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On the interface friction in direct shear test

机译:直接剪切试验中的界面摩擦

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Distinct element simulations for the direct shear box tests on a dense and a loose 2D sample of a mixture of binary diameter cylinders were performed. Special attention is focused on the friction between the internal surface of the shear box and the sample. In the conventional direct shear test, where the up/downward movement of the upper shear box is restrained and the lower shear box moves horizontally, the frictional force that acts on the sample at the internal surface of the upper shear box is downward for the dense sample and upward for the loose sample, causing the real shear strength to be larger for the dense sample and smaller for the loose sample than the one calculated from the externally applied normal force. Two possible improvements for the conventional direct shear test to reduce the frictional force of the shear box are introduced: one is free of the upper shear box vertically by adding the low friction Teflon rods and a platen between the upper shear box and the bearing ring that measures the shear force; the other is to pull the upper shear box with a flexible rope or wire. The distinct element method simulation and the experimental results show that both these two improvements can reduce the influences of the interface frictional force on the shear strengths.
机译:在密实和松散的二元直径圆柱体混合物的二维样品上进行直接剪切箱测试的不同元素模拟。特别注意的是剪切箱内表面与样品之间的摩擦。在传统的直接剪切试验中,上剪切箱的向上/向下运动受到限制,下剪切箱水平移动,作用在样品上的剪切力在上剪切箱的内表面向下,从而致密与从外部施加的法向力计算得出的剪切强度相比,实密度样品的实际抗剪强度更大,而松散样品的实际抗剪强度则更大。对常规直接剪切试验以减小剪切箱的摩擦力进行了两种可能的改进:一种是通过在下部剪切箱和轴承套圈之间增加低摩擦力的特氟龙棒和压板来垂直地摆脱上部剪切箱的作用。测量剪切力;另一种是用一根柔性绳或钢丝拉上剪切箱。独特的单元法仿真和实验结果表明,这两种改进都可以减少界面摩擦力对剪切强度的影响。

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