ER310 vs ER309L TIG Filler: Heat-Resistant Stainless vs Dissimilar Joints

Welder performing TIG welding; contextual image for an ER310 versus ER309L filler-metal guide

ER310 and ER309L are both stainless TIG filler classifications under AWS A5.9, but they solve different selection problems. ER310 is a high-chromium/high-nickel starting point for 310-family heat-resistant stainless. ER309L is commonly used for 24Cr-13Ni stainless and for selected dissimilar joints or buffer layers. Choosing between them by the word “stainless” alone misses the reason the classifications exist.

Start with the application, not the alloy number

QuestionER310 starting pointER309L starting point
Typical family310/310S and 25Cr-20Ni heat-resistant stainless309-family stainless, buffer layers and selected stainless-to-carbon-steel joints
Manufacturer exampleESAB OK Tigrod 310ESAB OK Tigrod 309L
AWS classificationER310ER309L
Key decisionHeat-resistant alloy match and service conditionsDissimilar-joint or transition-filler requirements
What it does not proveThat ER310 fits every high-temperature jointThat ER309L is approved for every stainless-to-mild-steel weld

What ESAB says about ER310

ESAB classifies OK Tigrod 310 to SFA/AWS A5.9 ER310 and describes it as a bare corrosion-resistant chromium-nickel rod for heat-resistant austenitic steels of the 25Cr-20Ni type. ESAB specifically points to industrial furnaces, boiler parts and heat exchangers as common applications, and identifies the alloy as fully austenitic. Those are product-family clues, not permission to use ER310 outside the governing WPS or material specification.

What ESAB says about ER309L

ESAB classifies OK Tigrod 309L to SFA/AWS A5.9 ER309L. Its current product guidance describes ER309L for similar 24%Cr-13%Ni steels and also for buffer layers on carbon-manganese steels and dissimilar joints. ESAB notes that dilution control matters when the rod is used for buffer layers and dissimilar joining.

That is the practical distinction: ER309L is commonly considered when the joint transitions between stainless and a lower-alloy steel, while ER310 is aimed at a more highly alloyed heat-resistant stainless family. Neither statement replaces procedure qualification, code rules, corrosion review or service-temperature requirements.

Use the WSP alloy pages as selection starting points

Verification list before welding

  • Identify both base metals by documented grade, not appearance.
  • Read the active WPS and confirm the filler classification is permitted.
  • Verify whether the job is matching, dissimilar joining, buffer layer, overlay or repair.
  • Review service temperature, corrosion exposure and dilution concerns.
  • Use the exact manufacturer data sheet for the filler product being purchased.

Sources

Manufacturer values and application descriptions are product-specific examples. They are not the complete AWS specification limits and are not a WPS.

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