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1.
刘钧  郭志 《力学学报》1997,5(2):156-162
本文通过对岩石力学试验中岩石试件破坏方式的分析, 在理论上解释了岩体力学试验中经常遇到的一些力学现象并且作出了定量的回答, 同时还建立了岩石的各种破坏模式的判据。  相似文献   

2.
水下爆炸载荷作用下加筋板的毁伤模式   总被引:2,自引:0,他引:2  
为研究加筋板结构在水下爆炸载荷作用下的破坏模式,进行了一系列模型试验。通过对试验结果的分析,将加筋板的毁伤模式总体分为塑性大变形(模式I)、拉伸破坏(模式II)和剪切破坏(模式III)等3大类。又根据载荷强弱和加强筋的相对强度,将每种破坏模式细分为3种子模式。提出了一个量纲一的损伤因子,作为预报毁伤模式的判据。  相似文献   

3.
三轴SHPB冲击作用下岩石破坏机理的研究   总被引:4,自引:0,他引:4  
本文应用三轴SHPB高速冲击试验机对岩石试体进行三向应力状态(对试件施加围压2=3和冲击应力1)下的冲击试验,分析研究岩石的破坏机理。由试验结果对三轴状态下岩石的破坏类型进行分类,分析其内部受力状况;得出岩石动态破坏强度,画出动态三轴、动态单轴和静态单轴的破坏强度比较曲线。通过对破坏类型的分析,以最大剪应力条件建立岩石的破坏判据,建立三轴动态破坏强度、单轴动态破坏强度与围压的关系式。  相似文献   

4.
龚庆祥 《应用力学学报》2001,18(Z1):106-109
根据新研飞机研制过程中提出的问题,论证了机载电子设备仍需进行耐振环境试验的必要性,提出了机载电子设备耐振试验时间的确定方法,并对耐振试验的合格判据进行了研究,结果表明耐振试验中,如机载设备仅发生由“一次通过破坏”或“峰值破坏”引起的功能故障,仍应判为合格通过.  相似文献   

5.
复杂应力状态下岩石破坏特性的精确描述对于岩土工程结构设计具有重要的意义.基于多种岩石不同受力形式下的试验结果,将岩石的破坏形式分为拉断、局部剪切破坏和整体剪切破坏,使用应力三维度作为应力状态参数,分析岩石的破坏形式及不同破坏形式下强度参数随应力状态的变化规律.结果表明:对同种岩石,随应力三维度代数值减小,其破坏机理由拉断逐渐变化为局部剪切破坏和整体剪切破坏,三种破坏形式之间存在两个应力三维度分界值.对三种破坏形式,控制断裂发生的主要因素也不同.拉断主要受最大拉应力控制,局部剪切破坏由最大切应力主导,但同时受体变应力的影响,而整体剪切破坏仅由最大切应力控制.因此针对三种破坏形式,分别选择控制破坏的参量,提出破坏判据,并通过煤样和大理岩的单轴和三轴压缩试验结果验证了判据的正确性.  相似文献   

6.
基于应力瞬时断裂判据和Tuler-Butcher损伤累积判据,分析了没有升压的简单三角波强加载下延性金属的多次层裂破坏问题。分析结果显示:层裂片的厚度随着冲击波宽度与强度的比值的增大而增大,材料的破坏深度小于冲击波宽度的一半;在强冲击加载下,材料的破坏深度约为冲击波宽度的一半。  相似文献   

7.
提出一种使用混凝土破坏前的应力应变发展曲线, 来推求混凝土抗压强度和 峰值应变的方法. 经过试验验证, 该方法具有较高的精度, 并可以得到疲劳试 验时真实的应力水平. 在MTS 810 TestStar材料试验系统上对C15水工混凝土开 展了受压疲劳试验. 通过试验数据分析, 得到疲劳残余应变发展规律公式、疲劳 失稳判据、疲劳寿命估算式及疲劳强度等, 对水工建筑物 的疲劳损伤分析与评定具有指导意义.  相似文献   

8.
对平面编织混杂铺层层合板单钉连接结构的挤压性能进行试验研究,分析了铺层比例和试件尺寸对其挤压强度和破坏形式的影响.基于ANSYS平台建立了该层合板单钉连接结构的三维损伤累积有限元模型,对其非线性挤压破坏行为进行了数值计算,预测了初始挤压破坏载荷;同时提出并验证了适合该类型层合板的损伤判据和衰减准则.计算得出的初始挤压破坏载荷与试验结果吻合良好,说明该模型能准确预测层合板单钉连接的初始挤压破坏载荷.  相似文献   

9.
王丹勇  温卫东 《力学学报》2008,40(5):707-715
基于单层板理论,结合有限元分析技术即应力分析、Hashin三维失效判定准则、包含4种基本损伤类型相互关联作用的材料性能退化方法及结构最终破坏判据等,建立了含辅助铺层层合板接头静载损伤失效分析方法. 同时,对层合板接头损伤扩展进行了模拟分析,损伤计算结果与试验分级加载试样X光进行了对比. 通过多种类型层合板接头静强度预测结果与试验结果对比及静载累积损伤规律分析表明,建立的静载三维累积损伤分析的强度预测方法可方便模拟不同结构尺寸层合板接头内部各铺层损伤起始、发展及结构最终破坏整个累积过程,同时获得其最终破坏强度及破坏模式. 该方法的预测结果与试验结果吻合较好.   相似文献   

10.
为系统地验证复合材料失效判据计算精度和有效性范围,给出了4种材料体系、6种铺层形式的层合板在单轴、双轴载荷下的失效试验数据,用以评估复合材料失效判据在单向层合板失效包线、多向层合板初始失效包线、多向层合板最终失效包线、层合板变形及层合板的破坏特性等五个方面的预测能力。并根据验证方法和有效性评估策略对失效判据计算精度进行量化考核,给出了失效判据在五个层面上的计算精度。  相似文献   

11.
吕爱钟  刘宜杰  尹崇林 《力学学报》2021,53(6):1647-1657
一点的应力状态可由3个主应力$\sigma_{1}$, $\sigma_{2}$, $\sigma_{3}$来表示, 当规定主应力以压为正时, 沿最大主应力$\sigma_{1}$方向将产生收缩变形, 若中间主应力$\sigma_{2}$和最小主应力$\sigma_{3}$都远小于$\sigma_{1}$, 则沿$\sigma_{2}$和$\sigma_{3}$方向会产生横向扩张变形, 当横向扩张变形达到一定极限时, 将会在平行于$\sigma _{1}$的方向产生张裂破坏. 如何建立这种张裂破坏的强度准则目前尚缺乏研究, 最大拉应变理论(第二强度理论)有时被用来解释张裂破坏, 但最大拉应变理论难以应用于三向受力状态. 本文分别用$\varepsilon_{1}$, $\varepsilon_{2}$表示最大张应变和次大张应变, 则最大拉应变理论认为当$\varepsilon_{1}$达到单向拉伸屈服应变时, 材料将产生破坏. 而本文将根据$\varepsilon_{1}+\varepsilon_{2}$之和达到极限值$\varepsilon_u$来建立张裂破坏准则. 可以证明$\varepsilon_{1} +\varepsilon_{2}$所表示的是$\sigma_{1}$主平面的面积增长率. 当$\sigma_{3}<\sigma_{2} \ll \sigma_{1}$时, 大部分岩石都具有脆性破坏的特点, 所以可将破坏前的岩石视为满足广义胡克定律的线弹性材料, 这样用$\varepsilon_{1}$, $\varepsilon_{2}$表示的强度准则可通过$\sigma_{1}$, $\sigma_{2}$, $\sigma_{3}$来表示. 在这个过程中还可考虑岩石在拉伸和压缩时具有不同弹性参数和强度的特点, 并可通过单向拉伸和单向压缩的破坏状态来确定$\varepsilon_u$. 不管$\sigma_{1}$, $\sigma_{2}$, $\sigma_{3}$是压应力, 还是拉应力, 或者$\sigma_{1}$, $\sigma_{2}$, $\sigma_{3}$中有拉有压的情形, 基于$\varepsilon_{1} +\varepsilon_{2} =\varepsilon_u$都可建立相应的强度准则. 所建立的准则可以反映中间应力$\sigma_{2}$对强度的影响规律, 通过建立的强度准则还可以证明: 静水拉力能引起屈服, 而静水压力不能产生屈服; 压缩破坏能使塑性体积增大, 其结果比Mohr-Coulomb准则更能反映实际情形. 并通过拉压应力状态下的试验数据验证了所建立的强度准则, 所得理论计算结果和已有的试验数据吻合得很好. 通过提出的强度准则和圆盘劈裂的试验结果, 可获得更为可靠的岩石单轴抗拉强度.   相似文献   

12.
近场动力学(Peridynamics,PD)作为一种新兴的非局部性理论,在非连续处不需要任何处理,能够很好表述模型从连续到非连续的过程。首先,在PD基本理论简介的基础上,系统回顾了PD的国内外研究现状。其次,采用键型PD理论对非均匀性的圆孔岩板单轴拉伸破裂过程进行了二维数值模拟,采用态型PD理论对单轴、常规三轴以及真三轴等不同压缩条件下的岩石破裂过程进行了三维数值模拟,并以加拿大Mine-by隧洞为例对现场岩体破裂过程进行了模拟,结果表明PD在岩石破裂过程模拟上具有较强适用性。最后,指出当前PD在岩石破裂过程模拟中存在的主要问题和未来值得开展的若干研究课题。  相似文献   

13.
通过对高温加热-遇水快速冷却后的花岗岩试样进行单轴和三轴实验,研究了800°C内高温花岗岩遇水快速冷却后的力学性质随温度和围压的变化规律。实验结果表明:(1)400°C为高温加热-遇水快速冷却对花岗岩力学性质影响的阈值;(2)同一温度条件下,峰值偏应力、峰值应变随围压的增大而增大;弹性模量随围压的增大先增大后减小;(3)单轴实验中,温度低于400°C时,岩样表现为复合破坏,随着温度的升高破坏形式转变为拉破坏;三轴实验中,岩样整体上表现为剪切破坏。  相似文献   

14.
A triaxial constitutive law for concrete within the framework of isotropic damage combined with plasticity is proposed in this paper. It covers typical characteristics of concrete like non-linear uniaxial compression and tension, bi- and triaxial failure criteria and dilatancy with a unified strain-based approach. Thus, this model is quite simple and especially suitable for strain-driven methods like common finite elements. It is complemented with a regularization method based on the crack band approach. A further issue is discussed with procedures for the model parameter determination for a wide range of concrete grades. The application of the model is demonstrated with typical benchmark tests for plain concrete.  相似文献   

15.
16.
裸洞隧道在长期使用过程中,围岩遭受风化、地下水及区域地应力等不利因素的作用,导致岩体性质恶化,影响隧道的正常使用。在调研统计的基础上,选取319国道重庆至武隆段大溪河裸洞隧道为研究对象,对其表层及深层灰岩进行了室内单轴压缩、三轴压缩力学特性试验并对单轴压缩作用下的声发射特性进行了研究。结果表明:单轴压缩作用下两种岩样均出现脆性破坏特征,三轴压缩条件下,两种岩样呈压缩为主的延性扩容破坏,声发射可较好地表征岩石单轴压缩破坏过程;获得了两种岩样的基本力学参数,深层岩样强度为表层岩样强度的2.13倍,弹性模量、泊松比、内聚力、内摩擦角分别是表层岩样的1.04倍,0.63倍,1.45倍,1.37倍。研究结果可为该地区裸洞隧道的长期安全性与稳定性提供有益的理论支撑。  相似文献   

17.
Fractures in natural rocks have an important effect on the strength and failure behavior of rock mass, which are often evaluated in rock engineering practice. The theoretical evaluation of mechanical behavior of fractured rock mass has no satisfactory answer due to the role of confining pressure and crack geometry. Therefore, in this paper, conventional triaxial compression experiments were carried out to study the strength and failure behavior of marble samples with two pre-existing closed cracks in non-overlapping geometry. Based on the experimental results of a number of triaxial compression tests, the effect of crack coalescence on the axial supporting capacity and deformation property were investigated with different confining pressures. The results show that intact samples and flawed samples (marble with pre-existing cracks) have different deformation properties after peak stress, which change from brittleness to plasticity and ductility with the increase of confining pressure. The peak strength and failure mode are found depending not only on the geometry of flaw, but also on the confining pressure. The strength of flawed samples shows distinct non-linear behavior, which is in a better agreement with non-linear Hoek–Brown criterion than linear Mohr–Coulomb criterion. For a kind of rock that has been evaluated as a Hoek–Brown material, a new evaluation criterion is put forward by adopting optimal approximation polynomial theory, which can be used to confirm more precisely the strength parameters (cohesion and internal friction angle) of flawed samples. For intact samples, the marble leads to typical shear failure mode with a single fracture surface under different confining pressures, while for flawed samples, under uniaxial compression and a lower confining pressure (σ3 = 10 MPa), tests for coarse and medium marble (the coarse and medium refer to the grain size) exhibit three basic failure modes, i.e., tensile mode, shear mode, and mixed mode (tensile and shear). Shear mode is associated with lower strength behavior. However, under higher confining pressures (σ3 = 30 MPa), for coarse marble, the axial supporting capacity is not related to the geometry of flaw. The friction among crystal grains determines the strength behavior of coarse marble. For medium marble, the failure mode and deformation behavior are dependent on the crack coalescence in the sample. The present research provides increased understanding of the fundamental nature of rock failure under conventional triaxial compression.  相似文献   

18.
Engineering materials are rarely free of flaws. Mode I cracking from pre-existing flaws is the major cause of the brittle fracture in compression of materials such as concrete and rock. A 3-D ellipsoidal flaw model is used to show the significant influence of flaw geometry on crack initiation in uniform uniaxial, biaxial and triaxial compression. The model shows that the governing criterion for crack initiation may change from energy to stress with increasing crack size, and that for voids of similar size a spherical void is the most critical shape for crack initiation. The model thus provides a basis for a better understanding of both the phenomenon and the mechanism of brittle fracture in compression.  相似文献   

19.
Investigating the dilatancy, acoustic emission and failure characteristics of fissured rock are significant to ensure their geotechnical stability. In this paper, the uniaxial and triaxial compression experiments with AE monitoring under different loading rates were carried out on fissured rock specimens with the same geometrical distribution of two pre-existing flaws. The dilatancy and AE activity of these specimens were discussed, and the effects of the confining pressure and loading rate on the mechanical parameters and failure characteristics were analyzed. The results show that the exponential strength criterion is more suitable than the Mohr–Coulomb strength criterion to characterize the strength characteristics of fissured rock. The crack evolution and failure characteristics of fissured rock specimens are more complicated than those of intact rock specimens. The failure characteristics of the fissured rock follow the tensile shear coalescence model, crack branching occurs with increasing the loading rate, and the multi-section coalescence model is verified with increasing the confining pressure. The phenomena of stress drop and yield platform usually occur after the dilatancy onset, the specimen does not fail instantaneously, and the propagation and coalescence of cracks cause a sharp increase in the AE signals, circumferential strain, and volumetric strain.  相似文献   

20.
Three dimensional (3D) DEM (discrete element method) simulations of drained triaxial compression and plane strain tests are presented for both dense and loose assemblies of polydisperse spheres using a...  相似文献   

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