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Determination of instantaneous breaking rate by Geological Strength Index, Block Punch Index and power of impact hammer for various rock mass conditions

机译:通过地质强度指数,整体冲击指数和冲击锤功率来确定各种岩体条件下的瞬时破碎率

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摘要

In mining and construction industries, selection of appropriate excavation method and equipment significantly affects the project feasibility. In the selection, the most important parameters are the geomechan-ical properties of the rock mass in the excavation route as extensively reviewed in literature. The most widely used geomechanical parameter is uniaxial compressive strength (UCS). However, UCS laboratory test requires time consuming and expensive sampling and core sample preparation processes, which can be quite difficult or sometimes impossible for a weak rock material taken from foliated, laminated or thinly bedded rock masses of low Rock Quality Designation (RQD) values (0-20%). For these reasons. Block Punch Index (BPI) test, which has thus gained an importance for the last decade because of its simplicity, has become applicable to determine rock strength for highly-jointed and weak rocks of low RQD. BPI provides significant convenience particularly for laminated-foliated-anisotropic rocks. In this study, the excavability of various rocks with impact hammer was investigated using Geological Strength Index (GSI), power of impact hammer (P), BPI. Valuable results from which the users could benefit were obtained.
机译:在采矿和建筑行业中,选择合适的挖掘方法和设备会大大影响项目的可行性。在选择中,最重要的参数是在文献中广泛综述的开挖路径中岩体的地质力学特性。最广泛使用的岩土力学参数是单轴抗压强度(UCS)。但是,UCS实验室测试需要耗时且昂贵的采样和岩心样品制备过程,对于从低岩石质量指定(RQD)值的片状,层状或薄层岩体中提取的弱岩石材料,这可能非常困难,有时甚至是不可能的( 0-20%)。由于这些原因。块冲孔指数(BPI)测试由于其简单性而在过去的十年中因此变得非常重要,已经可以用于确定低RQD的高连接和弱岩石的岩石强度。 BPI提供了极大的便利,特别是对于层状各向异性的岩石。在这项研究中,使用地质强度指数(GSI),冲击锤功率(P),BPI研究了冲击锤对各种岩石的开挖性。获得了用户可以受益的宝贵成果。

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