Description
High-Strength Electrode E309LMo-16 3.2 mm Stainless Steel Welding Rods
Electrode E309LMo-16 3.2 mm welding rods are engineered to deliver exceptional performance when welding stainless steel to carbon steel or constructing stainless equipment that demands high strength and corrosion resistance. The addition of molybdenum (Mo) enhances the alloy’s resistance to inter-granular corrosion, making these rods ideal for use with dissimilar steel combinations and in aggressive environments.
This electrode provides a stable, smooth arc and minimal spatter due to its rutile coating. It is suitable for welding in all positions except vertical down, offering versatility in a range of work applications.
Key Features and Specifications:
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Diameter: 3.2 mm — suitable for medium-thick sections
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Coating: Rutile-coated E309LMo-16 — for clean, controllable arc behavior
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Package Weight: 2 kg — ideal for workshop and field use
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Welding Position: All positions except vertical down
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Performance: High tensile strength and improved corrosion resistance, thanks to Mo
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Application: Ideal for stainless-to-carbon steel welds and heavy-duty stainless equipment
Typical Uses Include:
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Fabricating stainless steel tanks and boilers with carbon steel components
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Joining stainless and carbon steel in chemical processing equipment
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Repair and maintenance of fusion equipment and pipelines
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Weld builds on machinery and structural components
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Environments requiring high strength and corrosion performance
Why Choose Electrode E309LMo 3.2mm?
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Excellent weld strength with high ductility
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Resistant to inter-granular corrosion and scaling
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Minimal spatter and easy slag removal
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Smooth, controllable welding experience
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Trusted in demanding industrial applications
Helpful Resources and Links
Visit the American Welding Society for guidelines on high-performance stainless welding. For other electrode options, check our stainless steel welding rods collection.
Choose Electrode E309LMo-16 3.2 mm for professional, high-strength welds where reliability and corrosion resistance matter most.
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