评价土粒特性对内摩擦角的影响

A. Rasti, Hamid Ranjkesh Adarmanabadi, M. Pineda, Jesse Reinikainen
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引用次数: 12

摘要

摩擦角是评价土结构的关键设计参数之一,由莫尔圆破坏准则推导而来。土摩擦角是岩土工程中用于量化土抗剪强度的实验室工程参数。本文进行了砂土粒径对不同砂质土抗剪强度特性影响的试验研究。直接剪切试验设备是有用的模拟各种应力制度,以确定土壤的强度,采用缓慢移动的横向力沿剪切面固结样品。为了研究土体的界面特性,进行了一系列的直剪试验。土壤样本取自美国新墨西哥州的不同地点。根据ASTM D3080进行了一系列对称直剪试验,并对试验结果进行了分析,探讨了土粒径对土抗剪强度特性的影响。为了尽量减少误差,电子传感器被用来测量垂直和水平位移。DS7是岩土测试软件,通过使用数据记录器来控制测试。研究表明,不同类型砂土的最大竖向变形是同时产生的。结果表明,土的摩擦角受粗粒物料的影响较大。因此,粒径较大的砂土比粒径较小的砂土具有更高的摩擦角。通过非线性回归分析,确定了土体摩擦角与土体颗粒特性之间的直接关系。
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Evaluating the Effect of Soil Particle Characterization on Internal Friction Angle
One of the critical design parameters used in evaluating soil structure is the friction angle, derived from Mohr's Circle failure criterion. The soil friction angle is an engineering parameter estimated in the laboratory to quantify the soil shear strength in geotechnical applications. This paper indicates an experimental study investigating the impact of particle size on different sandy soils shear strength behavior. The direct shear test equipment is useful for simulating various stress regimes to determine the soil strength by employing a slow moving lateral force to a consolidated sample along a shear plane. A series of direct shear tests were conducted to investigate the interface behavior of soil. Soil samples were selected from different locations in New Mexico, United States. The influence of soil particle size on the soil's shear strength behavior is discussed by performing a series of symmetric direct shear tests according to ASTM D3080 and analyzing the results. To minimize errors, electronic transducers were used to measure vertical and horizontal displacements. DS7 is geotechnical testing software controlling the test by utilizing a data logger. The investigation indicates that the maximum vertical deformation for all different kinds of sandy soils accrued simultaneously. It was concluded that a soil's friction angle is affected by coarse-grained material. Accordingly, sandy soils with bigger particle size record a higher friction angle than soils containing small particles. Furthermore, a non-linear regression analysis was performed to determine the direct relationship between soil's friction angle and soil particle characteristics.
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