AWS Class E310-16 Electrodes Manufacturer in Abuja, Nigeria

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The AWS Class E310‑16 electrode is a top-notch stick welding electrode made from high-alloy stainless steel, specifically crafted for welding stainless steels like 310 and 310S. It shines when it comes to resisting oxidation and scaling, especially at high temperatures. With a rich blend of chromium (25–28%) and nickel (20–22%), it offers outstanding corrosion resistance and performs well under heat. Plus, its fully austenitic structure gives it great toughness. The “‑16” in its name means it can be used in all positions—flat, horizontal, vertical, and even overhead. Built to meet AWS A5.4/ASME SFA A5.4 standards, this electrode is perfect for tough industrial jobs where heat and corrosion resistance are a must.

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When it comes to the typical weld metal composition, you’ll find carbon at 0.08–0.20%, chromium at 25–28%, nickel at 20–22%, manganese at 1.0–2.5%, silicon up to 0.75%, and both phosphorus and sulfur capped at ≤0.03%. Its mechanical properties are impressive too, boasting a tensile strength of around 425 MPa and an elongation of about 34%, which means it creates strong, durable, and heat-resistant welds. The coated design ensures a stable arc, smooth deposition, and reliable performance no matter the welding position or conditions.

AWS Class E310-16 Electrodes Specifications

Classification AWS A5.4, E310-16
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 E310-16 Coated Electrodes Application & uses
  • Petroleum
  • Chemical plant
  • Power sector
  • Gas Industry
  • Hardware tools
  • Metallurgy
  • Machinery
  • Construction
  • Shipbuilding

AWS Class E310-16 Electrodes Chemical Composition

C Cr Ni Mo Mn Si P S Cu
0.08-0.20 25.0-28.0 20.0-22.5 0.75 1.0-2.5 0.75 0.03 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 E310-16 Electrodes

Stainless Steel E310-16 Light Coated Electrodes

These electrodes offer exceptional corrosion resistance and are suitable for welding high-temperature alloys and stainless steels. They are available in sizes like 1/8″ and 5/32″ diameters, providing a balance of strength and ease of use.

Stainless Steel E310-16 Heavy Coated Electrodes

With enhanced corrosion resistance, these electrodes are ideal for demanding welding applications involving high chromium stainless steels. They typically come in diameters of 3/16″ and 5/32″, offering robust performance and better deposition rates for thicker materials.

Stainless Steel E310-16 Shielded Arc Electrodes

Known for their excellent corrosion resistance, these electrodes are designed for shielded arc welding of stainless steel and high-temperature alloys. Sizes include 1/8″ and 5/32″ diameters, providing strong welds and durability in harsh environments.

We provide full transparency of our AWS Class E310-16 Electrodes with high-quality assurance. We send all the orders with important documents, including a commercial invoice, packing list, fumigation certificate, heat treatment chart, and NABL-approved lab test report. We also offer Material Test Certificate according to EN 10204/3.1b, PMI Test Certificate, 100% radiography test report, and Third-Party Inspection Certificate. Our well-planned documents help us meet maximum client satisfaction.

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AWS Class E310-16 Electrodes Uses

AWS Class E310‑16 electrodes are commonly used in furnace parts, heat-treating equipment, high-temperature ducting, and in the petrochemical and power generation sectors. They’re also great for overlay or cladding applications where a high-alloy stainless steel deposit is needed. Additionally, they can join stainless steels to carbon or low-alloy steels, as long as you manage preheat and heat input properly. These electrodes are a go-to choice for projects that demand durability, oxidation resistance, and corrosion-resistant welded joints, especially in harsh, high-temperature industrial settings.

 

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