Claims
- 1. A method of monitoring the operation of a press machine, comprising the steps of:
running the press machine through a plurality of press running cycles; defining a plurality of press operating events associated with the operation of said press machine, each respective one of said plurality of press operating events having a modifiable control function associated therewith; providing for each respective one of said plurality of press operating events a respective measure of the vibrational activity associated therewith present in the press machine during each respective one of said plurality of press running cycles and generating a respective vibration measurement signal representative thereof; processing the respective vibration measurement signals associated with each respective one of said plurality of press operating events to identify the presence of a vibration trend therein meeting a defined trending criteria; and modifying the respective control function of each press operating event determined by said processing step to be associated with the identification of said vibration trend.
- 2. The method as recited in claim 1, wherein said plurality of press operating events includes stripper plate impact on the downstroke of the press machine slide, punch impact on a workpiece, snap-through activity, and stripper plate impact on the upstroke of the press machine slide.
- 3. The method as recited in claim 1, wherein said step of providing vibrational activity measurements further includes the step of:
providing at least one accelerometer coupled to said press machine.
- 4. The method as recited in claim 1, wherein said defined trending criteria involves a rate of change in the vibration measurement signals exceeding a predetermined threshold level.
- 5. The method as recited in claim 1, wherein the step of running the press machine through a plurality of press running cycles further includes the step of varying the press running speed.
- 6. The method as recited in claim 1, wherein the step of running the press machine through a plurality of press running cycles further includes the step of varying the load developed within said press machine.
- 7. A method of monitoring the operation of a press machine, comprising the steps of:
running the press machine through a plurality of press running cycles; providing a respective measure of the vibrational activity present in said press machine during each respective one of said plurality of press running cycles and generating a respective vibration measurement signal representative thereof; defining a plurality of press operating events associated with the operation of said press machine, each respective one of said plurality of press operating events having a modifiable control function associated therewith; resolving the respective vibration measurement signal associated with each respective one of said plurality of press running cycles into a corresponding set of component vibration signals each associated with a respective one of said plurality of press operating events; processing the respective set of component vibration signals associated with each respective one of said plurality of press running cycles to identify the presence of a vibration trend therein meeting a defined trending criteria, the identification of said vibration trend being made in relation to component vibration signals associated with the same press operating event; and modifying the respective control function of each press operating event which corresponds to the component vibration signals associated with identification of said vibration trend.
- 8. The method as recited in claim 7, further includes the steps of:
correlating the respective vibration measurement signal associated with each respective one of said plurality of press running cycles to a preselected press operating parameter; and correlating the occurrence of each respective one of said plurality of press operating events to said preselected press operating parameter.
- 9. The method as recited in claim 8, further includes the step of:
correlating the respectively corresponding set of component vibration signals of each respective vibration measurement signal to respective ones of said plurality of press operating events based upon the vibration measurement signal correlation involving said preselected press operating parameter and the press operating event correlation involving said preselected press operating parameter.
- 10. The method as recited in claim 9, wherein said preselected press operating parameter includes a measure of the press machine slide displacement relative to bottom dead center.
- 11. The method as recited in claim 7, wherein said plurality of press operating events includes stripper plate impact on the downstroke of the press machine slide, punch impact on a workpiece, snap-through activity, and stripper plate impact on the upstroke of the press machine slide.
- 12. The method as recited in claim 7, wherein said step of providing vibrational activity measurements further includes the step of:
providing at least one accelerometer coupled to said press machine.
- 13. The method as recited in claim 7, wherein said defined trending criteria involves a rate of change in the component vibration signals exceeding a predetermined threshold level.
- 14. The method as recited in claim 7, wherein the step of running the press machine through a plurality of press running cycles further includes the step of varying the press running speed.
- 15. The method as recited in claim 7, wherein the step of running the press machine through a plurality of press running cycles further includes the step of varying the load developed within said press machine.
- 16. A system for monitoring the operation of a press machine over a plurality of press running cycles, comprising:
means for defining a plurality of press operating events associated with the operation of said press machine, each respective one of said plurality of press operating events having a modifiable control function associated therewith; measurement means for providing, with respect to each one of said plurality of press operating events, a respective measure of the vibrational activity associated therewith present in the press machine during each one of said plurality of press running cycles and for generating a respective vibration measurement signal representative thereof; processor means for processing the respective vibration measurement signals associated with each respective one of said plurality of press operating events to identify the presence of a vibration trend therein meeting a defined trending criteria and to generate trend identification signals representative thereof; and controller means, responsive to the trend identification signals generated by said processor means, for modifying the respective control function of each press operating event associated with identification of said vibration trend.
- 17. The system as recited in claim 16, wherein said plurality of press operating events includes stripper plate impact on the downstroke of the press machine slide, punch impact on a workpiece, snap-through activity, and stripper plate impact on the upstroke of the press machine slide.
- 18. The system as recited in claim 16, wherein said measurement means further includes at least one accelerometer coupled to said press machine.
- 19. The system as recited in claim 16, wherein said defined trending criteria involves a rate of change in the vibration measurement signals exceeding a predetermined threshold level.
- 20. The system as recited in claim 16, wherein the press running speed is varied over said plurality of press running cycles.
- 21. The system as recited in claim 16, wherein the load developed within said press machine is varied over said plurality of press running cycles.
- 22. A system for monitoring the operation of a press machine over a plurality of press running cycles, comprising:
measurement means for providing a respective measure of the vibrational activity present in said press machine during each respective one of said plurality of press running cycles and for generating a respective vibration measurement signal representative thereof; means for defining a plurality of press operating events associated with the operation of said press machine, each respective one of said plurality of press operating events having a modifiable control function associated therewith; signal resolving means for resolving the respective vibration measurement signal associated with each respective one of said plurality of press running cycles into a corresponding set of component vibration signals each associated with a respective one of said plurality of press operating events; processor means for processing the respective set of component vibration signals associated with each respective one of said plurality of press running cycles to identify the presence of a vibration trend therein meeting a defined trending criteria and to generate trend identification signals representative thereof, wherein the identification being made in relation to component vibration signals associated with the same press operating event; and control means, responsive to the trend identification signals generated by said processor means, for modifying the respective control function of each press operating event which corresponds to the component vibration signals associated with identification of said vibration trend.
- 23. The system as recited in claim 22, further comprises:
a first correlation means for correlating the respective vibration measurement signal associated with each respective one of said plurality of press running cycles to a preselected press operating parameter and for generating a first correlation signal group representative thereof; and a second correlation means for correlating the occurrence of each respective one of said plurality of press operating events to said preselected press operating parameter and for generating a second correlation signal group representative thereof.
- 24. The system as recited in claim 23, further comprises:
a third correlation means, responsive to the first correlation signal group generated by said first correlation means and to the second correlation signal group generated by said second correlation means, for correlating the respectively corresponding set of component vibration signals of each respective vibration measurement signal to respective ones of said plurality of press operating events.
- 25. The system as recited in claim 24, wherein said preselected press operating parameter includes a measure of the press machine slide displacement relative to bottom dead center.
- 26. The system as recited in claim 22, wherein said plurality of press operating events includes stripper plate impact on the downstroke of the press machine slide, punch impact on a workpiece, snap-through activity, and stripper plate impact on the upstroke of the press machine slide.
- 27. The system as recited in claim 22, wherein said measurement means further comprises:
at least one accelerometer coupled to said press machine.
- 28. The system as recited in claim 22, wherein said defined trending criteria involves a rate of change in the component vibration signals exceeding a predetermined threshold level.
- 29. The system as recited in claim 22, wherein the press running speed is varied over said plurality of press running cycles.
- 30. The system as recited in claim 22, wherein the load developed within said press machine is varied over said plurality of press running cycles.
- 31. A method of monitoring the operation of a press machine having an operatively movable press member, said method comprising the steps of:
defining at least two load measurement locations associated with said movable press member; providing a measure of the load developed within said movable press member at each respective one of said at least two load measurement locations and generating load measurement signals representative thereof; determining a tipping moment experienced by said movable press member based upon the generated load measurement signals; and evaluating the determined tipping moment relative to a predefined tipping moment severity level.
- 32. The method as recited in claim 31, wherein the load measurement providing step further includes the step of:
providing a respective load sensor coupled to said movable press member at each respective one of said at least two load measurement locations.
- 33. The method as recited in claim 32, wherein said movable press member includes at least one of a press machine slide and a press machine stripper plate.
- 34. The method as recited in claim 31, wherein the at least two load measurement locations includes a first measurement location and a second measurement location each configured at a respective lateral side of said movable press member.
- 35. The method as recited in claim 31, wherein the at least two load measurement locations includes a first measurement location and a second measurement location each respectively configured at a forward side and a rearward side of said movable press member.
- 36. The method as recited in claim 31, wherein the at least two load measurement locations includes a pair of measurement locations spaced equidistantly from a reference axis.
- 37. The method as recited in claim 36, wherein the tipping moment determination step further comprises the steps of:
computing the difference between the respective load measurement signals associated with each respective one of said pair of measurement locations and generating a difference signal representative thereof; and computing the tipping moment as a function of the generated difference signal and the displacement of either one of said pair of measurement locations relative to the reference axis.
- 38. The method as recited in claim 31, wherein the press machine monitoring activity occurs substantially continuously over at least the duration of the press machine slide travel.
- 39. The method as recited in claim 31, wherein the tipping moment evaluation step further includes the step of:
controlling the operation of the movable press member in accordance with the evaluation results.
- 40. A system for monitoring the operation of a press machine having an operatively movable press member, comprising:
measurement means for providing a measure of the load developed within said movable press member at each respective one of at least two load measurement locations thereof and for generating load measurement signals representative thereof; processor means, responsive to said load measurement signals generated by said measurement means, for determining a tipping moment experienced by said movable press; and evaluation means for evaluating the determined tipping moment relative to a predefined tipping moment severity level.
- 41. The system as recited in claim 40, wherein said measurement means further comprises:
a respective load sensor coupled to said movable press member at each respective one of said at least two load measurement locations.
- 42. The system as recited in claim 41, wherein said movable press member includes at least one of a press machine slide and a press machine stripper plate.
- 43. The system as recited in claim 40, wherein the at least two load measurement locations includes a first measurement location and a second measurement location each configured at a respective lateral side of said movable press member.
- 44. The system as recited in claim 40, wherein the at least two load measurement locations includes a first measurement location and a second measurement location each respectively configured at a forward side and a rearward side of said movable press member.
- 45. The system as recited in claim 40, wherein the at least two load measurement locations includes a pair of measurement locations spaced equidistantly from a reference axis.
- 46. The system as recited in claim 45, wherein said processor means further comprises:
first means for computing the difference between the respective load measurement signals associated with each respective one of said pair of measurement locations and generating a difference signal representative thereof; and second means for computing the tipping moment as a function of the generated difference signal and the displacement of either one of said pair of measurement locations relative to the reference axis.
- 47. The system as recited in claim 40, wherein the press machine monitoring activity occurs substantially continuously over at least the duration of the press machine slide travel.
- 48. The system as recited in claim 40, wherein said evaluation means further comprises:
a controller to control the operation of said movable press member in accordance with the evaluation results.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application relates to and claims the benefit under 35 U.S.C. §119 of Provisional Application Serial No. 60/106,899 filed Nov. 3, 1998 by the same inventor.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60106899 |
Nov 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09431355 |
Nov 1999 |
US |
| Child |
10166551 |
Jun 2002 |
US |