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Experiment Research on Impact Fragmentation Mechanism of Single-indenter under Low Power Condition

机译:单压缩低功率条件下单压缩抗冲突化机制的实验研究

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In this paper, experiment research on rock impact fragmentation with low power consumption had been carried out. These single-indenter impact experiments on marble had completed discovered the single-indenter impact crushing mechanismunderlowimpactenergyof0.42J~1.88J. Using three-dimension scanning, the impact crashing crater's precise parameters, including shape, depth and volume, were acquired, and the relation curves between specific energy and impact energy were also gained. These experimental results show that the impact crushing crater's shape generally accords with the Sikarskie shear fracture theory, the crater's depth is less than 0.5mm and the crater's volume is less than 0.5mm~3 under0.42J~1.88J low energy impact loadings. The crater's volume and crushed volume are getting large along with impact energy increasing. However, the specific energy value decreases with impact energy increasing for therangeof0.42J~1.88J, and the specific energy is most economical when the impact energy is around 1.2J, these results could provide a basis for coring bit designing and parameters optimizing of lunar drilling.
机译:本文采用了低功耗岩石冲击碎片的实验研究。这些单压缩的大理石冲击实验已完成发现单压缩冲击机制下调LOWMIMPACTENERGYOF0.42J〜1.88J。采用三维扫描,获取冲击撞击火山口的精确参数,包括形状,深度和体积,以及特定能量和冲击能量之间的关系曲线。这些实验结果表明,冲击破碎火山口的形状大致与Sikarskie剪切断裂理论相符,火山口的深度是小于0.5mm和火山口的体积是小于0.5mm〜3 under0.42J〜1.88J低能量冲击载荷。火山口的体积和压碎的体积越来越大,越来越大。然而,特定的能量值随着气象0.42J〜1.88J的影响而增加,当冲击能量约为1.2J时,特定的能量是最经济的,这些结果可以为阴性比特设计和参数优化农历来提供基础钻孔。

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