Claims
- 1. A main spindle rotation control method for effecting velocity loop control, including proportional control and integral control, for each of two main spindles of a machine so that the two main spindles rotate at the same speed, before a workpiece is delivered between the two main spindles, comprising the steps of:
- (a) determining whether or not the workpiece is to be delivered from one of the two main spindles to the other; and
- (b) inhibiting the integral control and effecting the proportional control of the velocity loop control during a delivery of the workpiece.
- 2. A main spindle rotation control method according to claim 1, wherein position loop control for each of the two main spindles is so effected as to rotate the two main spindles in the same phase, prior to the delivery of the workpiece.
- 3. A main spindle rotation control method for effecting velocity loop control, including integral control, for each of two main spindles of a machine so that the two main spindles rotate at the same speed, before a workpiece is delivered between the two main spindles, comprising the steps of:
- (a) determining whether or not the workpiece is to be delivered from one of the two main spindles to the other; and
- (b) inhibiting the integral control of the velocity loop control during a delivery of the workpiece,
- the integral control being inhibited by setting an integral gain for the velocity loop control to zero.
- 4. A main spindle rotation control method according to claim 1, wherein opening and closing actions of chucks coupled individually to the two main spindles are discriminated, and, during a time period from an instant at which the closing action of the chuck coupled to the other of the two main spindles is completed to an instant at which the opening action of the chuck coupled to the one of the two main spindles is completed, it is concluded that the workpiece is being delivered.
- 5. A spindle rotation control method for effecting position loop control and velocity loop control using integral control and proportional control, so that first and second spindles of a machine rotate at substantially the same speed during coupling of a workpiece between the first and second spindles, comprising the steps of:
- a) coupling the first spindle to the workpiece;
- b) determining whether the coupling of the workpiece between the first and second spindles is to be performed;
- c) inhibiting the integral control by setting an integral gain of the velocity loop control, to zero and effecting the proportional control of at least one of the first and second spindles, based on said step (b);
- d) controlling the first and second spindles, based on said step (c); and
- e) coupling the second spindle to the workpiece, based on said step (b) while performing said step (d).
- 6. A spindle rotation control method as claimed in claim 5, further comprising the step of:
- f) decoupling the first spindle from the workpiece after performing said step (e).
Priority Claims (1)
Number |
Date |
Country |
Kind |
1-260157 |
Oct 1989 |
JPX |
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Parent Case Info
This application is a continuation of application U.S. Ser. No. 07/687,868, filed Jun. 4, 1991, now abandoned.
US Referenced Citations (12)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0203452A1 |
May 1985 |
EPX |
2206516A |
Apr 1988 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Robert D. Lorenz et al., Synchronized Motion Control For Process Automatin, 1989, Conference Record of the 1989 IEEE Industry Applications Society Annual Meeting Part II, IEEE Catalog No. 89CH2792-0, pp. 1694-1698. |
Continuations (1)
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Number |
Date |
Country |
Parent |
687868 |
Jun 1991 |
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