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Mode II fracture energy in the adhesive bonding of dissimilar substrates: carbon fibre composite to aluminium joints

机译:不同基材的粘合中的II型断裂能:碳纤维复合材料与铝制接头

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摘要

The end-notched flexure (ENF) test calculates the value of mode II fracture energy in adhesive bonding between the substrates of same nature. Traditional methods of calculating fracture energy in the ENF test are not suitable in cases where the thickness of the adhesive is non-negligible compared with adherent thicknesses. To address this issue, a specific methodology for calculating mode II fracture energy has been proposed in this paper. To illustrate the applicability of the proposed method, the fracture energy was calculated by the ENF test for adhesive bonds between aluminium and a composite material, which considered two different types of adhesive (epoxy and polyurethane) and various surface treatments. The proposed calculation model provides higher values of fracture energy than those obtained from the simplified models that consider the adhesive thickness to be zero, supporting the conclusion that the calculation of mode II fracture energy for adhesives with non-negligible thickness relative to their adherents should be based on mathematical models, such as the method proposed in this paper, that incorporate the influence of this thickness.
机译:端部弯曲挠曲(ENF)测试计算出相同性质的基材之间的粘合剂粘结中的II型断裂能值。在ENF测试中,传统的计算断裂能的方法不适用于粘合剂的厚度与粘合剂的厚度相比不可忽略的情况。为了解决这个问题,本文提出了一种计算II型断裂能的具体方法。为了说明所提出方法的适用性,通过ENF测试计算了铝和复合材料之间的粘接力的断裂能,其中考虑了两种不同类型的粘接剂(环氧树脂和聚氨酯)和各种表面处理方法。相对于简化模型(认为粘合剂厚度为零),该计算模型提供了更高的断裂能值,支持以下结论:对于厚度相对不可忽略的粘合剂,应计算II型断裂能为基于数学模型(例如本文中提出的方法),其中考虑了该厚度的影响。

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