Inconel 601 Stud Bolts stand as stalwart threaded rods forged from the resilient Inconel 601 alloy, esteemed for its remarkable resilience against elevated temperatures and corrosive atmospheres. These fasteners serve as linchpins in applications necessitating steadfast connections, ranging from aerospace structures to petrochemical apparatus and heat treatment facilities. Typically comprised of a nickel-chromium alloy augmented with additions of aluminum, Inconel 601 stud bolts demonstrate exceptional endurance in the face of extreme heat and corrosive elements, rendering them indispensable in environments susceptible to thermal cycling and chemical aggression. Whether in aerospace engineering, petrochemical refining, or power generation, Inconel 601 stud bolts epitomize unwavering reliability and longevity, guaranteeing peak performance even amidst the most demanding operational circumstances.
Material | Specification | Standards | Size | Length |
Inconel Alloy 601
| IS BS ASTM | ASTM B166 | 3 mm | M02 to M33 |
Density | 8.1 g/cm3 |
Melting Point | 1411 °C (2571 °F) |
Tensile Strength | Psi – 80,000 , MPa – 550 |
Yield Strength (0.2%Offset) | Psi – 30,000 , MPa – 205 |
Elongation | 30 % |
Element | Content (%) |
Nickel, Ni | 58.0 – 63.0 |
Silicon, Si | 0.5 max |
Carbon, C | .0.10 max |
Sulphur, S | 0.015 max |
Copper, Cu | 1.0 max |
Iron, Fe | Balance |
Manganese, Mn | 1.0 max |
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We offer These Inconel 601 Stud Bolts as per DIN, ISO, JIS or ANSI Standard.
High Temperature: Inconel 601 is known for its excellent resistance to high temperatures, making it suitable for use in high-temperature environments such as furnaces, heat exchangers and gas turbines
Corrosion Resistance: Exhibits excellent corrosion resistance, including oxidation, nitriding and carburization, making it ideal for use in the chemical industry where non-corrosive environments are common
Mechanical strength: Inconel 601 maintains mechanical strength even at elevated temperatures, providing superior strength and toughness under extreme conditions
Oxidation Resistance: The high chromium content contributes to exceptional oxidation resistance, allowing it to withstand oxidation even in highly oxidizing environments
Creep Resistance: Inconel 601 provides excellent resistance to high-temperature creep deformation, ensuring system integrity for long service life.
Inconel 601 Stud Bolts 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.
Petrochemical applications: Inconel 601 stud bolts are widely used in the petrochemical industry for bolting applications in reactors, furnaces, heat exchangers, piping systems and other equipment exposed to high temperatures and hot weather.
Aerospace Applications: In the aerospace industry, Inconel 601 stud bolts are used in gas turbine engines, air filters, and other components at high and extreme temperatures
Power performance: Inconel 601 stud bolts are used in power plants, especially boilers, steam turbines and exhaust systems, where they withstand high temperatures and resist oxidation and corrosion
Chemical applications: Inconel 601 stud bolts are used in chemical applications, including moulds, reactors and piping systems, where they provide corrosion resistance from highly corrosive acids, alkalis and other substances as they decompose.
Heat Treatment: Inconel 601 stud bolts are suitable for use in heat-treating furnaces and appliances due to their resistance to carburization and oxidation while maintaining mechanical properties at high temperatures
High-temperature fastening: Inconel 601 stud bolts are used in a variety of high-temperature fasteners in all industries, where they provide a reliable and durable adhesive in difficult areas
Understand application requirements: Determine the exact conditions in which the stud bolts will operate. Consider factors such as temperature, pressure, corrosion resistance, vibration, and load-carrying capacity.
Compatibility: Inconel 601 is a nickel-chromium alloy known for its outstanding resistance to high-temperature oxidation and corrosion. Ensure it is compatible with the materials it will affect, including supports and any corrosive materials in the environment.
Size and Dimensions: Select stud bolts that match your application’s size and dimension requirements. Consider thread thickness, length, and thickness to ensure proper fit and performance.
Strength and load capacity: Based on your application requirements, measure the strength and load of the stud bolt. Consider factors such as tensile strength, yield strength, and maximum load to ensure the applied load can withstand failure.
Heat Resistance: Inconel 601 provides very high corrosion resistance, making it suitable for high-intensity applications. Ensure that the stud bolts can withstand the maximum operating temperatures in your application of the edge without loss of mechanical strength or subject to rotation.
Yes, Inconel 601 stud bolts can be welded using conventional welding techniques. However, it is important to use appropriate welding procedures and filler metals to maintain the material’s high-temperature properties and corrosion resistance.
Inconel 601 stud bolts can be used for underground applications due to their high-temperature resistance, corrosion resistance, and durability. However, it’s essential to ensure proper installation techniques and corrosion prevention measures to maintain integrity in underground environments susceptible to moisture and chemical exposure.
When installing Inconel 601 stud bolts, consider factors like proper torque values, thread lubrication, and surface preparation for optimal performance. Ensure compatibility with mating materials, corrosion protection in aggressive environments, and adherence to industry standards for safe and reliable installation in various applications.
Inconel 601 stud bolts may not be ideal for hygienic and sanitary applications due to potential concerns about material cleanliness and compatibility with stringent hygiene standards. Stainless steel or other materials specifically designed for such environments are typically preferred to ensure compliance and minimize contamination risks.
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