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Quantitative Study on the Shear Strength Parameter of Undisturbed Loess

机译:未受干扰黄土剪切力量参数的定量研究

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The shear mechanical property is discussed to build a frame using physical property of loess through the shear test and theory of undisturbed loess under the different moisture content and time. It explained the shear strength with macroscopically intensity parameter and microcosmic intensity parameter, including moisture content, dry density, porosity ratio and time. As the dry density increases, the shear strength of undisturbed loess under the different moisture content will scatter. The resistance of the undisturbed loess goes against the shear deformation under the different moisture content. The moisture content has greater sensitivity to the macroscopical intensity parameter, but porosity ratio and dry density have litter sensitivity to it. When w=25, under normal stress 300-400kPa, the macroscopical intensity parameter tends towards stability greatly, explaining the structural stability under this situation of soil. The macroscopical intensity parameter theory and microcosmic intensity parameter theory under the structural parameter theory is feasible. It's a new method to express structural intensity theory of soil, to realize a kind of structural ideas of soil correctly, a kind of way to describe structural intensity of soil to ration.
机译:讨论了剪切力学性能以在不同水分含量和时间下通过剪切试验和未受干扰黄土的剪切试验和理论构建框架。它解释了宏观强度参数和微观强度参数的剪切强度,包括水分含量,干密度,孔隙率和时间。随着干密度的增加,不同水分含量下未受干扰黄土的剪切强度将分散。未受干扰黄土的电阻抵抗不同水分含量下的剪切变形。水分含量对宏观强度参数具有更大的敏感性,但孔隙率比和干密度对其具有凋落性敏感性。当W = 25时,在正常应力300-400kPa下,宏观强度参数大大倾向于稳定,解释了这种土壤的结构稳定性。结构参数理论下的宏观强度参数理论和微观强度参数理论是可行的。这是一种表达土壤结构强度理论的新方法,实现了一种正确的土壤结构思想,一种描述土壤结构强度的方法。

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