SG3 welding wire – what is it and when is it worth choosing? (SG2 vs SG3)
SG3 welding wire is a high-quality solid wire for MIG/MAG welding, designed for carbon and low-alloy steels. Compared to the popular SG2, it offers broader...
SG3 welding wire is a high-quality solid wire for MIG/MAG welding, designed for carbon and low-alloy steels. Compared to the popular SG2, it offers broader...
SG2 welding wire is one of the most commonly used materials for MIG/MAG welding. Chosen by both professional manufacturers and hobbyists, it combines high...
SG2 or SG3? Check out the differences between popular MAG welding wires and find out which is better for your project.
How to choose the right welding wire and where to begin learning welding? This article includes practical advice, tips for beginners, and useful exercises.
Learn how to protect your eyes while welding, how to choose an auto-darkening helmet and safety goggles, and what to do if your eyes are exposed to radiation.
Selecting the right TIG welding wire depends on the type and thickness of the material. This article includes practical tips, a diameter table, and...
Low-alloy rutile-cellulose coating Properties and areas of application: Universal use in all positions Effective gap bridging and flammability in tack welding and poor fit-up Suitable for welding rusted and coated sheets (approx. 40 µm) Advanced properties for vertical welds Suitable for use in small transformers (42 V) Base materials: S235JRG2 - S355J2, GS-38, GS-45, St35, St45, St35.8 Pressure vessel steel P235GH, P265GH, P295GH Shipbuilding steel according to permit grade 2 Fine-grained steel up to P355N Suitable for welding concrete steel (ribbed reinforcing steel) ASTM A36 and A53 all sizes A106 size A,B,C A135 size A,B A283 size A,B,C,D A366, A285 size A,B,C A500 size A,B,C A570 size 30,33,36,40,45 A607 size 45 A668 size A,B A907 size 30,33,36,40 A935 size 45 A936 size 50 API 5 L size B, X42-X52 approvals: BV / LR / DNV / ABS / GL / TÜV (publication no. 00425) / DB (permit no. 10.132.19) type of current = - / ~
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