IP Library Granted Patent US 7,054,712
Granted Patent B2
US 7,054,712 · App. 10/463,342 · Granted May 30, 2006

Wire contact/noncontact boundary position detecting apparatus of wire cut discharge machine

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Quick Facts
Patent No.
US 7,054,712
App. No.
10/463,342
Granted
May 30, 2006
Kind
B2
Abstract

Supply of a wire electrode, application of a detection voltage, and binarization and sampling of the detection voltage are started, so as to start advance of the wire electrode from the position A toward a workpiece. The position of the wire electrode when a sampling value (low level) is detected for the first time is designated as a position B, and the wire electrode is advanced from this position by a predetermined distance P1, and is stopped at a position C. Retreat of the wire electrode is started from the position C, and a position Q where the sampling value has changed from the high level to the low level is stored as a contact/noncontact boundary position. Further, retreat of the wire electrode is continued, and the wire electrode is stopped at a predetermined separating position D, to thereby finish the processing.

Claims (19)

1. A wire contact/noncontact boundary position detecting apparatus for detecting a contact/noncontact boundary position of a wire electrode and a conductive object in a wire cut discharge machine, comprising:

voltage application means for applying a detection voltage to between the wire electrode and the object;

relative shift means for relatively shifting the wire electrode with respect to the object;

control means for controlling a relatively approaching movement and a relatively separating movement of the wire electrode with respect to the object by the relative shift means; and

contact judgment means for judging the state relating to the contact and noncontact of the wire electrode and the object based on the detection voltage, in the process of the relatively approaching movement and the relatively separating movement, wherein

the control means controls the relative shift means such that the relatively separating movement is executed after the relatively approaching movement has been executed until the wire electrode and the object completely come in contact with each other, and

the contact judgment means judges that, in the process of the relatively separating movement, the wire electrode has come out of the complete contact state with the object, according to a first standard relating to the transition of the detection voltage, and

the relative position of the wire electrode, at a point in time when disengagement thereof from the complete contact state begins, is designated as a wire contact/noncontact boundary position.

2. The wire contact/noncontact boundary position detecting apparatus according to claim 1 , wherein the contact judgment means judges that a contact of the wire electrode with the object begins in the process of the relatively approaching movement, based on a second standard relating to the transition of the detection voltage, and

the control means controls the relative shift means such that the relatively approaching movement is executed for a predetermined distance from the relative position where the contact begins.

3. The wire contact/noncontact boundary position detecting apparatus according to claim 1 , wherein the contact judgment means judges that the wire electrode has completely come in contact with the object, in the process of the relatively approaching movement, based on a third standard relating to the transition of the detection voltage, and

the control means controls the relative shift means so as to finish the relatively approaching movement based on the judgment according to the third standard, and start the relatively separating movement.

4. The wire contact/noncontact boundary position detecting apparatus according to claim 1 , wherein the object is a workpiece.

5. The wire contact/noncontact boundary position detecting apparatus according to claim 1 , wherein the object is a positioning jig.

6. A method of detecting a contact/noncontact boundary position of a wire electrode and a conductive object in a wire cut discharge machine, comprising:

applying a detection voltage across the wire electrode and the conductive object;

shifting the wire electrode relative to the conductive object;

controlling a relative approaching movement and a relative separating movement of the wire electrode with respect to the conductive object; and

judging the state relating to a contact and a noncontact of the wire electrode and the conductive object based on the applied detection voltage, in the process of the relative approaching movement and the relative separating movement.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2005
From: MARK IV INDUSTRIES LIMITED
To: MARK IV IDS CORP.
Reel/Frame 016309/0353 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2003
From: MURAI, MASAO; KAWAHARA, AKIYOSHI; SAKURAI, AKIHIRO; NAKASHIMA, YASUO
To: FANUC LTD.
Reel/Frame 014198/0585 →