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Бренды

EXATON E2209T1-4/1

Exaton E2209T1-4/1 is and all-position duplex flux cored electrode for use with 100% CO2 or 75~85%Ar / 20~25% CO2 mixed gas. It is designed for the welding of 22Cr-5Ni-2Mo-0.15N duplex stainless steel(UNS S31803), commonly known as 2205. Commercial designations for such steels include SAF 2205(Exaton), 2205(Avesta), UR 54N(Creusot), AF22(Mannesmann), NK Cr22(Nippon Kokan), SM22Cr(Sumitomo).

EXATON E308LT0-4/1

FCAW wire for 18%Cr – 8%Ni stainless steel, For flat and horizontal position welding. Designed for welding types 301, 302, 304, 304L, 308, 308L steels. Ideal where service temperatures are below 500°F(260°C). Low carbon content helps minimize carbide precipitation. Carbon content 0.04% maximum.

EXATON E308LT1-4/1

FCAW wire for 18%Cr – 8%Ni stainless steel, For all-position welding. For welding types 301, 302, 304, 304L, 308 and 308L of stainless steel. May be used for welding types 321 and 347 if service temperature does not exceed 500°F(260°C). Low carbon content minimizes carbide precipitation. Ferrite values will lower as impact toughness increases. Carbon content 0.04% maximum.

EXATON E309 MOL T1-T1/4

FCAW wire for dissimilar metals, For all-position welding. Designed for welding type 316 clad steels on the first pass in cladding steels or for welding dissimilar metals such as Mo-containing austenitic stainless steels to carbon steels. Used in paper mills and in power plants. Carbon content 0.04% maximum.

EXATON E309LT0-4/1

FCAW wire for 22%Cr – 12%Ni stainless steel For flat and horizontal position welding. Developed to be used when welding most mild or carbon steels to type 304. The higher percentages of Cr and Ni provide the necessary crack resistance. Carbon content 0.04% maximum.

EXATON E309LT1-4/1

FCAW wire for 22%Cr – 12%Ni stainless steel, For all-position welding. Designed for welding type 309 wrought or cast forms, but used extensively for welding type 304 to mild or carbon steel. Also used for welding 304 clad sheets and for applying stainless steel sheet linings to carbon steel. Carbon content 0.04% maximum.

EXATON E316LT0-4/1

FCAW wire for 18%Cr – 12%Ni – 2%Mo stainless steel For flat and horizontal position welding. Designed specifically for applications where the service environment can produce pitting corrosion. Commonly used in the pulp and paper industry. Carbon content 0.04% maximum.

EXATON E317LT1-4/1

FCAW wire for 18%Cr – 12%Ni – 3% Mo- N stainless steel For all-position welding. Recommended for welding type 317 stainless steel to give a maximum of 0.04% carbon in the weld deposit. The higher molybdenum content, as compared to type 316L, further reduces susceptibility to pitting corrosion. Used in the pulp and paper industry and in other severe corrosion applications involving sulfuric and sulfurous acids and their salts.

EXATON E347T1-4/1

FCAW wire for 18%Cr – 8%Ni – Nb stainless steel For all-position welding. Developed to weld types 347, 304, 304L and 321 stainless, where service temperatures are below 316℃. The addition of columbium helps minimize chromium carbide precipitation while providing improved corrosion resistance.

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EXATON E2209T1-4/1

Exaton E2209T1-4/1 is and all-position duplex flux cored electrode for use with 100% CO2 or 75~85%Ar / 20~25% CO2 mixed gas. It is designed for the welding of 22Cr-5Ni-2Mo-0.15N duplex stainless steel(UNS S31803), commonly known as 2205. Commercial designations for such steels include SAF 2205(Exaton), 2205(Avesta), UR 54N(Creusot), AF22(Mannesmann), NK Cr22(Nippon Kokan), SM22Cr(Sumitomo).

EXATON E308LT0-4/1

FCAW wire for 18%Cr – 8%Ni stainless steel, For flat and horizontal position welding. Designed for welding types 301, 302, 304, 304L, 308, 308L steels. Ideal where service temperatures are below 500°F(260°C). Low carbon content helps minimize carbide precipitation. Carbon content 0.04% maximum.

EXATON E308LT1-4/1

FCAW wire for 18%Cr – 8%Ni stainless steel, For all-position welding. For welding types 301, 302, 304, 304L, 308 and 308L of stainless steel. May be used for welding types 321 and 347 if service temperature does not exceed 500°F(260°C). Low carbon content minimizes carbide precipitation. Ferrite values will lower as impact toughness increases. Carbon content 0.04% maximum.

EXATON E309 MOL T1-T1/4

FCAW wire for dissimilar metals, For all-position welding. Designed for welding type 316 clad steels on the first pass in cladding steels or for welding dissimilar metals such as Mo-containing austenitic stainless steels to carbon steels. Used in paper mills and in power plants. Carbon content 0.04% maximum.

EXATON E309LT0-4/1

FCAW wire for 22%Cr – 12%Ni stainless steel For flat and horizontal position welding. Developed to be used when welding most mild or carbon steels to type 304. The higher percentages of Cr and Ni provide the necessary crack resistance. Carbon content 0.04% maximum.

EXATON E309LT1-4/1

FCAW wire for 22%Cr – 12%Ni stainless steel, For all-position welding. Designed for welding type 309 wrought or cast forms, but used extensively for welding type 304 to mild or carbon steel. Also used for welding 304 clad sheets and for applying stainless steel sheet linings to carbon steel. Carbon content 0.04% maximum.

EXATON E316LT0-4/1

FCAW wire for 18%Cr – 12%Ni – 2%Mo stainless steel For flat and horizontal position welding. Designed specifically for applications where the service environment can produce pitting corrosion. Commonly used in the pulp and paper industry. Carbon content 0.04% maximum.

EXATON E317LT1-4/1

FCAW wire for 18%Cr – 12%Ni – 3% Mo- N stainless steel For all-position welding. Recommended for welding type 317 stainless steel to give a maximum of 0.04% carbon in the weld deposit. The higher molybdenum content, as compared to type 316L, further reduces susceptibility to pitting corrosion. Used in the pulp and paper industry and in other severe corrosion applications involving sulfuric and sulfurous acids and their salts.

EXATON E347T1-4/1

FCAW wire for 18%Cr – 8%Ni – Nb stainless steel For all-position welding. Developed to weld types 347, 304, 304L and 321 stainless, where service temperatures are below 316℃. The addition of columbium helps minimize chromium carbide precipitation while providing improved corrosion resistance.

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