Welding & Soldering
MIG, TIG, stick consumables, torches, filler and solder.
Also searched as: welding wiretigmigwelding rodsolderflux
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E309/309L-16 Stainless Steel Stick Welding Rod
AWS Classification: E309/309L-16Diameter: 3/32"Length: 14"Process: Stick
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E6013 Mild Steel Stick Welding Rod
AWS Classification: E6013Diameter: 1/8"Length: 14"Process: Stick
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E6013 Welding Electrode
Coating Type: rutile sand or titanium
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E6013 Welding Electrode
Coating Type: rutile sand or titanium
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E7018 Mild Steel Electrode Welding Rod
Diameter: 3/32"Length: 12"
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E7018 Mild Steel Electrode Welding Rod
AWS Classification: E7018Diameter: 1/8"Length: 12"Process: Stick
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E70S-6 Mild Steel MIG Welding Wire
Diameter: 0.035 in.Weight: 10 lbs.
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E71T-GS Flux-Core Welding Wire
Diameter: 0.035 in.
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EASY-MIG® 180 MIG/FLUX-CORED MIG Welder
Voltage: 208/230 Volt AC
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ERNiFe-Cl Nickel 55 MIG Welding Wire
Diameter: 0.035 inchWeight: 2 lb
from $120.00eBay $120.00 -
Electric Arc Welding Electrodes Welding Rod
Diameter: 1.6/2.0/2.5/3.2/4.0mm
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Electric Soldering Iron
Power: 60WVoltage: 220V
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Electric Soldering Iron Gun
Power: 80WVoltage: 110V
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Electric Welding Soldering Iron Kit
Power: 80W
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Fast Thermal Electric Soldering Iron
Power: 180W
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Flux Core Welding Wire, E71T-GS
Diameter: 0.030"
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Flux Core Welding Wire, E71T-GS
Diameter: 0.030 in
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Flux Core Welding Wire, Gasless Carbon Steel
Diameter: 1.0 mm
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Gas Protected Welder MIG/TIG/MMA
Process: MIG/TIG/MMARated Maximum Input Current: 40ATemporary Load Rate @40°C (MIG): 60%
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HF Start TIG Welder, DC TIG and Stick Welder
Amperage: 200AVoltage: 110V/220V
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High Activity Solder Wire
Diameter: 0.8 mm
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High Quality Orbital Pipeline TIG Welding All Position Machine
Process: Orbital TIG
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Innershield NR211-MP Flux-Core Welding Wire
Diameter: 0.035 in.
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Innershield NR211-MP Flux-Core Welding Wire
Diameter: 0.030 in.
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Inverter Mig/Stick Welder
Frequency: 60HZMIG Welding Capability: 200 amp DCVoltage: 230VAC
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J422 Welding Rod
Coating Type: high titania
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Lead Free Solder Wire
Composition: 97% Tin, 3% CopperDiameter: 0.125 inWeight: 1 lb
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Lead Free Solder Wire Sn96.5 Cu0.7 Rosin Core
Alloy: Sn96.5 Cu0.7Diameter: 1.0 mmWire Length: 246 ft
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Lead Free Solder Wire, Dia 0.125 In, 1lb
Composition: 97% Tin, 3% CopperDiameter: 0.125 inWeight: 1 lb
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Lead Free Solder Wire, Rosin Core
Diameter: 0.5mm
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Lead Free Solid Core Silver Solder, 96/4
Alloy: 96/4Diameter: 0.032 "Weight: 1 Pound
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About welding & soldering
Welding and soldering consumables encompass a range of materials essential for joining metals through heat. MIG (Gas Metal Arc Welding) consumables include solid wires, flux-cored wires, and shielding gases such as argon, CO2, or argon/CO2 blends. Wire diameters typically range from 0.023" to 0.062" (0.6mm to 1.6mm), with common alloys like ER70S-6 for mild steel, ER308L for stainless steel, and ER5356 for aluminum. TIG (Gas Tungsten Arc Welding) requires non-consumable tungsten electrodes, typically pure, thoriated, ceriated, or lanthanated, with diameters from 0.020" to 0.250" (0.5mm to 6.4mm). Filler rods, available in similar alloys to MIG wires, are fed manually. Stick welding (Shielded Metal Arc Welding) utilizes flux-coated electrodes, classified by AWS standards (e.g., E6010, E7018), indicating tensile strength, position capabilities, and coating type. Solder, used for lower-temperature joining, commonly consists of tin-lead (e.g., Sn60Pb40) or lead-free alloys (e.g., Sn96.5Ag3.0Cu0.5). Flux, either liquid or paste, is critical for cleaning surfaces and preventing oxidation during both soldering and brazing processes. Torches, for both MIG and TIG, are selected based on amperage rating, cooling method (air or water), and ergonomic considerations, with various nozzle and collet body sizes available to accommodate different electrode and wire diameters.
How to choose
Selecting welding and soldering consumables begins with the joining process: MIG, TIG, stick, or soldering. This dictates the primary consumable type. Next, identify the base material to be joined (e.g., mild steel, stainless steel, aluminum, copper) to determine the appropriate filler metal alloy or solder composition. Consider the required mechanical properties of the joint, such as tensile strength, which influences electrode classification (e.g., E7018 vs. E6010) or filler wire alloy. For welding, evaluate the joint configuration and position, as some consumables are position-specific. Finally, match the consumable dimensions (wire diameter, electrode size, solder gauge) to the equipment's capabilities and the desired deposition rate or joint size, ensuring proper fit and performance.