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Hastelloy B2 Elbow Pipe Fitting comprises Nickel, Molybdenum, and Chromium. Impurities such as Carbon, Silicon, and Iron have been known to exist in trace amounts. This material offers excellent resistance to corrosion when exposed to a variety of different media and environments. Its excellent resistance is due to its ability to form an impermeable layer that prevents the exposure of base material to those media. Despite Hastelloy B2's excellent strength, it still demonstrates good formability and weldability, further justifying its status as one of the most reliable materials for elbow pipe fittings.

B2 Hastelloy elbow pipe fittings are a great choice for any industrial or chemical piping system. They are highly durable and provide a long-lasting, corrosion-resistant solution with superior oxidation resistance in high-temperature environments. This type of pipe fitting is perfect for applications that involve the movement of liquids such as oils, solvents, and gases at extreme temperatures, pH levels, or pressures. They are extremely strong and resistant to stress cracking and corrosion in many hostile environments and have excellent fabricability, making them suitable for easy shaping before installation. With their unbeatable performance and ability to withstand even the most challenging conditions, Hastelloy B2 pipe fittings provide an ideal solution for industries looking for reliable piping solutions.

FAQ's for Hastelloy B2 Elbow Pipe Fittings

Hastelloy B2 elbow pipe fittings have a pressure rating of up to 4,000 psi at ambient temperatures and up to 2,500 psi at elevated temperatures.

Hastelloy B2 elbow pipe fittings are corrosion-resistant, ductile, and easy to install. They are highly resistant to both oxidizing and reducing acids and offer excellent performance in a wide range of temperatures.

The density of Hastelloy B2 Elbow Pipe Fittings is 8.70 g/cm3. It is an alloy made up of Nickel, Molybdenum, and Chromium and has excellent resistance to corrosion in both oxidizing and reducing environments.

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