AWS Class E316LT1-1/T1-4 Flux Core Wire

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The AWS Class E316LT1-1/T1-4 Flux Core Wire is made up of chromium (18–20%), nickel (11–14%), molybdenum (2–3%), along with manganese, silicon, and very low carbon content (<0.04%). The inclusion of molybdenum significantly improves pitting and corrosion resistance, particularly in environments with chloride. In terms of mechanical properties, it boasts a tensile strength of around 550–650 MPa, a yield strength of about 350 MPa, and an elongation of 30–35%. The weld deposit is known for its excellent toughness and can withstand scaling up to 800°C, ensuring it remains durable in both corrosive and high-temperature settings.

AWS Class E316LT1-1/T1-4 Flux Core Wire Specification

Classification AWS A5.22, E316LT1-1/T1-4
Form Welding Flux Core Wire
Type Of Welding Gas Shielded
Diameters .045”, 1/16”
Shielding Gas 100% CO2, 75-80% Ar/ balance CO2, 35-50 cfh
Welding Positions All positions
AWS E316LT1-1/T1-4 Flux Core Wire Application & uses
  • Hardware tools
  • Metallurgy
  • Machinery
  • Construction
  • Shipbuilding
  • Petroleum
  • Chemical plant
  • Power sector
  • Gas Industry

AWS Class E316LT1-1/T1-4 Flux Core Wire Chemical Composition

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 1.0 0.04 0.03 0.75

AWS Class E316LT1-1/T1-4 Flux Core Wire Mechanical Properties

Tensile Strength, kpsi: 70 min
Yield Strength, kpsi: *NS
Elongation %: 30 min

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We offer These Products as per DIN, ISO, JIS or ANSI Standard.

Top AWS Class E316LT1-1/T1-4 Flux Core Wire Manufacturing Company in Riyadh

The AWS Class E316LT1-1/T1-4 Flux Core Wire is composed primarily of stainless steel with added molybdenum, enhancing corrosion resistance and durability. Its properties include excellent weldability, high tensile strength, and resistance to pitting and cracking, making it suitable for welding in harsh environments. Advantages of this wire include superior performance in both flat and horizontal positions, ease of use in out-of-position welding, and minimal spatter, leading to cleaner welds. It is ideal for applications in petrochemical, marine, and food processing industries.

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Types of AWS Class E316LT1-1/T1-4 Flux Core Wire

E316LT1-1/T1-4 Dual Shield Flux Cored Wire

Premium E316LT1-1/T1-4 dual shield flux cored wire designed for enhanced weld quality and productivity, providing excellent corrosion resistance and mechanical properties in various industrial applications.

E316LT1-1/T1-4 Self-Shielded Flux Cored Wire

High-performance E316LT1-1/T1-4 self-shielded flux cored wire ideal for outdoor welding, offering superb corrosion resistance and mechanical strength without the need for external shielding gas.

E316LT1-1/T1-4 Flux Cored Arc Welding Wire

Versatile E316LT1-1/T1-4 flux cored arc welding wire delivering superior weld quality, excellent mechanical properties, and corrosion resistance for a wide range of applications in different industries.

Largest AWS Class E316LT1-1/T1-4 Flux Core Wire Supplier in Riyadh, Saudi Arabia

Khaleed Stainless is a leading supplier and stockist of high-quality AWS Class E316LT1-1/T1-4 Flux Core Wire1/T1-4 Flux Core Wire in Riyadh, Saudi Arabia. Our products are widely used in various applications, and we are committed to delivering excellent service, resulting in high customer satisfaction. Our unique finishing techniques further distinguish us in the stainless steel industry. We are dedicated to consistently providing superior products and effectively meeting our customer’s needs.

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AWS Class E316LT1-1/T1-4 Flux Core Wire Uses

The AWS Class E316LT1-1/T1-4 Flux Core Wire is widely used in industries requiring robust and corrosion-resistant welds. Its primary applications include welding stainless steel structures and components in petrochemical plants, marine environments, and food processing equipment. The wire is ideal for fabricating and repairing storage tanks, pressure vessels, and pipelines, particularly those exposed to corrosive substances. Additionally, it excels in shipbuilding, construction, and general fabrication where durability and resistance to harsh conditions are essential, providing reliable performance in both flat and horizontal welding positions.

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