Claims
- 1. A method of determining the length of a tool means driven by a servo mechanism means for effecting work on a worksheet along a substantially vertical direction, comprising the steps of:a) predefining a first distance separating said tool means with a die means; b) driving said tool means towards said die means until said tool means comes into contact with said die means or a worksheet placed over said die means; c) determining the force of said servo mechanism means when said tool means contacts said die means or said worksheet; and d) correlating the length of said tool means with said force.
- 2. Method of claim 1, wherein said servo mechanism means turns a rotating means for driving said tool means, and wherein said step d further comprises the step of:equating the amount of rotation of said rotating means with said length of said tool means.
- 3. Method of claim 2, wherein a contact means is coupled to said rotating means, further comprising the step of:correlating the distance traveled by said contact means along a direction substantially perpendicular to the direction of movement of said tool means with the driven distance of said tool means.
- 4. Method of claim 3, wherein said contact means comprises a roller, said method further comprising the step of:configuring a cam at the top of said tool means to have at least two opposed sloping surfaces that meet to form a common uppermost area, said roller coacting with one of said sloping surfaces for driving said tool means towards said die means.
- 5. Method of claim 3, wherein said contact means comprises a roller, said method further comprising the step of:configuring a cam at the top of said tool means to have at least one curved surface for coacting with said roller, said roller coacting with said curved surface for driving said tool means towards said die means.
- 6. Method of claim 1, wherein said tool means comprises a ram, a tool cylinder in alignment with said ram, a stripper means movably coupled to the end of said cylinder, and a tool movably positioned inside said cylinder, said method further comprising the steps of:predefining a first limit substantially at which there should be a decrease in the force being effected by said servo mechanism means to drive said tool means; continuing to drive said tool means towards said die means after said tool means has made contact with said die means; and determining said tool within said cylinder to require positional adjustment if the force being effected by said servo mechanism to drive said tool means continues to increase after said first limit is reached.
- 7. Method of claim 6, further comprising the step of:effecting the adjustment of said tool within said cylinder by moving said tool closer to said stripper means.
- 8. Method of claim 1, further comprising the steps of:storing the value of said force in a memory; converting the stored value of said force into a value that is representative of the length of said tool means; and displaying said value representative of the length of said tool means.
- 9. Method of claim 2, wherein said rotating means comprises a threaded drive, and wherein said step b further comprises the step of:movably coupling a contact means to said threaded drive so that when said servo mechanism means activates, said threaded drive is rotated to move said contact means to drive said tool means.
- 10. Method of claim 1, further comprising the step of:coupling said servo mechanism means to means intermediate of said tool means, said servo mechanism driving said intermediate means in a non-vertical direction, said intermediate means coacting with said tool means for driving said tool means in a vertical direction for effecting work on said worksheet.
- 11. Method of claim 2, wherein said rotating means comprises a threaded drive, said method further comprising the steps of:electrically coupling an encoder to said servo mechanism means; monitoring the number of rotations of said threaded drive; and correlating the length of said tool means with the number of rotations of said threaded drive.
- 12. Method of claim 1, further comprising the steps of:correlating the thickness of a worksheet by calculating the difference between said force representative of the length of said tool means and a subsequent force exerted by said servo mechanism means for driving said tool means into contact with said worksheet after said worksheet has been placed over said die means.
- 13. In a sheet fabrication machine, a method of establishing a correct setting for a tool means to effect work against a die means with reference to the correct setting, comprising the steps of:a) driving said tool means towards said die means until said tool means comes into contact with said die means or a worksheet placed over said die means; b) determining the force said tool means exerts when it contacts either said die means or said worksheet; and c) utilizing said determined force for defining a setting from which the operation of said tool means is referenced.
- 14. Method of claim 13, wherein said tool means comprises a ram having a top portion and a tool movable by said ram, said method further comprising the steps of:activating a servo motor means to drive a contact means to coact with said top portion of said tool means for driving said tool means to contact either said die means or said worksheet; reading the force output from said servo motor means; and storing said read force in a memory means for use as said setting.
- 15. Method of claim 14, wherein said top portion includes at least one sloping surface that coacts with said contact means, said servo motor means driving said contact means to coact with said sloping surface for driving said tool means to contact either said die means or said worksheet to define said setting.
- 16. Method of claim 14, wherein said contact means comprises a roller, said step a further comprising the step of:activating said servo motor means to drive said roller along a direction substantially perpendicular to the plane of said worksheet to coact with said top portion of said tool means, said top portion converting the direction of said force for driving said tool means towards said die means for effecting work on said worksheet.
- 17. In a sheet fabrication machine having at least one servo motor means for driving at least one of an upper tool means and a lower tool means, a method of establishing a setting whereby said upper tool means can reference as its base position when it effects work, comprising the steps of:a) driving said upper tool means and said lower tool means towards each other along a driving direction until said upper tool means comes into contact with either said lower tool means or a worksheet placed between said upper and lower tools; b) determining the force required to drive said upper tool means to make its first contact with either said lower tool means or said worksheet; and c) utilizing said determined force for defining said setting from which said upper tool means references as its base position.
- 18. Method of claim 17, wherein said upper tool means comprises a ram having a top portion and a tool movable by said ram, said method further comprising the steps of:activating said one servo motor means to drive a contact means in a direction not in alignment with said driving direction to coact with said top portion of said upper tool means for driving said tool means to contact either said die means or said worksheet; reading the force output from said one servo motor means; storing said read force in a memory means; and using said stored force for defining said setting.
- 19. Method of claim 18, wherein said top portion includes at least one sloping surface that coacts with said contact means, said one servo motor means driving said contact means to coact with said sloping surface for driving said tool means to contact either said die means or said worksheet to define said setting.
- 20. Method of claim 18, wherein said contact means comprises a roller, said step a further comprising the step of:activating said one servo motor means to drive said roller along a direction substantially perpendicular to the plane of said worksheet to coact with said top portion of said tool means, said top portion converting the direction of said force for driving said tool means towards said die means for effecting work on said worksheet.
- 21. Method of claim 17, wherein said machine further includes an other servo, motor means, said method further comprising the step of:utilizing said other servo motor means to drive a contact means in a direction not in alignment with said driving direction to coact with said lower tool means so as to drive said lower tool means towards said upper tool means to effect a machining operation on said worksheet.
- 22. In a sheet fabrication machine having at least one servo motor means for driving at least one of an upper tool means and a lower tool means, a method of establishing a setting whereby said upper tool means can reference as its base position when it effects work, comprising the steps of:a) driving said upper tool means and said lower tool means towards each other along a driving direction until said upper tool means comes into contact with either said lower tool means or a worksheet placed between said upper and lower tools; b) determining the distance traversed by said upper tool means to make its first contact with either said lower tool means or said worksheet; and c) utilizing said determined distance for defining said setting from which said upper tool means references as its base position.
- 23. Method of claim 22, wherein said upper tool means comprises a ram having a top portion and a tool movable by said ram, said method further comprising the steps of:activating said one servo motor means to drive a contact means in a direction not in alignment with said driving direction to coact with said top portion of said upper tool means for driving said tool means to contact either said die means or said worksheet; reading the force output from said one servo motor means; equating said force with said determined distance; storing said determined distance in a memory means; and using said stored determined distance for defining said setting.
- 24. Method of claim 23, wherein said top portion includes at least one sloping surface that coacts with said contact means, said one servo motor means driving said contact means to coact with said sloping surface for driving said tool means to contact either said die means or said worksheet to define said setting.
- 25. Method of claim 23, wherein said contact means comprises a roller, said step a further comprising the step of:activating said one servo motor means to drive said roller along a direction substantially perpendicular to the plane of said worksheet to coact with said top portion of said tool means, said top portion converting the direction of said force for driving said tool means towards said die means for effecting work on said worksheet.
- 26. Method of claim 22, wherein said machine further includes an other servo motor means, said method further comprising the step of:utilizing said other servo motor means to drive a contact means in a direction not in alignment with said driving direction to coact with said lower tool means so as to drive said lower tool means towards said upper tool means to effect a machining operation on said worksheet.
Parent Case Info
This application is a divisional of Ser. No. 09/174,576 filed Oct. 19, 1998 is a Continuation in Part of Ser. No. 09/056,776 filed Apr. 8, 1998 which now U.S. Pat. No. 6,021,658.
US Referenced Citations (15)
Foreign Referenced Citations (5)
| Number |
Date |
Country |
| 0 417 836 |
Mar 1991 |
EP |
| 2323318 |
Sep 1998 |
GB |
| 05-71369 |
Sep 1991 |
JP |
| 11-241608 |
Dec 1997 |
JP |
| 2-115537 |
Oct 1998 |
JP |
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| Entry |
| “New servo-driven punch press broadens options for buyers”, Sheet Metal Industries, Oct. 1995, pp 14, 16. |
| Wiedemann Muratec advertisement, 1998. |
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
09/056776 |
Apr 1998 |
US |
| Child |
09/174576 |
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US |