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317L

SS 317L split tee pipe fittings are often valued for their high strength, durability, and resistance to corrosion. However, what makes these fittings unique is the presence of chemical B16, which provides added protection against rusting. B16 works by ensuring that even the slightest chemical fluctuations in the environment around the fitting won't cause oxidation. This means stainless steel 317L split tee pipe fittings are some of the most durable on the market and can last for years with minimal maintenance.

Stainless Steel 317L Split Tee Pipe Fittings are popular due to their strength, ease of installation, and broad compatibility. This alloy is used in many industries, including marine, aerospace, process engineering, etc. It has excellent resistance to chloride ion contamination and environmental stress cracking, which makes it ideal for use in salty water or high-temperature applications like pressure vessels and boilers. Its low carbon content gives additional protection against intergranular corrosion attacks. This material can also be used as a sacrificial anode or welded onto the exposed pipe areas since its corrosion rate remains the same even when welding is done on it. Such properties make this alloy an excellent choice for pipe fittings, especially for those subjected to various aggressive environments.

FAQ's for Stainless Steel 317L Split Tee Pipe Fittings

Stainless Steel 317L is a low-carbon, molybdenum alloy that is highly corrosion resistant and can withstand harsh chemical environments. Its high nickel and chromium content also makes it immune to rusting, meaning it will not rust under most normal conditions.

Stainless Steel 317L Split Tee Pipe Fittings are available in a wide range of sizes, ranging from 1/2" to 5", depending on the application.

Stainless Steel 317L Split Tee Pipe Fittings are commonly used in industrial applications to connect pipes and fittings for efficient, leak-free flow of materials and liquids. They offer corrosion resistance, durability, and excellent chemical compatibility compared to other materials.

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