期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
Triaxial tension and compression tests on saturated lime-treated plastic clay upon consolidated undrained conditions
1
作者 Kuchvichea Kan Bertrand François 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第12期3328-3342,共15页
Lime-treatment of clayey soil significantly increases its shear and tensile strengths.Consequently,the tensile strength of lime-treated soils deserves careful investigation because it may provide an appreciable benefi... Lime-treatment of clayey soil significantly increases its shear and tensile strengths.Consequently,the tensile strength of lime-treated soils deserves careful investigation because it may provide an appreciable benefit for the stability of earth structures.This study investigates the tensile and shear strengths of an untreated and lime-treated(3%of lime)plastic clay at different curing times(7 d,56 d and 300 d),through triaxial tension and compression tests.Triaxial tension tests are performed using“diabolo-shaped”soil samples with reduced central section,such that the central part of the specimen can be under axial tension while both end-sections remain in axial compression.Consolidated undrained(CU)conditions with measurement of pore water pressure allow analyzing the failure conditions through effective stress and total stress approaches.The results of triaxial tension tests reveal that the failure occurs under tensile mode at low confining pressure while extensional shear failure mode is observed under higher confining pressure.Consequently,a classical Mohr-Coulomb shear failure criterion must be combined with a cut-off tensile strength criterion that is not affected by the confining pressure.When comparing shear failure under compression and tension,a slight anisotropy is observed. 展开更多
关键词 Tensile strength consolidated undrained(CU)triaxial test Lime-treated soils Failure criterion
下载PDF
反压诱导有效应力增生模式与土体强度关联机制研究
2
作者 李永强 许言 +2 位作者 陈波 熊健辉 卢玢宇 《岩土力学》 EI CAS CSCD 北大核心 2024年第8期2338-2350,共13页
反压施加是提高土体饱和度的常用有效方法,但易引起土体强度参数表观偏离。采用标准球形玻璃珠砂,开展基准固结不排水(consolidated undrain,CU),固结排水(consolidated drained,CD)及干样试验,对偏应力与孔压(或体积应变)数据进行实时... 反压施加是提高土体饱和度的常用有效方法,但易引起土体强度参数表观偏离。采用标准球形玻璃珠砂,开展基准固结不排水(consolidated undrain,CU),固结排水(consolidated drained,CD)及干样试验,对偏应力与孔压(或体积应变)数据进行实时精准测记与对比分析,借助p′-q应力路径图,显著呈现并定量分析了反压施加对土体力学特性的影响规律,初步厘清了反压施加对土体强度的影响机制。反压设置对CU试验结果影响显著,孔压发展形态控制着偏应力发展的形态,最终影响强度参数的确定,但应力路径始终约束在修正类剑桥模型的框架范围内。孔压发展模式和速率主要受限于反压设置大小及试样相对密实度,反压越大,孔压潜在变化幅度越大,进而导致偏应力变化区间增大;相对密实度越大,孔压发展速率越大,偏应力增速渐大。初始状态相同时,CU试验孔压发展与CD试验体积应变发展趋势高度一致,展示了试样体积应变势在不同边界条件下的共同本质。初步给出了临界状态时CU残余强度定量预测公式,根据相对密实度及反压值可初步定量评定残余孔压值,进而可确定CU残余强度。 展开更多
关键词 反压 偏应力 固结不排水(consolidated undrain CU)强度 有效应力路径 球形玻璃砂
下载PDF
Understanding the microscopic moisture migration in pore space using DEM simulation 被引量:1
3
作者 Yuan Guo Xiong(Bill) Yu 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2015年第2期171-177,共7页
The deformation of soil skeleton and migration of pore fluid are the major factors relevant to the triggeringof and damages by liquefaction. The influence of pore fluid migration during earthquake has beendemonstrated... The deformation of soil skeleton and migration of pore fluid are the major factors relevant to the triggeringof and damages by liquefaction. The influence of pore fluid migration during earthquake has beendemonstrated from recent model experiments and field case studies. Most of the current liquefactionassessment models are based on testing of isotropic liquefiable materials. However the recent NewZealand earthquake shows much severer damages than those predicted by existing models. A fundamentalcause has been contributed to the embedded layers of low permeability silts. The existence ofthese silt layers inhibits water migration under seismic loads, which accelerated liquefaction and causeda much larger settlement than that predicted by existing theories. This study intends to understand theprocess of moisture migration in the pore space of sand using discrete element method (DEM) simulation.Simulations were conducted on consolidated undrained triaxial testing of sand where a cylindersample of sand was built and subjected to a constant confining pressure and axial loading. The porositydistribution was monitored during the axial loading process. The spatial distribution of porosity changewas determined, which had a direct relationship with the distribution of excess pore water pressure. Thenon-uniform distribution of excess pore water pressure causes moisture migration. From this, themigration of pore water during the loading process can be estimated. The results of DEM simulationshow a few important observations: (1) External forces are mainly carried and transmitted by the particlechains of the soil sample; (2) Porosity distribution during loading is not uniform due to nonhomogeneoussoil fabric (i.e. the initial particle arrangement and existence of particle chains); (3)Excess pore water pressure develops differently at different loading stages. At the early stage of loading,zones with a high initial porosity feature higher porosity changes under the influence of external loading,which leads to a larger pore pressure variation (increase or decrease) in such zones. As the axial strainincreases, particle rearrangement occurs and final porosity distribution has minor relationship with theinitial condition, and the pore pressure distribution becomes irregular. The differences in the porepressure development imply that water will migrate in the pore space in order to balance the pore waterpressure distribution. The results of this simulation offer an insight on the microscale water migration inthe soil pore space, which is important for holistic description of the triggering of soil liquefaction in lightof its microstructure. 2015 Institute of Rock and Soil Mechanics, Chinese Academy of Sciences. Production and hosting byElsevier B.V. All rights reserved. 展开更多
关键词 Moisture migration consolidated undrained triaxial test Particle chains Porosity distribution Pore water pressure
下载PDF
Performance of fiber reinforced clayey sand composite
4
作者 Amin CHEGENIZADEH Hamid NIKRAZ 《Frontiers of Structural and Civil Engineering》 SCIE EI 2012年第2期147-152,共6页
Soils and their related behavior have always been the subject of many studies.Recent researches show some interests in investigation of inclusion of randomly distributed fiber in soil.This study focuses on effect of f... Soils and their related behavior have always been the subject of many studies.Recent researches show some interests in investigation of inclusion of randomly distributed fiber in soil.This study focuses on effect of fiber inclusion on the strength and other parameters of clayey sand composite material.First part of this study is related to effective parameters on strength of the clayey sand composite with using natural fiber and plastic fiber and different fiber contents and length.Triaxial consolidated undrained(CU)tests were carried out to investigate behavior of the composite under different condition.The fiber percentage varied from 0%(for unreinforced samples)to 4%and fiber length varied from 8 to 25 mm.The fiber length and fiber content found to play important rule on the strength of fiber reinforced composite. 展开更多
关键词 TRIAXIAL consolidated undrained(CU) FIBER STRENGTH
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部