首页> 中文期刊> 《中南大学学报(英文版)》 >Microscopic phase-field simulation for coarsening behavior of L12 and DO22 phases of Ni75CrxAl25-x alloy

Microscopic phase-field simulation for coarsening behavior of L12 and DO22 phases of Ni75CrxAl25-x alloy

         

摘要

Based on the microscopic phase-field dynamic model and the microetasticity theory, the coarsening behavior of L12 and DO22 phases in Ni75CrxAl25-x alloy was simulated. The results show that the initial irregular shaped, randomly distributed L12 and DO22 phases are gradually transformed into cuboidal shape with round comer, regularly aligned along directions [100] and [001], and highly preferential selected microstructure is formed during the later stage of precipitation. The elastic field produced by the lattice mismatch between the coherent precipitates and the matrix has a strong influence on the coarsening kinetics, and there is no linear relationship between the cube of the average size of precipitates and the aging time, which does not agree with the results predicted by the classical Lifshitz-Slyozov-Wagner. The coarsening processes of L12 and DO22 phases are retarded in elastically constrained system. In the concurrent system of L12 and DO22 phases, there are two types of coarsening modes: the migration of antiphase domain boundaries and the interphase Ostwald ripening.

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  • 来源
    《中南大学学报(英文版)》 |2008年第4期|443-448|共6页
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  • 正文语种 eng
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    机译:Ni75CrzAl25-x合金;粗化行为;微观相场;弹性应变;相干析出;
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