US3678630A - Honing apparatus - Google Patents

Honing apparatus Download PDF

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US3678630A
US3678630A US50096A US3678630DA US3678630A US 3678630 A US3678630 A US 3678630A US 50096 A US50096 A US 50096A US 3678630D A US3678630D A US 3678630DA US 3678630 A US3678630 A US 3678630A
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honing
workpiece
tool
axis
tools
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Karl Borcherding
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Hermann Heye KG
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Hermann Heye KG
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B5/00Machines or devices designed for grinding surfaces of revolution on work, including those which also grind adjacent plane surfaces; Accessories therefor
    • B24B5/02Machines 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
    • B24B5/04Machines 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 externally
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B33/00Honing machines or devices; Accessories therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B33/00Honing machines or devices; Accessories therefor
    • B24B33/04Honing machines or devices; Accessories therefor designed for working external surfaces of revolution

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  • ABSTRACT A honing apparatus in which honing tools and a workpiece slide on each other in a composite rotary and oscillatory movement, has honing tools resiliently biased into engagement with the workpiece whereby a very smooth surface is quickly obtained.
  • the present invention is particularly concerned with the manufacture of articles consisting of pressed glass.
  • press tools are used which have very hard surfaces with 40 to 65 on the Rockwell scale.
  • the press dies are turned on a pattern lathe, and then polished with a polishing paste, preferably containing diamond dust. This treatment requires a great deal of time, and nevertheless the surface quality of the finished article is not perfect since the grinding tracks remain which are highly undesirable for glass making tools.
  • Another object of the invention is to provide a honing apparatus which s capable of producing smooth surfaces on different articles with only few adjustments of the apparatus.
  • Another object of the invention is to assure a constant contact between a honing tool and a workpiece surface during a composite relative movement between the workpiece and the honing tool.
  • one embodiment of the invention comprises a resilient tool holder for holding one or several honing tools, a workpiece holder for holding a workpiece in a position slidingly engaged by the honing tool, and drive means for moving the tool holder and the workpiece holder, and thereby the honing tool and the workpiece, relative to each other in a composite movement including rotary and oscillatory motions.
  • the honing tool, or honing tools exert resilient pressure on the workpiece while sliding on the same, and any irregularities of the workpiece surface are compensated by the resilient support of the honing tool.
  • a plurality of leaf springs support honing tools at the ends thereof which are arranged about a surface of revolution of the rotating workpiece.
  • resilient shafts rotate the tool holders with the honing tools so that the latter rotate while being in contact with the rotating workpiece.
  • successive honing tools are staggered in axial and circumferential directions of the workpiece, which has the advantage that even small cross-sections can be honed without interference between the several tool holders.
  • Adjusting means are advantageously provided for adjusting the position of the resilient means, and thereby the resilient pressure at which the workpiece is engaged by the honing tool.
  • each honing tool includes several honing tool elements of different fineness, for example a tool element having very fine granulation, a second tool element having intermediate granulation, and a third tool element having coarse granulation.
  • a tool element having very fine granulation for example a tool element having very fine granulation
  • a second tool element having intermediate granulation for example a tool element having intermediate granulation
  • a third tool element having coarse granulation for example a tool element having very fine granulation, a second tool element having intermediate granulation, and a third tool element having coarse granulation.
  • each honing tool means preferably consists of sectorshaped tool elements of different fineness so that the apparatus need not be stopped for providing tools of different fineness.
  • the required relative speed between the workpiece and the honing tools is easily obtained by driving the planetary carrier and the sun gear of the differential transmission by independent drive means.
  • a modified embodiment of the apparatus is particularly suitable for honing peaks of workpieces, which may be pointed, or part spherical, or be just rounded off.
  • peaks of this type are honed it is difficult to provide several tools, since only little space is available around the peak.
  • the workpiece is rotated about an axis passing through the peak, and one or several honing stones are resiliently biassed toward the surface of the peak, and are oscillatable with tool holder means in central plane of the workpiece.
  • the 'tuming axis of the tool holder means passes through the axis of rotation of the workpiece, and tangentially to the point of the peak portion of the workpiece. In this manner, a minimum of relative movements between the honing tools and the tool holder means is obtained.
  • FIG. 1 is a schematic side elevation, partially in section and illustrating one embodiment of the invention
  • FIG. 2 is a cross-sectional view taken on line II-II in FIG. 1;
  • FIG. 3 is a fragmentary sectional view illustrating tool holder means and drive means for the same in accordance with a modified embodiment of the invention
  • FIG. 4 is a fragmentary sectional view taken on line IV-IV in FIG. 3; 7
  • FIG. 5 is a fragmentary sectional view taken substantially at line II--II in FIG. 1, but illustrating the embodiment of FIGS. 3 and 4;
  • FIG. 6 is a fragmentary sectional view illustrating a modified detail which may be used in the embodiments of FIGS. 1 and
  • FIG. 7 is a fragmentary sectional view taken on line VII- VII in FiG. 6;
  • FIG. 8 is a fragmentary view on an enlarged scale illustrating a part of FIG. 1 surrounded by the circle VIII;
  • FIG. 9 is a fragmentary sectional view schematically illustrating a modification of the embodiment of FIG. 1 for treating the inner surface of a workpiece instead of the outer surface;
  • FIG. 10 is a front elevation, partially in section, taken on line X--X in FIG. XI, and illustrating a modified embodiment for honing a rounded off peak of a workpiece;
  • FIG. 11 is a schematic side elevation illustrating the embodiment of FIG. 10.
  • FIG. 12 is a fragmentary plan view illustrating the embodiment of FIGS. 10 and 11.
  • a support 20 has brackets 21 and 22 on which the cylinder of a hydraulic motor 25 is mounted.
  • a fluid is supplied to, and discharged from, the openings 54 and 55 to move the piston and piston rod 53 up and down.
  • a workpiece holder 53a supports a workpiece 50 which can be oscillated or reciprocated by piston means 53 in the directions indicated by the double arrow 57.
  • the workpiece 50 has a surface of revolution whose axis coincides with the axis of the hydraulic motor 25.
  • Support further carries bracket means 31 on which a motor 32 is mounted.
  • a pulley and belt transmission 34 connects the motor shaft 33 with a shaft 28 which is mounted in a bearing 27, also supported on support 20, and which is secured to a carrier plate 29a of tool holder means 29 which further include adjusting means 40, best seen in FIG. 8, for adjustably mounting four leaf springs 41, each of which carries a tool holder 42 in which a honing tool 45 is mounted.
  • an adjusting means 40 includes a pivot 103 supporting a block 101 on the carrier plate 29a for angular movement.
  • Each leaf spring 41 is secured by screws 100 to a block 101, and an adjusting screw 105 passes through a threaded bore in block 101 and engages with its end a surface 106 of carrier plate 29a.
  • adjusting screw 105 By turning of adjusting screw 105, the angular position of the respective leaf spring 41 can be modified so that the tool 45 at the other end of the respective leaf spring 41 is pressed with a greater or smaller resilient force against the surface of workpiece 50.
  • the adjusting means 40 is shown in FIG. 8 turned an angle of 90 as compared with its position in the circle VIII in FIG. 1.
  • the illustrated workpiece 50 is the press die of a press for making glass articles, but workpieces serving another purpose may also be used.
  • pairs of tool holders 42 which alternate in circumferential direction, are disposed in different planes and spaced not only circum ferentially, but also in axial direction from the adjacent tool holders.
  • the tool holder means 29 are rotated from motor 32 through a transmission 34 so that the tools 45 rotate about the axis of workpiece 50 while being in sliding engagement with the same, exerting pressure in accordance with the adjusted position of the leaf springs 41.
  • the workpiece 50 is reciprocated or oscillated in axial direction so that all parts of the outer surface of revolution of the workpiece are honed by the four honing tools 45.
  • one of the tool holders 42 does not hold a single tool, but holds a stack of three tool elements 60, 61 and 62, clamped together by a screw 65.
  • Tool element 62 is a stone of great granular fineness, tool element 61 is less fine, and tool element 60 is coarse.
  • the tool elements 60, 61 and 62 are successively brought into contact with the surface of workpiece 50.
  • a honing liquid is supplied through a pipe 38 which passes through a bore in shaft 28 and is provided with a valve 37. The honing liquid flows out of pipe 38 onto the surface workpiece 50 so that the action of the tools 45 is improved.
  • the leaf springs 41 are replaced by resilient shafts 77 which are respectively secured to planetary gears 68 meshing with a sun gear 69.
  • Planetary gears 68 are mounted for rotation on a planetary carrier 70 to which a hollow shaft 71 is secured.
  • a pulley 72 is fixed on hollow shaft 71, and is driven in the manner of the pulley and belt drive 34 shown in FIG. 1.
  • a hollow shaft 75 is located in the hollow shaft 71, and secured to sun gear 69.
  • a supply pipe 38 for a honing liquid passes through the interior of the inner hollow shaft 75 which is driven by other drive means together with sun gear 69.
  • each resilient shaft 77 revolves with the planetary carrier 70 about the workpiece 50, and each resilient shaft 77 carries at its free end, as shown in FIG. 5, a tool holder with a circular tool 80 or 80a, the tool 80a comprising three sectorshaped tools or tool elements 83, 84, 85 of different fineness.
  • the thin resilient shafts 77 are resiliently deformed so that the circular surfaces of the tools are resiliently pressed against the surface of the workpiece 50.
  • the tool holders and tools revolve about the workpiece, but at the same time, each shaft 77 rotates, and drives the respective tool 80 or 80a to rotate relative to the workpiece surface.
  • Oppositely arranged tools are located in the same plane, while alternate tools are located in axially spaced planes, as described with reference to tools 45 in FIG. 1.
  • each of the tool sectors 83 Due to the rotation of the tool 800 about its own axis in the direction of the arrow 87 in FIG. 5, each of the tool sectors 83,
  • FIG. 6 illustrates a preferred embodiment of the tool holder 45a of the embodiment of FIGS. 1 and 2.
  • a support 90 is fixed to leaf spring 41 and slidingly supports a casing 91 for three tools 45a of different fineness.
  • Casing 91 has a projecting portion 95 which passes through a slot 96 in support 90 into the interior of the same, and there engages with a threaded bore, a screw spindle 98 which is rotatably mounted in support 90.
  • spindle 98 When spindle 98 is turned, casing 91 with the three tools is displaced so that a selected tool engages the workpiece.
  • the tools are used in succession, the coarse tool first, and the finest tool last.
  • FIG. 7 shows the tool of intermediate fineness in sliding contact with the workpiece 50.
  • FIG. 9 corresponds to the embodiment of FIG. 1, but is modified for the honing of inner surfaces.
  • a tubular workpiece is reciprocated in the directions of the double arrow 111 by a hydraulic servo motor 25, as shown in FIG. 1.
  • the tool holder means include a carrier plate 113 having adjusting means 114 for adjusting the position of each leaf spring 115.
  • a tool holder with a honing tool 116 is mounted, and adjusting means 114 can be adjusted so that tool 116 engages the inner surface of workpiece 110 at a selected resilient pressure due to the deformation of the springs 1 15.
  • Carrier plate 1 13 is rotated in the direction of the arrow 117 by drive means as described with reference to FIG. 1.
  • a honing liquid is supplied to the inner surface of the workpiece 110 by a pipe extending in the direction of the arrow 119.
  • FIGS. 10, 11 and 12 illustrate another embodiment of the invention which is designed for honing a rounded off peak of a workpiece 130 which is mounted on a turntable 131 rotating in the direction of the arrow 132 about a workpiece axis passing through the rounded off peak 135.
  • Three tools 137 are mounted in a segment-shaped tool holder means 139, and each tool 137 is biassed by a spring 140, mounted in a bushing 143 secured to tool holder means 139. Springs urge the tools 137 into engagement with the peak 135.
  • the tool holder means 139 is mounted on an arm 145, as best seen in FIG. 11, which projects from the shaft 146 of a motor 148 which drives the tool holder means 139 with the tools in an oscillatory movement in the direction of the arrow 150.
  • Motor 148 is mounted by screws 153 extending into slots 154 in such a manner that it can be raised and lowered in the direction of the double arrow 155 until the end faces of tools 137 are in the proper position engaging the peak 135 with the desired resilient pressure.
  • the carrier plate 157 is mounted on a slide 161 which can be moved in the direction of the double arrow 162 by operation of a motor 159 driving a screw spindle 160 in threaded engagement with a nut on slide 161 which is mounted in a guideway of machine table 158.
  • the tool holder 139 is constructed so that a stack of three honing tools 165, 166, and 167 can be secured to the same.
  • the three honing tool elements 165, 166, 167 are of different fineness, and each row of three tool elements extends substantially in the direction of the axis of rotation of motor 148 and its shaft 146.
  • Honing apparatus for honing the rounded peak of a workpiece, comprising, support means; workpiece holder means having an axis and adapted to coaxially hold a workpiece having a rounded peak along said axis spaced from said workpiece holder means, said workpiece holder means being mounted on said support means tumable about its axis; tool holder means including resilient means, said tool holder means being mounted on said support means for oscillatory movement about a second axis substantially normal to said first mentioned axis and maintained at a fixed distance from said workpiece holder means; honing tool means mounted on said tool holder means arranged in a plane including said first axis and resiliently biased by said resilient means into contact with said rounded peak of said workpiece; and drive means for rotating said workpiece holder means about its axis and for oscillating said tool holder means about said second axis.
  • Honing apparatus as claimed in claim 1 wherein said honing tool means include a plurality of honing tools of graduated fineness, and setting means for successively placing said honing tools into contact with said workpiece.
  • Honing apparatus as claimed in claim 2 wherein said tool holder means include a support fixed to said resilient means, and a casing for a plurality of said honing tools mounted on said support for movement tangentially to said workpiece; and wherein said setting means include threaded means for moving said casing and honing tools relative to said support and said workpiece.
  • Honing apparatus as claimed in claim 3 wherein said honing tools have the same shape and are bonded together to form a block.
  • Honing apparatus as defined in claim 1, wherein said sup port means comprises means for adjusting the position of said tool holder means in direction of said axis of said workpiece holder means.
  • Honing apparatus as defined in claim 5, wherein said tool holder means includes a plurality of tool holders for holding honing tools, wherein said resilient means include a plurality of springs biasing said honing tools, and wherein said curve has a center of curvature through which the axes of said honing tools pass.
  • each tool holder holds a plurality of honing tools of different fineness arranged in a row transverse to said axis of said workpiece holder; and wherein said tool holder means include adjusting means for simultaneously adjusting said tool holders in the direction of said rows so that honing tools carried by said tool holders and having the same fineness are simultaneously in contact with said peak of said workpiece.

Abstract

A honing apparatus in which honing tools and a workpiece slide on each other in a composite rotary and oscillatory movement, has honing tools resiliently biased into engagement with the workpiece whereby a very smooth surface is quickly obtained.

Description

United States Patent Borcherding 51 July 25,1972
[54] HONING APPARATUS [72] Inventor: Karl Borcherding, Bad Nenndorf, Germany [73] Assignee: Hermann lleye, Obernkirchen Allee, Germany [22] Filed: June 26,1970
211 Appl. No.: 50,096
[30] Foreign Application Priority Data July 2, 1969 Germany ..P 19 33 575.2
[52] US. Cl ..5l/58, 51/353 [51] Int. Cl. .....B24b 5/36, B24b 19/00 [58] Field oiSearch ..5l/352, 353, 67, 40-43,
[56] References Cited UNITED STATES PATIENTS 2,212,159 8/1940 l-lingle ........5l/352 2,606,410 8/1952 Thery.... .....5l/67 X 2,637,953 5/ 1953 Billeter. ..5 l/ 352 3,400,500 9/ 1968 Clark.... 51/353 1,758,953 5/1930 Krause.. .....5l/57 Rl3,706 3/1914 Beam... .....51/57 1,464,442 8/1923 Palser ..5 l /57 Primary Examiner-Donald G. Kelly Attorney-Michael S. Striker [57] ABSTRACT A honing apparatus in which honing tools and a workpiece slide on each other in a composite rotary and oscillatory movement, has honing tools resiliently biased into engagement with the workpiece whereby a very smooth surface is quickly obtained.
8 Chins, 12 Drawing Figures Patented July 25, 1972 3 Sheets-Sheet l INVENTOR Patented July 25, 1972 3 Sheets-Sheet 2 FIG.6
FIGS
FIGS
INVEINTOR KARL BonwmDme Patented July 25, 1972 3 Sheets-Sheet 5 HONING APPARATUS BACKGROUND OF THE INVENTION The present invention is particularly concerned with the manufacture of articles consisting of pressed glass. In the prior art, press tools are used which have very hard surfaces with 40 to 65 on the Rockwell scale. The press dies are turned on a pattern lathe, and then polished with a polishing paste, preferably containing diamond dust. This treatment requires a great deal of time, and nevertheless the surface quality of the finished article is not perfect since the grinding tracks remain which are highly undesirable for glass making tools.
SUMMARY OF THE INVENTION It is one object of the invention to overcome the disadvantages of the prior art apparatus for making smooth surfaces on press dies for glass articles, and to provide a honing apparatus of simple construction capable of producing a very smooth surface.
Another object of the invention is to provide a honing apparatus which s capable of producing smooth surfaces on different articles with only few adjustments of the apparatus.
Another object of the invention is to assure a constant contact between a honing tool and a workpiece surface during a composite relative movement between the workpiece and the honing tool.
With these objects in view, one embodiment of the invention comprises a resilient tool holder for holding one or several honing tools, a workpiece holder for holding a workpiece in a position slidingly engaged by the honing tool, and drive means for moving the tool holder and the workpiece holder, and thereby the honing tool and the workpiece, relative to each other in a composite movement including rotary and oscillatory motions. In this manner, the honing tool, or honing tools, exert resilient pressure on the workpiece while sliding on the same, and any irregularities of the workpiece surface are compensated by the resilient support of the honing tool.
In one embodiment of the invention, a plurality of leaf springs support honing tools at the ends thereof which are arranged about a surface of revolution of the rotating workpiece. In another embodiment, resilient shafts rotate the tool holders with the honing tools so that the latter rotate while being in contact with the rotating workpiece.
Preferably, successive honing tools are staggered in axial and circumferential directions of the workpiece, which has the advantage that even small cross-sections can be honed without interference between the several tool holders.
Adjusting means are advantageously provided for adjusting the position of the resilient means, and thereby the resilient pressure at which the workpiece is engaged by the honing tool.
In a preferred arrangement of the invention, each honing tool includes several honing tool elements of different fineness, for example a tool element having very fine granulation, a second tool element having intermediate granulation, and a third tool element having coarse granulation. During an operational cycle, first the coarse tool element, and then the other finer tool elements are successively rendered operative and engage the surface of the workpiece. In this manner, the time required for coarse and fine honing operation is essentially reduced.
In the embodiment in which resilient shafts for honing tools are provided, it is advantageous to drive the shaft by the planetary gears of a differential transmission, while all shafts are simultaneously revolved about the workpiece by the planetary carrier. Each honing tool means preferably consists of sectorshaped tool elements of different fineness so that the apparatus need not be stopped for providing tools of different fineness. The required relative speed between the workpiece and the honing tools, is easily obtained by driving the planetary carrier and the sun gear of the differential transmission by independent drive means.
A modified embodiment of the apparatus is particularly suitable for honing peaks of workpieces, which may be pointed, or part spherical, or be just rounded off. When peaks of this type are honed it is difficult to provide several tools, since only little space is available around the peak.
In accordance with the invention, the workpiece is rotated about an axis passing through the peak, and one or several honing stones are resiliently biassed toward the surface of the peak, and are oscillatable with tool holder means in central plane of the workpiece. Preferably, the 'tuming axis of the tool holder means passes through the axis of rotation of the workpiece, and tangentially to the point of the peak portion of the workpiece. In this manner, a minimum of relative movements between the honing tools and the tool holder means is obtained.
It is advantageous to provide several rows of tools of different fineness, and to provide setting means for setting tools of the same fineness simultaneously in. an operative position engaging the workpiece so that the workpiece can be first honed by coarse tools, and then by finer tools. The planes in which the tools are disposed are extending in the same direction which direction is perpendicular to the axis of the workpiece.
The novel features which are considered as characteristic for the invention are set forth in particular in the appended claims. The invention itself, however, both as to its construction and its method of operation, together with additional objects and advantages thereof, will be best understood from the following description of specific embodiments when read in connection with the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWING FIG. 1 is a schematic side elevation, partially in section and illustrating one embodiment of the invention;
FIG. 2 is a cross-sectional view taken on line II-II in FIG. 1;
FIG. 3 is a fragmentary sectional view illustrating tool holder means and drive means for the same in accordance with a modified embodiment of the invention;
FIG. 4 is a fragmentary sectional view taken on line IV-IV in FIG. 3; 7
FIG. 5 is a fragmentary sectional view taken substantially at line II--II in FIG. 1, but illustrating the embodiment of FIGS. 3 and 4;
FIG. 6 is a fragmentary sectional view illustrating a modified detail which may be used in the embodiments of FIGS. 1 and FIG. 7 is a fragmentary sectional view taken on line VII- VII in FiG. 6;
FIG. 8 is a fragmentary view on an enlarged scale illustrating a part of FIG. 1 surrounded by the circle VIII;
FIG. 9 is a fragmentary sectional view schematically illustrating a modification of the embodiment of FIG. 1 for treating the inner surface of a workpiece instead of the outer surface;
FIG. 10 is a front elevation, partially in section, taken on line X--X in FIG. XI, and illustrating a modified embodiment for honing a rounded off peak of a workpiece;
FIG. 11 is a schematic side elevation illustrating the embodiment of FIG. 10; and
FIG. 12 is a fragmentary plan view illustrating the embodiment of FIGS. 10 and 11.
DESCRIPTION OF THE PREFERRED EMBODIMENTS Referring first to FIG. 1, a support 20 has brackets 21 and 22 on which the cylinder of a hydraulic motor 25 is mounted. A fluid is supplied to, and discharged from, the openings 54 and 55 to move the piston and piston rod 53 up and down. A workpiece holder 53a supports a workpiece 50 which can be oscillated or reciprocated by piston means 53 in the directions indicated by the double arrow 57. The workpiece 50 has a surface of revolution whose axis coincides with the axis of the hydraulic motor 25.
Support further carries bracket means 31 on which a motor 32 is mounted. A pulley and belt transmission 34 connects the motor shaft 33 with a shaft 28 which is mounted in a bearing 27, also supported on support 20, and which is secured to a carrier plate 29a of tool holder means 29 which further include adjusting means 40, best seen in FIG. 8, for adjustably mounting four leaf springs 41, each of which carries a tool holder 42 in which a honing tool 45 is mounted.
As shown in FIG. 8, an adjusting means 40 includes a pivot 103 supporting a block 101 on the carrier plate 29a for angular movement. Each leaf spring 41 is secured by screws 100 to a block 101, and an adjusting screw 105 passes through a threaded bore in block 101 and engages with its end a surface 106 of carrier plate 29a. By turning of adjusting screw 105, the angular position of the respective leaf spring 41 can be modified so that the tool 45 at the other end of the respective leaf spring 41 is pressed with a greater or smaller resilient force against the surface of workpiece 50. The adjusting means 40 is shown in FIG. 8 turned an angle of 90 as compared with its position in the circle VIII in FIG. 1.
The illustrated workpiece 50 is the press die of a press for making glass articles, but workpieces serving another purpose may also be used. In the embodiment of FIGS. 1 and 2, pairs of tool holders 42 which alternate in circumferential direction, are disposed in different planes and spaced not only circum ferentially, but also in axial direction from the adjacent tool holders. The tool holder means 29 are rotated from motor 32 through a transmission 34 so that the tools 45 rotate about the axis of workpiece 50 while being in sliding engagement with the same, exerting pressure in accordance with the adjusted position of the leaf springs 41. At the same time, the workpiece 50 is reciprocated or oscillated in axial direction so that all parts of the outer surface of revolution of the workpiece are honed by the four honing tools 45.
As shown in FIG. 2, one of the tool holders 42 does not hold a single tool, but holds a stack of three tool elements 60, 61 and 62, clamped together by a screw 65. Tool element 62 is a stone of great granular fineness, tool element 61 is less fine, and tool element 60 is coarse. The tool elements 60, 61 and 62 are successively brought into contact with the surface of workpiece 50. In order to improve the honing operation, a honing liquid is supplied through a pipe 38 which passes through a bore in shaft 28 and is provided with a valve 37. The honing liquid flows out of pipe 38 onto the surface workpiece 50 so that the action of the tools 45 is improved.
In the embodiment of FIG. 3, the leaf springs 41 are replaced by resilient shafts 77 which are respectively secured to planetary gears 68 meshing with a sun gear 69. Planetary gears 68 are mounted for rotation on a planetary carrier 70 to which a hollow shaft 71 is secured. A pulley 72 is fixed on hollow shaft 71, and is driven in the manner of the pulley and belt drive 34 shown in FIG. 1. A hollow shaft 75 is located in the hollow shaft 71, and secured to sun gear 69. A supply pipe 38 for a honing liquid passes through the interior of the inner hollow shaft 75 which is driven by other drive means together with sun gear 69. The resilient shafts revolve with the planetary carrier 70 about the workpiece 50, and each resilient shaft 77 carries at its free end, as shown in FIG. 5, a tool holder with a circular tool 80 or 80a, the tool 80a comprising three sectorshaped tools or tool elements 83, 84, 85 of different fineness. When the tools 80 and 80a engage the workpiece 50, the thin resilient shafts 77 are resiliently deformed so that the circular surfaces of the tools are resiliently pressed against the surface of the workpiece 50. While the workpiece is reciprocated as described with reference to FIG. 1, the tool holders and tools revolve about the workpiece, but at the same time, each shaft 77 rotates, and drives the respective tool 80 or 80a to rotate relative to the workpiece surface. Oppositely arranged tools are located in the same plane, while alternate tools are located in axially spaced planes, as described with reference to tools 45 in FIG. 1.
Due to the rotation of the tool 800 about its own axis in the direction of the arrow 87 in FIG. 5, each of the tool sectors 83,
84, successively engages the surface of the workpiece designated 81 in FIG. 5.
FIG. 6 illustrates a preferred embodiment of the tool holder 45a of the embodiment of FIGS. 1 and 2. A support 90 is fixed to leaf spring 41 and slidingly supports a casing 91 for three tools 45a of different fineness. Casing 91 has a projecting portion 95 which passes through a slot 96 in support 90 into the interior of the same, and there engages with a threaded bore, a screw spindle 98 which is rotatably mounted in support 90. When spindle 98 is turned, casing 91 with the three tools is displaced so that a selected tool engages the workpiece. The tools are used in succession, the coarse tool first, and the finest tool last. FIG. 7 shows the tool of intermediate fineness in sliding contact with the workpiece 50.
The embodiment of FIG. 9 corresponds to the embodiment of FIG. 1, but is modified for the honing of inner surfaces. A tubular workpiece is reciprocated in the directions of the double arrow 111 by a hydraulic servo motor 25, as shown in FIG. 1. The tool holder means include a carrier plate 113 having adjusting means 114 for adjusting the position of each leaf spring 115. At the lower end of each leaf spring, a tool holder with a honing tool 116 is mounted, and adjusting means 114 can be adjusted so that tool 116 engages the inner surface of workpiece 110 at a selected resilient pressure due to the deformation of the springs 1 15. Carrier plate 1 13 is rotated in the direction of the arrow 117 by drive means as described with reference to FIG. 1. A honing liquid is supplied to the inner surface of the workpiece 110 by a pipe extending in the direction of the arrow 119.
FIGS. 10, 11 and 12 illustrate another embodiment of the invention which is designed for honing a rounded off peak of a workpiece 130 which is mounted on a turntable 131 rotating in the direction of the arrow 132 about a workpiece axis passing through the rounded off peak 135. Three tools 137 are mounted in a segment-shaped tool holder means 139, and each tool 137 is biassed by a spring 140, mounted in a bushing 143 secured to tool holder means 139. Springs urge the tools 137 into engagement with the peak 135. The tool holder means 139 is mounted on an arm 145, as best seen in FIG. 11, which projects from the shaft 146 of a motor 148 which drives the tool holder means 139 with the tools in an oscillatory movement in the direction of the arrow 150.
Motor 148 is mounted by screws 153 extending into slots 154 in such a manner that it can be raised and lowered in the direction of the double arrow 155 until the end faces of tools 137 are in the proper position engaging the peak 135 with the desired resilient pressure.
The carrier plate 157 is mounted on a slide 161 which can be moved in the direction of the double arrow 162 by operation of a motor 159 driving a screw spindle 160 in threaded engagement with a nut on slide 161 which is mounted in a guideway of machine table 158.
The tool holder 139 is constructed so that a stack of three honing tools 165, 166, and 167 can be secured to the same. The three honing tool elements 165, 166, 167 are of different fineness, and each row of three tool elements extends substantially in the direction of the axis of rotation of motor 148 and its shaft 146. By shifting the slide 161 first the coarse tool elements 167 of the three tools 135, then the intermediate tool element 166, and finally the finest tool element 165 of all three tools 137 can be simultaneously placed in the operative position aligned with the axis of the workpiece.
It will be understood that each of the elements described above, or two or more together, may also find a useful application in other types of honing apparatus differing from the types described above.
While the invention has been illustrated and described as embodied in a honing apparatus in which honing tools are resiliently pressed against the workpiece during a relative composite movement between the workpiece and the honing tools, it is not intended to be limited to the details shown, since various modifications and structural changes may be made without departing in any way from the spirit of the present invention.
Without further analysis, the foregoing will so fully reveal the gist of the present invention that others can by applying current knowledge readily adapt it for various applications without omitting features that, from the standpoint of prior art, fairly constitute essential characteristics of the. generic or specific aspects of this invention and, therefore, such adaptations should and are intended to be comprehended within the meaning and range of equivalence of the following claims.
What is claimed as new and desired to be protected by Letters Patent is set forth in the appended claims.
I claim:
1. Honing apparatus for honing the rounded peak of a workpiece, comprising, support means; workpiece holder means having an axis and adapted to coaxially hold a workpiece having a rounded peak along said axis spaced from said workpiece holder means, said workpiece holder means being mounted on said support means tumable about its axis; tool holder means including resilient means, said tool holder means being mounted on said support means for oscillatory movement about a second axis substantially normal to said first mentioned axis and maintained at a fixed distance from said workpiece holder means; honing tool means mounted on said tool holder means arranged in a plane including said first axis and resiliently biased by said resilient means into contact with said rounded peak of said workpiece; and drive means for rotating said workpiece holder means about its axis and for oscillating said tool holder means about said second axis.
2. Honing apparatus as claimed in claim 1 wherein said honing tool means include a plurality of honing tools of graduated fineness, and setting means for successively placing said honing tools into contact with said workpiece.
3. Honing apparatus as claimed in claim 2 wherein said tool holder means include a support fixed to said resilient means, and a casing for a plurality of said honing tools mounted on said support for movement tangentially to said workpiece; and wherein said setting means include threaded means for moving said casing and honing tools relative to said support and said workpiece.
4. Honing apparatus as claimed in claim 3 wherein said honing tools have the same shape and are bonded together to form a block.
5. Honing apparatus as defined in claim 1, wherein said second axis intersects said first axis and is tangential to a curve coinciding with the rounded peak of a workpiece held in said workpiece holder means.
6. Honing apparatus as defined in claim 1, wherein said sup port means comprises means for adjusting the position of said tool holder means in direction of said axis of said workpiece holder means.
7. Honing apparatus as defined in claim 5, wherein said tool holder means includes a plurality of tool holders for holding honing tools, wherein said resilient means include a plurality of springs biasing said honing tools, and wherein said curve has a center of curvature through which the axes of said honing tools pass.
8. Honing apparatus as claimed in claim 7 wherein each tool holder holds a plurality of honing tools of different fineness arranged in a row transverse to said axis of said workpiece holder; and wherein said tool holder means include adjusting means for simultaneously adjusting said tool holders in the direction of said rows so that honing tools carried by said tool holders and having the same fineness are simultaneously in contact with said peak of said workpiece.

Claims (8)

1. Honing apparatus for honing the rounded peak of a workpiece, comprising, support means; workpiece holder means having an axis and adapted to coaxially hold a workpiece having a rounded peak along said axis spaced from said workpiece holder means, said workpiece holder means being mounted on said support means turnable about its axis; tool holder means including resilient means, said tool holder means being mounted on said support means for oscillatory movement about a second axis substantially normal to said first mentioned axis and maintained at a fixed distance from said workpiece holder means; honing tool means mounted on said tool holder means arranged in a plane including said first axis and resiliently biased by said resilient means into contact with said rounded peak of said workpiece; and drive means for rotating said workpiece holder means about its axis and for oscillating said tool holder means about said second axis.
2. Honing apparatus as claimed in claim 1 wherein said honing tool means include a plurality of honing tools of graduated fineness, and setting means for successively placing said honing tools into contact with said workpiece.
3. Honing apparatus as claimed in claim 2 wherein said tool holder means include a support fixed to said resilient means, and a casing for a plurality of said honing tools mounted on said support for movement tangentially to said workpiece; and wherein said setting means include threaded means for moving said casing and honing tools relative to said support and said workpiece.
4. Honing apparatus as claimed in claim 3 wherein said honing tools have the same shape and are bonded together to form a block.
5. Honing apparatus as defined in claim 1, wherein said second axis intersects said first axis and is tangential to a curve coinciding with the rounded peak of a workpiece held in said workpiece holder means.
6. Honing apparatus as defined in claim 1, wherein said support means comprises means for adjusting the position of said tool holder meAns in direction of said axis of said workpiece holder means.
7. Honing apparatus as defined in claim 5, wherein said tool holder means includes a plurality of tool holders for holding honing tools, wherein said resilient means include a plurality of springs biasing said honing tools, and wherein said curve has a center of curvature through which the axes of said honing tools pass.
8. Honing apparatus as claimed in claim 7 wherein each tool holder holds a plurality of honing tools of different fineness arranged in a row transverse to said axis of said workpiece holder; and wherein said tool holder means include adjusting means for simultaneously adjusting said tool holders in the direction of said rows so that honing tools carried by said tool holders and having the same fineness are simultaneously in contact with said peak of said workpiece.
US50096A 1969-07-02 1970-06-26 Honing apparatus Expired - Lifetime US3678630A (en)

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DE1933575A DE1933575C3 (en) 1969-07-02 1969-07-02 Device for grinding outer or inner surfaces of workpieces

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US4196547A (en) * 1978-02-22 1980-04-08 Caterpillar Tractor Co. Cylinder liner honing
US4651475A (en) * 1985-12-12 1987-03-24 Appleby J Robert Honing tool
US20080260958A1 (en) * 2004-10-15 2008-10-23 Takashi Sekikawa Thermal Spraying Preprocessing Method and a Cylinder Block of an Engine so Preprocessed
CN104249289A (en) * 2014-07-07 2014-12-31 上海善能机械有限公司 External cylindrical honing machine
US20190015882A1 (en) * 2017-07-17 2019-01-17 Titanium Metals Corporation Planetary reform roller and method of reforming a vessel cavity
CN110064978A (en) * 2019-05-27 2019-07-30 南京工程学院 A kind of bearing inner race automatic loading and unloading device applied to bearing grinder
CN112643464A (en) * 2020-12-21 2021-04-13 安徽迈德福新材料有限责任公司 Grinding device for electrode roller machining and using method thereof

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DE3011454C2 (en) * 1980-03-25 1984-04-05 Ernst Thielenhaus KG, 5600 Wuppertal Process for finishing camshafts
GB8901740D0 (en) * 1989-01-26 1989-03-15 Burwell Reed & Kinghorn Polishing machine
CN104385110B (en) * 2014-11-11 2017-07-11 上海善能机械有限公司 Digital control vertical high precision honing machine and its honing method
CN107863856A (en) * 2017-11-06 2018-03-30 湖南湘讯企业管理有限公司 A kind of Water cooled air conditionerses motor stator core is cylindrical with inner circle derusting device
CN108581660B (en) * 2018-04-26 2020-09-22 马鞍山威莎自动化设备科技有限公司 Polishing equipment for hardware pipes
CN114633194A (en) * 2022-05-13 2022-06-17 启东市洁慧新材料有限公司 External polishing device for steel paper processing and forming

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US4196547A (en) * 1978-02-22 1980-04-08 Caterpillar Tractor Co. Cylinder liner honing
US4651475A (en) * 1985-12-12 1987-03-24 Appleby J Robert Honing tool
US20080260958A1 (en) * 2004-10-15 2008-10-23 Takashi Sekikawa Thermal Spraying Preprocessing Method and a Cylinder Block of an Engine so Preprocessed
US8859041B2 (en) * 2004-10-15 2014-10-14 Nissan Motor Co., Ltd. Thermal spraying preprocessing method and a cylinder block of an engine so preprocessed
CN104249289A (en) * 2014-07-07 2014-12-31 上海善能机械有限公司 External cylindrical honing machine
CN104249289B (en) * 2014-07-07 2017-04-26 上海善能机械有限公司 External cylindrical honing machine
US20190015882A1 (en) * 2017-07-17 2019-01-17 Titanium Metals Corporation Planetary reform roller and method of reforming a vessel cavity
CN110944797A (en) * 2017-07-17 2020-03-31 钛金属公司 Planetary reconstitution roller and method of reconstituting a container cavity
US11154919B2 (en) * 2017-07-17 2021-10-26 Titanium Metals Corporation Planetary reform roller and method of reforming a vessel cavity
CN110064978A (en) * 2019-05-27 2019-07-30 南京工程学院 A kind of bearing inner race automatic loading and unloading device applied to bearing grinder
CN110064978B (en) * 2019-05-27 2023-10-13 南京工程学院 Automatic loading and unloading device applied to bearing inner ring of bearing grinding machine
CN112643464A (en) * 2020-12-21 2021-04-13 安徽迈德福新材料有限责任公司 Grinding device for electrode roller machining and using method thereof

Also Published As

Publication number Publication date
FR2056389A5 (en) 1971-05-14
US3745715A (en) 1973-07-17
BE752364A (en) 1970-12-01
DE1933575B2 (en) 1978-05-18
GB1293859A (en) 1972-10-25
GB1310000A (en) 1973-03-14
DE1933575C3 (en) 1979-01-11
DE1933575A1 (en) 1971-01-21

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