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CROMAMIG 312

CROMAMIG 312 deposits a 29% Cr / 9% Ni austenitic/ferritic stainless steel weld metal with a ferrite content of about FN 40. The weld metal exhibits excellent tolerance to dilution from dissimilar and difficult-to-weld base materials without hot cracking, together with high strength and very good heat and oxidation resistance. CROMAMIG 312 deposits a 29% …

CROMAMIG 316L

CROMAMIG 316L is primarily intended for welding the low carbon, molybdenum alloyed, acid resisting 316L austenitic stainless steels of similar composition. Suitable also for welding normal carbon 316 grades and Nb or Ti stabilised steels provided service temperatures are below 400°C. CROMAMIG 316L is primarily intended for welding the low carbon, molybdenum  alloyed, acid resisting …

CROMAMIG 316LSi

CROMAMIG 316LSi is primarily intended for welding the low carbon,  molybdenum alloyed, acid resisting 316L austenitic stainless steels of similar  composition. Suitable also for welding 304L type steels as well as normal  carbon 316 grades and Nb or Ti stabilised steels provided service  temperatures are below 400°C. The higher silicon content gives better arc stability …

CROMAMIG 318Si

CROMAMIG 318Si is designed for welding the Nb or Ti stabilised 18% Cr/12% Ni/3% Mo austenitic stainless steel grades 316 Cb and 316Ti. It is primarily intended for use at service temperatures above 400°C, but for structural applications at elevated temperatures the creep strength of the weld metal should always be considered. CROMAMIG 318Si is …

CROMAMIG 347Si

CROMAMIG 347Si is primarily intended for welding the Nb or Ti stabilised 18% Cr/ 10% Ni austenitic stainless steel grades 347 and 321. It is also suitable for the unstabilised grades 304 and 304L. The higher silicon content gives better arc stability and weld metal flow which improves bead appearance, particularly when dip transfer welding. …

CROMAMIG 385

CROMAMIG 385 is intended for welding the 20% Cr / 25% Ni / 4.5% Mo / Cu fully austenitic stainless steels, used for their very high resistance to corrosion in severe, non-oxidising environments e.g. sulphuric acid. The low carbon, high alloy content of the weld metal gives excellent resistance tointergranular corrosion and stress corrosion cracking, …