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1.
为了研究岩石在循环爆破作用下的动力学响应,本文对黑云母花岗岩试块进行了小型爆破试验,利用加速度传感器和声波测试仪,分别对循环爆破荷载下质点振动衰减规律与累积损伤演化机理进行了探析,并对不同装药量下花岗岩试块的裂纹扩展与断裂形态进行了比较。结果表明:萨道夫斯基公式对室内花岗岩试块的爆破振动衰减规律具有较好的适用性,拟合相关参数都处于0.90以上;花岗岩的爆破损伤随着爆破次数的增加而增加,且损伤值随着距爆心距离(爆心距)的增加而降低,近区损伤值迅速降低,降幅约为1.46/m,而中区和远区损伤值降低相对缓慢,约为0.57/m和0.13/m;花岗岩的破坏程度和装药量有较高的关联度,当药量较低时,岩块致裂所需要的爆破次数就越大;随着药量增加到一定程度,岩块在低爆破次数下就会发生破坏;此外,还发现随着装药量的增加,试块爆后破裂的块数呈现增加趋势,如较低药量时试样破裂成2块,较高药量下破裂成3~4块。  相似文献   

2.
岩石内部存在的裂隙、孔洞等天然损伤对岩石的力学性能和破坏过程有重要影响,依据细胞自动机理论结合CT无损识别技术实现了含天然裂隙岩石在劈裂条件下裂纹扩展和贯通全过程及其力学性能变化规律的研究。从裂隙砂岩的真实细观结构出发,构建了天然裂隙岩石的数值计算模型,运用CASRock数值计算软件完成了含不同裂隙倾角的砂岩劈裂破坏的数值试验,分析了裂隙倾角对砂岩的力学特性、裂纹扩展过程及能量演化的影响规律。研究表明:(1)天然裂隙砂岩的抗拉强度与裂隙倾角密切相关,随着裂隙倾角的增加,其抗拉强度呈现先减小后增加的趋势;(2)裂隙起裂于天然裂隙尖端,当裂隙倾角0°≤θ<48°时,岩样的破坏是由错开型裂纹引起,裂纹沿着与天然裂隙近垂直方向扩展;当裂隙倾角48°≤θ<94°时,岩样的破坏是由张开型裂纹引起,裂纹沿着与天然裂隙近平行方向扩展;(3)劈裂过程中裂纹尖端应力场存在拉应力区和压应力区,拉应力造成翼裂纹由天然裂隙尖端沿加载端方向萌生扩展,而压应力则引发次生裂纹沿天然裂隙方向扩展;(4)含天然裂隙砂岩劈裂破坏过程能量演化可划分为4个阶段,随裂隙倾角的增大,峰值点处的总能量密度、弹性能密度先缓慢减少再迅速增加,但对岩样耗散能影响不大。  相似文献   

3.
Natural damage such as fissures and pores make the rock microstructure show strong heterogeneity,which influences the failure process and mode. In this paper,the numerical test of freeze-thaw sandstone splitting failure with natural damage was carried out based on CT non-destructive identification technology,combined with digital image processing technology and CASRock numerical simulation software. The analysis of splitting failure mode,deformation localization and crack evolution process of freeze-thaw sandstone with natural damage reveals the failure mechanism of sandstone with natural damage under freeze-thaw and load. The results show that the expansion of primary pores(cracks)and the formation of new pores in sandstone are the main forms of freeze-thaw rock failure evolution. The failure of rock containing natural damage under freeze-thaw and load is related to the degree and distribution of natural damage. The generation of secondary cracks mostly occurs in natural damage-intensive areas. During the loading process,the stress in the localized damage zone is far greater than sandstone’s overall stress,and rock’s failure in the localized damage zone is synchronized with the energy release and stress release in the region. Localized damage reflects the evolution of cracks in rocks and helps to predict the direction of sandstone crack development. The failure mode of rock is related to the number of freeze-thaw cycles. The freeze-thaw cycles make the sandstone with natural damage gradually change from brittle failure to ductile failure,and the change of the overall strength of the rock is a gradual deterioration process. © 2022 Science Press (China).  相似文献   

4.
高渗压条件下压剪岩石裂纹断裂损伤演化机制研究   总被引:2,自引:1,他引:1  
刘涛影  曹平  章立峰  赵延林  范祥 《岩土力学》2012,33(6):1801-1815
探讨了高渗透压作用下压剪岩石裂纹的起裂规律及分支裂纹尖端应力强度因子的演变规律,建立了高渗压下裂隙岩体发生拉剪破坏的临界水压力值和初裂强度判据,分析了不同渗压作用下裂纹的扩展情况表明,渗透压的存在加剧了分支裂纹的扩展,高渗透压作用下分支裂纹扩展由稳定扩展变成不稳定扩展,并导致分支裂纹尖端岩桥剪切破坏,同时考虑分支裂纹的相互作用,建立了高渗透压作用下压剪岩石裂纹体岩桥剪切贯通的断裂破坏力学模型,最后依据裂隙岩体的损伤力学效应研究了岩体的初始损伤及损伤演化柔度张量,提出了高渗压下压剪岩石裂纹渐进破坏的损伤演化方程。该理论为定量研究高渗压下裂隙岩体的失稳破坏提供了理论依据。  相似文献   

5.
石灰岩热损伤破坏机制研究   总被引:3,自引:0,他引:3  
谢卫红  高峰  李顺才  关祥慧 《岩土力学》2007,28(5):1021-1025
采用清华大学带扫描电镜的岛津SEM高温疲劳试验机系统,对高温作用下石灰岩在单向压缩和单向拉伸加载的细观结构进行了实时试验研究,探讨了岩石热损伤演化过程和热裂纹扩展、破坏特征,建立了岩石热裂纹生长的损伤模型,结合试验结果和利用位错、扩散蠕变的概念,分析了岩石热损伤变形的破坏机制。结果表明在500 ℃范围内的温度作用下产生的热裂纹主要为晶间裂纹。  相似文献   

6.
三轴条件下软岩变形破坏过程的CT图像分析   总被引:1,自引:0,他引:1  
采用X射线CT方法对一种软弱粉砂岩在三轴压缩条件下的变形破坏过程进行了实时观测,获得系列CT图像。软岩破裂成核现象在远离强度峰值前发生,完整岩石试件裂纹从外向内传播,裂纹演化基本方式表现为扩张和扩展的交替性。软岩屈服现象的本质是CT尺度裂纹演化,裂纹演化是软岩在峰值强度前的主要细观过程。   相似文献   

7.
Summary Probabilistic analysis of random anisotropic damage mechanics problems is proposed in Parts of I and II. In Part I, based on the measured characteristics of random crack distribution on the surface of a rock specimen, a probabilistic law of damage variables for rock mass was presented as a Beta distribution by using the Monte-Carlo statistical simulation method. In part II, statistical estimation of a damage state and properties of random damaged rock mass are evaluated by Rosenblueth's point estimate method. Two stability problems involving randomly damaged rock mass have been analyzed using the finite element method, to illustrate the statistical estimation method.  相似文献   

8.
朱珍德  张勇  陈卫忠 《岩土力学》2005,26(2):203-208
为了分析含水状态下红砂岩渐进破坏行为,在已有的岩石细观加载仪上配置数字显微观测系统,对试件表面的裂纹扩展过程进行多角度的实时全场监测和局部显微放大监测,并将可监视到的图像进行录像和计算机自动采集处理。利用该系统进行了红山窑水利枢纽工程地基红砂岩在不同含水率条件下的单轴压缩破裂过程试验,应用数字图像相关技术处理试样表面细观裂纹萌生、扩展图像灰度分布图,去除伪裂纹,探讨了红砂岩动态损伤状态与其宏观力学响应之间的关联。为了获得试样表面裂纹萌生、扩展的定量描述,引入表观裂损度与损伤张量2个物理量,定量评价含水状态下红砂岩渐进损伤破坏特性,进一步分析单轴压缩状态下岩石裂纹损伤演化规律。  相似文献   

9.
单临空面岩体中爆破诱发损伤的数值分析   总被引:1,自引:1,他引:0  
岩石的抗压强度远大于其抗拉强度,所以在单临空面岩体爆破中,工程技术人员关注的不仅是炮孔附近的塑性压剪损伤,更多的是临空面附近的拉裂损伤,临空面若是地表,可能会影响到施工的安全,甚至造成一定的经济损失。以往这类损伤问题的数值模拟中大多只偏向于一方面:或忽略压剪损伤,或不考虑拉裂损伤,故所得出的结论难以满足工程需要。基于合理的应力修正方式,把现有的岩石拉-压损伤本构以简明的方式嵌入到大型LS-DYNA软件中,对单临空面岩体中的柱形和球形药包爆破问题进行了数值模拟,计算结果表明该法能较好地预测岩体中爆破诱发的拉裂、压缩损伤的分布规律和演化趋势。  相似文献   

10.
刘庭金  莫海鸿 《岩土力学》2005,26(12):1901-1906
采用莫尔-库仑准则作为岩体的剪切屈服条件、极限应变作为剪切损伤判据、最大拉应力作为拉伸损伤判据,建立了适合岩体的弹塑性各向异性损伤数值模型。运用该数值模型研究了施工过程不施作支护结构和施作支护结构情况下地下采场覆岩的动态损伤演化过程,并与不施作支护结构时岩体采用弹性模型的数值结果进行了对比。数值试验重现了施工过程地下采场覆岩的动态损伤演化过程,从而为进一步优化支护结构设计、施工以及预防和控制地下采场塌方等工程事故提供了一种新的数值试验手段。  相似文献   

11.
Microplane damage model for jointed rock masses   总被引:1,自引:0,他引:1  
The paper presents a new microplane constitutive model for the inelastic behavior of jointed rock masses that takes into account the mechanical behavior and geometric characteristics of cracks and joints. The basic idea is that the microplane modeling of rock masses under general triaxial loading, including compression, requires the isotropic rock matrix and the joints to be considered as two distinct phases coupled in parallel. A joint continuity factor is defined as a microplane damage variable to represent the stress‐carrying area fraction of the joint phase. Based on the assumption of parallel coupling between the rock joint and the rock matrix, the overall mechanical behavior of the rock is characterized by microplane constitutive laws for the rock matrix and for the rock joints, along with an evolution law for the microplane joint continuity factor. The inelastic response of the rock matrix and the rock joints is controlled on the microplane level by the stress–strain boundaries. Based on the arguments enunciated in developing the new microplane model M7 for concrete, the previously used volumetric–deviatoric splits of the elastic strains and of the tensile boundary are avoided. The boundaries are tensile normal, compressive normal, and shear. The numerical simulations demonstrate satisfactory fits of published triaxial test data on sandstone and on jointed plaster mortar, including quintessential features such as the strain softening and dilatancy under low confining pressure, as well as the brittle–ductile transition under higher confining pressure, and the decrease of jointed rock strength and Young's modulus with an increasing dip angle of the joint. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

12.
Analysis of random anisotropic damage mechanics problems of rock mass   总被引:10,自引:0,他引:10  
Summary A probabilistic analysis method of random anisotropic damage mechanics problems is proposed in parts I and II. In part I, based on the measured characteristics of random crack distribution on the surface of a rock specimen, a probabilistic distribution law of damage variables for rock mass is presented as a Beta distribution by using the Monte-Carlo statistical simulation method. In part II, statistical estimation of a damage state and properties of random damaged rock mass are evaluated by Rosenblueth's point estimate method. Combining with the F. E. method, rock mechanics problem for random damaged state have been analyzed.  相似文献   

13.
岩石热破裂是高放废物地质处置工程中需深入研究的课题。对我国高放废物重点预选场址甘肃北山的花岗岩开展室内热破裂模拟试验研究,采用多通道温度测试仪、声发射、波速层析成像和数码显微镜等手段研究了该花岗岩热破裂过程。试验表明,(1)热破裂从试件端部开始产生,逐步向内缓慢扩展,表现出分段性和独立性;(2)根据声发射撞击率可将热破裂可分为稳定热损伤、宏观裂纹形成、宏观裂纹扩展、裂纹冷却闭合4个阶段,声发射定位的时空演化规律清楚地揭示了裂纹从试件上端部向内部扩展的规律;(3)波速层析成像指示了宏观裂纹位置及高温对岩石造成显著损伤的区域,热应力产生的损伤集中在试件边界,范围小,损伤严重,高温造成的损伤集中在钻孔附近高温区,范围较大,损伤略轻微;(4)监测多通道温度,获得了试件内的温度场并为数值模拟参数选取提供验证,采用有限元程序进行了热力耦合数值模拟,从机制上初步解释了热破裂现象,研究认为综合声发射实时监测热破裂过程和波速层析成像能实现对热损伤的量化的特性可实现岩石热破裂的动态监测和损伤量化,为今后地下实验室相关试验的开展和认识高放废物处置长期稳定性做了有意义的探索。  相似文献   

14.
岩石时效损伤模型及其在工程爆破中应用   总被引:2,自引:0,他引:2  
王志亮  郑田中  李永池 《岩土力学》2007,28(8):1615-1620
为了实现爆破智能化,降低爆破带来的负面影响,通过数值模拟预估出岩体中爆破诱发损伤的大小以及分布范围在工程上具有重要意义,其中科学合理的爆破损伤模型是关键。基于岩石介质是连续的、各向同性的、且存在初始裂纹的假设,把考虑时效的岩石拉裂损伤演化方程和双线形弹塑性本构结合起来,通过用户自定义简明地嵌入到大型LS-DYNA软件中,并引入了该软件中的侵蚀算法,对半无限岩体中临空面附近爆破漏斗问题进行了重点数值模拟,计算结果比较接近实际。本文方法在工程中将具有一定的参考价值。  相似文献   

15.
基于TCK损伤本构的岩石爆破效应数值模拟   总被引:3,自引:0,他引:3  
王志亮  郑明新 《岩土力学》2008,29(1):230-234
脆性岩石在爆破载荷下的动态破碎行为是工程技术人员所关心的,采用数值法预估岩体破裂范围和损伤大小对施工安全具有重大意义,其中合理的岩石损伤模型是关键。假设岩体破坏近似服从Mises屈服准则,且考虑到岩体的应变硬化特性,把Taylor-Chen-Kuszmaul(TCK)模型中的拉裂损伤演化方程和材料双线性、弹塑性本构耦合到一起,并简洁地嵌入到有限元分析软件LS-DYNA中,通过半无限岩体中柱形药包爆破实例验证了其合理性与准确性。对球形药包爆破问题也进行了数值分析。该损伤模型及其数值模拟在工程中具有一定的参考价值。  相似文献   

16.
A thermodynamic framework is proposed to couple the effect of mechanical stress and temperature on crack opening and closure in rocks. The model is based on continuum damage mechanics, with damage defined as the second-order crack density tensor. The free energy of the damaged rock is expressed as a function of deformation, temperature, and damage. The damage criterion captures mode I crack propagation, the reduction in toughness due to heating, and the increase in energy release rate with cumulated damage. Crack closure is modeled through unilateral effects produced on rock stiffness. The model was calibrated and verified against published experimental data. Thermo-mechanical crack opening (resp. closure) was studied by simulating a triaxial compression test (resp. uniaxial extension test), including a thermal loading phase. The degradation of stiffness due to tensile stress and recovery of stiffness induced by both mechanical and thermo-mechanical unilateral effects are well captured. The thermo-mechanical energy release rate increases with thermal dilation and also decreases with ambient temperature. It was observed that there is a temperature threshold, below which the rock behaves elastically. A parametric study also showed that the model can capture hardening and softening during thermo-mechanical closure (for specific sets of parameters). These numerical observations may guide the choice of rock material used in geotechnical design, especially for nuclear waste disposals or compressed-air storage facilities.  相似文献   

17.
锥形聚晶金刚石复合片(polycrystalline diamond compact,PDC)齿是一种具有较强抗冲击性和耐磨性的新型PDC齿,在坚硬、强研磨性和软硬交错地层中取得了非常好的钻井提速效果。为了揭示锥形齿破碎硬岩机制,开展锥形齿破碎花岗岩试验与数值模拟研究,分析了切削深度和前倾角对锥形齿切削力和破岩比能的影响规律,采用高速摄像机和透明K9玻璃观测了锥形齿作用下岩屑形成过程及微裂纹萌生与扩展过程,通过数值模拟分析了破岩过程中岩石应力响应与损伤演化特性,结合对切削槽和大尺寸块体岩屑表面形貌及断口微观特征分析,建立了锥形齿破碎花岗岩机制模型。结果表明,锥形齿破碎花岗岩的过程可以分为挤压成核和块体崩裂两个阶段,前倾角对岩石破碎过程影响较小,切削深度的影响显著;锥形齿周围的裂纹主要由压实核、纵向裂纹和横向裂纹组成,纵向裂纹和横向裂纹扩展的最大深度分别为切削深度的6.69倍和4.53倍;齿尖周围压应力集中,岩石发生压剪破坏,压应力区外围形成弧形条带状拉应力区,并在齿尖及压应力区边界处诱导出拉伸微裂纹;微裂纹向齿前扩展形成弧形拉伸主裂纹,发生块体岩屑崩裂,提高破岩效率,向岩石内部扩展劣化...  相似文献   

18.
The life time or time to failure of rocks under load is governed by microstructural defects, like microcracks, voids etc. The life time can be predicted either by empirical exponential laws or physical laws based on damage and fracture mechanics. The proposed numerical model is based on subcritical crack growth using the linear elastic fracture mechanical approach and is implemented as a numerical cellular automate. The algorithm considers both tensile and shear fracturing. Each cell contains a microcrack of random length according to a given probability function. Fracture growth is controlled by the Charles equation. Macroscopic cracks are the results of the coalescence of growing microcracks. Within the numerical approach elasto-plastic stress redistributions take place. If the stress intensity factors have reached the critical values or the microcrack has reached the zone dimension, the zone is considered as fractured and residual strength values are assigned. The proposed approach was applied to rock samples under uniaxial compressive and tensile loads (creep tests). Successful results were obtained in respect to the predicted life time, damage evolution and the fracture pattern. Conclusions for further improvements and extensions of this methodology were drawn.  相似文献   

19.
侯会明  胡大伟  周辉  卢景景  吕涛  张帆 《岩土力学》2020,41(3):1056-1064
高放废物地质处置库处于温度?渗流?应力(THM)多场耦合环境中,对高放废物处置库进行安全评估时,需进行多场耦合分析。然而,高放废物处置库开挖引起硐壁附近围岩应力重分布,产生损伤,导致围岩热学参数(T)、渗流参数(H)和力学参数(M)发生变化,且在空间上分布不均匀,这将会对运营期处置库THM耦合演化过程产生显著影响。通过分析高放废物处置库温度?渗流?应力三场的耦合原理和处置库围岩损伤的分布和演化规律,定义了损伤变量和损伤演化准则,并将损伤变量与热学参数、渗流参数、力学参数以及多场耦合参数(Biot系数、Biot模量和温度排水系数)建立联系,将围岩损伤与温度?渗流?应力建立联系,形成了一个弹塑性损伤温度?渗流?应力多场耦合数值模型,然后利用建立的模型对瑞士Mont Terri高放废物地质处置库围岩加热试验进行模拟,对比了模拟值和试验值,比较了考虑开挖损伤和不考虑开挖损伤对高放废物地质处置库温度?渗流?应力的影响,并分析了在多场耦合作用下开挖损伤的演化规律。  相似文献   

20.
拉剪应力状态极易导致岩体破坏乃至失稳,为研究节理岩体拉剪破坏规律,开展了拉剪荷载下共面非贯通节理岩体变形破坏的理论与数值计算研究。通过自定义考虑岩石统计损伤演化的Mohr-Coulomb和最大拉应力准则模型,编写力学参数服从Weibull分布的fish函数,研究了拉剪条件下非均质节理岩体的破坏模式及破坏规律,讨论了岩石均质度、法向拉应力及剪切速率对岩体破坏模式及其力学性质的影响。结果表明,(1) 拉剪应力状态下节理岩体的破坏模式以张拉破坏为主,加载初期破坏位置分布散乱,随着加载和损伤演化逐渐形成带状破裂面,岩体宏观力学性质明显降低;(2) 非均质性对岩体破坏影响显著,主要表现为均质度的增加,岩体由弥散型破坏向集中型破坏转变,破裂面起伏度增大,同时岩体的宏观力学性质增强并最终趋向于均质岩体;(3) 低应力水平下拉应力增大不改变节理岩体以拉张破坏为主的破裂模式,但剪切破坏比例明显减少,同时岩体抗剪强度降低,破裂面的粗糙度增大;(4) 剪切速率对岩体力学性质的影响显著,静态加载范围内岩体抗剪强度随剪切速率的增大而增大,且增幅越来越小。  相似文献   

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