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Experimental and Numerical Study of the Effect of an Oversize Particle on the Shear Strength of Mined-Rock Pile Material

机译:超大颗粒对矿山岩石桩材料抗剪强度影响的试验与数值研究

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During in situ direct shear testing on the Questa mined-rock pile material, oversize rock fragments were encountered in the shear box. To study the effect of an oversize particle on the measured friction angles and cohesions, both laboratory and numerical direct shear tests were conducted on unsaturated samples of the rock pile material. In the numerical simulation, a hybrid discrete-finite element method was implemented in which the rock pile material was modeled with discrete particles while the shear box was modeled with finite elements. Both the numerical and physical tests suggest an increase in the measured shear strength of the material due to the presence of an oversize particle in the box. More specifically, the presence of an oversize particle causes an increase in friction angle while cohesion in most situations decreases. The location of the oversize particle along the shear plane was found to be important, as it can modify the failure mechanism.
机译:在对Questa矿山岩石桩材料进行原位直接剪切测试期间,在剪切盒中遇到了特大的碎石。为了研究超大颗粒对测得的摩擦角和内聚力的影响,对岩石桩材料的不饱和样品进行了实验室和数值直接剪切试验。在数值模拟中,采用了一种混合离散-有限元方法,其中用离散颗粒对岩堆材料进行建模,而对剪切箱进行有限元建模。数值测试和物理测试均表明,由于包装箱中存在超大颗粒,材料的测量剪切强度有所提高。更具体地,在大多数情况下,过大颗粒的存在导致摩擦角增加而内聚力降低。发现超大颗粒沿剪切平面的位置很重要,因为它可以改变破坏机理。

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