IP Library Granted Patent US 10,144,076
Granted Patent B2
US 10,144,076 · App. 14/823,360 · Granted Dec 4, 2018

Wire electric discharge machine capable of starting machining from short-circuit state

Inventor: Yasuo Hasegawa (Yamanashi, JP)
Assignee: FANUC CORPORATION
B23H1/024B23H1/026B23H7/02B23H7/04
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Quick Facts
Patent No.
US 10,144,076
App. No.
14/823,360
Granted
Dec 4, 2018
Kind
B2
Abstract

Even if a machining gap between a wire electrode and workpiece is in a short-circuit state at a start of machining by a wire electric discharge machine, a high-frequency voltage in a pulse shape is applied and a small current is supplied to an extent that the wire electrode is not fused only in an initial fixed time at the start of machining. Then, the short circuit is released, though instantaneously, and a discharge occurs in that instant and the short circuit state is eliminated by discharge repulsion thereof and therefore, machining can be started.

Claims (32)

1. A wire electric discharge machine, comprising:

a discharge inducing circuit including a first DC power supply connected to a machining gap between a wire electrode and workpiece via a first switching element and a current limiting resistance;

a current supply circuit including a second DC power supply connected to the machining gap via a second switching element;

a voltage detection circuit that detects a voltage of the machining gap;

a short-circuit detection circuit that detects a short-circuit state between the wire electrode and the workpiece based on the voltage detected by the voltage detection circuit; and

a control circuit that controls on and off of the first switching element and the second switching element, wherein

the control circuit is configured to supply a first current to process the workpiece, and a second current until a predetermined state is reached after starting machining,

the second current being (i) smaller than the first current, (ii) insufficient to fuse the wire electrode even in a short-circuit state with the workpiece, but (iii) sufficient to form a discharge arc between the wire electrode and the workpiece, and

the first current and the second current are discrete and separated from each other.

2. The wire electric discharge machine according to claim 1 , wherein the predetermined state is at least one of a preset time, a preset distance, and a preset number of times of discharge.

3. The wire electric discharge machine according to claim 1 , wherein a magnitude of the second current is determined by an experiment while each of a diameter, a material and a type of the wire electrode, a material and thickness of the workpiece to be machined, a specific resistance of a working fluid, and a wire tension needed to cause the wire electrode to travel is set.

4. The wire electric discharge machine according to claim 1 , wherein the control circuit is configured to change to preset machining conditions when the short-circuit detection circuit detects elimination of the short circuit between the wire electrode and the workpiece.

5. The wire electric discharge machine according to claim 4 , wherein the control circuit is configured to control machining based on a machining program after changing to the preset machining conditions.

6. The wire electric discharge machine according to claim 1 , wherein the control circuit is configured to control changes in at least one of a wire tension of the wire electrode, a flow rate of a working fluid, and a wire feed speed of the wire electrode until the short circuit is eliminated when the short circuit between the wire electrode and the workpiece is not eliminated before the predetermined state is reached.

7. A wire electric discharge machine, comprising:

a discharge inducing circuit including a first DC power supply connected to a machining gap between a wire electrode and workpiece via a first switching element and a current limiting resistance;

a current supply circuit including a second DC power supply connected to the machining gap via a second switching element;

a voltage detection circuit that detects a voltage of the machining gap;

a short-circuit detection circuit that detects a short-circuit state between the wire electrode and the workpiece based on the voltage detected by the voltage detection circuit; and

a control circuit that controls on and off of the first switching element and the second switching element, wherein

the control circuit is configured to supply a first current to process the workpiece, and a second current until a predetermined state is reached when the short circuit is detected by the short-circuit detection circuit at a start of machining,

the second current being (i) smaller than the first current, (ii) insufficient to fuse the wire electrode even in a short-circuit state with the workpiece, but (iii) sufficient to form a discharge arc between the wire electrode and the workpiece, and

the first current and the second current are discrete and separated from each other.

8. A wire electric discharge machine, comprising:

a discharge inducing circuit including a first DC power supply connected to a machining gap between a wire electrode and workpiece via a first switching element and a current limiting resistance;

a current supply circuit including a second DC power supply connected to the machining gap via a second switching element;

a voltage detection circuit that detects a voltage of the machining gap;

a short-circuit detection circuit that detects a short-circuit state between the wire electrode and the workpiece based on the voltage detected by the voltage detection circuit; and

a control circuit that controls on and off of the first switching element and the second switching element, wherein

the control circuit is configured to supply a first current to process the workpiece, and a second current until a predetermined state is reached after the wire electrode and the workpiece reach an open state by a pulse voltage being applied to the machining gap when the short circuit is detected by the short-circuit detection circuit at a start of machining,

the second current being (i) smaller than the first current, (ii) insufficient to fuse the wire electrode even in a short-circuit state with the workpiece, but (iii) sufficient to form a discharge arc between the wire electrode and the workpiece, and

the first current and the second current are discrete and separated from each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2015
From: HASEGAWA, YASUO
To: FANUC CORPORATION
Reel/Frame 036298/0726 →
Priority Claims (1)
JP 2014-164470 · Aug 12, 2014 · national
Continuity (1)
Related Publication 20160045966A1 · Feb 18, 2016