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The determination of the mode II adhesive fracture resistance, G_(IIC) of structural adhesive joints: an effective crack length approach

机译:确定结构胶接点的II型胶粘剂抗断裂性G_(IIC):有效的裂纹长度方法

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摘要

This paper reports results from the mode II testing of adhesively-bonded carbon-fibre-reinforced composite substrates using the end-loaded split (ELS) method. Two toughened, structural epoxy adhesives were employed (a general purpose grade epoxy-paste adhesive, and an aerospace grade epoxy-film adhesive). Linear Elastic Fracture Mechanics was employed to determine values of the mode II adhesive fracture energy. G_(IIC) for the joints via various forms of corrected beam theory. The concept of an effective crack length is invoked and this is then used to calculate values of G_(IIC) The corrected beam theory analyses worked consistently for the joints bonded with the epoxy-paste adhesive, but discrepancies were encountered when analysing the results of joints bonded with the epoxy-film adhesive. During these experiments, a microcracked region ahead of the main crack was observed, which led to difficulties in defining the true crack length. The effective crack length approach provides an insight into the likely errors encountered when attempting to measure mode II crack growth experimentally.
机译:本文报告了使用端载荷分裂(ELS)方法对碳纤维增强复合材料基材进行粘结II模式测试的结果。使用了两种增韧的结构环氧粘合剂(通用级环氧糊状粘合剂和航空航天级环氧膜粘合剂)。线性弹性断裂力学被用来确定II型粘合剂断裂能的值。通过各种形式的校正梁理论获得关节的G_(IIC)。引入有效裂缝长度的概念,然后将其用于计算G_(IIC)的值。校正梁理论分析对于用环氧-粘贴式胶粘剂粘结的接缝始终如一地起作用,但是在分析接缝结果时遇到差异用环氧膜粘合剂粘合。在这些实验中,观察到了主裂纹之前的微裂纹区域,这导致难以确定真实的裂纹长度。有效的裂纹长度方法可以帮助您深入了解尝试通过实验测量II型裂纹扩展时可能遇到的错误。

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