基于通用权函数的概率风险评估中心裂纹应力强度因子数据库建立方法

Tongge Xu, S. Ding, Hui-li Zhou, Guo Li
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引用次数: 1

摘要

概率失效风险评估在适航领域的应用日益重要。在概率破坏风险评估的断裂力学模块中,有效、准确地计算应力强度因子(SIFs)至关重要。目前,采用权函数法(WFM),特别是Glinka和Shen提出的通用权函数法(UWFs)计算SIFs具有较高的精度和计算效率。然而,通用权函数中的具体系数仍然未知,几何参数和这些系数的规律尚未总结,这阻碍了它们的后续使用。本文讨论了嵌入式裂缝的具体类型——中心裂缝,并介绍了UWF的推导方法。响应面法(RSM)作为一种建立数据库的方法,用于建立三维有限板的长度、厚度等几何参数与UWF中各系数之间的关系。在一定范围内,SIF计算结果与有限元结果的误差小于2 MPa m。为了评估中心裂纹的边界效应,讨论了有限板与无限板的区别。此外,考虑到一般偏心裂纹的复杂性,提出了一种将偏心裂纹转化为中心裂纹的近似方法。结果表明,该方法在特定情况下具有较高的应用精度,并强调了对一般偏心裂缝进行后续研究的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Method for Establishing the Central Crack Stress Intensity Factor Database for Probabilistic Risk Assessment Based on the Universal Weight Function
Probabilistic failure risk assessment is becoming important in the field of airworthiness. In the fracture mechanics module of probabilistic failure risk assessment, it is important to efficiently and accurately calculate the stress intensity factors (SIFs). At present, the weight function method (WFM), especially the universal weight functions (UWFs) proposed by Glinka and Shen, has been adopted to calculate SIFs with high accuracy and computational efficiency. However, the concrete coefficients in the universal weight functions remain unknown, and the rules of the geometry parameters and these coefficients have not yet been summarized, which hinders their subsequent use. In this article, the specific type of embedded crack-central crack is under discussion, and the derivation of the UWF is introduced. The response surface method (RSM), as a means of database establishment, is used to construct the relations between the geometric parameters including the length and thickness of a three-dimensional finite plate and coefficients in the UWF. The errors of the SIF calculation between the UWF and finite element results are less than 2 MPa m within a certain range. For the evaluation of the boundary effect on central cracks, the difference between finite and infinite plates is discussed. In addition, considering the complexity of the general off-centre crack, an approximation method has been proposed to transform the off-centre crack to the central crack. The results show that the method can be applied with high precision in specific situations and stresses the necessity of follow-up research on general off-centre cracks.
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