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825

825 Incoloy Pipe Fittings are commonly used in various industrial applications due to their superior strength and extensive temperature range. They are comprised mainly of nickel and iron but also contain traces of chromium, manganese, and molybdenum, which all lend to their strong corrosion resistance properties. These alloyed metals also make the pipe fittings impervious to heat, enabling them to resist stress cracking corrosion and adapt to hot forming. This chemical composition makes Incoloy 825 Pipe Fittings an ideal choice for many structures that require durable materials capable of withstanding extreme environmental conditions.

Incoloy 825 Pipe Fittings are known for their superior corrosion resistance and weldability. They are a well-known fitting used in the oil and gas industry due to their ability to withstand very high pressures and temperatures. Incoloy 825 Pipe Fittings also have superior tensile strength, making them suitable for even the harshest industrial environments. They are often used in areas exposed to seawater or harsh chemicals because of their excellent resistance to pitting, corrosion fatigue, and stress corrosion cracking. Additionally, Incoloy 825 Pipe Fittings offer higher levels of flame resistance than other alloys, making them suitable for hazardous installations requiring reliable parts. All these features make Incoloy 825 Pipe Fittings the fittings of choice when reliability and performance matter the most.

FAQ's for Incoloy 825 Pipe Fittings

Incoloy 825 Pipe Fittings Start From Rs. 250/Kilogram To Rs. 300/Kilogram

Incoloy 825 (UNS N08825) is a nickel-iron-chromium alloy with additions of molybdenum, copper, and titanium. It has excellent corrosion resistance in a wide range of media, both oxidizing and reducing. This alloy is known for its exceptional strength at elevated temperatures up to 980°C (1800°F).

Yes, Incoloy 825 pipe fittings are highly corrosion resistant due to their nickel-iron-chromium alloy composition. This type of alloy is known for its high resistance to both oxidation and reducing agents as well as pitting and crevice corrosion in a wide range of media, including sulfide environments.

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