Claims
- 1. Apparatus for net shaping gear teeth of a high performance gear from a workpiece in the form of a near net shaped gear blank having carburized gear teeth surfaces heated above its critical temperature to obtain an austenitic structure throughout its carburized case, said apparatus comprising:
- a vessel containing a thermally controlled liquid working medium for maintaining the workpiece at a uniform metastable austenitic temperature just above the martensitic transformation temperature;
- at least one rolling gear die having an outer peripheral profiled surface meshingly engageable with the outer peripheral profiled surface of the workpiece;
- a housing mounting said rolling gear die for rotation on a die axis; and
- attitude adjustment means having at least two degrees of freedom for selectively adjusting the rolling gear die relative to the workpiece.
- 2. Apparatus for net shaping gear teeth as set forth in claim 1 including:
- rotary actuator means for rotating said rolling gear die on the die axis.
- 3. Apparatus for net shaping gear teeth as set forth in claim 1 including:
- means for supporting the workpiece in said liquid working medium for rotation on a workpiece axis which is generally parallel to said die axis.
- 4. Apparatus for net shaping gear teeth as set forth in claim 3
- wherein said attitude adjustment means includes:
- axial adjustment means for selectively moving said rolling gear die housing along the die axis to enable said rolling gear die to assume a desired orientation relative to the workpiece;
- parallel adjustment means for selectively adjusting said rolling gear die housing and thereby said rolling gear die within a common plane containing the die and workpiece axes to enable said rolling gear die to assume a desired orientation relative to the workpiece; and
- helical adjustment means for selectively adjusting said rolling gear die housing and thereby said rolling gear die outside of the common plane to enable said rolling gear die to assume a desired orientation relative to the workpiece.
- 5. Apparatus for net shaping gear teeth as set forth in claim 1 including:
- through-feed actuator means for advancing the workpiece in a through-feed direction such that the outer peripheral profiled surface of the workpiece engages said outer peripheral profiled surface of said rolling gear die and continues to advance until the workpiece is positioned substantially coextensive with said rolling gear die in the through-feed direction; and
- in-feed actuator means for advancing said rolling gear die, after the workpiece and said rolling gear die are substantially enmeshed, within a plane substantially containing the die and workpiece axes, in an in-feed direction substantially perpendicular to the workpiece axis until the outer peripheral surface of the workpiece engages the rolling gear die at a near net shaped center distance establishing an initial center distance between the die and workpiece axes when the workpiece and said rolling gear die are initially engaged and for continuing to advance the workpiece in the in-feed direction by an additional increment of center distance thereby deforming the profile surfaces of each gear tooth resulting in final net shape of the teeth.
- 6. Apparatus for net shaping gear teeth as set forth in claim 1 including:
- means for releasably securing said rolling gear die in the desired orientation.
- 7. Apparatus for net shaping gear teeth as set forth in claim 4 including:
- locking means for releasably securing said rolling gear die in the desired orientation.
- 8. Apparatus for net shaping gear teeth as set forth in claim 7
- wherein said locking means includes:
- axial adjustment locking means for securing said rolling gear die housing at a desired position along the die axis;
- parallel adjustment locking means for securing said rolling gear die housing at a desired orientation within the common plane relative to the workpiece; and
- helical adjustment locking means for securing said rolling gear die housing at a desired orientation outside of the common plane relative to the workpiece.
- 9. Apparatus for net shaping gear teeth as set forth in claim 5 including:
- an indexing gear mounted on said housing coaxial with said rolling gear die and rotatable therewith, said indexing gear having an outer peripheral profiled surface extending between spaced lateral surfaces and a modified lead-in surface to cam the outer peripheral profiled surface of the workpiece into meshing engagement with said outer peripheral profiled surface of said rolling gear die.
- 10. Apparatus for net shaping gear teeth as set forth in claim 5 including:
- means for coordinating rotation of the workpiece with said rolling gear die to enable enmeshed engagement of said outer peripheral profiled surface of said rolling gear die with the outer peripheral profiled surface of the workpiece upon operation of said through-feed actuator means to advance the workpiece in the through-feed direction.
- 11. Apparatus for net shaping gear teeth as set forth in claim 10
- wherein the workpiece has an outer peripheral profiled surface which is slightly oversized from that of a desired formed gear; and
- wherein said outer peripheral profiled surface of said rolling gear die is substantially similar to that of the desired shape.
- 12. Apparatus for net shaping gear teeth as set forth in claim 5 including:
- through-feed sensing means for sensing the force resisting entry of the workpiece in the through-feed direction; and
- means for interrupting operation of said through-feed actuator when the force sensed by said through-feed sensing means exceeds a predetermined value.
- 13. Apparatus for net shaping gear teeth as set forth in claim 5 including:
- in-feed sensing means for sensing the force resisting entry of the workpiece in the in-feed direction; and
- means for interrupting operation of said in-feed actuator when the force sensed by said in-feed sensing means exceeds a predetermined value.
- 14. Apparatus for net shaping gear teeth as set forth in claim 2 including:
- rotary actuator sensing means for sensing the torque resisting rotation of said rolling gear die while meshingly engaged with the workpiece; and
- means for interrupting operation of said rotary actuator when the torque sensed by said rotary actuator sensing means exceeds a predetermined value.
- 15. Apparatus for net shaping gear teeth as set forth in claim 4 including:
- a frame supporting said vessel, said housing, and said attitude adjustment means; and
- wherein said axial adjustment means includes:
- a parallel adjustment plate mounted on said frame and fixed against movement in the direction of the die axis;
- key means interconnecting said rolling gear die housing and said parallel adjustment plate for relative movement thereof parallel to the die axis; and
- first adjustment rod means interconnecting said parallel adjustment plate and said rolling gear die housing and operable for selectively moving said housing on said plate.
- 16. Apparatus for net shaping gear teeth as set forth in claim 15
- wherein said axial adjustment means includes:
- a yoke integral with said rolling gear die housing and projecting outwardly therefrom so as to be coextensive with said parallel adjustment plate, said yoke having at least one bore therethrough generally parallel with the die axis, the bore having a coaxial annular recess; and
- wherein said first adjustment rod means includes:
- an elongated first adjustment rod having a longitudinal axis and slidably extending through the bore in said yoke in a direction generally parallel to the die axis, said rod including a threaded terminal end threadedly engaged with a tapped bore in said parallel adjustment plate; and
- an annular boss on said first adjustment rod freely received in the coaxial annular recess;
- whereby rotation of said first adjustment rod about its longitudinal axis is effective to move said housing relative to said parallel adjustment plate in directions parallel to the die axis.
- 17. Apparatus for net shaping gear teeth as set forth in claim 16
- wherein said axial adjustment means includes:
- said yoke having three parallel bores therethrough and an engagement surface lying in a plane transverse of the axes of the bores; and
- including:
- a pair of elongated first locking rods each having a longitudinal axis and slidably extending through an associated one of the bores in said yoke in a direction generally parallel to the die axis, said first locking rods each including a threaded terminal end threadedly engaged with associated tapped bores in said parallel adjustment plate; and
- an annular shoulder member on each of said first locking rods at a location spaced from said threaded terminal end;
- whereby selective rotation of said first locking rods about their longitudinal axes is effective to move said annular shoulder members into engagement with said engagement surface and thereby fix said rolling gear die housing relative to said parallel adjustment plate in directions parallel to the die axis.
- 18. Apparatus for net shaping gear teeth as set forth in claim 5
- wherein said attitude adjustment means includes:
- a plurality of elongated proximate control rods for selectively adjusting said rolling gear die relative to the workpiece, said proximate control rods having longitudinal axes extending in directions transverse of the in-feed direction;
- a plurality of elongated remote control rods operably associated, respectively, with said proximate control rods; and
- universal connection means joining each of said proximate control rods with an associated one of said remote control rods to accommodate motion of said rolling gear die in the in-feed direction.
- 19. Apparatus for net shaping gear teeth as set forth in claim 18 including:
- a plurality of elongated proximate locking rods for releasably securing said rolling gear die relative to the workpiece, said proximate locking rods having longitudinal axes extending in directions transverse of the in-feed direction;
- a plurality of elongated remote locking rods operably associated, respectively, with said proximate locking rods; and
- universal connection means joining each of said proximate locking rods with an associated one of said remote locking rods to accommodate motion of said rolling gear die in the in-feed direction.
- 20. Apparatus for net shaping gear teeth as set forth in claim 4 including:
- a frame supporting said vessel, said housing, and said attitude adjustment means; and
- wherein said parallel adjustment means includes:
- a helical adjustment plate mounted on said frame and fixed against movement in the direction of the die axis, said helical adjustment plate having a concave cylindrical surface thereon generally facing said rolling gear die housing, said cylindrical surface having a longitudinal, in-plane, axis generally perpendicular to the plane of the die and workpiece axes;
- a parallel adjustment plate having a convex cylindrical surface coextensive and slidably engaged with said concave cylindrical surface;
- key means interconnecting said parallel adjustment plate and said helical adjustment plate for defined sliding movement of said convex cylindrical surface on said concave cylindrical surface; and
- second adjustment rod means interconnecting said parallel adjustment plate and said helical adjustment plate and operable for selectively moving said parallel adjustment plate on said helical adjustment plate.
- 21. Apparatus for net shaping gear teeth as set forth in claim 20
- wherein said parallel adjustment means includes:
- said helical adjustment plate having an outer surface and a central cavity and a throughbore extending between said outer surface and the central cavity;
- joint means integral with said parallel adjustment plate and extending away from said convex cylindrical surface within the central cavity; and
- wherein said second adjustment rod means includes:
- an elongated second adjustment rod having a longitudinal axis and extending through the bore in said yoke in a direction generally parallel to the die axis, said rod including a terminal end threadedly engaged with a tapped bore in said joint means generally aligned with the throughbore in said helical adjustment plate; and
- whereby rotation of said second adjustment rod about its longitudinal axis is effective to move said parallel adjustment plate relative to said helical adjustment plate about said in-plane axis.
- 22. Apparatus for net shaping gear teeth as set forth in claim 21
- wherein said joint means includes:
- an adjustment pin on said parallel adjustment plate and projecting from said convex cylindrical surface into the central cavity of said helical adjustment plate; and
- a dowel member having a longitudinal axis, a transverse bore fittingly engaged with said adjustment pin, and the tapped bore being coaxial with the longitudinal axis.
- 23. Apparatus for net shaping gear teeth as set forth in claim 20 including:
- parallel locking means interconnecting said parallel adjustment plate and said helical adjustment plate for selectively securing said parallel adjustment plate in a desired in-plane orientation.
- 24. Apparatus for net shaping gear teeth as set forth in claim 23
- wherein said helical adjustment plate has an outer surface, a central cavity, a pair of parallel throughbores extending between said outer surface and the central cavity, and two pairs of substantially parallel spaced locking bores extending between the central cavity and said concave cylindrical surface;
- wherein said parallel adjustment plate has a substantially flat surface opposite said convex cylindrical surface and first and second pairs of axially aligned counterbores and cross bores, each pair thereof defining an annular shoulder at their intersection, the counterbores being in communication with said flat surface, the cross bores being in communication with the convex cylindrical surface, each proximate pair of counterbores and cross bores being generally aligned with an associated locking bore;
- wherein said parallel locking means includes:
- a pair of longitudinally spaced first bevel gears axially aligned with each of the locking rod receiving throughbores, each of said first bevel gears being integral with a hollow stub shaft rotatably mounted on said helical adjustment plate and internally splined;
- a pair of parallel second locking rods, each having a longitudinal axis and extending through an associated throughbore in said helical adjustment plate and through an associated pair of said longitudinally spaced first bevel gears in directions generally parallel to the die axis;
- a stud member having a longitudinal axis generally perpendicular to the die axis rotatably received in each of the locking bores and threaded on an end distant from said helical adjustment plate, said threaded distant end being generally coextensive with the associated axially aligned counterbore and cross bore;
- a second bevel gear integral with each of said stud members at an end opposite said threaded end and meshingly engaged with an associated one of said first bevel gears; and
- nut means threadedly engaged with said threaded end of each of said stud members and bearingly engaged with said associated shoulder;
- external spline means on each of said locking rods selectively meshingly engageable with said internal splines of said first bevel gears;
- whereby rotation in one direction of each of said second locking rods about its longitudinal axis when said external spline means is meshingly engaged with said internal splines of one of said first bevel gears is effective to move said nut means into locking engagement with said shoulder and thereby locking engagement between said convex cylindrical surface and said concave cylindrical surface; and
- whereby rotation in the opposite direction of each of said second locking rods about its longitudinal axis when said external spline means is meshingly engaged with said internal splines of one of said first bevel gears is effective to move said nut means out of locking engagement with said shoulder and thereby permitting relative movement between said convex cylindrical surface and said concave cylindrical surface.
- 25. Apparatus for net shaping gear teeth as set forth in claim 24
- wherein said nut means includes:
- a nut threadedly engaged with said stud member having a convex spherical bearing surface;
- a washer bearing having a flat surface engaged with said annular shoulder and a concave spherical bearing surface engaged with said convex spherical bearing surface;
- whereby relative movement between said helical adjustment plate and said parallel adjustment plate transverse of the longitudinal axes of said stud members is accommodated.
- 26. Apparatus for net shaping gear teeth as set forth in claim 21 including:
- a frame supporting said vessel, said housing, and said attitude adjustment means; and
- wherein said helical adjustment means includes:
- a support block mounted on said frame and substantially fixed against movement in directions parallel to the die axis, said support block having a substantially planar block surface thereon generally facing said rolling gear die housing;
- a helical adjustment plate having a substantially planar pivot surface generally coextensive and slidably engaged with said planar block surface;
- pivot means interconnecting said support block and said helical adjustment plate for defined pivotal movement of said pivot surface on said planar block surface about the out-of-plane axis; and
- third adjustment rod means interconnecting said support block and said helical adjustment plate and operable for selectively moving said helical adjustment plate on said support block.
- 27. Apparatus for net shaping gear teeth as set forth in claim 26
- wherein said helical adjustment means includes:
- said support block having an outer surface and a central cavity and a throughbore extending between said outer surface and the central cavity;
- joint means integral with said helical adjustment plate and extending away from said planar pivot surface within the central cavity at a location laterally offset from said pivot means; and
- wherein said third adjustment rod means includes:
- an elongated third adjustment rod having a longitudinal axis and extending through the throughbore in said support block in a direction generally parallel to the die axis, said rod including a terminal end threadedly engaged with a threaded end of said joint means generally aligned with the throughbore in said support block; and
- whereby rotation of said third adjustment rod about its longitudinal axis is effective to pivot said helical adjustment plate relative to said support block about said out-of-plane axis.
- 28. Apparatus for net shaping gear teeth as set forth in claim 27
- wherein said joint means includes:
- an adjustment pin on said helical adjustment plate and projecting from said planar pivot surface into the central cavity of said support block; and
- a dowel member having a longitudinal axis, a transverse bore fittingly engaged with said adjustment pin, and said threaded end being coaxial with the longitudinal axis.
- 29. Apparatus for net shaping gear teeth as set forth in claim 26 including:
- helical locking means interconnecting said helical adjustment plate and said support block for selectively securing said helical adjustment plate in a desired orientation about the out-of-plane axis.
- 30. Apparatus for net shaping gear teeth as set forth in claim 29
- wherein said support block has an outer surface, a central cavity, a plurality of parallel throughbores extending between said outer surface and the central cavity, a plurality of journal bearing means integral therewith and aligned with associated throughbores, and a plurality of substantially parallel spaced locking bores extending between the central cavity and said planar block surface;
- wherein said helical adjustment plate has a plurality of locking ledges opposite said planar pivot surface and a plurality of locking bores extending between said ledges and said pivot surface, each of the locking bores in said helical adjustment plate being generally aligned with an associated locking bore in said support block;
- wherein said helical locking means includes:
- a plurality of parallel third locking rods, each having a longitudinal axis and rotatably supported in an associated throughbore in said support block and in associated said journal bearing means;
- first bevel gears mounted on each of said third locking rods adjacent an associated one of the locking bores in said support block;
- a stud member having a longitudinal axis generally perpendicular to the first axis rotatably received in each axially aligned pairs of the locking bores and threaded on an end distant from said support block, said threaded distant end being generally coextensive with an associated one of said ledges;
- a second bevel gear integral with each of said stud members at an end opposite said threaded end and meshingly engaged with an associated one of said first bevel gears; and
- nut means threadedly engaged with said threaded end of each of said stud members and bearingly engaged with said associated ledge;
- whereby rotation in one direction of each of said third locking rods about its longitudinal axis is effective to move said nut means into locking engagement with said associated ledge to thereby cause locking engagement between said planar block surface and said planar pivot surface; and
- whereby rotation in the opposite direction of each of said third locking rods about its longitudinal axis is effective to move said associated nut means out of locking engagement with said ledge thereby permitting relative movement between said planar block surface and said planar pivot surface.
- 31. Apparatus for net shaping gear teeth of a high performance gear comprising:
- means providing a controlled metastable austenitic environment;
- first in-feed assembly means within said controlled metastable austenitic environment for rotatably supporting on a first axis a first rolling gear die having an outer peripheral profiled surface extending between spaced lateral surfaces;
- second in-feed assembly means within said controlled metastable austenitic environment for rotatably supporting on a second axis, generally parallel to the first axis, a second rolling gear die having an outer peripheral profiled surface extending between spaced lateral surfaces;
- through-feed means within said controlled metastable austenitic environment rotatably supporting on a third axis generally parallel to the first and second axes a workpiece in the form of a near net shaped gear blank having an outer peripheral profiled surface extending between spaced lateral surfaces, said through-feed means being operable for positioning the workpiece along the third axis such that the outer peripheral surface of the workpiece meshingly engages said first and second rolling gear dies and is positioned substantially coextensive with said first and second rolling gear dies in the through-feed direction; and
- in-feed actuator means operable for advancing said first and second in-feed assembly means and said first and second rolling gear dies, respectively, thereon within a common plane generally containing the first, second, and third axes, in respectively opposite in-feed directions substantially perpendicular to the third axis until the outer peripheral surfaces, respectively, of the first and second rolling gear dies engage the workpiece at diametrically opposed locations and at near net shaped center distances establishing initial center distances between the first and third axes and between the second and third axes, respectively, when the workpiece and the rolling gear dies are initially engaged, then after the workpiece and the first and second rolling gear dies are substantially enmeshed, for continuing to advance said first and second rolling gear dies in the in-feed direction, each by an additional increment for net shaping engagement with the workpiece.
- 32. Apparatus for net shaping gear teeth as set forth in claim 31
- wherein said in-feed actuator means includes a single in-feed actuator mechanism for simultaneously operating both of said first and second in-feed assemblies.
- 33. Apparatus for net shaping gear teeth as set forth in claim 32 including:
- first and second axial adjustment means, respectively, for selectively adjusting said first and second rolling gear dies along the first and second axes, respectively, to assume a desired orientation relative to the workpiece;
- parallel adjustment means for selectively adjusting said first and second rolling gear dies within the common plane to assume a desired orientation relative to the workpiece; and
- helical adjustment means for selectively adjusting said first and second rolling gear dies out of the common plane to assume a desired orientation relative to the workpiece.
- 34. Apparatus for net shaping gear teeth as set forth in claim 31 including:
- locking means for securing said first and second rolling gear dies in their respective desired orientations.
- 35. Apparatus for net shaping gear teeth as set forth in claim 33
- wherein the workpiece has an outer peripheral profiled surface which is slightly oversized from that of a desired formed gear; and
- wherein each of said first and second rolling gear dies has an outer peripheral profiled surface which is substantially similar to that of the desired shape.
- 36. Apparatus for net shaping gear teeth as set forth in claim 31
- wherein said parallel adjustment means includes means mounting each of said first and second rolling gear dies for pivotal movement about an axis generally perpendicular to the common plane; and
- said helical adjustment means includes means mounting each of said first and second rolling gear dies for pivotal movement about an axis generally perpendicular to the third axis and lying within the common plane.
- 37. Apparatus for net shaping gear teeth as set forth in claim 31 including:
- means for coordinating rotation of the workpiece with said first and second rolling gear dies to assure enmeshed engagement of said outer peripheral profiled surfaces of said first and second rolling gear dies with the outer peripheral profiled surface of the workpiece upon operation of said in-feed actuator means.
- 38. Apparatus for net shaping gear teeth as set forth in claim 32 including:
- a stationary bridge member;
- first and second frame members mounted on said bridge member for movement in directions, selectively, toward one another in one instance and away from one another in another instance;
- said first in-feed assembly means being mounted on said first frame member;
- said second in-feed assembly means being mounted on said second frame member;
- an actuator plate;
- a pair of actuator bars generally parallel to the common plane and perpendicular to the first, second, and third axes and extending between and attached to said second frame member and to said actuator plate at spaced locations;
- said first frame member extending transverse of and being slidable on said actuator bars;
- said actuating means including:
- an actuating cylinder mounted on said actuator plate;
- an actuating piston movable between first and second positions within said actuating cylinder; and
- an actuating rod extending through said actuator plate connecting said actuating piston and said first frame member;
- whereby movement of said actuating piston within said actuating cylinder from said first position to said second position is effective to move said first and second in-feed assembly means by substantially equal incremental distances and at substantially equal feed rates into meshing, then net shaping, engagement with the workpiece; and
- whereby movement of said actuating piston within said actuating cylinder from said second position to said first position is effective to move said first and second in-feed assembly means by substantially equal incremental distances and at substantially equal feed rates out of net shaping, then meshing, engagement with the workpiece.
- 39. Apparatus for net shaping gear teeth as set forth in claim 38
- wherein said first in-feed assembly means includes a first housing mounting said first rolling gear die for rotation on the first axis;
- wherein said second in-feed assembly means includes a second housing mounting said second rolling gear die for rotation on the second axis; and
- coordinating means interconnecting said first and second rolling gear die housings for assuring equalized movement of said first and second rolling gear dies in their respective in-feed directions upon operation of said in-feed actuator means.
- 40. Apparatus for net shaping gear teeth as set forth in claim 39
- wherein said coordinating means includes rack and pinion means.
- 41. Apparatus for net shaping gear teeth as set forth in claim 39
- wherein said coordinating means includes:
- a first elongated rack fixed at one end to said first rolling gear die housing and journaled at its opposite end to said second rolling gear die housing;
- a second elongated rack fixed at one end to said second rolling gear die housing and journaled at its opposite end to said first rolling gear die housing; and pinion means meshingly engaged with said fist and second elongated racks;
- whereby movement of said first and second rolling gear dies in their respective in-feed directions upon operation of said in-feed actuator means is substantially equalized.
- 42. Apparatus for net shaping gear teeth as set forth in claim 31
- wherein said in-feed actuator means includes:
- a first in-feed actuator mechanism for operating said first in-feed assembly means;
- a second in-feed actuator mechanism for operating said second in-feed assembly means; and
- means for coordinating operation of said first and second in-feed actuator mechanisms.
- 43. Apparatus for net shaping gear teeth of a high performance gear comprising:
- first in-feed assembly means for rotatably supporting on a first axis a first rolling gear die having an outer peripheral profiled surface extending between spaced lateral surfaces;
- second in-feed assembly means for rotatably supporting on a second axis, generally parallel to the first axis, a second rolling gear die having an outer peripheral profiled surface extending between spaced lateral surfaces;
- through-feed means rotatably supporting on a third axis generally parallel to the first and second axes a workpiece in the form of a near net shaped gear blank having an outer peripheral profiled surface extending between spaced lateral surfaces, said through-feed means being operable for positioning the workpiece along the third axis such that the outer peripheral surface of the workpiece meshingly engages said first and second rolling gear dies and is positioned substantially coextensive with said first and second rolling gear dies in the through-feed direction; and
- in-feed actuator means for advancing said first and second in-feed assembly means and said first and second rolling gear dies, respectively, thereon within a common plane generally containing the first, second, and third axes, in respectively opposite in-feed directions substantially perpendicular to the third axis until the outer peripheral surfaces, respectively, of said first and second rolling gear dies engage the workpiece at diametrically opposed locations and at near net shaped center distances establishing initial center distances between the first and third axes and between the second and third axes, respectively, when the workpiece and said rolling gear dies are initially engaged, then after the workpiece and the first and second rolling gear dies are substantially enmeshed, for continuing to advance said first and second rolling gear dies in the in-feed direction, each by an additional increment for net shaping engagement with the workpiece.
- 44. Apparatus for net shaping gear teeth as set forth in claim 43
- wherein said in-feed actuator means includes a single in-feed actuator mechanism for simultaneously operating both of said first and second in-feed assemblies.
- 45. Apparatus for net shaping gear teeth as set forth in claim 44 including:
- first and second axial adjustment means, respectively, for selectively adjusting said first and second rolling gear dies along the first and second axes, respectively, to assume a desired orientation relative to the workpiece;
- parallel adjustment means for selectively adjusting said first and second rolling gear dies within the common plane to assume a desired orientation relative to the workpiece; and
- helical adjustment means for selectively adjusting said first and second rolling gear dies out of the common plane to assume a desired orientation relative to the workpiece.
- 46. Apparatus for net shaping gear teeth as set forth in claim 43 including:
- locking means for securing said first and second rolling gear dies in their respective desired orientations.
- 47. Apparatus for net shaping gear teeth as set forth in claim 45
- wherein the workpiece has an outer peripheral profiled surface which is slightly oversized from that of a desired formed gear; and
- wherein each of said first and second rolling gear dies has an outer peripheral profiled surface which is substantially similar to that of the desired shape.
- 48. Apparatus for net shaping gear teeth as set forth in claim 43
- wherein said parallel adjustment means includes means mounting each of said first and second rolling gear dies for pivotal movement about an axis generally perpendicular to the common plane; and
- said helical adjustment means includes means mounting each of said first and second rolling gear dies for pivotal movement about an axis generally perpendicular to the third axis and lying within the common plane.
- 49. Apparatus for net shaping gear teeth as set forth in claim 43 including:
- means for coordinating rotation of the workpiece with said first and second rolling gear dies to assure enmeshed engagement of said outer peripheral profiled surfaces of said first and second rolling gear dies with the outer peripheral profiled surface of the workpiece upon operation of said in-feed actuator means.
- 50. Apparatus for net shaping gear teeth as set forth in claim 44 including:
- a stationary bridge member;
- first and second frame members mounted on said bridge member for movement in directions, selectively, toward one another in one instance and away from one another in another instance;
- said first in-feed assembly means being mounted on said first frame member;
- said second in-feed assembly means being mounted on said second frame member;
- said in-feed actuator means including:
- an actuator plate;
- a pair of actuator bars generally parallel to the common plane and perpendicular to the first, second, and third axes and extending between and attached to said second frame member and to said actuator plate at spaced locations along said actuator bars;
- an actuating cylinder mounted on said actuator plate;
- an actuating piston movable between first and second positions within said actuating cylinder; and
- an actuating rod extending through said actuator plate connecting said actuating piston and said first frame member;
- said first frame member extending transverse of and being slidable on said actuator bars;
- whereby movement of said actuating piston within said actuating cylinder from said first position to said second position is effective to move said first and second in-feed assembly means by substantially equal incremental distances and at substantially equal feed rates into meshing, then net shaping, engagement with the workpiece; and
- whereby movement of said actuating piston within said actuating cylinder from said second position to said first position is effective to move said first and second in-feed assembly means by substantially equal incremental distances and at substantially equal feed rates out of net shaping, then meshing, engagement with the workpiece.
- 51. Apparatus for net shaping gear teeth as set forth in claim 50
- wherein said first in-feed assembly means includes a first housing mounting said first rolling gear die for rotation on the first axis;
- wherein said second in-feed assembly means includes a second housing mounting said second rolling gear die for rotation on the second axis; and
- coordinating means interconnecting said first and second rolling gear die housings for assuring equalized movement of said first and second rolling gear dies in their respective in-feed directions upon operation of said in-feed actuator means.
- 52. Apparatus for net shaping gear teeth as set forth in claim 51
- wherein said coordinating means includes rack and pinion means.
- 53. Apparatus for net shaping gear teeth as set forth in claim 51
- wherein said coordinating means includes:
- a first elongated rack fixed at one end to said first rolling gear die housing and journaled at its opposite end to said second rolling gear die housing;
- a second elongated rack fixed at one end to said second rolling gear die housing and journaled at its opposite end to said first rolling gear die housing; and
- pinion means meshingly engaged with said first and second elongated racks;
- whereby movement of said first and second rolling gear dies in their respective in-feed directions upon operation of said in-feed actuator means is substantially equalized.
- 54. Apparatus for net shaping gear teeth of a high performance gear comprising:
- means providing a controlled metastable austenitic environment;
- support means within said controlled metastable austenitic environment for rotatably supporting on a first fixed axis a first rolling gear die having an outer peripheral profiled surface extending between spaced lateral surfaces;
- in-feed assembly means within said controlled metastable austenitic environment for rotatably supporting on a second axis, generally parallel to the first axis, a second rolling gear die having an outer peripheral profiled surface extending between spaced lateral surfaces;
- through-feed means within said controlled metastable austenitic environment rotatably supporting on a third axis generally parallel to the first and second axes a workpiece in the form of a near net shaped gear blank having an outer peripheral profiled surface extending between spaced lateral surfaces, said through-feed means being operable for positioning the workpiece along the third axis such that the outer peripheral surface of the workpiece meshingly engages said first and second rolling gear dies and is positioned substantially coextensive with said first and second rolling gear dies in the through-feed direction; and
- in-feed actuator means operable for advancing said in-feed assembly means and said second rolling gear die thereon within a common plane generally containing the first, second, and third axes, in an in-feed direction substantially perpendicular to the third axis until the outer peripheral surfaces of said first and second rolling gear dies engage the workpiece at diametrically opposed locations and at near net shaped center distances establishing initial center distances between the first and third axes and between the second and third axes, respectively, when the workpiece and said rolling gear dies are initially engaged, then after the workpiece and said first and second rolling gear dies are substantially enmeshed, for continuing to advance said second rolling gear die in the in-feed direction by an additional increment for net shaping engagement with the workpiece.
- 55. Apparatus for net shaping gear teeth as set forth in claim 54 including:
- first and second axial adjustment means, respectively, for selectively adjusting said first and second rolling gear dies along the first and second axes, respectively, to assume a desired orientation relative to the workpiece;
- parallel adjustment means for selectively adjusting said first and second rolling gear dies within the common plane to assume a desired orientation relative to the workpiece; and
- helical adjustment means for selectively adjusting said first and second rolling gear dies out of the common plane to assume a desired orientation relative to the workpiece.
- 56. Apparatus for net shaping gear teeth as set forth in claim 55 including:
- locking means for securing said first and second rolling gear dies in their respective desired orientations.
- 57. Apparatus for net shaping gear teeth as set forth in claim 56
- wherein the workpiece has an outer peripheral profiled surface which is slightly oversized from that of a desired formed gear; and
- wherein each of said first and second rolling gear dies has an outer peripheral profiled surface which is substantially similar to that of the desired shape.
- 58. Apparatus for net shaping gear teeth as set forth in claim 54
- wherein said parallel adjustment means includes means mounting each of said first and second rolling gear dies for pivotal movement about an axis generally perpendicular to the common plane; and
- said helical adjustment means includes means mounting each of said first and second rolling gear dies for pivotal movement about an axis generally perpendicular to the third axis and lying within the common plane.
Parent Case Info
This application is a divisional application of Ser. No. 08/972,938 filed on Nov. 18, 1997, now U.S. Pat. No. 6,007,762; which is a divisional application of Ser. No. 08/529,774, filed on Sep. 18, 1995 now U.S. Pat. No. 5,799,398; which is a divisional application of application Ser. No. 08/285,883 filed on Aug. 4, 1994, now U.S. Pat. No. 5,451,275; which is a continuation application of Ser. No. 07/932,206 filed on Aug. 19, 1992 now abandoned.
GOVERNMENT SPONSORSHIP
This invention was made with Government support under Contract No. N00039-88-C-0051 awarded by U.S. Department of the Navy. The Government has certain rights in the invention.
US Referenced Citations (6)
Divisions (3)
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Date |
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972938 |
Nov 1997 |
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529774 |
Sep 1995 |
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285883 |
Aug 1994 |
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Continuations (1)
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932206 |
Aug 1992 |
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