AISI 5000 Alloy Steel Chemical Composition & Properties, Grades, Chart and Document

AISI 5000 series alloy, considered a universal material, gives the steel the desirable properties of high strength and good durability. When speaking about its chemical composition, the elements such as carbon, manganese, silicon, phosphorus, sulfur, chromium, and molybdenum usually occur alongside others that perfectly balance them so that the resulting properties are optimized. Coming within range of 50100kg and 50650kg, every model will be representing the trade mark of the uniqueness in its engineering. AISSI 5000 alloy steel consistently has a high tensile strength, toughness, wear and corrosion resistance, making it ideal for obvious duty in a variety of applications. What is complexion for is making components in automotive, aerospace, and machineries because of its material properties. Material documenation covering the list of commodities and their grades with properties is a prerequisite for an effective material decision and performance enhancement for an engineering project.

AISI 5000 Alloy Steel Chemical Composition And Grade Table

AISI 5000 is a hard steel alloy which has its high tensile strength and long-lasting nature which makes it suitable for many industrial usages. Its chemical makeup usually contains a mixture of carbon, manganese, silicon, phosphorus, sulfur, chromium, molybdenum, possibly nickel and numerous other elements. Such 5000 series AIS special grade composition changes with the grade. A common classification for steel numbers is AISI 50100, AISI 51100, and AISI 51500, each of them having certain unique properties that are used in different types of applications. These alloys play an important role in manufacturing automotive, aerospace, and industry machinery parts where great strength and wear resistance are important properties.

AISI 5000 Alloy Steel Composition Table
Elements Aluminum, Al Beryllium, Be Chromium, Cr Copper, Cu Cr + Mn Gallium, Ga Iron, Fe Lead, Pb Magnesium, Mg Manganese, Mn Nickel, Ni Scandium, Sc Si+Fe Silicon, Si Titanium, Ti Vanadium, V Zinc, Zn Zirconium, Zr Zr+Ti
Min (%) 88.2 0.0005 0.01 0.03 0.1 0.03 0.008 0.003 0.2 0.01 0.01 0.05 0.35 0.01 0.008 - 0.01 0.05 -
Max (%) 99.8 0.0008 0.5 0.8 0.7 0.05 1.2 1.8 6.2 1.8 0.1 0.55 0.45 1.4 0.2 0.05 2.8 0.3 0.15

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