AISI 5140H Alloy Steel Chemical Composition, Grades, Tables and Online Pdf

Alloy AISI 5140H Steel, which has a chromium-molybdenum composition, is a type of material that has been used in different industry for its wide superior strength and endurance. This is the general formula for the material which represents the most common composition of C, Mn, Cr, and Mo, thus, resulting in the strengthened mechanical properties. Grades of AISI 5140H also have heat treatment that gives a lesser carbon percentage than the intended 0.71% which gives the material appropriate flexibilities for different working conditions. Through the Information section you will get detailed tables and references like online PDF which will provide comprehensive information about the constitution, characteristics and applications. Technicians, engineers, and manufacturers of products are also major participants who fi nd these resources very useful when getting proximate data for decision-making when it requires strength and resistance. AISI 5140H combines both strength and versatility, and industries such as automotive, machinery, construction and tool manufacturing widely use it.

AISI 5140H Alloy Steel Chemical Composition And Grade Table

AISI 5140H, an alloy steel type known for its high strength & toughness, can be formed into precise parts, make heavier parts possible and stands up to wear & impact. Carbon, manganese, chromium, and molybdenum combine in the compositions of V- grades, characterizing those grades for their excellent mechanical attributes. It is usually preferred in the applications where an advanced strength-to-weight ratio is important. The product AISI 5140H shows good properties weldability, machinability. Its grade table illustrates the carbon content that is 0.38% to 0.43 with manganese between 0.70% to 0.90%, then chromium at 0.70% to 0.90% and finally molybdenum at 0.15% to 0.25% suitable for different industry uses.

AISI 5140H Alloy Steel Composition Table
Elements Carbon, C Chromium, Cr Iron, Fe Manganese, Mn Phosphorus, P Silicon, Si Sulfur, S
Min (%) 0.37 0.6 97.185 0.6 - 0.15 -
Max (%) 0.44 1 98.28 1 <= 0.035 0.3 <= 0.040

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