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首页> 外文期刊>Reviews of Adhesion and Adhesives >Study and Analysis of Damages in Functionally Graded Adhesively Bonded Joints of Laminated FRP Composites: A Critical Review
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Study and Analysis of Damages in Functionally Graded Adhesively Bonded Joints of Laminated FRP Composites: A Critical Review

机译:层压玻璃钢复合材料的功能梯度胶合接头损伤研究与分析:综述

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Adhesively bonded laminated FRP composite joints are widely used in many industries such as oil and gas, aerospace as well as automotive. In spite of several pertinent structural advantages, the adhesive bonding in composite structures suffers from severe peel stress concentrations in the bondline due to load path eccentricity which often act as a trigger for cohesive and adhesion (interfacial) failures. In addition, the FRP composite adherends are also prone to different conventional failure modes like interlaminar and intralaminar damages which tremendously affect the overall integrity of the bonded joint structure. There has been a considerable amount of research conducted in an attempt to reduce these stress concentrations through tapering the ends of the adherends, increasing thickness of the adhesive at the joint end, use of adhesive fillets, novel joint geometries, and joint insertions, to name a few. All of these methods involve local details of adherend geometry (except the adhesive fillets), which typically increase the complexity. Attempts have also been made for improving damage tolerance and load carrying capacity of the bonded joints through varying material properties of the bondline (visco-elastic, elastic, non-linearly elastic, etc). Functionally Graded Adhesives (FGAs) with nanoparticles distributed within the adhesive have been proposed recently in many published articles for providing suitable joint strength through minimization of stress concentration effects. Adhesives with functionally graded material properties are being considered for adhesively bonded joints to reduce the peel stress concentrations located near adherend discontinuities. Several practical concerns impede the actual use of such adhesives. These include increased manufacturing complications, alterations to the grading due to adhesive flow during manufacturing, and significant impact of varying the loading conditions on the effectiveness of the grading. The present article primarily focuses on a concise presentation of different research works carried out for studying the effect of functionally graded material properties on performance of adhesively bonded joint structures.
机译:胶粘层压FRP复合接头广泛用于许多行业,例如石油和天然气,航空航天以及汽车。尽管具有几个相关的结构优势,但是由于载荷路径偏心率,复合结构中的粘合剂粘结仍会承受粘结线中严重的剥离应力集中,而载荷路径偏心率通常会引发内聚和粘合(界面)失效。此外,玻璃钢复合被粘物还容易出现不同的常规破坏模式,如层间和层内破坏,这会极大地影响粘结接头结构的整体完整性。为了减少这些应力集中,已经进行了大量的研究,以通过减小被粘物的末端,增加接头末端的粘合剂厚度,使用粘合剂圆角,新颖的接头几何形状和接头插入来降低应力集中。一些。所有这些方法都涉及被粘物几何形状的局部细节(除了粘合剂圆角之外),这通常会增加复杂性。还已经尝试通过改变粘合线的材料特性(粘弹性,弹性,非线性弹性等)来提高粘合接头的损伤耐受性和承载能力。最近在许多公开的文章中提出了具有分布在粘合剂中的纳米颗粒的功能梯度粘合剂(FGA),以通过最小化应力集中效应来提供合适的接合强度。考虑将具有功能梯度材料特性的胶粘剂用于胶粘接头,以减少位于被粘物间断处附近的剥离应力集中。一些实际问题阻碍了这种粘合剂的实际使用。这些包括增加的制造复杂性,由于制造过程中的粘合剂流动而导致的分级变化,以及改变加载条件对分级效果的重大影响。本文主要侧重于简明介绍各种不同的研究工作,这些研究工作是为了研究功能梯度材料的性能对粘结接头结构性能的影响。

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