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首页> 外文期刊>Philosophical Magazine >Molecular dynamics simulation of the structural evolution of misfit dislocation networks at γ/γ′ phase interfaces in Ni-based superalloys
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Molecular dynamics simulation of the structural evolution of misfit dislocation networks at γ/γ′ phase interfaces in Ni-based superalloys

机译:镍基高温合金在γ/β相界面处错配位错网络的结构演变的分子动力学模拟。

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摘要

The structural evolution of misfit dislocation networks at γ/γ′ phase interfaces in Ni-based single crystal superalloys under tensile loading and temperatures is simulated by molecular dynamics. From the simulation, we find that, with increasing load or temperature, the patterns of dislocation networks on the (100), (110) and (111) phase interfaces change from regular to irregular or disappear. Under the same load and temperature, the dislocation networks of the different phase interfaces show different degrees and patterns of damage. The density and stability of the dislocation networks decrease with increasing temperature. When the interfacial dislocation networks become more regular, the γ/γ′ interfaces become more stable. The simulated results are supported by related experimental findings. Moreover, based on MD simulations, the averaged stress-strain responses for different phase interfaces under loading are presented. The results indicate that the combined influences of temperature and load play an important role for the structure evolution of misfit dislocation networks at γ/γ′ phase interfaces of Ni-based superalloys.
机译:通过分子动力学模拟了镍基单晶高温合金在拉伸载荷和温度下的γ/γ相界面处错配位错网络的结构演变。从仿真中我们发现,随着负载或温度的升高,(100),(110)和(111)相界面上的位错网络的模式从规则变为不规则或消失。在相同的载荷和温度下,不同相界面的位错网络表现出不同程度和破坏方式。位错网络的密度和稳定性随温度升高而降低。当界面错位网络变得更规则时,γ/γ界面变得更加稳定。仿真结果得到相关实验结果的支持。此外,基于MD模拟,提出了在载荷作用下不同相界面的平均应力应变响应。结果表明,温度和负载的综合影响在镍基高温合金的γ/β相界面处错配位错网络的结构演变起重要作用。

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