WO2007031497A1 - Filter support for a vacuum cleaner - Google Patents

Filter support for a vacuum cleaner Download PDF

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Publication number
WO2007031497A1
WO2007031497A1 PCT/EP2006/066242 EP2006066242W WO2007031497A1 WO 2007031497 A1 WO2007031497 A1 WO 2007031497A1 EP 2006066242 W EP2006066242 W EP 2006066242W WO 2007031497 A1 WO2007031497 A1 WO 2007031497A1
Authority
WO
WIPO (PCT)
Prior art keywords
filter support
toothed wheel
eccentric mass
spring
actuator
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/EP2006/066242
Other languages
French (fr)
Inventor
Massimiliano Pineschi
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.)
DEM Service SRL
Original Assignee
DEM Service SRL
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 DEM Service SRL filed Critical DEM Service SRL
Priority to DE602006018037T priority Critical patent/DE602006018037D1/en
Priority to US12/066,592 priority patent/US8012225B2/en
Priority to CN2006800404051A priority patent/CN101299955B/en
Priority to AT06793421T priority patent/ATE486513T1/en
Priority to EP06793421A priority patent/EP1933687B1/en
Publication of WO2007031497A1 publication Critical patent/WO2007031497A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/20Means for cleaning filters

Definitions

  • the present invention relates to a filter support for a vacuum cleaner.
  • a canister vacuum cleaner comprises a cylindrical container, which is provided with wheels and encloses a lower collecting chamber intended for collecting sucked material; the collecting chamber has a side opening, at which a flexible pipe is fixed that is used for the suction.
  • the cylindrical container further houses a motor-driven vacuum cleaner, which is arranged above the collecting chamber and communicates with the collecting chamber through a suction opening to generate a vacuum within the collecting chamber .
  • a filter is arranged, which prevents the sucked material in the collecting chamber from passing through the suction opening and then being returned into the environment by the vacuum cleaner.
  • the filter is cup-shaped and is supported by a cradle, which is also cup- shaped and is mounted in a fixed position inside the cylindrical container at the suction opening. It has been noted that after a certain number of hours of operation the filter tends to get clogged, thus increasing the resistance to the passage of the air and decreasing suction power and so suction efficiency.
  • an electric actuator arranged inside the cradle that supports the filter to "shake" periodically the filter, making the cradle vibrate; the filter subjected to this "shaking" releases the material located on the filter, making the material drop back inside the collecting chamber.
  • the electric actuator is mechanically connected to the cradle that supports the filter, rotates an eccentric mass and is driven for short periods at preset time intervals .
  • the object of the present invention is to obtain a filter support for a vacuum cleaner, which filter support is devoid of the drawbacks disclosed above and is easy and cheap to produce .
  • a filter support for a vacuum cleaner is realised according to what is established in the enclosed claims.
  • Figure 1 is a schematic view of a canister vacuum cleaner provided with a filter support realized according to the present invention
  • Figure 2 is a perspective view, that is partially sectioned and with some details removed for clarity, of the filter support in Figure 1 ;
  • Figure 3 is a perspective view of a detail of the filter support in Figure 1 ;
  • Figure 4 is an exploded perspective view of the detail in Figure 3; and Figure 5 is a section view of the filter support in Figure 1.
  • a canister vacuum cleaner which comprises a cylindrical container 2 provided with wheels 3 that encloses a lower collecting chamber 4 provided for collecting the sucked material.
  • the collecting chamber 4 has a side opening 5, at which a flexible pipe 6 is fixed that is used for suction.
  • the cylindrical container 2 further houses a motor-driven vacuum cleaner 7, which is arranged above the collecting chamber 4 and communicates with the collecting chamber 4 through a suction opening 8 to generate a vacuum inside the collecting chamber 4.
  • the filter 9 which prevents the sucked material located in the collecting chamber from passing through the suction opening and then being returned into the environment by the vacuum cleaner 7.
  • the filter is 9 cup-shaped and is supported by a filter support 10, which is also cup-shaped and is mounted on the cylindrical container 2 at the suction opening 8.
  • the filter support 10 comprises a frame 11 consisting of a cup-shaped cradle, around which the filter 9 is fixed, which is also cup-shaped, which is kept in position by two elastic rings 12.
  • the frame 11 is connected to the cylindrical container 2 at the suction opening 8 by means of a connecting ring 13, which is made of elastic material; in particular the connecting ring 13 is on one side connected mechanically to the frame 11 and on the other side is connected mechanically to a flange 14 obtained inside the cylindrical container 2.
  • the presence of the elastic connecting ring 13 enables the frame 11 to vibrate freely with respect to the container 2.
  • the filter support 10 comprises a shaking device 15, which is arranged inside the frame 11 and is suitable for making the frame 11 vibrate.
  • the shaking device 15 comprises a pneumatic actuator 16 provided with a fan 17, which is rotated around a central axis 18 thereof by an air flow that passes through the frame 11 and moves from the collecting chamber 4 to the motor-driven vacuum cleaner 7.
  • the shaking device 15 further comprises an eccentric mass 19, which is rotated around the axis 18 by rotation of the fan 17 and receives motion from a shaft 20 of the fan 17 through a mechanical transmission 21 housed inside a container 22 arranged in a fixed position inside the frame 11.
  • the object of the container 22 is to protect the mechanical transmission 21 from dirt.
  • the mechanical transmission 21 comprises a set 23 of gears that reduces the motion of the shaft 20 of the fan 17 (i.e. reduces rotation speed) and loads a coil-shaped balance-like spring 24 that rotates the eccentric mass 19.
  • the balance-like spring 24 is arranged inside a cup body 25, which is rotatably mounted to rotate around the central axis 18, which supports the eccentric mass 19 and is fixed to an external end of the balance-like spring 24; an internal end of the balance-like spring 24, opposite the external end, is fixed to an outlet of the set 23 of gears and then receives the motion from the shaft 20 of the fan 17 through the set 23 of gears.
  • a retaining mechanism 26 that keeps the eccentric mass 19 stationary with a force of set intensity.
  • the eccentric mass 19 is hinged on the cup body 25 to rotate around a horizontal rotation axis 27 (illustrated in Figure 5) between an engagement position, in which the eccentric mass 19 is in contact with a toothed circular crown 28, and a disengagement position, in which the eccentric mass 19 is not in contact with the toothed circular crown 28.
  • a spring 29 connected between the eccentric mass 19 and the cup body 25 pushes the eccentric mass 19 against the circular crown 28 with a set force.
  • the balance- like spring 24 is loaded in such a way as to exert on the eccentric mass 19 sufficient torque to overcome the force of the spring 29; at this point the eccentric mass 19 detaches from the circular crown 28 and starts to rotate.
  • the eccentric mass 19 rotating around the horizontal rotation axis 27 moves upwards slightly, no longer touching the circular crown 28 until the eccentric mass 19 stops rotating around the axis 18 following the unloading of the balance-like spring 24.
  • the centrifugal force that is generated on the eccentric mass 19 when the eccentric mass 19 rotates around the central axis 18 moves away the eccentric mass 19 from the toothed circular crown 28.
  • the eccentric mass 19 rotates around the axis 18 at high speed for short periods of activity interrupted by longer rest periods, during which the eccentric mass 19 is stationary.
  • the energy generated by the rotation of the fan 17 is accumulated by the balance-like spring 24 and is released during short periods of activity interrupted by longer rest periods, during which the eccentric mass 19 is stationary.
  • This operating mode is particularly advantageous, inasmuch as it enables effective cleaning of the filter 9 to be obtained, reducing to the indispensable minimum the absorption of energy and the mechanical stress.
  • the set 23 of gears comprises a toothed wheel 30 keyed on the shaft 20 of the fan 17 and which engages with a toothed wheel 31 that is integral with a toothed wheel 32 that in turn engages with a toothed wheel 33 connected to the balance-like spring 24.
  • the toothed wheel 30 has a series of teeth on the external periphery thereof, and the toothed wheel 31 is cup- shaped, has a series of teeth on the internal periphery thereof and houses therein the toothed wheel 30.
  • the toothed wheel 32 has a series of teeth on the external periphery thereof, and the toothed wheel 33 is cup-shaped, has a series of teeth on the internal periphery thereof and houses therein the toothed wheel 32.
  • the shaft 20 of the fan 17 is guided by an upper bearing 34 mounted on a spider 35 that is integral with the frame 11 and is guided by a lower bearing 36, which is mounted on an internal plate 37 of the container 22.
  • the toothed wheel 30 is keyed onto, and then supported by, the shaft 20 of the fan 17.
  • the toothed wheel 31 is mounted on a bearing 38 fixed to the frame 11 at the fixing zone between the frame 11 and the container 22; the toothed wheel 32 is integral with the toothed wheel 31 and is therefore supported by the toothed wheel 31.
  • the toothed wheel 33 is supported by the shaft 20 through interposing a bearing 39.
  • the cup body 25 is supported by the external end of the balance-like spring 24 which, in turn, is supported by the toothed wheel 33 to which it is connected at the internal end thereof.
  • the eccentric mass 19 is connected directly to the shaft 20 of the fan 17 to be rotated directly by the fan 17: in other words, the mechanical transmission 21 is not present.
  • This embodiment is constructionally simpler, but on the other hand provides more modest performance and does not enable shaking to be made periodical.
  • the filter support 10 disclosed above has numerous advantages, as it is simple and cheap to actuate, not requiring the use of an electric actuator and of the corresponding electronic control. Further, this filter support 10 can operate without any problem in the presence of humidity or water. Lastly, this filter support 10 is simple to integrate and mount in any type of commercially available canister vacuum cleaner, inasmuch as it does not require any type of connection except for normal mechanical fixing. Obviously, in the light of the numerous advantages, the filter support 1 disclosed above can be used advantageously in any type of vacuum cleaner in which it is necessary to clean the filter periodically.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Filters For Electric Vacuum Cleaners (AREA)
  • Sampling And Sample Adjustment (AREA)
  • Filtering Of Dispersed Particles In Gases (AREA)
  • Nozzles For Electric Vacuum Cleaners (AREA)

Abstract

Filter support (10) for un vacuum cleaner (1); the filter support (10) is provided with a frame (11) suitable for supporting a filter (9) and with a shaking device (15) for making the frame (11) vibrate in use, which has an actuator (16) provided with a fan (17) that is rotated by an air flow that in use passes through the frame (11).

Description

Filter support for a vacuum cleaner
The present invention relates to a filter support for a vacuum cleaner.
The present invention is applied advantageously to a canister vacuum cleaner, to which the description that follows will refer explicitly without thereby losing general relevance. A canister vacuum cleaner comprises a cylindrical container, which is provided with wheels and encloses a lower collecting chamber intended for collecting sucked material; the collecting chamber has a side opening, at which a flexible pipe is fixed that is used for the suction.
The cylindrical container further houses a motor-driven vacuum cleaner, which is arranged above the collecting chamber and communicates with the collecting chamber through a suction opening to generate a vacuum within the collecting chamber .
At the suction opening a filter is arranged, which prevents the sucked material in the collecting chamber from passing through the suction opening and then being returned into the environment by the vacuum cleaner. Normally, the filter is cup-shaped and is supported by a cradle, which is also cup- shaped and is mounted in a fixed position inside the cylindrical container at the suction opening. It has been noted that after a certain number of hours of operation the filter tends to get clogged, thus increasing the resistance to the passage of the air and decreasing suction power and so suction efficiency. In order to prevent or at least limit soiling of the filter, it has been proposed to use an electric actuator arranged inside the cradle that supports the filter to "shake" periodically the filter, making the cradle vibrate; the filter subjected to this "shaking" releases the material located on the filter, making the material drop back inside the collecting chamber. Typically, the electric actuator is mechanically connected to the cradle that supports the filter, rotates an eccentric mass and is driven for short periods at preset time intervals .
Nevertheless, the use of an electric actuator arranged inside the cradle that supports the filter is expensive (also because of the additional electric cables), requires electronic control to drive the electric actuator for short periods at preset time intervals, and poses operating problems in the case of wet or damp environments (typically when the vacuum cleaner is used to suck water or wet materials) . The object of the present invention is to obtain a filter support for a vacuum cleaner, which filter support is devoid of the drawbacks disclosed above and is easy and cheap to produce . According to the present invention a filter support for a vacuum cleaner is realised according to what is established in the enclosed claims.
The present invention will now be disclosed with reference to the enclosed drawings, which show an exemplifying and non- limitative embodiment thereof, in which: Figure 1 is a schematic view of a canister vacuum cleaner provided with a filter support realized according to the present invention;
Figure 2 is a perspective view, that is partially sectioned and with some details removed for clarity, of the filter support in Figure 1 ;
Figure 3 is a perspective view of a detail of the filter support in Figure 1 ;
Figure 4 is an exploded perspective view of the detail in Figure 3; and Figure 5 is a section view of the filter support in Figure 1. In Figure 1, with 1 there is indicated overall a canister vacuum cleaner, which comprises a cylindrical container 2 provided with wheels 3 that encloses a lower collecting chamber 4 provided for collecting the sucked material. The collecting chamber 4 has a side opening 5, at which a flexible pipe 6 is fixed that is used for suction. The cylindrical container 2 further houses a motor-driven vacuum cleaner 7, which is arranged above the collecting chamber 4 and communicates with the collecting chamber 4 through a suction opening 8 to generate a vacuum inside the collecting chamber 4.
At the suction opening 8 there is arranged a filter 9, which prevents the sucked material located in the collecting chamber from passing through the suction opening and then being returned into the environment by the vacuum cleaner 7. The filter is 9 cup-shaped and is supported by a filter support 10, which is also cup-shaped and is mounted on the cylindrical container 2 at the suction opening 8. According to what is illustrated in Figures 2-5, the filter support 10 comprises a frame 11 consisting of a cup-shaped cradle, around which the filter 9 is fixed, which is also cup-shaped, which is kept in position by two elastic rings 12. The frame 11 is connected to the cylindrical container 2 at the suction opening 8 by means of a connecting ring 13, which is made of elastic material; in particular the connecting ring 13 is on one side connected mechanically to the frame 11 and on the other side is connected mechanically to a flange 14 obtained inside the cylindrical container 2. The presence of the elastic connecting ring 13 enables the frame 11 to vibrate freely with respect to the container 2. Further, the filter support 10 comprises a shaking device 15, which is arranged inside the frame 11 and is suitable for making the frame 11 vibrate. The shaking device 15 comprises a pneumatic actuator 16 provided with a fan 17, which is rotated around a central axis 18 thereof by an air flow that passes through the frame 11 and moves from the collecting chamber 4 to the motor-driven vacuum cleaner 7. The shaking device 15 further comprises an eccentric mass 19, which is rotated around the axis 18 by rotation of the fan 17 and receives motion from a shaft 20 of the fan 17 through a mechanical transmission 21 housed inside a container 22 arranged in a fixed position inside the frame 11. The object of the container 22 is to protect the mechanical transmission 21 from dirt.
The mechanical transmission 21 comprises a set 23 of gears that reduces the motion of the shaft 20 of the fan 17 (i.e. reduces rotation speed) and loads a coil-shaped balance-like spring 24 that rotates the eccentric mass 19. In particular, the balance-like spring 24 is arranged inside a cup body 25, which is rotatably mounted to rotate around the central axis 18, which supports the eccentric mass 19 and is fixed to an external end of the balance-like spring 24; an internal end of the balance-like spring 24, opposite the external end, is fixed to an outlet of the set 23 of gears and then receives the motion from the shaft 20 of the fan 17 through the set 23 of gears. Preferably, there is provided a retaining mechanism 26 that keeps the eccentric mass 19 stationary with a force of set intensity. In particular, the eccentric mass 19 is hinged on the cup body 25 to rotate around a horizontal rotation axis 27 (illustrated in Figure 5) between an engagement position, in which the eccentric mass 19 is in contact with a toothed circular crown 28, and a disengagement position, in which the eccentric mass 19 is not in contact with the toothed circular crown 28. A spring 29 connected between the eccentric mass 19 and the cup body 25 pushes the eccentric mass 19 against the circular crown 28 with a set force.
In use, when the vacuum cleaner 1 is switched off the spring 24 is released completely and the fan 17 is stationary; in this situation, the spring 29 pushes the eccentric mass 19 downwards against the toothed circular crown 28. When the vacuum cleaner 1 is switched on, the air flow that moves from the containing chamber 2 to the vacuum cleaner 7 and through the filter support 10 rotates the fan 17 that starts to load the balance-like spring 24; consequently, the balance-like spring 24 starts to apply torque to the eccentric mass 19. Nevertheless, at the start the torque applied to the eccentric mass 19 by the balance-like spring 24 is not sufficient to overcome the force of the spring 29 and so the eccentric mass 19 remains stationary in contact with the toothed circular crown 28. At a certain point, the balance- like spring 24 is loaded in such a way as to exert on the eccentric mass 19 sufficient torque to overcome the force of the spring 29; at this point the eccentric mass 19 detaches from the circular crown 28 and starts to rotate. Through the effect of the centrifugal force generated by the rotation on the eccentric mass 19, the eccentric mass 19 rotating around the horizontal rotation axis 27 moves upwards slightly, no longer touching the circular crown 28 until the eccentric mass 19 stops rotating around the axis 18 following the unloading of the balance-like spring 24. In other words, the centrifugal force that is generated on the eccentric mass 19 when the eccentric mass 19 rotates around the central axis 18 moves away the eccentric mass 19 from the toothed circular crown 28.
From what has been disclosed above, it is clear that in use the eccentric mass 19 rotates around the axis 18 at high speed for short periods of activity interrupted by longer rest periods, during which the eccentric mass 19 is stationary. In other words, the energy generated by the rotation of the fan 17 is accumulated by the balance-like spring 24 and is released during short periods of activity interrupted by longer rest periods, during which the eccentric mass 19 is stationary. This operating mode is particularly advantageous, inasmuch as it enables effective cleaning of the filter 9 to be obtained, reducing to the indispensable minimum the absorption of energy and the mechanical stress.
The set 23 of gears comprises a toothed wheel 30 keyed on the shaft 20 of the fan 17 and which engages with a toothed wheel 31 that is integral with a toothed wheel 32 that in turn engages with a toothed wheel 33 connected to the balance-like spring 24. The toothed wheel 30 has a series of teeth on the external periphery thereof, and the toothed wheel 31 is cup- shaped, has a series of teeth on the internal periphery thereof and houses therein the toothed wheel 30. The toothed wheel 32 has a series of teeth on the external periphery thereof, and the toothed wheel 33 is cup-shaped, has a series of teeth on the internal periphery thereof and houses therein the toothed wheel 32.
The shaft 20 of the fan 17 is guided by an upper bearing 34 mounted on a spider 35 that is integral with the frame 11 and is guided by a lower bearing 36, which is mounted on an internal plate 37 of the container 22. The toothed wheel 30 is keyed onto, and then supported by, the shaft 20 of the fan 17. The toothed wheel 31 is mounted on a bearing 38 fixed to the frame 11 at the fixing zone between the frame 11 and the container 22; the toothed wheel 32 is integral with the toothed wheel 31 and is therefore supported by the toothed wheel 31. The toothed wheel 33 is supported by the shaft 20 through interposing a bearing 39. And lastly, the cup body 25 is supported by the external end of the balance-like spring 24 which, in turn, is supported by the toothed wheel 33 to which it is connected at the internal end thereof.
According to a different embodiment that is not illustrated, the eccentric mass 19 is connected directly to the shaft 20 of the fan 17 to be rotated directly by the fan 17: in other words, the mechanical transmission 21 is not present. This embodiment is constructionally simpler, but on the other hand provides more modest performance and does not enable shaking to be made periodical.
The filter support 10 disclosed above has numerous advantages, as it is simple and cheap to actuate, not requiring the use of an electric actuator and of the corresponding electronic control. Further, this filter support 10 can operate without any problem in the presence of humidity or water. Lastly, this filter support 10 is simple to integrate and mount in any type of commercially available canister vacuum cleaner, inasmuch as it does not require any type of connection except for normal mechanical fixing. Obviously, in the light of the numerous advantages, the filter support 1 disclosed above can be used advantageously in any type of vacuum cleaner in which it is necessary to clean the filter periodically.

Claims

1. Filter support (10) for a vacuum cleaner (1); the filter support (10) comprises a frame (11) suitable for supporting a filter (9) and a shaking device (15) for making the frame (11) vibrate in use; the filter support (10) is characterised in that the shaking device (15) comprises an actuator (16) driven by an air flow that in use passes through the frame (11) .
2. Filter support (10) according to claim 1, wherein the energy generated by the actuator (16) is accumulated by a first spring (24) and is released during short periods of activity interrupted by rest periods.
3. Filter support (10) according to claim 1 or 2, wherein the actuator (16) comprises a fan (17), which is rotated by the air flow that in use passes through the frame
(H) •
4. Filter support (10) according to claim 1, 2 or 3, wherein the shaking device (15) comprises an eccentric mass (19), which is rotated around a central axis (18) by the actuator (16) .
5. Filter support (10) according to claim 4, wherein the eccentric mass (19) is connected directly to a shaft
(20) of the actuator (16) .
6. Filter support (10) according to claim 4, wherein the shaking device (15) comprises a first spring (24) that is loaded by the rotation of the shaft (20) of the actuator (16); the eccentric mass (19) is mechanically connected to the first spring (24) to be rotated by the first spring (24) .
7. Filter support (10) according to claim 6, wherein the first spring (24) is a balance-like spring and comprises an internal end connected to a shaft (20) of the actuator (16) and an external end connected to the eccentric mass (19).
8. Filter support (10) according to claim 7, wherein the spring is arranged inside a cup-shaped body (25) , which cup body (25) is mounted rotatably to rotate around the central axis (18), supports the eccentric mass (19), and is fixed to the external end of the first spring (24) .
9. Filter support (10) according to claim 7 or 8, wherein the shaking device (15) comprises a retaining mechanism
(26), which keeps the eccentric mass (19) stationary with a force of set intensity.
10. Filter support (10) according to claim 9, wherein the eccentric mass (19) is hinged to move between an engagement position, wherein the eccentric mass (19) is in contact with a circular crown (28), and a disengagement position, wherein the eccentric mass (19) is not in contact with the circular crown (28); the shaking device (15) comprises a second spring (29) that pushes the eccentric mass (19) against a circular crown (28) with a set force.
11. Filter support (10) according to claim 10, wherein the circular crown (28) is toothed and has a plurality of radial teeth.
12. Filter support (10) according to claim 10 or 11, wherein the centrifugal force that is generated on the eccentric mass (19) when the eccentric mass (19) rotates around the central axis (18) moves the eccentric mass (19) away from the circular crown (28) .
13. Filter support (10) according to any one of claims 6 to 12, wherein the first spring (24) is connected to a shaft (20) of the actuator (16) through a set (23) of gears that reduces the rotation speed to the first spring (24) .
14. Filter support (10) according to claim 13, wherein the set (23) of gears comprises a first toothed wheel (30) keyed onto the shaft (20) of the actuator (16) and which engages with a second toothed wheel (31) that is integral with a third toothed wheel (32) that in turn engages with a fourth toothed wheel (33) connected to the first spring (24) .
15. Filter support (10) according to claim 14, wherein the first toothed wheel (30) has a series of teeth on the external periphery thereof and the second toothed wheel
(30) is cup-shaped, has a series of teeth on the internal periphery thereof and houses therein the first toothed wheel (30); the third toothed wheel (32) has a series of teeth on the external periphery thereof, and the fourth toothed wheel (33) is cup-shaped, has a series of teeth on the internal periphery thereof and houses therein the third toothed wheel (32) .
16. Filter support (10) according to claim 15, wherein the first toothed wheel (30) is keyed on the shaft (20) of the actuator (16); the second toothed wheel (31) is mounted on a first bearing (38) fixed to the frame (11); the third toothed wheel (32) is integral with the second toothed wheel (31); the fourth toothed wheel (33) is supported by the shaft (20) of the actuator (16) through interposing a second bearing (39) .
17. Filter support (10) according to any one of claims 13 to 16, wherein the set (23) of gears, the first spring (24) and the eccentric mass (19) are arranged inside a container arranged in a fixed position inside the frame (11) •
18. Filter support (10) according to any one of claims 1 to 17, wherein the frame (11) consists of a cup-shaped cradle, inside which the shaking device (15) is arranged.
19. Filter support (10) according to any one of claims 1 to 18, and comprising a connecting ring (13), which is made of elastic material and on one side is connected mechanically to the frame (11) and on the other side is suitable for being connected mechanically to the vacuum cleaner (1) .
PCT/EP2006/066242 2005-09-12 2006-09-11 Filter support for a vacuum cleaner Ceased WO2007031497A1 (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
DE602006018037T DE602006018037D1 (en) 2005-09-12 2006-09-11 FILTER CARRIER FOR A VACUUM CLEANER
US12/066,592 US8012225B2 (en) 2005-09-12 2006-09-11 Filter support for a vacuum cleaner
CN2006800404051A CN101299955B (en) 2005-09-12 2006-09-11 Filter holder for vacuum cleaners
AT06793421T ATE486513T1 (en) 2005-09-12 2006-09-11 FILTER CARRIER FOR A VACUUM CLEANER
EP06793421A EP1933687B1 (en) 2005-09-12 2006-09-11 Filter support for a vacuum cleaner

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT000553A ITBO20050553A1 (en) 2005-09-12 2005-09-12 SUPPORT FOR FILTER FOR AN ASPIRATOR
ITBO2005A000553 2005-09-12

Publications (1)

Publication Number Publication Date
WO2007031497A1 true WO2007031497A1 (en) 2007-03-22

Family

ID=37401079

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/EP2006/066242 Ceased WO2007031497A1 (en) 2005-09-12 2006-09-11 Filter support for a vacuum cleaner

Country Status (7)

Country Link
US (1) US8012225B2 (en)
EP (1) EP1933687B1 (en)
CN (1) CN101299955B (en)
AT (1) ATE486513T1 (en)
DE (1) DE602006018037D1 (en)
IT (1) ITBO20050553A1 (en)
WO (1) WO2007031497A1 (en)

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EP1977672A1 (en) * 2007-04-04 2008-10-08 Black & Decker, Inc. Filter cleaning mechanisms
EP2119389A2 (en) 2008-05-16 2009-11-18 Nilfisk-Advance S.p.A. Improved filtering means and floor-sweeping machine provided with such means
ITMO20090293A1 (en) * 2009-12-16 2011-06-17 Aertecnica S P A FILTER FOR AN ASPIRATOR SYSTEM
WO2017001836A1 (en) * 2015-07-01 2017-01-05 Dyson Technology Limited A separating apparatus
US10842332B2 (en) 2015-07-01 2020-11-24 Dyson Technology Limited Separating apparatus

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US8167964B2 (en) * 2009-04-09 2012-05-01 Lau Ying Wai Cyclonic chamber for air filtration devices
US8393050B2 (en) * 2009-10-28 2013-03-12 Robert M. Witter Portable cyclonic dust collector/vacuum cleaner
US9204578B2 (en) * 2010-02-09 2015-12-01 It Aire Inc. Systems and methods for cooling data centers and other electronic equipment
US20110258806A1 (en) * 2010-04-21 2011-10-27 Wei-Teh Ho Vacuum cleaner
CN103156553A (en) * 2011-12-15 2013-06-19 乐金电子(天津)电器有限公司 Front-arranged filter, capable of self vibration cleaning, of motor
US9038236B2 (en) 2012-04-25 2015-05-26 Shop Vac Corporation Filter shaker
JP6059283B2 (en) * 2015-04-20 2017-01-11 富士フィルター工業株式会社 Filtration unit
KR101661314B1 (en) * 2016-03-07 2016-09-29 김현태 Dust remover for vacuum cleaner
CN107587464A (en) * 2016-07-08 2018-01-16 苏州宝时得电动工具有限公司 Blower
CN106821139A (en) * 2017-04-12 2017-06-13 兖州煤业股份有限公司 A kind of dust catcher
CN111467901A (en) * 2020-04-16 2020-07-31 高邮成鑫金属制造有限公司 Curtain type smoke dust treatment and purification system for hot galvanizing
CN112034952B (en) * 2020-08-03 2021-10-29 苏州浪潮智能科技有限公司 A fan frame with vibration suppression function

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EP1933687A1 (en) 2008-06-25
CN101299955B (en) 2010-07-28
EP1933687B1 (en) 2010-11-03
DE602006018037D1 (en) 2010-12-16
CN101299955A (en) 2008-11-05
US8012225B2 (en) 2011-09-06
US20090113662A1 (en) 2009-05-07
ATE486513T1 (en) 2010-11-15
ITBO20050553A1 (en) 2007-03-13

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