首页> 外文期刊>Journal of Materials Engineering and Performance >Three-Dimensional Crystal Plasticity Finite Element Simulation of Hot Compressive Deformation Behaviors of 7075 Al Alloy
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Three-Dimensional Crystal Plasticity Finite Element Simulation of Hot Compressive Deformation Behaviors of 7075 Al Alloy

机译:7075铝合金热压缩变形行为的三维晶体塑性有限元模拟

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摘要

Three-dimensional crystal plasticity finite element (CPFE) method is used to investigate the hot compressive deformation behaviors of 7075 aluminum alloy. Based on the grain morphology and crystallographic texture of 7075 aluminum alloy, the microstructure-based representative volume element (RVE) model was established by the pole figure inversion approach. In order to study the macroscopic stress-strain response and microstructural evolution, the CPFE simulations are performed on the established microstructure-based RVE model. It is found that the simulated stress-strain curves and deformation texture well agree with the measured results of 7075 aluminum alloy. With the increasing deformation degree, the remained initial weak Goss texture component tends to be strong and stable, which may result in the steady flow stress. The grain orientation and grain misorientation have significant effects on the deformation heterogeneity during hot compressive deformation. In the rolling-normal plane, the continuity of strain and misorientation can maintain across the low-angle grain boundaries, while the discontinuity of strain and misorientation is observed at the high-angle grain boundaries. The simulated results demonstrate that the developed CPFE model can well describe the hot compressive deformation behaviors of 7075 aluminum alloy under elevated temperatures.
机译:采用三维晶体塑性有限元(CPFE)方法研究了7075铝合金的热压缩变形行为。基于7075铝合金的晶粒形貌和结晶织构,通过极图反演方法建立了基于微结构的代表体积元素(RVE)模型。为了研究宏观应力-应变响应和微观结构演变,对已建立的基于微观结构的RVE模型进行了CPFE仿真。结果表明,模拟的应力-应变曲线和变形织构与7075铝合金的测量结果吻合良好。随着变形程度的增加,剩余的初始弱高斯织构分量趋向于强而稳定,这可能导致稳定的流应力。晶粒取向和晶粒取向错误对热压变形过程中的变形异质性有显着影响。在滚动法线平面中,可以在低角度晶界上保持应变和取向错误的连续性,而在高角度晶界处观察到应变和取向错误的不连续性。仿真结果表明,所建立的CPFE模型能够很好地描述7075铝合金在高温下的热压缩变形行为。

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