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GH3536 is a solid solution-strengthened nickel-based alloy designed to perform reliably in high-temperature and highly corrosive environments. With excellent mechanical properties, oxidation resistance, and thermal stability, GH3536 is ideal for applications in aerospace, petrochemical, power generation, and industrial furnaces.
GH3536 alloy steel strips and coils offer superior performance where traditional stainless steels fail. Its high nickel and chromium content provide outstanding resistance to high-temperature oxidation, while added elements like molybdenum and cobalt enhance strength and corrosion resistance under thermal cycling conditions.
Engineered for critical environments, GH3536 ensures long-term stability and minimal deformation even under continuous exposure to temperatures exceeding 1000°C (1832°F).
Excellent resistance to oxidation and carburization up to 1050°C
Superior structural stability under thermal stress
Outstanding resistance to aggressive media, including chloride-containing gases
Available in coils, strips, sheets, and custom dimensions
Suitable for deep drawing and forming processes
Element | Ni | Cr | Fe | Mo | Co | C | Mn | Si | Ti | Al |
---|---|---|---|---|---|---|---|---|---|---|
Content % | ≥ 60 | 20–24 | ≤ 1.5 | 8–10 | 10–15 | ≤ 0.05 | ≤ 1.0 | ≤ 0.8 | ≤ 0.2 | ≤ 0.5 |
Property | Typical Value |
---|---|
Tensile Strength | ≥ 780 MPa |
Yield Strength (0.2%) | ≥ 355 MPa |
Elongation | ≥ 30% |
Hardness | ≤ 180 HB |
Density | ~8.7 g/cm³ |
Melting Range | 1320 – 1380°C |
Combustion chambers and afterburner components in jet engines
High-temperature heat exchangers and reformers
Gas turbine parts, industrial furnaces, and mufflers
Petrochemical reactors and catalyst support structures
Form | Thickness Range | Width Range | Edge Options |
---|---|---|---|
Strip | 0.1 – 4.0 mm | up to 650 mm | Slit edge / Mill edge |
Coil | 0.2 – 6.0 mm | up to 1000 mm | Custom upon request |
Sheet | 0.5 – 25 mm | up to 1500 mm | Cut-to-size available |
ASTM B622 / B626 (comparable)
GB/T 14992
ISO 9001:2015 Certified Production
RoHS / REACH Compliant
GH3536 offers a more balanced performance between high-temperature resistance and corrosion protection, especially in cyclic thermal environments. Compared to GH3030, it performs better in oxidative stress, and while GH4169 has higher strength, GH3536 has superior oxidation resistance at temperatures above 1000°C.
Yes, GH3536 is weldable using common methods like TIG, MIG, and resistance welding. It has good formability and can be processed into complex shapes with proper technique and post-weld heat treatment when necessary.
Standard sizes are often available in stock and can be shipped within 7–10 working days. Customized dimensions may require 2–4 weeks depending on production load and order volume.
Yes, GH3536 has excellent resistance to pitting and crevice corrosion, especially in high-temperature chloride atmospheres, making it suitable for chemical processing applications.
GH3536 is a solid solution-strengthened nickel-based alloy designed to perform reliably in high-temperature and highly corrosive environments. With excellent mechanical properties, oxidation resistance, and thermal stability, GH3536 is ideal for applications in aerospace, petrochemical, power generation, and industrial furnaces.
GH3536 alloy steel strips and coils offer superior performance where traditional stainless steels fail. Its high nickel and chromium content provide outstanding resistance to high-temperature oxidation, while added elements like molybdenum and cobalt enhance strength and corrosion resistance under thermal cycling conditions.
Engineered for critical environments, GH3536 ensures long-term stability and minimal deformation even under continuous exposure to temperatures exceeding 1000°C (1832°F).
Excellent resistance to oxidation and carburization up to 1050°C
Superior structural stability under thermal stress
Outstanding resistance to aggressive media, including chloride-containing gases
Available in coils, strips, sheets, and custom dimensions
Suitable for deep drawing and forming processes
Element | Ni | Cr | Fe | Mo | Co | C | Mn | Si | Ti | Al |
---|---|---|---|---|---|---|---|---|---|---|
Content % | ≥ 60 | 20–24 | ≤ 1.5 | 8–10 | 10–15 | ≤ 0.05 | ≤ 1.0 | ≤ 0.8 | ≤ 0.2 | ≤ 0.5 |
Property | Typical Value |
---|---|
Tensile Strength | ≥ 780 MPa |
Yield Strength (0.2%) | ≥ 355 MPa |
Elongation | ≥ 30% |
Hardness | ≤ 180 HB |
Density | ~8.7 g/cm³ |
Melting Range | 1320 – 1380°C |
Combustion chambers and afterburner components in jet engines
High-temperature heat exchangers and reformers
Gas turbine parts, industrial furnaces, and mufflers
Petrochemical reactors and catalyst support structures
Form | Thickness Range | Width Range | Edge Options |
---|---|---|---|
Strip | 0.1 – 4.0 mm | up to 650 mm | Slit edge / Mill edge |
Coil | 0.2 – 6.0 mm | up to 1000 mm | Custom upon request |
Sheet | 0.5 – 25 mm | up to 1500 mm | Cut-to-size available |
ASTM B622 / B626 (comparable)
GB/T 14992
ISO 9001:2015 Certified Production
RoHS / REACH Compliant
GH3536 offers a more balanced performance between high-temperature resistance and corrosion protection, especially in cyclic thermal environments. Compared to GH3030, it performs better in oxidative stress, and while GH4169 has higher strength, GH3536 has superior oxidation resistance at temperatures above 1000°C.
Yes, GH3536 is weldable using common methods like TIG, MIG, and resistance welding. It has good formability and can be processed into complex shapes with proper technique and post-weld heat treatment when necessary.
Standard sizes are often available in stock and can be shipped within 7–10 working days. Customized dimensions may require 2–4 weeks depending on production load and order volume.
Yes, GH3536 has excellent resistance to pitting and crevice corrosion, especially in high-temperature chloride atmospheres, making it suitable for chemical processing applications.