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Experimental study of the direct shear mechanical characteristics of the sand with different granular diameter

机译:不同颗粒直径的砂直剪力学特性的实验研究

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DRS-1 high normal stress direct and residual shear apparatus was used to study the direct shear mechanical characteristics of the sand with different granular diameter under different normal stress. The results show that for three kinds of sand (coarse sand, medium sand and fine sand) the curve of shear stress-shear displacement presents strain softening when the normal stress, (7, is less than, or equal to, 1.6MPa, but strain hardening occurs when (7 is greater than 1.6MPa. At the same time, the relation of shear stress and displacement of the sand is closed to that of the Clough-Duncan hyperbola when (7 is greater than 1.6MPa. The mechanism of shear strength is various under different normal stress condition. The volume of the sand expands when the normal stress is low (e. g. 0.4MPa, 0.8MPa) and the energy that the volume expansion needs is predominant in the shear strength. On the contrary, the volume contraction of the sand is observed under high normal stress condition (e. g. 8MPa, 12MPa) and the energy that the grain breakage needs plays a main role in the shear strength. The shear stress shows a good linear correlation of the normal stress for different diameter granular, that is to say, all the shear strength increases evidently with normal stress.
机译:DRS-1高正常应力直接和残留剪切装置用于研究不同正常应力下具有不同颗粒直径的砂的直接剪切力学特性。结果表明,对于三种沙子(粗砂,中砂和细砂),剪切应力剪切位移的曲线呈现菌株软化,(7,小于或等于1.6MPa,但当(7大于1.6MPa时,会发生应变硬化。当(7大于1.6MPa时,剪切应力和砂岩的剪切应力和位移的关系被关闭。剪切机制强度在不同的正常应力条件下各种。当正常应力低(例如0.4MPa,0.8MPa)和体积膨胀需要在剪切强度占主导地位的能量时,砂的体积膨胀。相反,体积在高正常应力条件下(例如8MPA,12MPa)和晶粒破损需求在剪切强度中发挥主要作用的能量观察到砂的收缩。剪切应力显示出不同直径粒度的正常应力的良好线性相关性,T.帽子是说,所有剪切力量都随着正常的压力而显然增加。

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