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采用点胶环氧树脂和双面胶带制成的双胶粘剂和三胶粘剂单搭接接头的拉伸行为

Tensile Behaviour of Double- and Triple-Adhesive Single Lap Joints Made with Spot Epoxy and Double-Sided Adhesive Tape.

作者信息

Golewski Przemysław

机构信息

Department of Solid Mechanics, Faculty of Civil Engineering and Architecture, Lublin University of Technology, Nadbystrzycka 38, 20-618 Lublin, Poland.

出版信息

Materials (Basel). 2022 Nov 7;15(21):7855. doi: 10.3390/ma15217855.

Abstract

Dual adhesives are mainly used to increase the strength of single lap joints (SLJs) by reducing the stress concentration at its ends. However, they can also be used to design the characteristics of the joint so that its operation and failure occur in several stages. This paper presents the results of uniaxial tensile tests for dual-adhesive and triple-adhesive SLJs. The adherends were made of aluminum and glass fiber-reinforced polymer (GFRP) composite. For dual-adhesive SLJs, 10 epoxies and 1.6 mm thick double-sided adhesive tape were used. The stiffest (Epidian 53 (100 g) + "PAC" hardener (80 g)) and most elastic (Scotch-Weld 2216 B/A Translucent) joints were determined, which were then used in a triple-adhesive joint with the same double-sided adhesive tape. Circular holes of different diameters from 8 mm to 20 mm were made in the double-sided adhesive tape, which were filled with liquid epoxy adhesive by injection after the adherends were joined. By using the double-sided adhesive tape, the geometry of the epoxy joints was perfect, free of spews, and had a constant thickness. The effect of the spot epoxy joint diameters and the arrangement of stiff and elastic joints in the SLJs were analyzed using digital image correlation (DIC).

摘要

双胶粘剂主要用于通过降低单搭接接头(SLJ)端部的应力集中来提高其强度。然而,它们也可用于设计接头的特性,使其在几个阶段发生作用和失效。本文介绍了双胶粘剂和三胶粘剂SLJ的单轴拉伸试验结果。被粘物由铝和玻璃纤维增​​强聚合物(GFRP)复合材料制成。对于双胶粘剂SLJ,使用了10种环氧树脂和1.6毫米厚的双面胶带。确定了最硬的(Epidian 53(100克)+“PAC”固化剂(80克))和最具弹性的(Scotch-Weld 2216 B/A半透明)接头,然后将其用于具有相同双面胶带的三胶粘剂接头中。在双面胶带上制作了直径从8毫米到20毫米不等的圆孔,在连接被粘物后通过注射填充液体环氧胶粘剂。通过使用双面胶带,环氧接头的几何形状完美,无溢料,且厚度恒定。使用数字图像相关(DIC)分析了点环氧接头直径和SLJ中刚性和弹性接头排列的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0220/9654184/2a3cb0273801/materials-15-07855-g001.jpg

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