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1.
柯文汇  陈健  盛谦  栗晓龙  黄珏皓 《岩土力学》2016,37(8):2198-2205
为了描述软黏土一维应力-应变关系的时效特性,基于Bjerrum的等时间线体系,提出等黏塑性应变率线概念,推导了黏塑性应变率与黏塑性应变增量的关系,建立了软黏土的一维弹黏塑性模型;从理论上分析了新建模型与3种典型的一维弹黏塑性时效本构模型的内在联系,表明新建模型与其他3种模型在本质上是等效的,且形式更简洁,物理意义更明确;利用新建模型对软黏土的固结-蠕变耦合效应、应变率效应、应力松弛效应等时效特性进行了理论分析,并得到了相应的解析解;结合宁波软黏土的一维固结试验,阐述了模型参数的确定方法,并用新建模型对宁波软黏土的固结-蠕变试验、温州软黏土的一维多级等应变率试验、香港海相软黏土的一维应力松弛试验进行模拟,验证了新建模型的有效性。研究结果表明,新建模型能很好地模拟软黏土的一维时效特性。  相似文献   

2.
结构性黏土的压缩变形特性   总被引:1,自引:0,他引:1  
海相软黏土的结构性对土体的变形与强度特性有着重要的影响,这种影响与爆炸挤淤置换法处理软基的置换深度直接相关,是海堤基础沉降与稳定性分析的不确定因素。为了探究结构性对海堤地基沉降的影响,并对海相软黏土的压缩特性进行定量分析,建立结构性黏土的压缩变形模型,同时给出模型参数的确定方法。利用文献中的试验数据对模型进行了验证,结果表明模型不仅适用于一维应力状态下的变形分析,能够描述三轴应力状态下结构性黏土的压缩特性。利用所建模型对浙江漩门地区海相软黏土的压缩特性进行模拟,分析表明,模型能较好地考虑结构性对该地区软黏土压缩变形的影响,为该地区海堤沉降的预测提供量化分析的手段,有助于加强结构性黏土地区海堤地基设计与施工的理论基础。  相似文献   

3.
为了描述天然软土的时间相依以及结构性特征,提出了一种能考虑土体超固结和结构性的实用弹黏塑性本构模型。它以Asaoka和Hashiguchi的上下负荷面作为某一应变速率下的参考屈服面,按照相对过应力的基本思路,新引入了两个能通过不同应变速率三轴压缩试验测定的率敏性参数 和 ,建立了以当前应力、黏塑性应变以及黏塑性应变速率为状态变量的动屈服准则函数,并给出了基于Newton-Raphson迭代的应力积分算法,且成功地将其嵌入到大型有限元软件ABAQUS中。最终通过数值算例来验证模型的正确性以及应力积分算法的可靠性。结果表明:该模型能同时描述土体的率敏性、蠕变以及结构性特征,模型参数物理意义明确、易懂可测,预测结果与试验数据吻合良好,可用于复杂边值问题的有限元计算。  相似文献   

4.
基于扰动状态概念的结构性土压缩特性分析   总被引:1,自引:0,他引:1  
刘维正  石名磊  缪林昌 《岩土力学》2010,31(11):3475-3480
由于土结构性的影响天然沉积土的结构是亚稳定的,屈服后的压缩变形阶段必然伴随着结构的破损。将附加孔隙比?e作为表征原状土的一个结构状态参数,基于扰动状态概念,引入定量分析附加孔隙比?e随固结压力变化关系的方法,得到一维扰动状态概念(DSC)压缩模型,以描述结构性土压缩损伤现象,并通过结构破损指数b来刻画压缩过程中的结构破损速率。根据该模型,对太湖湖沼相典型的天然沉积软黏土、粉质黏土和硬黏土不扰动试样的一维压缩试验结果进行模拟和分析,并结合试验数据提出了模型参数的测定方法。分析结果验证了该模型能够描述具有不同结构形式土样的压缩特性及其实际变形过程中表现出的非线性,这给结构性土非线性固结与沉降计算提供了一定的理论基础。  相似文献   

5.
张涛  李涛  冯硕 《岩土力学》2022,43(10):2757-2767
常规三轴压缩试验中具有较强结构性的黏性土在围压较低时其应力−应变关系会呈现应变软化现象,一般还伴有塑性变形,通常土体内部结构损伤是应变软化产生的主要原因。考虑到采用经典塑性理论描述材料的应变软化不仅会违背 Drucker 的稳定性假设,而且也不能描述卸载塑性。因此,基于修正剑桥模型及 Li 和 Meissner 提出的塑性硬化准则,建立了一个描述饱和黏性土不排水应变软化的弹塑性双面模型。该模型以应力−应变曲线的峰值点分界,将应变硬化和应变软化分别作为独立的加载事件进行分析,同时引入新的结构性参数表征剪切过程中土体结构损伤导致的塑性刚度衰退。对不同固结状态饱和结构性黏土的三轴固结不排水压缩试验结果的模拟表明,所建模型能够较好地描述饱和黏性土的不排水应变软化特性。  相似文献   

6.
人工制备结构性软黏土长期变形特性试验研究   总被引:1,自引:1,他引:0       下载免费PDF全文
软黏土的结构性对其变形特性有很大的影响,由于成因等因素的不同,软黏土的结构性强弱不一,这也使得土体变形特性表现出差异性。为研究结构性强弱不同对软黏土长期变形特性的影响,人工制备含水率相同而结构强度不同的软黏土,对其进行三轴不固结不排水蠕变试验,研究结构性对软土长期变形特性的影响。试验结果分析表明,具有一定结构性的软黏土,当偏应力小于结构屈服应力时,土体结构损伤少,其蠕变变形量较小,一般不大于2%;而随着偏应力的增大,尤其是超过结构屈服应力时,土体结构出现大量破坏,应变增长很快,最终演变为临界型应变。相同偏应力作用下,土体结构性越强,各时刻的蠕变变形量也越小。在此基础上,以土体结构强度作为表征土体结构性强弱的量化参数,建立了考虑结构强度影响的长期变形预测公式。  相似文献   

7.
王小平  夏雄 《岩土力学》2011,32(11):3283-3287
岩土类材料具有显著的率相关性,其应力-应变关系全过程一般表现为硬化-软化特征,研究如何描述这两类特征具有重要的意义。基于岩土类材料的物理变形机制分析,考虑到其结构性特征,采用弹黏塑性本构模型,引入反映材料结构变化的可变结构黏滞系数及其演化方程,并将其嵌入到弹黏塑性本构模型中去,建立能够反映材料结构变化的弹黏塑性本构模型。利用玄武岩常规三轴常应变率试验结果对所建立的模型进行试验验证,结果表明:所建立的弹黏塑本构模型能够完整、合理地描述岩土类材料应力-应变关系全过程以及材料本构关系的率相关性,同时还能够反映材料的峰值强度、残余强度特征。  相似文献   

8.
吴小锋  李光范  胡伟  王晓亮 《岩土力学》2013,34(11):3187-3191
土体结构性的数学模型是21世纪土力学的核心问题。由于土体微观结构的变化造成了重塑土与原状土的力学特性上的差异。采用应变型和应力型结构性宏观参数来表征这种微观结构的变化,同时将应变性结构性参数引入到等向固结过程中去,用以描述常规三轴试验中剪切前的等向固结过程以及剪切时球应力对结构性土体的影响。实现应变型和应力型结构性宏观参数对整个三轴剪切过程的描述。修正剑桥模型对正常固结重塑黏土的三轴压缩试验能做出准确地描述,但对超固结黏土及原状土,即具有结构地土体,则不能给出准确地描述。将应变型和应力型结构性宏观参数引入到修正剑桥模型中,实现修正剑桥模型的结构化。该结构性修正剑桥模型参数的确定方法与常规修正剑桥模型参数的确定方法相差不多,只不过多了球应力与土体结构性体应变的关系式、偏应力与土体结构性广义剪应变的关系式。经过数值模拟比较,结构性修正的剑桥模型能较好地反映原状土的结构性演化过程,能描述原状土结构的整个破坏过程,在多种应力路径下具有很好的预测作用。  相似文献   

9.
浙江漩门三期围垦项目中采用爆炸挤淤置换法进行筑堤工程,为了对爆炸置换后海堤的固结沉降预测及稳定性评价提供可靠的试验参数,取爆炸前后地基范围内的海相软黏土,进行一维压缩和各向等压固结试验,并对该地区软土的压缩变形与结构特性进行初步研究。试验结果表明,海相软黏土存在一定的结构特性,表现出与其重塑土不同的性质;通过引入孔隙指数的概念,研究该地区软黏土的结构性,证实土体结构性的存在是其压缩特性不同于重塑样压缩曲线的内在原因,在高压力范围内其压缩曲线趋近于固有压缩曲线。爆炸挤淤作用对海相软黏土产生较强的扰动效应,也对其基本物理性质与压缩特性均产生重要影响;扰动效应造成软黏土的结构屈服应力降低,结构强度下降,采用新定义的结构破坏比来定量评估爆炸挤淤作用对海相软黏土结构性的破坏程度,可为爆炸挤淤置换法处理软基的海堤工程提供一定的理论基础。  相似文献   

10.
考虑土体结构性的弹塑性软化模型   总被引:1,自引:0,他引:1  
曾军军  卢廷浩 《岩土力学》2007,28(6):1091-1094
采用在原料土中掺入水泥的方法,人工制备试样模拟天然大孔隙结构性土。根据人工制备试样在不同应力路径下等应力比压缩试验结果,确定出结构性土体初始屈服面和初始屈服后塑性应变增量方向;另外,根据三轴排水剪切试验结果建立了土体屈服后硬化规律。在此基础上,提出了一个能够反映土体结构性的弹塑性应变软化模型,并用试验进行了验证。结果表明,所建模型能够较好地反映结构性土体的应力变形规律。  相似文献   

11.
The creep degradation is a common phenomenon for soft structured clays. In this paper, the creep degradation behavior for soft structured clays is first studied by combining intrinsic creep behavior and the structure indicator. A creep-implicit model and a creep-explicit model corresponding to a stress-based and a creep-based structure indicators are developed, respectively, under one-dimensional condition. Parameters determination for both models is straightforward from oedometer tests. Coupled with consolidation theory, both models are used to simulate oedometer tests with different structural levels and load durations on three clays. The predictive ability of the two models on creep behavior, creep degradation behavior and evolution of structure indicator is analyzed. The relationship between the two structure indicators is discussed based on experimental results. The comparison between experimental and numerical results demonstrates that both models can accurately describe the creep degradation behavior of soft structured clay under one-dimensional loading.  相似文献   

12.
This paper presents a three-dimensional elastic viscoplastic model that can describe the time-dependent behaviors of soft clays. The constitutive model is formulated based on the nonstationary flow surface theory and incorporates new developments, including (i) an improved definition of the nonstationary flow surface that is capable of capturing the stress–strain behaviors under different loading paths, (ii) a unique stress–strain—viscoplastic-strain-rate equation that is able to explicitly describe the nonstationary flow surface, and (iii) a final stable state concept that identifies the final equilibrium state at the end of creep and stress relaxation, which is also used to simplify the loading criteria. The consistency condition is validated for the proposed model, and the viscoplastic multipliers are calculated by solving the consistency equations. The model performance is investigated and validated via simulation of both oedometer and triaxial tests. The numerical results demonstrate that the proposed model is able to reproduce the main viscoplastic behaviors of soils, including creep, undrained creep rupture, stress relaxation, rate effect and accumulated effect.  相似文献   

13.
Accurate modeling of the time-dependent behavior of geomaterials is of great importance in a number of engineering structures interacting with soft, highly compressible clay layers or with organic clays and peats. In this work, a uniaxial constitutive model, based on Perzyna’s overstress theory and directly extendible to multiaxial stress conditions, is formulated and validated. The proposed constitutive approach essentially has three innovative aspects. The first concerns the implementation of two viscoplastic mechanisms within Perzyna’s theory in order to distinguish between short-term (quasi-instantaneous) and long-term plastic responses. Similarly, elastic response is simulated by combining an instantaneous and a long-term viscous deformation mechanism. The second innovative aspect concerns the use of a bespoke logarithmic law for viscous effects, which has never been used before to simulate delayed soil behavior (as far as the authors are aware). The third concerns the model’s extensive validation by simulating a number of different laboratory test results, including conventional and unconventional oedometer tests with small and large load increments/decrements and wide and narrow loading/unloading cycles, constant rates of stress and strain tests, and oedometer tests performed in a Rowe consolidation cell with measurement of pore pressure dissipation.  相似文献   

14.
关于结构土屈服破坏的探讨   总被引:8,自引:14,他引:8  
天然沉积土往往均为结构土,结构土的屈服破坏是研究结构土力学性状的关键问题之一。但是,结构土的屈服破坏至今没有合理明确的定义。对两种天然沉积软粘土的高质量不扰动土样进行了固结压缩试验和三轴等向固结不排水剪切试验以探讨结构土的力学性状。基于结构土的强度特性,提出了当外加应力达到固结屈服应力时结构土达到完全屈服破坏的新概念,并且初步探讨了结构土的强度性状与变形特性的本质联系与其耦合问题。  相似文献   

15.

A constitutive framework for the simulation of the time-dependent behaviour of soft structured clays has been developed from the combination of a number of existing modelling approaches. The formulation accounts, in a natural way, for time-dependent phenomena such as loading rate dependency, stress relaxation, ageing, and creep deformations under constant load. In addition, the effect of structure is accounted for. To demonstrate the potential of the proposed approach, a specific model based on this framework is described and applied to the simulation of a number of relevant laboratory tests from the literature.

  相似文献   

16.
The time-dependent stress-strain behavior of clayey soil is a great concern for predicting long-term settlement especially for large-scale land reclamation projects. In this paper, long-term time-dependent behavior of Hong Kong Marine Deposits (HKMD) under the loading stage and unloading stage is investigated by multi-staged loading oedometer test. Special emphasis has been given to study creep and swelling behavior. It is found that the clayey soil demonstrates the creep behavior during the loading stage, whereas it shows the swelling behavior during the unloading stage. The analysis of the creep behavior shows that there exists a linear trend between creep strain and time (in log-scale) within a certain period, whereas a nonlinear relationship in a long term view. Similar result is found for the swelling behavior. A nonlinear function is found to be suitable to predict the long-term creep and swelling behavior. The creep strain limit and swelling strain limit can be obtained if the nonlinear function is adopted to fit the experimental data. In addition, a new modified Elastic Visco-Plastic model considering Swelling (EVPS model) is proposed and presented, which considers the nonlinear creep and swelling behavior. In this modified EVPS model, the final creep and swelling equilibrium stress-strain state can also be obtained when the time is infinite.  相似文献   

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