首页> 外文会议>Asian Pacific Conference on Fracture and Strength;APCFS; 20061122-25;20061122-25; Sanya(CN);Sanya(CN) >Shape Prediction of Fatigue Crack Based on a Given Stress Intensity Factor Distribution
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Shape Prediction of Fatigue Crack Based on a Given Stress Intensity Factor Distribution

机译:基于给定应力强度因子分布的疲劳裂纹形状预测

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摘要

There is an inherent relationship between the shape and the corresponding stress intensity factor (SIF) distribution of a crack. A typical inverse problem of linear elastic fracture mechanics about a crack, i.e. to predict the shape of a crack assuming that some information of SIF distribution is known, is presented. A finite-element based numerical procedure is used to determine the shape, correspondingly the SIF, of a mode-I planar crack based on a specified SIF distribution. The crack front is modeled using cubic splines, which are determined by a number of control-points. The crack front shape is achieved iteratively by moving control-points based on a gradientless algorithm. Numerical examples for planar cracks in through-cracked and surface-cracked plates with finite thickness and width are presented to show the validity and practicability of the proposed method. The SIFs obtained by present method are compared with the known solutions for cracks with same dimensions. The presented method is considered to be a promising alternative to the evaluation of SIFs and the prediction of shape evolution for fatigue cracks.
机译:裂纹的形状与相应的应力强度因子(SIF)分布之间存在固有的关系。提出了关于裂纹的线性弹性断裂力学的一个典型反问题,即假设已知SIF分布的某些信息来预测裂纹的形状。基于有限元素的数值过程用于基于指定的SIF分布确定I型平面裂纹的形状,相应地为SIF。使用三次样条对裂纹前沿进行建模,三次样条由多个控制点确定。通过基于无梯度算法移动控制点来迭代地获得裂纹前部形状。给出了具有有限厚度和宽度的贯通裂纹和表面裂纹板中平面裂纹的数值例子,以证明该方法的有效性和实用性。将通过本方法获得的SIF与已知解决方案的相同尺寸的裂纹进行比较。所提出的方法被认为是SIF评估和疲劳裂纹形状演变预测的有前途的替代方法。

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