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Experimental and numerical analysis of single lap bonded joints: Epoxy and castor oil PU-glass fibre composites

机译:单圈粘结关节的实验性和数值分析:环氧树脂和蓖麻油PU - 玻璃纤维复合材料

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摘要

Currently, there is a growing concern for the environment. Several studies of new materials to reduce environmental impact have been carried out by different research groups, and many companies have replaced parts made of fossil sources by renewable materials. The use of polyurethane (PU) derived from castor oil as a matrix for composite materials and adhesives is one example. Hence, the present work aims to compare the numerical and experimental analyses of castor oil PU and epoxy resin not only as a matrix of composite materials, but also as an adhesive of bonded joints. The joint coupons were manufactured by using castor oil PU-glass fibre and epoxy-glass fibre as adherents, which were bonded by epoxy or castor oil PU. Thus, four combinations of adherents and adhesives were investigated. Specimens with identical geometry were used in all tests, which were based on guidelines for single lap bonded joints. Computational simulations via Finite Element Method were performed for predictions of the adhesive layer stresses and strength. In addition, a material model is proposed to predict the failure of the adhesive layer. The experimental and numerical results showed that PU derived from castor oil has good mechanical performance, making this material a feasible alternative for bonded joints, mostly nowadays when environment is a major concern.
机译:目前,环境越来越担心。不同的研究小组进行了几项新材料,以减少环境影响的新材料,许多公司已经通过可再生材料取代了由化石来源制成的零件。使用蓖麻油作为复合材料和粘合剂的基质的聚氨酯(PU)是一个实例。因此,本作工作旨在比较蓖麻油PU和环氧树脂的数值和实验分析不仅是复合材料的基质,而且是作为粘合接头的粘合剂。通过使用蓖麻油Pu玻璃纤维和环氧树脂纤维作为辅助的环氧纤维制造联合试样,其通过环氧树脂或蓖麻油PU键合。因此,研究了四种抗链剂和粘合剂的组合。所有测试中使用具有相同几何的标本,基于单圈键合接头的指导。通过有限元方法进行计算模拟,用于预测粘合剂层应力和强度。另外,提出了一种材料模型来预测粘合剂层的故障。实验性和数值结果表明,蓖麻油的PU具有良好的机械性能,使该材料成为粘结关节的可行替代方案,大多数当环境是主要关注时。

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