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Hastelloy C22 Fasteners
Hastelloy C22 is a nickel-chromium-molybdenum alloy with enhanced resistance to pitting, crevice corrosion, and stress corrosion cracking. Due to its exceptional corrosion resistance, Hastelloy C22 fasteners is widely used in aggressive chemical processing environments. Hastelloy C22 fasteners play a crucial role in ensuring the integrity and longevity of structures and equipment exposed to corrosive conditions. Hastelloy C22 fasteners contains a well-balanced combination of nickel, chromium, molybdenum, and tungsten. The alloy also includes controlled amounts of iron, cobalt, manganese, and silicon. This unique composition provides excellent corrosion resistance in oxidizing and reducing environments, making it suitable for various chemical, petrochemical, and pharmaceutical applications.
Delve into the corrosion-resistant excellence of Hastelloy C22 fasteners through a comprehensive chemical composition table overview.
Hastelloy C22 | |
Ni | Bal |
C | 0.010 max |
Cr | 20 – 22.5 |
Co | 2.5 max |
Fe | 2 – 6 |
Mn | 0.50 max |
Mo | 12.5 – 14.5 |
P | 0.02 max |
Si | 0.08 max |
S | 0.02 max |
W | 2.5 – 3.5 |
V | 0.35 max |
Hastelloy C22 fasteners exhibit a robust chemical composition, ensuring corrosion resistance and reliable performance in various applications.
Hastelloy C22 fasteners boasts a unique combination of properties that make it an ideal choice for fastener applications:
Uncover the strength and durability of Hastelloy C22 fasteners through a detailed mechanical properties table overview.
Density | 8.69 g/cm3 |
Melting Point | 1399 °C (2550 °F) |
Tensile Strength | Psi – 1,00,000 , MPa – 690 |
Yield Strength (0.2%Offset) | Psi – 45000 , MPa – 310 |
Elongation | 45 % |
Hastelloy C22 fasteners display exceptional mechanical properties, guaranteeing longevity and reliability for diverse industrial applications.
Hastelloy C22 fasteners come in various types, each designed for specific applications and requirements. The choice of fastener type depends on factors such as the nature of the environment, the load or stress the fastener will bear, and the project's specific needs. Here are some common types of Hastelloy C22 fasteners:
Explore the foundational characteristics of Hastelloy C22 fasteners through an insightful physical properties table overview.
Properties | Metric | Imperial |
Density | 8.69 g/cm³ | 0.314 lb/in³ |
Melting point | 1399°C | 2550°F |
Hastelloy C22 fasteners showcase outstanding physical properties, ensuring suitability for diverse applications with enduring performance and reliability.
Hastelloy C22 fasteners epitomize performance excellence, combining exceptional corrosion resistance, high-temperature stability, and strength. From chemical processing plants to aerospace applications, they play a pivotal role in ensuring safety, reliability, and efficiency across various industries.
Hastelloy C22 is a nickel-chromium-molybdenum alloy with enhanced resistance to pitting, crevice corrosion, and stress corrosion cracking. Due to its exceptional corrosion resistance, Hastelloy C22 fasteners is widely used in aggressive chemical processing environments. Hastelloy C22 fasteners play a crucial role in ensuring the integrity and longevity of structures and equipment exposed to corrosive conditions. Hastelloy C22 fasteners contains a well-balanced combination of nickel, chromium, molybdenum, and tungsten. The alloy also includes controlled amounts of iron, cobalt, manganese, and silicon. This unique composition provides excellent corrosion resistance in oxidizing and reducing environments, making it suitable for various chemical, petrochemical, and pharmaceutical applications.
Delve into the corrosion-resistant excellence of Hastelloy C22 fasteners through a comprehensive chemical composition table overview.
Hastelloy C22 | |
Ni | Bal |
C | 0.010 max |
Cr | 20 – 22.5 |
Co | 2.5 max |
Fe | 2 – 6 |
Mn | 0.50 max |
Mo | 12.5 – 14.5 |
P | 0.02 max |
Si | 0.08 max |
S | 0.02 max |
W | 2.5 – 3.5 |
V | 0.35 max |
Hastelloy C22 fasteners exhibit a robust chemical composition, ensuring corrosion resistance and reliable performance in various applications.
Hastelloy C22 fasteners boasts a unique combination of properties that make it an ideal choice for fastener applications:
Uncover the strength and durability of Hastelloy C22 fasteners through a detailed mechanical properties table overview.
Density | 8.69 g/cm3 |
Melting Point | 1399 °C (2550 °F) |
Tensile Strength | Psi – 1,00,000 , MPa – 690 |
Yield Strength (0.2%Offset) | Psi – 45000 , MPa – 310 |
Elongation | 45 % |
Hastelloy C22 fasteners display exceptional mechanical properties, guaranteeing longevity and reliability for diverse industrial applications.
Hastelloy C22 fasteners come in various types, each designed for specific applications and requirements. The choice of fastener type depends on factors such as the nature of the environment, the load or stress the fastener will bear, and the project's specific needs. Here are some common types of Hastelloy C22 fasteners:
Explore the foundational characteristics of Hastelloy C22 fasteners through an insightful physical properties table overview.
Properties | Metric | Imperial |
Density | 8.69 g/cm³ | 0.314 lb/in³ |
Melting point | 1399°C | 2550°F |
Hastelloy C22 fasteners showcase outstanding physical properties, ensuring suitability for diverse applications with enduring performance and reliability.
Hastelloy C22 fasteners epitomize performance excellence, combining exceptional corrosion resistance, high-temperature stability, and strength. From chemical processing plants to aerospace applications, they play a pivotal role in ensuring safety, reliability, and efficiency across various industries.
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Hastelloy C22 is an alloy containing nickel, chromium, molybdenum and tungsten. It has superior corrosion resistance compared to other grades of fasteners due to its composition.
Hastelloy C22 fasteners are ideal for applications that require superior corrosion resistance such as offshore oil and gas production, chemical process equipment, and power industry components.
Yes, it’s important to ensure surface preparation is completed prior to installation in order to maximize the lifespan of the fastener. Additionally, regular inspections should be done to ensure proper functioning of the fastener.
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