High-Temperature Alloy Steel Plates

High-temperature alloy steel strips and plates are specially designed materials used in environments where high heat and stress are present. These alloys are made by adding elements like chromium, nickel, and molybdenum to steel, which help improve their strength, resistance to oxidation, and durability at high temperatures.High-temperature alloy steels are made to be strong, durable, and resistant to damage in extreme conditions, making them essential for many high-performance industries.
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Product Description


ItemDescription
Material TypeHigh-temperature alloy steel
Main CompositionPrimarily iron, with alloying elements like chromium (Cr), nickel (Ni), cobalt (Co), molybdenum (Mo), etc.
Temperature ResistanceDesigned to withstand high temperatures, typically up to 650°C-1000°C (varies depending on alloy composition).
PropertiesHigh strength, oxidation and corrosion resistance, and thermal stability under elevated temperatures.
Common FormsStrips, plates, sheets, foils.
ApplicationsTurbines, jet engines, heat exchangers, industrial furnaces, power plants, and other high-temperature environments.
Fabrication TechniquesCan be cold-rolled, hot-rolled, or heat-treated for different forms and applications.
Thickness Range (Strips)0.1 mm to 3 mm (typically).
Thickness Range (Plates)3 mm to 100 mm or more (depending on the grade and specifications).
Heat TreatmentSolution treatment, aging, or quenching to enhance properties like strength and resistance.
Corrosion ResistanceEnhanced corrosion resistance, especially in high-temperature environments.
Common GradesHastelloy, Inconel, Incoloy, etc. (specific alloys depend on the application and temperature requirement).



Detailed Description:

High-temperature alloy steels are specially designed materials that exhibit outstanding resistance to oxidation, corrosion, and mechanical degradation under extreme conditions. These steels are composed of various alloying elements such as chromium, nickel, molybdenum, and sometimes cobalt, which give them superior thermal stability and strength at high temperatures.


Forms:

◆ Steel Strips: These are typically thinner and are often used in applications requiring flexibility and precision, like in thin-walled components of turbines and engines.

◆ Steel Plates: Plates are thicker and are used in more structural applications such as heat exchangers, power plants, and industrial furnaces, where higher material thickness is required to withstand high-pressure and high-temperature conditions.


Applications:

◆ Aerospace: Used in engine components like turbine blades and nozzle guides.

◆ Power Generation: Used in turbines and heat exchangers that operate at elevated temperatures.

◆ Chemical Industry: For reactors, pipes, and other equipment exposed to high heat and reactive environments.


These materials are often produced using specific processes such as cold-rolling or hot-rolling to achieve the desired thickness and mechanical properties. Heat treatment processes like solution annealing and aging can further enhance the performance of these alloys.


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