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Microscopic phase-field study on order-disorder transition of the antiphase domain boundary formed between L1_2 phases
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作者 ZHANG MingYi YANG Kun +2 位作者 CHEN Zhen WANG YongXin FAN XiaoLi 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第12期3409-3414,共6页
Kinetics of order-disorder transition at antiphase domain boundary (APDB) formed between L12 (Ni3A1) phases is investigated using microscopic phase-field model. The results demonstrate that whether order-disorder ... Kinetics of order-disorder transition at antiphase domain boundary (APDB) formed between L12 (Ni3A1) phases is investigated using microscopic phase-field model. The results demonstrate that whether order-disorder transition happens or not depends on the atomic structure of the APDB. Accompanied with the enrichment of V and depletion of Ni and A1, the ordered APDB with phase-shift vector of a/2[100] transforms into a thin disordered phase layer. Whereas at the APDB with phase shift vector of a/2[110], which remains ordered with temporal evolution, Ni and A1 enrich and V depletes. Composition evolution of APDB with order-disorder transition favors the nucleation of DO22 phase, and the formation of disordered phase layer accelerates the growth of DO22 phase. The disordered phase caused by order-disordered transition of the APDB can be considered as the transient phase along the precipitation path of DO22 phase. 展开更多
关键词 microscopic phase-field antiphase domain boundary order-disorder transition transient phase Ni-AI-V alloy
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