Assessment of the Effect of Quench Probe Parameters on Cooling Behavior by Numerical Simulation
Tài liệu tham khảo
Avner, S.H., 1997. “Introduction to Physical Metallurgy”. Tata McGraw-Hill, New Delhi, India
Boyer, H.E., Cary, P.R., 1988. “Quenching and Control of Distortion”. ASM International, Materials. Park, OH
Fernandes, 2007, Effect of Section Size and Agitation on Heat Transfer during Quenching of AISI 1040 Steel, Journal of Materials Processing Technology, 183, 1, 10.1016/j.jmatprotec.2006.08.028
Liscic, B., Tensi, H.M., Canale, L.C.F., Totten, G.E., 2009. “Quenching Theory and Technology”. CRC Press, Boca Raton, FL
Ramesh, G., Prabhu, K.N., 2012. Effect of boundary heat transfer coefficient and probe section size on cooling curves during quenching. Materials Performance and Characterization 1, pp. 1-8
Ramesh, G., Prabhu, K.N., 2012. Effect of quench probe material and section size on cooling severity, Proceedings of 6th International Quenching and Control of Distortion Conference Including the 4th International Distortion Engineering Conference. Chicago, Illinois, USA
Ramesh, G., Prabhu, K.N., 2013. Dimensionless cooling performance parameter for characterization of quench media. Metallurgical and Materials Transactions B 44, pp. 797-799
Simsir, C., Gur, C.H., 2008. Simulation of Quenching, in “Handbook of Thermal Process Modeling of Steels”. In: C.H. and Pan, J. (Eds.). CRC Press, Boca Raton, FL, pp.341
Totten, G.E., Bates, C.E., Clinton, N.A., 1993. “Handbook of Quenchants and Quenching. Technology”. ASM International, Materials. Park, OH