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Development of a numerical methodology for strength prediction of weld-bonded joints

机译:预测焊接接头强度的数值方法的发展

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In the present work, an experimental and numerical study of welded, adhesive and hybrid (weld-bonded) T-peel joints under peeling loads is presented. The brittle Araldite?AV138, the moderately ductile Araldite?2015 and the ductile Sikaforce?7752 were the considered adhesives. An analysis of the experimental values and a comparison of these values with Finite Element Method (FEM) results in Abaqus?was carried out, which included strength prediction by Cohesive Zone Models (CZM) considering failure simulation of both the adhesive layer and weld-nugget. It was found that the Sikaforce?7752 performs best in the bonded and hybrid configurations. The good agreement between the experimental and numerical results enabled the validation of CZM to predict the strength of adhesive and hybrid T-peel joints.
机译:在目前的工作中,在剥离载荷下,对焊接,胶粘剂和混合(焊接)T型剥离接头进行了实验和数值研究。脆性的Araldite®AV138,中等延性的Araldite®2015和延性的Sikaforce®7752被认为是粘合剂。在Abaqus中对实验值进行了分析并与有限元方法(FEM)进行了比较,其中包括考虑了粘合层和熔核熔合失效模拟的粘合区模型(CZM)的强度预测。发现Sikaforce?7752在粘合和混合配置中表现最佳。实验结果与数值结果之间的良好一致性使CZM的验证可以预测胶粘剂和混合T型剥离接头的强度。

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