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NUMERICAL SIMULATION OF TEMPERATURE FIELD DURING MAGNETIC FIELD QUENCHING

NUMERICAL SIMULATION OF TEMPERATURE FIELD DURING MAGNETIC FIELD QUENCHING
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摘要 Based on the theories of the heat transfer, the principle of phase transformation and the theory of electric and magnetic field, the mathematical model of transient temperature field involving phase transformation during magnetic field quenching is established. The heat exchange equation including magnetic field is founded. The finite element equation is set up. The distributing of transient temperature on the coupling effects of heat and magnetism is obtained. With test and measurement, the results show that after magnetic field quenching, cooling velocity is decreased, cooling curve is flatten out, and the hardness is slightly raised. Based on the theories of the heat transfer, the principle of phase transformation and the theory of electric and magnetic field, the mathematical model of transient temperature field involving phase transformation during magnetic field quenching is established. The heat exchange equation including magnetic field is founded. The finite element equation is set up. The distributing of transient temperature on the coupling effects of heat and magnetism is obtained. With test and measurement, the results show that after magnetic field quenching, cooling velocity is decreased, cooling curve is flatten out, and the hardness is slightly raised.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2005年第6期773-776,共4页 金属学报(英文版)
关键词 magnetic field quenching specific heals abrupt change non-linear heatconduction equation finite element equation magnetic field quenching, specific heals abrupt change, non-linear heatconduction equation, finite element equation
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