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初始各向异性砂土不排水剪切特性试验研究

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罗强,李晓磊,王忠涛.初始各向异性砂土不排水剪切特性试验研究[J].,2019,59(6):629-637
初始各向异性砂土不排水剪切特性试验研究
Experimental study of shear behavior of inherent anisotropy sand in undrained condition
DOI:10.7511/dllgxb201906012
中文关键词:沉积方向毛细效应不排水试验剪切强度初始各向异性
英文关键词:sedimentary directioncapillary effectundrained testshearing strengthinherent anisotropy
基金项目:国家自然科学基金资助项目(51609117);河南省教育厅科学技术研究重点项目(14B560023);河南省高等学校青年骨干教师培养计划资助项目(2018GGJS118).
作者单位
罗强,李晓磊,王忠涛
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全文下载次数:351
中文摘要:
合理运用砂土的毛细特性制备具有水平和竖直沉积方向的松、密砂样,进行一系列三轴固结不排水剪切试验,分析沉积方向对砂土偏应力、应力比和孔压的影响,探讨砂土密实程度与该影响的关系.研究表明:沉积方向水平时松砂的偏应力极值比沉积方向竖直时的小.沉积方向水平时密砂偏应力发展呈应变软化特征,沉积方向竖直时密砂偏应力发展呈应变硬化特征.沉积方向水平时松砂应力比数值比沉积方向竖直时的数值小,沉积方向水平时密砂应力比数值比沉积方向竖直时的数值大.沉积方向水平时孔压发展速度比沉积方向竖直时的更快.沉积方向竖直时松砂试样更容易破坏,沉积方向水平时密砂试样更容易破坏.
英文摘要:
The capillary effect of sand is used to prepare loose and dense sand sample with horizontal and vertical sedimentary directions. A series of triaxial shear tests in undrained condition are performed to study sedimentary direction′s influence on the deviation stress, stress ratio and pore pressure, and the relation between former influence and relative density is also discussed. The study results show that the deviation stress′s peak value of loose sand with horizontal sedimentary direction is lower than that with vertical sedimentary direction.The deviation stress development of dense sand performs a strain softening characteristic when the sedimentary direction is horizontal, and the deviation stress development of dense sand performs a strain hardening characteristic when the sedimentary direction is vertical. The stress ratio of loose sand in the condition of horizontal sedimentary direction is lower than that in the condition of vertical sedimentary direction. The stress ratio of dense sand in the condition of horizontal sedimentary direction is bigger than that in the condition of vertical sedimentary direction. The pore pressure in the condition of horizontal sedimentary direction develops faster than that in the condition of vertical sedimentary direction. The loose sand sample is easy to reach failure stage with vertical sedimentary direction, and the dense sand sample is easy to reach failure stage with horizontal sedimentary direction.
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