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Modeling large-strain deformation behavior and neighborhood effects during hot working of a coarse-grain nickel-base superalloy

机译:对粗晶粒镍基高温合金热加工过程中的大应变变形行为和邻域效应进行建模

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Isothermal, uniaxial compression tests and accompanying numerical simulations were conducted on Waspaloy-ingot specimens to quantify deformation heterogeneity during hot working of coarse, columnar-grain materials. This was used as a means to approximate deformation processing in ingot materials. Electron-backscatter-diffraction (EBSD) measurements were made before and after compression testing to quantify microstructure evolution. A crystal-plasticity finite-element-method model, in which the starting microstructure was instantiated using EBSD scans of the undeformed material, was used to simulate the deformation. Good agreement was found between observations and simulation predictions of specimen profiles and intra-grain misorientations. The simulation results also revealed that the grain neighborhood appeared to be a principal factor controlling the heterogeneity of deformation at the grain scale. Significant differences in the simulated deformation of a given grain were noted for various arrangements of the orientations of its neighbors. In particular, the first- and second-nearest neighbors of a given grain have the most significant effect on heterogeneous deformation behavior.
机译:在Waspaloy-ingot试样上进行了等温,单轴压缩试验和随附的数值模拟,以量化粗大的柱状晶粒材料在热加工过程中的变形异质性。这被用作一种近似锭料变形加工的方法。在压缩测试之前和之后进行电子背散射衍射(EBSD)测量,以量化微观结构的演变。晶体可塑性有限元方法模型用于模拟变形,其中使用未变形材料的EBSD扫描实例化了起始微观结构。在观察和模拟预测的样品轮廓和晶粒内取向错误之间发现了很好的一致性。模拟结果还表明,晶粒邻域似乎是控制晶粒尺度变形异质性的主要因素。对于给定晶粒的邻域取向的各种布置,注意到了给定晶粒的模拟变形中的显着差异。特别是,给定晶粒的第一近邻和第二近邻对异质变形行为的影响最大。

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