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Edge on Impact Simulations and Experiments

机译:影响模拟和实验的边缘

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In the quest to understand damage and failure of ceramics in ballistic events, simplified experiments have been developed to benchmark behavior. One such experiment is known as edge on impact (EOI). In this experiment, an impactor strikes the edge of a thin square plate, and damage and cracking that occur on the free surface are captured in real time with high speed photography. If the material of interest is transparent, additional information regarding damage and wave mechanics within the sample can be discerned. Polarizers can be used to monitor stress wave propagation, and photography can record internal damage. This information serves as an excellent benchmark for validation of ceramic and glass constitutive models implemented in dynamic simulation codes. In this paper, recent progress towards predictive modeling of EOI is discussed. Time-dependent crack propagation and damage front evolution in silicon carbide (SiC) and aluminum oxynitride (AlON) ceramics are predicted using the Kayenta macroscopic constitutive model. Aspects regarding modeling material failure, variability, and volume scaling are noted. Mesoscale simulations of dynamic failure of anisotropic ceramic crystals facilitate determination of limit surfaces entering the macroscopic constitutive model, offsetting limited available experimental data.
机译:在寻求理解弹道事件中陶瓷的损伤和失败的过程中,已经开发了简化的实验与基准行为。一个这样的实验称为影响的边缘(EOI)。在该实验中,冲击器撞击了薄方形板的边缘,并且在自由表面上发生的损坏和开裂以高速摄影实时捕获。如果感兴趣的材料是透明的,则可以辨别出样品中的损坏和波力学的附加信息。偏振器可用于监测应力波传播,摄影可以记录内部损坏。该信息用作用于在动态仿真代码中实现的陶瓷和玻璃本构模型的优异基准测试。在本文中,讨论了最近迈出了EOI预测建模的进展。使用Kayenta宏观本构模型预测了碳化硅(SiC)和氧氮化铝(AlON)陶瓷中的时间依赖性裂缝繁殖和损伤前进化。关于建模材料故障,可变性和体积缩放的方面。各向异性陶瓷晶体动态失效的Messcale模拟促进了进入宏观本构模型的限制表面的测定,抵消了有限的可用实验数据。

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