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Viscoplastic phase field simulation of microstructural evolutions under complex loadings in Ni-base superalloys

机译:Ni基超合金复合载荷下微观结构演进的粘胶相位探测

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An elasto-viscoplastic phase field model is proposed to study the microstructural evolutions under mechanical loadings in a Ni-base superalloy single crystal. Elastic anisotropy and inhomogeneity, as well as the description of the long range order in the γ' phase are included in the model. Plastic activity is introduced using a continuum crystal plasticity framework. The coupled model is used to study microstructural evolutions in superalloys under creep at high temperature. Two loading orientations are investigated, [001] and [011]. Moreover simulations under alternate fatigue loading in the [001] orientation are performed. The viscoplasticity simulations are compared to purely elastic phase field simulations and experiments in order to show the influence of plastic activity on microstructural evolutions.
机译:提出了一种弹性粘面相场模型,以研究Ni基超合金单晶机械载荷下的微观结构演进。弹性各向异性和不均匀性,以及γ'相中的长距离顺序的描述包括在模型中。使用连续晶体塑性框架引入塑料活性。耦合模型用于研究高温下蠕变下高温合金的微观结构演进。研究了两种加载取向,[001]和[011]。此外,执行在[001]方向上的交替疲劳负载下的模拟。将粘胶塑性模拟与纯度弹性相位模拟和实验进行比较,以表达塑料活性对微观结构演进的影响。

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