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An experimental and numerical investigation of sphere impact on alumina ceramic

机译:对氧化铝陶瓷球体影响的实验与数值研究

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摘要

In this study, the impact of a steel spherical projectile on an alumina ceramic is considered. New experimental and numerical results are presented and analysed. Numerical results are obtained using the Finite Element Method and the upgraded viscosity regularized Johnson-Holmquist-2 constitutive model to describe the ceramic material behaviour. First, a short investigation is done using 2d Finite Element simulations to establish a proper numerical framework. Second, the numerical framework is extended to 3d and experimental results are used to validate the framework and the ceramic material model. This shows that all relevant ceramic failure mechanisms are captured correctly and the framework and model can be used to simulate sphere impact on ceramic material. Third, the simulations are used to analyse the failure processes in the ceramic material in more detail. Here the focus lies in obtaining information which can currently not be retrieved from experiments. Timing and interaction of propagating conical and radial cracks are investigated and corroborate with the typical failure mechanisms observed in sphere impact on ceramic material.
机译:在这项研究中,考虑了钢球形射弹对氧化铝陶瓷的影响。提出和分析了新的实验和数值结果。使用有限元方法和升级的粘度正则化Johnson-Holmquist-2本构模型获得数值结果来描述陶瓷材料行为。首先,使用2D有限元模拟来完成简短的调查,以建立适当的数值框架。其次,数值框架扩展到3D,使用实验结果用于验证框架和陶瓷材料模型。这表明正确捕获所有相关陶瓷故障机制,框架和模型可用于模拟陶瓷材料的球体。第三,模拟用于更详细地分析陶瓷材料中的故障过程。这里,焦点在于获得当前无法从实验中检索的信息。研究了传播锥形和径向裂缝的定时和相互作用,并用典型的损失机构对陶瓷材料产生的典型故障机制进行证实。

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