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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Split Hopkinson bar testing to study failure waves in brittle materials
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Split Hopkinson bar testing to study failure waves in brittle materials

机译:霍普金森分条测试,研究脆性材料中的破坏波

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Evaluation of the mechanical properties of brittle materials submitted to high strain rates is fundamental for a deep understanding of events that take place during ballistic impacts or high-speed mechanical processes. In special, brittle materials are an important component of ballistic protection systems. A number of tests were carried out on a short split Hopkinson pressure bar facility to obtain more information about the dynamic crack propagation on an experimental alumina-niobia composition. Strain rates as high as 1825 s(-1) were measured during dynamic testing of ceramic resistance. Stress and deformation history were obtained from the stress-strain curve. The fractured samples were analyzed by scanning electron microscopy (SEM). The images showed wave marks on the alumina surface. The electronic instrumentation acquired the spalling time leading to crack velocity values that are consistent with Broek's theory.
机译:评估承受高应变率的脆性材料的机械性能对于深入了解在弹道撞击或高速机械过程中发生的事件至关重要。在特殊情况下,脆性材料是防弹系统的重要组成部分。在霍普金森(Hopkinson)短压力分压设备上进行了许多测试,以获取有关在实验氧化铝-纳米比亚成分上动态裂纹扩展的更多信息。在陶瓷电阻的动态测试过程中测得的应变速率高达1825 s(-1)。从应力-应变曲线获得应力和变形历史。断裂的样品通过扫描电子显微镜(SEM)分析。图像在氧化铝表面显示出波纹痕迹。电子仪器获得的剥落时间导致裂纹速度值与Broek的理论一致。

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