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1.
The behaviour of an artificially cemented sandy gravel   总被引:1,自引:0,他引:1  
The major section of the city of Tehran, Iran has been developed on cemented coarse-grained alluvium. This deposit consists of gravely sand to sandy gravel with some cobbles and is dominantly cemented by carbonaceous materials. In order to understand the mechanical behaviour of this soil, a series of undrained triaxial compression tests and unconfined compression tests were performed on uncemented and artificially cemented samples. Portland cement type I was used as the cementation agent for preparing artificially cemented samples. Uncemented samples and lightly cemented samples (1.5% cement) tested at high confining pressure showed contractive behaviour accompanied with positive excess pore water pressure and a barrelling failure mode. However, cemented samples and uncemented samples tested at low confining pressure (25 and 50 kN/m2) showed dilative behaviour accompanied with negative excess pore water pressure. Shear zones were formed in these samples and a clear peak in excess pore water pressure and stress ratio against strain could be observed. Test results showed that the limiting stress ratio surface for cemented samples is curved and expands as the cementation and density increase. Unconfined compression strength of cemented samples increases with increases in cementation and density as well.  相似文献   

2.
水泥土细观破裂过程的损伤本构模型   总被引:1,自引:0,他引:1  
根据对饱水环境中水泥土力学特性的宏观试验和细观破裂过程试验研究,建立了水泥土细观孔隙损伤变量和损伤本构模型,该水泥土的损伤变量不仅与水泥土的初始损伤有关,而且与水泥土微小孔隙中的孔隙水的密度有关,所建立的损伤本构模型与饱水情况下水泥土的单轴压缩试验曲线进行了对比,分析结果表明,所提出的水泥土细观孔隙损伤本构模型与试验值基本吻合,很好地描述了水泥土的损伤演化特性。  相似文献   

3.
Compressibility behaviour of lime-stabilized clay   总被引:2,自引:1,他引:1  
Lime stabilization reactions result in the formation of inter-particle cementation bonds that improves strength and reduce compressibility of clay soils. Though several studies in the past have focused on the impact of lime stabilization on the strength behaviour, few studies have examined the impact of lime stabilization on the compressibility behaviour of clay soils. The present study examines the compressibility behaviour of lime-stabilized soils in light of the frameworks proposed for saturated cemented clays. Cementation bonds formed during the lime stabilization reactions imparted yield stress in the range of 3900–5200 kPa to the artificially cemented specimens. The compression behaviour of these artificially cemented specimens in the pre-yield stress and post-yield stress regions conformed to the framework proposed for saturated cemented soils.  相似文献   

4.
煤炭胶结充填开采技术是一项基于生态、地质和资源安全的新型开采技术,质量分数是控制胶结充填材料性能的重要因素。为了掌握风积沙质胶结充填材料对质量分数的响应,试验研究了质量分数对材料多项性能的影响规律。结果表明:抗压强度、坍落度、泌水率、分层度对质量分数的响应较为显著,凝结时间相对较弱。随着质量分数升高,抗压强度增长较快,坍落度、泌水率、分层度明显降低,凝结时间缓慢降低。同时质量分数与材料输送的屈服应力、黏度系数、沿程阻力等具体指标直接相关,但对各指标影响规律存在较大差异。分析认为,质量分数对材料性能和指标的控制是基于水分在材料输送和硬化过程中的化学和物理作用,水分在材料中既是化学反应的参与项,也是物理性能的控制项,对于每一种胶结充填材料均存在合理的质量分数区间。   相似文献   

5.
The objective of the present paper is to present a numerical study on the penetration performance of concrete targets with 2 different water contents. Numerical analysis has been performed by using the finite element code Abaqus/Explicit, in which a coupled elastoplastic damage model has been developed for saturated/unsaturated concrete under a wide range of confining pressures. The performance of proposed model has been firstly verified by simulating the triaxial compression tests and penetration tests realized with saturated/dry concretes. Comparisons of available experimental results and numerical simulations show that the proposed model is able to reproduce satisfactorily the mechanical behavior of saturated and dry concretes. A higher failure stress and a more important pores closing are generally obtained in dry concrete samples with respect to saturated ones. Furthermore, the main observed patterns of penetration test realized with saturated concrete targets are also satisfactorily simulated by the numerical results. Therefore, the proposed model is used to numerically predict the penetration performance of dry concrete target, and the penetration performance of dry/saturated concrete target is discussed. We observe that in dry concrete target, the penetration of projectile is strongly declined, and a smaller damage zone is created. The numerical predictions and discussions can help engineers to enhance their understandings on the influence of hydraulic conditions on structural vulnerability of concrete structures subjected to near‐field detonations or impacts.  相似文献   

6.
Results of experimental investigation and numerical simulations of the mechanical response of the saturated cemented materials are reported. Saturated as well as dry samples cored from commercially available fire bricks are used. The samples were tested in a triaxial rock cell at different initial confining pressures. The tests have been simulated using the constitutive framework proposed in Part I of this paper. The results both experimental and numerical, provide the evidence in support of the proposed stress decomposition, thereby questioning the validity of Terzaghi's principle for the considered class of materials.  相似文献   

7.
Understanding the shear behaviour of the interface between cemented tailings backfill and retaining wall structures (barricades, bulkheads) is important for the optimal design of barricades or bulkheads, and for mine operators to balance strength and safety against cost. However, our understanding of the shear behaviour of the aforementioned interface is limited. This paper is aimed at investigating the interfacial behaviour and properties of cemented tailings backfill-retaining wall structures, including stress–strain behaviour, cohesion, friction angle and shear stiffness through direct shear tests. Two different types of barricade or bulkhead materials (brick and concrete) are used in this study. Interface shear tests are performed at various curing times of the cemented backfill. Valuable results are obtained with regards to the interface shear behaviour of backfill-retaining structures. Based on these results, interfacial properties between cemented tailings backfill and barricades or bulkheads show a significant time-dependent variation.  相似文献   

8.
Cemented coarse-grained alluvium is present in a vast area of Tehran city, Iran including its suburbs. This deposit consists of gravely sand to sandy gravel with some cobbles and is dominantly cemented by carbonaceous materials. In order to understand the mechanical behaviour of this soil, a series of triaxial compression tests were performed on uncemented, artificially cemented and destructured samples. Hydrated lime was used as the cementation agent for sample preparation to model the Tehran deposit. The tests were performed on cemented samples after an appropriate time for curing. The tests on cemented samples show that a shear zone appears as the shear stress approaches the peak shear strength. During shearing these samples undergo dilation at confining stress lower than 1000kPa. However, the uncemented and destructured samples show contraction during shearing. Peak shear strength is followed by strain softening for all cemented samples. The shear strength increases with increasing cement content but the influence of the cementation decreases as the confining stress increases. With increasing cementation the stress-strain behaviour of samples tend towards the behaviour expected of high-density soils. Test results indicate that the failure envelope for cemented samples is curved and not linear.  相似文献   

9.
谢学斌  李建坤  董宪久  田听雨 《岩土力学》2018,39(11):4183-4190
在胶结充填采矿法中,胶结充填体弹性系数和其不接顶高度是空区顶板安全的重要影响因素。基于柔性支护原理,把顶板变形分为两个阶段:顶板在覆岩自重应力作用下产生挠曲变形;顶板与胶结充填体接触后共同承载顶板覆岩自重应力;并据此分别建立了力学模型。以广西盘龙铅锌矿为工程分析实例,研究在不同胶结充填体弹性系数和不接顶高度条件下顶板挠度的变化规律。结果表明:当胶结充填体弹性系数k≥0.1 GN/m3时,不接顶高度h是影响顶板挠度的主要因素,当胶结充填体弹性系数k较小时,弹性系数k是影响顶板挠度的主要因素;当k≥0.1 GN/m3且h≤300 mm时,胶结充填体能有效控制顶板岩层移动和降低储存在其中的应变能。现场勘探结果与理论计算基本吻合,验证了研究成果的可靠性。  相似文献   

10.
The possibility of using concrete as a construction material at the Moon surface is considered. Dissimilarities between the Earth and the Moon and their possible effects on concrete are also emphasized. Availability of constituent materials for concrete at lunar surface is addressed. An emphasis is given to two types of materials, namely, hydraulic concrete and sulfur concrete. Hydraulic concrete necessitates the use of water and sulfur concrete makes use of molten sulfur in lieu of cement and water.  相似文献   

11.
A generalized nonlinear failure criterion formulated in terms of stress invariants is proposed for describing the failure characteristics of different frictional materials. This failure criterion combines a power function and a versatile function in the meridian and deviatoric plane, respectively, which is a generalization of several classic criteria, including the Tresca, Drucker–Prager, Mohr–Coulomb, Lade–Duncan and Matsuoka–Nakai failure criterion. The procedure for determination of the strength parameters was demonstrated in detail. Comparisons between the failure criterion and experimental results were presented for uncemented/cemented Monterey sand, normally consolidated Fujinomori clay, rockfill, concrete, Mu-San sandstone and granite, which reveal that the proposed failure criterion captures experimental trend quite well.  相似文献   

12.
王绪民  赵灿  陈善雄  庄心善 《岩土力学》2013,34(11):3134-3140
采用二次掺水法制备氧化钙胶结砂样,为加速碳酸化将试样放置在充满干冰的养护箱中养护,养护完成后对不同氧化钙掺入比的试样进行固结排水三轴试验和碳酸钙定量化学试验,分析了氧化钙掺入量对胶结砂物理力学特性的影响,定义了反映胶结物生成量的化学指标 ,利用 修正了摩尔-库仑强度理论。结果表明:二次掺水法可有效控制人工胶结砂的初始含水率,CaCO3胶结物的形成对试样物理力学特性有极大影响。在不同围压下,试样均表现出应力软化。随氧化钙掺入比的增加,试样应力软化现象逐渐增强,并且黏聚力及内摩擦角增量逐渐增大。胶结砂具有压硬性,围压、氧化钙的掺入比对试样剪胀有抑制作用。随着 的增加,试样黏聚力、摩擦角增量均有明显提高,通过试验数据得到了 与试样黏聚力、内摩擦角增量之间的函数关系,进而对摩尔-库仑强度理论进行了修正,修正后的公式能够反映胶结物的形成对胶结砂强度的影响。  相似文献   

13.
Scaly clays are stiff and highly fissured clays often used as construction materials. This paper presents the results of triaxial compression tests carried out on saturated and unsaturated samples of a compacted scaly clay. Complementary investigation on the microstructural features and their evolution with the amount of water stored into the material are also presented in order to shed light on the evolution of the micro- and macroporosity with suction. The water retention behaviour of the compacted scaly clay is also addressed. The results from the controlled suction triaxial tests are used to discuss the applicability of a single-shear strength criterion to compacted double-structured clays when the effective stress concept for unsaturated soils is used. The choice of the degree of saturation to be included in the effective stress definition for obtaining a satisfactory representation of the shear strength is addressed. It is shown that the best results are obtained when the macropore degree of saturation is considered along with its evolution during the applied stress path.  相似文献   

14.
A group of field tests and three-dimensional finite element simulation were used to investigate the behavior of the pre-bored grouting planted pile under compression and tension; moreover, a group of shear tests of the concrete–cemented soil interface was carried out to study the frictional capacity of the pile–cemented soil interface. The load–displacement response, shaft resistance and mobilized base load were discussed based on the measured and computed results. The measured and computed results show that the frictional capacity of the cemented soil–soil interface is better than the frictional capacity of the concrete–soil interface. The frictional capacity of the concrete–cemented soil interface is mainly controlled by the properties of the cemented soil, and the ultimate skin friction of the concrete–cemented soil interface is much larger than that of the cemented soil–soil interface. The frictional capacity of the soil layer close to the enlarged base is also promoted because of the compaction of the enlarged base. The enlarged cemented soil base can promote the behavior of the pile foundation under tension, and the enlarged cemented soil base undertakes approximately 26.3% of the total uplift load under the ultimate bearing capacity in this research.  相似文献   

15.
This article is devoted to numerical modeling of anisotropic damage and plasticity in saturated quasi‐brittle materials such as rocks and concrete. The damaged materials are represented by an isotropic poroelastic matrix containing a number of families of microcracks. Based on previous works, a discrete thermodynamic approach is proposed. Each family of microcracks exhibits frictional sliding along crack surfaces as well as crack propagation. The frictional sliding is described by a Coulomb–Mohr‐type plastic criterion by taking into account the effect of fluid pressure through a generalized effective stress concept. The damage evolution is entirely controlled by and coupled with the frictional sliding. The effective elastic properties as well as Biot's coefficients of cracked porous materials are determined as functions of induced damage. The inelastic deformation due to frictional sliding is also taken into account. The procedure for the identification of the model's parameters is presented. The proposed model is finally applied to study both mechanical and poromechanical responses of a typical porous brittle rock in drained and undrained compression tests as well as in interstitial pressure controlled tests. The main features of material behaviors are well reproduced by the model. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

16.
In this paper, an existing elastoplastic constitutive model, originally developed for granular soils, is adapted to describe the stress–strain behaviour of cemented granular soils. The existing model (CJS), due to its modular formulation, can be easily developed to take into account different supplementary behavioural aspects in soil mechanics. In the present study, the failure mechanism of the CJS model is modified by introducing the essential aspects in the behaviour of cemented granular soils in its formulation. All of the model parameters have clear physical meaning and can be identified using classical laboratory tests. A set of direct relations between model parameters and famous mechanical parameters of soils such as internal friction angle and cohesion at peak and residual states is presented. In order to validate the model, the results of triaxial and uniaxial tests in the compression and extension performed on cemented granular materials are used. The validation results indicate the good capability of the proposed model.  相似文献   

17.
土体的力学特性往往因应力状态和应力路径而异。为了探讨垂直加载和等剪路径下饱和土的力学特性,制备饱和重塑黄土试样,通过固结不排水(CU)和常剪应力排水剪(CSD)三轴试验,分别测定并绘制其应力-应变曲线、孔隙水压力变化曲线和应力路径曲线。试验结果表明,饱和重塑黄土在2种路径下有明显不同的变形特点:CU路径下的应力-应变曲线皆呈弱软化型,孔隙水压力先快速上升后逐渐趋于稳定;CSD路径下维持偏应力为一常量,施加孔隙水压力后的很长时间内试样变形很小,当孔隙水压力增大至试验围压的60%~75%时,试样迅速破坏。CSD路径无偏应力峰值,文中根据轴应变随平均有效应力变化曲线定义了等效峰值破坏线。通过对比发现,2种路径下饱和重塑黄土的有效峰值强度指标差异明显,而有效残余强度指标相近,表明有效残余强度指标是重塑黄土内在属性,受应力路径的影响不大。该研究结果可为实际工程选取正确的应力路径试验提供参考。  相似文献   

18.
19.
静三轴试验中水泥土力学特性及本构模型研究   总被引:6,自引:1,他引:5  
通过不排水三轴压缩试验对水泥土的力学特性进行研究,重点分析了围压与水泥掺入比对水泥土体强度、孔压及刚度的影响。试验结果表明,随着围压与水泥掺入比的增加,水泥土体的强度与刚度均增加,而孔压随之减少;随着轴应变的增加,刚度逐渐减少。而在加载初期,刚度衰减较快,随着轴应变的继续增加曲线渐趋平缓,衰减现象并不明显;随着无量纲化偏应力的增加,无量纲化刚度逐渐减少,并且两者为曲线关系。通过对水泥土的刚度软化规律进行描述,得到了修正的邓肯-张模型。通过对试验曲线进行回归分析确定了模型参数。与实测数据对比发现,该修正模型不仅可以较好地模拟水泥土的应力-应变关系,还体现了水泥土应变软化型曲线的特点。  相似文献   

20.
温度与侵蚀对沥青混凝土冻融疲劳寿命的影响   总被引:1,自引:1,他引:0  
为了提高盐渍土地区沥青路面的疲劳性能, 对SBS改性沥青混凝土进行了清水与饱和氯盐溶液的冻融劈裂疲劳试验, 研究了温度与氯盐侵蚀共同作用下, 沥青混凝土冻融疲劳寿命衰减规律. 结果表明: 温度与氯盐侵蚀是影响沥青混凝土冻融疲劳寿命的重要因素. 当冻融次数相同时, 沥青混凝土冻融疲劳寿命随冻融温度降低而不断减小; 当冻融温度相同时, 其冻融疲劳寿命随冻融次数增加而不断减小. 饱和氯盐溶液中沥青混凝土冻融疲劳寿命明显低于清水条件, 说明氯盐能够加速沥青混凝土冻融疲劳寿命衰减, 冻融温度越低, 盐冻破坏越严重. 通过对试验数据回归分析可知, 沥青混凝土冻融疲劳寿命与冻融循环次数之间具有较好的相关性, 可以利用两者之间的指数函数关系来预测沥青混凝土冻融疲劳寿命.  相似文献   

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