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ERNiCrCoMo-1 MIG & TIG Welding Wire

Metals And Welding Specialities is a trusted supplier of high-performance welding consumables, offering premium-grade ERNiCrCoMo-1 MIG & TIG Welding Wire wires designed for exceptional strength and corrosion resistance. This alloy, known under UNS N06617 and often referred to by its universal standard name Inconel® 617, is an advanced nickel-chromium-cobalt-molybdenum filler metal that provides outstanding metallurgical stability in the most demanding environments. The product complies with ASTM A494 Grade CW6M, ensuring reliability and consistency in welding applications that demand resistance to oxidation and carburization at elevated temperatures.

Manufactured with precision, ERNiCrCoMo-1 welding wire is ideal for joining dissimilar metals and nickel-based alloys. It exhibits excellent weldability in both MIG and TIG processes, producing smooth, clean weld beads with minimal spatter. Metals And Welding Specialities ensures each wire undergoes rigorous quality checks, guaranteeing uniform composition and performance. The wire delivers exceptional mechanical strength and toughness, even after prolonged exposure to thermal cycling or aggressive service conditions.

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This filler metal is specifically engineered for welding alloys such as Inconel 617, Incoloy 800H/HT, and dissimilar joints between nickel-chromium and iron-nickel-chromium alloys. Its robust chemistry—containing nickel, chromium, cobalt, and molybdenum—provides superior resistance against oxidation, sulfidation, and high-temperature corrosion. Industries such as chemical processing, aerospace, power generation, and furnace manufacturing rely on AWS ERNiCrCoMo-1 to ensure weld integrity and long service life under extreme thermal stress.

The ERNiCrCoMo-1 MIG & TIG wire maintains its strength at temperatures up to 2100°F (1150°C), making it suitable for components like combustion cans, transition ducts, and gas turbine parts. Its metallurgical balance ensures that weld deposits retain ductility while resisting embrittlement, cracking, and scaling. When used with proper shielding gases and welding parameters, this wire provides exceptional arc stability and smooth weld flow.

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Metals And Welding Specialities’ commitment to excellence makes its ERNiCrCoMo-1 wire a reliable choice for industries that demand precision and performance. Available in various diameters, it can be supplied on spools or in cut lengths, depending on your welding setup. Every batch adheres to international standards, offering consistency and traceability from production to application. For professionals who require durability, consistency, and superior weld quality, ERNiCrCoMo-1 MIG & TIG Welding Wire from Metals And Welding Specialities is the proven choice for high-temperature, corrosion-resistant applications.

  • Specification ERNiCrCoMo-1 MIG & TIG Welding Wire
    Classification AWS A5.14, ERNiCrCoMo-1
    Form MIG spools, TIG cut lengths, Reels and Coils
    Type Of Welding Inert Gas Welding
    Standard TIG straight lengths are available 36” (914 mm) or 39” (1000 mm) lengths. Other lengths available upon request.
    AWS ERNiCrCoMo-1 MIG & TIG Filler Metal Application & uses
    • Hardware tools
    • Metallurgy
    • Machinery
    • Construction
    • Shipbuilding
    • Petroleum
    • Chemical plant
    • Power sector
    • Gas Industry
  • Equivalent Grade Of AWS ERCuNi MIG & TIG
    Class UNS Oxford Alloys Special Metals BOHLER UTP
    ERNiCrCoMo-1 N06617 Alloy 617 INCONEL FILLER METAL 617 THERMANIT 617 UTP A 6170 CO
  • ERNiCrCoMo-1 MIG & TIG Welding Wire Chemical Composition
    C Mn Si Cr S P Ni Fe Cu Al Mo Co Ti
    0.05-0.15 ≤1.0 ≤1.0 20-24 ≤0.015 ≤0.03 Rest ≤3.0 ≤0.5 0.8-1.5 8-10 10-15 ≤0.6
  • ERNiCrCoMo-1 MIG & TIG Welding Wire Parameters
    Diameter Process Volt Amps Shielding Gas
    In mm
    0.035 0.9 GMAW 26-29 150-190 Spray Transfer 100% Argon
    0.045 1.2 GMAW 28-32 180-220
    1/16 1.6 GMAW 29-33 200-250
    1/16 1.6 GTAW 14-18 90-130 100% Argon
    3/32 2.4 GTAW 15-20 120-175 100% Argon
    1/8 3.2 GTAW 15-20 150-220 100% Argon

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