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1.
动荷载下砂土与EPS颗粒混合的轻质土变形特性的试验研究   总被引:3,自引:1,他引:2  
高玉峰  王庶懋  王伟 《岩土力学》2007,28(9):1773-1778
砂土与EPS颗粒混合的轻质土(LSES)是一种通过减轻地基压力、提高地基承载力以处理不良地基的新型轻质土工材料。由于LSES主要用作路基填土,因此,其在动荷载下的变形特性值得关注。基于室内动三轴试验结果,讨论了围压、水泥掺量、EPS含量以及循环加载次数对LSES动变形特性的影响。当围压较低时,LSES会呈现出与EPS块体相似的线性动应力-应变关系;而在较高围压下,LSES的动应力-应变拟合曲线则为双曲线型。在给定的应变水平下,LSES的割线动弹性模量Esec随着围压和水泥掺量的增加而增加,随循环加载次数的增多而逐渐衰减,EPS含量增多时,Esec-εd曲线更趋于平缓。  相似文献   

2.
林伟弟  李彰明  罗智斌 《岩土力学》2015,36(7):1966-1972
利用SPAX-2000(改进型)静动真三轴系统,针对淤泥类超软土进行静动力排水固结试验,研究包括较高频率在内的各冲击荷载频率(1、8、16 Hz)与不同围压(200、250、300 kPa)作用下淤泥的力学响应;此外,结合三轴剪切试验研究不同固结条件对淤泥不排水强度的影响。试验结果表明:(1)在相同冲击频率作用下,试样抗剪强度随着围压增大而提高;围压增大,使得球应力增大,体应变随着增大,有效地促进试样排水固结。(2)相同围压作用下,存在着一个冲击荷载频率阈值,当冲击频率低于这一阈值时,随着冲击荷载频率的提高,轴向应变量逐渐变小,反之逐渐变大。(3)冲击瞬间,体应变为负值,表现为体胀,这与原位试验夯击瞬间的孔隙水压力变化曲线一致,从而验证了高含水率淤泥在冲击作用下的孔压负增长现象。  相似文献   

3.
通过对钙质砂进行不排水条件下声发射试验,探讨了不同围压、剪切速率、初始孔隙比和级配下钙质砂声发射规律。试验结果表明:低围压(围压低于400 kPa)时,钙质砂声发射活动频率随着围压的升高而增加;围压增至800 kPa时,声发射活动频率有所下降。低剪切速率下,钙质砂剪切试验明显分为颗粒破碎阶段和颗粒滑移阶段,随着剪切速率增大,二者之间较模糊,不能明显区分;松散和密实状态下,钙质砂声发射活动规律相似,钙质砂声发射活动频率均高于中密状态钙质砂;级配较好的钙质砂,声发射率峰值出现在试样发生剪切破坏前;级配稍差,试样声发射率相对均匀,声发射率峰值出现在邻近试验结束时。   相似文献   

4.
Literature regarding the pore pressure generation characteristics and in turn the cyclic resistance behaviour of silty sand deposits is confusing. In an attempt to clarify the effect of nonplastic fines on undrained cyclic pore pressure response of sand–silt mixtures, an experimental programme utilising around 289 stress-controlled cyclic triaxial tests on specimens of size 50 mm diameter and 100 mm height was carried out at a frequency of 0.1 Hz. Specimens were prepared to various measures of density through constant gross void ratio approach, constant relative density approach, constant sand skeleton void ratio approach, and constant interfine void ratio approach to study the effect of nonplastic fines on pore pressure response of sand–silt mixtures. The effect of relative density, confining pressure as well as the frequency and magnitude of cyclic loading was also studied. It was observed that the pore pressure response is greatly influenced by the limiting silt content and the relative density of a specimen corresponding to any approach. The influence of other parameters such as relative density, confining pressure and magnitude of cyclic loading was as usual but an increase in frequency of cyclic loading was seen to generate excess pore pressure at a higher rate indicating an impact load type of behaviour at higher frequency. Utilising the entire test results over a wide range of parameters a new pore pressure band for sand–silt mixtures in line with Lee and Albaisa (1974) has been proposed. Similarly another pore pressure band corresponding to 10th cycle of loading as suggested by Dobry (1985) and up to a shear strain of around 25% has been proposed. These two bands can readily be used by researchers and field engineers to readily assess the pore pressure response of sand–silt mixtures.  相似文献   

5.
The shear strength of cohesionless soil is reduced as the water pressure inside the pores of the soil mass increases. The mathematical relationship between the shear strength and the pore water pressure was derived using Mohr–Coulomb failure criteria as a function of the confining pressure and the effective angle of friction. Experimentally, a series of consolidated drained triaxial tests with back pore water pressure was run on samples of saturated uniform dense sand. The tests were conducted at different confining pressures in the range of 100–400 kPa with an increment of 100 kPa. At each level of confining pressure, the tests were repeated at different values of back pore water pressure in the range of 0–100 kPa with an increment of 25 kPa. For each test, the initial applied back pore water pressure was kept constant during the test for comparing the results at the same effective confining pressure. This study concludes that the mathematical relationship gives accurate results at any level of confining pressure and/or pore water pressure as a function of the effective angle of friction that can be evaluated using single consolidated drained triaxial test at zero back pore water pressure.  相似文献   

6.
突出危险煤渗透性变化的影响因素探讨   总被引:4,自引:0,他引:4  
王登科  刘建  尹光志  韦立德 《岩土力学》2010,31(11):3469-3474
通过对突出危险煤渗透性试验研究,系统分析了不同围压、不同瓦斯压力和不同应力-应变状态条件下突出煤样的渗透特性,分别建立了突出危险煤的渗透性与围压、瓦斯压力和应力-应变等主要控制因素之间的定性和定量关系,探讨了不同载荷条件下突出危险煤渗透性的控制机制和变化规律。研究结果表明,载荷条件对突出危险煤的渗透性具有重要影响:(1) 在固定瓦斯压力条件下,突出危险煤样的渗透率随围压的增大而减小,且服从指数函数变化规律。(2) 在固定围压条件下,受Klinkenberg效应影响,渗透率与瓦斯压力之间大致呈“V”字型变化;Klikenberg效应发生在瓦斯压力p < 1 MPa的范围内。(3) 在三轴压缩下的应力-应变全过程中,不同载荷条件下突出危险煤样的渗透率-应变曲线变化趋势几乎一致,且都呈“V”字型走势;在微裂隙闭合和弹性变形阶段,煤样渗透率随应力增大而减小;进入屈服阶段后,渗透率达到最小值并在峰值强度到达之前完成反超过程;峰值强度之后渗透率持续增大直至试验结束;煤样渗透率反超后的变化要较反超前变化平缓。  相似文献   

7.
岩石抗压强度和变形参数是岩石工程设计的重要指标。由于岩石是典型的非均质材料,其强度和变形特性随样品尺 寸的变化而不同。本文采用PFC2D程序模拟了不同围压下不同尺寸岩样的压缩试验。结果表明(1) 岩样具有明显的尺寸效 应。同一围压下,尺寸越大,岩石强度、峰值应变和压缩模量越小,尺寸的变化对岩样的破坏模式影响较小;(2) 岩样具 有明显的围压效应。同一尺寸的岩样,随着围压的增大,岩石强度、峰值应变和压缩模量均增加,其中强度和峰值应变随 围压的增加呈线性增加。同时,随着围压的增大,岩石破裂模式由轴向劈裂破坏向剪切破坏变化;(3) 围压的存在会影响 岩样的尺寸效应。不同尺寸岩样的强度和峰值应变在相同围压区间内的增量基本相同,同时随着围压的增大,其强度和峰 值应变增加,进而使岩石强度和峰值应变的尺寸效应弱化;而不同尺寸岩样的压缩模量在相同围压区间内的增长率大致相 同,因而造成围压对压缩模量尺寸效应的影响较小  相似文献   

8.
为研究钙质砂剪切特性的围压效应和粒径效应,开展了在不同粒径、不同相对密实度以及不同围压条件下的三轴剪切试验,并引入应力相对软化系数和剪胀系数对应变软化特征及剪胀特征进行了定量表征。试验研究表明,随围压的增大,不同粒径钙质砂试样应变软化特征及剪胀特征逐渐减弱,且围压与应力相对软化系数和剪胀系数均呈半对数线性相关。不同粒径钙质砂试样存在一强度临界围压和体变临界围压分别使得应变软化特征和剪胀特征消失。在粒径为5~0.075 mm范围内,对松样而言,围压对软化特征和剪胀特征存在显著影响,但与粒径不存在显著相关性;对密样而言,随粒径逐渐减小,围压对试样软化特征的影响逐渐增强,而对试样剪胀特征的影响逐渐减弱。在低围压(50 kPa)条件下,0.5~0.25 mm粒径组试样破碎最显著。  相似文献   

9.
从细观角度出发,研究各细观参数对黄土三轴试验宏观力学响应的影响,基于三维离散元PFC3D软件及理论,结合室内三轴试验结果确定数值模拟基本细观参数取值范围,在50 kPa、100 kPa、150 kPa、200 kPa围压下对三轴试样进行颗粒流模拟,通过改变各细观参数值对黄土数值试样宏观力学行为影响程度及正交试验设计的方式,开展黄土三轴数值模拟过程中摩擦系数、孔隙率、颗粒刚度比kn/ks、颗粒粒径分布的敏感性分析,建立土体细观参数与宏观力学的关系式。结果表明:不同围压下数值试样峰值强度和剩余强度均与摩擦系数正相关,与颗粒刚度比、孔隙率负相关,而颗粒粒径分布的变化对其影响均小于2%。低围压下(50 kPa),孔隙率对数值试样峰值抗剪强度和剩余强度影响最大,颗粒刚度比次之,高围压下(200 kPa),摩擦系数对数值试样强度的影响比颗粒刚度比更为显著;对数值试样的初始线弹性模量和应变软化特性影响最大的细观参数为孔隙率,刚度比次之,颗粒粒径分布最小,200 kPa围压下正交试验分析结果与数值分析结果一致。通过改变细观参数取值范围的方式系统地分析了其对黄土三轴试验宏观力学性能的影响,为今后离散元软件用于黄土室内试验研究提供了参考。  相似文献   

10.
钙质砂的颗粒易碎性是造成其变形和强度特性不同于石英砂的重要性质。本文基于临界状态理论,通过一系列试验定量地描述钙质砂临界状态线随颗粒破碎的演化规律。本文试验分两个阶段进行:第1阶段研究了60~2000 kPa围压条件下钙质砂的力学特性和颗粒破碎特征;第2阶段以不同破碎率的试样为母本重塑制样,在100~300 kPa围压条件下,剪切至破碎临界状态线。试验结果表明:在较小围压(<300 kPa)条件下,松砂和密砂均表现出明显的剪胀和应变软化特性;而高围压(>1 MPa)条件下,显著的颗粒破碎会造成试样的持续剪缩;颗粒破碎存在明显围压阈值,对于松砂而言,在围压小于300 kPa条件下,颗粒基本不发生破碎;在e-lg p'平面内,破碎临界状态线的截距ΔeΓ和斜率λc均会随着修正相对破碎率Br*的增大而减小,即颗粒破碎会使临界状态线发生下移和逆时针转动;而在q-p'平面内,钙质砂的临界状态点落在同一条直线上,即存在唯一的临界状态应力比Mcr和临界摩擦角φcr。  相似文献   

11.
Implementation and applications for a constitutive numerical model on F‐75 silica sand, course silica sand and two sizes of glass beads compressed under plane strain conditions are presented in this work. The numerical model is used to predict the stress versus axial strain and volumetric strain versus axial strain relationships of those materials; moreover, comparisons between measured and predicted shear band thickness and inclination angles are discussed and the numerical results compare well with the experimental measurements. The numerical model is found to respond to the changes in confining pressure and the initial relative density of a given granular material. The mean particle size is used as an internal length scale. Increasing the confining pressure and the initial density is found to decrease the shear band thickness and increase the inclination angle. The micropolar or Cosserat theory is found to be effective in capturing strain localization in granular materials. The finite element formulations and the solution method for the boundary value problem in the updated Lagrangian frame (UP) are discussed in the companion paper. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   

12.
粗粒土的颗粒破碎演化模型及其试验验证   总被引:1,自引:0,他引:1  
郭万里  朱俊高  钱彬  张丹 《岩土力学》2019,40(3):1023-1029
  相似文献   

13.
In this paper, firstly the mesoscopic elemental mechanical model for elastic damage is developed and implemented into the rock and tool interaction code (R-T2D). Then the failure processes of a heterogeneous rock specimen subjected to a wide variety of confining pressures (0–80 MPa) are numerically investigated using the R-T2D code. According to the simulated results, on the one hand, the numerical simulation reproduced some of the well-known phenomena observed by previous researchers in triaxial tests. Under uniaxial compression, rock failure is caused by a combination of axial splitting and shearing. Dilatancy and a post-failure stage with a descending load bearing capacity are the prominent characteristics of the failure. As the confining pressure increases, the extension of the failed sites is suppressed, but the individual failure sites become dense and link with each other to form a shear fracture plane. Correspondingly, the peak strength, the residual strength and the shear fracture plane angle increase, but the brittleness decreases. When the confining pressure is high enough, the specimen behaves in a plastic manner and a narrow shear fracture plane leads to its failure. The prominent characteristics are volume condensation, ductile cataclastic failure, and a constant load bearing capacity with increasing strain. On the other hand, the numerical simulation revealed some new phenomena. The highest microseismicity events occur in the post-failure stage instead of the maximal stress, and most of the microseismicity energies are released in the failure localization process. As the confining pressure increases, the microseismicity events in the non-linear deformation stage increase dramatically and the ratio between the energies dissipated at the non-linear deformation stage and those dissipated in the whole loading process increases correspondingly. Therefore, it is concluded that the developed mesoscopic elemental mechanical model for elastic damage is able to reproduce accurately the failure characteristics in loading rock specimens under triaxial conditions, and the numerical modelling can furthermore obtain some new clarifications of the rock fracture process.  相似文献   

14.
王春  唐礼忠  程露萍  陈源  刘涛  韦永恒 《岩土力学》2018,39(12):4537-4546
以冬瓜山铜矿深部出矿进路附近的矽卡岩为研究对象,采用改进的SHPB试验系统,进行高轴压和围压共同作用下受频繁动态扰动时深部矽卡岩动力学特性的研究。研究结果表明:预加载的高轴压和围压促使岩石内部微裂纹闭合,致使冲击荷载作用时动态应力-应变曲线初始阶段无下凹现象,即无压密阶段;峰值应力后,当岩样内部存储的弹性力大于卸荷时的冲击荷载时,出现应变减小的回弹现象,否则压缩应变一直增大至岩样破碎;累计扰动冲击次数随围压增大递增,随轴压增大递减,且增减率受围压、轴压大小的影响;动态变形模量、动态峰值应力随扰动冲击次数增加而减小,但最大应变及动态峰值应变增加;动态均值强度随轴压增大而减小,随围压增大先减小后增大;岩石动态变形过程中伴随着弹性变形,产生的回弹应变总体上随扰动冲击次数的增加呈先增大后减小的趋势发展。  相似文献   

15.
为准确地测量岩石试样在不同围压作用下的拉伸强度与变形特性,对用于岩石三轴压缩试验的MTS815材料试验机为主体设备进行了一系列技术改造,一方面设计加工了一套试验机活塞与三轴室的随动连锁装置,使原本只能提供压缩载荷的MTS815试验机也能精确提供轴向拉伸荷载;另一方面设计开发一种多自由度岩石试样三轴拉伸夹具,解决岩石等脆性材料在拉伸过程中难以始终保持对中的技术难题。提出一套完整的测试技术方法,能实现0~140 MPa围压范围内各种岩石试件的复杂三轴直接拉伸测试研究,利用研发的配套装置与测试方法对页岩试样进行了三轴拉伸试验。结果表明,试验装置和试验方法完全能够进行不同围压条件下的岩石三轴拉伸试验,得到相应的三轴拉伸试验曲线;页岩在低围压和高围压下呈现不同的破坏特征和破坏形式,低围压下依然呈现脆性特征,高围压下则是由脆性向塑性转换。  相似文献   

16.
吴祁新  杨仲轩 《岩土力学》2020,41(3):915-922
砂土的力学响应具有显著的增量非线性特征,这与离散颗粒的微观结构,即组构特性密不可分。采用应变响应包络可以较好地获得材料在不同加载方向上的增量力学响应。在物理试验中无法同时获得同一试样在不同加载方向下的宏、微观响应,故采用离散元方法,对具有不同应力历史、不同应力状态和不同级配的试样在Rendulic平面上的增量力学响应进行了系统研究和分析。离散元模拟结果表明,传统的塑性理论不能很好地描述具有复杂应力历史试样的增量力学响应,而基于颗粒间接触法向的组构增量与剪应变之间在多种不同的工况条件下均具有较强的线性相关性。当砂土的相对密实度相同时,该线性系数主要与围压的大小有关,对颗粒级配、应力历史以及应力比的变化均不敏感。由于组构的大小可以较好地量化砂土的内结构各向异性程度,进而表征应力历史的作用。上述模拟结果为在本构建模中引入组构演化机制,综合反映外荷载和内结构各向异性对砂土增量本构关系的影响提供了较好的微观物理依据。  相似文献   

17.
In this paper, undrained triaxial compression tests were performed on specimens obtained in Oued Rass sand (Chlef, Algeria). The objective of this study is to investigate the effects of specimen deposition methods, the initial density, and the confining pressure on the undrained behavior of this sand. The test results show that the initial confining pressure and the relative density affected, in a significant manner, the resistance to liquefaction. However, it increases with confining pressure and relative density. The results also show that the specimens prepared by dry deposition method have a greater resistance to liquefaction than those prepared by moist tamping. A nondestructive comparative analysis of the deposits by X-ray microtomography carried out at the granular scale made it possible to characterize more precisely the difference of the obtained structures for the two deposition modes.  相似文献   

18.
堆石粗粒料颗粒破碎试验研究   总被引:30,自引:0,他引:30  
利用室内大型三轴试验,对堆石等粗粒料的颗粒破碎进行了分析。结果表明,颗粒破碎率随围压的增加而增加,呈非线性状态,二者之间的关系可以用双曲线表示。颗粒破碎的增加将导致粗粒料的抗剪强度降低,峰值内摩擦角与颗粒破碎率之间呈幂函数关系,不论颗粒的岩性、强度、大小、形状、级配和初始孔隙比等情况如何,试验资料都落在一个狭窄的区域,如果围压和材料的试验参数已知,则可估计颗粒破碎率。  相似文献   

19.
侯志强  王宇  刘冬桥  李长洪  刘昊 《岩土力学》2020,41(5):1510-1520
为了揭示应力扰动和卸载围压作用下大理岩损伤破裂的物理过程和非线性力学行为,采用GCTS RTR-2000伺服加载岩石力学试验机进行了岩石疲劳卸围压试验,同时对破坏试样进行了压后裂纹形态CT扫描可视化分析。结果表明:周期性的加卸载作用对大理岩起到了主因损伤作用,卸围压的作用对大理岩起到了根本性的破坏作用。岩石疲劳循环形成滞回环,滞回环面积由疏变密,滞回环加载和卸载曲线接近重合,加卸载模量近似相等;岩石经过卸围压作用,岩石的轴向、径向和体积应变表现为不同程度增大,表明应变对围压降低具有强敏感性,敏感程度由高到低依次为体积应变、径向应变和轴向应变;由于疲劳循环的影响,卸围压作用产生的围压降幅随循环次数增多而降低,卸围压时长随循环次数增多而减少;量化宏观应变变形,求得应变损伤指数 、 、 ,疲劳循环次数越多,应变损伤指数越大;岩石破坏后细观CT扫描揭示了疲劳循环损伤对岩石破裂形态影响的内在机制。随疲劳循环次数的增加,裂纹密度和规模显著增加。研究成果可为地下工程疲劳活动规律和开挖卸荷问题提供理论和模型支撑。  相似文献   

20.
在IMPa围压下,对不同温度条件下的冻结兰州黄土三轴压缩试验过程进行CT动态扫描,获得了由CT数表示的土体损伤量表达式.结果表明:冻结兰州黄土最初在围压作用下,试样沿径向方向被压缩,导致试样轴向伸长;低温冻结试样的弹性变形持续时间长于高温试样,如-2.3℃试样在应变达到0.32%时即开始屈服进入塑性变形,而-7℃试样的...  相似文献   

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