UNS C62400 Aluminium Bronze Chemical Composition Properties, Grades, Table and Online Pdf

The UNS C62400, which is commonly referred to as an aluminum bronze, is an alloy that has significant protective qualities against corrosion, and an impressive high stress bearing capacity. The combination of elements is the prominent characteristic of an alloy which generally is composed of a large amount of copper, aluminum, as well as iron, manganese, and nickel. This composition allows to get remarkable mechanical properties. Specially with outstanding properties of corrosion resistance in the sea water and several types of aggressive chemical environments, this material has been well-used for a broad scale of marine engineering applications, for instance, the propeller, pump, and relates valve components. UNS C62400 is offered in a variety of grades for demanding purposes ranging from high strength to reduced weight. The document should include a detailed table that comprehensively covers the chemical composition, mechanical properties and grades of the alloy in a PDF file that can be found online so that engineers and manufacturers directly have access to this essential information.

UNS C62400 Aluminium Bronze Chemical Composition And Grade Table

The UNS C62400 Aluminum Bronze is a strongly alloyed product of high strength, unrivalled corrosion resistance and long service life. The main component is copper; aluminum holds the role of the alloying element. A large portion of these are unidentifiable, and they consist mostly of iron, nickel, manganese, and silicon. It offers excellent mechanical properties that can be applied in a number of industrial areas, for instance marine facilities with corrosion resistance as a key component. UNS C62400 material is the preferred material for load applications due to its unparalleled strength and fatigue resistance, thus providing a dependable performance in critical environments.

UNS C62400 Aluminium Bronze Composition Table
Elements Cu Al Fe Mn Si Sn Other
Min (%) 82.8 10.0 2.0 - - - -
Max (%) 88.0 11.5 4.5 0.3 0.25 0.2 0.5

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