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1.
姚涛  邵龙潭 《岩土力学》2009,30(7):2011-2015
为了研究非饱和重塑黄土在三轴试验条件下的湿陷变形,利用自主研发的三轴试验土样变形数字图像测量系统,对其在均等围压下的三轴固结变形进行了初步研究。研究了非饱和黄土固结变形过程中轴向应变、径向应变、体积应变和时间之间的关系以及体积应变和压力之间的关系,并对比了单轴压缩试验和三轴压缩试验中体积应变和压力的关系。试验研究表明,在含水率一定的条件下轴向应变、径向应变和体积应变与时间的关系可以用双曲线模式表达,其表征最终变形量的参数依赖于均等固结压力。  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.
金解放  李夕兵  殷志强  尹土兵 《岩土力学》2013,34(11):3096-3102
利用动静组合加载试验装置,对具有不同轴压和围压的砂岩进行循环冲击试验,研究循环冲击过程中砂岩单位体积吸收能的变化特性、单位体积吸收能与平均应变率的关系以及轴压和围压对循环冲击作用下岩石能量耗散的影响。围压分别设置为4、8、10、12 MPa等4个系列,轴向静载荷分别设置为49、84、105、125 MPa等4个系列,入射杆上的入射波峰值大小近似相等,入射能大小为230 J。研究结果表明,砂岩单位体积吸收能随循环冲击次数的增加而增加。平均应变率和单位体积吸收能具有良好的正线性关系,围压从低到高增加过程中,二者间拟合直线的斜率K随轴压增加的变化关系为“增加-基本不变-减小”。当轴压较小时,K随围压的增加先增加后降低,轴压越小K由上升到下降转折点处的围压越大;当轴压增加到125 MPa时,K随围压的增加始终降低。研究结果为具有不同地应力条件下工程岩体爆破设计提供理论依据。  相似文献   

4.
膨润土加砂混合物膨胀特性研究   总被引:5,自引:2,他引:3  
李培勇  杨庆  栾茂田  汪东林 《岩土力学》2009,30(5):1333-1336
通过有荷膨胀试验,对膨润土加砂混合物的膨胀特性进行了研究,分析了膨胀应变与轴向应力、膨胀应变与吸水量以及轴向应力与吸水量之间的关系,并建立了能综合反映轴向应力和吸水量对膨胀应变影响的混合物膨胀本构关系式。试验研究表明,膨胀应变随着轴向应力的增大而减小,两者之间的关系可以采用对数线性关系来表达;吸水量的变化对膨胀应变有明显的影响,膨胀应变随吸水量的增加而线性的增大;而吸水量受到轴向应力的影响,随着轴向应力的增大,吸水量减少,在轴向应力一定时,吸水量会达到一个最终的饱和值。由于考虑了膨胀变形过程中吸水量的变化,所建立的膨胀本构关系式能较好地反映膨润土加砂混合物的膨胀特性。  相似文献   

5.
蒋敏敏  蔡正银  曹培  方伟 《岩土力学》2009,30(Z2):204-207
通过等压固结静、动三轴试验,研究了渤海湾粉质黏土在循环荷载作用下的动力性质和循环荷载后不排水静力性质。试验结果表明,循环应力幅值比越大,平均轴向应变和轴向应变幅值越大;循环应力幅值比达到0.4时,平均轴向应变和轴向应变幅值随着循环周数增加迅速增大;循环应力幅值比相同,固结应力越大,轴向应变幅值越大,而平均轴向应变越小。在较大的循环应力幅值比下,平均孔压比值和孔压幅值比值随着循环周数的增大会达到稳定;循环应力幅值比越大平均孔压比值和孔压幅值比值均越大;相同循环应力幅值,固结应力越大平均孔压比值越小,而固结应力对孔压幅值比值影响较小。循环荷载的作用会导致循环荷载后不排水剪在q-p’平面上有效应力路径和孔压发展表现出超固结土的性质。  相似文献   

6.
饱和兰州黄土液化过程中孔压和应变发展的试验研究   总被引:1,自引:0,他引:1  
孙海妹  王兰民  王平  刘红玫 《岩土力学》2010,31(11):3464-3468
采用WF12440型空心圆柱扭剪仪,用反压饱和法对初始饱和度较低的原状黄土进行饱和,进行室内原状黄土饱和液化试验研究,探讨了饱和兰州黄土液化过程中孔隙水压力、轴向应变、应力-应变滞回圈的发展规律。结果表明,对初始饱和度较低的原状黄土,反压饱和法使孔压系数B值达到0.95以上,即土样完全饱和;兰州黄土在均压固结条件下液化的孔压发展,开始时上升速率较缓慢,循环数一定后会出现孔压迅速增高的现象直至达到有效围压;应力-应变滞回特性随着振动次数的增加发生变化,塑性逐步增大;当轴向应变小于2%时,孔压增长缓慢;此后,孔压上升速率加大,3%应变可以出现在初始液化前;接近液化时偏应力为负值时的有效应力大于正值时的有效应力。  相似文献   

7.
Cylindrical samples of water-saturated, initially loose, St. Peter quartz sand were consolidated using triaxial deformation apparatus at room temperature, constant fluid pressure (12.5 MPa), and elevated confining pressures (up to 262.5 MPa). The samples were deformed along four loading paths: (1) hydrostatic stressing tests in which confining pressure was monotonically increased; (2) hydrostatic stress cycling similar to (1) except that effective pressure was periodically decreased to initial conditions; (3) triaxial deformation at constant effective pressure in which differential stress was applied after raising effective pressure to an elevated level; and (4) triaxial stress cycling similar to (3) except that the axial differential stress was periodically decreased to zero. Hydrostatic stressing at a constant rate results in a complex nonlinear consolidation response. At low pressures, large strains occur without significant acoustic emission (AE) activity. With increased pressure, the stress versus strain curve becomes quasi-linear with a corresponding nonlinear increase in AE rates. At elevated pressures, macroscopic yielding is marked by the onset of large strains, high AE rates, and significant grain failure. Stress cycling experiments show that measurable inelastic strain occurs at all stages of hydrostatic loading. The reload portions of stress cycles are characterized by a poro-elastic response and lower AE rates than during constant rate hydrostatic stressing. As the stress nears and exceeds the level that was applied during previous loading cycles, strain and AE rates increase in a manner consistent with yielding. Triaxial stressing cycles achieve greater consolidation and AE rates than hydrostatic loading at similar mean stress levels. By comparing our results with previously published studies, we construct a three-component model to describe elastic and inelastic compaction of granular sand. This model involves acoustically silent grain rearrangement that contributes significant inelastic strain at low pressures, poro-elastic (Hertzian) deformation at all pressures, and inelastic strain related to granular cracking and particle failure which increases in significance at greater pressures.  相似文献   

8.
通过大量对比试验系统研究了广东典型软土的蠕变固结特性和计算模型。试验结果表明:软土的固结和次固结在变形中所占比例和发生受多种因素影响,包括初始荷载、加荷比、土体固结度、含水率、孔隙比;次固结系数与土体的应力历史、当前固结状态及加荷比有关,在预压荷载下会明显减小;次固结系数与压缩指数之比一般为常数,其值在0.025?0.10之间;剪切蠕变特性与土体所承受的固结压力有关,土样蠕变规律呈应变硬化特征;三轴蠕变特性与排水条件关系密切,固结作用可以削弱蠕变效应;同等加荷条件下,偏应力-轴向应变关系在排水剪切中呈线性关系。而在不排水剪切中呈非线性,并有明显的屈服特征;不排水剪切条件下持续加荷的加荷方式可以适当提高不排水强度。根据上述试验成果分别从考虑非线性本构关系和考虑排水条件分析了蠕变固结模型的建立路径。  相似文献   

9.
A novel conceptual model of the mechanics of sands is developed within an elastic–plastic framework. Central to this model is the realization that volume changes in anisotropic granular materials occur as a result of two fundamentally different mechanisms. The first is purely kinematic, dilative, and is the result of the changes in anisotropic fabric. There is also a second volume change in granular media that occurs as a direct response to changes in stress as in a standard elastic/plastic continuum. The inclusion of the two sources of volume change results in three important datum states. When subjected to isotropic strains, the resulting stress state in granular materials is not isotropic but lies upon the kinematic normal consolidation line. There exists a state at which the fabric‐induced volumetric strain rate becomes equal to the stress‐induced volumetric strain rate making the total plastic volumetric strain rate equal to zero. Granular response changes from contractive to dilative at this phase transformation line. The third datum state is the one in which the stress‐induced volumetric strain rate is zero. The sand, however, continues to dilate at this state with the difference between stress and dilation ratio a constant as predicted by Taylor's stress–dilatancy rule. These predictions are shown in accordance with experimental data from a series of drained tests and undrained on Ottawa sand. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

10.
利用室内试验研究土体蠕变特性时,因受试验条件限制较少开展土体的排水蠕变特性试验研究。对于先还原土体的先期固结条件,然后再开展土体的三轴排水蠕变特性试验的研究更少。为此,以淤泥土为研究对象,通过 固结三轴排水蠕变试验探讨了饱和淤泥土在轴向加载和侧向减载条件下的排水蠕变特性。由试验数据可知:排水条件下,两种应力路径的轴向蠕变规律基本一致,体积应变明显小于轴向应变,且随时间的延长呈现一定程度的剪缩与剪胀交替性。首次利用三单元力学模型推测出淤泥土的蠕变起始时间为施加偏应力荷载后的100~200 min之间。提出淤泥土蠕变系数的概念并总结其变化规律,得知淤泥土的蠕变系数与偏应力水平密切相关,即不论围压及加载方式如何,蠕变系数均随应力水平增大而增大,且基本呈直线关系,而与前期固结围压大小、蠕变荷载施加方式关系不大。最后提出了淤泥土蠕变本构模型建立的思路,即用南水双屈服面模型描述瞬时变形量和用蠕变经验公式描述蠕变变形量相结合的方式来建立蠕变本构模型。  相似文献   

11.
通过固结不排水三轴压缩试验,分析了围压、固结比和干密度等因素对饱和粉土静态液化特性的影响。试验结果表明,在干密度较小时,饱和粉土的偏应力-应变曲线呈现明显的硬变软化型,随轴向应变增大超静孔隙水压力增加、有效应力减小而发生静态液化,当干密度达到1.58 g· cm-3时,饱和粉土的偏应力-应变曲线表现出硬变硬化现象,超静孔隙水压力为负值或接近0,饱和粉土不再发生静态液化,即饱和粉土存在静态液化的干密度临界值;其他条件不变,随着围压、固结比或干密度的增大,偏应力峰值和残余强度均增大,静态液化势降低;根据有效应力路径建立了流滑面以作为饱和粉土稳定区与非稳定区的分界面。  相似文献   

12.
真空-堆载预压作用下软土蠕变特性试验研究   总被引:4,自引:1,他引:3  
采用改进的、可施加负压的三轴仪开展了真空预压、堆载预压以及真空-堆载联合预压作用下软土的固结蠕变试验,描述了加载率、应力比和时间等对软土蠕变特性的影响,分析了轴向应变(率)、体积应变(率)及偏应变(率)与应力比和时间之间的关系。结果表明:轴向应变率和体积应变率与时间的对数关系并非线性,但经过若干天以后可近似认为是线性关系;在不同应力比n下,体应变与时间的关系可用双曲线方程来表示;偏应变、偏应变率与时间的关系符合双曲线方程,通过温州软黏土样的蠕变试验结果验证了其有效性。  相似文献   

13.
主应力旋转将加速孔压和塑性应变的累积,影响土体的力学特性。为研究主应力轴循环旋转对 固结饱和粉质黏土孔压和变形的影响,利用GDS-HCA试验系统开展了不同应力路径的 固结饱和粉质黏土不排水循环三轴试验和循环扭剪试验,研究了主应力轴循环旋转对 固结饱和粉质黏土累积塑性应变、孔压等动力特性的影响。结果表明:动剪应力幅值、心形应力路径所包围的面积、循环偏应力幅值等均随循环剪应力比和循环动应力比的增大而增大。试样未发生破坏时, 固结饱和粉质黏土的孔压比随着振动荷载作用次数的增加而增大;当试样发生破坏时,孔隙压力迅速消散,孔压比急剧下降。循环扭剪试验时试件产生的轴向累积塑性应变始终大于循环三轴试验产生的累积塑性应变,说明主应力轴循环旋转会加速试件轴向应变的累积。试件的累积塑性应变随循环剪应力比和循环动应力比的增大而增大。循环动应力比越大时,主应力轴旋转造成的轴向累积塑性应变差异越显著。在Monismith幂次函数模型的基础上,建立了主应力轴循环旋转条件时K0固结饱和粉质黏土累积塑性应变方程,并对模型的可靠性进行了分析和验证。  相似文献   

14.
基坑土体侧向卸荷真三轴试验研究   总被引:15,自引:4,他引:11  
对武汉地区具有代表性的粉质粘土,用基坑开挖过程中坑周土体的应力路径在真三轴上进行模拟试验,得到平面应变条件下固结不排水卸荷试验结果,将其整理成应力-应变关系曲线、孔隙水压力-竖向应变关系曲线、中主应力系数-竖向应变关系曲线和卸荷试验应力路径图。试验结果表明,竖向( )压力不变,侧向( )卸荷时,其应力-应变关系随固结压力的增加,由应变硬化型向应变软化型转化;固结压力较低时,表现为剪胀,固结压力较高时,表现为先剪缩,后剪胀;当中主应力( )始终大于但接近于侧向压力( ),按所定义的中主应力系数bd值较稳定;有效应力路径随固结压力增大产生偏转。这些结论为进一步研究粘性土中主应力的作用奠定了基础。  相似文献   

15.
主、次固结的划分是正确预测和分析软土地基变形并采取有效工程措施的关键问题之一。利用单向固结仪和三轴剪切仪,对天津典型软土进行了一系列一维压缩次固结试验和三维次固结试验,得到荷载、孔隙比、孔隙水压力、体积应变和时间的关系曲线。试验结果表明:由孔隙水压力消散确定的主次固结划分时间滞后于体应变划分时间;所提出的采用应变速率和应变关系来划分主次固结的方法可以合理地适用于各种荷载条件;主固结时间随试样高度的增大而增大,随排水条件的加强而减小;随着荷载等级的增大,主固结时间延长;当荷载小于结构屈服应力时,加荷比对主次固结划分的影响较小,当荷载大于结构屈服应力时主固结时间随着加荷比的增大而延长;预压后土体的主固结应变与总应变的比值比无预压的情况增大30.7%,且该值随着预压荷载的增大而增大。  相似文献   

16.
Uniaxial compressive loading experiments where axial strain rate or dilatant volumetric strain rate was kept constant were carried out using a servo-controlled hydraulic testing machine. The rock studied was Oshima granite. In order to investigate the effect of the strain rate on the strength, a theory based on the assumption of redistribution of the pre-existing microcracks due to subcritical crack growth was examined. Results expected from the theory were well borne out by the observations. The strength was expressed by power-functions of both axial strain rate and dilatant strain rate. The stress corrosion index of Oshima granite appeared to be 31 ± 3, which agreed well with the values reported previously.When the axial strain rate was held constant, the acoustic emission rate increased exponentially and the b-value, the exponent in the frequency-magnitude relation of the acoustic emissions, decreased with increasing applied stress. When the dilatant volumetric strain rate was kept constant, the acoustic emission rate and the b-value remained constant and independent of the stress increase. Furthermore, when the dilatant strain rate was held constant at a higher value, the b-value was constant at a lower level. As the decrease in the b-value indicates the higher dilatant strain rate, the b-value is one of the most useful key parameters in the fracture predictions.  相似文献   

17.
循环围压对饱和软黏土永久变形的影响   总被引:1,自引:0,他引:1  
孙磊  蔡袁强  王军  郭林 《岩土力学》2015,36(2):437-443
通过对温州典型饱和软黏土进行一系列不同应力路径下的部分排水循环动三轴试验,研究了部分排水条件下循环围压对饱和软黏土变形特性的影响。试验结果表明:部分排水条件下,与常规的围压保持恒定,偏应力单独循环作用下的三轴试验结果相比,循环围压的存在对饱和软黏土的永久体应变和永久轴向应变均产生了的显著的影响。在相同循环应力比和循环次数下,试样的永久体应变和永久轴向应变均随着循环围压幅值的增大而增大,说明常规的恒定围压循环三轴试验会低估高速交通荷载作用下路基土体的沉降。基于试样第10 000圈的永久体应变和永久轴向应变,分别建立了可以量化部分排水条件下循环围压对饱和软黏土永久体应变和永久轴向应变影响的经验公式,并用于预测饱和软黏土在交通荷载这种包含循环偏应力和循环围压耦合作用的复杂应力条件下产生的永久变形。  相似文献   

18.
周琦  刘汉龙  陈志波 《岩土力学》2007,28(Z1):855-858
传统的砂井地基径向固结理论基于小应变理论,所以假设固结过程中体积压缩系数 和水平渗透系数 为常数。然而,固结过程中的 和 均随孔隙比 的减小而呈非线性变化。在Hansbo理论基础上,引入普遍压缩方程和普遍渗透性变化方程来分别表示正常固结土的 - 和 - 的非线性变化关系,得到砂井地基非线性径向固结解,并与前者进行对比分析,探讨了非线性固结参数 和加荷比 对固结过程的影响。结果表明: 和 是控制砂井地基非线性径向固结过程的两个重要因素。  相似文献   

19.
A database with about 60 undrained monotonic and cyclic triaxial tests on kaolin is presented. In the monotonic tests, the influences of consolidation pressure, overconsolidation ratio, displacement rate and sample cutting direction have been studied. In the cyclic tests, the stress amplitude, the initial stress ratio and the control (stress vs. strain cycles) have been additionally varied. Isotropic consolidation leads to a failure due to large strain amplitudes with eight-shaped effective stress paths in the final phase of the cyclic tests, while a failure due to an excessive accumulation of axial strain and lens-shaped effective stress paths was observed in the case of anisotropic consolidation with \(q^{\text{ ampl }}< |q^{\text{ av }}|\). The rate of pore pressure accumulation grew with increasing amplitude and void ratio (i.e. decreasing consolidation pressure and overconsolidation ratio). The “cyclic flow rule” well known for sand has been confirmed also for kaolin: With increasing value of the average stress ratio \(|\eta ^{\text{ av }}| = |q^{\text{ av }}|/p^{\text{ av }}, \) the accumulation of deviatoric strain becomes predominant over the accumulation of pore water pressure. The tests on the samples cut out either horizontally or vertically revealed a significant effect of anisotropy. In the cyclic tests, the two kinds of samples exhibited an opposite inclination of the effective stress path. Furthermore, the horizontal samples showed a higher stiffness and could sustain a much larger number of cycles to failure. All data of the present study are available from the homepage of the first author. They may serve for the examination, calibration or improvement in constitutive models dedicated to cohesive soils under cyclic loading, or for the development of new models.  相似文献   

20.
赤泥的变形-强度特性与结构性关系的研究   总被引:13,自引:2,他引:11  
陈存礼  胡再强  谢定义 《岩土力学》2004,25(12):1862-1866
制铝工业排出的大量固体废料?--赤泥具有较强的结构性,笔者对其结构性及变形–强度特性进行了研究。根据饱和原状赤泥样及扰动样固结排水三轴剪切试验资料,用土力学方法分析了变形–强度特性与结构性之间的关系,探讨了结构性参数随轴应变及固结压力变化的规律。研究表明:(1)对浸水反应比较迟钝的饱和赤泥,用三轴试验条件下各应变水平原状样与扰动样的主应力差之比所表示的结构性定量化参数,来研究结构性对变形强度的影响可以得到良好的规律性。(2)结构性参数对固结周围应力反应敏感,不同固结周围压力和剪切应力对结构性的影响,主要发生在低应变区段内。(3)赤泥的变形–强度特性与其在形成过程中的固结应力大小及龄期长短没有直接的规律性关系,而与其在物理化学作用下结构性的强弱相关。  相似文献   

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