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991.
Numerical analysis of interface fatigue of fiber reinforced composites   总被引:8,自引:0,他引:8  
A numerical analysis of the interface debonding process is carried out for fiber–matrix composites under cyclic loading. The results show that the interface friction plays an important role in resisting debonding under fatigue. The degradation coefficient of interface friction influences the debonding velocity. An approximate formula of interface friction is found for fatigue debonding.  相似文献   
992.
A three-dimensional (3-D) finite element analysis was performed on a [90,(+45/−45)n,(−45/+45)n,90]s class of laminated composites under the edge crack torsion (ECT) test configuration. Finite element delamination models were established and formulas for calculating the Mode III fracture toughness from 3-D finite element models were developed. The relations between the interlaminar fracture behavior and various configuration parameters were investigated and the effects of point loads, ends, geometry, Mode II interference, and friction were evaluated. Results showed that with proper selection of ECT specimen configuration and layup, the delamination could grow in pure Mode III in the middle region of the specimen. Specimen end effect played an important role in the ECT test. A Mode II component occurred in the end regions but it did not interfere significantly with the Mode III delamination state. Specimen dimension ratio, layup, and crack length exhibited significant effect on the interlaminar fracture behavior and the calculated strain energy release rates. However, friction between crackfaces was found to have negligible effect on the interlaminar properties.  相似文献   
993.
We develop a general solution method for a dynamically accelerating crack under anti-plane shear conditions along the interface between two different homogeneous isotropic elastic materials. The crack is initially at rest, and after loading is applied the crack-tip speed which may accelerate up to the shear wave speed of the more compliant material. The analysis includes an exact, closed-form expression for the stress intensity factor for an arbitrary time-dependent crack-face traction, as well as expressions for computing the crack-face displacements and the stress in front of the crack. We also present some numerical examples for fixed loads and for loads moving with the crack tip, using a stress intensity factor fracture criterion, in order to examine the predicted effect of material mismatch on interfacial fracture.  相似文献   
994.
给出了无限平面作用有简谐变化的点热源时的位移场、应力场基本解、用间接法构造出混合边值多裂隙体在简谐变温场作用下的热断裂问题的边界积分方程,并离散求解.数值结果表明,该方法求解多裂隙体的简谐热断裂问题精度好,计算工作量少.文中计算了含边界裂缝的平板、含三条平行裂缝的平板在简谐变温场作用下缝端应力强度因子的变化过程,并与实验结果进行了比较,两者吻合良好.  相似文献   
995.
官地水电站坝区岩体的浅表生结构   总被引:1,自引:0,他引:1  
浅表生结构的研究 ,对认识河谷岩体的岩体结构特征、工程岩体结构建模及稳定性评价等具有重要意义。官地水电站坝区玄武岩体的浅表生结构极为发育 ,且其分布具有一定的规律性。本文通过对浅表生结构的发育分布及变形破裂形迹的调查分析 ,研究了浅表生结构的空间发育规律及其组合形式 ,结合地质地貌演化机制分析 ,探讨了浅表生结构的形成机制 ,建立了坝区浅表生结构的基本模式  相似文献   
996.
三山岛金矿F3断裂带的水文地质工程地质特征及灾害防治   总被引:1,自引:0,他引:1  
张寿全  黄巍 《力学学报》1994,2(1):62-72
本文对三山岛金矿F3断裂带的构造、岩性和水动力学特征进行了研究,对矿坑开挖中的突水和坑道碎屑流的成因做了探讨,并在水文地质结构、水化学、水同位素及水文地热学的综合研究基础上,对未来的二期井下工程开挖中可能出现的工程地质问题进行了预测,提出了防治方案。  相似文献   
997.
天然气管道止裂构件的分析和设计   总被引:3,自引:0,他引:3  
在钢制天然气输送管道上,经常应用机械止裂构件来防止可能发生的裂纹迅速扩展事故,这些止裂构件的作用是减小管壁开裂后的张开变形,降低裂纹驱动力的峰值,其结果使止裂可能发生,这被认为是在不能阻止裂纹起裂的情况下,防止裂纹扩展灾难性破坏的第二道防线,基于流体/结构/断裂耦合计算程序PFRAC,该文发展了分析这些止裂构件的方法,推导含平面初曲率三维曲梁的动力学有限元模拟并结合入PFRAC程序之中,用来模拟这  相似文献   
998.
纤维复合材料损伤过程的数值模拟   总被引:4,自引:0,他引:4  
利用界面断裂力学和有限元法数值模拟纤维增强复合材料的细观损伤过程,研究各种主要破坏模式之间的相互转变和影响,指出以断裂能和混合度表示的界面性能是控制复合材料损伤过程的主要细观参数。分析了界面韧度对破坏性能的影响,探讨了基于破坏模式控制的复合材料韧度设计的新途径。  相似文献   
999.
In this paper a mathematical model for miscible displacement in fractured porous media is developed. The model takes into account mechanisms of mass transfer between fracture and matrix. The model is normalized by using the dimensionless parameters, which characterize the process, and the analytical solutions of the resulting system of equations are provided by utilizing the method of characteristics. For comparison the results of model with experimental results, laboratory displacement tests have been performed in fractured systems under miscible displacement. The porous media used were cylindrical Asmari cores from Iranian reservoirs containing an artificially vertical fracture. Normal heptane and kerosene were two miscible fluid used. There is very good agreement between experiments and model prediction.  相似文献   
1000.
One purpose of this paper is to give a brief overview on the research status of deformation, fracture and toughening mechanisms of polymers, including experimental, theoretical and numerical studies. Emphasis is on the more recent progresses of micromechanics of rubber particle cavitation and crazing, and the development of fracture criteria for ductile polymers. The other purpose is to study the effect of triaxial stress constraint on the deformation and fracture behavior of polymers. Polycarbonate (PC), acrylonitrile-butadienestyrene (ABS) and PC/ABS alloy are considered in this investigation. A series of circumferentially blunt-notched bars are used to experimentally generate different triaxial stress fields. The fracture surfaces of specimens with different notch radius are examined by scanning electron microscope (SEM) to study the fracture and toughening mechanisms of polymer alloy. It is shown that the triaxial stress constraint has a significant effect on the deformation, fracture and toughening of PC, ABS and PC/ABS alloy. We will also discuss the extent to which a micromechanics criterion proposed by the first author can serve as a fracture criterion for ductile polymers. A new ductile fracture parameter is emphasized, which can be employed to evaluate the fracture ductility of polymers. Stress state independence of the parameter for the PC, ABS and PC/ABS alloy has been experimentally verified. The project supported by the National Natural Science Foundation of China (10125212), the Trans-Century Training Program Foundation and the Key Research Fund of the Education Ministry of China (01159)  相似文献   
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