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Stellite Material

Home /  PRODUCTS /  Superalloy /  Stellite Material

About Stellite Star J Product

About Stellite Star J Product

Stellite Star J is recommended for use under extreme conditions of wear, tear and high temperatures. The alloy has a similar carbon content to Stellite 3, but has a higher tungsten content. This results in higher hot hardness and excellent strength. Tungsten also changes the morphology and type of carbides, thereby improving wear resistance at the expense of ductility. Wear parts in extreme environments such as pads, pins, balls and certain valve components are common applications for Stellite Star J.


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Stellite Star J Alloy

Nominal Composition (Mass %) and Physical Properties

Co Cr W C Fe Ni Others Hardness Density (deposit) Melting Range
Bal 32.5 17.5 2.5 2.0 2.0 Mn, Si 50-63 HRC 8.76 g/cm30.316 lb/in3 1215-1299ºC2220-2370ºF

Stellite cobalt-based alloys consist of complex carbides in the alloy matrix. They are resistant to abrasion, abrasion and corrosion and retain these properties at high temperatures. Its excellent wear resistance is mainly attributed to the unique inherent properties of the hard carbide phase dispersed in the CoCr alloy matrix.

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Stellite alloys are a group of cobalt-chromium alloys known for their exceptional wear resistance, high temperature performance and corrosion resistance. Here's an overview of Stellite:


Composition:

Stellite alloys are primarily composed of cobalt (about 50-65%) and chromium (about 25-30%), with varying proportions of tungsten, carbon and other elements depending on the grade. These alloying elements give Stellite alloys a unique combination of properties.


Wear Resistance:

Stellite alloys are known for their excellent wear resistance, making them suitable for applications where components are subject to abrasive wear, erosion and sliding contact. They are typically used in high-wear environments such as cutting tools, saw teeth, valve seats, and pump components.


High Temperature Performance:

Stellite retains its mechanical properties at high temperatures, allowing it to withstand high temperatures without significant loss of strength or hardness. This makes Stellite alloys suitable for high-temperature applications such as gas turbine components, furnace components and exhaust valves.


Corrosion Resistance:

Stellite alloys exhibit good corrosion resistance in a variety of environments, including acidic and alkaline solutions, as well as high-temperature gases and molten salts. This corrosion resistance makes Stellite alloys suitable for use in chemical processing, marine engineering, and oil and gas production.


Versatility:

Stellite alloys are available in a variety of grades and forms, including powders for thermal spray coatings, castings and forgings such as rods and plates. This versatility allows the selection of the most appropriate grade and form of Stellite alloy for a specific application.


Applications:

Stellite alloys are widely used in aerospace, automotive, oil and gas, power generation and manufacturing industries. They are widely used in components requiring wear resistance, high temperature performance and corrosion resistance

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    Automobile and motorcycle manufacturing

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    Marine engineering



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