A comprehensive introduction to GH130 superalloy

Mondo Social Updated on 2024-02-02

A comprehensive introduction to GH130 superalloy

Grade:gh130

Chemical Composition:

c(%)0.08

cr(%)12.0~16.0

mo(%)ni(%)35.0~40.0

w(%)5.00~6.50

al(%)1.40~2.20

nb(%)ti(%)2.40~3.20

fe ( ) margin.

si(%)0.60

mn(%)0.50

p(%)0.015

s(%)0.015

Other( )b 002, ce≤0.02

GH130 superalloy in detail:

1.Features and Performance:GH130 is a superalloy with excellent high-temperature strength, oxidation resistance, and corrosion resistance. Here are its main features and performance:

High Temperature Intensity:GH130 performs well in high-temperature environments, has excellent strength and creep resistance, and is suitable for high-temperature operating conditions.

Antioxidant Properties:The alloy has excellent resistance to oxidizing media and is suitable for applications that require long-term operation in high-temperature oxidation environments.

Corrosion Resistance:GH130 has good corrosion resistance and is suitable for working in corrosive gases or liquids.

2.Applications:GH130 is mainly used in aerospace, gas turbine engines and other fields, and common applications include the manufacture of high-temperature parts, such as turbine discs, high-temperature blades, sealing rings, etc.

3.Chemical Composition Analysis:GH130's chemical composition is designed to make it suitable for high-temperature and high-intensity working environments. Among them, the high nickel and molybdenum content helps to improve the high-temperature strength of the alloy, while elements such as chromium and aluminum enhance its oxidation resistance.

4.Other Special Ingredients:

b (boron):≤0.02 - Improvement of antioxidant performance and high temperature strength.

CE (Cerium):≤0.02 - May be used to adjust the special properties of the alloy, such as corrosion resistance.

Conclusion:GH130 superalloy has become one of the most important materials in aerospace and turbine fields due to its excellent performance under extreme conditions, especially in high-temperature, high-strength and corrosive environments. Its wide range of application prospects is expected to be further expanded in the future with the continuous development of high-tech manufacturing.

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