Plate

AR steel for extreme, high-impact wear conditions

Ultimate chromium carbide plate for extreme wear resistance, durability, and moderate impact performance

Industry-leading abrasion resistant pipe lasting up to 6x longer

Wear resistant pipe lasting up to 2x longer

Top-of-the-line couplings, flanges, weld rings, end grooves, and reducers

Rugged, customizable diversion valves for improved safety, efficiency, and reduced downtime

pipe

Bar & Pin

Triloy alloy shafting bar for unmatched strength, machinability, and durability

Special treated pins for ultimate wear resistance and toughness

Welding Consumables

Superior joining for high-strength metals

Versatile welding solution for high-strength and corrosion-resistant metals

Economical hard-facing alloy for balanced impact and abrasion resistance

Superior metal-cored welding for exceptional impact and abrasion resistance

Premium chromium carbide welding for exceptional wear resistance

PRIME-ARC 400™ WIRES AND ELECTRODES

BUILD UP FOR SUPERIOR BALANCE OF IMPACT AND ABRASION RESISTANCE

Prime-Arc 400 is a metal-cored welding consumable, which provides a superior balance of impact and abrasion resistance. Its rich chemistry and dispersed carbide structure make it the best choice for fine particle, slurry, and mud-wear applications.

WHY CHOOSE PRIME-ARC 400™

Safely hard surface ultra high-strength, abrasion-resistant steels

Slag is easily removable and produces tough, clean deposits

Boron added for hardness, toughness and cleanliness

Modified tool-steel chemistry can be forged at red heat

Deposit does not typically exhibit check cracking, can be deposited check-crack free up to 2 layers, is martensitic, and is not readily machinable

Deposit up to 650 BHN when applied to high-strength abrasion-resistant steels

APPLICATIONS

Prime-Arc 400 is a tool, steel-based weld overlay that provides excellent wear resistance in severe metal-to-earth and metal-to-metal applications where maximum wear life is critical. It can also be used on ultra-hard steels for increased wear life and applied to carbon, low-alloy, and manganese steels.

QUESTIONS?