Density | Melting Point | Yield Strength (0.2%Offset) | Tensile Strength | Elongation |
8.69 g/cm3 | 1399 °C (2550 °F) | Psi – 45000 , MPa – 310 | Psi – 1,00,000 , MPa – 690 | 45 % |
Hastelloy C22 Forged Fittings represent a pinnacle in corrosion-resistant alloy engineering, specifically tailored for demanding environments where chemical processing, aerospace, and marine applications thrive. Renowned for their exceptional performance in high-temperature and corrosive settings, these fittings exemplify robustness, reliability, and longevity. custom-built from Hastelloy C22, known for its superior resistance to a wide array of corrosive substances, these fittings ensure system integrity in critical applications. With diverse grades and configurations available, Hastelloy C22 Forged Fittings offer unparalleled flexibility and adaptability, catering to unique project requirements with precision and efficacy.
Standard | ASTM B564 / ASME SB564 |
Dimensions | ASME 16.11, MSS SP-79, 83, 95, 97, BS 3799 |
Size | 1/8” NB to 4” NB (Socketweld & Screwed-Threaded) |
Type | Socketweld Fittings, Screwed-Threaded Fittings |
Class | 2000 LBS, 3000 LBS, 6000 LBS, 9000 LBS |
Density | Melting Point | Yield Strength (0.2%Offset) | Tensile Strength | Elongation |
8.69 g/cm3 | 1399 °C (2550 °F) | Psi – 45000 , MPa – 310 | Psi – 1,00,000 , MPa – 690 | 45 % |
Hastelloy C22 | Ni | C | Mo | Mn | Si | Fe | P | S | Co | Cr | W | V |
Balance | 0.010 max | 12.5 – 14.5 | 0.50 max | 0.08 max | 2 – 6 | 0.02 max | 0.02 max | 2.5 max | 20 – 22.5 | 2.5 – 3.5 | 0.35 max |
At PipingMart, we take pride in being the largest supplier and manufacturer in the UAE, offering cutting-edge solutions for all your piping needs. With state-of-the-art production plants strategically located in the UAE, we boast a vast inventory of over 25,000 tons of premium-quality materials readily available in stock.
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We offer These Hastelloy C22 Forged Fittings as per DIN, ISO, JIS or ANSI Standard.
Water resistance: Hastelloy C22 is known for exceptional corrosion resistance in various aggressive environments, including oxidation, reduction and mixed acid media. This makes it suitable for applications where corrosion is a major concern, such as chemical processing, pollution prevention, and pulp and paper manufacturing.
Versatility: These fillers can be used in a wide range of industries and applications due to their resistance to various chemicals, such as chloride, sulfuric acid, hydrochloric acid, and phosphoric acid. Thus, this function is valuable in projects with a variety of degradation factors.
High Temperature: Hastelloy C22 forged fittings retain high-temperature mechanical properties, providing resistance to high temperatures with minimal strength or corrosion resistance. This material suits it for high-temperature applications, such as petrochemical refining and aerospace.
Mechanical strength: The fabrication process increases the mechanical strength and integrity of the fitting, ensuring reliable performance under high-pressure conditions. This makes Hastelloy C22 forged fittings ideal for free applications where security and reliability are paramount.
Manufacturing and Machining: Hastelloy C22 is relatively easy to manufacture and machine compared to some other corrosion-resistant alloys, which makes it easier to manufacture and allows for more complex shapes and structures
Longevity and Durability: Hastelloy C22 forged fittings have long lives due to corrosion resistance, high temperature and mechanical stress. This long life reduces maintenance requirements and downtime as a result.
Hastelloy C22 Forged Fittings applications are as diverse as the industries they serve driven primarily by the aerospace, railway, construction and automotive industries with petrochemical, nuclear, medical, Oil & Gas, Chemical, Pharmaceutical, Food & Beverage, Nuclear, Thermal Power plants, Paper and Pulp, marine and mining, etc.
Chemical processing: Hastelloy C22 mesh fittings are widely used to handle volatile chemicals, acids, and solvents. Corrosive solvents such as sulfuric acid, hydrochloric acid, phosphoric acid, acetic acid and chlorine dioxide are produced. A wide range of media -Provides good resistance to grade.
Petrochemical Industry: Hastelloy C22 mesh fittings are used in various applications in petrochemical plants, including reactors, heat exchangers, piping systems, and valves. They provide excellent resistance to the oxidizing and reducing environments encountered in petrochemical processes.
Oil and Gas Production: Hastelloy C22 mesh fittings find applications in oil and gas production facilities, especially pipelines, valves, and pumps in sour gas, hydrogen sulfide and chloride ion-containing areas where corrosion resistance and high temperatures are required And used.
Chemical Industry: The Chemical industry uses Hastelloy C22 mesh fittings in equipment and piping systems to handle harsh chemicals, sanitizing agents and high-purity water. These fittings help validate and prevent chemical processes from dirty mouths.
Power generation: In power plants, especially those using fossil fuels or biomass, Hastelloy C22 lattice fittings are used in critical components such as boiler systems, heat exchangers, and condensers. They provide excellent efficiency and are resistant to corrosion and moisture in hot environments and high pressure.
Corrosion resistance: Hastelloy C22 is known for its exceptional corrosion resistance, especially in harsh environments, which include acids, chlorides, and other corrosive agents. Ensure that the filling materials match the specific chemicals and conditions and that the penetration is consistent.
Temperature and Pressure Rating: Hastelloy C22 forged fittings provide excellent strength and high resistance to temperature and pressure. Ensure the fittings you choose are calibrated to your application’s temperature and operating pressure.
Size and thickness: Consider the fittings’ thickness to ensure they meet your piping system requirements. Hastelloy C22 lattice fittings are available in various sizes and configurations, including elbow, tee, coupling, union and cross.
Quality and Standards: Look for fittings that meet ASTM, ASME, ANSI, DIN, and other industry standards. Compliance with these standards ensures the quality and efficiency of the fittings.
Manufacturing process: Hastelloy C22 forged fittings are typically manufactured using a forging process, increasing their strength and durability. Pay close attention to the manufacturing and quality control procedures to ensure the filler meets your expectations.
Supplier Reputation: Choose a reputable supplier with a track record of providing high-quality Hastelloy C22 forged fittings. When choosing a supplier, consider reliability, experience, customer service, and supported features.
Yes, Hastelloy C22 forged fittings are recyclable. Hastelloy alloys are composed primarily of metals like nickel, chromium, and molybdenum, which retain their properties even after recycling processes such as melting and reshaping, making them suitable for reuse in various applications.
Hastelloy C22 forged fittings are compatible with various piping materials commonly used in corrosive environments, including stainless steel, carbon steel, and other alloys. Proper gasket and sealing material selection ensures compatibility, facilitating integration into diverse piping systems while maintaining corrosion resistance and structural integrity.
Considerations for installing Hastelloy C22 forged fittings include ensuring compatibility with piping materials, proper torque for tightening connections, adequate support to prevent stress and vibration, and adherence to industry standards. Thorough inspection, correct alignment, and appropriate sealing techniques are crucial to maintaining system integrity and corrosion resistance.
Hastelloy C22 forged fittings are not typically recommended for potable water applications due to their high cost and excessive corrosion resistance, which isn’t necessary for such environments. Materials like stainless steel or brass are more commonly used for potable water systems due to their cost-effectiveness and suitability for drinking water.
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