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首页> 外文期刊>International Journal of Solids and Structures >Enhanced ballistic performance of confined multi-layered ceramic targets against long rod penetrators through interface defeat
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Enhanced ballistic performance of confined multi-layered ceramic targets against long rod penetrators through interface defeat

机译:通过界面破坏,增强了多层陶瓷靶对长棒穿透器的弹道性能

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摘要

Impact recovery experiments on confined multi-layered ceramic targets an performed to identify materials and structural design issues in interface defeat of long rod tungsten heavy alloy (WHA) penetrators, In-situ stress measurements are made, with embedded manganin/constantan gauges, and velocity histories of the target rear surface are measured using an interferometric technique. Material response to penetration is examined by considering different hardness of the cover steel plate and two types of ceramics, viz., Alumina and TiB2. The combined material-structural response is examined by changing the thickness of the graphite plate, used to accommodate the deforming WHA penetrator, and by welding top and bottom plates with the middle plate to increase the stiffness of the assembled multi-layered target. In total, eight shots are performed in the velocity range of 1.5-1.7 km/s. Ceramic damage is studied by quantifying the size and distribution of fragments in recovered sample. SEM and optical microscopy performed on recovered ceramic plates show that microcracking is the dominant failure mode in multi-layered ceramic targets. Crack surface area per unit volume is estimated, on cross sections of the ceramic targets along several orientations. Correlation between axial stress and crack density is investigated. Examination of the post-shot multi-layered ceramic targets revealed complete and partial interface defeat of long rod tungsten heavy alloy penetrators. Targets with extra stiffness, on account of weld and larger bottom prate thickness, achieved complete defeat of the penetrator. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 13]
机译:在受限的多层陶瓷靶材上进行冲击恢复实验,以识别长棒钨重合金(WHA)穿透器界面失效中的材料和结构设计问题,并采用嵌入式锰/常数规和速度进行原位应力测量使用干涉技术来测量目标背面的历史。通过考虑覆盖钢板和两种类型的陶瓷(即氧化铝和TiB2)的不同硬度来检查材料对渗透的响应。通过改变用于容纳变形的WHA穿透器的石墨板的厚度,以及通过将顶板和底板与中间板焊接以增加组装好的多层靶的刚度,来检查组合的材料-结构响应。总共在1.5-1.7 km / s的速度范围内进行八次射击。通过量化回收样品中碎片的大小和分布来研究陶瓷损伤。在回收的陶瓷板上进行的SEM和光学显微镜检查表明,微裂纹是多层陶瓷靶材的主要失效模式。估计陶瓷靶沿几个方向的横截面的每单位体积的裂纹表面积。研究了轴向应力与裂纹密度之间的关系。射击后的多层陶瓷靶的检查显示出长杆钨重合金穿透器的完全和部分界面破坏。由于焊接和底部格栅厚度较大,具有更高刚度的目标可以完全击穿穿透器。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:13]

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