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A constitutive model for evaluation of mechanical behavior of fiber-reinforced cemented sand 被引量:3
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作者 Hadi Abioghli amir hamidi 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2019年第2期349-360,共12页
The aim of this study is to present a constitutive model for prediction of the mechanical behavior of fiberreinforced cemented sand. For this purpose, a generalized plasticity constitutive model of sandy soil is selec... The aim of this study is to present a constitutive model for prediction of the mechanical behavior of fiberreinforced cemented sand. For this purpose, a generalized plasticity constitutive model of sandy soil is selected and the parameters of the model are determined for three types of sandy soils using the results of triaxial tests. Next, the proposed model is developed using the existing models based on the physicomechanical characteristics of fiber-reinforced cemented sand. The elastic parameters, flow rule and hardening law of the base model are modified for fiber-reinforced cemented sand. To verify the proposed model, the predicted results are compared with those of triaxial tests performed on fiber-reinforced cemented sand. Finally, the efficiency of the proposed model is studied at different confining pressures, and cement and fiber contents. 展开更多
关键词 Fiber-reinforced CEMENTED SAND CONSTITUTIVE model HARDENING law Flow rule
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Thermo-mechanical constitutive modeling of unsaturated clays based on the critical state concepts 被引量:2
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作者 Saeed Tourchi amir hamidi 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2015年第2期193-198,共6页
A thermo-mechanical constitutive model for unsaturated clays is constructed based on the existingmodel for saturated clays originally proposed by the authors. The saturated clays model was formulatedin the framework o... A thermo-mechanical constitutive model for unsaturated clays is constructed based on the existingmodel for saturated clays originally proposed by the authors. The saturated clays model was formulatedin the framework of critical state soil mechanics and modified Cam-clay model. The existing model hasbeen generalized to simulate the experimentally observed behavior of unsaturated clays by introducingBishop's stress and suction as independent stress parameters and modifying the hardening rule and yieldcriterion to take into account the role of suction. Also, according to previous studies, an increase intemperature causes a reduction in specific volume. A reduction in suction (wetting) for a given confiningstress may induce an irreversible volumetric compression (collapse). Thus an increase in suction (drying)raises a specific volume i.e. the movement of normal consolidation line (NCL) to higher values of voidratio. However, some experimental data confirm the assumption that this reduction is dependent on thestress level of soil element. A generalized approach considering the effect of stress level on themagnitude of clays thermal dependency in compression plane is proposed in this study. The number ofmodeling parameters is kept to a minimum, and they all have clear physical interpretations, to facilitatethe usefulness of model for practical applications. A step-by-step procedure used for parameter calibrationis also described. The model is finally evaluated using a comprehensive set of experimental datafor the thermo-mechanical behavior of unsaturated soils.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 Constitutive model Unsaturated clays PLASTICITY Cam-clay Critical state
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Improvement parameters in dynamic compaction adjacent to the slopes 被引量:2
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作者 Elham Ghanbari amir hamidi 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2015年第2期233-236,共4页
Dynamic compaction is a cost-effective method commonly used for improvement of sandy soils. Anumber of researchers have investigated experimentally and numerically the improvement parametersof soils using dynamic comp... Dynamic compaction is a cost-effective method commonly used for improvement of sandy soils. Anumber of researchers have investigated experimentally and numerically the improvement parametersof soils using dynamic compaction, such as crater depth, improvement depth, and radial improvement,however, these parameters are not studied for improvement adjacent to the slopes or trenches. In thisresearch, four different slopes with different inclinations are modeled numerically using the finiteelement code ABAQUS, and impact loads of dynamic compaction are applied. The static factors of safetyare kept similar for all trenches and determined numerically by application of gravity loads to the slopeusing strength reduction method (SRM). The analysis focuses on crater depth and improvement regionwhich are compared to the state of flat ground. It can be observed that compacted area adjacent to theslopes is narrower and slightly away from the slope compared to the flat state. Moreover, crater depthincreases with increase in slope inclination.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 Dynamic compaction Slopes and trenches Crater depth Improvement depth
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Triaxial shear behavior of a cement-treated sand——gravel mixture 被引量:5
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作者 Younes Amini amir hamidi 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2014年第5期455-465,共11页
A number of parameters,e.g.cement content,cement type,relative density,and grain size distribution,can influence the mechanical behaviors of cemented soils.In the present study,a series of conventional triaxial compre... A number of parameters,e.g.cement content,cement type,relative density,and grain size distribution,can influence the mechanical behaviors of cemented soils.In the present study,a series of conventional triaxial compression tests were conducted on a cemented poorly graded sandegravel mixture containing 30% gravel and 70% sand in both consolidated drained and undrained conditions.Portland cement used as the cementing agent was added to the soil at 0%,1%,2%,and 3%(dry weight) of sandegravel mixture.Samples were prepared at 70% relative density and tested at confining pressures of 50 kPa,100 kPa,and150 kPa.Comparison of the results with other studies on well graded gravely sands indicated more dilation or negative pore pressure in poorly graded samples.Undrained failure envelopes determined using zero Skempton’s pore pressure coefficient (= 0) criterion were consistent with the drained ones.Energy absorption potential was higher in drained condition than undrained condition,suggesting that more energy was required to induce deformation in cemented soil under drained state.Energy absorption increased with increase in cement content under both drained and undrained conditions. 展开更多
关键词 Cementation Poorly graded soil Sand-gravel mixture Dilation Absorbed energy Failure criterion
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A critical state based thermo-elasto-plastic constitutive model for structured clays 被引量:1
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作者 amir hamidi Saeed Tourchi Fatemeh Kardooni 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2017年第6期1094-1103,共10页
In this paper, a critical state based thermo-elasto-plastic constitutive model is developed for destructured, naturally structured and artificially structured saturated clays. The model is an extension of the previous... In this paper, a critical state based thermo-elasto-plastic constitutive model is developed for destructured, naturally structured and artificially structured saturated clays. The model is an extension of the previously developed thermo-mechanical model by the authors for saturated clays, considering the effects of structure on the mechanical behaviors of the soil. It is based on change in the position of normal consolidation line(NCL) in a compression plane(e-ln p′) due to the soil’s structure and variation of temperature. The present model is able to simulate the mechanical behavior of structured saturated clays in a triaxial plane at elevated temperatures lower than the boiling point of water. An attempt has been made to use the lowest possible number of parameters compared with that of Came Clay model and to ensure that these new parameters have clear physical interpretations. The sufficiency of the model was verified by the test results on artificially and naturally structured soils using thermal triaxial tests. 展开更多
关键词 Thermo-mechanical constitutive model Structured clays Cam Clay Normal consolidation line Boom Clay
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土工织物加筋土坡附近带状壳体的基础承载力研究
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作者 Seyed ALI GHAFFARI Elham SATTARI +2 位作者 amir hamidi Gholamhosein TAVAKOLI MEHRJARDI Abtin FARSHI HOMAYOUN ROOZ 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第8期2527-2543,共17页
从经济角度来看,城市化经常迫使居民在斜坡附近建造上层建筑,但是这增加了建筑物失稳的风险。本文通过一系列小规模的板载试验,在沙质边坡中安装土工织物来加固层,并研究减小三角壳条形基础的顶角的影响。结果表明,使用土工织物增强层... 从经济角度来看,城市化经常迫使居民在斜坡附近建造上层建筑,但是这增加了建筑物失稳的风险。本文通过一系列小规模的板载试验,在沙质边坡中安装土工织物来加固层,并研究减小三角壳条形基础的顶角的影响。结果表明,使用土工织物增强层并减小顶角对壳基础的极限承载力具有显著效果。随着距斜坡地基距离的延长,斜坡的不利影响减小。但是,随着距离的缩短,增强效果和顶角增大。对于实际应用,本文提出了经验方程式用于确定基础的极限承载力和比例效应。最后,进行3D数值模拟并与实验结果进行比较。 展开更多
关键词 边坡 壳体条形基础 土工织物增强 顶角 极限承载力 数值模拟
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