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Finite Element Numerical Simulation of Temperature Field in Metal Pattern Casting System and “Reverse Method”of Defining the Thermal Physical

L. Chen , P.L. Wang , P.N. Song , J.Y. Zhang , null , null , null , null , null , null , null , null , null , null , null , null , null

金属学报(英文版)

With the technology support of virtual reality and ANSYS software, an example on the simulation of temperature distribution of casting system during the solidification process was provided, which took the latent heat of phase change, the conditions for convection, and the interface heat transfer coefficient into consideration. The result of ANSYS was found to agree well with the test data. This research offers an unorthodox way or“Reverse Method” of defining the relevant thermal physical coefficient.

关键词: solidification process , null , null

DEVELOPMENT OF COMPUTER SIMULATION SOFTWARE ON PHASE TRANSFORMATION DURING QUENCHING

L. Chen , W. Xia and X. J. Chen Department of Materials Science and Engineering , Nanchang Institute of Aeronautical Technology , Nanchang 330034 , China

金属学报(英文版)

A computer software to simulate the phase transformation during quenching is designed based on Avrami equation and Scheil additivity principle of incubation period. The isothermal transformation diagrams of supercooled austenite are described by cubic spline functions. This software is possess of a good graphic interface of Windows style, can simulate the whole process in austenite decomposition during continuous cooling. If the cooling rate was given, the fraction of various microstructures transformed of austenite decomposition during continuous cooling at any temperature can be calculated. The simulation results are checked with the quenching experiment of 45 steel. The results indicate that the simulation results are comparatively close to the experimental results.

关键词: quenching , null , null , null

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