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1.
Dai  Feng  Zhang  Qi  Liu  Yi  Du  Hongbo  Yan  Zelin 《Acta Geotechnica》2022,17(8):3315-3336

In this study, the inclined sandstone specimen is introduced into cyclic loading tests to fulfill the coupled compression-shear loading state. 21 cyclic coupled compression-shear loading tests are conducted on inclined specimens under different loading conditions, including maximum stress levels ranging in 0.80, 0.85, 0.90 and 0.95, and amplitude levels varying in 0.40, 0.50, 0.60 and 0.70. Our testing results systematically revealed the influence of cyclic loading parameters on fatigue mechanical response of rocks under coupled compression-shear loading, regarding the deformation characteristics, energy evolution, damage variable and failure mechanism. Under higher maximum stress or cyclic amplitude, inclined rocks are characterized by larger elastic modulus and higher dissipated energy, resulting in less irreversible strain, faster damage accumulation and shorter fatigue life. Furthermore, a fatigue life prediction method is proposed based on the energy dissipation, and its reliability is verified by comparing with experimental results. In addition, the progressive cracking behavior of rocks is analyzed during the fatigue tests by virtue of digital image correlation technique. Under cyclic coupled compression-shear loading, rock specimens are featured by a prominent shear-dominated failure along its short diagonal direction combined with local tensile damage along the loading orientation.

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2.
The experimental study of fatigue damage to coal under cyclic loading is important for guiding the design of pillars in underground coal mines where the pillars may be affected by repeated mining activity. In this paper, the strength, deformation, energy dissipation, and fatigue of samples of coal from a mine in China are studied using cyclic loading with a servo-controlled rock mechanical test system. The results indicate that coal is more likely to suffer fatigue damage than other, harder, rock lithologies. Under uniaxial cyclic loading, the fatigue failure “threshold value” for the coal samples studied is less than 78% of its uniaxial strength, but there is also a certain amount of fatigue damage when the cyclic loading/unloading experiments are carried out below the threshold value for fatigue failure. Axial deformation during the tests can be divided into three stages: initial deformation, constant steady deformation, and accelerated deformation. Transversal deformation can be divided into two stages: stable deformation and accelerated deformation. During cyclic loading experiments, imminent sample failure is signaled when transversal deformation increases significantly and quickly and the deformation recovers little when the load is removed. With an increasing number of loading/unloading cycles, a graph of energy dissipation per unit volume versus number of cycles presents an L-shaped curve when the coal samples do not suffer fatigue failure. However, for the coal samples that do rupture due to fatigue, the curve is U-shaped. Under cyclic loading, the evolution of compaction, strain hardening, strain softening, and failure of coal can be revealed in great detail by fatigue damage experiments.  相似文献   

3.
Guo  Zhengyang  Khidri  Mujtaba  Deng  Lijun 《Acta Geotechnica》2019,14(6):1843-1856

Unlike conventional grouted micropiles, screw micropiles have been recently introduced to the foundation industry. Full-scale field tests of screw micropiles were carried out at a cohesive soil site. The screw micropiles have a diameter varying from 76 to 114 mm and a length varying from 1.6 to 3 m, and spiral threads welded on the lower half of the steel tubular shaft. Site investigation from cone penetration tests (CPT) and laboratory testing implies that the soil was medium to stiff, low plasticity clay. Six axial monotonic and three axial cyclic load tests were performed on three micropiles. One micropile was instrumented with strain gauges to investigate the shaft load distribution during loading. The axial cyclic loading was intended to simulate cyclic inertia load during vertical ground motions. Results showed that the micropiles behave as frictional piles during monotonic tests; the unit shaft resistance and adhesion coefficient were calculated and compared with results in the literature. The end installation torque was estimated using CPT shaft resistance and was shown to agree reasonably with the measured torque. Under axial cyclic loading, the micropiles underwent small cumulative displacements and the magnitude of the displacement decreased with increasing pile length and diameter. Cyclic loading redistributed the load transfer along different segments of the micropile. Negative skin resistance was observed along the smooth pile shaft when the pile underwent decreasing axial loading.

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4.
岩石低周疲劳损伤模型与损伤变量表达方法   总被引:5,自引:3,他引:2  
在岩石(体)工程领域,周期荷载作用下岩石的疲劳破坏特性与岩体的长期稳定性密切相关。针对目前对混凝土疲劳损伤研究较多,但对岩石疲劳损伤研究相对较少这一现状,运用损伤力学方法对以累积塑性应变表达的损伤变量进行了分析,指出了目前常用的以累积塑性应变表达的损伤变量表达式存在的理论上的缺点,建立了一种新的岩石疲劳损伤变量表达方法。为研究岩石在疲劳荷载作用下力学性能不断劣化的过程,从连续介质损伤力学的基本理论出发,分析岩石在疲劳荷载下的损伤发展和变形规律,并考虑岩石材料的硬化特性,推导了低周疲劳损伤演化方程,经低周疲劳试验数据分析,所建模型可以较好地反映岩石的疲劳损伤演化规律,可用于岩石在低周疲劳荷载作用下的有限元分析。  相似文献   

5.
周期荷载作用下盐岩声发射特征试验研究   总被引:5,自引:0,他引:5  
任松  白月明  姜德义  杨春和  陈结 《岩土力学》2012,33(6):1613-1618
通过改变恒幅荷载条件下的上限应力、下限应力以及加载速率等试验条件,基于声发射技术对盐岩疲劳损伤特征进行试验研究。试验发现,盐岩声发射信号出现在加载阶段和卸载初期,而砂岩声发射信号一般集中出现在上限应力处;盐岩疲劳寿命对下限的依赖程度大于砂岩;随着上限应力的增大,盐岩声发射振铃数增多。加载速率的提高会加速盐岩的疲劳破坏。通过对比声发射振铃数累计曲线和应变累计曲线,发现两者有很好的对应关系,说明二者在反映盐岩疲劳损伤时具有一致性。最后对盐岩进行3级变幅荷载试验,发现第3级声发射振铃数比相同上、下限应力的恒幅荷载条件下多,说明变幅荷载造成的盐岩损伤比恒幅荷载条件下严重。  相似文献   

6.
为探究深部岩体在爆破、开挖等扰动荷载下的力学特性,开展锚固岩体在蠕变-疲劳荷载下的室内试验,并进一步探究其能量演化规律。结果表明:(1)在疲劳荷载作用下,加锚节理岩体比无锚条件下的滞回环面积小,在施加预应力时,其滞回环面积又大幅度减少,说明加锚预应力能有效降低其能量损耗;(2)岩石强度越高,其滞回环面积越小,对应的能量耗散越小,反之能量耗散大;(3)对比不同加卸载速率可知:在每一级循环荷载过程中,加卸载速率越大其对应的应变值、切线斜率就越大。考虑加卸载速率对节理岩体劣化作用,依据应变等价原理,得出节理岩体峰值损伤本构方程,并通过试验验证模型的准确性,为深部岩体结构支护提供思路。  相似文献   

7.
Brittleness Effect on Rock Fatigue Damage Evolution   总被引:1,自引:0,他引:1  
The damage evolution mechanism of rocks is one of the most important aspects in studying of rock fatigue behavior. Fatigue damage evolution of three rock types (onyx marble, sandstone and soft limestone) with different brittleness were considered in the present study. Intensive experimental tests were conducted on the chosen rock samples and acoustic emission (AE) sensors were used in some of them to monitor the fracturing process. Experimental tests indicated that brittleness strongly influences damage evolution of rocks in the course of static and dynamic loading. AE monitoring revealed that micro-crack density induced by the applied loads during different stages of the failure processes increases as rock brittleness increases. Also, results of fatigue tests on the three rock types indicated that the rock with the most induced micro-cracks during loading cycles has the least fatigue life. Furthermore, the condition of failure surfaces of the studied rocks samples, subjected to dynamic and static loading, were evaluated and it was concluded that the roughness of failure surfaces is influenced by loading types and rock brittleness. Dynamic failure surfaces were rougher than static ones and low brittle rock demonstrate a smoother failure surface compared to high brittle rock.  相似文献   

8.
为了研究岩石材料在循环加卸载过程中的声发射特征与非均匀变形的对应关系,开展了花岗岩试件单轴循环加卸载试验。利用声发射系统和CCD相机分别对试样变形破坏过程中的声发射信号和试件表面的变形图像进行采集,结合数字散斑相关方法,对试件非均匀变形演化过程中的声发射特性进行研究。研究结果发现:每次循环加载过程中,非均匀变形的最小点皆与应力卸载的最低点相对应。而自局部化带启动后,每次循环加载过程中的非均匀变形的最大点滞后于循环加载应力的顶点。非均匀变形演化与声发射信号存在较好的对应关系,循环加载过程中非均匀变形的首次转折增大点对应声发射信号增加的起点,非均匀变形的最大点对应声发射信号平静期的起点。随循环次数增加,非均匀变形程度与Felicity比呈负相关关系,即非均匀变形越大,损伤程度越大,Felicity比越小。  相似文献   

9.
王瑶  吴胜兴  沈德建  周继凯 《岩土力学》2012,33(5):1319-1326
骨料-砂浆界面过渡区的力学性能对混凝土宏观受力特性有很重要的影响。在MTS试验机上对40个砂浆-花岗岩交界面试件进行了动态轴向拉伸力学性能试验研究,分析不同应变率(10-6~10-2 s-1)、不同程度预静载(30%、50%、70%静载强度)以及往复荷载(1、5 Hz)对交界面动态轴向拉伸力学性能的影响,并对其动态破坏机制进行了初探。研究结果表明:①交界面动抗拉强度随应变率增加有明显增加趋势;②较小预静载(不超过50%)不仅没有使动抗拉强度降低,反而有可能提高动抗拉强度,较大的预静载对损伤弱化效应起主导作用,从而使动抗拉强度降低;③往复荷载作用下会出现明显的低周疲劳损伤,而且残余变形随往复荷载的频率增加而减小;④不同应变率下的交界面应力-应变曲线上升段类似,约50%强度后呈现非线性变化,但非线性程度随应变率增加趋向不明显。另外,尝试性地进行了交界面试件轴向拉伸应力-应变全曲线的试验,得到了稳定断裂的全过程曲线。  相似文献   

10.
A series of laboratory tests were performed to examine the fatigue behavior of granite subjected to cyclic loading under triaxial compression condition. In these tests, the influences of volumetric change and residual strain on the deformation modulus of granite under triaxial cyclic compression were investigated. It is shown that the fatigue behavior of granite varies with the tendency for volumetric change in triaxial cyclic compression tests. In the stress–strain space, there are three domains for fatigue behavior of rock subjected to cyclic loading, namely the volumetric compaction, volumetric dilation with strain-hardening behavior, and volumetric dilation with strain-softening behavior domains. In the different domains, the microscopic mechanisms for rock deformation are different. It was also found that the stress level corresponding to the transition from volumetric compaction to volumetric dilation could be considered as the threshold for fatigue failure. The potential of fatigue deformation was compared with that of plastic deformation. The comparison shows that rocks exhibit higher resistances to volumetric deformation under cyclic loading than under plastic loading. The influence of residual strain on the fatigue behavior of rock was also investigated. It was found that the axial residual strain could be a better option to describe the fatigue behavior of rock than the loading cycle number. A constitutive model for the fatigue behavior of rock subjected to cyclic loading is proposed according to the test results and discussion. In the model, the axial residual strain is considered as an internal state variable. The influences of confining pressure and peak deviatoric stress on the deformation modulus are considered in a term named the equivalent stress. Comparison of test results with model predictions shows that the proposed model is capable of describing the prepeak fatigue behavior of rock subjected to cyclic loading.  相似文献   

11.
邱战洪  张我华  陈云敏 《岩土力学》2007,28(Z1):160-164
在基于“应变等效假定”和“余应变能等效假定”两种不同损伤力学基本假定的黏塑性损伤本构方程基础上,将最小耗能原理应用于固体介质的黏弹塑性问题,给出了损伤材料的黏塑性应变流变速率、黏塑性损伤发展速率和黏弹-塑性材料积累应变强弱化速率的非线性演化发展方程,建立了两个不同的黏弹塑性损伤模型(A和B),并进行了试验验证。作为算例,最后运用黏塑性损伤模型A,对地震荷载作用下建于岩石基础上的某混凝土重力坝的动力损伤问题进行了分析,结果表明该模型应用于混凝土重力坝的动力损伤分析是可行的。  相似文献   

12.
既有的巴西劈裂试验与模拟研究多集中在宏观破坏模式与细观演化规律上,对劈裂渐进过程的能量演化特征的分析较少。结合数字图像相关技术(DIC)与声发射实时监测,开展花岗岩的巴西劈裂实验。首先分析实验过程中,岩石破裂模式与破裂尺度的演化规律。在此基础上,采用颗粒流程序(PFC2D)对劈裂试验过程进行数值模拟,分析实验过程中内部裂纹演化过程的能量特征。试验与数值模拟对比结果表明:加载过程中岩样的损伤变化一共经历了4个阶段,即裂隙压密阶段(Ⅰ)、裂纹萌生阶段(Ⅱ)、裂纹扩展阶段(Ⅲ)、峰后破坏阶段(Ⅳ)。试样在裂隙萌生和裂纹扩展阶段以拉张型微破裂为主,裂纹扩展阶段后期产生剪切型破裂,并在加载直径方向形成大尺度裂纹并贯穿整个圆盘形成宏观破坏;试样在裂隙压密和萌生阶段几乎无耗散能,外力所做功几乎都转为岩体内可释放应变能,在破裂扩展后期应变能快速释放,声发射能量在峰值应力附近时达到最大值,峰后破坏阶段试件的可释放应变能快速减小,能量通过形成大量新裂面被耗散掉。  相似文献   

13.
为了给电磁辐射预测矿井冲击地压灾害提供理论依据,采用电磁波和损伤力学理论初步分析了电磁辐射能和加载机械能的关系;采用试验和能量理论研究了单轴压缩条件下煤体变形破坏产生电磁辐射能与受载煤体能量积聚、耗散的耦合关系。研究结果表明:加载机械能与煤体变形破坏产生的电磁辐射能成系数为m正线性关系,m与煤体的弹性模量成0.107 4的比例关系;受载煤体峰值弹性应变能与电磁辐射能成正对数关系,煤体的弹性能指数与峰值累积电磁辐射能、总累积电磁辐射能均成正线性关系,电磁辐射信号反映了能量聚集和耗散的状态,表征了煤体冲击破坏的难易程度。因此,电磁辐射能够预测矿井冲击地压灾害的发生。  相似文献   

14.
王春  胡慢谷  王成 《岩土力学》2023,(3):741-756
基于深层地热能开采时储能区井筒围岩所处的工程环境,采用高温加热、不同温度水浸泡、加热-循环次数及径向冲击加载的方法模拟井筒围岩经历的高温、遇水、循环采热及热冲击等造成的动力扰动等物理力学条件。同时,以不同内孔直径的同心圆孔岩样模拟深层地热井,采用分离式霍普金森压杆试验系统开展热-水-力作用下圆孔花岗岩的动态力学试验,并结合VIC-3D非接触应变测量及数值模拟分析技术监测冲击过程中圆孔岩样裂隙萌发、形成的历程和表面应变演化的规律,揭示热-水-力作用下圆孔岩样的动态损伤破坏机制。研究结果表明:径向冲击荷载作用下圆孔花岗岩先后经历弹性变形、塑性变形、结构失稳破坏3个典型阶段;内孔直径、加热温度、浸水温度、加热-浸水循环次数4因素都弱化了圆孔花岗岩抗外界荷载的能力,但未改变其整体的变形演化规律;圆孔花岗岩的破坏模式是动态拉伸破坏,先沿冲击方向由内孔壁向岩样外壁,再垂直冲击方向由岩样外壁向内孔壁萌发、贯通裂纹,形成近垂直的两组破裂面。最后,基于圆孔花岗岩的损伤变形特征及历程,在一定假设基础上,建立动态损伤结构模型,推演了结构方程,并结合试验结果确定了方程参数,通过对比分析发现,理论拟合曲线与试验...  相似文献   

15.
Formulation and algorithmic treatment of a rate‐dependent plastic–damage model modified to capture large tensile cracking in cyclic‐loaded concrete structures are presented in detail for a three‐dimensional implementation. The plastic–damage model proposed by Lee and Fenves in 1998 was founded based on isotropic damaged elasticity in combination with isotropic multi‐hardening plasticity to simulate cracking and crushing of concrete under cyclic or dynamic loadings. In order that the model can capture large crack opening displacements, which are inevitable in plain concrete structures, the excessive increase in plastic strain causing unrealistic results in cyclic behaviors is prevented when the tensile plastic–damage variable controlling the evolution of tensile damage is larger than a critical value. In such a condition, the crack opening/closing mechanism becomes similar to discrete cracking. The consistent tangent operator required to accelerate convergence rate is also formulated for the large cracking state including viscoplasticity. The validation and performance of the modified algorithm implemented in a special finite element program is exemplified through several single‐element tests as well as three structural applications. The last example examines the model in the seismic fracture analysis of Koyna dam as a benchmark problem and the resulting crack profile is compared with the available experiment. The numerical experimentations well demonstrate that the developed model whose modification is necessary to properly simulate the cyclic behavior of plain concrete subjected to large tensile strains is robust and reasonably accurate. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

16.
Sun  Bing  Yang  Haowei  Zeng  Sheng  Luo  Yu 《Geotechnical and Geological Engineering》2022,40(11):5577-5591

The effect law of deformation and failure of a jointed rock mass is essential for underground engineering safety and stability evaluation. In order to study the evolution mechanism and precursory characteristics of instability and failure of jointed rock masses, uniaxial compression and acoustic emission (AE) tests are conducted on sandstones with different joint dip angles. To simulate the mechanical behavior of the rock, a jointed rock mass damage constitutive model with AE characteristic parameters is created based on damage mechanics theory and taking into account the effect of rock mass structure and load coupling. To quantify the mechanism of rock instability, a cusp catastrophe model with AE characteristic parameters is created based on catastrophe theory. The results indicate that when the joint dip angle increases from 0° to 90°, the failure mechanism of sandstone shifts from tensile to shear, with 45° being the critical failure mode. Sandstone's compressive strength reduces initially and subsequently increases, resulting in a U-shaped distribution. The developed damage constitutive model's theoretical curve closely matches the test curve, indicating that the model can reasonably describe the damage evolution of sandstone. The cusp catastrophe model has a high forecast accuracy, and when combined with the damage constitutive model, the prediction accuracy can be increased further. The research results can provide theoretical guidance for the safety and stability evaluation of underground engineering.

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17.
张平阳  夏才初  周舒威  周瑜  胡永生 《岩土力学》2015,36(12):3354-3359
循环加-卸载岩石本构模型是预测压气储能洞室长期稳定性的关键,但目前还没有适用的本构模型,因此,提出了一种能够描述岩石循环加载和卸载的本构模型。鉴于岩石在循环作用下损伤不断累积,将基于Weibull分布的岩石损伤软化模型进行拓展,并用内变量疲劳本构模型描述每个循环的初始模量和卸载模量的变化,进而得到循环加-卸载作用下的岩石本构模型,然后将该模型与现有的试验结果进行对比。该模型物理意义明确,涉及的参数较少,且便于拟合。提出的循环加-卸载下岩石本构模型对试验数据拟合效果较好,能较准确地反映循环荷载上、下限值对应的轴向应变,也能反映出循环内部变形模量衰减的趋势。该模型的成功建立为循环加-卸载下岩石本构模型的研究提供了新思路。  相似文献   

18.
作为一种典型软岩,盐岩力学特性的时间相关性显著,准确预测和评估盐穴储气库加卸载过程中的变形损伤能力,关系到能源储备库的长期安全稳定运行。为研究盐岩的速率效应,进行了不同加卸载速率的疲劳试验。基于现有蠕变本构模型,构建了速率效应方程,区分了加卸载过程中的蠕变塑性变形与加载塑性变形。研究结果表明:(1)盐岩的整体疲劳寿命、稳定变形阶段(即第2阶段)疲劳寿命占比基本随加卸载速率的增大而增大。(2)减速变形阶段(即第1阶段)疲劳寿命占比、稳定变形阶段平均残余应变基本随加卸载速率增大而减小。(3)速率耦合疲劳试验中,加卸载速率越大,残余应变越小,蠕变塑性变形随加卸载速率的增大而减小,当加卸载速率由0.04 kN/s增加至5 kN/s时,蠕变塑性变形在循环中的占比由85%下降至36%,呈现出负指数的关系。(4)整个循环加卸载过程中,加载塑性变形、蠕变塑性变形均呈现U型发展趋势,与盐岩疲劳过程的三阶段相对应。该研究结果可以为进一步分析盐岩蠕变塑性与加载塑性奠定基础。  相似文献   

19.
为明确硬岩破坏失稳过程中的声学及破裂响应特征与加载速率相关性,对不同加载速率下类硬岩岩样进行单轴压缩试验及声发射测试,分析类硬岩力学参数特性、声发射现象及破裂响应特征,并基于声发射特征获得类硬岩破坏前兆预警信息。结果表明:类硬岩的峰值强度、弹性模量和峰值应变具加速率效应;随着加载速率增大,力学参数总体呈指数函数增长,相对低加载速率下(0.10~0.15 kN/s)的增长速率较快而在相对高加载速率下(0.20~0.25 kN/s)的增长速率略有减缓;声发射参数演化呈阶段性增长趋势,最大增幅与加载速率呈正相关;随着加载速率增大,AE幅度和幅度密度逐渐增大,AE振铃计数由低值低频向高值高频转变,AE能量由孤震型向群震型转变;加载速率对破裂模式及破碎形态具有明显影响,随着加载速率增大岩样由剪切破坏逐渐向拉伸剪切复合破坏、拉伸破坏演变,破裂程度增大并逐渐表现出岩爆倾向;声发射b值随加载时间增大经历了先上升、后波动、最后下降的演化阶段,呈逐渐减小趋势;类硬岩的临界破坏前兆点(b值)为0.68,声发射前兆信息的预警时序由大到小为累计振铃计数、累计能量、b值,具有良好的时效性和可靠性。研究成果对揭示硬质围岩体力学特征和破坏前兆信息预警提供一定参考。   相似文献   

20.
Summary. The effect of loading waveform and amplitude on the fatigue behaviour of intact sandstone was investigated using uniaxial cyclic loading conditions in the laboratory. In the first set of experiments sinusoidal, ramp and square waveforms were used at loading frequency of 5Hz and peak amplitude of 0.05mm. In another set of experiments, tests were conducted at a range of amplitudes varying from 0.05 to 0.3mm at 5Hz frequency using sinusoidal and ramp waveforms. It was found that loading waveform as well as amplitude is of great significance and affects the rock behaviour. It was found that fatigue behaviour is a function of the cyclic energy of the load and the shape of the waveform. Damage accumulated most rapidly under square waveforms with a high energy requirement. A ramp waveform was the least damaging of those considered. The loading waveforms strongly influenced the damage accumulation under cyclic loading conditions. Finally, it is concluded that machine behaviour in terms of amplitude affected the rock behaviour. This study has practical significance to the behaviour of rock and rock masses within the excavation systems subjected to cyclic loading.  相似文献   

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