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首页> 外文期刊>Mechanics of materials >Experimental characterization and constitutive modeling of an aluminum 7085-T711 alloy under large deformations at varying strain rates, stress states, and temperatures
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Experimental characterization and constitutive modeling of an aluminum 7085-T711 alloy under large deformations at varying strain rates, stress states, and temperatures

机译:不同应变率,应力状态和温度下大变形下铝7085-T711合金的实验表征及本构体建模

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摘要

The strain rate, stress state, and temperature dependent mechanical behavior of a hot rolled aluminum 7085-T711 alloy is experimentally observed and subsequently modeled using a continuum Internal State Variable (ISV) plasticity-damage constitutive model. Structure-property relationships for the alloy are quantified using a series of microstructural analyses and mechanical property experiments. The calibrated ISV model for the Al 7085-T711 alloy is implemented in an implicit finite element code (Abaqus) to simulate the deformation of notch Bridgman tension specimens at a variety of stress states and temperatures. The ISV model accurately captures the material's elastoplastic behavior by predicting the stress state difference between tension, compression, and torsion and temperature dependent microstructure evolution under large deformations.
机译:通过连续内部状态变量(ISV)可塑性损伤本构模型,通过实验观察热轧铝7085-T711合金的应变速率,应力状态和温度依赖性机械特性。用一系列微观结构分析和机械性能实验量化合金的结构性质关系。 Al 7085-T711合金的校准ISV模型是在隐含的有限元代码(ABAQUS)中实现的,以模拟Notch Bridgman张力标本在各种应力​​状态和温度下的变形。 ISV模型通过预测大变形下的张力,压缩和扭转和温度依赖性微观结构演化之间的应力状态差,可以精确地捕获材料的弹性塑性行为。

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