GH3030/GH30 The High-Temperature Alloy Optimal Performance In Aerospace Chemical And Power Generation Applications
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High Temperature Alloy
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GH3030/GH30 The High-Temperature Alloy Optimal Performance In Aerospace Chemical And Power Generation Applications
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Product Description
GH3030/GH30 The High-Temperature Alloy Wire Optimal Performance In Aerospace Chemical And Power Generation Applications
GH3030 is recognized for its excellent high-temperature properties, including good thermal conductivity, thermal fatigue resistance, and oxidation resistance. It is an early-developed alloy that is still widely used today due to its balance of properties and performance in various high-temperature applications. The alloy has satisfactory thermal strength at temperatures below 800°C. It maintains high plasticity, which is beneficial for forming and shaping operations. GH3030 exhibits good resistance to oxidation, even at elevated temperatures. The alloy has good resistance to thermal fatigue, making it suitable for applications with rapid temperature fluctuations. It can be easily welded using standard welding procedures.
| Chemical Composition Wt.% | % | Fe | Cr | P | Cu | Ni | Al | Ti | C | Mn | Si | S |
| Min | 19 | Bal. | 0.15 | |||||||||
| Max | 1.5 | 22 | 0.03 | 0.2 | Bal. | 0.15 | 0.35 | 0.12 | 0.7 | 0.8 | 0.02 |
| Physical Constants | Density(g/cm³) | 8.4 | |||||
| Melting Range(℃) | 1374-1420 | ||||||
| Minimum mechanical properties of alloy at room temperature | Typical mechanical properties | Tensile strength Rm N/mm² | Yield strength RP 0.2 N/mm² | Elongation A5 % | ||||
| Annealing treatment | 785 | 270 | 35 | |||||
Key Properties:
High-Temperature Strength: GH3030 retains excellent mechanical strength at high temperatures (up to approximately 800°C), making it ideal for use in turbine engines, heat exchangers, and other critical high-heat applications.
Oxidation and Corrosion Resistance: The alloy offers superior resistance to oxidation, carburization, and sulfidation in high-temperature, high-pressure environments. It forms a protective oxide layer that prevents degradation and extends the life of the components.
Good Creep Resistance: GH3030 exhibits good creep resistance, meaning it can withstand deformation under high stress at elevated temperatures, making it suitable for components like turbine blades, exhaust systems, and hot-section engine parts.
Fabricability and Weldability: GH3030 can be fabricated into wires, sheets, and other forms. It offers good weldability, enabling its use in complex component assemblies where high-temperature integrity is crucial.
Applications:
Aerospace: Widely used in turbine blades, combustion chambers, nozzle guides, and other engine components that require high performance at elevated temperatures.
Energy and Power Generation: Used in components like gas turbines, nuclear reactors, and heat exchangers, where material reliability at high temperatures is essential.
Industrial: Also used in furnace components, heating elements, and industrial machinery exposed to thermal cycles and high temperatures.
Advantages of GH3030/GH30 Alloy Wire:
Superior High-Temperature Resistance: Especially beneficial in aerospace, power generation, and industrial systems that operate in extreme heat environments.
Excellent Durability: The alloy’s resistance to oxidation and high-temperature corrosion helps ensure longer service life for parts and reduces the need for frequent replacements.
High Performance in Stressful Environments: Its ability to maintain strength and resist deformation under prolonged exposure to high temperatures and stresses is a key advantage in critical applications.
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