强化参考应力法在循环弯曲板表面裂纹疲劳扩展中的应用

Ippei Yamasaki, T. Fujioka, Y. Shindo, Y. Kaneko
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引用次数: 0

摘要

实验验证了基于增强参考应力法计算疲劳j积分范围的方法,该方法可有效预测低周疲劳载荷下的疲劳裂纹扩展速率。虽然j积分型断裂力学参数可以通过裂纹几何的弹塑性有限元分析(FEA)来计算,但执行这种分析是昂贵的,并且需要高端计算机。因此需要一种估计弹塑性j积分的简化方法。本文将几种具有代表性的弹塑性j积分简化方法应用于裂纹扩展预测,并进行了比较。所提到的实验是先前使用含有半椭圆表面裂纹的宽板试件进行的循环弯曲试验。通过弹塑性有限元分析,估计了提高参考应力法精度的极限载荷修正系数。将预测的裂纹扩展行为与试验结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of the Enhanced Reference Stress Method to Fatigue Propagation of a Surface Crack in a Plate Subjected to Cyclic Bending
This paper describes an experimental validation of the enhanced reference stress method to calculate fatigue J-integral ranges, which are effective in predicting the fatigue crack propagation rate under low–cycle fatigue loadings. Although J-integral type fracture mechanics parameters can be calculated via elastic–plastic finite element analysis (FEA) of the crack geometry, performing such an analysis is costly and requires a high–end computer. A simplified method for estimating the elastic–plastic J-integral is therefore desired. Herein, several representative simplified methods for estimating the elastic–plastic J-integral were applied to crack propagation prediction and compared with each other. The experiments referred to was a previously performed cyclic bending tests using wide–plate specimens containing a semielliptical surface crack. Limit load correction factors to improve the accuracy of the reference stress method were estimated by performing an elastic–plastic FEA. The predicted crack propagation behaviors were compared against the test results.
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