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首页> 外文期刊>Rock Mechanics and Rock Engineering >The Dynamic Fracture Process in Rocks Under High-Voltage Pulse Fragmentation
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The Dynamic Fracture Process in Rocks Under High-Voltage Pulse Fragmentation

机译:高压脉冲破碎作用下岩石的动态断裂过程

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摘要

High-voltage pulse technology has been applied to rock excavation, liberation of microfossils, drilling of rocks, oil and water stimulation, cleaning castings, and recycling products like concrete and electrical appliances. In the field of rock mechanics, research interest has focused on the use of high-voltage pulse technology for drilling and cutting rocks over the past several decades. In the use of high-voltage pulse technology for drilling and cutting rocks, it is important to understand the fragmentation mechanism in rocks subjected to high-voltage discharge pulses to improve the effectiveness of drilling and cutting technologies. The process of drilling rocks using high-voltage discharge is employed because it generates electrical breakdown inside the rocks between the anode and cathode. In this study, seven rock types and a cement paste were electrically fractured using high-voltage pulse discharge to investigate their dielectric breakdown properties. The dielectric breakdown strengths of the samples were compared with their physical and mechanical properties. The samples with dielectric fractured were scanned using a high-resolution X-ray computed tomography system to observe the fracture formation associated with mineral constituents. The fracture patterns of the rock samples were analyzed using numerical simulation for high-voltage pulse-induced fragmentation that adopts the surface traction and internal body force conditions.
机译:高压脉冲技术已应用于岩石开挖,微化石的解放,岩石的钻探,油水刺激,铸件的清洁以及诸如混凝土和电器的回收产品。在岩石力学领域,在过去的几十年中,研究兴趣集中在使用高压脉冲技术进行岩石的切割和切割上。在使用高压脉冲技术钻凿岩石时,重要的是要了解在经受高压放电脉冲的岩石中的破碎机理,以提高钻凿技术的有效性。由于高压放电会在阳极和阴极之间的岩石内部产生电击穿,因此采用了使用高压放电对岩石进行钻孔的过程。在这项研究中,使用高压脉冲放电对7种岩石类型和一种水泥浆进行电破碎,以研究其介电击穿特性。将样品的介电击穿强度与其物理和机械性能进行了比较。使用高分辨率X射线计算机断层扫描系统扫描电介质断裂的样品,以观察与矿物成分有关的断裂形成。利用数值模拟分析了岩石样品的断裂模式,该模拟采用了表面牵引力和内力条件,对高压脉冲诱发的碎片进行了分析。

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