Nickel Based Alloy Screw
QS Fastener: Nickel Based Alloy Screw
Name: Nickel Based Alloy Screw
Material: Nickel Based Alloy
Size: M8 to M30
Standard: ASME, EN, BSW, NF
Hardness: 150 to 200 HB
Length: 30 to 800 mm
Application: For Ships, Nuclear Power, Chemical Industry, Vehicle Industry, Oil & Gas Industry
Feature: High Corrosion Resistance
Material: Nickel Based Alloy
Size: M8 to M30
Standard: ASME, EN, BSW, NF
Hardness: 150 to 200 HB
Length: 30 to 800 mm
Application: For Ships, Nuclear Power, Chemical Industry, Vehicle Industry, Oil & Gas Industry
Feature: High Corrosion Resistance
Quantity
Our Nickel Based Alloy Screw is specifically designed for extreme environments, offering exceptional corrosion resistance and outstanding durability. With size ranges from M8 to M30 and lengths from 30 to 800 mm, it complies with ASME, EN, BSW, and NF standards, ensuring reliability in demanding applications. With a hardness range of 150 to 200 HB, the Nickel Based Alloy Screw is suitable for industries such as shipbuilding, nuclear power, chemical processing, vehicle manufacturing, and oil and gas, excelling in high-temperature, high-pressure, and acidic or alkaline conditions. Choosing our Nickel Based Alloy Screw not only enhances equipment lifespan and operational efficiency but also provides robust support for your critical applications.
In addition to its excellent corrosion resistance, our Nickel Based Alloy Screw demonstrates superior performance in high-temperature environments, making it an ideal choice for high-temperature applications. Nickel-based alloys maintain exceptional strength and stability even under high temperatures, making them widely used in extreme high-temperature fields such as aircraft engines, gas turbines, and nuclear power equipment.
1. High-Temperature Strength
The Nickel Based Alloy Screw retains excellent tensile strength and creep resistance in high-temperature environments ranging from 600°C to 1000°C. For example, at 800°C, the tensile strength of nickel-based alloys can still exceed 600 MPa, far surpassing that of ordinary stainless steel and carbon steel.
The Nickel Based Alloy Screw retains excellent tensile strength and creep resistance in high-temperature environments ranging from 600°C to 1000°C. For example, at 800°C, the tensile strength of nickel-based alloys can still exceed 600 MPa, far surpassing that of ordinary stainless steel and carbon steel.
2. Oxidation Resistance
The Nickel Based Alloy Screw forms a dense oxide layer at high temperatures, effectively preventing further oxidation. In an oxidizing environment at 900°C, its oxidation rate is less than 0.1 mm/year, ensuring long-term reliability.
The Nickel Based Alloy Screw forms a dense oxide layer at high temperatures, effectively preventing further oxidation. In an oxidizing environment at 900°C, its oxidation rate is less than 0.1 mm/year, ensuring long-term reliability.
3. Thermal Stability
The Nickel Based Alloy Screw exhibits excellent stability under high-temperature thermal cycling, with minimal risk of phase transformation or grain boundary corrosion. For instance, during repeated thermal cycling between 700°C and 1000°C, its microstructure remains uniform, with no significant embrittlement or crack formation.
The Nickel Based Alloy Screw exhibits excellent stability under high-temperature thermal cycling, with minimal risk of phase transformation or grain boundary corrosion. For instance, during repeated thermal cycling between 700°C and 1000°C, its microstructure remains uniform, with no significant embrittlement or crack formation.
4. Creep Performance
Under high-temperature and high-pressure conditions, the Nickel Based Alloy Screw significantly outperforms other materials in terms of creep strength. At 750°C and 100 MPa stress, its creep rupture time can exceed 10,000 hours, meeting the requirements for long-term high-temperature operation.
Under high-temperature and high-pressure conditions, the Nickel Based Alloy Screw significantly outperforms other materials in terms of creep strength. At 750°C and 100 MPa stress, its creep rupture time can exceed 10,000 hours, meeting the requirements for long-term high-temperature operation.
Typical Application Scenarios
Aircraft Engines
In high-temperature gas environments ranging from 800°C to 1000°C, the Nickel Based Alloy Screw is used to secure turbine blades and combustion chamber components, ensuring reliable engine performance.
Aircraft Engines
In high-temperature gas environments ranging from 800°C to 1000°C, the Nickel Based Alloy Screw is used to secure turbine blades and combustion chamber components, ensuring reliable engine performance.
Gas Turbines
At operating temperatures between 600°C and 900°C, the Nickel Based Alloy Screw is used to connect high-temperature components, providing long-lasting mechanical performance.
At operating temperatures between 600°C and 900°C, the Nickel Based Alloy Screw is used to connect high-temperature components, providing long-lasting mechanical performance.
Nuclear Power Equipment
In high-temperature and high-pressure nuclear reactor environments, the Nickel Based Alloy Screw is used for critical equipment connections, ensuring operational safety.
In high-temperature and high-pressure nuclear reactor environments, the Nickel Based Alloy Screw is used for critical equipment connections, ensuring operational safety.
With its exceptional high-temperature performance, our Nickel Based Alloy Screw has become the preferred fastener for high-temperature environments. Whether in aviation, energy, or industrial sectors, it delivers reliable strength and stability to meet the most demanding application requirements. Choose our Nickel Based Alloy Screw for a durable high-temperature solution that supports efficient production and sustainable development.
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