1. … 1.25%Cr-0.5%Mo ferritic steel, i.e. P11/P12 Typical with FL 155 Flux or FL 160 … Type 1Cr 0,5Mo, ISO 15608: ~ 5.1 1.7335, 1.7262, …
  2. … FL 830 ESH has an excellent slag removal. Flux has a low hydrogen potential which makes it suitable for overlay …
  3. … structure. This is the hardest of the standard cobalt-base alloys. It has a high resistance to corrosion (especially to reducing …
  4. … High C-Cr-Nb, B-alloyed flux-cored wire electrode which forms extremely hard complex carbides …
  5. … AA B500 is a seamless high basic flux cored wire for extreme offshore requirements at sub zero …
  6. … the slag in combination with low hydrogen content Typical with FL 155 Flux … For matching P36 / W36 creep resisting ferritic steels. …
  7. … content. S3Si is best to be used with FL 155 high basic agglomerated flux to obtain neutral action on metallurgical chemistry and excellent …
  8. … and 870°C) for 16,000 hours. Suitable for joining and cladding Nickel alloys, stainless steel, carbon steel and low alloyed steels. UNS: N06002 … Alloy HX, X, Nickel alloys, stainless steel, carbon steel and low alloyed steels. UNS: …
  9. … Special alloy for welding aluminium-magnesium based alloys with maximum 5% Mg. Zirconium added as grain refiner to improve both the bending and corrosion resistance. … Aluminium alloys: AlMg4,5Mn, AlZnMgCu1,5, AlMg5, AlMg3, AlMg5, AlMg2Mn0.8, …
  10. … Special alloy for welding aluminium-magnesium basis alloys with maximum 5% Mg. Zirconium acts as grain-refiner to improve … storage tanks, railways and automotive industry. … Aluminium alloys: AlMg4,5Mn, AlZnMgCu1,5, AlMg5, AlMg3, AlMg5, AlMg2Mn0.8, …