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The welding wire SG2 with a diameter of 0.8 mm is wound on a K300 basket spool. It is particularly suitable for the MIG/MAG welding process and ensures a precise and stable weld seam. The special composition of the wire enables optimal welding performance, minimizing spatter formation. The welding wire is suitable for welding carbon steel, single and multi-layer welding of non-alloy and low-alloy steels, structural steels, and occasionally stainless steel.
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The welding wire SG2 Ti vb with a diameter of 0.8 mm is coated with bronze, providing additional protection against corrosion. It is wound on a K300 spool and is made of low-alloy steel, specifically designed for MAG welding of unalloyed and low-alloyed steels. This welding wire is particularly well-suited for overlaying manufacturing coatings (primers), zinc protective layers, as well as rusted components. The weld produced by this wire is resistant to aging and can be used at operating temperatures ranging from -10 °C to 450 °C.
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The CuAl8 welding wire with a diameter of 1.0 mm is wound on a K300 basket spool. It is made of a copper-aluminum alloy and is suitable for both TIG and MIG welding. This wire variant is characterized by its corrosion and seawater resistance, and it also offers good sliding properties. Preheating is only required for large workpieces (approximately 250 °C).The main application areas of this welding wire include copper-aluminum alloys such as aluminum bronze with an aluminum content of 7 - 9 %, as well as copper and copper-zinc alloys (brass). Additionally, it is suitable for overlay welding on unalloyed and low-alloy steels and cast iron.For the first layer of overlay welding on iron materials, pulse arc welding is recommended. In TIG welding, flux should also be used to prevent the formation of oxides.Applicable shielding gases (EN ISO 14175) for TIG/MIG: Argon I1
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The CuSi3 welding wire with a diameter of 0.8 mm is wound on a K300 basket spool made of copper-silicon alloy and has a low melting point. It is excellent for both TIG and MIG welding (soldering) of galvanized steel sheets in body construction. In this process, the corrosion protection of galvanized surfaces is largely preserved, and usually, preheating of the base material is not required.It is recommended to keep the weld pool not too wide and to pay attention to low heat input. In MIG welding with a short arc/impulse method, as well as in TIG welding, it is advisable to introduce as much weld material as possible.Applicable shielding gases (EN ISO 14175) for TIG: Argon I1, for MIG: Argon I1, I3.
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The welding wire Union X96 with a diameter of 0.8 mm is a high-strength MAG welding wire with Honda approval. With a nominal strength of 980 MPa (142 ksi), it is specifically designed for MAG welding on steel parts with a strength range of 590 to 980 MPa. Additionally, this wire is excellent for MAG welding of steel parts with a strength in the range of 270 to 440 MPa.The Union X96 welding wire is also available in a 5 kg D200 spool (item no. 311087)
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The welding wire NiMoCr with a diameter of 0.8 mm is wound on a D200 plastic spool and is composed of low-alloy steel. It is suitable for MAG welding of quenched and tempered fine-grain structural steels with a yield strength of approximately 700 MPa. The welded material is suitable for use at temperatures ranging from -50 to 350 °C.The mechanical quality values vary depending on the shielding gas used. Optimal weld quality is achieved by using mixed gas M 21 in conjunction with corresponding welding parameters. Welding can be performed in both the short-circuiting and spray arc modes. The preheating temperature depends on the base material. It is crucial to ensure controlled heat input, with the interpass temperature not exceeding 180 °C.Applicable shielding gases (EN ISO 14175) for MAG welding include mixed gases such as M20, M21, M24, M26.
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The Tesla Aluminum Welding Wire 1022767-00-A with a diameter of 1.2 mm is wound on a plastic spool. It is made of an aluminum-silicon-copper alloy and is suitable for TIG and MIG welding of copper-containing, heat-treatable aluminum alloys. Applicable shielding gases (EN ISO 14175): • TIG: 100% Argon (I1) • MIG: 100% Argon (I1) or Argon-helium mixtures (I3)
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The welding wire AlMg5 with a diameter of 1.0 mm is wound on a D200 plastic spool. It is composed of an aluminum-magnesium alloy and is suitable for TIG and MIG welding of aluminum alloys. In the case of large workpieces and wall thicknesses exceeding 15 mm, preheat the welding joint area to 150 °C.Applicable shielding gases (EN ISO 14175): TIG - Argon I1, MIG - Argon I1, and Argon-Helium mixtures I3
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The welding wire AlSi5 with a diameter of 1.0 mm is wound on a D200 plastic spool. It is composed of an aluminum-silicon alloy and is suitable for TIG and MIG welding of aluminum-silicon alloys. The weld seam area must be metalllically clean. For large workpieces and wall thicknesses over 15 mm, preheat the weld joint area to 150 °C - 200 °C.Applicable shielding gases (EN ISO 14175): TIG - Argon I1, MIG - Argon I1, and Argon-Helium mixtures I3
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The welding wire AlSi12 with a diameter of 1.2 mm is wound on a D200 plastic spool. It is made of an aluminum-silicon alloy (aluminum casting alloys) and is suitable for TIG and MIG welding of aluminum-silicon alloys. Applicable shielding gases (EN ISO 14175) for TIG: Argon I1, for MIG: Argon I1, and Argon-Helium mixtures I3
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The welding wire AlMg3 with a diameter of 1.2 mm is wound on a D200 plastic spool. It is made of an aluminum-magnesium alloy and is suitable for TIG and MIG welding of aluminum alloys. In the case of large workpieces and wall thicknesses exceeding 15 mm, preheat the welding joint area to 150 °C.Applicable shielding gases (EN ISO 14175) for TIG: Argon I1, for MIG: Argon I1, and Argon-Helium mixtures I3
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The welding wire AlMg2.7Mn with a diameter of 1.0 mm is wound on a D200 plastic spool. It is made of an aluminum-magnesium alloy with manganese content (weld seam must be metallurgically clean) and is suitable for TIG and MIG welding of aluminum alloys.Applicable shielding gases (EN ISO 14175) for TIG: Argon I1, MIG: Argon I1, and Argon-Helium mixtures I3
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