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Degree of Rock Fragmentation Under High Strain Rates

机译:高应变率下的岩石破碎度

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摘要

'This paper summarizes the investigation carried out on a wide range of rock types, subjected to high velocity impact to simulate explosive action. A Split-Hopkinson Bar apparatus was used to generate the high velocity impact. The rock samples included both homogeneous and isotropic, and anistropic types. The strian rate achieved was between 600 and 1200/sec. The respective measured dynamic compressive strengths were compared with their low strain-rate or static values. It was found that the ratio of the dynamic to static values ranged between 2.5 and 4.6. It was also determined that the high strain-rate loading produced finer fragment size distribution than the static loading. The fragment size distribution from the two strain-rate regimes has been further analyzed to establish correlation with rock types and the strength characteristics. The results also confirm that high strain-rate loading (i.e. high detonation pressure and high velocity of detonation in an explosive column) would significantly affect the degree of fineness in a blast.
机译:``本文总结了对各种岩石类型进行的研究,这些岩石受到高速冲击以模拟爆炸作用。使用斯普利特-霍普金森棒设备产生高速冲击。岩石样品包括均质和各向同性以及各向异性类型。达到的线速度在600至1200 /秒之间。将各自测得的动态抗压强度与其低应变率或静态值进行比较。发现动态值与静态值之比在2.5到4.6之间。还确定了高应变率载荷产生的片段尺寸分布比静态载荷更细。进一步分析了两种应变率状态下的碎片尺寸分布,以建立与岩石类型和强度特征的相关性。结果还证实,高应变率载荷(即高爆炸压力和高爆炸速度在爆炸柱中)将显着影响爆炸的细度。

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