AISI 4047 Molybdenum Alloy Steel Chemical Composition Properties, Grade, Table and PDF Online

AISI 4047 is the molybdenum alloyed steel that has become a novelty due to its gaining extreme strength and endurance and manifests itself being useful in the austere industrial environments where the goods need to be produced. The elemental composition of this fertilizer is mostly based on carbon, mixtures of manganese, phosphorus, sulfur and silicon, plus of course it would complete this fertilizer with chromium and with molybdenum. Using the exact ratios of these constituents AISI 4047 starts a trade-off between hardness, toughness, and machinability becoming a highly versatile medium for all kinds of engineering prospectus. The specification also comes with the AISI grade, thereby ensuring uniformity as well as reliability across the manufacturing sector. This information can be found in detailed and comprehensive tables provided in the form of PDFs on the web. Hence, engineers and metallurgists will be able to make informed decisions on selection of material in all aspects of engineering processes.

AISI 4047 Alloy Steel Chemical Composition And Grade Table

AISI 4047 through-hardening steel, with a low alloy content, has a reputation for its high strength and good toughness. The chemical analysis shows the main elemental range ranging from carbon, manganese, silicon, chromium, to molybdenum. The grade of AISI 4047 presented in the table shows the amount in detail of the each element as the percentage of the specified in the table. There isn't many industrial applications this steel is not used for, from he manufacturing of components for machines to the parts of cars and steel components used in construction. Its balanced structure affords both hardness, wear-resistance, and machinability; hence, it is well suited for many multiple uses in engineering.

AISI 4047 Alloy Steel Composition Table
Elements Iron, Fe Manganese, Mn Carbon, C Molybdenum, Mo Silicon, Si Sulfur, S Phosphorous, P
Min (%) 97.87 0.7 0.45 0.2 0.15 - -
Max (%) 98.51 0.9 0.5 0.3 0.35 0.04 0.035

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