1. … gas turbines, aerospace components, nuclear reactors, and industrial furnaces. Nickel-based superalloys, like those used in turbine blades, …
  2. … In case of sensitive base material preheating is recommended at 300-400°C. … 600 HB, T Fe 8 … MA 600 (1.4718) … A 5.21: ERFeCr-A … 14700: T …
  3. … resistant with improved impact properties when combined with OA 400 as buffer layer. Due to the combination Cr-V-W-B carbides the …
  4. … in normal atmosphere and oxidizing gases. Working temperatures up to 400 °C. Extreme stable arc on both AC and DC+ with no spatter losses. … 316Ti, 316Cb, 316LN, 444 S31640, S31603, S31653, S31600, S31630, S44400 … 4430 Ti … A 5.4: E 316L-16 … 3581-A: E 19 12 3 LR 12 …
  5. … are used for fabrication of equipment and vessels for handling of sulfuric acid and many chloride containing media. This filler metal may …
  6. … 2400 HV Iron and Tungsten based hardfacing alloy containing …
  7. … steel. ER383 contains a low maximum of carbon, silicon, and sulfur to decrease the hot cracking and fissuring, while maintaining the …
  8. … Excellent corrosion resistance as needed in chemical industry up to 400 °C and exceptional weldability with no spatter and self lifting …
  9. … and suitable for applications when exposed to hydrogen sulfide or sulfur dioxide. … The nominal composition (wt.-%) of filler metal of this …
  10. … CEWELD 308H has been developed for typical operating temperatures up to 400ºC, and up to 600ºC in the short-term range. It also shows good … AISI 304, 304H, 312, 321H, 347, 347H,  UNS S30409, S32109, S34709, S30400, S32100, S34700 … 308H … A 5.9: ER308H … 14343-A: G 19 9 H …