Single or multi-part insulating component for a plasma torch, particularly a plasma cutting torch, and assemblies and plasma torches having the same
Abstract
The invention relates to a single or multipart insulating component for a plasma torch, particularly a plasma cutting torch, for electrical insulation between at least two electrically conductive components of the plasma torch, characterized in that the insulating component consists of an electrically non-conductive and easily thermally conductive material, or at least one part thereof consists of an electrically non-conductive and easily thermally conductive material. The invention further relates to assemblies and plasma torches having the same and to a method for processing, plasma cutting and plasma welding.
Claims
exact text as granted — not AI-modified1 . A plasma gas conveying part configured to be arranged between an electrode and a nozzle of a plasma torch, the plasma gas conveying part including:
a first part, a second part, and a third part; and an inner face adjacent a cavity located in the plasma gas conveying part; wherein at least a portion of the first part and at least a portion of the second part are arranged concentrically to one another; wherein the first part is arranged between the second part and the third part; wherein the third part has the same thermal and electrical properties as the second part; wherein at least a portion of the first part and at least a portion of the third part are arranged concentrically to one another; and wherein at least a portion of the second part and at least a portion of the third part are arranged concentrically to one another.
2 . The plasma gas conveying part as claimed in claim 1 , characterized in that the first part has at least one surface being aligned with or projecting beyond an immediately adjacent surface of the second part.
3 . The plasma gas conveying part of claim 1 , wherein:
the first part comprises an electrically nonconductive material having a thermal conductivity of at least 40 W/(m*K); and the second part comprises an electrically conductive material having a thermal conductivity of at least 40 W/(m*K).
4 . The plasma gas conveying part of claim 3 , wherein the electrical conductivity of the first part has an electrical resistivity of 0.1 Ω*cm or less.
5 . The plasma gas conveying part as claimed in claim 3 , characterized in that the first part has a thermal conductivity of at least 60 W/(m*K).
6 . The plasma gas conveying part as claimed in claim 3 , characterized in that the first part has an electrical resistivity of at least 10 6 Ω*cm.
7 . The plasma gas conveying part as claimed in claim 3 , characterized in that the first part is a ceramic or plastics material.
8 . The plasma gas conveying part of claim 1 , wherein:
the first part comprises an electrically nonconductive material having a thermal conductivity of at least 40 W/(m*K); and the second part comprises an electrically nonconductive and thermally nonconductive material.
9 . The plasma gas conveying part as claimed in claim 8 , characterized in that the second part has a thermal conductivity of at most 1 W/(m*K).
10 . The plasma gas conveying part as claimed in claim 1 , characterized in that the first part and the second part are connected together in one or a combination of two or more of a form-fitting, a force-fitting or cohesive manner, by adhesive bonding or by a thermal method.
11 . The plasma gas conveying part as claimed in claim 1 , further comprising at least one opening and/or at least one cutout and/or at least one groove.
13 . The plasma gas conveying part as claimed in claim 1 , wherein the plasma torch additionally includes a nozzle cap, a nozzle protective cap, and a nozzle protective cap holder.
14 . The plasma gas conveying part as claimed in claim 13 , wherein the plasma gas conveying part is in direct contact with at least one of the electrode, the nozzle, the nozzle cap, the nozzle protective cap, or the nozzle protective cap holder.
15 . The plasma gas conveying part as claimed in claim 1 , characterized in that the first part has at least one surface in direct contact with a surface of a component of the plasma torch having an electrical resistivity of at most 0.01 Ω*cm.
16 . The plasma gas conveying part as claimed in claim 1 , characterized in that the plasma gas conveying part has at least one surface which is in direct contact with a cooling medium during operation.
17 . A method for machining a workpiece with a thermal plasma or for plasma cutting or for plasma welding, characterized in that the plasma gas conveying part as claimed in claim 1 is included in a plasma torch used in the machining.
18 . The method as claimed in claim 17 , characterized in that a laser beam of a laser is coupled into the plasma torch in addition to a plasma jet.
19 . The plasma gas conveying part of claim 1 , further comprising:
an outer contact face in touching contact with an inner contact face of the nozzle; and the inner contact face of the plasma gas conveying part is in touching contact with an outer contact face of the electrode.
20 . The plasma gas conveying part of claim 19 , wherein:
the outer face of the plasma gas conveying part comprises a cylindrical surface; and the inner face of the plasma gas conveying part comprises a cylindrical surface.
21 . A plasma gas conveying part configured to be arranged between a nozzle and a nozzle protective cap of a plasma torch, the plasma gas conveying part including:
a primary plasma gas conveying part; and a secondary plasma gas conveying part separate from the primary plasma gas conveying part, the secondary plasma gas conveying part comprising:
a first part, a second part, and a third part; and
an inner face adjacent a cavity located in the secondary plasma gas conveying part;
wherein at least a portion of the first part and at least a portion of the second part are arranged concentrically to one another; wherein the first part is arranged between the second part and the third part; wherein the third part has the same thermal and electrical properties as the second part; wherein at least a portion of the first part and at least a portion of the third part are arranged concentrically to one another; and wherein at least a portion of the second part and at least a portion of the third part are arranged concentrically to one another.
22 . The plasma gas conveying part of claim 21 , wherein:
the plasma torch additionally includes a nozzle cap positioned between the nozzle and the nozzle protective cap; and the secondary plasma gas conveying part is arranged between the nozzle cap and the nozzle protective cap.
23 . The plasma gas conveying part of claim 21 , wherein:
the first part comprises an electrically nonconductive material having a thermal conductivity of at least 40 W/(m*K); and the second part comprises an electrically conductive material having a thermal conductivity of at least 40 W/(m*K).
24 . The plasma gas conveying part of claim 21 , wherein:
the first part comprises an electrically nonconductive material having a thermal conductivity of at least 40 W/(m*K); and the second part comprises an electrically nonconductive and thermally nonconductive material.Join the waitlist — get patent alerts
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