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A Micromechanical Model of Additively Manufactured Aluminum Alloys

机译:增材制造铝合金的微观力学模型

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A micromechanical model is developed to predict the deformation behavior of additively manufactured aluminum alloys. Three-dimensional models of grain structures typical for different microregions of the melt pool are generated by the step-by-step packing method. A crystal plasticity-based constitutive model accounting for the elastic-plastic anisotropy of face-centered cubic crystals is employed to simulate the microscale deformation in an additively manufactured aluminum alloy under loading. The grain shape and texture effects on the plastic strain localization patterns are analyzed.
机译:建立了微机械模型来预测增材制造铝合金的变形行为。通过逐步填充方法,生成了熔池不同区域典型的晶粒结构的三维模型。基于晶体可塑性的本构模型考虑了面心立方晶体的弹塑性各向异性,被用来模拟增材制造的铝合金在载荷下的微观形变。分析了晶粒形状和织构对塑性应变局部化模式的影响。

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