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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >A laboratory study of anisotropic geomaterials incorporating recent micromechanical understanding
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A laboratory study of anisotropic geomaterials incorporating recent micromechanical understanding

机译:结合最新的微观力学知识对各向异性土工材料进行的实验室研究

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摘要

This paper presents an experimental investigation revisiting the anisotropic stress-strain-strength behaviour of geomaterials in drained monotonic shear using hollow cylinder apparatus. The test programme has been designed to cover the effect of material anisotropy, preshearing, material density and intermediate principal stress on the behaviour of Leighton Buzzard sand. Experiments have also been performed on glass beads to understand the effect of particle shape. This paper explains phenomenological observations based on recently acquired understanding in micromechanics, with attention focused on strength anisotropy and deformation non-coaxiality, i.e. non-coincidence between the principal stress direction and the principal strain rate direction. The test results demonstrate that the effects of initial anisotropy produced during sample preparation are significant. The stress-strain-strength behaviour of the specimen shows strong dependence on the principal stress direction. Preloading history, material density and particle shape are also found to be influential. In particular, it was found that non-coaxiality is more significant in presheared specimens. The observations on the strength anisotropy and deformation non-coaxiality were explained based on the stress-force-fabric relationship. It was observed that intermediate principal stress parameter b(b = (sigma (2) - sigma (3))/(sigma (1) - sigma (3))) has a significant effect on the non-coaxiality of sand. The lower the b-value, the higher the degree of non-coaxiality is induced. Visual inspection of shear band formed at the end of HCA testing has also been presented. The inclinations of the shear bands at different loading directions can be predicted well by taking account of the relative direction of the mobilized planes to the bedding plane.
机译:本文提出了利用空心圆柱体装置重新研究排水单调剪切作用下土工材料的各向异性应力-应变-强度行为的实验研究。该测试程序旨在涵盖材料各向异性,预剪切,材料密度和中间主应力对Leighton Buzzard砂土行为的影响。还对玻璃珠进行了实验,以了解颗粒形状的影响。本文基于最近获得的对微力学的理解来解释现象学的观察,重点关注强度各向异性和变形的非同轴性,即主应力方向与主应变率方向之间的不一致。测试结果表明,样品制备过程中产生的初始各向异性的影响非常明显。样品的应力-应变-强度行为显示出对主应力方向的强烈依赖性。预加载历史,材料密度和颗粒形状也有影响。特别是,发现在预剪试样中,非同轴度更为显着。基于应力-力-织物关系解释了强度各向异性和变形非同轴性的观察结果。观察到,中间主应力参数b(b =(sigma(2)-sigma(3))/(sigma(1)-sigma(3)))对砂的非同轴度具有重要影响。 b值越低,引起的非同轴度越高。还提出了目视检查在HCA测试结束时形成的剪切带的方法。通过考虑动员平面相对于层理平面的相对方向,可以很好地预测剪切带在不同载荷方向上的倾斜度。

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