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Finite Element Simulation of Metal Quenching
引用本文:方刚 曾攀. Finite Element Simulation of Metal Quenching[J]. 清华大学学报, 2004, 9(5): 555-559
作者姓名:方刚 曾攀
作者单位:DepartmentofMechanicalEngineering,TsinghuaUniversity,Beijing100084,China
基金项目:Supported by the National Natural Science Foundation of China ( No. 50205013 )
摘    要:
The evolution of the phase transformation and the resulting internal stresses and strains in metallic parts during quenching were modeled numerically. The numerical simulation of the metal quenching process was based on the metallo-thermo-mechanical theory using the finite element method to couple the temperature, phase transformation, and stress-strain fields. The numerical models are presented for the heat treatment and kinetics of the phase transformation. The finite element models and the phase transition kinetics accurately predict the distribution of the microstructure volume fractions, the temperature, the distortion, and the stress-strain relation during quenching. The two examples used to validate the models are the quenching of a small gear and of a large turbine rotor. The simulation results for the martensite phase volume fraction, the stresses, and the distortion in the gear agree well with the experimental data. The models can be used to optimize the quenching conditions to ensure product quality.

关 键 词:有限元模拟 热处理 金属 淬火 齿轮 涡轮转子

Finite Element Simulation of Metal Quenching
FANG Gang ),ZENG Pan. Finite Element Simulation of Metal Quenching[J]. Tsinghua Science and Technology, 2004, 9(5): 555-559
Authors:FANG Gang )  ZENG Pan
Abstract:
The evolution of the phase transformation and the resulting internal stresses and strains in me- tallic parts during quenching were modeled numerically. The numerical simulation of the metal quenching process was based on the metallo-thermo-mechanical theory using the finite element method to couple the temperature, phase transformation, and stress-strain fields. The numerical models are presented for the heat treatment and kinetics of the phase transformation. The finite element models and the phase transition kinetics accurately predict the distribution of the microstructure volume fractions, the temperature, the distor- tion, and the stress-strain relation during quenching. The two examples used to validate the models are the quenching of a small gear and of a large turbine rotor. The simulation results for the martensite phase vol- ume fraction, the stresses, and the distortion in the gear agree well with the experimental data. The models can be used to optimize the quenching conditions to ensure product quality.
Keywords:finite element method  quenching  heat treatment  gear  turbine rotor  
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