首页> 外文会议>1st International Conference on Component Optimisation, 1st, Mar 29 - Apr 1, 1999, University of Wales, Swansea, United Kingdom >THREE DIMENSIONAL FINITE ELEMENT MODELLING OF CRACK GROWTH AND GEOMETRY INDUCED CLOSURE IN NOTCHED SPECIMENS
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THREE DIMENSIONAL FINITE ELEMENT MODELLING OF CRACK GROWTH AND GEOMETRY INDUCED CLOSURE IN NOTCHED SPECIMENS

机译:缺口试样中裂纹扩展和几何诱发的闭合的三维有限元建模

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This paper presents the results of finite element analyses made of fatigue crack growth, and geometry induced closure in double-edged notch tension specimens. The paper supports previous experimental studies of crack-growth and closure in the double-edged notch specimen. The experimental testing proved the cracks roughly grew as quarter ellipses. The largest axis (a) being along the notch root and the shortest axis (b) along the plain face. However, the experiments also showed, the (a/b) ratio of the ellipses was influenced by the nominal stress of the test. A three-dimensional small strain, elastic-plastic finite element program was used to study the axial stress distributions across the thickness, for arbitrary shaped cracks. The finite element analyses, of the experimentally measured crack shapes, simulated the applied loading cycles. The results of the analyses, coupled with fatigue life predictions made in previous publications, and experimental testing at high and low R ratios, provide an insight into why a particular shape is adopted by a crack.
机译:本文介绍了疲劳裂纹扩展的有限元分析结果,以及几何形状的双刃缺口拉力试样的闭合。该论文支持了先前在双刃口试样中裂纹扩展和闭合的实验研究。实验测试证明,裂纹随着四分之一椭圆大致增大。最大轴(a)沿凹口根部,最短轴(b)沿平坦面。但是,实验还显示,椭圆的(a / b)比率受测试标称应力的影响。使用三维小应变弹塑性有限元程序研究任意形状的裂纹在整个厚度方向上的轴向应力分布。通过实验测量的裂纹形状的有限元分析,模拟了施加的载荷循环。分析的结果,加上先前出版物中所做的疲劳寿命预测,以及在高和低R比下的实验测试,可以洞悉裂缝为什么采用特定形状。

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