US1816090A - Apparatus for grinding - Google Patents

Apparatus for grinding Download PDF

Info

Publication number
US1816090A
US1816090A US348857A US34885729A US1816090A US 1816090 A US1816090 A US 1816090A US 348857 A US348857 A US 348857A US 34885729 A US34885729 A US 34885729A US 1816090 A US1816090 A US 1816090A
Authority
US
United States
Prior art keywords
grinding
wheel
spindle
workpiece
spindles
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.)
Expired - Lifetime
Application number
US348857A
Inventor
Dwight C Page
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.)
Heald Machine Co
Original Assignee
Heald Machine 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 Heald Machine Co filed Critical Heald Machine Co
Priority to US348857A priority Critical patent/US1816090A/en
Application granted granted Critical
Publication of US1816090A publication Critical patent/US1816090A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B24—GRINDING; POLISHING
    • B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B5/00—Machines or devices designed for grinding surfaces of revolution on work, including those which also grind adjacent plane surfaces; Accessories therefor
    • B24B5/02—Machines or devices designed for grinding surfaces of revolution on work, including those which also grind adjacent plane surfaces; Accessories therefor involving centres or chucks for holding work
    • B24B5/06—Machines or devices designed for grinding surfaces of revolution on work, including those which also grind adjacent plane surfaces; Accessories therefor involving centres or chucks for holding work for grinding cylindrical surfaces internally

Definitions

  • the invention relates to internal grinding, and contemplates the grinding of ⁇ separate concentric internal surfaces or bores at a sin gle operation by means of difi'erent sized wheels.
  • two or more grinding wheels operate through the same working range or traverse space, one or more of the smaller grinding wheels operating in the imaginary cylinder defined by the periphery of the larger wheel as it moves through its operative traverse.
  • FIG. 2 is a similar View on a somewhat larger scale of-the same parts shown in Fig.
  • An internal grinding machine provides a spindle upon which the grinding wheel is mounted, said spindle being rotated rapidly,
  • a pair of grinding spindles are provided, such as the spindles 1 and 2 of the present drawings, and these spindles are mounted in opposed relation, their axes being preferably in the same horizontal plane, and desirably, but not necessarily, in the same vertical plane.
  • Means are provided, in the machine of the said copending application, to feed the workpiece or workpieces in a horizontal direction in relation to the spindles, in order that the grindingwheels may en large the bore or bores of the workpiece or workpieces.
  • Means are further provided for causing each spindle 1, and 2, totraverse back and forth in an axial direction, and these traversing motions of the spindles are always equal and opposite. Finally, means are provided. for causing both spindles to withdraw from the workpiece or workpieces, when the grinding is completed, inan axial direction. 7 Y
  • the spindle 1 is provided with a reduced or tapered portion 3, and a screw threaded portion 4.
  • a cup shaped member 5 provides a ,hub portion 6 having an internal bore that fits the portion 3. By means of -a nut 7 fitting on the screw threaded portion 4, the cup shaped member is held firmly on the spindle.
  • a cup shaped grinding wheel 8,having a large, hole 9 in its bottom wall is suita ly fastened to the cup shaped member 5, as by means of bolts 10, 10 and a metal ring 11.
  • the grinding wheel is held to the spindle and must rotate therewith, while a considerable open space is left inside the wheel and cup shaped member.
  • the spindle 2 provides a shoulder 12,1eaving a reduced portion '13, a part of which is screw threaded, as at 14. The latter merges into a portion of small. diameter, 15, which terminates at the front end of the spindle.
  • the said front end is drilled andtappedas at A- cylindrical grinding" wheel 17 is held in place against the shoulder 12 bymeans of a nut 18, while a second cylindrical grinding wheel 19 is mounted on the spindle 2, being held in place by a screw 20.
  • the workpiece A to be ground has a radial flan e b joining tubular portions c and d, 20 the latter being inside the former.
  • the portion 0 provides an internal cylindrical sur-' face 6 to be ground, while the portion d provides internalcylindrical surfaces f and g to be ground. It will be seen that the greater part of the surface f lies within the imaginary cylinder defined by the surface 0.
  • the grinding Wheels 8,13 and 19 are shown about to enter the workpiece A in Fig. 1.
  • Fig. 2 illustrates the wheels in 30' grinding position, the wheel 8 grinding the Y other, and space is provided beyond the'bottom wall of the large wheel to provide for the necessary traverse of the small wheel on the 'front of the spindle 2.
  • the combination case where it is advantageous to cause two 2.
  • the combination with a pair of grinding spindles facing in v opposite directions, of a cupl'shaped internal grindingwheelon one spindle, a small internal grinding wheel on the other spindle adapted to fit inside the said cup shaped wheel, and a supportingstructure for said.
  • cup shaped wheel leaving a space beyond the bottom wall of the cupshaped wheel, said bottom wall being broken away, whereby to allow room for the small Wheel to traverse when said wheels move oppositely.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Grinding Of Cylindrical And Plane Surfaces (AREA)

Description

July 28, 1931. D. c. PAGE 1,816,090
APPARATUS FOR GRINDING Filed March 21, 1929 DWLSH' C. Page Patented July 28, 1931 PATENT caries DWIGHT G. PAGE, OF WORCESTER, MASSACHUSETTS, ASSIGNOR TO THE HEALD MA- CHINE COMPANY, OF WORCESTER, MASSACHUSETTS, A CORPORATION OF MASSA- CHUSETTS AEPARATUS FOR GRINDING Application filed March 21, 1929. Serial No. 348,857.
The invention relates to internal grinding, and contemplates the grinding of\ separate concentric internal surfaces or bores at a sin gle operation by means of difi'erent sized wheels. According to the invention two or more grinding wheels operate through the same working range or traverse space, one or more of the smaller grinding wheels operating in the imaginary cylinder defined by the periphery of the larger wheel as it moves through its operative traverse.
This method of grinding is particularly useful in connection with grinding machines operating on the principle of the disclosure in the copending application Serial No. 276,- 381 of Waldo J. Guild, filed May 9, 1928, in which a plurality of surfaces to be ground may be brought to the desired size simultaneously. The conception of the present invention, that one grinding wheel. may operate literally within another, enables themachine, as disclosed in the said copending application, to grind several different surfaces on peculiar shaped workpieces efiicientlyat a single operation. 7
As illustrative of-a particular mode in which my method of grinding may be carried out, I have illustrated in the accompanying drawings a particular workpiece having an internal large diameter surface to be ground, and a pair of smaller concentrically located surfaces generally inside the first surface. In
the said drawings 2- p Fig. 1 is a view in horizontal cross section of the said workpiece together with a view in cross section of an annular grinding wheel, and a view in elevation of a pair of cylindrical grinding wheels, said Wheels being exterior. to the bores in the workpiece. T
Fig. 2 is a similar View on a somewhat larger scale of-the same parts shown in Fig.
1, the several grinding wheels being shown in grinding engagement with the surfaces to be ground. Like reference characters refer to like parts throughout the drawings. I
An internal grinding machine provides a spindle upon which the grinding wheel is mounted, said spindle being rotated rapidly,
with consequent rotation of the grinding wheel so that it may cut the workpiece. In the co-pending application Serial No. 276,381 referred to, a pair of grinding spindles are provided, such as the spindles 1 and 2 of the present drawings, and these spindles are mounted in opposed relation, their axes being preferably in the same horizontal plane, and desirably, but not necessarily, in the same vertical plane. Means are provided, in the machine of the said copending application, to feed the workpiece or workpieces in a horizontal direction in relation to the spindles, in order that the grindingwheels may en large the bore or bores of the workpiece or workpieces. Means are further provided for causing each spindle 1, and 2, totraverse back and forth in an axial direction, and these traversing motions of the spindles are always equal and opposite. Finally, means are provided. for causing both spindles to withdraw from the workpiece or workpieces, when the grinding is completed, inan axial direction. 7 Y
Having thus explained the various motions imparted to the spindles 1, and 2, in the machine of the-aforesaid copending application, which is the machine best adapted for the carrying out of the present invention, I will explain the best practical embodiment of the latter now known to me. The spindle 1 is provided with a reduced or tapered portion 3, and a screw threaded portion 4. A cup shaped member 5 provides a ,hub portion 6 having an internal bore that fits the portion 3. By means of -a nut 7 fitting on the screw threaded portion 4, the cup shaped member is held firmly on the spindle.
A cup shaped grinding wheel 8,having a large, hole 9 in its bottom wall is suita ly fastened to the cup shaped member 5, as by means of bolts 10, 10 and a metal ring 11. Thus the grinding wheel is held to the spindle and must rotate therewith, while a considerable open space is left inside the wheel and cup shaped member. It will be readily understood; that any other method of fastening a hollow grinding wheel to a spindle, providing a large unimpeded space inside the wheel, may be employed in place of the method'just described,
The spindle 2 provides a shoulder 12,1eaving a reduced portion '13, a part of which is screw threaded, as at 14. The latter merges into a portion of small. diameter, 15, which terminates at the front end of the spindle.
1 The said front end is drilled andtappedas at A- cylindrical grinding" wheel 17 is held in place against the shoulder 12 bymeans of a nut 18, while a second cylindrical grinding wheel 19 is mounted on the spindle 2, being held in place by a screw 20. As in the case of the description ofthe'mounting of the grind ing wheel 8, it should be understood that any 15 other convenient method of mounting the wheels 17 and 19 upon the spindle 2 may be employed. The workpiece A to be ground has a radial flan e b joining tubular portions c and d, 20 the latter being inside the former. The portion 0 provides an internal cylindrical sur-' face 6 to be ground, while the portion d provides internalcylindrical surfaces f and g to be ground. It will be seen that the greater part of the surface f lies within the imaginary cylinder defined by the surface 0.
The grinding Wheels 8,13 and 19 are shown about to enter the workpiece A in Fig. 1.
surface e, the wheel 17 grinding the surface 9, and the wheel 19 grinding'the surface The several wheels rotate, as already de-.
scribed, and are also given a limited traverse in opposite directions. The reason why the spindles are moved in opposite directions in the machine of the copending application, is that they must leave the workpiece together (Fig. 1 may be considered to show them leav- 40 mg as well as entering), which they could not do unless they moved always oppositely, .if the grinding is to cease at the same mo- \ment for all surfaces. The reason the grinding must cease at the same moment, or rather an equal number of traverses after a known intermediate traverse, is not germane to the present invention, but will be found fully described in the aforesaid copending application. I
,The workpiece A is 'held on a fixed axis and rotated, the chuck holding it by its ex-' 'were employed it would wear down very.
Fig. 2 illustrates the wheels in 30' grinding position, the wheel 8 grinding the Y other, and space is provided beyond the'bottom wall of the large wheel to provide for the necessary traverse of the small wheel on the 'front of the spindle 2. This solves thev problem in a practical and efficient manner,- and even permits a third grinding operation to be simultaneously performed, as disclosed by the drawings. As this result is wholly new, I wish to claim the method and means for performing it broadly.
Although the invention has been described in connection with a specific machine invented by another, it will be apparent that it is in nowise limited to use with such. For example, the oppositely disposed spindles 1 and 2 could be caused to leave the workpiece at diflierenttimes instead of simultaneously, and the present invention has utility in any be ground simultane:
with a pair of grinding spindles facing in opposits" directions, of a cu shaped internal grinding wheel on one spindle, and a small internal grinding wheel on the other spindle.
adapted-to fit inside the said cup shaped wheel.
1. In a grinding machine, the combination case where it is advantageous to cause two 2. In a grinding machine, the combination with a pair of grinding spindles facing in v opposite directions, of a cupl'shaped internal grindingwheelon one spindle, a small internal grinding wheel on the other spindle adapted to fit inside the said cup shaped wheel, and a supportingstructure for said. cup shaped wheel leaving a space beyond the bottom wall of the cupshaped wheel, said bottom wall being broken away, whereby to allow room for the small Wheel to traverse when said wheels move oppositely.
3. In apparatus as claimed in claim 1, the combination with the parts therein specified, of a second small internal grindin wheel on the same spindle as the first smal wheel.
4. In apparatus as claimed in claim 2, the combination with the parts therein specified, of a second small internal grinding wheel on the same spindle as the first small wheel.
' DWIGHT C. PAGE.
US348857A 1929-03-21 1929-03-21 Apparatus for grinding Expired - Lifetime US1816090A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US348857A US1816090A (en) 1929-03-21 1929-03-21 Apparatus for grinding

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US348857A US1816090A (en) 1929-03-21 1929-03-21 Apparatus for grinding

Publications (1)

Publication Number Publication Date
US1816090A true US1816090A (en) 1931-07-28

Family

ID=23369845

Family Applications (1)

Application Number Title Priority Date Filing Date
US348857A Expired - Lifetime US1816090A (en) 1929-03-21 1929-03-21 Apparatus for grinding

Country Status (1)

Country Link
US (1) US1816090A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2420504A (en) * 1942-01-09 1947-05-13 Ex Cell O Corp Means for grinding screw threads
US2570690A (en) * 1946-06-19 1951-10-09 Jerome J Kilian Blade sharpener
WO2012091703A1 (en) 2010-12-29 2012-07-05 Bell Helicopter Textron Inc. Center lap tool machine for large transmission gears

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2420504A (en) * 1942-01-09 1947-05-13 Ex Cell O Corp Means for grinding screw threads
US2570690A (en) * 1946-06-19 1951-10-09 Jerome J Kilian Blade sharpener
WO2012091703A1 (en) 2010-12-29 2012-07-05 Bell Helicopter Textron Inc. Center lap tool machine for large transmission gears
US20130029565A1 (en) * 2010-12-29 2013-01-31 Bell Helicopter Textron Inc. Center Lap Tool Machine for Large Transmission Gears
CN103298585A (en) * 2010-12-29 2013-09-11 贝尔直升机泰克斯特龙公司 Center lap tool machine for large transmission gears
EP2629932A4 (en) * 2010-12-29 2013-11-20 Bell Helicopter Textron Inc MACHINE TOOL WITH CENTRAL RODORS FOR LARGE TRANSMISSION GEARS
US9079282B2 (en) * 2010-12-29 2015-07-14 Textron Innovations Inc. Center lap tool machine for large transmission gears
CN103298585B (en) * 2010-12-29 2016-03-02 贝尔直升机泰克斯特龙公司 For the center milling tool of large travelling gear

Similar Documents

Publication Publication Date Title
CN104028816A (en) Machining technology for inner end surfaces of lugs of automobile steering knuckle
US2291269A (en) Headstock for grinding machines
CN105397615B (en) Automatic hole lapping machine
CN104772493A (en) External centrifugal force compensating mechanism for chuck
US2314533A (en) Lapping process
US1491332A (en) Work supporting and centering device for grinding machines
US2256495A (en) Lapping tool
US2377991A (en) Automatic abrading machine
US1879110A (en) Grinding
US2793479A (en) Internal grinding machine
CN109531304B (en) Clamping tool capable of realizing polishing and grinding of crank neck of large-sized crankshaft and polishing and grinding method using clamping tool
CN108098474B (en) A fixture for processing eccentric drill sleeves and a processing method for eccentric drill sleeves
US2054364A (en) Eccentric grinder
CN205968625U (en) Emery wheel axle construction
CN104400634A (en) Device and method for grinding end face of thin-walled bearing
US2689498A (en) Rotary tool turning
US1994754A (en) Machining process
US1882975A (en) Chuck
US2406134A (en) Tool grinding machine
US2394175A (en) Attachment for lathes and the like
US3448644A (en) Live center apparatus
US4092902A (en) Lathe attachment for generating spherical surfaces
US2288907A (en) Tool holder for reamers
US1145816A (en) Grinding-machine.
US2233399A (en) Lathe