Effect of molybdenum, vanadium, boron on mechanical properties of high chromium white cast iron in as-cast condition

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Abstract

In this experiment, the effect of the addition carbide forming elements on high chromium white cast iron, such as molybdenum, vanadium and boron on its mechanical properties and microstructure was investigated. The high chromium white cast iron was produced by casting process and formed in 50 mm size of grinding balls with several compositions. Characterization of these grinding balls was conducted by using some testing methods, such as: chemical and microstructure analysis, hardness, and impact test. From the results, the addition of molybdenum, vanadium, and boron on high chromium white cast iron provided a significant improvement on its hardness, but reduced its toughness. Molybdenum induced fully austenitic matrix and Mo2C formation among eutectic M7C3 carbide. Vanadium was dissolved in the matrix and carbide. While boron was played a role to form fine eutectic carbide. Grinding balls with 1.89 C-13.1 Cr-1.32 Mo-1.36 V-0.00051 B in as-cast condition had the highest hardness, which was caused by finer structure of eutectic carbide, needle like structure (upper bainite) matrix, and martensite on its carbide boundary.

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APA

Nurjaman, F., Sumardi, S., Shofi, A., Aryati, M., & Suharno, B. (2016). Effect of molybdenum, vanadium, boron on mechanical properties of high chromium white cast iron in as-cast condition. In AIP Conference Proceedings (Vol. 1711). American Institute of Physics Inc. https://doi.org/10.1063/1.4941614

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