GB2209009A - Positive feed drill with clutch operated feed - Google Patents

Positive feed drill with clutch operated feed Download PDF

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Publication number
GB2209009A
GB2209009A GB8720209A GB8720209A GB2209009A GB 2209009 A GB2209009 A GB 2209009A GB 8720209 A GB8720209 A GB 8720209A GB 8720209 A GB8720209 A GB 8720209A GB 2209009 A GB2209009 A GB 2209009A
Authority
GB
United Kingdom
Prior art keywords
feed
shaft
drill
gear
drive
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.)
Granted
Application number
GB8720209A
Other versions
GB8720209D0 (en
GB2209009B (en
Inventor
George Robert Silk
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.)
Silk Engineering Derby Ltd
Original Assignee
Silk Engineering Derby Ltd
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 Silk Engineering Derby Ltd filed Critical Silk Engineering Derby Ltd
Priority to GB8720209A priority Critical patent/GB2209009B/en
Publication of GB8720209D0 publication Critical patent/GB8720209D0/en
Publication of GB2209009A publication Critical patent/GB2209009A/en
Application granted granted Critical
Publication of GB2209009B publication Critical patent/GB2209009B/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q11/00Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling work; Safety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
    • B23Q11/04Arrangements preventing overload of tools, e.g. restricting load
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q5/00Driving or feeding mechanisms; Control arrangements therefor
    • B23Q5/22Feeding members carrying tools or work
    • B23Q5/32Feeding working-spindles

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Drilling And Boring (AREA)

Abstract

The drill (10) includes a drive for the axial feed of the drill incorporating a clutch mechanism (52). The clutch mechanism (52) includes a driven gear (60) which is loaded by springs (68) into contact with a plurality of balls (70) which are mounted in a cage (74). Each ball engages in a respective recess (74) in the face of the gear wheel (60) and a corresponding recess (78) in a flange (76) of a drive member of a feed shaft (54). The feed shaft (54) operates via a splined feed drive shaft (56), a thrust bearing (88) and ring (90) on a shaft (82) carrying the drill tool. <IMAGE>

Description

POSITIVE FEED DRILLS This invention relates to positive feed drills of the type in which the drill has a rotatable shaft assembly having two parts which are axially movable relative one to another. The axially movable part of the shaft assembly has a positive axial feed drive.
The present invention seeks to provide a positive axial feed drive for the axial feed which includes an overload mechanism to prevent the drive to the axial feed being continued in the event of the feed rate being excessive.
Accordingly, the present invention provides a positive feed drill having an axial feed drive incorporating a clutch mechanism.
The clutch mechanism can comprise a spring loaded drive member and a rotatably drivable member of the axial feed mechanism and a plurality bf balls in mounting means located between said drive and drivable members, each of said balls being locatable in corresponding recesses in each said drive and drivable members.
The present invention will now be more particular described with reference to the accompanying drawings in which Fig. 1 is a sectional elevation of one form of positive feed drill according to the present invention, Fig. 2 is an end elevation of the feed mechanism housing of the drill shown in Fig. 1, Fig. 3 is a part section on line 3-3 in Fig. 1, Fig. 4 is a sectional elevation of a hand drive of the drill shown in Fig. 1 and Fig. 5 shows a motor drive for the drill shown in Fig. 1.
Referring to the drawings and in particular to Fig. 1, a positive feed drill 10 has a casing which comprises a gear box 12 with a cover 14, and a first support tube 16 attached to the end of the gear box 12 opposite to that of the cover 14 by means of screws (not shown). A second support tube 18 is secured to the first support tube 16 by means of screws (not shown) which also pass through and hold in place a feed mechanism 20 which is thereby clamped between adjacent ends of the first and second support tubes.
The gear box 12 contains a gear 22 mounted on a secured to a main drill shaft 24 of a shaft assembly, the gear 22 being also mounted within a ball bearing 26 located in the cover 14. The gear 22 is driven by an air motor 28 (see Fig. 5) through a shaft 30 and a gear 32 which meshes with the gear 22, the shaft 30 being mounted within a ball bearing 34 which is also mounted in the cover 14. A layshaft 36 is mounted in a needle roller bearing 38 in a bearing support plate 40 and a needle roller bearing 42 in the gear box 12. A helical axial feed gear 44 and a driven feed gear 46 are also mounted on and secured to the shaft 36. A worm wheel 48 (see Fig. 4 also) engages with a pinion gear 50 on the shaft 24 and the gear 44 on the shaft 36.The gear 46 also on the shaft 36 engages with a clutch mechanism indicated generally at 52 in order to drive a feed drive comprising a drive shaft 54 to which is keyed a driven shaft 56, the drive shaft 54 being located in a ball bearing 58 secured in the wall of the gear box 12.
The clutch mechanism 52 comprises a gear 60 which engages with the gear 46, a spring plate 62 which is prevented from moving axially by means of set screws 64, a shim 66 in contact with the spring plate and a spring 68 bearing against the shim plate and a surface of the gear 60. The action cf the spring urges the gear into contact with a plurality of balls 70 in a cage 72. The balls are seated in recesses 74 in the gear 60 and recesses 76 in a flange 78 on the drive shaft 54.
The drive shaft 54 has a spline connection 80 with a drill shaft 82 which is mounted in a bush 84 and a double needle roller bearing 86. A double taper roller thrust bearing 88 is interposed between the end of the drive shaft 56 and the drill shaft 82 and the bearing 88 is in contact with a thrust washer 90 on the drill shaft 82.
The driven shaft 56 of the feed drive is formed with an external thread and rotates with the driven shaft 54 of the feed drive but is movable axially relative to the shaft 54 by the operation of the feed mechanism 20.
The feed mechanism 20 comprises a housing 92 (Fig. 2) having an outer annulus 94 with openings 96 for the passage of the screws securing the support tubes 16 and 18 together with the feed mechanism 20 being clamped between the two support tubes. The housing 92 has a central bore 98 and an inner annulus 100 having three equispaced radial openings 102. A cam plate 104 is mounted within the housing 92 and has three slots 106 and pins 108 mounted in rollers 110 are located in each cam slot 106, each pin carrying a part nut 112 located within a respective one of the openings 102. The slots 106 are so shaped at each end that the pins 108 carrying the part nuts 112 cannot move along the slot thereby preventing radial movement of the part nuts, particularly when the part nuts are in engagement with the thread on the shaft 56.Each part nut is formed with a thread which is engageable with the thread on the shaft 56. The cam plate has a feed handle 114 terminating in a knob 116, the feed handle extending through a slot 118 formed in the annulus 94 of the housing 92. The cam plate 104 and the housing 92 are provided with a detent mechanism 120 in order to assist in maintaining the cam plate in a desired position, for example, when the feed handle is at one or both ends of the slot 118. The detent mechanism comprises a ball 122 loaded by a spring 124 into a recess 126 formed on the cam plate.
Referring particularly to Fig. 4, the worm wheel 48 is attached to a selector shaft 128 by means of a key 130 loaded by a spring 132, the shaft being mounted in bearings 134 and 136 in the gear box 12. The shaft 128 has a further gear 138 and a spring loaded plunger 140 engageable with one or other of the recesses 142, 144 in an outer tubular shaft 146. The shaft 128 is movable axially and can be rotated by means of the handle 148.
The main shaft 24 as well as being mounted in the bearing 26 by means of the gear 22 is also mounted in a further ball bearing 150 in the bearing support plate 40 is also mounted in a double needle roller bearing 152 which is located between the shaft 24 and the drive shaft 54 of the feed drive.
In use, a drill chuck on a tapered arbor (not shown) is positioned within the end opening in the drill shaft 82. The air motor 28 is operated to drive the gear 22 on the shaft 24 via the air motor shaft 30 and gear 32. Thus, the drill shaft 82 is also rotatably driven by virtue of the spline connection 80 with the drive shaft 24.
The rotation of the shaft 24 rotates the worm wheel 48 and thereby the gear 44, shaft 36 and gear 46. The engagement of the gear 46 with the gear 60 and the operation of the clutch mechanism 52 causes rotation of the shaft 54 of the feed drive and the shaft 56 by virtue of the keyed connection between the two shafts 54 and 56.
In order to engage the feed to drive the drill shaft 82 axially relative to the shaft 24, the cam plate 104 is moved by moving the feed handle along the slot 118 in the housing 92 of the feed mechanism. The camming action of the slots 106 cause the part nuts 112 to move axially inward through the openings 102 in the annulus 100 of the housing 92 and the threads on the part nuts engage with the external thread on the shaft 56 of the feed drive.
Since the shaft 56 is rotating, the engagement of the shaft with the part nuts causes the shaft 56 to move axially on the keyed connection with respect to the shaft 54 and through the thrust bearing 88 and thrust washer 90 causes the drill shaft 82 to move axially relative to the shaft 24 on the splines forming the spline connection 80.
The drill will continue to rotate and the axial feed will continue to function until either the operation of the air motor 28 is discontinued, the feed mechanism is disengaged by returning the feed handle 114 on the cam plate 104 to its original position in the slot 118 or when the end of the thread on the shaft 56 is reached. In that latter event, or if the combination of drill RPM and feed rate are too excessive, then the clutch mechanism 52 will operate and the gear 60 will slip on the balls 70 against the load set by the spring 68. Once slipping takes place the drive to the shaft 54 will be discontinued and any axial movement of the drill shaft 82 will cease. Thus the clutch mechanism 52 provides an overload safety device. It will be apparent that the load exerted by the spring 68 can be adjusted to suit the overload limit which is required for any particular circumstance.
The provision of the bearings 26, 150 and 152 at one extremity of the shaft 24, the thrust bearing at the point of contact between the shafts 24 and 82 and the bush 84 on the drill shaft 82 combine to ensure that the drill rotational drive remains rigid and the axis of rotation of the shafts 24 and 82 remain coincident throughout the extent of the feed.
The feed mechanism 20 provides a simple, rugged and efficient means of engaging the axial feed from the shaft 56 to the drill shaft 82 which will not disengage under load, not only by virtue of the inherent features of the design, but assisted by the operation of the detent mechanism 120.
In the event that it is required to provide a hand feed whilst the drill shaft 24 is driven by the air motor, the selector shaft 128 is moved axially to disengage the shaft from the worm wheel and to engage the gear 138 with the gear 44. The operation of the handle 140 will then enable the operator to drive the feed to the gears 138, 44, 46 and the clutch mechanism 52 at the desired rate.

Claims (1)

  1. (1) A positive feed drill having an axial feed drive incorporating a clutch mechanism.
    (2) A positive feed drill as claimed in claim 1 in which the clutch mechanism includes a gear rotatably and axially movable upon a feed drive shaft, the feed shaft having a flange provided with a plurality of recesses and the gear having a face provided with corresponding recesses, a plurality of balls secured within a case being located between said flange and said gear, each said ball being engageable in respective recesses on the flange and the gear, and loading means urging the gear into engagement with the cage mounted balls.
    (3) A positive feed drill as claimed in claim 2 in which the loading means comprises a plurality of springs secured between a face of the ear and a housing secured against axial movement on the feed drive shaft.
    (4) A positive feed drill having a clutch mechanism constructed and arranged for use and operation substantially as described in Fig. 1 of the accompanying drawings.
GB8720209A 1987-08-27 1987-08-27 Power feed drills with clutch operated feed Expired - Lifetime GB2209009B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
GB8720209A GB2209009B (en) 1987-08-27 1987-08-27 Power feed drills with clutch operated feed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB8720209A GB2209009B (en) 1987-08-27 1987-08-27 Power feed drills with clutch operated feed

Publications (3)

Publication Number Publication Date
GB8720209D0 GB8720209D0 (en) 1987-10-07
GB2209009A true GB2209009A (en) 1989-04-26
GB2209009B GB2209009B (en) 1991-11-13

Family

ID=10622887

Family Applications (1)

Application Number Title Priority Date Filing Date
GB8720209A Expired - Lifetime GB2209009B (en) 1987-08-27 1987-08-27 Power feed drills with clutch operated feed

Country Status (1)

Country Link
GB (1) GB2209009B (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB329989A (en) * 1928-11-30 1930-05-30 James George Accles Improvements in or relating to driving mechanism suitable for machine tools and applicable for other purposes
GB378363A (en) * 1931-04-24 1932-08-11 Hermann Schoening Improvements in automatic de-clutching devices for the feed mechanism of drilling machines
GB507913A (en) * 1937-12-22 1939-06-22 Herbert Ltd A Drilling machines or like machine-tools
GB858570A (en) * 1958-02-12 1961-01-11 Kovosvit Improvements in and relating to boring or drilling machines
GB915001A (en) * 1959-11-19 1963-01-09 Hans Deckel Improvements in and relating to machine tools, more particularly milling machines
EP0060186A2 (en) * 1981-03-05 1982-09-15 Titanox S.A. Adjustable positive feed drill

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB329989A (en) * 1928-11-30 1930-05-30 James George Accles Improvements in or relating to driving mechanism suitable for machine tools and applicable for other purposes
GB378363A (en) * 1931-04-24 1932-08-11 Hermann Schoening Improvements in automatic de-clutching devices for the feed mechanism of drilling machines
GB507913A (en) * 1937-12-22 1939-06-22 Herbert Ltd A Drilling machines or like machine-tools
GB858570A (en) * 1958-02-12 1961-01-11 Kovosvit Improvements in and relating to boring or drilling machines
GB915001A (en) * 1959-11-19 1963-01-09 Hans Deckel Improvements in and relating to machine tools, more particularly milling machines
EP0060186A2 (en) * 1981-03-05 1982-09-15 Titanox S.A. Adjustable positive feed drill

Also Published As

Publication number Publication date
GB8720209D0 (en) 1987-10-07
GB2209009B (en) 1991-11-13

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Legal Events

Date Code Title Description
732E Amendments to the register in respect of changes of name or changes affecting rights (sect. 32/1977)
732E Amendments to the register in respect of changes of name or changes affecting rights (sect. 32/1977)
732E Amendments to the register in respect of changes of name or changes affecting rights (sect. 32/1977)
PE20 Patent expired after termination of 20 years

Effective date: 20070826