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Experimental and Numerical Investigations of High-Speed Projectile Impacts on 7075-T651 Aluminum Plates

机译:高速弹丸撞击7075-T651铝板的实验和数值研究

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摘要

Simulation of the material failure under high strain rate conditions is one of the most difficult problems in the finite element analyses, and many researchers have tried to understand and reproduce dynamic material fracture. In this study, we investigate a failure criterion that minimizes the mesh dependency at high strain rates and incorporates the criterion into the Johnson-Cook constitutive relationship by developing a user-defined material model. Impact tests were performed using a gas-gun system in order to investigate the response of the 7075-T651 aluminum plate in high-speed collision. On the other hand, numerical simulations are carried out by considering various element sizes and the relationship between element size and failure strain is inversely obtained using numerical results. By accommodating the relationship into the damage model and implementing in the user-defined material model, mesh dependency is significantly reduced, and sufficient accuracy is achieved with alleviated computational cost than the existing damage model. This study suggests an element size-dependent damage criterion that is applicable for impact simulation and it is expected that the criterion is useful to obtain accurate impact responses with a small computational cost.
机译:在高应变速率条件下进行材料破坏的模拟是有限元分析中最困难的问题之一,许多研究人员试图理解和再现动态材料的断裂。在这项研究中,我们研究了一种破坏准则,该准则可以最大程度地降低高应变率下的网格依赖性,并通过开发用户定义的材料模型将准则纳入Johnson-Cook本构关系。为了研究7075-T651铝板在高速碰撞中的响应,使用气枪系统进行了冲击试验。另一方面,通过考虑各种元件尺寸来进行数值模拟,并且使用数值结果反求元件尺寸与破坏应变之间的关系。通过将这种关系容纳到损伤模型中并在用户定义的材料模型中实施,可以大大降低网格依赖性,并以比现有损伤模型更低的计算成本实现足够的精度。这项研究提出了一种适用于冲击模拟的与元素尺寸有关的损伤判据,并期望该判据可用于以较小的计算成本获得准确的冲击响应。

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