High-Temperature Alloy Tubes

High-temperature alloy tubes are engineered for high-performance applications that require materials to perform under extreme thermal and mechanical stresses. These tubes are made from alloys that have high strength, superior oxidation resistance, and excellent thermal stability. The alloys used in these tubes are typically composed of elements like chromium, nickel, and molybdenum, which make them highly resistant to heat and corrosion.
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Product Description

ItemDescription
Material TypeHigh-temperature alloy steel tubes
Main CompositionPrimarily iron, with alloying elements like chromium (Cr), nickel (Ni), cobalt (Co), molybdenum (Mo), etc.
Temperature ResistanceCan withstand high temperatures, generally up to 550°C to 1200°C, depending on alloy grade.
PropertiesHigh temperature resistance, oxidation resistance, excellent mechanical properties at elevated temperatures.
Common FormsTubes, pipes (typically round, but can also be square or rectangular depending on specifications).
ApplicationsOil industry, chemical plants,mold processing, mechanical equipment,Aerospace , power generation , etc.
Typical GradesMonel,Inconel, Hastelloy,Incoloy, etc.
Diameter RangeTypically from 5mm to 500mm.
Wall Thickness RangeFrom 0.5 mm to 50 mm or more, depending on pressure and temperature requirements.
Length RangeCustomizable, typically 0.5 meter to 10 meters or more. Can be customized according to actual use.
Fabrication TechniquesCan be hot-rolled, cold-rolled, extruded, or welded. May also be heat-treated for specific applications.
Corrosion ResistanceExcellent resistance to oxidation and corrosion, especially at high temperatures.
Heat TreatmentSolution treatment, aging, or quenching to improve mechanical properties like strength and resistance.




Application :

- Aerospace: used to manufacture key components such as turbine blades, turbine discs, and combustion chambers of aircraft engines, which need to withstand high temperature, high pressure, and complex stress.

- Energy industry: used to make blades and combustion chambers in gas turbines, and used in steam generators and nuclear reactor components of nuclear power plants to meet the requirements of high temperature and high pressure working conditions.

- Petrochemical industry: suitable for manufacturing reactors, pipelines, valves, etc. that work at high temperatures, resisting corrosion and the influence of high temperature media.

- Automotive industry: used in turbocharger rotors and exhaust system components of some high-performance engines to improve high temperature resistance and wear resistance.

- Industrial gas turbine: core components of gas turbines used for power generation or driving, ensuring stable operation in high temperature environments.

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