ER 316 Stainless Steel Sub Arc Wire
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ER 316 Stainless Steel Sub Arc Wire

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What are the key differences among ER 316, ER 316L, and ER 316LSi stainless steel sub-arc wires in terms of chemical composition and performance?

ER, 316, ER 316L and ER 316LSi Stainless Steel Sub-arc Wires are commonly used in welding due to their excellent corrosion resistance and mechanical properties. The difference lies in their chemical compositions as well as performance. In addition, ER 316 has more carbon content than the other two which makes it suitable for high temperature environments but may be prone to carbide precipitation hence reduced corrosion resistance in some situations.

316 Submerged Arc Wire, Er316 Submerged Arc Welding Wires, 316l Submerged Arc Wire, Er316lsi Submerged Arc Wire, Sub Arc Wire Stainless Steel 316l Supplier In Mumbai, India.

ER 316L wires have lower carbon content that minimizes carbide precipitation and increases its resistance to intergranular corrosion making it applicable in welding of corrosive environments.

Alternatively, additional silicon exists in ER 316LSi that improves weld puddle fluidity and weld bead appearance. This type is usually applied where good-looking welds are required, as well as general weld quality. However, the choice of these sub-arc wires depends on specific welding requirements and different performance expectations under various operating conditions.

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ER316 Stainless Steel Sub Arc Wires

ER 316L SAW SS Wire, ER 316L Stainless Steel SUB-ARC wire, AWS Class ER316LSi Submerged Arc Welding Flux, 308LSi Submerged Arc wire Exporter In India.

How does the corrosion resistance of ER 316L stainless steel sub-arc wire compare with those of ER 316 and ER 316LSi?

The corrosion resistance of ER 316L Stainless Steel Sub-arc Wire is superior to that of ER 316 and ER 316LSi variants due to its lower carbon content. The lower carbon level enables a reduction in chromium carbide formation during the welding process, hence keeping up with the material’s corrosion resistance property. This particular characteristic makes ER 316L more effective, especially when welded joints are exposed to such corrosive mediums or at elevated temperatures. On the contrary, there may be a slight decline in corrosion resistance by ER 316 Wire if carbide precipitation occurs during welding along with high temperatures. ER 316LSi, while providing good corrosion resistance, prioritizes enhanced weld puddle fluidity and weld bead appearance by adding silicon. As a result, ER 316L is often the preferred choice among these sub-arc wire variants for applications requiring optimal resistance to corrosion.

ER 316 Stainless Steel Sub Arc Wire Specification

Classification AWS A5.9-A5.9M
Sub Arc Wire Size 1.60 mm – 5.00 mm
Packing 25 kgs. or 60 lbs. layer wound coils with core or H 400 plastic spools or K 415 metal wire baskets
Type Submerged ARC Welding Wire/Flux, Submerged Arc (Saw) Wires
Material / Grade Stainless Steel / ER 316
Diameters 2.0mm-4.0mm
Wire Finish Bright & Matt Finish
Thickness 1.6 mm to 6 mm (1/16 in. to 1/4 in
Application & uses Hardware tools
Metallurgy
Machinery
Construction
Shipbuilding
Petroleum
Chemical plant
Power sector
Gas Industry

Stainless Steel ER316 Sub ARC Wire Stock Availability

Stanless Steel ER316 Submerged Arc Welding Wire

Submerged Arc Welding Wire

Wire Used In Submerged Arc Welding (SAW) Is One Type Of Welding Consumable. It is used to form the weld joint between two workpieces and is composed of a continuous wire that is either solid or flux-cored. An automatic or semi-automatic welding process known as SAW creates an arc between the wire and the workpiece while covering the welding zone with granular flux to shield it from atmospheric contamination.

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Stanless Steel ER316 Submerged Arc Welding Fluxes

Submerged Arc Welding Fluxes

Submerged Arc Welding (SAW) fluxes are an essential component of the SAW process. They are granular substances that are used in conjunction with a continuous welding wire to facilitate the welding process. When the welding wire is fed into the joint, the flux covers the welding zone, protecting the molten metal from atmospheric contamination. The flux also plays a vital role in determining the properties of the weld and the overall welding performance.

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Equivalent Grades Of Stainless Steel ER316 Sub Arc Wires

Class UNS Oxford Alloys
E316 W31610 Alloy 316

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Chemical Composition of SS ER 316 Sub Arc Wires

C Cr Ni Mo Mn Si P S Cu
0.04 17.0-20.0 11.0-14.0 2.0-3.0 0.5-2.5 1.00 0.04 0.03 0.75

Mechanical Properties of SS ER316 Sub Arc Wires

Material Ultimate Tensile Strength Offset Yield Strength 0.2 % Elongation (%)
psi MPa psi MPa
ER 316 / ER 316L 84,100 580 58,000 400 38

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ER316 Stainless Steel Sub Arc Wires Applications and Uses

  • General Fabrication
  • Automotive Welding
  • Robotic Welding
  • Tack Welding
  • Railroads
  • Construction And Infrastructure
General Fabrication

Stainless Steel Sub Arc Wires in General Fabrication

Automotive Welding

Stainless Steel Sub Arc Wires in Automotive Welding

Robotic Welding

Stainless Steel Sub Arc Wire in Robotic Welding

Tack Welding

Stainless Steel Sub Arc Wire in Tack Welding

Railroads

Stainless Steel Sub Arc Wire in Railroads

Construction And Infrastructure

SS Sub Arc Wire in Construction And Infrastructure

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High Quality SS ER 316 Sub Arc Wire!