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首页> 外文期刊>International Journal of Fracture >Comparison of predictions by mode II or mode III criteria on crack front twisting in three or four point bending experiments
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Comparison of predictions by mode II or mode III criteria on crack front twisting in three or four point bending experiments

机译:在三点或四点弯曲实验中通过模式II或模式III准则对裂纹前扭曲的预测比较

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摘要

Whatever the external loading, a crack front in a solid tries to reach mode I loading conditions after propagation. In mode I+ II, the crack kinks to annihilate mode II, kinking angle being well predicted by the principle of local symmetry (PLS) or by the maximum tangential stress criterion (MTS). In presence of mode III, the problem becomes three-dimensional and the proposed propagation criterion are not yet well proved and established. In particular in three point bending experiments (3PB) with an initially inclined crack, the crack twists around the direction of propagation to finally reach a situation of pure mode I. The aim of the paper is to compare the propagation paths predicted by two different criteria for 3PB fatigue experiments performed on PMMA. The first criterion developed by Schollmann et al. (Int J Fract 117(2): 129-141, 2002), is a three-dimensional extension of the MTS criterion and predicts the local angles that annihilates mode II and III at each point of the front. The second one developed by Lazarus et al. (J Mech Phys Solids 49(7): 1421-1443, 2001b), predicts an abrupt and then progressive twisting of the front to annihilate mode III. Due to presence of sign changing mode II and almost uniform mode III in the experiments, both criteria give good results. However, since mode III is predominant over mode II in the case under consideration, the global criterion gives better results. Nevertheless, the local type criterion seems to be of greater universality for practical engineering applications.
机译:无论外部载荷如何,固体中的裂纹前沿都会在传播后尝试达到I型载荷条件。在模式I + II中,裂纹会发生to没模式II,通过局部对称原理(PLS)或最大切向应力准则(MTS)可以很好地预测弯折角。在模式III的存在下,问题变成了三维,并且尚未很好地证明和建立所提出的传播准则。特别是在初始倾斜的裂纹的三点弯曲实验(3PB)中,裂纹围绕传播方向扭曲,最终达到纯模式I的情况。本文的目的是比较两种不同标准预测的传播路径在PMMA上进行的3PB疲劳实验。 Schollmann等人开发的第一个标准。 (Int J Fract 117(2):129-141,2002)是MTS准则的三维扩展,它预测了消灭模式II和III的前角在每个点的局部角度。第二个由Lazarus等人开发。 (J Mech Phys Solids 49(7):1421-1443,2001b),预测了前部突然突变然后逐渐扭曲至an灭模式III。由于实验中存在符号改变模式II和几乎均匀的模式III,因此这两个标准都给出了良好的结果。但是,由于在所考虑的情况下,模式III优先于模式II,因此全局标准给出了更好的结果。但是,对于实际工程应用,局部类型准则似乎具有更大的通用性。

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