The invention relates to methods for Magnetarc welding for metallic materials, with at least one of the workpieces to be welded having an open cross-section.
At present, Magnetarc welding methods are known in which, generally, the workpieces to be connected have rotationally symmetrical cross-sections. Said workpieces, which are usually tubular, are braced in alignment in mounts and are moved together at the welding points. After a magnetic field and the current required for the welding are activated, the workpieces are placed with a defined spacing and an electric arc is ignited. A magnetic field of a magnet coil system provides that the electric arc is set in rotation. The end surfaces to be welded are thereby uniformly heated. Subsequently, the surfaces, which are to be welded, of the workpieces are pressed against one another. The magnetic field and the welding current are switched off.
Said method is already used for workpieces with closed cross-sections. Magnetarc welding methods of said type are described for example in DE 10 2006 012 826 A1, the laid-open specification DE 2258417 and WO 2006/000330.
The invention is based on the object of creating a Magnetarc welding method for workpieces, which are to be welded, with open cross-sections.
The foregoing object is achieved according to the invention in that the two workpieces are braced and moved together, with the open cross-section of one workpiece being bridged by means of a suitable metallic auxiliary part to form a conducting closed region, in that, after the activation of a magnetic field of a magnet coil system and of the current required for welding, the workpieces are placed with a defined spacing and an electric arc is ignited, in that the magnetic field of the magnet coil system sets the electric arc in rotation, in that the end surfaces to be welded are uniformly heated and in that, subsequently, the surfaces, which are to be welded, of the workpieces are pressed against one another, with the open surface region (13) of the auxiliary part (4) not being pressed, or being pressed only very lightly, against the opposite surface (8) of the workpiece (1).
The principle of the Magnetarc welding method has been known for a long time. However, it could hitherto be used only for workpieces with closed cross-sections. Since closed cross-sections of the workpieces are required for the use of the Magnetarc welding method, the essence of the invention is that of alternatively closing the workpiece with the open cross-section during the actual welding process by means of a part of arbitrary shape. While the workpieces to be welded are pressed together, the auxiliary part is not pressed, or is pressed only very lightly, against the end side of the opposite part, specifically in order to prevent welding of the auxiliary part. The auxiliary part may in particular be removed after the welding process.
Further preferred refinements of the method are specified in the subclaims. In particular, the open cross-section of a workpiece to be welded and the shape of the auxiliary part are not restricted to a circular shape. The design of the auxiliary part may be suitably adapted to the open cross-section, which is likewise of arbitrary design, of the workpiece to be welded. It is essential that a closed conducting region is generated for an electric arc to be formed which, on account of a magnetic field, rotates.
The method according to the invention is illustrated by way of example in the drawings, in which:
a and b show a diagrammatic illustration of an example of the Magnetarc welding method according to the invention.
a shows, analogously to
The workpiece 1 is of tubular design with a closed circular cross-section 10. The workpiece 2 has a semi-circular open cross-section 3. The method proceeds in the same way as in the description with regard to
The advantages associated with said invention are in particular that it is possible to connect even workpieces with open cross-sections by means of the known Magnetarc welding method. It is of course also conceivable for workpieces which both have open cross-sections to be welded by means of said method according to the invention. It is likewise possible for the required magnet coil system to be arranged on one of the two workpieces to be connected or in a distributed fashion on both workpieces.
Number | Date | Country | Kind |
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08 104 227.7 | Jun 2008 | EP | regional |