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Stainless Steel 15-7 PH Coil

Stainless Steel 15-7 PH Coil

Stainless Steel 15-7 PH Coil is a precipitation hardening, chromium self-manganese stainless steel that increases strength, hardness, and corrosion resistance. It contains 17% chromium and 7% manganese, together with smaller amounts of steel elements, including nitrogen, phosphorus, silicon and sulfur. This combination gives it excellent resistance to corrosion in both mild industrial applications and more extreme atmospheres such as marine or other acidic environments.

 

Stainless Steel 15-7 PH Coil is a precipitation-hardened, chromium-nickel steel alloy. It offers excellent strength, creep, and corrosion resistance at elevated temperatures and has great formability. This material is often used for springs, washers, fasteners, and shims in the aerospace industry due to its fatigue strength under alternating loads. Additionally, it can be found in aircraft components like liquid containers and landing gear, as well as medical instruments, where its superior tensile strength lends itself to high-stress applications.

Stainless Steel 15-7 PH Coil is a precipitation hardening, chromium self-manganese stainless steel that increases strength, hardness, and corrosion resistance. It contains 17% chromium and 7% manganese, together with smaller amounts of steel elements, including nitrogen, phosphorus, silicon and sulfur. This combination gives it excellent resistance to corrosion in both mild industrial applications and more extreme atmospheres such as marine or other acidic environments.

 

Stainless Steel 15-7 PH Coil is a precipitation-hardened, chromium-nickel steel alloy. It offers excellent strength, creep, and corrosion resistance at elevated temperatures and has great formability. This material is often used for springs, washers, fasteners, and shims in the aerospace industry due to its fatigue strength under alternating loads. Additionally, it can be found in aircraft components like liquid containers and landing gear, as well as medical instruments, where its superior tensile strength lends itself to high-stress applications.

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