IP Library Granted Patent US 9,364,910
Granted Patent B2
US 9,364,910 · App. 13/867,405 · Granted Jun 14, 2016

Wire electrical discharge machining system, wire electrical discharge machining method, and workpiece

Inventors: Yasuhiro Okamoto (Kurashiki, JP); Akira Okada (Okayama, JP); Haruya Kurihara (Sagamihara, JP)
Assignees: Canon Marketing Japan Kabushiki Kaisha; Kabushiki Kaisha Makino Huraisu Seisakusho
B23H1/04B23H7/107B23H1/028
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Quick Facts
Patent No.
US 9,364,910
App. No.
13/867,405
Granted
Jun 14, 2016
Kind
B2
Abstract

A mechanism capable of decreasing wires which are not appropriately supplied with power and performing the electrical discharge machining high in uniformity between multiple wires. A wire electrical discharge machining system configured to slice a workpiece at an interval of wires arranged side by side at equally spaced intervals causes the wire to travel in the same direction and includes a power feed contact configured to collectively supply a machining power supply to a plurality of the traveling wires, in which two adjacent power feed contacts respectively come into contact with the plurality of the wires supplied with the machining power supply and arranged without being aligned in the direction vertical to the direction in which the wire travels.

Claims (16)

1. A wire electrical discharge machining system configured to slice a workpiece at an interval of wires arranged side by side at equally spaced intervals, the wire electrical discharge machining system comprising:

a plurality of main rollers configured to cause the wires arranged side by side to travel in the same direction; and

a power feed contact configured to collectively supply a machining power to a plurality of wires that are, from among the wires arranged side by side and being caused by the plurality of main rollers to travel, disposed next to each other,

wherein two adjacent power feed contacts respectively come into contact with the plurality of wires that are, from among the wires arranged side by side, disposed next to each other and arranged without being aligned in a direction vertical to a direction in which the wires arranged side by side travel, and

wherein the two adjacent power feed contacts are each arranged to duplicatively come into contact with a part of wires from among the plurality of wires disposed next to each other with which the two power feed contacts respectively come into contact.

2. The wire electrical discharge machining system according to claim 1 , wherein the power feed contact collectively supplies the machining power supply to less than or equal to 30 of wires that are, from among the traveling wires arranged side by side, disposed next to each other.

3. The wire electrical discharge machining system according to claim 1 , wherein the power feed contacts are arranged so a number of the part of the wires included in the plurality of wires disposed next to each other and with which each of the two adjacent power feed contacts duplicatively come into contact is not constant.

4. The wire electrical discharge machining system according to claim 1 , further comprising a machining power supply portion configured to individually supply the machining power to the power feed contact.

5. The wire electrical discharge machining system according to claim 4 , further comprising a power supply control unit configured to control the machining power supply so pulses of the machining power supplied to the two adjacent power feed contacts are equal to each other.

6. The wire electrical discharge machining system according to claim 4 , wherein a voltage drop between the machining power supply portion and the power feed contact is less than a voltage drop between the power feed contact and an electrical discharge portion, wherein the electrical discharge portion performs an electrical discharge to the workpiece.

7. The wire electrical discharge machining system according to claim 4 , wherein a resistance value between the machining power supply portion and the power feed contact is less than a resistance value between the power feed contact and an electrical discharge portion, wherein the electrical discharge portion performs an electrical discharge to the workpiece.

8. A wire electrical discharge machining method for slicing a workpiece using a wire electrical discharge machining system configured to slice the workpiece at an interval of wires arranged side by side at equally spaced intervals, the wire electrical discharge machining system comprising:

a plurality of main rollers configured to cause the wires arranged side by side to travel in the same direction; and

a power feed contact configured to collectively supply a machining power to a plurality of wires that are, from among the wires arranged side by side and being caused by the plurality of main roller to travel, disposed next to each other,

wherein two adjacent power feed contacts respectively come into contact with the plurality of wires that are, from among the wires arranged side by side, disposed next to each other and arranged without being aligned in a direction vertical to a direction in which the wires arranged side by side travels, and

wherein the two adjacent power feed contacts are each arranged to duplicatively come into contact with a part of wires from among the plurality of wires disposed next to each other with which the two power feed contacts respectively come into contact.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE SECOND ASSIGNEE NAME PREVIOUSLY RECORDED ON REEL 030272 FRAME 0935. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 22, 2016
From: OKAMOTO, YASUHIRO; OKADA, AKIRA; KURIHARA, HARUYA
To: CANON MARKETING JAPAN KABUSHIKI KAISHA; KABUSHIKI KAISHA MAKINO HURAISU SEISAKUSHO
Reel/Frame 039774/0944 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2013
From: OKAMOTO, YASUHIRO; OKADA, AKIRA; KURIHARA, HARUYA
To: CANON MARKETING JAPAN KABUSHIKI KAISHA; KABUSHIKI KAISHA MAKINO HURAISU SEISAKUSYO
Reel/Frame 030272/0935 →
Priority Claims (1)
JP 2012-101901 · Apr 26, 2012 · national
Continuity (1)
Related Publication 20130284983A1 · Oct 31, 2013