ā isĀ anĀ explodedĀ viewĀ ofĀ theĀ sealingĀ mechanismĀ asĀ shownĀ inĀ Fig.Ā 5Ā whenĀ viewedĀ inĀ anotherĀ direction;
Fig.Ā 7Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ fourthĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 8Ā isĀ aĀ partiallyĀ enlargedĀ viewĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 7;
Fig.Ā 9Ā isĀ anĀ explodedĀ viewĀ ofĀ aĀ sealingĀ mechanismĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 7;
Fig.Ā 10Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ fifthĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 11Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ sixthĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 12Ā isĀ aĀ perspectiveĀ viewĀ ofĀ aĀ firstĀ flangeĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 11;
Fig.Ā 13Ā illustratesĀ aĀ relativeĀ arrangementĀ betweenĀ theĀ firstĀ flangeĀ andĀ theĀ firstĀ bearingĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 11;
Fig.Ā 14Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ seventhĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 15Ā isĀ aĀ partiallyĀ enlargedĀ viewĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 14;Ā and
Fig.Ā 16Ā isĀ aĀ perspectiveĀ viewĀ ofĀ aĀ secondĀ baseĀ elementĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 14.
ThroughoutĀ theĀ drawings,Ā theĀ sameĀ orĀ similarĀ referenceĀ symbolsĀ areĀ usedĀ toĀ indicateĀ theĀ sameĀ orĀ similarĀ elements.
DETAILEDĀ DESCRIPTIONĀ OFĀ EMBODIEMTNS
PrinciplesĀ ofĀ theĀ presentĀ disclosureĀ willĀ nowĀ beĀ describedĀ withĀ referenceĀ toĀ severalĀ exampleĀ embodimentsĀ shownĀ inĀ theĀ drawings.Ā ThoughĀ exampleĀ embodimentsĀ ofĀ theĀ presentĀ disclosureĀ areĀ illustratedĀ inĀ theĀ drawings,Ā itĀ isĀ toĀ beĀ understoodĀ thatĀ theĀ embodimentsĀ areĀ describedĀ onlyĀ toĀ facilitateĀ thoseĀ skilledĀ inĀ theĀ artĀ inĀ betterĀ understandingĀ andĀ therebyĀ achievingĀ theĀ presentĀ disclosure,Ā ratherĀ thanĀ toĀ limitĀ theĀ scopeĀ ofĀ theĀ disclosureĀ inĀ anyĀ manner.
TheĀ termĀ ā€œcomprisesā€Ā orĀ ā€œincludesā€Ā andĀ itsĀ variantsĀ areĀ toĀ beĀ readĀ asĀ openĀ termsĀ thatĀ meanĀ ā€œincludes,Ā butĀ isĀ notĀ limitedĀ to.Ā ā€Ā TheĀ termĀ ā€œorā€Ā isĀ toĀ beĀ readĀ asĀ ā€œand/orā€Ā unlessĀ theĀ contextĀ clearlyĀ indicatesĀ otherwise.Ā TheĀ termĀ ā€œbasedĀ onā€Ā isĀ toĀ beĀ readĀ asĀ ā€œbasedĀ atĀ leastĀ inĀ partĀ on.Ā ā€Ā TheĀ termĀ ā€œbeingĀ operableĀ toā€Ā isĀ toĀ meanĀ aĀ function,Ā anĀ action,Ā aĀ motionĀ orĀ aĀ stateĀ canĀ beĀ achievedĀ byĀ anĀ operationĀ inducedĀ byĀ aĀ userĀ orĀ anĀ externalĀ mechanism.Ā TheĀ termĀ ā€œoneĀ embodimentā€Ā andĀ ā€œanĀ embodimentā€Ā areĀ toĀ beĀ readĀ asĀ ā€œatĀ leastĀ oneĀ embodiment.Ā ā€Ā TheĀ termĀ ā€œanotherĀ embodimentā€Ā isĀ toĀ beĀ readĀ asĀ ā€œatĀ leastĀ oneĀ otherĀ embodiment.Ā ā€Ā TheĀ termsĀ ā€œfirst,Ā ā€Ā ā€œsecond,Ā ā€Ā andĀ theĀ likeĀ mayĀ referĀ toĀ differentĀ orĀ sameĀ objects.Ā OtherĀ definitions,Ā explicitĀ andĀ implicit,Ā mayĀ beĀ includedĀ below.Ā AĀ definitionĀ ofĀ aĀ termĀ isĀ consistentĀ throughoutĀ theĀ descriptionĀ unlessĀ theĀ contextĀ clearlyĀ indicatesĀ otherwise.
UnlessĀ specifiedĀ orĀ limitedĀ otherwise,Ā theĀ termsĀ ā€œmounted,Ā ā€Ā ā€œconnected,Ā ā€Ā ā€œsupported,Ā ā€Ā andĀ ā€œcoupledā€Ā andĀ variationsĀ thereofĀ areĀ usedĀ broadlyĀ andĀ encompassĀ directĀ andĀ indirectĀ mountings,Ā connections,Ā supports,Ā andĀ couplings.Ā Furthermore,Ā ā€œconnectedā€Ā andĀ ā€œcoupledā€Ā areĀ notĀ restrictedĀ toĀ physicalĀ orĀ mechanicalĀ connectionsĀ orĀ couplings.Ā InĀ theĀ descriptionĀ below,Ā likeĀ referenceĀ numeralsĀ andĀ labelsĀ areĀ usedĀ toĀ describeĀ theĀ same,Ā similarĀ orĀ correspondingĀ partsĀ inĀ theĀ figures.Ā OtherĀ definitions,Ā explicitĀ andĀ implicit,Ā mayĀ beĀ includedĀ below.
AsĀ discussedĀ above,Ā theĀ internalĀ pressureĀ buildupĀ ofĀ theĀ harmonicĀ reducerĀ mayĀ causeĀ theĀ lubricantĀ toĀ leakĀ outĀ ofĀ theĀ harmonicĀ reducerĀ throughĀ theĀ oilĀ seals.Ā AccordingĀ toĀ embodimentsĀ ofĀ theĀ presentĀ disclosure,Ā toĀ preventĀ bothĀ internalĀ pressureĀ buildupĀ andĀ lubricantĀ leakageĀ ofĀ theĀ harmonicĀ reducer,Ā aĀ throughĀ holeĀ isĀ providedĀ inĀ theĀ shaftĀ ofĀ theĀ harmonicĀ reducerĀ suchĀ thatĀ theĀ cavityĀ inĀ theĀ harmonicĀ reducerĀ mayĀ beĀ inĀ fluidĀ communicationĀ withĀ theĀ externalĀ environment.Ā TheĀ aboveĀ ideaĀ mayĀ beĀ implementedĀ inĀ variousĀ manners,Ā asĀ willĀ beĀ describedĀ inĀ detailĀ inĀ theĀ followingĀ paragraphs.
Hereinafter,Ā theĀ principlesĀ ofĀ theĀ presentĀ disclosureĀ willĀ beĀ describedĀ inĀ detailĀ withĀ referenceĀ toĀ Figs.Ā 1-16.Ā ReferringĀ toĀ Fig.Ā 1Ā first,Ā Fig.Ā 1Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ firstĀ embodimentĀ ofĀ theĀ presentĀ disclosure.Ā AsĀ shownĀ inĀ Fig.Ā 1,Ā theĀ harmonicĀ reducerĀ 100Ā generallyĀ includesĀ aĀ shaftĀ 4,Ā aĀ waveĀ generatorĀ 13,Ā aĀ flexibleĀ splineĀ 11,Ā aĀ circularĀ splineĀ 12,Ā aĀ firstĀ flangeĀ 21,Ā andĀ aĀ secondĀ flangeĀ 22.
TheĀ shaftĀ 4Ā isĀ anĀ inputĀ shaftĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā andĀ isĀ adaptedĀ toĀ receiveĀ aĀ driveĀ powerĀ (torque)Ā inputĀ fromĀ aĀ driver,Ā suchĀ asĀ aĀ motor.Ā AsĀ shownĀ inĀ Fig.Ā 1,Ā theĀ shaftĀ 4Ā includesĀ aĀ firstĀ endĀ 401Ā andĀ aĀ secondĀ endĀ 402Ā oppositeĀ toĀ theĀ firstĀ endĀ 401.Ā TheĀ firstĀ endĀ 401Ā isĀ arrangedĀ insideĀ theĀ harmonicĀ reducerĀ 100Ā andĀ theĀ secondĀ endĀ 402Ā isĀ arrangedĀ outsideĀ theĀ harmonicĀ reducerĀ 100.Ā TheĀ shaftĀ 4Ā isĀ providedĀ withĀ aĀ firstĀ throughĀ holeĀ 403Ā extendingĀ fromĀ theĀ firstĀ endĀ 401Ā toĀ theĀ secondĀ endĀ 402Ā ofĀ theĀ shaftĀ 4Ā inĀ anĀ axialĀ directionĀ XĀ ofĀ theĀ shaftĀ 4.
TheĀ waveĀ generatorĀ 13Ā isĀ arrangedĀ onĀ theĀ shaftĀ 4Ā andĀ isĀ rotatableĀ alongĀ withĀ theĀ shaftĀ 4.Ā ThatĀ is,Ā theĀ waveĀ generatorĀ 13Ā mayĀ rotateĀ inĀ synchronizationĀ withĀ theĀ shaftĀ 4.Ā TheĀ flexibleĀ splineĀ 11Ā isĀ arrangedĀ aroundĀ theĀ waveĀ generatorĀ 13.Ā TheĀ circularĀ splineĀ 12Ā isĀ arrangedĀ aroundĀ theĀ flexibleĀ splineĀ 11.Ā DuringĀ operationĀ ofĀ theĀ harmonicĀ reducerĀ 100,Ā theĀ waveĀ generatorĀ 13Ā mayĀ beĀ rotatedĀ soĀ asĀ toĀ causeĀ theĀ flexibleĀ splineĀ 11Ā toĀ produceĀ controllableĀ elasticĀ deformationĀ andĀ meshĀ withĀ theĀ circularĀ splineĀ 12.Ā TheĀ numberĀ ofĀ teethĀ ofĀ theĀ circularĀ splineĀ 12Ā isĀ moreĀ thanĀ theĀ numberĀ ofĀ teethĀ ofĀ theĀ flexibleĀ splineĀ 11Ā byĀ two.Ā WithĀ suchĀ anĀ arrangement,Ā theĀ harmonicĀ reducerĀ 100Ā mayĀ achieveĀ theĀ transferringĀ ofĀ motionĀ andĀ power.Ā ItĀ isĀ notedĀ thatĀ theĀ constructionsĀ andĀ operatingĀ principlesĀ ofĀ theĀ waveĀ generatorĀ 13,Ā theĀ flexibleĀ splineĀ 11,Ā andĀ theĀ circularĀ splineĀ 12Ā areĀ knownĀ inĀ theĀ art,Ā andĀ willĀ notĀ beĀ describedĀ inĀ detailĀ anyĀ moreĀ herein.
TheĀ firstĀ flangeĀ 21Ā isĀ coupledĀ toĀ theĀ shaftĀ 4Ā viaĀ aĀ firstĀ bearingĀ 31.Ā TheĀ secondĀ flangeĀ 22Ā isĀ coupledĀ toĀ theĀ shaftĀ 4Ā viaĀ aĀ secondĀ bearingĀ 32.Ā WithĀ suchĀ anĀ arrangement,Ā theĀ shaftĀ 4Ā mayĀ beĀ supportedĀ byĀ theĀ firstĀ flangeĀ 21Ā andĀ theĀ secondĀ flangeĀ 22.Ā InĀ addition,Ā theĀ firstĀ flangeĀ 21Ā isĀ furtherĀ coupledĀ toĀ theĀ flexibleĀ splineĀ 11Ā andĀ theĀ secondĀ flangeĀ 22Ā isĀ furtherĀ coupledĀ toĀ theĀ circularĀ splineĀ 12.Ā DuringĀ operationĀ ofĀ theĀ harmonicĀ reducerĀ 100,Ā theĀ flexibleĀ splineĀ 11Ā mayĀ rotateĀ inĀ synchronizationĀ withĀ theĀ firstĀ flangeĀ 21Ā atĀ aĀ lowĀ speed,Ā andĀ theĀ circularĀ splineĀ 12Ā andĀ theĀ secondĀ flangeĀ 22Ā wouldĀ notĀ rotate.
InĀ theĀ firstĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 1,Ā theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4Ā isĀ arrangedĀ insideĀ theĀ harmonicĀ reducerĀ 100Ā andĀ nearĀ toĀ theĀ firstĀ flangeĀ 21.Ā AĀ cavityĀ 5Ā isĀ providedĀ betweenĀ theĀ firstĀ flangeĀ 21Ā andĀ theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4.Ā TheĀ cavityĀ 5Ā isĀ inĀ fluidĀ communicationĀ withĀ internalĀ spacesĀ 9Ā ofĀ theĀ harmonicĀ reducerĀ 100Ā viaĀ forĀ exampleĀ gapsĀ onĀ theĀ firstĀ bearingĀ 31.Ā Thus,Ā theĀ cavityĀ 5Ā andĀ theĀ internalĀ spacesĀ 9Ā ofĀ theĀ harmonicĀ reducerĀ 100Ā mayĀ beĀ atĀ substantiallyĀ theĀ sameĀ pressure.Ā Further,Ā theĀ cavityĀ 5Ā isĀ inĀ fluidĀ communicationĀ withĀ theĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ  holeĀ 403.Ā IfĀ theĀ pressureĀ insideĀ theĀ harmonicĀ reducerĀ 100Ā isĀ increasedĀ dueĀ toĀ forĀ exampleĀ theĀ temperatureĀ rising,Ā theĀ gasĀ insideĀ theĀ harmonicĀ reducerĀ 100Ā mayĀ beĀ releasedĀ intoĀ theĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ holeĀ 403.
ToĀ reduceĀ theĀ frictionĀ betweenĀ variousĀ componentsĀ ofĀ theĀ harmonicĀ reducerĀ 100,Ā lubricantĀ isĀ typicallyĀ providedĀ inĀ theĀ internalĀ spacesĀ 9Ā ofĀ theĀ harmonicĀ reducerĀ 100.Ā DuringĀ operationĀ ofĀ theĀ harmonicĀ reducerĀ 100,Ā ifĀ theĀ temperatureĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā rises,Ā theĀ gasĀ inĀ theĀ internalĀ spacesĀ 9Ā mayĀ beĀ releasedĀ intoĀ theĀ cavityĀ 5Ā andĀ thenĀ intoĀ theĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ holeĀ 403,Ā suchĀ thatĀ theĀ pressureĀ ofĀ theĀ internalĀ spacesĀ 9Ā couldĀ beĀ maintainedĀ atĀ aĀ lowĀ level.Ā InĀ thisĀ way,Ā theĀ lubricantĀ leakageĀ viaĀ oilĀ sealsĀ 81Ā ofĀ theĀ harmonicĀ reducerĀ 100Ā couldĀ beĀ preventedĀ effectively.
Moreover,Ā duringĀ operationĀ ofĀ theĀ harmonicĀ reducerĀ 100,Ā theĀ rotationĀ ofĀ theĀ shaftĀ 4Ā wouldĀ causeĀ theĀ lubricantĀ (ifĀ any)Ā adheredĀ onĀ theĀ shaftĀ 4Ā toĀ beĀ subjectedĀ toĀ aĀ centrifugalĀ force.Ā UnderĀ theĀ centrifugalĀ force,Ā theĀ lubricantĀ wouldĀ flyĀ awayĀ fromĀ theĀ shaftĀ 4Ā duringĀ theĀ highĀ speedĀ rotationĀ ofĀ theĀ shaftĀ 4.Ā InĀ thisĀ way,Ā theĀ lubricantĀ couldĀ beĀ preventedĀ fromĀ leakingĀ outĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā viaĀ theĀ firstĀ throughĀ holeĀ 403Ā toĀ aĀ largeĀ extent.
InĀ theĀ firstĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 1,Ā theĀ harmonicĀ reducerĀ 100Ā furtherĀ includesĀ aĀ crossĀ rollerĀ bearingĀ 14.Ā TheĀ crossĀ rollerĀ bearingĀ 14Ā includesĀ anĀ outerĀ ringĀ 141Ā coupledĀ toĀ theĀ flexibleĀ splineĀ 11Ā andĀ anĀ innerĀ ringĀ 142Ā coupledĀ toĀ theĀ circularĀ splineĀ 12.Ā InĀ otherĀ embodiments,Ā theĀ crossĀ rollerĀ bearingĀ 14Ā mayĀ beĀ replacedĀ byĀ otherĀ typesĀ ofĀ bearings.Ā TheĀ scopeĀ ofĀ theĀ presentĀ disclosureĀ isĀ notĀ intendedĀ toĀ beĀ limitedĀ inĀ thisĀ respect.
Fig.Ā 2Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ secondĀ embodimentĀ ofĀ theĀ presentĀ disclosure.Ā TheĀ constructionĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 2Ā isĀ similarĀ toĀ thatĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 1,Ā exceptĀ thatĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 2Ā furtherĀ includesĀ aĀ porousĀ materialĀ 404Ā arrangedĀ inĀ theĀ firstĀ throughĀ holeĀ 403.Ā TheĀ porousĀ materialĀ 404Ā isĀ permeableĀ toĀ theĀ gasĀ andĀ non-permeableĀ toĀ theĀ lubricant.Ā Hence,Ā theĀ porousĀ materialĀ 404Ā mayĀ adsorbĀ theĀ lubricantĀ mixedĀ inĀ theĀ gasĀ fromĀ theĀ cavityĀ 5Ā onĀ oneĀ hand,Ā andĀ mayĀ preventĀ debrisĀ inĀ theĀ externalĀ environmentĀ fromĀ enteringĀ theĀ cavityĀ 5Ā viaĀ theĀ firstĀ throughĀ holeĀ 403Ā onĀ theĀ otherĀ hand.
Fig.Ā 3Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ thirdĀ embodimentĀ ofĀ theĀ presentĀ disclosure.Ā TheĀ constructionĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 3Ā isĀ similarĀ toĀ thatĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 1,Ā exceptĀ thatĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 3Ā furtherĀ includesĀ aĀ sealingĀ mechanismĀ 6.Ā TheĀ sealingĀ mechanismĀ 6Ā isĀ configuredĀ toĀ selectivelyĀ allowĀ theĀ cavityĀ 5Ā toĀ beĀ inĀ fluidĀ communicationĀ withĀ theĀ externalĀ environmentĀ inĀ accordanceĀ withĀ anĀ internalĀ pressureĀ ofĀ theĀ cavityĀ 5.Ā WhenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ 5Ā isĀ increasedĀ dueĀ toĀ theĀ temperatureĀ risingĀ ofĀ theĀ harmonicĀ reducerĀ 100,Ā theĀ sealingĀ mechanismĀ 6Ā mayĀ allowĀ theĀ cavityĀ 5Ā toĀ beĀ inĀ communicationĀ withĀ theĀ externalĀ environment.Ā OnĀ theĀ contrary,Ā whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ 5Ā isĀ substantiallyĀ identicalĀ toĀ theĀ environmentĀ pressure,Ā theĀ sealingĀ mechanismĀ 6Ā mayĀ blockĀ theĀ communicationĀ betweenĀ theĀ cavityĀ 5Ā andĀ theĀ externalĀ environment.
TheĀ sealingĀ mechanismĀ 6Ā mayĀ haveĀ variousĀ constructions.Ā Figs.Ā 4-6Ā illustrateĀ anĀ exampleĀ constructionĀ andĀ arrangementĀ ofĀ theĀ sealingĀ mechanismĀ 6.Ā AsĀ shownĀ inĀ Figs.Ā 4-6,Ā theĀ sealingĀ mechanismĀ 6Ā includesĀ aĀ baseĀ elementĀ 60,Ā aĀ firstĀ sealingĀ elementĀ 61,Ā andĀ aĀ secondĀ sealingĀ elementĀ 62.
AsĀ shownĀ inĀ Figs.Ā 4-6,Ā theĀ baseĀ elementĀ 60Ā isĀ arrangedĀ atĀ theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4Ā andĀ adaptedĀ toĀ supportĀ theĀ firstĀ andĀ  secondĀ sealingĀ elements Ā 61,Ā 62.Ā InĀ someĀ cases,Ā theĀ baseĀ elementĀ 60Ā mayĀ beĀ detachablyĀ mountedĀ ontoĀ theĀ shaftĀ 4,Ā forĀ exampleĀ throughĀ screwsĀ orĀ inĀ otherĀ manners.Ā InĀ otherĀ cases,Ā theĀ baseĀ elementĀ 60Ā mayĀ beĀ solderedĀ onĀ theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4Ā orĀ evenĀ formedĀ asĀ aĀ partĀ ofĀ theĀ shaftĀ 4.
InĀ someĀ embodiments,Ā asĀ shownĀ inĀ Figs.Ā 5Ā andĀ 6,Ā theĀ baseĀ elementĀ 60Ā includesĀ aĀ mountingĀ partĀ 601Ā adaptedĀ toĀ beĀ mountedĀ ontoĀ theĀ shaftĀ 4Ā andĀ aĀ receivingĀ partĀ 602Ā adaptedĀ toĀ receiveĀ theĀ firstĀ andĀ  secondĀ sealingĀ elements Ā 61,Ā 62.Ā TheĀ mountingĀ partĀ 601Ā isĀ providedĀ withĀ aĀ secondĀ throughĀ holeĀ 603Ā inĀ fluidĀ communicationĀ withĀ theĀ firstĀ throughĀ holeĀ 403.Ā TheĀ mountingĀ partĀ 601Ā mayĀ beĀ insertedĀ intoĀ theĀ firstĀ throughĀ holeĀ 403Ā ofĀ theĀ shaftĀ 4,Ā andĀ coupledĀ toĀ theĀ shaftĀ 4Ā throughĀ screwsĀ orĀ interferenceĀ fit,Ā orĀ inĀ variousĀ otherĀ manners.Ā TheĀ receivingĀ partĀ 602Ā includesĀ aĀ firstĀ receivingĀ spaceĀ 604,Ā aĀ secondĀ receivingĀ spaceĀ 605,Ā andĀ aĀ stepĀ 606Ā betweenĀ theĀ firstĀ receivingĀ spaceĀ 604Ā andĀ theĀ secondĀ receivingĀ spaceĀ 605.Ā TheĀ secondĀ receivingĀ spaceĀ 605Ā isĀ inĀ fluidĀ communicationĀ withĀ theĀ secondĀ throughĀ holeĀ 603,Ā andĀ inĀ turn,Ā inĀ fluidĀ communicationĀ withĀ theĀ firstĀ throughĀ holeĀ 403.Ā TheĀ secondĀ receivingĀ spaceĀ 605Ā isĀ closerĀ toĀ theĀ mountingĀ partĀ 601Ā thanĀ theĀ firstĀ receivingĀ spaceĀ 604.Ā ThatĀ is,Ā theĀ secondĀ  receivingĀ spaceĀ 605Ā isĀ disposedĀ atĀ aĀ lowerĀ portionĀ ofĀ theĀ receivingĀ partĀ 602,Ā andĀ theĀ firstĀ receivingĀ spaceĀ 604Ā isĀ disposedĀ atĀ anĀ upperĀ portionĀ ofĀ theĀ receivingĀ partĀ 602.Ā TheĀ firstĀ andĀ  secondĀ sealingĀ elements Ā 61,Ā 62Ā areĀ arrangedĀ inĀ theĀ firstĀ andĀ secondĀ receivingĀ  spaces Ā 604,Ā 605,Ā asĀ willĀ beĀ describedĀ inĀ detailĀ hereinafter.
AsĀ shownĀ inĀ Figs.Ā 4-6,Ā theĀ firstĀ sealingĀ elementĀ 61Ā isĀ arrangedĀ onĀ theĀ baseĀ elementĀ 60Ā andĀ includesĀ oneĀ orĀ moreĀ openingsĀ 613Ā andĀ aĀ sealingĀ surfaceĀ 614Ā surroundingĀ theĀ oneĀ orĀ moreĀ openingsĀ 613.Ā TheĀ oneĀ orĀ moreĀ openingsĀ 613Ā areĀ configuredĀ toĀ communicateĀ theĀ cavityĀ 5Ā withĀ theĀ secondĀ throughĀ holeĀ 603.Ā TheĀ sealingĀ surfaceĀ 614Ā isĀ configuredĀ toĀ cooperateĀ withĀ theĀ secondĀ sealingĀ elementĀ 62.Ā WhenĀ theĀ sealingĀ surfaceĀ 614Ā isĀ inĀ contactĀ withĀ theĀ secondĀ sealingĀ elementĀ 62,Ā theĀ oneĀ orĀ moreĀ openingsĀ 613Ā wouldĀ beĀ closed,Ā andĀ whenĀ theĀ sealingĀ surfaceĀ 614Ā isĀ notĀ inĀ contactĀ withĀ theĀ secondĀ sealingĀ elementĀ 62,Ā theĀ oneĀ orĀ moreĀ openingsĀ 613Ā wouldĀ beĀ opened.
InĀ someĀ embodiments,Ā asĀ shownĀ inĀ Figs.Ā 4-6,Ā theĀ firstĀ sealingĀ elementĀ 61Ā includesĀ aĀ sealingĀ partĀ 611Ā andĀ aĀ mountingĀ pillarĀ 612.Ā TheĀ sealingĀ partĀ 611Ā isĀ arrangedĀ inĀ theĀ firstĀ receivingĀ spaceĀ 604Ā andĀ supportedĀ byĀ theĀ stepĀ 606.Ā TheĀ sealingĀ partĀ 611Ā mayĀ beĀ adheredĀ ontoĀ theĀ receivingĀ partĀ 602Ā orĀ fixedĀ inĀ theĀ firstĀ receivingĀ spaceĀ 604Ā throughĀ interferenceĀ fit.Ā TheĀ oneĀ orĀ moreĀ openingsĀ 613Ā andĀ theĀ sealingĀ surfaceĀ 614Ā areĀ providedĀ onĀ theĀ sealingĀ partĀ 611.Ā TheĀ sealingĀ surfaceĀ 614Ā isĀ aĀ partĀ ofĀ aĀ bottomĀ surfaceĀ ofĀ theĀ sealingĀ partĀ 611.Ā TheĀ mountingĀ pillarĀ 612Ā isĀ adaptedĀ toĀ mountĀ theĀ secondĀ sealingĀ elementĀ 62.
AsĀ shownĀ inĀ Figs.Ā 4-6,Ā theĀ secondĀ sealingĀ elementĀ 62Ā isĀ arrangedĀ betweenĀ theĀ firstĀ sealingĀ elementĀ 61Ā andĀ theĀ baseĀ elementĀ 60Ā soĀ asĀ toĀ selectivelyĀ allowĀ orĀ blockĀ theĀ fluidĀ communicationĀ betweenĀ theĀ cavityĀ 5Ā andĀ theĀ firstĀ throughĀ holeĀ 403Ā ofĀ theĀ shaftĀ 4.Ā TheĀ secondĀ sealingĀ elementĀ 62Ā isĀ generallyĀ locatedĀ inĀ theĀ secondĀ receivingĀ spaceĀ 605.Ā ToĀ cooperateĀ withĀ theĀ sealingĀ surfaceĀ 614Ā ofĀ theĀ firstĀ sealingĀ elementĀ 61,Ā theĀ secondĀ sealingĀ elementĀ 62Ā includesĀ anĀ elasticĀ sealingĀ lipĀ 622.Ā TheĀ elasticĀ sealingĀ lipĀ 622Ā isĀ configuredĀ toĀ contactĀ theĀ sealingĀ surfaceĀ 614Ā ofĀ theĀ firstĀ sealingĀ elementĀ 61Ā toĀ blockĀ theĀ communicationĀ betweenĀ theĀ cavityĀ 5Ā andĀ theĀ secondĀ throughĀ holeĀ 603Ā whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ 5Ā isĀ belowĀ aĀ pressureĀ thresholdĀ andĀ configuredĀ toĀ beĀ pushedĀ awayĀ fromĀ theĀ sealingĀ surfaceĀ 614Ā ofĀ theĀ firstĀ sealingĀ elementĀ 61Ā toĀ communicateĀ theĀ cavityĀ 5Ā withĀ theĀ secondĀ throughĀ holeĀ 603Ā whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ 5Ā isĀ aboveĀ theĀ pressureĀ threshold.
InĀ someĀ embodiments,Ā asĀ shownĀ inĀ Figs.Ā 4-6,Ā theĀ elasticĀ sealingĀ lipĀ 622Ā isĀ formedĀ onĀ aĀ supportingĀ partĀ 621.Ā TheĀ supportingĀ partĀ 621Ā isĀ configuredĀ toĀ supportĀ theĀ elasticĀ sealingĀ lipĀ 622Ā andĀ includesĀ aĀ mountingĀ holeĀ 623Ā intoĀ whichĀ theĀ mountingĀ pillarĀ 612Ā ofĀ theĀ firstĀ sealingĀ elementĀ 61Ā isĀ inserted.Ā ThroughĀ theĀ cooperationĀ betweenĀ theĀ mountingĀ pillarĀ 612Ā andĀ theĀ mountingĀ holeĀ 623,Ā theĀ secondĀ sealingĀ elementĀ 62Ā mayĀ beĀ coupledĀ ontoĀ theĀ firstĀ sealingĀ elementĀ 61Ā easilyĀ andĀ reliably.
InĀ someĀ embodiments,Ā theĀ secondĀ sealingĀ elementĀ 62Ā mayĀ beĀ madeĀ ofĀ rubberĀ materialĀ orĀ otherĀ elasticĀ materialsĀ asĀ aĀ whole.Ā InĀ someĀ otherĀ embodiments,Ā onlyĀ theĀ elasticĀ sealingĀ lipĀ 622Ā isĀ madeĀ ofĀ rubberĀ materialĀ orĀ otherĀ elasticĀ materials,Ā andĀ theĀ elasticĀ sealingĀ lipĀ 622Ā isĀ coupledĀ toĀ theĀ supportingĀ partĀ 621Ā ofĀ aĀ differentĀ material.
AccordingĀ toĀ embodimentsĀ ofĀ theĀ presentĀ disclosure,Ā theĀ sealingĀ mechanismĀ 6Ā mayĀ provideĀ additionalĀ advantages.Ā OnĀ oneĀ hand,Ā theĀ internalĀ pressureĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā couldĀ beĀ maintainedĀ atĀ aĀ lowĀ level.Ā OnĀ theĀ otherĀ hand,Ā throughĀ theĀ cooperationĀ betweenĀ theĀ sealingĀ surfaceĀ 614Ā ofĀ theĀ firstĀ sealingĀ elementĀ 61Ā andĀ theĀ elasticĀ sealingĀ lipĀ 622Ā ofĀ theĀ secondĀ sealingĀ elementĀ 62,Ā theĀ openingsĀ 613Ā onĀ theĀ firstĀ sealingĀ elementĀ 61Ā mayĀ beĀ blockedĀ mostĀ ofĀ theĀ time.Ā Thus,Ā theĀ lubricantĀ mayĀ beĀ furtherĀ preventedĀ fromĀ leakingĀ outĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā viaĀ theĀ firstĀ throughĀ holeĀ 403Ā ofĀ theĀ shaftĀ 4,Ā andĀ theĀ sealingĀ mechanismĀ 6Ā couldĀ preventĀ debrisĀ inĀ theĀ externalĀ environmentĀ fromĀ enteringĀ theĀ harmonicĀ reducerĀ 100Ā viaĀ theĀ firstĀ throughĀ holeĀ 403.
Fig.Ā 7Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ fourthĀ embodimentĀ ofĀ theĀ presentĀ disclosure.Ā TheĀ constructionĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 7Ā isĀ similarĀ toĀ thatĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 3,Ā exceptĀ thatĀ theĀ baseĀ elementĀ 60Ā furtherĀ includesĀ aĀ grooveĀ 607Ā atĀ itsĀ outerĀ surface.Ā Figs.Ā 8Ā andĀ 9Ā illustrateĀ detailsĀ ofĀ theĀ grooveĀ 607.Ā AsĀ shown,Ā theĀ grooveĀ 607Ā isĀ arrangedĀ atĀ anĀ outerĀ surfaceĀ ofĀ theĀ receivingĀ partĀ 602Ā ofĀ theĀ baseĀ elementĀ 60.Ā TheĀ grooveĀ 607Ā includesĀ aĀ bottomĀ surfaceĀ andĀ twoĀ obliqueĀ sidewalls.Ā TheĀ obliqueĀ sidewallsĀ ofĀ theĀ grooveĀ 607Ā wouldĀ causeĀ theĀ lubricantĀ adheredĀ onĀ theĀ baseĀ elementĀ 60Ā toĀ flyĀ awayĀ fromĀ theĀ baseĀ elementĀ 60Ā moreĀ easily.
Fig.Ā 10Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ fifthĀ embodimentĀ ofĀ theĀ presentĀ disclosure.Ā TheĀ constructionĀ ofĀ theĀ  harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 10Ā isĀ similarĀ toĀ thatĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 7,Ā exceptĀ thatĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 10Ā furtherĀ includesĀ aĀ pulleyĀ 70Ā arrangedĀ onĀ theĀ shaftĀ 4.Ā TheĀ pulleyĀ 70Ā isĀ positionedĀ nearĀ toĀ theĀ secondĀ endĀ 402Ā ofĀ theĀ shaftĀ 4Ā andĀ rotatableĀ togetherĀ withĀ theĀ shaftĀ 4.Ā ThroughĀ theĀ pulleyĀ 70,Ā theĀ shaftĀ 4Ā ofĀ theĀ harmonicĀ reducerĀ 100Ā mayĀ beĀ drivenĀ byĀ aĀ driverĀ viaĀ aĀ belt.
InĀ someĀ cases,Ā aĀ largeĀ amountĀ ofĀ lubricantĀ wouldĀ probablyĀ accumulateĀ inĀ theĀ cavityĀ 5.Ā InĀ orderĀ toĀ removeĀ theĀ lubricantĀ inĀ theĀ cavityĀ 5,Ā oneĀ orĀ moreĀ channelsĀ mayĀ beĀ providedĀ betweenĀ theĀ cavityĀ 5Ā andĀ theĀ internalĀ spacesĀ 9.Ā Figs.Ā 11-13Ā illustrateĀ anĀ exampleĀ approachĀ forĀ removingĀ theĀ lubricantĀ inĀ theĀ cavityĀ 5.
Fig.Ā 11Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ sixthĀ embodimentĀ ofĀ theĀ presentĀ disclosure,Ā Fig.Ā 12Ā isĀ aĀ perspectiveĀ viewĀ ofĀ theĀ firstĀ flangeĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 11,Ā andĀ Fig.Ā 13Ā illustratesĀ aĀ relativeĀ arrangementĀ betweenĀ theĀ firstĀ flangeĀ andĀ theĀ firstĀ bearingĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 11.Ā TheĀ constructionĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 11Ā isĀ similarĀ toĀ thatĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 10,Ā exceptĀ thatĀ theĀ harmonicĀ reducerĀ 100Ā furtherĀ includesĀ oneĀ orĀ moreĀ channelsĀ 210Ā arrangedĀ betweenĀ theĀ firstĀ flangeĀ 21Ā andĀ theĀ firstĀ bearingĀ 31.Ā ThroughĀ theĀ channelsĀ 210,Ā theĀ lubricantĀ inĀ theĀ cavityĀ 5Ā mayĀ flowĀ backĀ intoĀ theĀ internalĀ spacesĀ 9.
InĀ someĀ embodiments,Ā asĀ shownĀ inĀ Figs.Ā 11-13,Ā theĀ harmonicĀ reducerĀ 100Ā furtherĀ includesĀ aĀ bearingĀ sleeveĀ 71Ā arrangedĀ aroundĀ theĀ firstĀ bearingĀ 31.Ā TheĀ bearingĀ sleeveĀ 71Ā mayĀ protectĀ theĀ firstĀ bearingĀ 31Ā fromĀ beingĀ wornĀ byĀ theĀ firstĀ flangeĀ 21.
Fig.Ā 14Ā illustratesĀ aĀ cross-sectionalĀ viewĀ ofĀ aĀ harmonicĀ reducerĀ inĀ accordanceĀ withĀ aĀ seventhĀ embodimentĀ ofĀ theĀ presentĀ disclosure,Ā Fig.Ā 15Ā isĀ aĀ partiallyĀ enlargedĀ viewĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 14,Ā andĀ Fig.Ā 16Ā isĀ aĀ perspectiveĀ viewĀ ofĀ aĀ secondĀ baseĀ elementĀ ofĀ theĀ harmonicĀ reducerĀ asĀ shownĀ inĀ Fig.Ā 14.Ā TheĀ constructionĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 14Ā isĀ similarĀ toĀ thatĀ ofĀ theĀ harmonicĀ reducerĀ 100Ā asĀ shownĀ inĀ Fig.Ā 10,Ā exceptĀ thatĀ theĀ sealingĀ mechanismĀ 6Ā asĀ shownĀ inĀ Fig.Ā 14Ā isĀ ofĀ aĀ differentĀ structureĀ andĀ isĀ arrangedĀ atĀ aĀ differentĀ position.
AsĀ shownĀ inĀ Figs.Ā 14Ā andĀ 15,Ā theĀ sealingĀ mechanismĀ 6Ā includesĀ aĀ secondĀ sealingĀ elementĀ 62.Ā TheĀ constructionĀ ofĀ theĀ secondĀ sealingĀ elementĀ 62Ā asĀ shownĀ inĀ  Figs.Ā 14Ā andĀ 15Ā isĀ similarĀ toĀ thatĀ ofĀ theĀ secondĀ sealingĀ elementĀ 62Ā asĀ shownĀ inĀ Figs.Ā 4-6.Ā ForĀ example,Ā theĀ secondĀ sealingĀ elementĀ 62Ā includesĀ anĀ elasticĀ sealingĀ lipĀ 622Ā andĀ aĀ supportingĀ partĀ 621Ā adaptedĀ toĀ supportĀ theĀ elasticĀ sealingĀ lipĀ 622.Ā TheĀ elasticĀ sealingĀ lipĀ 622Ā isĀ configuredĀ toĀ contactĀ theĀ secondĀ endĀ 402Ā ofĀ theĀ shaftĀ 4Ā toĀ blockĀ theĀ communicationĀ betweenĀ theĀ firstĀ throughĀ holeĀ 403Ā andĀ theĀ externalĀ environmentĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ 5Ā isĀ belowĀ theĀ pressureĀ thresholdĀ andĀ configuredĀ toĀ beĀ pushedĀ awayĀ fromĀ theĀ secondĀ endĀ 402Ā ofĀ theĀ shaftĀ 4Ā toĀ communicateĀ theĀ firstĀ throughĀ holeĀ 403Ā withĀ theĀ externalĀ environmentĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ 5Ā isĀ aboveĀ theĀ pressureĀ threshold.
InĀ someĀ embodiments,Ā toĀ fixĀ theĀ secondĀ sealingĀ elementĀ 62Ā atĀ theĀ secondĀ endĀ 402Ā ofĀ theĀ shaftĀ 4,Ā theĀ sealingĀ mechanismĀ 6Ā furtherĀ includesĀ aĀ secondĀ baseĀ elementĀ 63Ā configuredĀ toĀ supportĀ theĀ secondĀ sealingĀ elementĀ 62.Ā AsĀ shownĀ inĀ Figs.Ā 15Ā andĀ 16,Ā theĀ secondĀ baseĀ elementĀ 63Ā includesĀ aĀ secondĀ mountingĀ pillarĀ 632Ā andĀ aĀ pairĀ ofĀ mountingĀ partsĀ 631.Ā TheĀ mountingĀ partsĀ 631Ā areĀ coupledĀ toĀ theĀ pulleyĀ 70.Ā TheĀ secondĀ mountingĀ pillarĀ 632Ā isĀ insertedĀ intoĀ theĀ mountingĀ holeĀ 623Ā ofĀ theĀ secondĀ sealingĀ elementĀ 62Ā toĀ fixĀ theĀ supportingĀ partĀ 621Ā ofĀ theĀ secondĀ sealingĀ elementĀ 62,Ā suchĀ thatĀ theĀ secondĀ sealingĀ elementĀ 62Ā isĀ positionedĀ atĀ theĀ secondĀ endĀ 402Ā ofĀ theĀ shaftĀ 4.
InĀ anĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 14,Ā theĀ harmonicĀ reducerĀ 100Ā furtherĀ includesĀ aĀ thirdĀ baseĀ elementĀ 72Ā arrangedĀ atĀ theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4.Ā TheĀ constructionĀ ofĀ theĀ thirdĀ baseĀ elementĀ 72Ā isĀ similarĀ toĀ thatĀ ofĀ theĀ baseĀ elementĀ 60Ā asĀ shownĀ inĀ Fig.Ā 7.Ā ItĀ isĀ toĀ beĀ understoodĀ thatĀ inĀ otherĀ embodiments,Ā theĀ thirdĀ baseĀ elementĀ 72Ā mayĀ beĀ removed,Ā asĀ thatĀ shownĀ inĀ Figs.Ā 1Ā andĀ 2.
InĀ embodimentsĀ describedĀ aboveĀ withĀ referenceĀ toĀ Figs.Ā 1-16,Ā theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4Ā isĀ arrangedĀ nearĀ toĀ theĀ firstĀ flangeĀ 21Ā andĀ theĀ cavityĀ 5Ā isĀ providedĀ betweenĀ theĀ firstĀ flangeĀ 21Ā andĀ theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4.Ā However,Ā itĀ isĀ toĀ beĀ understoodĀ thatĀ inĀ otherĀ embodiments,Ā theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4Ā mayĀ beĀ arrangedĀ insideĀ theĀ harmonicĀ reducerĀ 100Ā nearĀ toĀ theĀ secondĀ flangeĀ 22,Ā andĀ theĀ cavityĀ 5Ā isĀ providedĀ betweenĀ theĀ secondĀ flangeĀ 22Ā andĀ theĀ firstĀ endĀ 401Ā ofĀ theĀ shaftĀ 4.Ā InĀ theseĀ cases,Ā theĀ sealingĀ mechanismĀ 6Ā andĀ otherĀ arrangementsĀ asĀ describedĀ aboveĀ isĀ alsoĀ applicable.Ā ForĀ example,Ā theĀ sealingĀ mechanismĀ 6Ā asĀ describedĀ aboveĀ withĀ referenceĀ toĀ Figs.Ā 3-13Ā mayĀ beĀ arrangedĀ inĀ theĀ cavityĀ 5Ā nearĀ toĀ theĀ secondĀ flangeĀ 22,Ā andĀ theĀ sealingĀ mechanismĀ 6Ā asĀ describedĀ aboveĀ withĀ referenceĀ toĀ Figs.Ā 14-16Ā mayĀ beĀ  arrangedĀ atĀ theĀ secondĀ endĀ 402Ā ofĀ theĀ shaftĀ 4Ā nearĀ toĀ theĀ firstĀ flangeĀ 21.Ā Moreover,Ā theĀ pulleyĀ 70Ā mayĀ beĀ arrangedĀ atĀ theĀ secondĀ endĀ 402Ā ofĀ theĀ shaftĀ 4Ā nearĀ toĀ theĀ firstĀ flangeĀ 21.
AccordingĀ toĀ embodimentsĀ ofĀ theĀ presentĀ disclosure,Ā theĀ harmonicĀ reducerĀ 100Ā mayĀ beĀ usedĀ inĀ variousĀ devicesĀ orĀ machines,Ā suchĀ asĀ industrialĀ robots,Ā electricĀ tools,Ā andĀ automobiles.Ā ForĀ example,Ā theĀ harmonicĀ reducerĀ 100Ā mayĀ beĀ usedĀ forĀ drivingĀ aĀ jointĀ ofĀ anĀ industrialĀ robot.
WhileĀ severalĀ inventiveĀ embodimentsĀ haveĀ beenĀ describedĀ andĀ illustratedĀ herein,Ā thoseĀ ofĀ ordinaryĀ skillĀ inĀ theĀ artĀ willĀ readilyĀ envisionĀ aĀ varietyĀ ofĀ otherĀ meansĀ and/orĀ structuresĀ forĀ performingĀ theĀ functionĀ and/orĀ obtainingĀ theĀ resultsĀ and/orĀ oneĀ orĀ moreĀ ofĀ theĀ advantagesĀ describedĀ herein,Ā andĀ eachĀ ofĀ suchĀ variationsĀ and/orĀ modificationsĀ isĀ deemedĀ toĀ beĀ withinĀ theĀ scopeĀ ofĀ theĀ inventiveĀ embodimentsĀ describedĀ herein.Ā MoreĀ generally,Ā thoseĀ skilledĀ inĀ theĀ artĀ willĀ readilyĀ appreciateĀ thatĀ allĀ parameters,Ā dimensions,Ā materials,Ā andĀ configurationsĀ describedĀ hereinĀ areĀ meantĀ toĀ beĀ exemplaryĀ andĀ thatĀ theĀ actualĀ parameters,Ā dimensions,Ā materials,Ā and/orĀ configurationsĀ willĀ dependĀ uponĀ theĀ specificĀ applicationĀ orĀ applicationsĀ forĀ whichĀ theĀ inventiveĀ teachingsĀ is/areĀ used.Ā ThoseĀ skilledĀ inĀ theĀ artĀ willĀ recognize,Ā orĀ beĀ ableĀ toĀ ascertainĀ usingĀ noĀ moreĀ thanĀ routineĀ experimentation,Ā manyĀ equivalentsĀ toĀ theĀ specificĀ inventiveĀ embodimentsĀ describedĀ herein.Ā ItĀ is,Ā therefore,Ā toĀ beĀ understoodĀ thatĀ theĀ foregoingĀ embodimentsĀ areĀ presentedĀ byĀ wayĀ ofĀ exampleĀ onlyĀ andĀ that,Ā withinĀ theĀ scopeĀ ofĀ theĀ appendedĀ claimsĀ andĀ equivalentsĀ thereto,Ā inventiveĀ embodimentsĀ mayĀ beĀ practicedĀ otherwiseĀ thanĀ asĀ specificallyĀ describedĀ andĀ claimed.Ā InventiveĀ embodimentsĀ ofĀ theĀ presentĀ disclosureĀ areĀ directedĀ toĀ eachĀ individualĀ feature,Ā system,Ā article,Ā material,Ā kit,Ā and/orĀ methodĀ describedĀ herein.Ā InĀ addition,Ā anyĀ combinationĀ ofĀ twoĀ orĀ moreĀ suchĀ features,Ā systems,Ā articles,Ā materials,Ā kits,Ā and/orĀ methods,Ā ifĀ suchĀ features,Ā systems,Ā articles,Ā materials,Ā kits,Ā and/orĀ methodsĀ areĀ notĀ mutuallyĀ inconsistent,Ā isĀ includedĀ withinĀ theĀ inventiveĀ scopeĀ ofĀ theĀ presentĀ disclosure.

Claims (15)

  1. AĀ harmonicĀ reducerĀ (100)Ā comprising:
    aĀ shaftĀ (4)Ā comprisingĀ aĀ firstĀ throughĀ holeĀ (403)Ā extendingĀ fromĀ aĀ firstĀ endĀ (401)Ā toĀ aĀ secondĀ endĀ (402)Ā ofĀ theĀ shaftĀ (4)Ā inĀ anĀ axialĀ directionĀ (X)Ā ofĀ theĀ shaftĀ (4)Ā ;
    aĀ waveĀ generatorĀ (13)Ā arrangedĀ onĀ theĀ shaftĀ (4)Ā andĀ beingĀ rotatableĀ alongĀ withĀ theĀ shaftĀ (4)Ā ;
    aĀ flexibleĀ splineĀ (11)Ā arrangedĀ aroundĀ theĀ waveĀ generatorĀ (13)Ā ;
    aĀ circularĀ splineĀ (12)Ā arrangedĀ aroundĀ theĀ flexibleĀ splineĀ (11)Ā ;
    aĀ firstĀ flangeĀ (21)Ā coupledĀ toĀ theĀ shaftĀ (4)Ā viaĀ aĀ firstĀ bearingĀ (31)Ā andĀ coupledĀ toĀ theĀ flexibleĀ splineĀ (11)Ā ;Ā and
    aĀ secondĀ flangeĀ (22)Ā coupledĀ toĀ theĀ shaftĀ (4)Ā viaĀ aĀ secondĀ bearingĀ (32)Ā andĀ coupledĀ toĀ theĀ circularĀ splineĀ (12)Ā ,
    whereinĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ flangesĀ (21,Ā 22)Ā isĀ arrangedĀ nearĀ toĀ theĀ firstĀ endĀ (401)Ā ofĀ theĀ shaftĀ (4)Ā ,Ā and
    whereinĀ aĀ cavityĀ (5)Ā isĀ providedĀ betweenĀ theĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ flangesĀ (21,Ā 22)Ā andĀ theĀ firstĀ endĀ (401)Ā ofĀ theĀ shaftĀ (4)Ā ,Ā andĀ isĀ inĀ fluidĀ communicationĀ withĀ anĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ holeĀ (403)Ā .
  2. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 1,Ā furtherĀ comprisingĀ aĀ porousĀ materialĀ (404)Ā arrangedĀ inĀ theĀ firstĀ throughĀ holeĀ (403)Ā .
  3. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 1,Ā furtherĀ comprisingĀ aĀ sealingĀ mechanismĀ (6)Ā configuredĀ toĀ selectivelyĀ allowĀ theĀ cavityĀ (5)Ā toĀ beĀ inĀ fluidĀ communicationĀ withĀ theĀ externalĀ environmentĀ viaĀ theĀ firstĀ throughĀ holeĀ (403)Ā inĀ accordanceĀ withĀ anĀ internalĀ pressureĀ ofĀ theĀ cavityĀ (5)Ā .
  4. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 3,Ā whereinĀ theĀ sealingĀ mechanismĀ (6)Ā comprises:
    aĀ baseĀ elementĀ (60)Ā coupledĀ toĀ theĀ firstĀ endĀ (401)Ā ofĀ theĀ shaftĀ (4)Ā andĀ comprisingĀ aĀ secondĀ throughĀ holeĀ (603)Ā inĀ fluidĀ communicationĀ withĀ theĀ firstĀ throughĀ holeĀ (403)Ā ;
    aĀ firstĀ sealingĀ elementĀ (61)Ā arrangedĀ onĀ theĀ baseĀ elementĀ (60)Ā andĀ comprisingĀ oneĀ orĀ moreĀ openingsĀ (613)Ā andĀ aĀ sealingĀ surfaceĀ (614)Ā surroundingĀ theĀ oneĀ orĀ moreĀ openingsĀ (613)Ā ,Ā theĀ oneĀ orĀ moreĀ openingsĀ (613)Ā beingĀ configuredĀ toĀ communicateĀ theĀ cavityĀ (5)Ā withĀ theĀ secondĀ throughĀ holeĀ (603)Ā ;Ā and
    aĀ secondĀ sealingĀ elementĀ (62)Ā arrangedĀ betweenĀ theĀ firstĀ sealingĀ elementĀ (61)Ā andĀ theĀ baseĀ elementĀ (60)Ā ,Ā andĀ comprisingĀ anĀ elasticĀ sealingĀ lipĀ (622)Ā configuredĀ toĀ contactĀ theĀ sealingĀ surfaceĀ (614)Ā ofĀ theĀ firstĀ sealingĀ elementĀ (61)Ā toĀ blockĀ theĀ communicationĀ betweenĀ theĀ cavityĀ (5)Ā andĀ theĀ secondĀ throughĀ holeĀ (603)Ā whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ (5)Ā isĀ belowĀ aĀ pressureĀ thresholdĀ andĀ configuredĀ toĀ beĀ pushedĀ awayĀ fromĀ theĀ sealingĀ surfaceĀ (614)Ā ofĀ theĀ firstĀ sealingĀ elementĀ (61)Ā toĀ communicateĀ theĀ cavityĀ (5)Ā withĀ theĀ secondĀ throughĀ holeĀ (603)Ā whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ (5)Ā isĀ aboveĀ theĀ pressureĀ threshold.
  5. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 4,Ā whereinĀ theĀ baseĀ elementĀ (60)Ā comprises:
    aĀ mountingĀ partĀ (601)Ā insertedĀ intoĀ theĀ firstĀ throughĀ holeĀ (403)Ā atĀ theĀ firstĀ endĀ (401)Ā ofĀ theĀ shaftĀ (4)Ā ,Ā theĀ secondĀ throughĀ holeĀ (603)Ā beingĀ providedĀ onĀ theĀ mountingĀ partĀ (601)Ā ;Ā and
    aĀ receivingĀ partĀ (602)Ā comprisingĀ aĀ firstĀ receivingĀ spaceĀ (604)Ā ,Ā aĀ secondĀ receivingĀ spaceĀ (605)Ā ,Ā andĀ aĀ stepĀ (606)Ā betweenĀ theĀ firstĀ receivingĀ spaceĀ (604)Ā andĀ theĀ secondĀ receivingĀ spaceĀ (605)Ā ,Ā theĀ secondĀ receivingĀ spaceĀ (605)Ā beingĀ closerĀ toĀ theĀ mountingĀ partĀ (601)Ā thanĀ theĀ firstĀ receivingĀ spaceĀ (604)Ā .
  6. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 5,Ā whereinĀ theĀ firstĀ sealingĀ elementĀ (61)Ā furtherĀ comprises:
    aĀ sealingĀ partĀ (611)Ā arrangedĀ inĀ theĀ firstĀ receivingĀ spaceĀ (604)Ā andĀ supportedĀ byĀ theĀ stepĀ (606)Ā ,Ā theĀ oneĀ orĀ moreĀ openingsĀ (613)Ā andĀ theĀ sealingĀ surfaceĀ (614)Ā beingĀ providedĀ onĀ theĀ sealingĀ partĀ (611)Ā ;Ā and
    aĀ mountingĀ pillarĀ (612)Ā coupledĀ toĀ theĀ sealingĀ partĀ (611)Ā andĀ configuredĀ toĀ mountĀ theĀ secondĀ sealingĀ elementĀ (62)Ā .
  7. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 6,Ā whereinĀ theĀ secondĀ sealingĀ elementĀ (62)Ā furtherĀ comprises:
    aĀ supportingĀ partĀ (621)Ā configuredĀ toĀ supportĀ theĀ elasticĀ sealingĀ lipĀ (622)Ā andĀ comprisingĀ aĀ mountingĀ holeĀ (623)Ā intoĀ whichĀ theĀ mountingĀ pillarĀ (612)Ā ofĀ theĀ firstĀ sealingĀ elementĀ (61)Ā isĀ inserted.
  8. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 4,Ā whereinĀ theĀ baseĀ elementĀ (60)Ā furtherĀ comprisesĀ aĀ grooveĀ (607)Ā atĀ itsĀ outerĀ surface.
  9. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 3,Ā whereinĀ theĀ sealingĀ mechanismĀ (6)Ā comprises:
    aĀ secondĀ sealingĀ elementĀ (62)Ā arrangedĀ atĀ theĀ secondĀ endĀ (402)Ā ofĀ theĀ shaftĀ (4)Ā andĀ comprisingĀ anĀ elasticĀ sealingĀ lipĀ (622)Ā configuredĀ toĀ contactĀ theĀ secondĀ endĀ (402)Ā ofĀ theĀ shaftĀ (4)Ā toĀ blockĀ theĀ communicationĀ betweenĀ theĀ firstĀ throughĀ holeĀ (403)Ā andĀ theĀ externalĀ environmentĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ (5)Ā isĀ belowĀ aĀ pressureĀ thresholdĀ andĀ configuredĀ toĀ beĀ pushedĀ awayĀ fromĀ theĀ secondĀ endĀ (402)Ā ofĀ theĀ shaftĀ (4)Ā toĀ communicateĀ theĀ firstĀ throughĀ holeĀ (403)Ā withĀ theĀ externalĀ environmentĀ whenĀ theĀ internalĀ pressureĀ ofĀ theĀ cavityĀ (5)Ā isĀ aboveĀ theĀ pressureĀ threshold.
  10. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 9,Ā whereinĀ theĀ secondĀ sealingĀ elementĀ (62)Ā furtherĀ comprises:
    aĀ supportingĀ partĀ (621)Ā configuredĀ toĀ supportĀ theĀ elasticĀ sealingĀ lipĀ (622)Ā andĀ comprisingĀ aĀ mountingĀ holeĀ (623)Ā .
  11. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 10,Ā furtherĀ comprisingĀ aĀ pulleyĀ (70)Ā arrangedĀ onĀ theĀ shaftĀ (4)Ā nearĀ toĀ theĀ secondĀ endĀ (402)Ā ofĀ theĀ shaftĀ (4)Ā andĀ beingĀ rotatableĀ togetherĀ withĀ theĀ shaftĀ (4)Ā ,Ā whereinĀ theĀ sealingĀ mechanismĀ (6)Ā furtherĀ comprisesĀ aĀ secondĀ baseĀ elementĀ (63)Ā configuredĀ toĀ supportĀ theĀ secondĀ sealingĀ elementĀ (62)Ā andĀ comprising:
    aĀ pairĀ ofĀ mountingĀ partsĀ (631)Ā coupledĀ toĀ theĀ pulleyĀ (70)Ā ;Ā and
    aĀ secondĀ mountingĀ pillarĀ (632)Ā insertedĀ intoĀ theĀ mountingĀ holeĀ (623)Ā ofĀ theĀ  secondĀ sealingĀ elementĀ (62)Ā toĀ fixĀ theĀ supportingĀ partĀ (621)Ā ofĀ theĀ secondĀ sealingĀ elementĀ (62)Ā .
  12. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 1,Ā furtherĀ comprisingĀ oneĀ orĀ moreĀ channelsĀ (210)Ā arrangedĀ betweenĀ theĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ flangesĀ (21,Ā 22)Ā andĀ correspondingĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ bearingsĀ (31,Ā 32)Ā .
  13. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 12,Ā furtherĀ comprisingĀ aĀ bearingĀ sleeveĀ (71)Ā arrangedĀ aroundĀ theĀ correspondingĀ oneĀ ofĀ theĀ firstĀ andĀ secondĀ bearingsĀ (31,Ā 32)Ā .
  14. TheĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ claimĀ 1,Ā furtherĀ comprising:
    aĀ crossĀ rollerĀ bearingĀ (14)Ā comprisingĀ anĀ outerĀ ringĀ (141)Ā coupledĀ toĀ theĀ flexibleĀ splineĀ (11)Ā andĀ anĀ innerĀ ringĀ (142)Ā coupledĀ toĀ theĀ circularĀ splineĀ (12)Ā .
  15. AnĀ industrialĀ robotĀ comprisingĀ aĀ harmonicĀ reducerĀ (100)Ā accordingĀ toĀ anyĀ ofĀ claimsĀ 1-14.
PCT/CN2020/114056 2020-09-08 2020-09-08 Harmonic reducer and industrial robot Ceased WO2022051910A1 (en)

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US18/007,158 US12104687B2 (en) 2020-09-08 2020-09-08 Harmonic reducer with structure to prevent pressure buildup and industrial robot
PCT/CN2020/114056 WO2022051910A1 (en) 2020-09-08 2020-09-08 Harmonic reducer and industrial robot
CN202080104704.7A CN116209844B (en) 2020-09-08 2020-09-08 Harmonic reducer and industrial robot

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EP4211367B1 (en) 2025-04-16
US12104687B2 (en) 2024-10-01
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EP4211367A1 (en) 2023-07-19
EP4211367A4 (en) 2024-05-15

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