GH3536 is a nickel-based high-temperature alloy with a high iron content that is mainly solid solution strengthened with chromium and molybdenum. It has good anti-aging and corrosion resistance properties, and has moderate durability and creep strength below 900°C. It is cold and Good hot processing formability and welding performance.The main varieties supplied are plates, strips, pipes, bars, forgings, rings and precision castings.
Specifications | In stock, can be customized according to customer requirements |
Form | Bar,Plate |
Classification | Superalloy |
Density | Melting Point | thermal conductivity | Specific heatcapacity | elastic modulus | shear modulus | Resistivity | Linear expansion coefficient |
g/cm3 | ℃ | λ/(W/m·°℃) | J/kg:·℃ | GPa | GPa | uΩ ·m | a/10-6℃-1 |
8.28 | 1296-1381 | 13.38(100℃) | 372.6 |
| 1.18 | 0.3 | 12.1(20~100℃) |
Alloy | % | C | Cr | Ni | Co | W | Mo | Al | Ti | Fe | B | Cu | S | P | Si | Mn |
GH3536 | Min | 0.05 | 20.5 | Balance | 0.5 | 0.2 | 8 |
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| 17 |
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Max | 0.15 | 23 | 2.5 | 1 | 10 | 0.5 | 0.15 | 20 | 0.01 | 0.5 | 0.015 | 0.025 | 1 | 1 |
GH3536has good oxidation resistance and corrosion resistance, medium to medium durability and creep strength below 900°C, and good cold and hot processing formability and welding properties.
It is suitable for manufacturing combustion chamber components and other high-temperature components of aero engines. It can be used for a long time below 900C, and the short-term working temperature can reach 1080C. It can withstand certain stress and has anti-oxidation or anti-oxidation properties at high temperatures of 600~1200C.
Alloys for corrosion resistance.
In the aerospace field,GH3536superalloy is widely used to manufacture high-temperature components, such as gas turbine blades, turbine blades, nozzles, engine tanks, turbine exhaust ducts, turbine intermediate casings, etc.
GH3536 high-temperature alloy is widely used in the manufacture of chemical equipment, such as distillation towers, reactors, heat exchangers, pipes, and storage tanks.
The manufacturing process of stainless steel and alloys involves multiple steps to transform raw materials into flat,rectangular sheets or plates made of stainless steel and alloys. Here are a few key steps for stainless steel and alloys:
Molten stainless steel and alloys are cast into large ingots or billets through a casting process.
During the hot rolling process,the thickness of the steel ingot is gradually reduced and elongated to form long strips or coils.
Annealing involves heating stainless steel and alloys to a specific temperature and then slowly cooling it.
Cold rolling is carried out through rolling mills to reduce thickness to meet customer specifications.
Wuxi Walmay Metal Co,Ltd is a comprehensive processing group of Alloy Steel、Forged Parts Fitting、Titanium Alloy、Stainless Steel、Special Welding Wireseries, and more than 800 specifications.
Our group has been engaged in the domestic and global market for more than ten years with rich steel experience and can offer professional advice for customers inapplications with different materials.
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Bar and structural cutting
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Heat treatment and annealing: Wuxi Walmay Metal can heat treat certain 400 series stainless steels.
Material Reliability Identification (PMI): Wuxi Walmay Metal can complete this testing in-house.
Ut Testing: Ultrasonic testing (UT) uses high-frequency sound energy to inspect and measure stainless steel products.
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