submerged arc welding. saw flux / filler metal compositions f7a2-em12k f indicates flux –70-95 ksi...

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Submerged Arc Welding Submerged Arc Welding

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Page 1: Submerged Arc Welding. SAW Flux / Filler Metal Compositions F7A2-EM12K F indicates flux –70-95 ksi UTS, 58 ksi minimum yield strength, 22% elongation

Submerged Arc WeldingSubmerged Arc Welding

Page 2: Submerged Arc Welding. SAW Flux / Filler Metal Compositions F7A2-EM12K F indicates flux –70-95 ksi UTS, 58 ksi minimum yield strength, 22% elongation

SAW Flux / Filler Metal Compositions

F7A2-EM12K• F indicates flux

– 70-95 ksi UTS, 58 ksi minimum yield strength, 22% elongation

– A - as welded; P - postweld heat treated– 2 - minimum impact properties of 20 ft-lbs @ 20°F

• E indicates electrode (EC - composite electrode)– M - medium manganese per AWS Specifications– 12 - 0.12% nominal carbon content in electrode– K - produced from a heat of aluminum killed steel

Page 3: Submerged Arc Welding. SAW Flux / Filler Metal Compositions F7A2-EM12K F indicates flux –70-95 ksi UTS, 58 ksi minimum yield strength, 22% elongation

Advantages• High deposition rates• No arc flash or glare• Minimal smoke and fumes• Flux and wire added

separately - extra dimension of control

• Easily automated• Joints can be prepared with

narrow grooves• Can be used to weld carbon

steels, low alloy steels, stainless steels, chromium-molybdenum steels, nickel base alloys

Submerged Arc Welding

Page 4: Submerged Arc Welding. SAW Flux / Filler Metal Compositions F7A2-EM12K F indicates flux –70-95 ksi UTS, 58 ksi minimum yield strength, 22% elongation

Limitations• Flux obstructs view of

joint during welding• Flux is subject to

contaminationporosity• Normally not suitable for

thin material• Restricted to the flat

position for grooves - flat and horizontal for fillets

• Slag removal required• Flux handling equipment

Submerged Arc Welding