UNS N06600 Stud Bolt
QS Fastener: UNS N06600 Stud Bolt
Name: UNS N06600 Stud Bolt
Material: W.Nr.2.4816
Size: M45
Length: 30 to 1000 mm
Hardness: 195 HB
Product Grade: A
Feature: High Temperature Corrosion Resistance
Application: For Petrochemical Industry and High temperatures above 700 degrees Celsius
Material: W.Nr.2.4816
Size: M45
Length: 30 to 1000 mm
Hardness: 195 HB
Product Grade: A
Feature: High Temperature Corrosion Resistance
Application: For Petrochemical Industry and High temperatures above 700 degrees Celsius
Quantity
UNS N06600 Stud Bolt, made from W.Nr.2.4816 material, features a size of M45 with customizable lengths ranging from 30 to 1000 mm, a hardness of 195 HB, and a product grade of Class A. Its exceptional high-temperature corrosion resistance makes it perform excellently in petrochemical industries and extreme environments exceeding 700°C, ensuring the safety and stability of equipment under harsh conditions. The UNS N06600 Stud Bolt is an ideal choice for high-temperature and high-pressure industrial applications, providing a robust and durable connection solution for your engineering projects.
Inconel 600 is a nickel-based alloy renowned for its long service life and high reliability in severe environments. Its superior performance stems from its high nickel (≥72%) and chromium (14-17%) content, along with its unique properties of oxidation resistance, corrosion resistance, and high-temperature strength.
1. Oxidation Resistance
The UNS N06600 Stud Bolt forms a stable chromium oxide protective layer at high temperatures, effectively preventing further oxidation. At 800°C, the oxidation rate is ≤0.1 mg/cm²/1000 hours, with a service life of over 10 years, making it widely used in gas turbines and heat treatment furnaces.
The UNS N06600 Stud Bolt forms a stable chromium oxide protective layer at high temperatures, effectively preventing further oxidation. At 800°C, the oxidation rate is ≤0.1 mg/cm²/1000 hours, with a service life of over 10 years, making it widely used in gas turbines and heat treatment furnaces.
2. Corrosion Resistance
In acidic, alkaline, and chloride environments, the UNS N06600 Stud Bolt exhibits excellent corrosion resistance. For example, in 10% sulfuric acid, the corrosion rate is ≤0.1 mm/year; in 3% sodium chloride, the corrosion rate is ≤0.01 mm/year. Its resistance to stress corrosion cracking makes it an ideal material for chemical equipment and nuclear reactors.
In acidic, alkaline, and chloride environments, the UNS N06600 Stud Bolt exhibits excellent corrosion resistance. For example, in 10% sulfuric acid, the corrosion rate is ≤0.1 mm/year; in 3% sodium chloride, the corrosion rate is ≤0.01 mm/year. Its resistance to stress corrosion cracking makes it an ideal material for chemical equipment and nuclear reactors.
3. High-Temperature Strength and Creep Resistance
The UNS N06600 Stud Bolt maintains high strength at elevated temperatures, with a tensile strength of ≥450 MPa at 600°C and ≥350 MPa at 800°C. Its creep resistance is outstanding, with a creep rupture time of ≥10,000 hours under 600°C and 100 MPa stress, making it suitable for gas turbines and high-temperature reactors.
The UNS N06600 Stud Bolt maintains high strength at elevated temperatures, with a tensile strength of ≥450 MPa at 600°C and ≥350 MPa at 800°C. Its creep resistance is outstanding, with a creep rupture time of ≥10,000 hours under 600°C and 100 MPa stress, making it suitable for gas turbines and high-temperature reactors.
4. Fatigue Performance and Crack Propagation Resistance
Under cyclic loading, the UNS N06600 Stud Bolt demonstrates excellent fatigue performance and crack propagation resistance. The fatigue limit is ≥250 MPa at room temperature and ≥200 MPa at 600°C, making it widely used in aircraft engines and high-temperature pipelines.
Under cyclic loading, the UNS N06600 Stud Bolt demonstrates excellent fatigue performance and crack propagation resistance. The fatigue limit is ≥250 MPa at room temperature and ≥200 MPa at 600°C, making it widely used in aircraft engines and high-temperature pipelines.
5. Low-Temperature Performance
In low-temperature environments, the UNS N06600 Stud Bolt retains high toughness and resistance to brittle fracture. At -196°C, the impact toughness is ≥100 J/cm², and the tensile strength is ≥700 MPa, making it suitable for liquefied natural gas storage tanks and cryogenic pipelines.
In low-temperature environments, the UNS N06600 Stud Bolt retains high toughness and resistance to brittle fracture. At -196°C, the impact toughness is ≥100 J/cm², and the tensile strength is ≥700 MPa, making it suitable for liquefied natural gas storage tanks and cryogenic pipelines.
6. Application Examples
The UNS N06600 Stud Bolt has demonstrated long service life and high reliability in nuclear reactors, gas turbines, chemical equipment, and liquefied natural gas storage tanks. For instance, components in nuclear reactors can last over 30 years, and chemical equipment can operate for over 20 years in highly corrosive environments.
The UNS N06600 Stud Bolt has demonstrated long service life and high reliability in nuclear reactors, gas turbines, chemical equipment, and liquefied natural gas storage tanks. For instance, components in nuclear reactors can last over 30 years, and chemical equipment can operate for over 20 years in highly corrosive environments.
7. Comprehensive Performance
The high nickel content of the UNS N06600 Stud Bolt provides excellent corrosion resistance and high-temperature strength, while the chromium content forms a stable chromium oxide protective layer. Solid solution and grain boundary strengthening enhance the material's strength and toughness. Its long-term stability, versatility, and cost-effectiveness make it widely applicable in severe environments.
The high nickel content of the UNS N06600 Stud Bolt provides excellent corrosion resistance and high-temperature strength, while the chromium content forms a stable chromium oxide protective layer. Solid solution and grain boundary strengthening enhance the material's strength and toughness. Its long-term stability, versatility, and cost-effectiveness make it widely applicable in severe environments.
Send Message