Home > Electrodes > AWS Class E410NiMo-16 Electrodes
Andre Stainless proudly produces and distributes AWS Class E410NiMo-16 stainless steel electrodes in Pulau ujong, Pulau Ujong, for high-strength, corrosion-resistance welding purposes. The electrodes are ideal for welding nickel- and molybdenum-containing martensitic stainless steels with improved toughness and corrosion resistance. Suitable for use in sulfuric, phosphoric, and seawater-exposed environments, E410NiMo-16 is widely applied in hydropower, marine, and chemical process industries. Andre Stainless promises accurate metallurgy, superior weldability, and AWS and ASME compliance to provide reliable, crack-free joints in high-load critical applications.
E410NiMo-16 electrodes have about 11.5–13.5% Chromium, 4.5–6.5% Nickel, and 0.5–1.5% Molybdenum that offer enhanced corrosion and pitting resistance. Carbon is generally restricted to ≤0.06%. The electrodes have a tensile strength of about 620 MPa and yield strength more than 450 MPa. Post-weld heat treatment is usually advised to recover full martensitic properties. They are in accordance with AWS A5.4 standards and compatible for use in flat and vertical positions of welding. They are made with a view to high strength, corrosion resistance, and toughness and offer superior mechanical performance in martensitic stainless steel applications.
| Classification | AWS A5.4, E410NiMo-16 |
| Form | Welding Electrode, Welding Rods |
| Type Of Current | AC-DCEP (Direct Current Electrode Positive) |
| Welding Position | F, V, OH, H |
| Size | 2.0 mm, 2.50 mm, 3.15 mm, 4.00 mm, 5.0 mm |
| AC/DC+ | AC or DC (+) |
| JIS Specification | BS 2926 19.9 A R |
| Other Specification | DIN 8556 E19 9 R 23 A |
| AWS E410NiMo-16 Coated Electrodes Application & uses |
|
| C | Cr | Ni | Mo | Mn | Si | P | S | Cu |
| 0.06 | 11.0-12.5 | 4.0-5.0 | 0.40-0.70 | 1.0 | 0.90 | 0.04 | 0.03 | 0.75 |
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These electrodes offer excellent corrosion resistance and are designed for applications requiring moderate to high tensile strength. They come in diameters ranging from 2.5 mm to 4.0 mm and lengths typically between 300 mm and 350 mm, making them ideal for thin-walled sections and precision welding.
Known for superior corrosion resistance, these electrodes are suitable for welding thicker sections and high-strength joints. Available in diameters from 3.2 mm to 5.0 mm and lengths of 300 mm to 400 mm, they are optimized for more demanding welding tasks requiring robust performance.
These electrodes have exceptional corrosion resistance and are ideal for shielded arc welding applications. They come in various diameters, including 2.5 mm, 3.2 mm, and 4.0 mm, with lengths of 300 mm to 400 mm, providing flexibility for various welding positions and joint configurations.
We provide the most extensive range of certifications with our AWS Class E410NiMo-16 Electrodes. In the package, we include commercial invoices, packaging lists, fumigation certificates, heat treatment charts, quality assurance plans and approved laboratory test reports. Further, we have several test certificates exclusively for the AWS Class E410NiMo-16 Electrodes. These certificates include MTC as per EN 10204/3.1b, PMI Test Certificate, 100% radiography test report, and Third-Party Inspection Certificate. We intend to ensure 100% client satisfaction and confidence in our products by providing these comprehensive certifications.
E410NiMo-16 electrodes find extensive application in welding 12Cr-5Ni-1Mo stainless steels that are employed in service which demands high strength and resistance to aggressive corrosion. Typical uses include hydropower turbine blades, seawater pumps, heat exchangers, and components for chemical processing plants. These electrodes are also ideal for cladding carbon or low-alloy steel to provide a corrosion-resistant surface. Their balanced composition reduces cracking risk during welding and enhances impact strength in corrosive environments. Post-weld heat treatment may be required depending on service conditions. E410NiMo-16 is also utilized in marine structures and chlorides-exposed desalination systems as well as in acidic media.







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