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1.
Interface damage and delamination is usually accompanied by frictional slip at contacting interfaces under compressive normal stress. The present work is concerned with an analysis of progressive interface failure using the cohesive crack model with the critical stress softening and frictional traction present at the contact. Both monotonic and cyclic loadings are considered for anti‐plane shear of an elastic plate bonded to a rigid substrate by means of cohesive interface. An analytical solution can be obtained by neglecting the effect of minor shear stress component. The analysis of progressive delamination process revealed three solution types, namely: short, medium and long plate solutions. The long plate solution was obtained under an assumption of quasistatic progressive growth of the delamination zone. In view of snap back response, the quasistatic deformation process cannot be executed by either traction or displacement control. The states of frictional slip accompanied by shake down or incremental failure are distinguished in the case of cyclic loading, related to load amplitude and structural dimensions. The analysis provides a reference solution for numerical treatment of more complex cases. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   

2.

Macroscopic frictional behavior of granular materials is of great importance for studying several complex problems associated with fault slip and landslides. The main objective of this study is to model the macroscale frictional behavior of granular soils under monotonic and cyclic loadings based upon micromechanical determination of dissipated energy at particle contacts. This study is built on the general observation that the externally computed energy dissipation should be equal to the total internal energy dissipation derived from inter-particle sliding and rolling, energy losses from inter-particle collisions, and damping. For this purpose, the discrete element method is used to model a granular soil and determine the stored, dissipated, and damping energies associated with shear loading for applied monotonic and cyclic velocities. These energies are then related to the friction by an application of the Taylor-critical state power balance relationship. Also, the contributions of the different modes of energy dissipation (normal, shear, and rolling) to the total frictional resistance were studied. By changing the inter-particle friction, the simulations showed that the macroscopic friction was nearly constant, the slip friction increased almost linearly with increasing inter-particle friction, and the difference between the two was attributed to the non-energy dissipating dilatancy component. By providing a clear relationship between energy dissipated by micro-scale mechanisms versus the traditional engineering definition based on macro-scale (continuum) parameters, this study provides a means to develop a better understanding for the frictional behavior of granular media.

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3.
泥页岩单轴抗压破裂特征及UCS影响因素   总被引:2,自引:0,他引:2  
正确认识泥页岩单轴抗压破裂特征及UCS影响因素对探究泥页岩破裂机制、钻完井设计、压裂评价、微裂缝预测、测井解释及地震响应等方面均具有重要参考价值。本文在对国内外近些年有关泥页岩单轴抗压及UCS研究系统调研及近期研究成果全面分析基础上,对泥页岩破裂特征及UCS影响因素进行了综合分析。研究结果表明,泥页岩单轴加载曲线的非弹性段变形机制受微裂缝的滑动、新微裂缝的产生、扩展及孔隙坍塌的综合影响。泥页岩单轴抗压破裂呈张性或张剪性,张性破裂易发生于刚度较高、固结程度较强的部位;而剪性破裂易发生于刚度较低、固结程度较弱的部位。S型破裂准则可以较为准确的描述泥页岩从单轴到三轴发生破裂时所对应的强度变化。从地质学角度,对影响泥页岩UCS的因素进行了归纳,分别为矿物组成、层理面角度、分选性、微组构、有机质含量及分布、孔隙度、水分、微裂缝8方面因素,详细分析了不同影响因素的影响机制。在这些影响因素中,微裂缝由于分布特征复杂,其对泥页岩单轴抗压破裂及UCS的影响机制研究尚不深入。因此建议未来应加强泥页岩微裂缝参数的定量化研究,从微观尺度研究微裂缝对泥页岩单轴抗压破裂的具体影响机制,该研究可以为页岩油气勘探、开发提供科学指导。  相似文献   

4.
以宁波④2层黏土为对象,在单双向两种不同振动模式下,通过不同围压及不同动应力比条件下的动三轴剪切试验,研究宁波软土的动力特性以及振后强度弱化特性。试验结果表明:单向振动模式下(不产生拉应力)产生的动弹性模量衰减、累积塑性应变比双向振动条件下(产生拉应力)的发展显著,但双幅弹性应变发展较弱;在振后剪切阶段,双向振动使得试样产生拉应力,振后抗剪强度弱化比单向振动明显;单向振动模式下,试样发生剪胀,围压越大,剪胀程度减弱直至消失,孔压-轴向应变曲线存在峰值,表现出类超固结土特性;确定了在两种振动模式下,适用于宁波④2层黏土的振后弱化参数。  相似文献   

5.
基于细观分析的黏土本构模型   总被引:1,自引:0,他引:1  
徐辉  王靖涛  张光永  钱勤 《岩土力学》2007,28(11):2297-2302
根据黏性土在固结排水条件下的加、卸载变形特征,分析了孔隙水,固体骨架在不同变形阶段的力学响应行为,按照细观力学分析中的自洽方法,建立了在固结排水条件下的黏土损伤本构模型。模型中考虑了孔隙水和固体骨架在加、卸载阶段的不同特性,认为在损伤阶段整体剪切模量的降低是由固体骨架颗粒接触面滑移而引起,与骨架中滑动相的体积百分比和滑动相的剪切模量有关,并给出了求解整体变形模量的解析方法,最后将模型预测与不同初始固结压力,不同应力路径的排水试验结果作了比较,证明该模型是合理的。  相似文献   

6.
模拟岩石压剪状态下主次裂纹萌生开裂的扩展有限元法   总被引:1,自引:0,他引:1  
师访  高峰  李玺茹  沈晓明 《岩土力学》2014,35(6):1809-1817
压剪应力状态下,岩石类材料中常见两类裂纹:翼型张拉裂纹和次生压剪裂纹。基于扩展有限元方法(XFEM),提出了模拟压剪裂纹面作用机制的扩展有限元位移增强方案,并给出了扩展有限元法分叉裂纹处理方法,分别用最大周向拉应力准则和Mohr-Coulomb准则判断张拉裂纹和压剪裂纹的萌生和扩展。基于Matlab平台编写了数值计算程序Betaxfem 2D,通过两个算例对所提方案进行了验证,所得结果与有限元法(FEM)计算结果吻合很好。模拟了单轴压缩载荷下含预制闭合裂纹试件的裂纹分叉、扩展过程,与试验结果的对比表明,所提方案可以模拟和预测岩石类材料张拉、压剪交互分叉裂纹的萌生和扩展行为。  相似文献   

7.
This paper presents an identification technique to characterize the contractive and pore pressure behavior of loose sandy soils under seismic excitation. The technique relies on acceleration and pore pressure records provided during excitation by vertical arrays of accelerometers and pore pressure sensors. The technique employs non-parametric estimates of shear stresses and strains. A multi-surface plasticity approach is used to model the soil response. A reduced scale centrifuge model and a large scale experiment are used to demonstrate the capabilities of the developed technique. The technique allows for a more complete interpretation of the coupled shear–volume behavior of a soil deposit.  相似文献   

8.
页岩各向异性特征的试验研究   总被引:9,自引:0,他引:9  
为研究彭水页岩气区块储层的各向异性特征,开展了石柱县龙马溪组页岩的单轴和三轴压缩试验,分析了其力学特性、强度特征和破裂模式的各向异性,并揭示了其破坏机制的各向异性。结果表明:(1) 龙马溪组页岩具有明显的各向异性特征,弹性模量在平行层理方向最大,垂直层理方向最小,且围压的增加使其增加速率不断减小;0°、30°和60°、90°页岩的泊松比随围压的增加呈现出了相反的变化规律,这可能与页岩层理间孔隙和微裂缝的良好发育有关。(2) 相同围压下,0°试样强度最高,90°次之,30°最低,总体上呈现出两边高、中间低的U型变化规律,而不同角度的Hoek-Brown强度准则能较好地反映其强度的各向异性特征。(3) 页岩破裂模式的各向异性是由破坏机制的各向异性引起的,而强度的各向异性是由破坏机制的各向异性控制的。单轴压缩时,0°页岩为沿层理的张拉劈裂破坏,30°为沿层理的剪切滑移破坏,60°为贯穿层理和沿层理的复合剪切破坏,90°为贯穿层理的张拉破坏。三轴压缩时,0°为贯穿层理的共轭剪切破坏,30°为沿层理的剪切滑移破坏,60°和90°为贯穿层理的剪切破坏;页岩地层的层状沉积结构和层理间的弱胶结作用是破坏机制各向异性的根源。研究结果为水平井井壁的稳定性分析和水力压裂施工设计等提供了技术参考。  相似文献   

9.
We have carried out boundary element calculations to simulate quasistatic propagation of a normal fault in the earth's crust under a horizontal tensile loading. Byerlee's frictional law is employed to describe the mechanical behavior of the fault surface. We hypothesize that in order for a normal fault to grow quasistatically, the mixed-mode effective shear stress intensity factor must exceed a threshold value (fracture toughness), a crustal material property. We suggest that the fault grows in a direction of local maximum shear stress. The direction of fault propagation thus depends on the ratio of tensile and shear stress intensity factors. A listric normal fault is likely to form in crustal material with a small shear fracture toughness. A listric normal fault is also more likely to form in crustal material with a high degree of plasticity.The propagation trajectory of an incrementally growing normal fault is examined. As the normal fault extends to a greater depth, the shear stress intensity factor drops, owing to an increase in fault surface friction. The equilibrium depth to which a normal fault will grow is controlled by the far field loading and the fracture mechanical property of the crustal material. The decrease of shear stress intensity with fault length also stabilizes the fault growth.  相似文献   

10.
A discrete element model is proposed to examine rock strength and failure. The model is implemented by UDEC which is developed for this purpose. The material is represented as a collection of irregular-sized deformable particles interacting at their cohesive boundaries. The interface between two adjacent particles is viewed as a flexible contact whose stress–displacement law is assumed to control the material fracture and fragmentation process. To reproduce rock anisotropy, an innovative orthotropic cohesive law is developed for contact which allows the interfacial shear and tensile behaviours to be different from each other. The model is applied to a crystallized igneous rock and the individual and interactional effects of the microstructural parameters on the material compressive and tensile failure response are examined. A new methodical calibration process is also established. It is shown that the model successfully reproduces the rock mechanical behaviour quantitatively and qualitatively. Ultimately, the model is used to understand how and under what circumstances micro-tensile and micro-shear cracking mechanisms control the material failure at different loading paths.  相似文献   

11.
An interface constitutive model is presented accounting for slip and sliding effects and also for dilatancy phenomena. The microslip effects are described by considering spherical asperity interaction with variation of contact area and generation of progressive or reverse slip zones. The incremental constitutive equations are derived with proper memory rules accounting for generation and annihilation of particular slip zones during the process of variable loading. It is further assumed that sliding of spherical contacts occurs along large asperities whose slope varies due to the wear process. The predicted shear and dilatancy curves are shown to provide close quantitative simulation of available experimental data. The strain ratchetting effect for non-symmetric cyclic loading was exhibited using the asperity wear model. The model presented could be applied to simulate rock joints, masonry, or concrete cracked interfaces, under monotonic and cyclic loading.  相似文献   

12.
滑带土的蠕变过程与微观结构密切相关,前人对滑带土的蠕变性质及微观结构做了大量研究,但对土体在蠕变过程中因时间效应发生的微观结构变化研究较少。本文选取延安二庄科北区滑坡滑带土为研究对象,采用直剪蠕变试验研究了滑带土的蠕变特性,用环境扫描电子显微镜对蠕变过程中不同阶段的土样进行SEM图像扫描,并对其微观结构孔隙特征进行定量分析。结果表明:滑带土样在400 kPa正应力荷载下具有明显蠕变特性,每一级剪应力加载均出现衰减蠕变和稳态蠕变阶段;当剪应力值达到255 kPa后,试样发生蠕变破坏,且滑带土样在蠕变过程中由于时间效应发生了塑性破坏。在每一级加载后,土样剪应变率均逐渐减小并最终趋于稳定;在各级剪应力加载后的衰减蠕变阶段,随着加载剪应力的增大,剪应变率也增大;蠕变过程中,土样的孔隙数逐渐减少,土颗粒重新定位排列,孔隙定向性增强,趋向于长条形的孔隙越来越多,孔隙轮廓越来越光滑,但圆形度越来越差。随着蠕变破坏的发生,在蠕变过程中形成的结构被迅速破坏,孔隙定向性减弱,数目急剧增加。  相似文献   

13.
谭文彬  何昌荣 《地学前缘》2008,15(3):279-286
岩石摩擦滑动的力学行为能够很好地用速率和状态依赖性摩擦本构关系来描述。在速率和状态依赖性本构关系中,速度依赖性参数a-b是控制摩擦滑动稳定性的重要参数。且a-b<0是断层上不稳定滑动成核的必要条件。为了进一步研究控制摩擦滑动的矿物成分因素,在已有辉长岩摩擦滑动实验结果的基础上,对辉长岩中主要矿物(斜长石和辉石)在不同加载条件下进行了3个系列的摩擦滑动实验研究。通过对实验结果的分析得到如下结论:(1)斜长石断层泥在实验温度范围内(<617℃)显示速度强化,且在大于450℃的高温区其速度依赖性参数a-b随温度的增大而增加。辉石断层泥的实验显示其有利于速度弱化滑动行为的出现,是造成辉长岩在615℃出现速度弱化的原因。(2)斜长石与辉石断层泥的摩擦强度都没有随温度的增加而显著变化。辉长岩断层泥的摩擦强度(1.83mm滑动位移处的值)为斜长石与辉石断层泥摩擦强度按体积百分比加权的平均值(摩擦系数精确到2位有效数字一致)。这一结果表明,辉长岩断层泥的应力支承结构可以抽象为一种双组分并列单元模型。(3)尽管前人研究结果表明石英控制了花岗岩的摩擦特性,但是某种主要矿物对岩石整体摩擦滑动性质的控制作用并不具有普适性。对于中性岩、基性岩而言,不能以一种主要矿物(如斜长石等)来判断岩石整体的摩擦滑动稳定性,否则会导致错误结论。  相似文献   

14.
To investigate the physical processes operating in active fault zones, we conduct analogue laboratory experiments where we track the morphological and mechanical evolution of an interface during slip. Our laboratory friction experiments consist of a halite (NaCl) slider held under constant normal load that is dragged across a coarse sandpaper substrate. This set-up is a surrogate for a fault surface, where brittle and plastic deformation mechanisms operate simultaneously during sliding. Surface morphology evolution, frictional resistance and infra-red emission are recorded with cumulative slip. After experiments, we characterize the roughness developed on slid surfaces, to nanometer resolution, using white light interferometry. We directly observe the formation of deformation features, such as slip parallel linear striations, as well as deformation products or gouge. The striations are often associated with marginal ridges of positive relief suggesting sideways transport of gouge products in the plane of the slip surface in a snow-plough-like fashion. Deeper striations are commonly bounded by triangular brittle fractures that fragment the salt surface and efficiently generate a breccia or gouge. Experiments with an abundance of gouge at the sliding interface have reduced shear resistance compared to bare surfaces and we show that friction is reduced with cumulative slip as gouge accumulates from initially bare surfaces. The relative importance of these deformation mechanisms may influence gouge production rate, fault surface roughness evolution, as well as mechanical behavior. Finally, our experimental results are linked to Nature by comparing the experimental surfaces to an actual fault surface, whose striated morphology has been characterized to centimeter resolution using a laser scanner. It is observed that both the stress field and the energy dissipation are heterogeneous at all scales during the maturation of the interface with cumulative slip. Importantly, we show that the formation of striations on fault planes by mechanical abrasion involves transport of gouge products in the fault plane not only along the slip direction, but also perpendicular to it.  相似文献   

15.
The San Andreas Fault zone in central California accommodates tectonic strain by stable slip and microseismic activity. We study microstructural controls of strength and deformation in the fault using core samples provided by the San Andreas Fault Observatory at Depth (SAFOD) including gouge corresponding to presently active shearing intervals in the main borehole. The methods of study include high-resolution optical and electron microscopy, X-ray fluorescence mapping, X-ray powder diffraction, energy dispersive X-ray spectroscopy, white light interferometry, and image processing.The fault zone at the SAFOD site consists of a strongly deformed and foliated core zone that includes 2–3 m thick active shear zones, surrounded by less deformed rocks. Results suggest deformation and foliation of the core zone outside the active shear zones by alternating cataclasis and pressure solution mechanisms. The active shear zones, considered zones of large-scale shear localization, appear to be associated with an abundance of weak phases including smectite clays, serpentinite alteration products, and amorphous material. We suggest that deformation along the active shear zones is by a granular-type flow mechanism that involves frictional sliding of microlithons along phyllosilicate-rich Riedel shear surfaces as well as stress-driven diffusive mass transfer. The microstructural data may be interpreted to suggest that deformation in the active shear zones is strongly displacement-weakening. The fault creeps because the velocity strengthening weak gouge in the active shear zones is being sheared without strong restrengthening mechanisms such as cementation or fracture sealing. Possible mechanisms for the observed microseismicity in the creeping segment of the SAF include local high fluid pressure build-ups, hard asperity development by fracture-and-seal cycles, and stress build-up due to slip zone undulations.  相似文献   

16.
构造解析证实,金州韧性剪切带是以右行走滑为主的大型缓倾斜剪切带,带内发育的糜棱面理-小型褶皱-香肠构造及肿缩构造-S?C组构的系列,以及广泛分布的拉伸线理,是总体非共轴持续变形条件下,带内共轴与非共轴线路相结合的结果,并且后者占主要地位。糜棱面理是最早生成的透入性构造,对其他构造的形成有重要作用。剪应变量(γ)大小与糜棱岩化程度有直接关系。鞘褶皱多发育于γ≥10地段。微构造发育机制的变化是:γ 由低到高,石英变形从低温晶体-塑性转向塑性变形与重结晶作用; 而云母矿物从外形定向转向粘性颗粒-边界滑动。  相似文献   

17.
为了探究不同加载方式下煤岩体孔隙周围的应力分布规律,通过CT三维重建技术构建含有不同孔隙形状的煤岩体骨架模型,并利用ABAQUS软件进行单轴、三轴压缩实验模拟。结果表明,球状孔隙结构在单轴压缩条件下,上下区域表现为拉应力集中,左右区域表现为压应力集中。不同倾角的椭球状孔隙结构其长短轴区域的应力集中类型不同。单轴压缩过程中,轴向加载速度影响球状孔隙周围的Mises应力峰值和σ1应力的变化;三轴压缩过程中,孔隙结构依然经历了压密、弹性、塑性和破坏4个阶段,较低的围压条件使得弹性阶段“应力-应变”曲线与“应力-时间”曲线高度重合。从微观角度为煤岩体力学研究提供了一种新的方法和思路。   相似文献   

18.
The use of discrete-element modelling (DEM) to simulate the behaviour of a highly idealized bituminous mixture under uniaxial and triaxial compressive creep tests is investigated in this paper. The idealized mixture comprises single-sized spherical particles (sand) mixed with bitumen and was chosen so that the packing characteristics are known and the behaviour of the mixture is dominated by the bitumen. The bitumen is represented as shear and normal (tensile and compressive) contact stiffnesses. Numerical sample preparation procedures for specimens containing spherical particles or clumps have been developed to ensure that the final specimen is isotropic and has the correct volumetric proportions. An elastic contact was used for the compressive normal contact stiffness and a viscoelastic contact was used for shear and tensile normal contact stiffness. Simulation results show that the idealized mixture is found to dilate when the ratio of compressive to tensile contact stiffness increases as a function of loading time. Uniaxial and triaxial viscoelastic simulations have been performed to investigate the effect of stress ratio on dilation and the numerical results have been verified with experimental data. The effects of introducing a proportion of frictional contacts and a more complex particle shape (clump) on dilation have been examined.  相似文献   

19.
Comments on the interpretation of deformation textures in rocks   总被引:4,自引:0,他引:4  
In rocks that undergo ductile deformation, preferred orientation develops as a result of intracrystalline slip and mechanical twinning. The orientation distribution is a consequence of the microscopic mechanisms and of the strain path. It can be used to get some insight into the deformation history; however it is never unique. The interpretation relies largely on polycrystal plasticity theory. The concepts of stress equilibrium and strain compatibility, which are two extreme assumptions made to model deformation, are discussed. New approaches such as the viscoplastic self-consistent theory are a compromise and may be applicable to mineral systems which display a high degree of plastic anisotropy. Important extensions allow for heterogeneous deformation in the polycrystal from grain to grain and even within grains in correspondence with microstructural observations. All these theories defy the popular notion which is becoming entrenched in the geological literature, that the microscopic slip plane normal aligns with the axis of maximum principal compressive stress, and that in simple shear the crystallographic slip plane rotates into the macroscopic shear plane and the slip direction into the macroscopic shear direction, an orientation referred to by geologists as ‘easy glide’. It is emphasized that future work on texture development of rocks should be based on rigorous physics rather than ingenious intuition, in accordance with an old recommendation of Walter Schmidt.  相似文献   

20.
杨丽平 《岩土力学》2018,39(7):2591-2598
在中国西北,建设了许多灌溉水渠,由于水渠的灌溉引起了许多滑坡破坏,并带来了人员伤亡和财产损失。以高楼村水渠灌溉引起的黄土滑坡破坏为例,提出了滑坡破环渐进过程为:水的入渗在滑体中产生一定深度的水压力,引起黄土黏聚力和摩擦角下降,使滑坡体在一定深度产生剪破坏,紧接着滑体后缘产生拉剪破坏,致使后缘黄土处于破坏后区状态,并产生不平衡剪应力。该不平衡剪应力驱动滑体向前移动,直至滑面只有一点处于临界状态,随即整个滑坡发生破坏,并伴随着滑体解体,产生泥流。这种破坏过程可以概括为:滑坡先产生剪破坏,紧接着后缘产生拉剪破坏,当破坏后区产生的驱动剪应力大于滑体的摩阻力,会推动滑坡向前移动,直至滑坡发生完全破坏。以理论和试验论证了这种破坏机制的正确性,并验证了一种新剪应力本构模型的合理性。  相似文献   

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