Creep damage laws for bonded joints under pure mode II loading

IF 3.2 3区 材料科学 Q2 ENGINEERING, CHEMICAL
R.F.M. Couto , M.F.S.F. de Moura , A.G. Magalhães , R.D.F. Moreira
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Abstract

Adhesively bonded joints have played an important role in several industries, mainly in automotive and aeronautics. A wide range of studies have been presented on the evaluation of the static behaviour of bonded joints, considering pure modes I and II, but also mixed-mode I + II loading. More recently, some developments have been done on the analysis of fatigue loading in this type of structural elements, introducing the importance of studying damage cohesively, along a determined period of time. As fatigue loading, creep loading can provide a significant contribution in terms of damage during the lifetime of a given bonded joint. Few studies were presented in the literature, regarding creep loading in bonded joints, so that a cohesive model capable of predicting the corresponding mechanical behaviour is needed. Twelve damage laws were postulated in this study, being used in a new cohesive zone model, predicting the creep behaviour of bonded joints under pure mode II loading. The corresponding implementation was proved, after an in-depth parametric analysis. The presented study constitutes a basis for future developments on the cohesive damage modelling of bonded joints, considering mixed-mode I + II loading scenarios.
纯模式 II 加载下粘接接头的蠕变损伤规律
粘接接头在多个行业中发挥了重要作用,主要是在汽车和航空领域。对粘接接头静态行为的评估已经进行了大量研究,不仅考虑了纯模式 I 和 II,还考虑了混合模式 I + II 载荷。最近,对这类结构元件的疲劳加载分析也取得了一些进展,引入了在确定的时间段内研究内聚损伤的重要性。与疲劳载荷一样,蠕变载荷也会在特定粘接接头的使用寿命期间造成重大损坏。文献中关于粘接接头蠕变加载的研究很少,因此需要一个能够预测相应机械性能的内聚模型。本研究假设了十二种损伤规律,并将其用于新的内聚区模型中,以预测纯模式 II 负载下粘接接头的蠕变行为。经过深入的参数分析,证明了相应的实施方法。本研究为今后开发考虑 I + II 混合模式加载情况的粘接接头内聚损伤模型奠定了基础。
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来源期刊
International Journal of Adhesion and Adhesives
International Journal of Adhesion and Adhesives 工程技术-材料科学:综合
CiteScore
6.90
自引率
8.80%
发文量
200
审稿时长
8.3 months
期刊介绍: The International Journal of Adhesion and Adhesives draws together the many aspects of the science and technology of adhesive materials, from fundamental research and development work to industrial applications. Subject areas covered include: interfacial interactions, surface chemistry, methods of testing, accumulation of test data on physical and mechanical properties, environmental effects, new adhesive materials, sealants, design of bonded joints, and manufacturing technology.
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