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Dynamic Fracture Experiment of Medium with Defects under Impact Loading

机译:冲击载荷下缺陷的培养基动态断裂试验

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Defects have a significant effect on the dynamic fracture characteristics of the medium. In this paper, the dynamic fracture experiment of specimens with bias precracks is designed by utilizing the digital laser dynamic caustics system, and the effect of defect eccentricity on the dynamic fracture behavior is studied. Research shows that crack propagation can be divided into four stages: crack initiation stage, attraction stage, repulsion stage, and specimen fracture stage. The change of defect eccentricity has no obvious effect on the crack propagation behavior in the crack initiation stage and penetration stage but has a significant effect on the attraction stage and specimen fracture stage. In the process of the interaction between defect and crack, mode I stress intensity factor decreases at first and then increases. The decrease of mode I stress intensity factor reduces with the increase of defect eccentricity. The value of mode II stress intensity factor changes from negative to positive. With the increase of defect eccentricity, the symbol of mode II stress intensity factor no longer changes. The fractal dimension and the deflection angle of crack trajectory both decrease with the increase of defect eccentricity. In addition, a numerical simulation of the experiment is conducted by ABAQUS, which provides results that are in good agreement with the experimental results.
机译:缺陷对培养基的动态断裂特性具有显着影响。本文通过利用数字激光动态焦化系统设计了具有偏压预焊接的标本的动态断裂实验,研究了缺陷偏心对动态断裂行为的影响。研究表明,裂纹繁殖可分为四个阶段:裂纹起始阶段,吸引阶段,排斥阶段和标本骨折阶段。缺陷偏心的变化对裂纹起始阶段和渗透阶段的裂纹繁殖行为没有明显影响,但对吸引阶段和标本骨折阶段具有显着影响。在缺陷和裂缝之间的相互作用的过程中,MODE I应力强度因子首先降低,然后增加。随着缺陷偏心的增加,模块I应力强度因子的降低减少。模式II的值II应力强度因子从负变化为正。随着缺陷偏心的增加,模式II应力强度因子的象征不再发生变化。随着缺陷偏心的增加,分形尺寸和裂缝轨迹的偏转角减少。此外,实验的数值模拟由Abaqus进行,这提供了与实验结果吻合良好的结果。

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