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单搭接镁-玄武岩纤维金属层合板胶接接头的强度与失效机理:试验与数值评估

Strength and failure mechanism of single-lap magnesium-basalt fiber metal laminate adhesively bonded joints: Experimental and numerical assessments.

作者信息

Mottaghian Fatemeh, Taheri Farid

机构信息

Department of Mechanical Engineering, Dalhousie University, Halifax, NS, Canada.

出版信息

J Compos Mater. 2022 May;56(12):1941-1955. doi: 10.1177/00219983221088095. Epub 2022 Mar 30.

Abstract

A quick literature search reveals the significant lack of data and information concerning magnesium-to-magnesium bonded joints as well as fiber-metal laminates (FMLs) made with magnesium alloys. Therefore, a systematic series of experimental and numerical investigations are carried out to assess the performance of single-lap joints mating FML adherends. The primary goal is to better understand the effects of geometrical and material parameters that influence the performance of magnesium-to-magnesium joints. The FML adherends used in this study consist of basalt natural fiber-epoxy laminate sandwiched in between thin sheets of magnesium alloys, which were subsequently adhesively bonded using a room-cured epoxy resin. The effects of two types of surface treatments, namely, "sandblasting" and "sandblasting with resin coating" on the bond strength and failure mechanism of the adhesively bonded joints (ABJs) are investigated. A 3D numerical model developed to simulate the response of the joints subjected to quasi-static lap-shear tests. This model, which accounts for the material and geometrical nonlinearity in the joints, is used to perform a parametric analysis for establishing the optimal overlap bond length. The distributions of the shear and peel stresses in the overlap region and the effects of adhesive thickness on the performance of the joints are systematically examined. The comparison of the experimental data and numerical results confirms the robustness and cost-effectiveness of the numerical model in predicting the response of such single-lap ABJs.

摘要

快速的文献检索表明,关于镁与镁键合接头以及由镁合金制成的纤维金属层压板(FML)的数据和信息严重匮乏。因此,开展了一系列系统的实验和数值研究,以评估对接FML被粘物的单搭接接头的性能。主要目标是更好地理解影响镁与镁接头性能的几何和材料参数的影响。本研究中使用的FML被粘物由夹在镁合金薄板之间的玄武岩天然纤维 - 环氧树脂层压板组成,随后使用室温固化环氧树脂进行粘接。研究了两种表面处理,即“喷砂”和“树脂涂层喷砂”对粘接接头(ABJ)的粘接强度和失效机制的影响。开发了一个三维数值模型来模拟接头在准静态搭接剪切试验中的响应。该模型考虑了接头中的材料和几何非线性,用于进行参数分析以确定最佳搭接粘结长度。系统地研究了搭接区域内剪切应力和剥离应力的分布以及胶粘剂厚度对接头性能的影响。实验数据与数值结果的比较证实了数值模型在预测此类单搭接ABJ响应方面的稳健性和成本效益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d102/9047111/e76d1f6f6ea8/10.1177_00219983221088095-fig1.jpg

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