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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >Determination of crack surface displacements for cracks emanating from a circular hole using weight function method
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Determination of crack surface displacements for cracks emanating from a circular hole using weight function method

机译:用权函数法确定圆孔裂纹的裂纹表面位移。

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摘要

Cracks emanating from a circular hole are of significant engineering importance, especially in aerospace industry. Accurate determination of key fracture mechanics parameters is essential for damage tolerance design and fatigue life predictions. The purpose of this paper is to provide an efficient and accurate closed-form weight function approach to the calculation of crack surface displacements for radial crack(s) emanating from a circular hole in an infinite and finite-width plate. Results were presented for two loading conditions: remote applied stress and uniform stress segment applied to crack surfaces, and extensively compared to recent studies using other methods in the literature. Both single and double radial cracks were considered, and also the effect of finite plate width on crack surface displacements has been investigated. A brief assessment was made on an engineering estimation of displacements based on a correction of stress intensity factor ratio. It has been demonstrated that the Wu-Carlsson closed-form weight functions are very efficient, accurate and easy-to-use for calculating crack surface displacements for arbitrary load conditions. The method will facilitate fatigue crack closure and other fracture mechanics analyses where accurate crack surface displacements are required.
机译:从圆孔发出的裂纹在工程上具有重要意义,特别是在航空航天工业中。关键断裂力学参数的准确确定对于损伤容限设计和疲劳寿命预测至关重要。本文的目的是提供一种有效且精确的闭合形式权函数方法,以计算无限宽和有限宽度的圆孔中产生的径向裂纹的裂纹表面位移。给出了两种载荷条件下的结果:远程施加应力和施加到裂纹表面的均匀应力段,并与文献中使用其他方法的最新研究进行了广泛比较。考虑了单向和双向径向裂纹,并研究了有限板宽对裂纹表面位移的影响。根据应力强度因子比的校正,对位移的工程估算进行了简短评估。事实证明,Wu-Carlsson闭合形式的权重函数对于计算任意载荷条件下的裂纹表面位移非常有效,准确且易于使用。该方法将有助于疲劳裂纹闭合和需要精确裂纹表面位移的其他断裂力学分析。

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