AWS Class E410NiMo-16 Electrodes Manufacturer in Pulau Ujong, Singapore

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AWS Class E410NiMo-16 Electrodes primarily consist of iron, with 11-13% chromium, 4-6% nickel, and 0.4-0.6% molybdenum. The addition of nickel enhances toughness, while molybdenum increases corrosion and pitting resistance. Weld deposits display a martensitic microstructure with a tensile strength of about 650 MPa and elongation of approximately 25-28%. They also maintain good impact resistance, even at low temperatures. Post-weld heat treatment further enhances ductility and mechanical performance. These attributes make E410NiMo-16 electrodes suitable for demanding applications needing both strength and corrosion resistance.

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AWS Class E410NiMo-16 electrodes are designed with a low carbon steel core, alloyed with nickel (Ni), molybdenum (Mo) and chromium (Cr), offering enhanced strength and resistance to corrosion. These electrodes provide excellent mechanical properties, including high tensile strength (min. 90 ksi), good ductility and exceptional toughness, even at low temperatures. Their resistance to cracking and ability to produce high-strength welds make them ideal for applications in pressure vessels, chemical processing and environments requiring high-temperature performance and corrosion resistance.

AWS Class E410NiMo-16 Electrodes Specifications

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
  • Petroleum
  • Chemical plant
  • Power sector
  • Gas Industry
  • Hardware tools
  • Metallurgy
  • Machinery
  • Construction
  • Shipbuilding

AWS Class E410NiMo-16 Electrodes Chemical Composition

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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We offer These Products as per DIN, ISO, JIS or ANSI Standard.

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Types of AWS Class E410NiMo-16 Electrodes

Stainless Steel AWS Class E410NiMo-16 Light Coated Electrodes

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.

Stainless Steel AWS Class E410NiMo-16 Heavy Coated Electrodes

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.

Stainless Steel AWS Class E410NiMo-16 Shielded Arc Electrodes

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.

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AWS Class E410NiMo-16 Electrodes Uses

AWS Class E410NiMo-16 Electrodes are widely employed in industries such as power generation, oil and gas, and petrochemicals, where joints must endure tough conditions. They are effective for welding and repairing turbine blades, rotors, valves, and other components under high stress and exposure to corrosive media. Their improved toughness makes them suitable for use in hydroelectric plants and marine applications. These electrodes are also ideal for fabricating parts that require protection against erosion, wear, and chloride-induced corrosion, ensuring durability and reliability in critical service situations.

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