首页> 外文会议>2003 TMS Annual Meeting, Mar 2-6, 2003, San Diego, California >Dynamic Compressive Failure of Alumina under High-Velocity Impact
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Dynamic Compressive Failure of Alumina under High-Velocity Impact

机译:高速冲击下氧化铝的动态压缩破坏

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Failure modes in ceramics range from brittle to ductile depending on the deformation conditions. The micro-mechanisms of their compression failure have been examined over a wide range of deformation rates from quasi-static to ballistic strain rates. Data on damage initiation and evolution in ceramic armor materials are used to decipher the essential features of failure phenomena. Under moderate confining pressures and at moderate deformation rates, brittle failure involves initiation of micro-cracks at dominant micro-flaws and pre-existing micro-cracks, and their subsequent interactive growth, leading to axial splitting, faulting or a mixture of brittle-ductile failure. Under great confining pressures, common in ballistic impact, ceramics pulverize into fine powder. Classical crack-growth models seem inadequate for representing the actual failure initiation and evolution. Transmission electron microscopy of recovered Al_2O_3 powder of impact-penetrated ceramics shows extensive twinning with sub-micron spacing. Dynamic compression of ceramics has also shown extensive dislocation activities. These observations have further improved the understanding of potential mechanisms of pulverization of ceramics under extreme compression.
机译:陶瓷的失效模式从脆性到延性,取决于变形条件。在从准静态到弹道应变率的大范围的变形率范围内,研究了它们的压缩破坏的微观机制。陶瓷铠装材料中的破坏起因和演化数据用于解释破坏现象的基本特征。在中等围压和中等变形速率下,脆性破坏包括在主要的微裂纹和先前存在的微裂纹处引发微裂纹,以及它们随后的相互作用增长,从而导致轴向分裂,断裂或脆性-延性混合失败。在巨大的围压下(通常在弹道冲击中),陶瓷会粉碎成细粉。经典的裂纹扩展模型似乎不足以表示实际的故障萌生和演化。回收的冲击穿透陶瓷的Al_2O_3粉末的透射电子显微镜显示出亚微米间距的广泛孪晶。陶瓷的动态压缩也显示出广泛的位错活动。这些观察结果进一步增进了人们对极端压缩下陶瓷粉化潜在机理的理解。

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