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1.
以汶川震区漩口一带地震诱发的松散堆积体为研究对象,开展碎石土原状样和重塑样的现场直剪对比试验,探讨不同法向应力、不同粒度组成和不同含水率等条件下碎石土的剪切强度特性。研究结果表明,地质成因和岩土体结构相似、粒度组成不同且级配不良的碎石土的剪切强度特性具有相似性;原状样剪切强度明显高于相同干密度和含水率的重塑样;级配良好的碎石土应变硬化程度略高于级配不良的碎石土,当粒径大于5 mm的粗颗粒含量大于42.9%时,随粗颗粒含量增加,碎石土的内摩擦角增加,而粘聚力则先减小后增大;抗剪强度指标与含水率呈线性负相关关系,随着含水率增高,碎石土抗剪强度降低,其中粘聚力较内摩擦角下降更明显。综合前人研究和本次试验结果,建议汶川震区类似结构组分碎石土天然状态下的剪切强度指标c值取15±3 k Pa,φ值取30°±2°。  相似文献   

2.
为了探究土体界面土的力学性质及其变化规律,以粉土、粉质黏土和碎石土作为试验材料,以法向应力大小、上下土层类型、界面处理方式、动载环境、静载环境和动载作用时长等作为试验变量因素,运用正交试验设计方法对不同类型的原状土和重塑土试样进行室内直剪试验,得到了土体界面土的剪力-位移本构曲线,根据曲线中的峰值抗剪强度计算出了能够反映界面土抵抗黏性破坏能力的黏结系数。试验结果表明:粉土的黏结系数小于粉质黏土;界面土的抗剪强度与上下土层的结合类型相关,界面土的粗糙度越大,界面土处的土体接触越充分,则界面土的力学性质越好;随着动载作用时间的增加,土体界面土的抗剪强度会有所下降;并且,界面土的力学性质与上下土层性质之间有一定的联系。  相似文献   

3.
李新明  孔令伟  郭爱国 《岩土力学》2019,40(4):1299-1306
通过GDS三轴试验系统对K0固结原状南阳膨胀土原状样进行了不同卸荷速率和卸荷路径下的不排水三轴剪切试验,在试验资料的基础上,建立了K0固结膨胀土的初始切线模量Ei和极限偏应力qult与固结应力及卸荷速率的关系式。发现,K0固结膨胀土在卸荷剪切过程中的应力-应变关系曲线呈典型双曲线特征;膨胀土的不排水剪切强度随轴向固结应力及卸荷速率的增加而单调增加;Ei及qult随固结应力及卸荷速率的变化规律与强度基本类似,但Ei随固结应力的增加呈指数增加,而qult则表现为线性增加。通过改进邓肯-张双曲线表达式,建立了K0固结膨胀土下不同卸荷速率时应力-应变关系的预测公式,并进行了模型验证。  相似文献   

4.
通过对中运河、长江长兴岛、淮河入海水道等河道原状土样起动试验,认为各河道土质由于其形成条件、土质结构等方面存在差异,即使具有相近的物理力学特性,其起动临界条件也不尽相同.而对同一条河流而言,起动临界条件与物理力学指标之间则存在明显的规律性:即对淤泥质粘土,起动临界条件随抗剪强度的减小而增大,随含水量的增大而减小;粉质粘土的起动临界条件最小,与抗剪强度、含水量呈非线性关系;粘土起动临界条件则随抗剪强度、含水量的增大而增大.  相似文献   

5.
Undrained shear strength (su) of foundation soil of Marquette interchange near Milwaukee, Wisconsin was evaluated from the results of a number of pressuremeter tests conducted on normally consolidated (NC) organic silts and overconsolidated (OC) silty clay. The su-values were interpreted from traditional closed-form methods. The pressuremeter geometry and test sequence as well as response of the soil profiles were also simulated using axisymmetric finite element (FE) method with Cam-Clay soil model. The Cam-Clay model parameters were estimated from laboratory tests on undisturbed soil samples. Results show that the su estimated from the rate of cavity pressure change with volumetric strain (referred to as direct traditional method) is almost twice the su estimated from an indirect traditional method that estimates su from shear modulus, in situ horizontal stress, and ultimate cavity pressure obtained from the cavity pressure curves. The su-values predicted from the FE models are lower than those estimated from the traditional methods and shows that the assumption of infinite pressuremeter length in traditional methods results in overprediction of undrained shear strength by a factor of 1.5 for NC clay and 2.2 for OC clay. The results of finite element analysis considering Cam-Clay soil model and finite length for pressuremeters suggest the undrained shear strength of 63 ± 7 kPa for NC organic silt and 259 ± 68 kPa for OC silty clay.  相似文献   

6.
Shear Strength Behavior of Two Landfill Clay Liners   总被引:1,自引:0,他引:1  
Direct shear tests were conducted to obtain both the shear strength of compacted clay liners (CCLs) specimens and the interface shear strength between compacted clay liner and base soil. These experiments were conducted under the conditions of five different water contents. The experimental results show that shear strength of both CCLs and CCLs/base interface decreases with the increase in the water content of CCLs and base soil. In addition, the considerate concentration of NaCl in leachate has no deteriorating effect on the shear strength of liners. Triaxial shear tests were also conducted on clay liner specimens to obtain total and effective shear strength under a fast compression. The shear strength c‘=100 kPa for sand-bentonite, respectively. These results indicate that the compacted clay-bentonite shows normal consolidation, but that the compacted sand-bentonite exhibits over-consolidation.  相似文献   

7.
西南喀斯特地区的石漠化已经严重影响了人民正常的生产生活。水土流失是石漠化过程中一个关键环节。喀斯特地区地表广泛覆盖的红粘土在降雨条件下随着含水量的增加和人工垦殖的影响,剪切强度会产生变化,更易发生水土流失。本文以贵州普定石漠化研究区(陈旗村)的红粘土为例,以原状土模拟未经扰动的土样,以重塑土来模拟经过开垦被扰动后的土样,设计了原状土和重塑土在不同含水量下的直剪试验,初步地研究了这一变化规律。结果表明:在含水量大于35%时,石漠化地区红粘土粘聚力和内摩擦角均随着含水量的增加显著降低;在同一含水量水平下,原状土的抗剪强度明显优于重塑土,且随着含水量的增加,重塑土的强度衰减较之原状土快许多,表明了经过人工垦殖后的红粘土在降雨条件下更易发生水土流失。  相似文献   

8.
The topsoil of clayey slope is easy to erosion because it is weak in its strength, water stability and erosion resistance. A new organic polymer soil stabilizer, which was developed for the stabilization treatment of clay slope topsoil and was named as STW, was introduced in this study. In order to understand the effect of STW on the stabilization of clayey soil, laboratory tests on the unconfined compressive strength, shear strength, water stability and erosion resistance of untreated and treated soil specimens are performed, The results indicated that STW soil stabilizer can significantly increased the unconfined compression strength, shear strength, water stability and erosion resistance of clayey soil. The unconfined compression strength increased with the increasing of curing time and the variation mainly occurs in the first 24-hour. With the addition amounts of STW increasing, the strength, water stability and erosion resistance increased at the curing time being 48 h, but in the case of friction angle, no major change was observed. Based on the scanning electron microscopy (SEM) analysis of the stabilized soil, the stabilization mechanisms of STW soil stabilizer in the clayey soil were discussed. Finally, a field test of the stabilization treatment of clay slope topsoil with STW was carried out, and the results indicated that the STW soil stabilizer on the stabilization treatment of clay slope topsoil is effective for improving the erosion resistance of slope topsoil, reducing the soil loss and protecting the vegetation growth. Therefore, this technique is worth popularizing for the topsoil protection of clay slope.  相似文献   

9.
为进一步研究植物根系的固土护坡力学效应,探讨边坡土体含水量对植物根系增强土体抗剪强度的影响,以西宁盆地长岭沟流域作为研究区,选取两种优势灌木植物柠条锦鸡儿(Caragana korshinskii Kom.)、白刺(Nitraria sphaerocarpa Maxim.)和两种优势草本植物芨芨草(Achnatheru...  相似文献   

10.
Towards a general model of quick clay development   总被引:1,自引:0,他引:1  
ABSTRACT Within the clear definition of a quick clay as being a soil which has a sensitivity greater than 30 and a remoulded strength less than 0.5 kPa, a general model for quick clay development is presented, based on the influences of various material properties and natural processes on the sensitivity and remoulded strength. The influences are separated according to depositional requirements and post-depositional factors and according to whether the influence is to increase the undisturbed strength or to decrease the remoulded strength. Depositional factors are the requirements for a flocculated structure and the dominance of low activity minerals. Post-depositional factors are cementation and slow load increase, which increase the undisturbed strength, and little consolidation, leaching and dispersants, which decrease the remoulded strength. The application of the model to marine, brackish water and freshwater sediments is discussed.  相似文献   

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