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Phase-field simulation of twin boundary fractions in fully lamellar TiAl alloys

机译:全层状TiAl合金中双边界部分的相场模拟

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摘要

The phenomenon of high twin boundary fractions found experimentally for neighboring γ lamellae in fully lamellar TiAl alloys was investigated by phase-field simulations. The nucleation and growth processes during α'_2 → α_2 + γ transformation that leads to the lamel lar structure were simulated. In particular, the effects of coherency stress and the interfacial energy difference among different types of interfaces and undercooling on the nucleation mechanism were analyzed. It is found that the twin boundary fraction increases with increasing coherency elastic strain energy and increasing interfacial energy difference among different types of interfaces, and with decreasing undercooling. Depending on the relative contributions of these factors, the nucleation events simulated by the Langevin noises could be collective, correlated or independent. These findings could shed light on the control of twin boundary fraction within lamellar structures by adjusting alloy composition and cooling route.
机译:通过相场模拟研究了实验发现全层状TiAl合金中相邻γ片的高孪晶边界分数现象。模拟了α'_2 → α_2 + γ转化过程中形成的成核和生长过程,并导致了层状结构。特别分析了相干应力、不同界面间界面能量差和过冷对成核机理的影响。研究发现,孪晶边界分数随着相干弹性应变能的增加和界面能量差的增加而增大,并随着过冷度的减小而增大。根据这些因素的相对贡献,Langevin噪声模拟的成核事件可以是集体的、相关的或独立的。这些发现可以揭示通过调整合金成分和冷却路线来控制层状结构内的孪晶边界分数。

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