Abstract
The Oxidation and decarburization of ZGMn13Cr2 steel under different heat treatment conditions was observed, and the decarburization behavior was predicted theoretically based on the oxidation mechanism and decarburization kinetic model, and the relationship between experimental and theoretical decarburization depth was analyzed. The results show that the decarburization of ZGMn13Cr2 is serious during heating, and the depth of decarburization layer increases with the increasing of holding time at a certain heating temperature. Due to the high temperature oxidation reaction and the action of carbide, the decarburization behavior of ZGMn13Cr2 is different at different heating temperatures. When the heating temperature is 1000 °C, the predicted decarburization depth is in good agreement with that in experiment. When the heating temperature is 1050 and 1100 °C, the decarburization depth is greater than that from the kinetic model.
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This work was financially supported by Major Science and Technology Projects in Guangxi (Gui Ke AA18242001).
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Zhu, K., Li, Q., Zeng, J., Zhao, S. (2021). Study on Decarbonization of ZGMn13Cr2 During Heat Treatment. In: Zheng, L., Sun, C., Goh, KL. (eds) Proceedings of MEACM 2020. MEACM 2020. Mechanisms and Machine Science, vol 99. Springer, Cham. https://doi.org/10.1007/978-3-030-67958-3_15
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DOI: https://doi.org/10.1007/978-3-030-67958-3_15
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