EP0056030A1 - Austauschbarer schneiddrehbeissel - Google Patents

Austauschbarer schneiddrehbeissel

Info

Publication number
EP0056030A1
EP0056030A1 EP19810901448 EP81901448A EP0056030A1 EP 0056030 A1 EP0056030 A1 EP 0056030A1 EP 19810901448 EP19810901448 EP 19810901448 EP 81901448 A EP81901448 A EP 81901448A EP 0056030 A1 EP0056030 A1 EP 0056030A1
Authority
EP
European Patent Office
Prior art keywords
cutter
assembly
swivel assembly
axis
workpiece
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.)
Withdrawn
Application number
EP19810901448
Other languages
English (en)
French (fr)
Inventor
Edward W. Haug
George E. Fransson
Roger L Hackman
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.)
Schneider Electric Buildings Americas Inc
Original Assignee
Barber Colman Co
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 Barber Colman Co filed Critical Barber Colman Co
Publication of EP0056030A1 publication Critical patent/EP0056030A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23FMAKING GEARS OR TOOTHED RACKS
    • B23F5/00Making straight gear teeth involving moving a tool relatively to a workpiece with a rolling-off or an enveloping motion with respect to the gear teeth to be made
    • B23F5/20Making straight gear teeth involving moving a tool relatively to a workpiece with a rolling-off or an enveloping motion with respect to the gear teeth to be made by milling
    • B23F5/22Making straight gear teeth involving moving a tool relatively to a workpiece with a rolling-off or an enveloping motion with respect to the gear teeth to be made by milling the tool being a hob for making spur gears
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23FMAKING GEARS OR TOOTHED RACKS
    • B23F23/00Accessories or equipment combined with or arranged in, or specially designed to form part of, gear-cutting machines
    • B23F23/12Other devices, e.g. tool holders; Checking devices for controlling workpieces in machines for manufacturing gear teeth
    • B23F23/1237Tool holders

Definitions

  • This apparatus relates to the generation of shapes on a workpiece by various shape generation methods, such as gear hobbing, shaping, and shaving. More particularly, this invention relates to improvements in orbital shape generating apparatus which substan tially increases the productivity and efficiency capabilities of the machine.
  • An orbital shape generating apparatus as disclosed in the co-pending application of Fransson et al. Serial No. 41,680 of common ownership with this application, is typically a machine which can be utilized to manufacture only a limited range of parts since the gear ratios and helix angle required for a particular shape generating application are built into the apparatus and are not readily changeable. Consequently, in an orbital hobbing apparatus, for example, cutting different numbers of teeth on different size workpieces requires completely separate orbital hobbing machines dedicated to the particular application and having the desired gear ratios and helix angle built into the machine.
  • the productivity and efficiency of an orbital shape generating machine is enhanced by providing a replaceable cutter swivel assembly which is adapted to be mounted upon a planetary assembly of the machine so that the cutter swivel assembly and its associated cutter are orbited about the workpiece during the shape generating operation.
  • the cutter swivel assembly is provided with a gear train for driving the rotating cutter such that the swivel assembly has the required gear ratios and helix angle for the particular shape generating operation being performed.
  • This design allows for quickly changing the entire swivel assembly and its dedicated gear train so as to facilitate rapid set-up of the machine for operating on a particular workpiece.
  • the cutter swivel assembly is preferably further provided with means for adjusting the distance between the workpiece axis and the cutter axis so as to facilitate adjusting or presetting the position of the swivel assembly on the planetary assembly for a predetermined depth of cut. This allows for performing set-up operations on a presetting fixture while the machine continues to operate with another cutter swivel assembly in place.
  • FIG. 1 is a side elevational view of a typical orbital hobbing machine.
  • Fig. 2 is a side view, partially in section, of the planetary assembly and helical hob swivel assembly of an orbital hobbing machine according to the invention.
  • Fig. 3 is an end view of the planetary assembly and a straight hob swivel assembly mounted thereon in an orbital hobbing machine according to the invention.
  • Fig. 4 is a side view of a presetting fixture with a straight hob swivel assembly mounted thereon.
  • Fig. 5 is a front view of a presetting fixture with a helical hob swivel assembly mounted thereon.
  • Fig. S is a view taken along the line 6-6 in Fig. 4 showing the position of the hob swivel assembly on the swivel table of the presetting fixture.
  • a typical orbital hobbing machine generally indicated at 10, comprises a casing 11 mounted on base 12 and being capable of lateral movement in the direction of the arrows.
  • a hob head 13 is drivingly connected to a planetary gear assembly within casing 11 which is driven by means of drive shaft 14 so that hob head 13 and its associated hob 15 may be orbited about a workpiece 16 during a hobbing operation.
  • Hob head 13 is also provided with a gear train for rotating the hob 15 in timed relation with the orbital rotation of the hob head and the lateral movement of casing 11 which is accomplished by means of actuator 17.
  • the machine shown in Fig. 1 is exemplary of the type of orbital shape generating apparatus described in co-pending Serial No. 41,680. The present invention is described with reference to the same elements shown in Fig. 1 with the exception of hob head 13.
  • an orbital hobbing machine is provided with a planetary assembly 20, as shown in Figs. 2 and 3, which is located within casing 11 and is further provided with an associated hob swivel assembly 50 (50' in Fig. 3) which can be detached from planetary assembly20.
  • Fig. 2 is shown with a helical hob swivel assembly 50
  • Fig. 3 is shown with a straight hob swivel assembly 50 ' .
  • Hob swivel assembly components in Fig. 3 which correspond to components in Fig. 2 are identified with the same number plus a prime sign ('). Similar designations are used in Figs. 4 and 5.
  • Planetary assembly 20 comprises a back housing 21 and a front housing 22 which are secured together by means of screws 19.
  • a planetary support member 23 is mounted for rotation within back housing 21 by means of bearings 24, 25.
  • Drive shaft 14 is in turn mounted within support member 23 for relative rotation there with by means of bearings 26, 27.
  • a backplate 28 carrying an oil seal 29 is fixed to back housing 21 by means of screws 30 so as to seal the rear end of planetary assembly 20.
  • a face plate 31 is provided which pilots into front housing 22 and is secured to planetary support member 23 by means of screws 32 and is supported in front housing 22 by means of bearing 33.
  • a jack shaft 34 is supported for rotation in planetary support member 23 by means of bearing 35 and in faceplate 31 by means of bearing 36.
  • a drive gear 37 is fixed on the end of shaft 14 between bearing 27 and retaining nut 39 which is threaded on the end of shaft 14.
  • Drive gear 37 mates with a driven gear 38 which is mounted on jack shaft 34 as shown.
  • a retaining nut 40 is threaded onto shaft 14 against bearing 26 so as to cooperate with nut 39 to maintain shaft 14 in proper axial position.
  • Jack shaft 34 is further provided with an integral planet gear 41.
  • an internal ring gear 42 is provided which mates with planet gear 41. Ring gear 42 may be fixedly supported in convenient fashion within back housing 21 and front housing 22.
  • ring gear 42 is mounted for relative rotation with respect to housings 21, 22 by means of bearings 43, 44 and is further provided with external teeth 45 for mating with a rack 46 to permit cutting of helical gears as more fully described in co-pending application Serial No. 41,680.
  • Helical hob swivel assembly 50 comprises means for positioning and mounting swivel assembly 50 such as a swivel base 51 adapted to be secured to faceplate 31 by means of screws 52 which extend through slotted holes 53 and are threaded into faceplate 31.
  • Swivel base 51 is provided with a hob slide 54 which supports an end portion 55a of spindle shaft 55 and its associated arbor 56 by means of bearings 57, 58.
  • Hob 15 is supported upon arbor 56 and is secured in position by means of sleeve 59 which is supported within end support portion 61 by means of bearings 60, sleeve 59 in turn supporting end portion 55b of spindle shaft 55.
  • cutter swivel assembly 50 is provided with a gear, train 66 compri'sing a drive bevel gear 67 a mating driven bevel gear 68, a transmission gear 69 and a spindle gear 70.
  • Driven bevel gear 68 is fixed as shown on an end 71a of shaft 71 which is in turn mounted for rotation by means of bearings 72, 73.
  • Transmission gear 69 integral with shaft 71 and displaced axially from bevel gear 68, drives spindle gear 70 which is fixed on spindle shaft55 between bearings 57, 58.
  • the shaft 74 of bevel gear 67 is supported for rotation within housing 75 by means of bearings 76, the bearings and bevel gear being retained in position by means of ring nut 77 threaded on the end of shaft 74.
  • Housing 75 is secured to swivel base 51 by means of screws 79.
  • faceplate 31 is provided with an opening 80 for receiving housing 75.
  • Bevel gear shaft 74 is provided with a splined hole;81 which in turn receives the splined end portion 82 of shaft 34 to establish a rotational driving relationship between shaft 34 and bevel gear 67.
  • the gear elements of gear train 66 as described above establish the particular helix angle and gear ratios required for cutting a specified gear during a hobbing operation.
  • an orbital hobbing machine was dedicated to cutting a particular part since the complete drive train from shaft 14 and drive gear 37 through spindle 55 and its associated spindle gear 70 comprised a single unit.
  • the orbital hobbing machine can be used for different gear cutting applications by simply replacing one hob swivel assembly with another hob swivel assembly having the desired gear ratios and helix angle built into it.
  • a hob swivel assembly permits an orbital hobbing machine to be used for cutting both helical and spur gears by providing a hob swivel assembly having a pair of bevel gears set at the desired helix angle as shown in Fig. 2.
  • hob swivel assembly 50 is provided with means for adjusting the distance between the hob axis and the workpiece axis to obtain the desired depth of cut.
  • this adjusting means comprises an adjusting screw 33', best seen in Fig. 3, which is threaded through a rib 84' on swivel base 51'.
  • a set screw 86' perpendicular to screw 83' is threaded into rib 84' to hold screw 83' in position after adjustment.
  • the swivel assembly When hob swivel assembly 50 is mounted on planetary assembly 20, the swivel assembly can be rotated about a swivel axis corresponding to the axis of bevel gear 67 until the threaded end of screw 83 abuts against an abutment such as dowel pin 85 fixed in faceplate 31, slotted screw holes 53 facilitating rotational movement of hob swivel assembly 50.
  • Rotation of adjusting screw 83 when in abutting relationship with pin 85 permits adjustment of the distance between the axis of hob 15 and the axis of workpiece 16 so that the proper depth of cut can be established for various workpiece and hob sizes. As shown in Fig.
  • the centers of bevel gear 67 and dowel pin 85 are located along a line passing through the axis of the planetary assembly. While this particular relationship is not necessarily required the device is constructed in this fashion so that the relationships can be easily duplicated in a presetting fixture as will be more fully described below.
  • presetting fixture 90 comprises a base 91 supporting a C-type frame having a swivel table 93 for supporting a hob swivel assembly 50.
  • An indicator assembly 94 is mounted on a vertical spindle 95 which is mounted for rotation by means of bearings 96 within sleeve 97 which is in turn supported within sleeve supporting portion 98 of frame 92.
  • Sleeve 97 is retained in position by means of ring nut 99 threaded onto the threaded end portion 100 of sleeve 97.
  • the vertical position of sleeve 97, spindle 95 and indicator assembly 94 can be adjusted through rotation of ring nut 99.
  • Ring nut 99 has an associated retaining bar 101 adapted to prevent vertical movement of ring nut 99.
  • Indicator assembly 94 has a mounting bar 102 which supports a micrometer 103, an indicator 104, and a contact slide 105.
  • Swivel table 93 is provided with a bore 108 for receiving housing 75 of swivel assembly 50. Swivel table 93 is further provided with a dowel pin 109 positioned such that adjusting screw 83 of swivel assembly 50 can be brought into abutting relationship with pin 109.
  • Fig. 4 is shown with a straight hob swivel assembly 50 ' positioned on swivel table 93 and Fig.
  • FIG. 5 is shown with a helical hob swivel assembly 50 positioned on swivel table 93.
  • bore 108 and pin 109 are located along a line passing through the center of swivel table 93 which corresponds to the axis of the planetary assembly 20 shown in Fig. 2.
  • the positions of bore 108 and pin 109 correspond precisely with the positions of pilot opening 80 and dowel pin 85 on the planetary assembly so that a position obtained on swivel table 93 by means of adjusting screw 83' will be duplicated exactly when the hob swivel assembly 50 is subsequently mounted on planetary assembly 20.
  • a method of presetting the hob swivel assembly will now be described in more detail. Referring to Fig.
  • hob swivel assembly 50' is first mounted on swivel table 93 and positioned so that adjusting screw 83' is proximate to dowel pin 109.
  • the ultimate result desired is that the outer circumference of the hob teeth be brought through adjustment of screw 83' to a position tangent to the root circle diameter of the workpiece to be cut thereby establishing the desired depth of cut.
  • Indicator assembly 94 is preferably so constructed that the axis of spindle 95 falls within the vertical plane of contact surface 105a when micrometer 103 is set at zero. In setting up the fixture, micrometer 103 is adjusted to a reading equal to the desired root circle radius for the workpiece 16 and the reading on indicator 107 is noted.
  • Indicator assembly 94 is then lowered by means of ring nut 99 to a position in which the vertical contact surface 105a of slide 105 is adjacent to the outer circumference of the hob teeth as shown in phantom in Fig. 4.
  • Hob 15 is then brought into contact with contact surface 105a through rotation of hob swivel assembly 50' about its swivel axis.
  • the hob is then rotated about its axis to the high point on a hob tooth so as to obtain a maximum displacement reading on indicator 104.
  • Hob swivel assembly 50' is then rotated about its swivel axis until the notea reading of indicator 104 is reached, this position corresponding precisely with contact between contact surface 105a and the end of micrometer rod 107. Adjusting screw 33' is then rotated until it abuts against pin 109 while maintaining the noted reading on indicator 104, and set screw 86' is tightened against screw 83'. At this point, adjusting screw 33' is properly set so that when the hob swivel assembly is subsequently mounted on planetary assembly 20 with screw 83' in abutting relationship with pin 85, the required relationship between hob 15 and workpiece 16 will have been obtained.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Gear Processing (AREA)
EP19810901448 1980-07-21 1981-04-30 Austauschbarer schneiddrehbeissel Withdrawn EP0056030A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US17036980A 1980-07-21 1980-07-21
US170369 1980-07-21

Publications (1)

Publication Number Publication Date
EP0056030A1 true EP0056030A1 (de) 1982-07-21

Family

ID=22619602

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19810901448 Withdrawn EP0056030A1 (de) 1980-07-21 1981-04-30 Austauschbarer schneiddrehbeissel

Country Status (2)

Country Link
EP (1) EP0056030A1 (de)
WO (1) WO1982000263A1 (de)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102013012660A1 (de) * 2013-07-30 2015-02-05 Gleason-Pfauter Maschinenfabrik Gmbh Verzahnungsmaschine und Verfahren zum Bearbeiten einer Verzahnung

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1269857A (en) * 1916-11-21 1918-06-18 George Richards Milling screw-threads.
US1386279A (en) * 1920-04-08 1921-08-02 Richards Thread Milling Machin Milling screw-threads
US2312354A (en) * 1942-05-16 1943-03-02 Gordon R Company Attachment for milling machines
US2451497A (en) * 1944-09-22 1948-10-19 Frederick J Kratchman Thread miller
US2553669A (en) * 1947-11-13 1951-05-22 Plan O Mill Corp Planetary milling machine
US2802320A (en) * 1956-10-26 1957-08-13 Frank T Donaghy Grinding attachment for machine tools
US3533195A (en) * 1968-04-22 1970-10-13 Rockwell Mfg Co Jig grinder head
US3762272A (en) * 1968-05-23 1973-10-02 Fresco Ind Inc Self-adjusting extensible gear train and assemblies containing same
US3690220A (en) * 1970-04-29 1972-09-12 Fresco Ind Inc Helically-tracking milling assembly with tiltable thread cutting head
SU582920A1 (ru) * 1976-03-09 1977-12-05 Предприятие П/Я В-8721 Устройство дл фрезеровани
US4125057A (en) * 1976-03-31 1978-11-14 Cox Kris E Planetary milling machine

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO8200263A1 *

Also Published As

Publication number Publication date
WO1982000263A1 (en) 1982-02-04

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Legal Events

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PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

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AK Designated contracting states

Designated state(s): FR

STAA Information on the status of an ep patent application or granted ep patent

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18D Application deemed to be withdrawn

Effective date: 19820916

RIN1 Information on inventor provided before grant (corrected)

Inventor name: FRANSSON, GEORGE E.

Inventor name: HACKMAN, ROGER L

Inventor name: HAUG, EDWARD W.