1. … temperature should be between 100°C (212 °F) and 150°C (302 °F) . As welding flux FL 155 should be used because of its high basicity and low …
  2. … deposits are air-hardenable that can normally be heat-treated after welding. … 1.4000, 1.4001, 1.4002, 1.4003, 1.4006, 1.4008,  1.4021, …
  3. … is good machinable. Very good weld deposit appearance and outstanding welding properties on both AC and DC+. Preheating is not required. …
  4. … Without slag. Extremely crack resistant. Suitable for economic welding of CrMoV-steels up to 550 °C. Due to the seamless production …
  5. … FL 8111 is a fluoride basic agglomerated flux for stainless steel SAW welding. Basicity: about 2,6 (according to Boniszewski) Current: DC or AC, in single or multi-wires. Grain size: 2-28 … Submerged arc welding with stainless steel wires, AISI 410, 410NiMo, 308L, 316L, 2209 …
  6. … treatable. Thicker sections should be preheated (150°C) prior to welding. … G-AlSi10Mg, G-AlSi11 G-AlSi12 (Cu), G-AlSi7Mg, G-AlSi6Cu4 , …
  7. … Extreme easy to weld with excellent welding properties. Suitable to offer creep resistance for working …
  8. … above 815 °C (1500°F) up to 1149 °C (2100°F), especially when welding on base metals of nickel-iron-chromium alloys. … Inconel alloys …
  9. … Designed for welding heat resistant steels to sustain working temperatures up to …
  10. … low hydrogen content when combined with Ceweld  FL 155. Developed for welding cold tough, high tensile fine grain steel exceeding a yield …