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Multilayer welding for low-temperature steels exhibits excellent impact toughness at -100°C.

Multilayer welding for low-temperature steels exhibits excellent impact toughness at -73°C.

Multilayer welding for low-temperature steels exhibits excellent impact toughness at -50°C.

With impact toughness at −40°C and −60°C, excellent all-position weldability, low diffusible hydrogen content, and superior crack resistance, EQ420–EQ460 steels are suitable for welding in marine engineering, shipbuilding, steel structure construction, and other related fields.

It exhibits high impact toughness at −60°C, excellent all-position weldability, superior process performance, low diffusible hydrogen content, and outstanding crack resistance, making it suitable for welding FH40-grade steel in marine engineering, shipbuilding, steel structures, and bridge construction.

It exhibits high impact toughness at −40°C, excellent all-position weldability, low diffusible hydrogen content, and superior crack resistance, making it suitable for welding EH40-grade steel in marine engineering, shipbuilding, and structural steel applications.

High impact toughness at −40°C, excellent all-position weldability, low diffusible hydrogen content, and superior crack resistance; suitable for welding EH36- and Q345E-grade steels in offshore engineering, shipbuilding, steel structure fabrication, and other applications.

It is suitable for welding stainless steels of the same type and also for welding corrosion-resistant equipment.

It is used for welding stainless steel structures such as 00Cr17Ni12Mo2, as the Mo content provides excellent corrosion resistance to acetic acid, sulfurous acid, phosphoric acid, and salts, particularly in terms of resistance to chloride-ion pitting.

It is used for welding stainless steel structures such as 06Cr17Ni12Mo2, as the Mo content provides excellent corrosion resistance to acetic acid, sulfurous acid, phosphoric acid, and salts, particularly in terms of resistance to chloride-ion pitting.

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