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1.
土石坝所处的应力状态较接近平面应变应力状态或三维应力状态,而常规三轴试验低估了粗粒料的力学性能。应用大型真三轴仪对常规三轴应力状态、平面应变应力状态和真三轴应力状态( 0.25, 为中主应力系数, 、 、 分别为大、中、小主应力)下粗粒料的力学特性进行了压缩试验研究。试验结果表明:相同小主应力下,常规三轴试验、平面应变试验、真三轴试验的大、小主应力之差与大主应力方向应变的关系曲线依次变高变陡。某一试验加载条件下,体应变随球应力的增大而增大,初始剪切阶段增加较慢,随后呈线性增大,不同小主应力的体应变曲线较为接近。平面应变试验强度和真三轴试验强度比常规三轴试验强度有较大增长,真三轴试验强度增加百分比大于平面应变试验强度增加百分比。初始弹性模量随小主应力的增大呈线性增大。平面应变状态下中主应力系数随大主应力方向应变的增大而增大,初始剪切阶段增长较缓,之后近似呈线性增大。相同小主应力下,从常规三轴应力状态至平面应变应力状态再到真三轴应力状态,小主应力方向应变均为膨胀变形,且膨胀变形依次增大。同一试验加载条件下,小主应力较小时,应力比(偏应力与球应力之比)与偏应变的关系曲线位于上方。  相似文献   

2.
不同应力路径下某高速公路路基黏性土湿化变形试验研究   总被引:2,自引:0,他引:2  
张秀成  王义重  傅旭东 《岩土力学》2010,31(6):1791-1796
针对某高速公路黏性填土路基浸水湿化的情况,进行了大量室内试验研究。为了研究土在实际应力路径下的湿化变形规律,分别在常规三轴应力路径、常规三轴K0固结应力路径、K0固结+常规三轴压缩应力路径以及使用真三轴仪的平面应变下K0固结 + 平面应变剪切应力路径和平面应变等应力比路径下进行了黏性土的湿化试验。通过对试验数据的分析,得到了湿化附加轴向应变与湿化时应力水平的幂函数关系。通过总结研究不同应力路径下应力-应变曲线的规律,提出了不同应力路径下的应力-应变关系的公式。  相似文献   

3.
罗爱忠  邵生俊 《岩土力学》2015,36(7):2117-2124
平面应变仪是一种开发较早但至今尚不完善的一种土工试验仪器,随着国家基础设施建设的发展,平面应变试验及试验方法在许多领域得以应用,显示出了平面应变试验在工程设计和研究中的重要性。通过回顾国内外平面应变仪的发展,提出了开发一种新型的土工平面应变三轴仪的思路,以实现更科学、更精确地进行复杂应力加载条件下土平面应变试验的研究。以此为目的,从压力室结构、加载系统及控制量测系统等方面提出了相应的改善措施,开发了一种新型的土工平面三轴仪。并通过重塑黄土的平面应变试验及改进的真三轴仪平面应变试验对比、以及平面应变试验强度参数与常规三轴试验强度参数对比分析,验证了所研制的新型卧式土工平面应变仪的合理性和研制思路的正确性。最后,通过对该平面应变仪应变试验的黄土破坏特性与改进真三轴平面应变试验的黄土破坏特征的对比分析,验证了本文所开发的平面应变仪在描述土体应变局部化问题的合理性。  相似文献   

4.
使用河海大学TSW-40型真三轴仪,对粗粒土分别进行平面应变和常规三轴压缩试验,研究了粗粒土在平面应变条件下的应力-应变关系及各种应变之间的关系,包括:主应力差? 1-? 3(? 2-? 3)与大主应变?1、主应力比? 1 /? 3(? 2 /? 3)与大主应变?1、球应力p与体积应变?v、偏应力q与偏应变? s、广义应力比q/p与广义剪应变? s、小主应变? 3与大主应变?1、体积应变? v与广义剪应变? s之间的关系。试验结果表明,对于相同的? 3,平面应变试验的(? 1-? 3)(或? 1 /? 3)-ε1曲线位于常规三轴压缩试验相应曲线的上方;? 3大的(? 1-? 3)(或? 2-? 3)-? 1曲线在上方,而? 3大的? 1 /? 3(或? 2 /? 3)-? 1曲线在下方;对于相同的? 3,在相同的? 1下,平面应变条件下的小主应力方向膨胀量要比常规三轴压缩条件下的大;产生相同的? s时,? 3越大,? v越大,对于相同的? 3,平面应变条件下的? v要比常规三轴压缩条件下的大;粗粒土在平面应变和常规三轴压缩条件下加荷时,具有归一化的双曲线应力-应变关系。研究表明,采用非线性弹性模型计算粗粒土的平面应变问题时,有必要考虑弹性模量E和泊松比? 的各向异性。  相似文献   

5.
Wang  Pengpeng  Guo  Xiaoxia  Sang  Yong  Shao  Longtan  Yin  Zenan  Wang  Yudi 《Acta Geotechnica》2020,15(10):2891-2904

Based on the three-dimensional digital image correlation (3D-DIC) technique, the stereovision system has been applied to the improved triaxial apparatus to obtain 3D full-field deformation of the specimen during triaxial testing. Through the calibration process, the 3D-DIC technique can obtain the accurate specimen’s spatial displacement deformation. Meanwhile, a subpixel edge detection algorithm has been combined with 3D-DIC technique to calculate the radial strain and the volume strain of the specimen directly. Furthermore, a series of consolidated drained and undrained triaxial tests were carried out on Hainan (China) sand specimens and measured by the conventional and the image measurement methods. Compared to the results measured by the conventional method, the image measurement technique can obtain the more experimental data, such as the 3D displacement field of the whole specimen, the local strain distribution, and so on. The measurement results also show the conventional method would be disturbed by the end constraints in triaxial tests so that the strength of the soil would be overestimated. Meanwhile, the middle of the specimen would be selected to calculate the stress–strain relationship without the influence of the end constraints in the proposed method. Based on the image measurement results, the proposed method has the potential to be used in geotechnical tests for exploring the soil’s progressive failure behaviors, inhomogeneous deformation and mechanical characteristics.

  相似文献   

6.
基于中主应力修正关系的边坡稳定性分析   总被引:1,自引:0,他引:1  
龚文俊  曾立峰  孙军杰  李明永 《岩土力学》2014,35(11):3111-3116
边坡稳定性分析时通常将应力条件简化为平面应变状态,采用三轴试验强度计算出的边坡稳定性偏于保守。在充分考虑中主应力物理含义及力学机制的基础上,将Mises屈服准则与Mohr-Coulomb(简称M-C)内切圆屈服准则进行匹配,得到了平面应变条件下土体屈服破坏时中主应力的理论修正关系,进而也得到了该条件下最大主应力与最小主应力的比值关系,从理论上证明了该比值关系是与土体平面应变破坏时内摩擦角成一定关系的常数,也在平面应变试验中得到了验证,从侧面反映出中主应力理论修正关系的合理性。由上述两种关系建立了土体平面应变破坏条件下的应力路径,结合Lade-Duncan强度准则,建立了平面应变条件下强度参数与三轴试验试验条件下强度参数转换公式,由该转换公式得到的平面应变条件下的强度参数与平面应变试验实测值误差在2%左右,大幅缩小了三轴试验实测值与平面应变试验实测值的误差。在均质边坡稳定分析中分别采用常规三轴试验强度值与由公式转换得到的平面应变强度值进行计算。研究结果表明,三轴试验条件下内摩擦角为10°~20°之间时,基于两种强度参数得出的安全系数相差不大;当三轴试验条件下内摩擦角大于20°时,平面应变条件下安全系数较三轴试验条件下提高19%左右,但该成果只在文中计算案例有效,两者误差的准确关系还有待于进一步研究。值得关注的是,由于平面应变条件下土体强度变大,边坡的临界滑面深度变浅了,其形态相应变陡。  相似文献   

7.
庞小朝  黄俊杰  苏栋  肖文海  顾问天  刘斌 《岩土力学》2018,39(11):4079-4085
硬化土(hardening soil)模型是岩土工程数值分析中常采用的模型。为研究加载方式和排水条件对原状花岗岩残积土剪切行为的影响,对深圳地区原状花岗岩残积土进行了常规三轴固结排水、常规三轴固结不排水、固结排水侧向卸载和固结不排水侧向卸载4组试验,并由试验结果确定出不同加载方式和排水条件下的硬化土模型参数。结果表明:在常规三轴试验中,试样在剪切过程中表现为先剪缩后剪胀的特性,在侧向卸载试验中,试样始终表现为剪胀的特性;模型参数值与加载路径密切相关,固结不排水侧向卸载试验(CDLU)测得的有效内摩擦角 较常规三轴固结不排水试验(CD)试验大20%,而有效黏聚力 小了46%;CDLU试验得到的三轴压缩试验的参考割线模量 为CD试验的2.9倍,卸载再加载参考割线模量 为CD试验的1.8倍;在相同加载路径下,模型参数值也受排水条件的影响,由CU试验得到的 与CD试验的结果相近,但CU试验得到的 要明显大于CD试验的结果,CU试验得到的 为CD试验的2倍, 为CD试验的3.8倍。因此,在岩土工程数值分析中应根据工程的实际情况确定和选用模型参数值。  相似文献   

8.
中主应力对砂土抗剪强度影响的分析   总被引:5,自引:0,他引:5  
土的抗剪强度参数一般通过三轴压缩试验确定。而三轴压缩试验中土的应力状态是轴对称的,这往往与实际工程中土体的受力情况不相同。因此,探讨一般应力条件下与三轴应力条件下强度指标之间的相互关系是至关重要的。基于砂土的空间滑动面强度准则即SMP准则,针对不同中主应力系数,通过数值分析探讨了中主应力系数对砂土抗剪强度指标的影响。分析结果表明,中主应力对土的抗剪强度指标具有显著的影响,一般地在平面应变条件下这种影响最大。  相似文献   

9.
The small strain stiffness of soils has a significant role in geotechnical design and analysis. In laboratory, the small strain behavior is examined by different techniques including the bender element method for measuring the maximum shear modulus and local displacement transducer (LDT) for measuring Young’s modulus at small strains. However, most commonly used LDTs are based on electrical components and have limitations, such as electromagnetic interference and possibility of short circuit in the presence of water. To overcome these limitations, in the present study, a conventional triaxial apparatus has been modified to measure and study the stress–strain behavior of soils at small strains. The major modifications include addition of piezoceramic sensors (bender elements) for measuring the maximum shear modulus and fiber Bragg grating (FBG) sensor-based local displacement transducers (FBG–LDTs) for measuring the stress–strain behavior at small strains. The modified triaxial apparatus has been used to conduct several tests on a completely decomposed granite soil from a site in Hong Kong. The stress–strain behaviors measured by the newly developed FBG–LDTs and an external displacement transducer are compared and discussed. In particular, the shear modulus values obtained using the bender elements, FBG–LTDs, and the external displacement transducer are also compared, discussed, and evaluated. The comparison and assessment show that the FBG–LTDs are more suitable for measuring the small strain behavior of soils.  相似文献   

10.
杨超  汪稔  孟庆山 《岩土力学》2012,33(Z1):105-111
将数字图像测量技术运用于三轴剪切蠕变试验,试验结果表明,土粒间水膜厚度对土的蠕变有很大的影响,不排水时,试样土颗粒间水膜保持不变,土的黏滞系数基本为一定值,土的流变变形较大;排水时,随着水的排出土体发生固结硬化,土颗粒间水膜变薄,土的密度增大,黏滞性增强,流变变形较小。在排水条件下,加载瞬间孔隙水压力会持续上升产生Manadei-Cryer效应,整个过程历时约10 min。随着偏应力水平的增加,试样发生鼓胀变形,进而形成剪切面发生剪切破坏;受排水路径的影响,剪切面通常位于试样偏下部位。对比数字图像测量方法和试样排水体积换算法在获得剪切应变时的试验结果,表明试验过程中试样变形的不均匀会导致排水体积换算法在计算剪切应变时产生较大误差;Singh-Mitchell模型很好地描述土的剪切流变特性,确定参数时两种方法得到的参数相差不大,偏应力水平较低时可采用排水量换算法进行确定。  相似文献   

11.
For numerical studies of geotechnical structures under earthquake loading, aiming to examine a possible failure due to liquefaction, using a sophisticated constitutive model for the soil is indispensable. Such model must adequately describe the material response to a cyclic loading under constant volume (undrained) conditions, amongst others the relaxation of effective stress (pore pressure accumulation) or the effective stress loops repeatedly passed through after a sufficiently large number of cycles (cyclic mobility, stress attractors). The soil behaviour under undrained cyclic loading is manifold, depending on the initial conditions (e.g. density, fabric, effective mean pressure, stress ratio) and the load characteristics (e.g. amplitude of the cycles, application of stress or strain cycles). In order to develop, calibrate and verify a constitutive model with focus to undrained cyclic loading, the data from high-quality laboratory tests comprising a variety of initial conditions and load characteristics are necessary. It is the purpose of these two companion papers to provide such database collected for a fine sand. Part II concentrates on the undrained triaxial tests with strain cycles, where a large range of strain amplitudes has been studied. Furthermore, oedometric and isotropic compression tests as well as drained triaxial tests with un- and reloading cycles are discussed. A combined monotonic and cyclic loading has been also studied in undrained triaxial tests. All test data presented herein will be available from the homepage of the first author. As an example of the examination of an existing constitutive model, the experimental data are compared to element test simulations using hypoplasticity with intergranular strain.  相似文献   

12.
李广信  张其光  黄永男 《岩土力学》2006,27(11):1867-1872
土的平面应变是岩土工程中常见的状态,其中零应变方向的主应力是十分复杂的。承德中密砂等应力比平面应变试验结果表明,平面应变状态下零应变方向的主应力在不同条件下可能是大主应力、中主应力或者小主应力。利用由等应力比三轴压缩试验确定的切线泊松比,可以合理地预测等应力比平面应变试验中零应变方向主应力的转换过程,这一认识对于一些实际工程问题的分析具有一定的意义。  相似文献   

13.
For numerical studies of geotechnical structures under earthquake loading, aiming to examine a possible failure due to liquefaction, using a sophisticated constitutive model for the soil is indispensable. Such a model must adequately describe the material response to a cyclic loading under constant volume (undrained) conditions, amongst others the relaxation of effective stress (pore pressure accumulation) or the effective stress loops repeatedly passed through after a sufficiently large number of cycles (cyclic mobility, stress attractors). The soil behaviour under undrained cyclic loading is manifold, depending on the initial conditions (e.g. density, fabric, effective mean pressure, stress ratio) and the load characteristics (e.g. amplitude of the cycles, application of stress or strain cycles). In order to develop, calibrate and verify a constitutive model with focus to undrained cyclic loading, the data from high-quality laboratory tests comprising a variety of initial conditions and load characteristics are necessary. The purpose of these two companion papers was to provide such database collected for a fine sand. The database consists of numerous undrained cyclic triaxial tests with stress or strain cycles applied to samples consolidated isotropically or anisotropically. Monotonic triaxial tests with drained or undrained conditions have also been performed. Furthermore, drained triaxial, oedometric or isotropic compression tests with several un- and reloading cycles are presented. Part I concentrates on the triaxial tests with monotonic loading or stress cycles. All test data presented herein will be available from the homepage of the first author. As an example of the examination of an existing constitutive model, the experimental data are compared to element test simulations using hypoplasticity with intergranular strain.  相似文献   

14.
宋新江  徐海波 《岩土力学》2011,32(8):2325-2330
通过水泥土平面应变试验和三轴压缩固结排水试验(CD试验),对水泥土力学特性进行研究,讨论两种试验条件下水泥土的应力-应变曲线变化特点和强度特性。试验结果表明,水泥土的应力-应变曲线为软化型,软化程度与围压有关,平面应变条件下水泥土软化明显;CD试验和平面应变试验的强度破坏线均为直线,可用摩尔-库仑强度准则来描述;两种试验条件下的残余强度均随围压的增加呈线性增大,其中平面应变试验残余强度高于CD试验,残余强度与峰值强度的比值随围压的增大而增大,增大速率减小;平面应变条件下,水泥土的破坏强度约为三轴CD试验的1.4~1.6倍。从微观结构和能量守恒原理解释了CD试验和平面应变试验水泥土软化成因,认为水泥水化物等凝胶材料是水泥土软化的主要因素,且中主应力的存在使水泥土软化更加明显  相似文献   

15.
残积土特殊应力路径的三轴试验研究   总被引:2,自引:0,他引:2  
利用先进的GDS应力路径三轴仪,探讨了花岗岩残积土在特殊应力路径下的三轴试验特性。做了2种应力路径下的三轴排水剪切试验:平均应力等于常数、偏应力变化的剪切试验以及偏应力等于常数、平均应力变化的剪切试验。试验结果表明:平均应力等于常数的试验其偏应力-轴应变曲线为双曲线型,偏应力等于常数的试验其平均应力-轴应变曲线为幂函数型;发现花岗岩残积土具有剪缩特性,回弹体积模量随偏应力增大而显著提高。  相似文献   

16.
郑刚  颜志雄  雷华阳  王晟堂 《岩土力学》2009,30(5):1201-1208
土的强度特性与土体中应力变化过程、固结状态有关,常规的三轴试验并不能真实地反映土体经历的应力路径对其强度特性的影响。采用自制的应力-应变联合控制式三轴试验仪,对天津市区地层中第一海相层的粉质黏土原状饱和试样进行一系列特殊三轴试验,研究了排水卸荷条件对其强度特性的影响。试验结果表明:经历排水卸荷路径的土体的加荷剪切总应力强度指标大于常规试验结果,也大于前人在不排水卸荷路径下的试验结果,但几种应力路径下土体的有效应力强度指标基本相等。研究成果对天津市区基坑开挖及支护结构设计计算、软土隧道施工研究及其他相关岩土工程问题的研究均有较大的实用价值。  相似文献   

17.
Performance of three classes of explicit and implicit time‐stepping integrators is assessed for a cyclic plasticity constitutive model for sands. The model is representative of an important class of cyclic plasticity models for soils and includes both isotropic and nonlinear kinematic hardening. The implicit algorithm is based on the closest point projection method and the explicit algorithm follows a cutting‐plane integration procedure. A sub‐stepping technique was also implemented. The performance of these algorithms is assessed through a series of numerical simulations ranging from simulations of laboratory tests (such as triaxial and bi‐axial compression, direct shear, and cyclic triaxial tests) to the analysis of a typical boundary value problem of geotechnical earthquake engineering. These simulations show that the closest point projection algorithm remains stable and accurate for relatively large strain increments and for cases where the mean effective stress in a soil element reaches very small values leading to a liquefaction state. It is also shown that while the cutting plane (CP) and sub‐stepping (SS) algorithms provide high efficiency and good accuracy for small to medium size strain increments, their accuracy and efficiency deteriorate faster than the closest point projection method for large strain increments. The CP and SS algorithms also face convergence difficulties in the liquefaction analysis when the soil approaches very small mean effective stresses. Copyright © 2001 John Wiley & Sons, Ltd.  相似文献   

18.
邓鹏  郭林  蔡袁强  王军 《岩土力学》2015,36(Z2):148-156
目前用于轨道路堤分析计算的参数多是通过三轴试验获得,而列车荷载经过时土单元应力路径与循环三轴试验加载路径的显著差异可能导致预测失真而引发工程问题。针对某城市轨道进行了三维计算,并分析了移动列车荷载下土单元应力幅值、循环周数、主应力轴旋转的分布规律。在该基础上,采用空心圆柱循环扭剪试验对该复杂应力路径进行了模拟,研究了饱和软黏土的孔压及变形累积特性。结果表明,列车荷载经过时地基土单元大主应力将在(-90°, 90°)内发生旋转;该主应力轴旋转将显著促进软黏土孔压和应变的累积,竖向应力幅值为15 kPa时,循环扭剪试验产生的孔压值比循环三轴试验高77%,累积应变增大了近50%;随着循环应力水平提高,二者累积孔压及累积应变的差值还会进一步增大,甚至出现循环三轴下仅产生较小应变而循环扭剪下已破坏的本质性差异。  相似文献   

19.
By incorporating the fabric effect and Lode’s angle dependence into the Mohr–Coulomb failure criterion, a strength criterion for cross-anisotropic sand under general stress conditions was proposed. The obtained criterion has only three material parameters which can be specified by conventional triaxial tests. The formula to calculate the friction angle under any loading direction and intermediate principal stress ratio condition was deduced, and the influence of the degree of the cross-anisotropy was quantified. The friction angles of sand in triaxial, true triaxial, and hollow cylinder torsional shear tests were obtained, and a parametric analysis was used to detect the varying characteristics. The friction angle becomes smaller when the major principal stress changes from perpendicular to parallel to the bedding plane. The loading direction and intermediate principal stress ratio are unrelated in true triaxial tests, and their influences on the friction angle can be well captured by the proposed criterion. In hollow cylinder torsional shear tests with the same internal and external pressures, the loading direction and intermediate principal stress ratio are related. This property results in a lower friction angle in the hollow cylinder torsional shear test than that in the true triaxial test under the same intermediate principal stress ratio condition. By comparing the calculated friction angle with the experimental results under various loading conditions (e.g., triaxial, true triaxial, and hollow cylinder torsional shear test), the proposed criterion was verified to be able to characterize the shear strength of cross-anisotropic sand under general stress conditions.  相似文献   

20.
Li  Lin  Zhang  Xiong 《Acta Geotechnica》2019,14(2):559-574

Triaxial test has been widely used to investigate the stress–strain relationship of unsaturated soils. During triaxial testing, soil volume is an essential parameter to be measured. For an unsaturated soil, due to the presence of air phase, accurate volume/deformation measurement during triaxial testing was a great challenge for researchers. Recently, a photogrammetry-based method has been developed to measure the soil volume/deformation during triaxial testing. Preliminary triaxial test results indicate the new method is simple, accurate, and cost- and time-effective. However, some concerns regarding its measurement accuracy and applicability, which are critical for the dissemination of the photogrammetry-based method, have been raised by other researchers. These concerns were addressed in details in this study. The factors concerning the deformation measurement accuracy were systematically evaluated through a series of triaxial tests on an aluminum cylinder with different confining media and chamber pressures. A sensitivity analysis was carried out to investigate the impact of the system parameters on the volume measurement accuracy of the photogrammetry-based method. In addition, a triaxial test on a saturated sand specimen was conducted to evaluate the influences of mesh density, mesh pattern, and interpolation technique on the volume change measurement accuracy. Finally, some suggestions were provided to improve the accuracy of the photogrammetry-based measurement method.

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