AWS Class E410-16 Electrodes Manufacturer in Riyadh, Saudi Arabia

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Khaleed Stainless stands out as a top manufacturer and supplier of AWS Class E410-16 Electrodes in Riyadh, Saudi Arabia. We pride ourselves on providing high-quality welding consumables tailored for industrial sectors that demand exceptional strength and resistance to corrosion. These electrodes are crafted specifically for welding type 410 and similar martensitic stainless steels. They ensure a smooth arc performance, effortless slag removal, and an attractive weld bead appearance. With E410-16 electrodes, you can achieve welds that boast excellent wear resistance and moderate corrosion resistance, making them perfect for structural and engineering applications.

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Typically, AWS Class E410-16 Electrodes are made up of chromium (11.5–14%), manganese (≤1%), silicon (≤1%), and carbon (0.08–0.15%). This specific alloy composition guarantees high hardness and strength post-welding. The weld metal showcases a tensile strength of about 550–650 MPa, a yield strength of 350 MPa, and an elongation of 20%. Given the martensitic structure, we often recommend post-weld heat treatment to boost toughness and lower hardness, ensuring durability even in tough service conditions.

AWS Class E410-16 Electrodes Specifications

Classification AWS A5.4, E410-16
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 E410-16 Coated Electrodes Application & uses
  • Petroleum
  • Chemical plant
  • Power sector
  • Gas Industry
  • Hardware tools
  • Metallurgy
  • Machinery
  • Construction
  • Shipbuilding

AWS Class E410-16 Electrodes Chemical Composition

C Cr Ni Mo Mn Si P S Cu
0.12 11.0-13.5 0.7 0.75 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.

Why Choose AWS Class E410-16 Electrodes From Khaleed Stainless?

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Types of AWS Class E410-16 Electrodes

Stainless Steel AWS Class E410-16 Light Coated Electrodes

These electrodes offer moderate corrosion resistance and are designed for welding stainless steel to itself or to carbon steel. They typically come in sizes like 1/8″ (3.2mm), 5/32″ (4mm), and 3/16″ (4.8mm), providing flexibility for various applications.

Stainless Steel AWS Class E410-16 Heavy Coated Electrodes

Featuring excellent corrosion resistance, these electrodes are used for welding stainless steel components, especially in demanding environments. Common sizes include 1/8″ (3.2mm), 5/32″ (4mm), and 3/16″ (4.8mm). Their heavy coating ensures better arc stability and coverage.

Stainless Steel AWS Class E410-16 Shielded Arc Electrodes

These electrodes provide robust corrosion resistance and are suited for shielding gas protection applications. They are available in sizes such as 1/8″ (3.2mm), 5/32″ (4mm), and 3/16″ (4.8mm), offering reliable performance in various welding conditions.

To ensure complete transparency and maintain strict quality control, we provide an extensive range of documentation along with our AWS Class E410-16 Electrodes. This includes a commercial invoice, packing list, heat treatment chart, fumigation certificate and a quality assurance plan. Additionally, we offer a lab test report approved by NABL. For further assurance, we supply an MTC in accordance with EN 10204/3.1b, a PMI Test Certificate, a 100% radiography test report and a Third Party Inspection Certificate. Our comprehensive documentation reflects our commitment to excellence and customer satisfaction.

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AWS Class E410-16 Electrodes Uses

AWS Class E410-16 electrodes are primarily used for welding ferritic steels, particularly in the construction of pressure vessels, boilers and pipelines. These electrodes are designed for welding materials exposed to elevated temperatures and moderate corrosion environments. They offer excellent weldability, high impact toughness and resistance to stress corrosion cracking, making them ideal for industries such as power generation, chemical processing and petrochemical applications. Their properties help ensure strong, reliable welds in critical, high-temperature conditions.

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