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High Strain Rate Response of Layered Micro Balloon Filled Aluminum

机译:层状微气囊填充铝的高应变率响应

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Recent interest in blast mitigation has given rise to the development of many novel materials and systems. Sandwich materials composed of a soft deformable core sandwiched between two strong face sheets and multilayer structures with alternating deformable and stiff layers have been actively explored for blast mitigation. Understanding the deformation, failure and energy absorption characteristics of such systems is critical for their successful design and application. The present work focuses on understanding the high strain rate response of multilayer structures in which the soft deformable layer is made of micro-balloon filled aluminum. High strain rate experiments are performed using a split Hopkinson pressure bar (SHPB). An ultra high speed camera is used simultaneously to resolve the deformation and failure process in real-time. Experiments are conducted on micro-balloon filled aluminum with different density to understand the effect of the density on the stress-strain characteristics.
机译:最近对爆炸缓解的兴趣引起了许多新型材料和系统的发展。已经积极探索了由夹在两个强面板和多层结构之间的软可变形芯组成的夹层材料,用于鼓压缓解。了解这种系统的变形,故障和能量吸收特性对于他们的成功设计和应用至关重要。本工作侧重于理解多层结构的高应变率响应,其中软可变形层由微球填充铝制成。使用分裂霍普金森压棒(SHPB)进行高应变速率实验。同时使用超高速摄像机来实时解决变形和故障过程。实验在微球填充铝上进行,具有不同的密度,以了解密度对应力 - 应变特性的影响。

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