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A convenient way to represent fatigue crack growth in structural adhesives

机译:一种表示结构胶中疲劳裂纹扩展的简便方法

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摘要

The present paper examines crack growth in a range of aerospace and automotive structural adhesive joints under cyclic-fatigue loadings. It is shown that cyclic-fatigue crack growth in such materials can be represented by a form of the Hartman-Schijve crack-growth equation, which aims to give a unique and linear 'master' representation for the fatigue data points that have been experimentally obtained, as well as enabling the basic fatigue relationship to be readily computed. This relationship is shown to capture the experimental data representing the effects of test conditions, such as R-ratio and test temperature. It also captures the typical scatter often seen in the fatigue crack-growth tests, especially at low values of the fatigue crack-growth rate. The methodology is also shown to be applicable to both Mode Ⅰ (opening tensile), Mode Ⅱ (in-plane shear) and Mixed-Mode Ⅰ/Ⅱ fatigue loadings. Indeed, it has been demonstrated that the fatigue behaviour of structural adhesives under both Mode Ⅰ and Mode Ⅱ loadings may be described by one unique 'master' linear relationship via the Hartman-Schijve approach.
机译:本文研究了在循环疲劳载荷下一系列航空航天和汽车结构胶接缝中的裂纹扩展。结果表明,此类材料中的循环疲劳裂纹扩展可以用Hartman-Schijve裂纹增长方程的形式表示,该方程旨在为通过实验获得的疲劳数据点提供唯一的线性“主”表示。 ,并使基本疲劳关系易于计算。显示该关系是为了捕获代表测试条件(例如R比率和测试温度)影响的实验数据。它还捕获了疲劳裂纹扩展测试中经常看到的典型散点,尤其是在疲劳裂纹扩展速率较低的情况下。该方法还显示出适用于模式Ⅰ(开放拉伸),模式Ⅱ(面内剪切)和混合模式Ⅰ/Ⅱ疲劳载荷。实际上,已经证明,通过Hartman-Schijve方法,一种独特的“主”线性关系可以描述结构胶在Ⅰ型和Ⅱ型载荷下的疲劳行为。

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