Claims
- 1. An apparatus for winding wire into pie-shaped coil bundles, said apparatus comprising:
- a winding mandrel rotatable about a mandrel axis and providing a bottom wall and two side walls defining an annular cavity for containing multiple turns of the wire, said side walls converging radially outwardly toward the opening to said annular cavity at at least one portion of said annular cavity;
- guide means for axially positioning the wire within said annular cavity as said winding mandrel rotates to wind the wire into said annular cavity, said guide means including a positioning portion cooperating with the wire and extending between said two side walls and into said annular cavity for placing the wire at predetermined axial positions within said annular cavity; and
- adjusting means coupled to said guide means for adjusting the location of said positioning portion of said guide means within said annular cavity to adjust the predetermined axial positions of the wire within said annular cavity.
- 2. An apparatus as recited in claim 1 wherein said guide means includes tilt means for tilting said positioning portion within said converging portion of said annular cavity to place the wire within said converging portion of said annular cavity at axial positions lateral to said opening to said annular cavity.
- 3. An apparatus as recited in claim 2 wherein said positioning portion includes an output end where said wire exits said positioning guide, and wherein said tilt means is rotatable about a tilt axis passing through said output end of said positioning guide.
- 4. An apparatus as recited in claim 2 further comprising control means coupled to control said tilt means and responsive to the rotation of said winding mandrel for tilting said positioning guide to place the wire within said converging portion of said annular cavity.
- 5. An apparatus as recited in claim 1 wherein said positioning guide includes a positioning wheel confronting said annular cavity and carrying the wire on a portion of the periphery thereof.
- 6. An apparatus as recited in claim 5 wherein said positioning guide further includes caster mounting means for rotatably mounting said positioning wheel about a caster axis substantially orthogonal to said mandrel axis to allow said positioning wheel to caster to a position parallel to axially skewed portions of said side walls of said annular cavity.
- 7. An apparatus as recited in claim 1 wherein said adjusting means includes carriage means for carrying said guide means along a path substantially parallel to said mandrel axis, and also includes carriage drive means for moving said carriage means along said path to enable said guide means to axially position the wire within said annular cavity.
- 8. An apparatus as recited in claim 7 wherein said carriage drive means includes servo motor means coupled to said carriage means for moving said carriage means along said path, and also includes control means coupled to control said servo motor means for positioning said carriage means and attached guide means to adjust said predetermined axial positions of the wire within said annular cavity.
- 9. An apparatus as recited in claim 8 wherein said servo motor means is coupled to said carriage means by a traverse drive screw disposed substantially parallel to said mandrel axis and rotatable by said servo motor means and by a traverse drive nut coupled to receive said traverse drive screw and coupled to move said carriage means along said path as said traverse drive rotates.
- 10. An apparatus as recited in claim 1 wherein said winding mandrel includes at least two coil side forms and at least one coil inside form installed on a mandrel tube with each said coil inside form being disposed between two of said coil side forms, wherein the periphery of said coil inside form defines said bottom wall of said annular cavity and portions of the sides of said coil side forms define said side wall of said annular cavity.
- 11. An apparatus as recited in claim 1 wherein said winding mandrel includes several like annular cavities arranged along said mandrel axis, each of said annular cavities being defined by the periphery of a coil inside form and side walls of two adjacent coil side forms, said coil inside forms and said coil side forms being alternately positioned on a mandrel tube for rotation therewith.
- 12. An apparatus as recited in claim 11 further comprising measuring means for measuring the axial position of each of said annular cavities, and control means coupled to said adjusting means and responsive to said measuring means for adjusting the axial location of said positioning guide of said guide means in response to the measured axial position of each of said annular cavities.
- 13. An apparatus for winding wire into bundles, said apparatus comprising:
- a winding mandrel rotatable about a mandrel axis and providing an annular cavity for containing multiple turns of the wire, said winding mandrel having a radially varying cross-section;
- guide means adjacent said winding mandrel for axially positioning the wire within said annular cavity as said winding mandrel rotates to wind the wire into said annular cavity, said guide means including a positioning guide cooperating with the wire for placing the wire at predetermined axial positions within said annular cavity; and
- means coupled to said guide means for radially translating said positioning guide to substantially maintain a predetermined positional relationship between said positioning guide and said peripheral cavity as said winding mandrel rotates to present varying radial dimensions to said positioning guide.
- 14. An apparatus as recited in claim 13 wherein said means for radially translating said positioning guide includes mounting means for movably mounting said positioning guide, and also includes lift means for moving said mounting means to maintain said predetermined positional relationship between said positioning guide and said peripheral cavity.
- 15. An apparatus as recited in claim 14 wherein said mounting means is pivotably mounted for pivoting about a lift axis disposed substantially parallel to said mandrel axis.
- 16. An apparatus as recited in claim 14 wherein said lift means includes servo motor means for rotating a lift cam, said lift cam confronting said mounting means and operable for pivoting said pivot mounting means about a lift axis, and also includes control means responsive to the rotation of said winding mandrel for controlling said servo motor means to maintain said predetermined positional relationship between said positioning guide and said peripheral cavity.
- 17. An apparatus as recited in claim 13 wherein said positioning guide includes a positioning wheel confronting said annular cavity and carrying the wire on a portion of the periphery thereof, said periphery of said positioning wheel imposes a prebend in the wire opposite the bend imposed on the wire when wound onto said winding mandrel to reduce the bowing of the wire away from the straight sides of said winding mandrel.
- 18. An apparatus as recited in claim 13 wherein said winding mandrel includes at least two coil side forms and at least one coil inside form installed on a mandrel tube with each said coil inside form being disposed between two of said coil side forms, wherein the periphery of said coil inside form is substantially quadrilateral in cross-section and defines a bottom wall of said annular cavity and portions of the sides of said coil side forms define a side wall of said annular cavity.
- 19. An apparatus as recited in claim 13 wherein said winding mandrel includes several like annular cavities arranged along said mandrel axis, each of said annular cavities being defined by the periphery of a coil inside form and side walls of two adjacent coil side forms, said coil inside forms and said coil side forms being alternately positioned on a mandrel tube for rotation therewith.
- 20. An apparatus as recited in claim 19 further comprising measuring means for measuring the axial position of each of said annular cavities, and control means coupled to said adjusting means and responsive to said measuring means for adjusting the axial location of said positioning guide of said guide means in response to the measured axial position of each of said annular cavities.
- 21. An apparatus for winding a wire into a plurality of coil bundles, said apparatus comprising:
- a winding mandrel rotatable about a mandrel axis and having a plurality of axially-spaced annular cavities, each cavity being adapted for receiving the wire and contai,ning one coil bundle;
- guide means sequentially cooperative with each of said annular cavities for guiding the wire into each of said annular cavities as said winding mandrel rotates to wind the wire into each of said annular cavities;
- measuring means adjacent said winding mandrel for measuring the axial position of each of said annular cavities; and
- positioning means responsive to said measuring means for sequentially positioning said guide means with respect to each annular cavity in accordance with the measured axial position of each of said annular cavities.
- 22. An apparatus as recited in claim 21 wherein said measuring means includes probe means for sensing the position of each annular cavity, said probe means being coupled to said positioning means for movement therewith, and control means for causing said positioning means to axially move said probe means within each annular cavity until said probe means senses the position of said annular cavity and for remembering the position of said positioning means when said probe means senses the position of each annular cavity.
- 23. An apparatus as recited in claim 22 wherein said measuring means further includes probe positioning means for extending said probe means toward said winding mandrel during measuring and for retracting said probe means away from said winding mandrel during winding.
- 24. An apparatus as recited in claim 23 wherein said measuring means includes mandrel orienting means for orienting said winding mandrel at a fixed position during the measurement of the positions of said annular cavities.
- 25. An apparatus as recited in claim 22 wherein said positioning means includes carriage means for carrying said probe means and said guide means along a path substantially parallel to said mandrel axis, and also includes carriage drive means for moving said carriage means along said path to enable said probe means to sense the axial positions of said annular cavities and to enable said guide means to axially position the wire within said annular cavity during winding.
- 26. An apparatus as recited in claim 25 wherein said carriage drive means includes servo motor means coupled to said carriage means for moving said carriage means along said path, and wherein said control means is coupled to control said servo motor means for axially moving said carriage means and said attached probe means and guide means for measuring the axial position of each of said annular cavities and for sequentially positioning said guide means with respect to each annular cavity in accordance with the measured axial position of each of said annular cavities.
- 27. An apparatus as recited in claim 26 wherein said servo motor means is coupled to said carriage means by a traverse drive screw disposed substantially parallel to said mandrel axis and rotatable by said servo motor means and by a traverse drive nut coupled to receive said traverse drive screw and coupled to move said carriage means along said path as said traverse drive rotates.
- 28. An apparatus as recited in claim 21 wherein each of said annular cavities is defined by the periphery of a coil inside form and side walls of two adjacent coil side forms, said coil inside forms and said coil side forms being alternately positioned on a mandrel tube for rotation therewith.
- 29. An apparatus for winding wire into a plurality of pie-shaped section bundles, said apparatus comprising:
- a winding mandrel rotatable about a mandrel axis and having a plurality of axially-spaced annular cavities, said winding mandrel having a radially varying cross-section, each annular cavity being adapted for receiving the wire and containing one coil bundle, each annular cavity having a bottom wall and two side walls which converge toward the opening to said annular cavity at one portion of said annular cavity;
- guide means sequentially cooperative with each annular cavity for placing the wire within said annular cavity as said winding mandrel rotates to wind the wire into said annular cavity, said guide means including a positioning guide cooperating with the wire and extending between said two side walls and into said annular cavity for placing the wire at predetermined axial positions within said annular cavity;
- radial translation means coupled to said guide means for radially translating said positioning guide to substantially maintain a predetermined positional relationship between said positioning guide and said peripheral cavity as said winding mandrel rotates to present varying radial dimensions to said positioning guide;
- measuring means adjacent said winding mandrel for measuring the axial position of each of said annular cavities; and
- positioning means responsive to said measuring means for sequentially positioning said guide means with respect to each annular cavity in accordance with the measured axial position of each of said annular cavities and for adjusting the location of said positioning guide of said guide means within said annular cavity to adjust the predetermined axial positions of the wire within said annular cavity.
- 30. An apparatus as recited in claim 29 wherein each of said annular cavities is defined by the periphery of a coil inside form and side walls of two adjacent coil side forms, said coil inside forms and said coil side forms being alternately positioned on a mandrel tube for rotation therewith.
- 31. An apparatus as recited in claim 29 wherein said guide means includes tilt means for tilting said positioning guide within said converging portion of said annular cavity to place the wire within said converging portion of said annular cavity at axial positions lateral to said opening to said annular cavity.
- 32. An apparatus as recited in claim 29 wherein said positioning guide includes a positioning wheel confronting said annular cavity and carrying the wire on a portion of the periphery thereof, said periphery of said positioning wheel imposes a prebend in the wire opposite the bend imposed on the wire when wound onto said winding mandrel to reduce the bowing of the wire away from the straight sides of said winding mandrel, and includes caster mounting means for rotatably mounting said positioning wheel about a caster axis to allow said positioning wheel to caster to a position parallel to said side walls of said annular cavity.
- 33. An apparatus as recited in claim 29 wherein said radial translation means includes pivot mounting means for pivotably mounting said positioning guide, and also includes lift means for pivoting said pivot mounting means about a lift axis to maintain said predetermined positional relationship between said positioning guide and said peripheral cavity.
- 34. An apparatus as recited in claim 29 wherein said measuring means includes probe means for sensing the position of each annular cavity, said probe means being coupled to said positioning means for movement therewith, and probe positioning means for extending said probe means toward said winding mandrel during measuring and for retracting said probe means away from said winding mandrel during winding.
- 35. An apparatus as recited in claim 29 wherein said positioning means includes carriage means for carrying said guide means along a path substantially parallel to said mandrel axis, and also includes carriage drive means for moving said carriage means along said path to enable said guide means to axially position the wire within said annular cavity.
- 36. An apparatus as recited in claim 29 further comprising control means responsive to the rotation of said winding mandrel for controlling said guide means for placing the wire within each annular cavity, for controlling said radial translation means for radially translating said positioning guide, for controlling said measuring means for measuring the axial position of each annular cavity, and for controlling said positioning means for positioning said guide means with respect to each annular cavity.
- 37. An apparatus as recited in claim 36 wherein said guide means includes tilt means for tilting said positioning guide to place the wire within said converging portion of said annular cavity at axial positions lateral to said opening to said annular cavity, said tilt means including tilt servo motor means controlled by said control means for tilting said positioning guide.
- 38. An apparatus as recited in claim 36 wherein said radial translation means includes pivot mounting means for pivotably mounting said positioning guide, a lift cam confronting said pivot mounting means, and lift servo motor means controlled by said control means for rotating said lift cam to raise and lower said positioning guide as said winding mandrel rotates to maintain said predetermined positional relationship between said positioning guide and said peripheral cavity.
- 39. An apparatus as recited in claim 36 wherein said measuring means includes probe means for sensing the position of each annular cavity, said probe means being coupled to said positioning means for movement therewith, and includes probe positioning means for extending said probe means toward said winding mandrel during measuring and for retracting said probe means away from said winding mandrel during winding, wherein said control means controls said positioning means to axially move said probe means within each annular cavity until said probe means senses the position of said annular cavity, and wherein said control means remembers the position of said positioning means when said probe means senses the position of each annular cavity.
- 40. An apparatus as recited in claim 36 wherein said positioning means includes carriage means for carrying said guide means along a path substantially parallel to said mandrel axis, a traverse drive screw disposed substantially parallel to said mandrel axis and coupled to said carriage means by a traverse drive ball nut, and traverse servo motor means controlled by said control means for rotating said traverse drive screw to move said carriage means and attached guide means along said path to enable said guide means to axially position the wire within said annular cavities.
- 41. An apparatus for winding wire into a plurality of quadrilateral section bundles as recited in claim 29 wherein said winding mandrel has a substantially quadrilateral cross-section.
- 42. A method for winding wire into pie-shaped coil bundles, said method comprising the steps of:
- winding the wire into an annular cavity of a winding mandrel rotating about a mandrel axis, said winding mandrel providing a bottom wall and two side walls defining said annular cavity for containing multiple turns of the wire, said side walls converging radially outwardly toward the opening to said annular cavity at least one portion of said annular cavity;
- guiding the wire within said annular cavity as said winding mandrel rotates to wind the wire into said annular cavity, including placing a positioning guide between said two side walls and into said annular cavity for placing the wire at predetermined axial positions within said annular cavity; and
- axially adjusting the location of said positioning guide within said annular cavity to adjust the predetermined axial positions of the wire within said annular cavity.
- 43. A method as recited in claim 42 wherein said step of guiding the wire includes tilting said positioning guide within said converging portion of said annular cavity to place the wire within said converging portion of said annular cavity at axial positions lateral to said opening to said annular cavity.
- 44. A method as recited in claim 43 wherein said step of tilting said positioning guide includes tilting said positioning guide about a tilt axis passing through an output end of said positioning guide, wherein said output end is the point where said wire exits said positioning guide.
- 45. A method as recited in claim 43 wherein said step of tilting said positioning guide includes controlling the angle of tilt according to the rotation of said winding mandrel for placing the wire within said converging portion of said annular cavity.
- 46. A method as recited in claim 42 wherein said step of placing a positioning guide into said annular cavity includes placing a positioning wheel confronting said annular cavity and carrying the wire on a portion of the periphery thereof.
- 47. A method as recited in claim 46 wherein said step of placing a positioning guide into said annular cavity further includes castering said positioning wheel about a caster axis substantially orthogonal to said mandrel axis to allow said positioning wheel to caster to a position parallel to said side walls of said annular cavity.
- 48. A method as recited in claim 42 wherein said step of axially adjusting the location of said positioning guide includes moving said positioning guide along a path substantially parallel to said mandrel axis to axially position the wire within said annular cavity.
- 49. A method as recited in claim 48 wherein said step of moving said positioning guide along a path includes driving a carriage adapted for movement parallel to said mandrel axis by rotating a servo motor, said carriage being operable for carrying said positioning guide, and also includes controlling the rotation of said servo motor to adjust said predetermined axial positions of the wire within said annular cavity.
- 50. A method as recited in claim 42 wherein said step of winding the wire into said annular cavity includes sequentially winding the wire into a plurality of like annular cavities, each of said annular cavities being defined by the periphery of a coil inside form and side walls of two adjacent coil side forms, said coil inside forms and said coil side forms being alternately positioned on a mandrel tube for rotation therewith.
- 51. A method as recited in claim 50 further comprising the steps of measuring the axial position of each of said annular cavities and adjusting the axial location of said positioning guide in response to the measured axial position of each of said annular cavities.
- 52. A method for winding wire into bundles, said method comprising the steps of:
- winding multiple turns of the wire into an annular cavity of a winding mandrel rotating about a mandrel axis, said winding mandrel having a radially varying cross-section;
- guiding the wire within said annular cavity as said winding mandrel rotates to wind the wire into said annular cavity, including extending a positioning guide into said annular cavity for placing the wire at predetermined axial positions within said annular cavity; and
- radially translating said positioning guide to substantially maintain a predetermined positional relationship between said positioning guide and said peripheral cavity as said winding mandrel rotates to present varying radial dimensions to said positioning guide.
- 53. A method as recited in claim 52 wherein said step of radially translating said positioning guide includes pivoting a pivot mounting coupled to said positioning guide about a lift axis to maintain said predetermined positional relationship between said positioning guide and said peripheral cavity.
- 54. A method as recited in claim 53 wherein said step of radially translating said positioning guide includes pivoting said pivot mounting about an axis that is disposed substantially parallel to said mandrel axis.
- 55. A method as recited in claim 53 wherein said step of pivoting said mounting includes positioning a lift cam by rotating a servo motor, said lift cam confronting said pivot mounting and operable for pivoting said pivot mounting about said lift axis, and also includes controlling the rotation of said servo motor according to the rotation of said winding mandrel to maintain said predetermined positional relationship between said positioning guide and said peripheral cavity.
- 56. A method as recited in claim 52 wherein said step of extending a positioning guide into said annular cavity includes extending a positioning wheel confronting said annular cavity and carrying the wire on a portion of the periphery thereof, wherein said periphery of said positioning wheel imposes a prebend in the wire opposite the bend imposed on the wire when wound onto said winding mandrel to reduce the bowing of the wire away from the straight sides of said winding mandrel.
- 57. A method as recited in claim 52 wherein said winding mandrel includes at least two coil side forms and at least one coil inside form installed on a mandrel tube with each said coil inside form being disposed between two of said coil side forms, wherein the periphery of said coil inside form is substantially rectangular in cross-section and defines a bottom wall of said annular cavity and portions of the sides of said coil side forms define a side wall of said annular cavity.
- 58. A method as recited in claim 52 wherein said step of winding the wire into said annular cavity includes sequentially winding the wire into a plurality of like annular cavities, each of said annular cavities being defined by the periphery of a coil inside form and side walls of two adjacent coil side forms, said coil inside forms and said coil side forms being alternately positioned on a mandrel tube for rotation therewith.
- 59. A method as recited in claim 58 further comprising the steps of measuring the axial position of each of said annular cavities and adjusting the axial location of said positioning guide in response to the measured axial position of each of said annular cavities.
- 60. A method for winding wire into a plurality of coil bundles, said method comprising the steps of:
- measuring the axial positions of a plurality of axially-spaced annular cavities disposed on a winding mandrel rotatable about a mandrel axis;
- sequentially positioning a wire guide to sequentially confront each annular cavity at an axial position in accordance with the measured axial position of said annular cavity;
- winding the wire into each annular cavity as said winding mandrel rotates about said mandrel axis, said wire guide acting to guide the wire into said annular cavity; and
- adjusting the axial location of said wire guide with respect to each annular cavity to adjust the axial positions of the wire within said annular cavity during said winding step.
- 61. A method as recited in claim 60 wherein said step of measuring the axial positions of said annular cavities includes sensing the axial position of each annular cavity with probe means by sequentially sensing a side wall of each annular cavity and by remembering the axial position of said probe means when said probe means senses a side wall of said annular cavity.
- 62. A method as recited in claim 61 wherein said step of sensing the position of each annular cavity includes extending said probe means into said annular cavity at a position spaced from said side wall, and axially moving said probe means toward said side wall until said probe means senses said side wall.
- 63. A method as recited in claim 62 wherein said step of sensing said side wall includes contacting said side wall with said probe means and sensing contact between said probe means and said side wall.
- 64. A method as recited in claim 62 wherein said step of sensing the position of each annular cavity includes rotating said winding mandrel to present a radially protruding surface to said probe means prior to said step of axially moving said probe means to sense said side wall, and includes rotating said winding mandrel to rotate said radially protruding surface out of the path of said probe means to allow said probe means to be extended into an adjacent annular cavity.
- 65. A method as recited in claim 61 wherein said probe means and said wire guide are both mounted to a carriage adapted for movement parallel to said mandrel axis and driven by rotating a servo motor, wherein said step of sensing the axial position of each annular cavity includes axially moving said carriage and said probe means by rotating said servo motor until said probe means senses said side wall, and wherein said step of sequentially positioning said wire guide includes axially moving said carriage and said wire guide by rotating said servo motor to a position in accordance with the position of the carriage when said probe means senses said side wall.
- 66. A method as recited in claim 65 wherein said step of adjusting the axial location of said wire guide includes axially moving said carriage and said wire guide by rotating said servo motor in response to the rotation of said winding mandrel.
- 67. A method as recited in claim 60 further including forming said winding mandrel by alternately stacking coil side forms and coil inside forms onto a mandrel tube, said forms being adapted to receive said mandrel tube, then clamping said forms in position for rotation with said mandrel tube, each of said annular cavities being defined by the periphery of a coil inside form and side walls of two adjacent coil side forms.
- 68. A method for winding wire into a plurality of pie-shaped section bundles, said method comprising the steps of:
- providing a winding mandrel rotatable about a mandrel axis having a varying cross-section, said winding mandrel defining a plurality of axially-spaced annular cavities each operable for containing multiple turns of the wire, each annular cavity having two side walls and a bottom wall with said side walls converging radially outwardly toward the opening to said annular cavity at at least one portion of said annular cavity;
- measuring the axial positions of said annular cavities;
- sequentially positioning a positioning guide to sequentially confront each annular cavity at an axial position in accordance with the measured axial position of said annular cavity;
- winding the wire into each annular cavity as said winding mandrel rotates about said mandrel axis, including placing said positioning guide between said two side walls and into said annular cavity for placing the wire at predetermined axial positions within said annular cavity;
- radially translating said positioning guide to substantially maintain a predetermined positional relationship between said positioning guide and said peripheral cavity as said winding mandrel rotates to present varying radial dimensions to said positioning guide; and
- adjusting the axial location of said positioning guide with respect to each annular cavity to adjust the axial positions of the wire within said annular cavity during said winding step.
- 69. A method as recited in claim 68 wherein said step of providing a winding mandrel includes forming said annular cavities on said winding mandrel by alternately stacking coil side forms and coil inside forms onto a mandrel tube, said forms being adapted to receive said mandrel tube, then clamping said forms in position for rotation with said mandrel tube, each of said annular cavities being defined by the periphery of a coil inside form and side walls of two adjacent coil side forms.
- 70. A method as recited in claim 68 wherein said step of winding the wire includes tilting said positioning guide within said converging portion of said annular cavity to place the wire within said converging portion of said annular cavity at axial positions lateral to said opening to said annular cavity.
- 71. A method as recited in claim 68, wherein said step of placing said positioning guide into said annular cavity includes placing a positioning wheel confronting said annular cavity and carrying the wire on a portion of the periphery thereof.
- 72. A method as recited in claim 71 wherein said step of placing said positioning guide into said annular cavity further includes castering said positioning wheel about a caster axis substantially orthogonal to said mandrel axis to allow said positioning wheel to caster to a position parallel to said side walls of said annular cavity.
- 73. A method as recited in claim 71 wherein said step of placing said positioning guide into said annular cavity includes prebending the wire by carrying the wire on a portion of the periphery of said positioning wheel to reduce the bowing of the wire away from the straight sides of said winding mandrel, said positioning wheel rotating in a direction opposite to that of said winding mandrel about an axis that is substantially parallel to said mandrel axis.
- 74. A method as recited in claim 68 wherein said step of radially translating said positioning guide includes pivoting a pivot mounting coupled to said positioning guide about an axis substantially parallel to said mandrel axis to maintain said predetermined positional relationship between said positioning guide and said peripheral cavity.
- 75. A method as recited in claim 68 wherein said step of measuring the axial positions of said annular cavities includes sensing the axial position of each annular cavity with probe means by sequentially sensing a side wall of each annular cavity and by remembering the axial position of said probe means when said probe means senses a side wall of said annular cavity.
- 76. A method as recited in claim 75 wherein said probe means and said positioning guide are both mounted to a carriage adapted for movement parallel to said mandrel axis and driven by rotating a servo motor, wherein said step of sensing the axial position of each annular cavity includes axially moving said carriage and said probe means by rotating said servo motor until said probe means senses said side wall, and wherein said step of sequentially positioning said positioning guide includes axially moving said carriage and said positioning guide by rotating said servo motor to a position in accordance with the position of the carriage when said probe means senses said side wall.
- 77. A method for winding wire into a plurality of pie-shaped quadrilateral section bundles as recited in claim 68 wherein said winding mandrel has a substantially quadrilateral cross-section.
- 78. A winding having a plurality of pie-shaped rectangular section bundles of continuous wire, said winding manufactured by a process comprising the steps of:
- providing a winding mandrel rotatable about a mandrel axis having a substantially rectangular cross-section, said winding mandrel defining a plurality of axially-spaced annular cavities each operable for containing multiple turns of the wire, each annular cavity having two side walls and a bottom wall with said side walls converging radially outwardly toward the opening to said annular cavity at at least one portion of said annular cavity;
- measuring the axial positions of said annular cavities;
- sequentially positioning a positioning guide to sequentially confront each annular cavity at an axial position in accordance with the measured axial position of said annular cavity;
- winding the wire into each annular cavity as said winding mandrel rotates about said mandrel axis, including placing said positioning guide between said two side walls and into said annular cavity for placing the wire at predetermined axial positions within said annular cavity;
- radially translating said positioning guide to substantially maintain a predetermined positional relationship between said positioning guide and said peripheral cavity as said winding mandrel rotates to present varying radial dimensions to said positioning guide; and
- adjusting the axial location of said positioning guide with respect to each annular cavity to adjust the axial positions of the wire within said annular cavity during said winding step.
- 79. An apparatus for winding wire into pie-shaped coil bundles, said apparatus comprising:
- a winding mandrel providing a bottom wall and two side walls defining an annular cavity for containing multiple turns of the wire, said side walls coverging toward a narrow opening to said annular cavity at one portion of said annular cavity so as to provide an undercut cavity portion;
- guide means for axially positioning the wire during relative rotation of said guide means and said winding mandrel to wind the wire into said annular cavity, said guide means including a positioning portion cooperating with the wire for placing the wire at predetermined axial positions laterally of said narrow opening within said undercut portion of said annular cavity; and
- adjusting means coupled to said guide means for adjusting the axial location of said positioning portion of said guide means to adjust said predetermined axial positions of the wire in said annular cavity including the placement of said wire at each of said predetermined axial positions laterally of said narrow opening within said undercut portion of said annular cavity by movement of said positioning portion to align said positioning portion with each said predetermined axial positions.
- 80. An apparatus as recited in claim 79 wherein said positioning guide includes a positioning wheel confronting said annular cavity and carrying the wire on a portion of the periphery thereof.
- 81. An apparatus as recited in claim 80 wherein said positioning guide further includes caster mounting means for rotatably mounting said positioning wheel about a caster axis substantially orthogonal to said mandrel axis to allow said positioning wheel to caster.
- 82. An apparatus as recited in claim 79 wherein said adjusting means includes carriage means for carrying said guide means along a path substantially parallel to said mandrel axis, and also includes carriage drive means for moving said carriage means along said path to enable said guide means to axially position the wire within said annular cavity.
- 83. An apparatus as recited in claim 82 wherein said carriage drive means includes servo motor means coupled to said carriage means for moving said carriage means along said path, and also includes control means coupled to control said servo motor means for positioning said carriage means and attached guide means to adjust said predetermined axial positions of the wire within said annular cavity.
- 84. An apparatus as recited in claim 83 wherein said servo motor means is coupled to said carriage means by a traverse drive screw disposed substantially parallel to said mandrel axis and rotatable by said servo motor means and by a traverse drive nut coupled to receive said traverse drive screw and coupled to move said carriage means along said path as said traverse drive rotates.
- 85. An apparatus as recited in claim 79 wherein said winding mandrel includes at least two coil side forms and at least one coil inside form installed on a mandrel tube with each said coil inside form being disposed between two of said coil side forms, wherein the periphery of said coil inside form defines said bottom wall of said annular cavity and portions of the sides of said coil side forms define said side wall of said annular cavity.
- 86. An apparatus as recited inclaim 79 wherein said winding mandrel includes several like annular cavities arranged along said mandrel axis, each of said annular cavities being defined by the periphery of a coil inside form and side walls of two adjacent coil side forms, said coil inside forms and said coil side forms being alternately positioned on a mandrel tube for rotation therewith.
- 87. An apparatus for winding wire into pie-shaped coil bundles, said apparatus comprising:
- a winding mandrel, having mandrel axis, providing a bottom wall and two side walls defining an annular cavity for containing multiple turns of the wire, said side walls coverging toward a narrow opening.to said annular cavity at one portion of said annular cavity so as to provide an undercut cavity portion;
- said winding mandrel including several like annular cavities arranged along said mandrel axis, each of said annular cavities being defined by the periphery of a coil inside form and side walls of two adjacent coil side forms, said coil inside forms and said coil side forms being alternately positioned on a mandrel tube for rotation therewith;
- guide means for axially positioning the wire during relative rotation of said guide means and said winding mandrel to wind the wire into said annular cavity, said guide means including a positioning portion coooperating with the wire for placing the wire at predetermined axial positions laterally of said narrow opening within said undercut portion of said annular cavity;
- adjusting means coupled to said guide means for adjusting the axial location of said positioning portion of said guide means to adjust said predetermined axial positions of the wire of said annular cavity;
- measuring means for measuring the axial position of each of said annular cavities; and
- control means coupled to said adjusting means and responsive to said measuring means for adjusting the axial location of said positioning guide of siad guide means in response to the measured axial position of each of said annular cavities.
Parent Case Info
This is a continuation of application Ser. No. 662,467, filed Oct. 17, 1984, now abandoned.
US Referenced Citations (7)
Continuations (1)
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Number |
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662467 |
Oct 1984 |
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