GH4093 is a nickel-based superalloy that exhibits excellent high-temperature strength, oxidation resistance, and corrosion resistance. Due to its outstanding performance, GH4093 is widely used in fields such as aviation, aerospace, energy, and chemical engineering.
Nickel alloy GH4090 is a high-temperature alloy with nickel as the main component, particularly suitable for the aerospace, aviation, and industries such as petroleum, chemical, and power generation. Thanks to its excellent high-temperature oxidation resistance and corrosion resistance, it can maintain good mechanical properties even in harsh environments, making it widely recognized and applied.
GH4080A (known as GH80A in the Chinese national standard GB/T 14992-2005) is a nickel-based precipitation hardening high-temperature alloy, renowned for its excellent strength, oxidation resistance, and creep resistance at high temperatures. This alloy exhibits good overall performance in the temperature range of 650 to 850°C, making it an ideal material choice for aerospace, energy generation, and chemical equipment applications.
GH3652 high-temperature alloy is a Ni-Cr based precipitation hardening type deformation high-temperature alloy, with its chemical composition mainly consisting of elements such as nickel, chromium, aluminum, and iron. It plays an important role in high-temperature corrosion environments in chemical equipment, furnaces, valves, etc. It can be used to manufacture components for petrochemical equipment, such as reactors, heat exchangers, pipelines, and valves, and can also be used to manufacture heat-resistant and corrosion-resistant components for chemical equipment, such as ammonia synthesis units, petroleum cracking units, and sulfuric acid production units.
GH3230 alloy is a nickel-chromium-based high-temperature alloy that is widely used in aerospace and high-temperature industrial fields due to its excellent heat resistance and stability. This alloy is ingeniously designed, and its composition and characteristics enable it to perform exceptionally well in extreme environments. Below is a detailed analysis of the GH3230 alloy, including its application areas and the relationship between its composition and applications.
GH3181 is a Ni-Cr based solid solution strengthened deformation high-temperature alloy, with a usage temperature range of 900°C to 1200°C. This alloy has various excellent properties and is widely used in many fields.
GH3028 is a nickel-based superalloy that exhibits excellent heat resistance, corrosion resistance, and mechanical properties. It is an alloy with deformability, capable of maintaining good strength and toughness at high temperatures.
GH3007 is a nickel-based superalloy that exhibits excellent high-temperature performance and oxidation resistance. This alloy has high yield strength and creep strength at elevated temperatures, effectively resisting stress and creep deformation under high-temperature conditions. Additionally, GH3007 possesses good oxidation resistance, maintaining stable mechanical properties in high-temperature and oxidative environments.
GH2984 is a Fe-Ni-Cr based precipitation hardening deformation high-temperature alloy, with a working temperature of 700°C - 750°C. The alloy is strengthened by solid solution with elements such as Cr, Mo, and Nb, and forms precipitation strengthening phases with a small amount of Al and Ti. This alloy has good long-term strength, oxidation resistance, and corrosion resistance, as well as good hot and cold workability, excellent microstructural stability, and weldability.
GH2909 is a Fe-Ni-Co based precipitation hardening deformation high-temperature alloy, with a service temperature below 650°C. It mainly includes elements such as nickel, chromium, molybdenum, and aluminum, with a nickel content of ≥50%. The combination of these elements gives it high oxidation resistance and heat resistance. It is mainly supplied in the market in the form of plates, pipes, bars, and wires.
The oxidation resistance of GH2907 high-temperature alloy is relatively good, but there are certain limitations. The following is a detailed analysis of its oxidation resistance: Oxidation temperature range: Below 650℃, the GH2907 alloy exhibits good oxidation resistance. However, due to the absence of chromium and aluminum elements, its high-temperature oxidation resistance is relatively poor. When the operating temperature exceeds 700℃ and is exposed for a long time, its oxidation resistance will significantly decline.
GH2903 is a nickel-based low expansion high-temperature alloy, with its composition precisely controlled to achieve an extremely low coefficient of thermal expansion. The high nickel content provides GH2903 with excellent oxidation resistance and corrosion resistance, while the addition of elements such as chromium, titanium, and aluminum enhances the alloy's high-temperature strength and stability. This alloy is primarily used to manufacture components that require low expansion and high strength in high-temperature environments.
GH2901 is a nickel-chromium-based precipitation hardening deformation high-temperature alloy, also known as nickel-based precipitation hardening deformation high-temperature alloy or Fe-Ni-Cr based precipitation hardening deformation high-temperature alloy. It is highly regarded for its excellent strength, oxidation resistance, and creep resistance at high temperatures. The density of the GH2901 alloy is approximately 8.21 g/cm³, and its melting temperature is 1360°C.
GH2787 is a nickel-based superalloy primarily used in aerospace engines, gas turbines, and other high-temperature, high-stress environments. This alloy exhibits excellent high-temperature strength, oxidation resistance, and corrosion resistance, allowing it to maintain outstanding performance under extreme conditions.