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Characterization and Modelling of the Damage Behavior of Extruded Aluminum Profiles for Crash Simulations

机译:挤压铝型材的碰撞行为表征和建模

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摘要

The damage behavior of aluminum profiles depends strongly on the stress state. Many investigations have shown that both ductile and shear fracture have to be taken into account in damage analysis. Since fracture strains of aluminum profiles are relatively low, damage modelling has to be included in component simulations. However, it is an open question, which kind of damage model can be used for crash simulations and which tests should be performed in order to calibrate the model. An extruded aluminum profile with double chambers of AA6060-T79 was characterized under different stress triaxialities and shear ratios. The damage criteria IDS (Instability, Ductile and Shear fracture) in ABAQUS/Explicit were used for the simulations. An explicit relationship between triaxiality and shear ratio was derived for plane stress state. The influence of the model parameter k_s on the overlapping of both criteria (ductile and shear fracture) was systematically studied for shell element applications. The applied damage model was validated by comparing experimental and calculated results of component tests.
机译:铝型材的损坏行为在很大程度上取决于应力状态。许多研究表明,在破坏分析中必须同时考虑韧性断裂和剪切断裂。由于铝型材的断裂应变相对较低,因此在组件模拟中必须包含损伤建模。然而,这是一个悬而未决的问题,哪种损伤模型可用于碰撞仿真,以及应执行哪些测试以校准模型。在不同的应力三轴性和剪切比下,对具有双室AA6060-T79的挤压铝型材进行了表征。模拟中使用了ABAQUS / Explicit中的破坏准则IDS(不稳定性,韧性和剪切断裂)。对于平面应力状态,得出了三轴性与剪切比之间的明确关系。对于壳单元应用,系统地研究了模型参数k_s对两个准则(延性和剪切断裂)重叠的影响。通过比较组件测试的实验结果和计算结果,验证了所应用的损伤模型。

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