IP Library Granted Patent US 10,986,721
Granted Patent B2
US 10,986,721 · App. 15/325,223 · Granted Apr 20, 2021

Replacement part unit for plasma torch, electrode, insulating guide, and nozzle

Inventors: Yoshihiro Yamaguchi (Kaga, JP); Keita Kondo (Komatsu, JP); Shigeo Morimoto (Yokohama, JP); Katsuo Saio (Hiratsuka, JP)
Assignee: KOMATSU INDUSTRIES CORPORATION
H05H1/34B23K10/00H05H1/28H05H2001/3436H05H2001/3468H05H2001/3478
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Quick Facts
Patent No.
US 10,986,721
App. No.
15/325,223
Granted
Apr 20, 2021
Kind
B2
Abstract

A replacement part unit for a plasma torch includes an electrode, an insulation guide, and a nozzle. The insulation guide includes a hole into which the electrode is inserted. The insulation guide is coupled to the electrode by press-fitting or adhesion. The nozzle includes a hole into which the insulation guide is inserted. The nozzle is coupled to the insulation guide by press-fitting or adhesion.

Claims (130)

1. A replacement part unit for a plasma torch, the replacement part unit comprising:

an electrode including

an electrode body portion including a tip end of the electrode,

a flange portion including a base end of the electrode, and

a coupling portion disposed between the electrode body portion and the flange portion, the coupling portion including a first protrusion formed on an external circumferential surface of the electrode and extending in a circumferential direction of the replacement part unit,

an outer diameter of the flange portion being larger than an outer diameter of the coupling portion;

an insulation guide made of a resin material and coupled to the electrode by press-fitting without an O-ring such that an internal circumferential surface of the insulation guide contacts an external circumferential surface of the electrode, the insulation guide including

a hole into which the electrode is inserted, and

a second protrusion formed on the internal circumferential surface of the insulation guide in a position closer to a base end of the insulation guide than to a tip end of the insulation guide in the axial direction, the second protrusion extending in the circumferential direction and having an inner diameter smaller than an outer diameter of the first protrusion,

the insulation guide being configured to be coupled to the electrode by inserting the tip end of the electrode into the hole of the insulation guide such that the first protrusion passes by the second protrusion and the second protrusion becomes disposed between the first protrusion and the flange portion; and

a nozzle including a hole into which the insulation guide is inserted, the nozzle being coupled to the insulation guide by press-fitting without an O-ring such that an external circumferential surface of the insulation guide contacts an internal circumferential surface of the nozzle.

2. The replacement part unit for a plasma torch according to claim 1 , wherein

the external circumferential surface of the electrode has an uneven shape that engages with the internal circumferential surface of the insulation guide.

3. The replacement part unit for a plasma torch according to claim 1 , wherein

the internal circumferential surface of the insulation guide has an uneven shape that engages with the external circumferential surface of the electrode.

4. The replacement part unit for a plasma torch according to claim 1 , wherein

the external circumferential surface of the insulation guide has an uneven shape that engages with the internal circumferential surface of the nozzle.

5. The replacement part unit for a plasma torch according to claim 1 , wherein

the internal circumferential surface of the nozzle has an uneven shape that engages with the external circumferential surface of the insulation guide.

6. The replacement part unit for a plasma torch according to claim 1 , wherein

the coupling of the electrode and the insulation guide forms a fluid seal without an O-ring.

7. The replacement part unit for a plasma torch according to claim 1 , wherein

the coupling of the nozzle and the insulation guide without an O-ring forms a fluid seal.

8. The replacement part unit for a plasma torch according to claim 1 , wherein

the resin material has a modulus of elasticity that is less than a modulus of elasticity of a ceramic.

9. The replacement part unit for a plasma torch according to claim 1 , wherein

an external circumferential surface of the flange portion includes a seal surface that comes into contact with an O-ring.

10. The replacement part unit for a plasma torch according to claim 1 , wherein

the flange portion is longer than the coupling portion as measured along an axial direction of the electrode.

11. The replacement part unit for a plasma torch according to claim 1 , wherein

the external circumferential surface of the insulation guide includes

a first external circumferential surface disposed inside the nozzle and coupled to the nozzle, and

a second external circumferential surface positioned on a base end side of the first external circumferential surface and disposed outside of the nozzle, and

the first external circumferential surface is shorter than the second external circumferential surface as measured along an axial direction of the insulation guide.

12. The replacement part unit for a plasma torch according to claim 11 , wherein

the second external circumferential surface includes a seal surface that comes into contact with an O-ring.

13. The replacement part unit for a plasma torch according to claim 12 , wherein

a portion of the second external circumferential surface on a tip end side of the seal surface is disposed inside a cooling water channel of the plasma torch.

14. The replacement part unit for a plasma torch according to claim 11 , wherein

the external circumferential surface of the insulation guide further includes a third external circumferential surface positioned on the base end side of the second external circumferential surface and having an outer diameter less than an outer diameter of the second external circumferential surface, and

the third external circumferential surface is disposed inside a gas channel of the plasma torch.

15. The replacement part unit for a plasma torch according to claim 1 , wherein

the nozzle includes

a first nozzle portion coupled to the insulation guide, and

a second nozzle portion positioned on a tip end side of the first nozzle portion, the second nozzle portion having a wall thickness in a radial direction greater than a wall thickness of the first nozzle portion and facing the electrode, and

the second nozzle portion is longer than the first nozzle portion as measured along an axial direction of the nozzle.

16. The replacement part unit for a plasma torch according to claim 1 , wherein

a base end portion of the nozzle is disposed inside a cooling water channel of the plasma torch.

17. The replacement part unit for a plasma torch according to claim 1 , wherein,

the external circumferential surface of the nozzle includes a recessed portion that is recessed inward in a radial direction of the nozzle and extends in a circumferential direction of the nozzle.

18. The replacement part unit for a plasma torch according to claim 17 , wherein

the recessed portion is disposed at approximately a same position as a tip end of the electrode along an axial direction of the nozzle.

19. The replacement part unit for a plasma torch according to claim 17 , wherein

the plasma torch includes a retainer cap disposed so as to cover the nozzle,

the recessed portion is disposed inside a cooling water channel between an internal circumferential surface of the retainer cap and the external circumferential surface of the nozzle,

a hole that communicates with the cooling water channel is provided in the retainer cap, and

the recessed portion is disposed at approximately a same position as the hole of the retainer cap along an axial direction of the nozzle.

20. The replacement part unit for a plasma torch according to claim 19 , wherein

a wall surface of a base end side of the recessed portion is inclined with respect to the radial direction of the nozzle and extends parallel to the internal circumferential surface of the retainer cap.

21. The replacement part unit for a plasma torch according to claim 17 , wherein

a wall surface at a tip end side of the recessed portion extends in the radial direction of the nozzle.

22. The replacement part unit for a plasma torch according to claim 1 , further comprising:

an insulation ring including a hole into which the nozzle is inserted, the insulation ring being coupled to the nozzle by press-fitting or adhesion; and

a shield cap including a hole into which the insulation ring is inserted, the shield cap being coupled to the insulation ring by press-fitting or adhesion.

23. An insulation guide for a plasma torch including an electrode and a nozzle, the nozzle including a hole into which the insulation guide is inserted, the insulation guide comprising:

a hole configured for the electrode to be inserted therein;

a first coupling portion provided on an internal circumferential surface of the insulation guide and configured to be coupled to the electrode by press-fitting without an O-ring such that the internal circumferential surface of the insulation guide contacts an external circumferential surface of the electrode; and

a second coupling portion provided on an external circumferential surface of the insulation guide and configured to be coupled to the nozzle by press-fitting without an O-ring such that the external circumferential surface of the insulation guide contacts an internal circumferential surface of the nozzle,

the insulation guide being made of a resin material

the first coupling portion having a second protrusion formed on the internal circumferential surface of the insulation guide in a position closer to a base end of the insulation guide than to a tip end of the insulation guide in an axial direction of the insulation guide, the second protrusion extending in a circumferential direction of the insulation guide,

the insulation guide being configured to be coupled to the electrode by inserting a tip end of the electrode into the hole of the insulation guide such that a first protrusion provided on an external circumferential surface of the electrode passes by the second protrusion and the second protrusion becomes disposed between the first protrusion and a flange portion of the electrode, the first protrusion extending in the circumferential direction and having an outer diameter larger than an inner diameter of the second protrusion.

24. The insulation guide for a plasma torch according to claim 23 , wherein

the resin material has a modulus of elasticity that is less than a modulus of elasticity of a ceramic.

25. The insulation guide for a plasma torch according to claim 23 , wherein

the external circumferential surface of the insulation guide includes

a first external circumferential surface disposed inside the nozzle when the insulation guide is inserted into the nozzle, the first external circumferential surface including the second coupling portion, and

a second external circumferential surface positioned on a base end side of the first external circumferential surface and disposed outside of the nozzle when the insulation guide is inserted into the nozzle, and

a third external circumferential surface disposed on the base end side of the second external circumferential surface and having an outer diameter smaller than an outer diameter of the second external circumferential surface, and

the third external circumferential surface is disposed inside a gas channel of the plasma torch.

26. The insulation guide for a plasma torch according to claim 25 , wherein

the second external circumferential surface includes a seal surface that comes into contact with an O-ring, and

a portion of the second external circumferential surface on a tip end side of the seal surface is disposed inside a cooling water channel of the plasma torch.

27. A nozzle for a plasma torch including an electrode and an insulation guide made of a resin material, the insulation guide including a hole into which the electrode is inserted, the nozzle comprising:

a first nozzle portion including a first hole into which the insulation guide is inserted and a third protrusion provided on an internal circumferential surface of the first nozzle portion, the first nozzle portion being configured to be coupled to the insulation guide by press-fitting without an O-ring such that an external circumferential surface of the insulation guide contacts the internal circumferential surface of the first nozzle portion;

a second nozzle portion including a second hole communicating with the first hole, the second nozzle portion being positioned on a tip end side of the first nozzle portion;

an inside step portion disposed between the internal circumferential surface of the first nozzle portion and an internal circumferential surface of the second nozzle portion; and

a third nozzle portion including a jetting hole communicating with the second hole and having an inner diameter less than an inner diameter of the second hole, the third nozzle portion being positioned on the tip end side of the second nozzle portion,

the third protrusion being disposed between a base end of the nozzle and the inside step portion, and

the nozzle being configured to be coupled to the insulation guide by inserting a tip end of the insulation guide into the first hole of the nozzle such that a fourth protrusion provided on an external circumferential surface of the insulation guide passes by the third protrusion and the fourth protrusion is disposed between the third protrusion and the inside step portion, the fourth protrusion extending in a circumferential direction of the insulation guide and having an outer diameter larger than an inner diameter of the third protrusion.

28. The nozzle for a plasma torch according to claim 27 , wherein

the second nozzle portion has a thickness in a radial direction greater than a thickness of the first nozzle portion, and the second nozzle portion faces the electrode, and

the second nozzle portion is longer than the first nozzle portion as measured along an axial direction of the nozzle.

29. The nozzle for a plasma torch according to claim 27 , wherein

a base end portion of the nozzle is configured to be disposed inside a cooling water channel of the plasma torch.

30. The nozzle for a plasma torch according to claim 27 , wherein

an external circumferential surface of the nozzle includes a recessed portion that is recessed inward in a radial direction of the nozzle and extends in a circumferential direction of the nozzle.

31. The nozzle for a plasma torch according to claim 30 , wherein

the recessed portion is disposed at approximately a same position as a tip end of the electrode along an axial direction of the nozzle.

32. The nozzle for a plasma torch according to claim 30 , wherein

the nozzle is configured to be covered by a retainer cap of the plasma torch, the retainer cap having a hole that communicates with a water channel between an internal circumferential surface of the retainer cap and the external circumferential surface of the nozzle,

the recessed portion is disposed inside the cooling water channel, and

the recessed portion is disposed at approximately a same position as the hole of the retainer cap along an axial direction of the nozzle.

33. The nozzle for a plasma torch according to claim 32 , wherein

a wall surface of a base end side of the recessed portion is inclined with respect to the radial direction of the nozzle and extends parallel to the internal circumferential surface of the retainer cap.

34. The nozzle for a plasma torch according to claim 30 , wherein

a wall surface at the tip end side of the recessed portion extends in the radial direction of the nozzle.

35. The replacement part unit for a plasma torch according to claim 22 , wherein

the plasma torch includes

a first retainer cap including an opening into which the replacement part unit is inserted, the first retainer cap being disposed so as to cover the nozzle, and

a second retainer cap including an opening into which the replacement part unit is inserted, the second retainer cap being disposed so as to cover the first retainer cap,

the nozzle or the shield cap includes a flange portion held by being clamped between an edge portion of an opening of the first retainer cap and an edge portion of an opening of the second retainer cap.

36. The replacement part unit for a plasma torch according to claim 1 , wherein

the nozzle has

a first nozzle portion coupled to the insulation guide, an internal circumferential surface of the first nozzle portion including the internal circumferential surface of the nozzle that contacts the insulation guide,

a second nozzle portion positioned on a tip end side of the first nozzle portion,

an inside step portion disposed between the internal circumferential surface of the first nozzle portion and an internal circumferential surface of the second nozzle portion, and

a third protrusion provided on the internal circumferential surface of the first nozzle portion, the third protrusion being disposed between a base end of the nozzle and the inside step portion, and

the insulation guide has a fourth protrusion formed on the external circumferential surface of the insulation guide in a position closer to the tip end of the insulation guide than to the base end of the insulation guide, the fourth protrusion extending in the circumferential direction and having an outer diameter larger than an inner diameter of the third protrusion,

the insulation guide being coupled to the nozzle by inserting the tip end of the insulation guide into the hole of the nozzle such that the fourth protrusion passes by the third protrusion and the fourth protrusion is disposed between the third protrusion and the inside step portion.

37. A replacement part unit for a plasma torch, the replacement part unit comprising:

an electrode;

an insulation guide including a hole into which the electrode is inserted, the insulation guide being made of a resin material and coupled to the electrode by press-fitting without an O-ring such that an internal circumferential surface of the insulation guide contacts an external circumferential surface of the electrode; and

a nozzle coupled to the insulation guide by press-fitting without an O-ring such that an external circumferential surface of the insulation guide contacts an internal circumferential surface of the nozzle, the nozzle including

a hole into which the insulation guide is inserted

a first nozzle portion coupled to the insulation guide, an internal circumferential surface of the first nozzle portion including the internal circumferential surface of the nozzle that contacts the insulation guide,

a second nozzle portion positioned on a tip end side of the first nozzle portion,

an inside step portion disposed between the internal circumferential surface of the first nozzle portion and an internal circumferential surface of the second nozzle portion, and

a third protrusion provided on the internal circumferential surface of the first nozzle portion, the third protrusion being disposed between a base end of the nozzle and the inside step portion,

the insulation guide having a fourth protrusion formed on the external circumferential surface of the insulation guide in a position closer to a tip end of the insulation guide than to a base end of the insulation guide, the fourth protrusion extending in the circumferential direction and having an outer diameter larger than an inner diameter of the third protrusion,

the insulation guide being coupled to the nozzle by inserting the tip end of the insulation guide into the hole of the nozzle such that the fourth protrusion passes by the third protrusion and the fourth protrusion is disposed between the third protrusion and the inside step portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2017
From: YAMAGUCHI, YOSHIHIRO; KONDO, KEITA; MORIMOTO, SHIGEO; SAIO, KATSUO
To: KOMATSU INDUSTRIES CORPORATION
Reel/Frame 040934/0438 →
Priority Claims (1)
JP JP2015-017680 · Jan 30, 2015 · national
Continuity (1)
Related Publication 20170188445A1 · Jun 29, 2017