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316Ti

The chemical composition of Stainless Steel 316TI Lateral Tee Pipe Fittings typically includes a high percentage of chromium (16-18%), nickel (10-14%), molybdenum (2-3%), and a small amount of carbon (0.08% maximum). Other elements that may be present in small quantities include manganese, silicon, phosphorus, sulfur, and nitrogen. The combination of these elements provides the steel with excellent resistance to corrosion, high strength and hardness, and good resistance to high-temperature oxidation. Additionally, the high chromium content allows the steel to form a protective oxide layer on its surface, further enhancing its resistance to corrosion in many environments.

SS 316TI Lateral Tee Pipe Fittings are highly versatile and widely used in various industries due to their exceptional properties. The high percentage of chromium, nickel, and molybdenum in their chemical composition gives them excellent resistance to corrosion in harsh environments, making them ideal for use in industries such as oil and gas processing, chemical processing, food and beverage processing, and plumbing and piping systems. They are also commonly used in high-temperature applications due to their excellent resistance to high-temperature oxidation.

FAQ's for Stainless Steel 316Ti Lateral Tee Pipe Fittings

Stainless Steel 316TI Lateral Tee Pipe Fittings are widely used in industries such as oil and gas processing, chemical processing, food and beverage processing, and plumbing and piping systems due to their exceptional resistance to corrosion and good performance in high-temperature environments.

The high percentage of chromium, nickel, and molybdenum in the chemical composition of Stainless Steel 316TI Lateral Tee Pipe Fittings provides them with excellent resistance to corrosion and good resistance to high-temperature oxidation. The presence of these elements also gives the steel good strength and hardness.

Stainless Steel 316TI Lateral Tee Pipe Fittings have good resistance to high-temperature oxidation, making them suitable for use in high-temperature applications.

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