Home > Electrodes > AWS Class E347-16 Electrodes
Khaled Stainless, located in Cairo, Egypt, stands out as a top-notch manufacturer and supplier of premium welding consumables, including the highly regarded AWS Class E347-16 electrodes. With a reputation for precision and rigorous quality control, this company delivers electrodes that consistently meet international standards for both performance and reliability. The AWS Class E347-16 electrodes from Khaled Stainless are specifically engineered for tough industrial applications, offering exceptional corrosion resistance and mechanical strength even at high temperatures. Committed to innovation and customer satisfaction, Khaled Stainless ensures that its products deliver reliable, consistent results for fabricators and repair specialists across a variety of industries.
These AWS Class E347-16 electrodes are made from a stabilized stainless steel alloy that contains around 17% chromium, 12% nickel, and added niobium (columbium) to enhance resistance to intergranular corrosion. This unique formulation boosts mechanical properties, providing high tensile strength, ductility, and toughness, particularly in elevated temperature scenarios. The electrodes come with a rutile or cellulose-based coating that guarantees smooth arc performance, minimal spatter, and easy slag removal. Their blend of corrosion resistance and thermal stability makes them a dependable choice for welding 347 stainless steel and similar alloys in demanding industrial settings.
| Classification | AWS A5.4, E347-16 |
| 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 E347-16 Coated Electrodes Application & uses |
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| C | Cr | Ni | Nb+Ta | Mn | Si | P | S | Mo | Cu |
| 0.08 | 18.0-21.0 | 9.0-11.0 | 8xC-1.0 | 0.5-2.5 | 1.0 | 0.04 | 0.03 | 0.75 | 0.75 |
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These electrodes offer exceptional corrosion resistance, particularly against intergranular corrosion. Typically available in diameters of 1/16″ to 1/8″ (1.6 mm to 3.2 mm), they provide a lighter coating, facilitating easier welding with smooth, clean welds and minimal spatter.
Known for high corrosion resistance, especially in harsh environments, these electrodes come in diameters of 1/8″ to 5/32″ (3.2 mm to 4.0 mm). The heavy coating enhances arc stability and provides a thicker slag layer, offering better protection and ease of removal for cleaner welds.
These electrodes deliver superior corrosion resistance and are ideal for high-temperature applications. Typically available in diameters of 3/32″ to 1/8″ (2.4 mm to 3.2 mm), they are designed for shielded arc welding, ensuring stable arcs and good weld integrity in challenging conditions.
We guarantee complete transparency and top-notch quality assurance for our AWS Class E347-16 Electrodes. All orders are accompanied by necessary documents such as a commercial invoice, packing list, fumigation certificate, heat treatment chart, and an NABL-approved lab test report. We also provide a Material Test Certificate as per EN 10204/3.1b, PMI Test Certificate, 100% radiography test report, and Third-Party Inspection Certificate. Our documentation is very well arranged to ensure the highest level of client satisfaction.
AWS Class E347-16 electrodes are commonly utilized in applications that require strong resistance to intergranular corrosion and stability at high temperatures. Typical applications include the fabrication and repair of chemical processing equipment, boilers, heat exchangers, and components in petrochemical plants. They are also perfect for power generation, machinery in the pulp and paper industry, and food processing equipment where stainless steel needs to perform reliably under stress and heat. These electrodes are particularly well-suited for welding stabilized austenitic stainless steels, providing long-lasting durability and corrosion protection in challenging industrial environments.







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