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Filler Metals 7018I156 TEC 701853250

7018I156, Filler Metals Electrode, 5/32" Dia

  • Part#: TEC 701853250
  • Manufacturer: Techniweld USA
  • MPN: 7018I156
  • Brand Name: Filler Metals
  • Availability: loading
  • Package Qty: 1

Filler Metals Electrode, 50 lb Net Content, Can Container, 5/32 in Diameter, 70000 lb Tensile Strength, Composition: 0.15% Carbon, 0.035% Phosphorus, 0.2% Chromium, 1.6% Manganese, 0.035% Sulfur, 0.3% Molybdenum, 0.75% Silicon, 0.3% Nickel, 130/200 A

Filler Metals Electrode, 50 lb Net Content, Can Container, 5/32 in Diameter, 70000 lb Tensile Strength, Composition: 0.15% Carbon, 0.035% Phosphorus, 0.2% Chromium, 1.6% Manganese, 0.035% Sulfur, 0.3% Molybdenum, 0.75% Silicon, 0.3% Nickel, 130/200 A

Amperage Rating      :      130/200 amp
Composition      :      0.15% Carbon, 0.035% Phosphorus, 0.2% Chromium, 1.6% Manganese, 0.035% Sulfur, 0.3% Molybdenum, 0.75% Silicon, 0.3% Nickel
Container Type      :      Can
Diameter      :      5/32"
Net Content      :      50 lb
Tensile Strength      :      70,000 lb
  • A low-hydrogen iron powder type electrode that produces high quality x-ray welds.
  • It can be used in all positions on AC or DC reverse polarity welding current.
  • Recommended for welding medium grade carbon steels where no preheat is used, and on cold rolled steels normally exhibiting excessive porosity when welded with conventional electrodes.
  • Typical applications includes low-alloy structurals, low, medium and high carbon steels, offshore rigs and power plants, steel structures and tack welds for tubular wire applications.
  • Low Hydrogen Content
  • Ideal electrode for tack welding
  • Ideal for repairing many cracking issues
  • H4 electrodes have low hydrogen content which make them resistant to cracks and allows them to form stronger welds for a longer period of time.
  • pdf SDS https://assets.unilogcorp.com/267/ITEM/DOC/Filler_Metals_7018I125_SDS.pdf
  • pdf Specification Sheet https://assets.unilogcorp.com/267/ITEM/DOC/Filler_Metals_7018I125_Specification_Sheet.pdf