Monel 400 Bolt
QS Fastener: Monel 400 Bolt
Name: Monel 400 Bolt
Material: W.Nr.2.4360
Feature: Excellent Corrosion Resistance
Size: M8 to M64
Length: 30 to 800 mm
Tensile Strength(Rm): 480 N/mm²
Standard: ANSI, DIN, BSW, NF
Application: For Seawater environment, sulfuric acid drinking hydrochloric acid environment
Material: W.Nr.2.4360
Feature: Excellent Corrosion Resistance
Size: M8 to M64
Length: 30 to 800 mm
Tensile Strength(Rm): 480 N/mm²
Standard: ANSI, DIN, BSW, NF
Application: For Seawater environment, sulfuric acid drinking hydrochloric acid environment
Quantity
The Monel 400 Bolt is made from W.Nr.2.4360 material, offering exceptional corrosion resistance. With sizes ranging from M8 to M64 and lengths from 30 to 800 mm, it meets diverse engineering needs. Its tensile strength of 480 N/mm² complies with standards such as ANSI, DIN, BSW, and NF, making it suitable for seawater environments and highly corrosive media like sulfuric acid and hydrochloric acid. The Monel 400 Bolt is widely used in marine engineering, chemical equipment, and acid-alkali media processing systems. Its excellent corrosion resistance and high mechanical strength ensure reliable and durable connections even in harsh conditions, making it the preferred choice for high-performance fasteners in corrosive environments.
Monel 400 is a nickel-copper alloy renowned for its high strength and good toughness, making it particularly suitable for high-stress environments. The Monel 400 Bolt is extensively used in aerospace, marine engineering, and chemical equipment.
1. Mechanical Properties
The Monel 400 Bolt exhibits outstanding mechanical properties both at room temperature and elevated temperatures.
The Monel 400 Bolt exhibits outstanding mechanical properties both at room temperature and elevated temperatures.
1.1 Tensile Strength
The tensile strength of the Monel 400 Bolt ranges between 550-690 MPa, significantly higher than that of ordinary carbon steel and stainless steel (e.g., 304 stainless steel has a tensile strength of approximately 515 MPa). At high temperatures (e.g., 200°C), its tensile strength remains between 500-650 MPa, demonstrating excellent high-temperature strength.
The tensile strength of the Monel 400 Bolt ranges between 550-690 MPa, significantly higher than that of ordinary carbon steel and stainless steel (e.g., 304 stainless steel has a tensile strength of approximately 515 MPa). At high temperatures (e.g., 200°C), its tensile strength remains between 500-650 MPa, demonstrating excellent high-temperature strength.
1.2 Yield Strength
The yield strength of the Monel 400 Bolt ranges between 240-345 MPa, indicating its resistance to plastic deformation under high stress. At high temperatures (e.g., 200°C), its yield strength remains between 220-320 MPa, showcasing good high-temperature stability.
The yield strength of the Monel 400 Bolt ranges between 240-345 MPa, indicating its resistance to plastic deformation under high stress. At high temperatures (e.g., 200°C), its yield strength remains between 220-320 MPa, showcasing good high-temperature stability.
1.3 Elongation
The elongation of the Monel 400 Bolt ranges between 35-45%, demonstrating its good toughness and ability to withstand significant plastic deformation without fracturing. At high temperatures (e.g., 200°C), its elongation remains between 30-40%, highlighting its excellent high-temperature toughness.
The elongation of the Monel 400 Bolt ranges between 35-45%, demonstrating its good toughness and ability to withstand significant plastic deformation without fracturing. At high temperatures (e.g., 200°C), its elongation remains between 30-40%, highlighting its excellent high-temperature toughness.
1.4 Hardness
The hardness of the Monel 400 Bolt ranges between 150-250 HB, indicating its high surface hardness and wear resistance.
The hardness of the Monel 400 Bolt ranges between 150-250 HB, indicating its high surface hardness and wear resistance.
2. Applications in High-Stress Environments
The high strength and good toughness of the **Monel 400 Bolt** make it particularly suitable for high-stress environments. Below are its typical application scenarios:
The high strength and good toughness of the **Monel 400 Bolt** make it particularly suitable for high-stress environments. Below are its typical application scenarios:
2.1 Aerospace
The Monel 400 Bolt is used in the manufacturing of aircraft engine components, turbine blades, and fasteners, capable of withstanding high stress and high temperatures. For example, in aircraft engines, the Monel 400 Bolt achieves a tensile strength of 690 MPa, ensuring the safe operation of the engine under extreme conditions.
The Monel 400 Bolt is used in the manufacturing of aircraft engine components, turbine blades, and fasteners, capable of withstanding high stress and high temperatures. For example, in aircraft engines, the Monel 400 Bolt achieves a tensile strength of 690 MPa, ensuring the safe operation of the engine under extreme conditions.
2.2 Marine Engineering
The Monel 400 Bolt is used in the construction of offshore platforms, ship components, and seawater pump valves, capable of withstanding seawater corrosion and high stress. For example, in offshore platforms, the Monel 400 Bolt achieves a yield strength of 345 MPa, ensuring the stability of the platform in harsh marine environments.
The Monel 400 Bolt is used in the construction of offshore platforms, ship components, and seawater pump valves, capable of withstanding seawater corrosion and high stress. For example, in offshore platforms, the Monel 400 Bolt achieves a yield strength of 345 MPa, ensuring the stability of the platform in harsh marine environments.
2.3 Chemical Equipment
The Monel 400 Bolt is used in the manufacturing of chemical reactors, pipelines, and pump valves, capable of withstanding chemical corrosion and high stress. For example, in chemical reactors, the Monel 400 Bolt achieves a tensile strength of 550 MPa, ensuring the safe operation of the reactor under high pressure and high temperatures.
The Monel 400 Bolt is used in the manufacturing of chemical reactors, pipelines, and pump valves, capable of withstanding chemical corrosion and high stress. For example, in chemical reactors, the Monel 400 Bolt achieves a tensile strength of 550 MPa, ensuring the safe operation of the reactor under high pressure and high temperatures.
3. Conclusion
The Monel 400 Bolt excels in high-stress environments due to its high strength and good toughness. Its exceptional mechanical properties, including high tensile strength, high yield strength, and high elongation, make it widely used in aerospace, marine engineering, and chemical equipment. Through practical applications and test data, the long-term stability and reliability of the Monel 400 Bolt in high-stress environments have been thoroughly validated.
The Monel 400 Bolt excels in high-stress environments due to its high strength and good toughness. Its exceptional mechanical properties, including high tensile strength, high yield strength, and high elongation, make it widely used in aerospace, marine engineering, and chemical equipment. Through practical applications and test data, the long-term stability and reliability of the Monel 400 Bolt in high-stress environments have been thoroughly validated.
When selecting fasteners for demanding high-stress environments, the Monel 400 Bolt stands out as a reliable and high-performance choice, ensuring durability and stability in the most challenging conditions.
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