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首页> 外文期刊>Composites. Part A >The influence of surface treatment on the tensile properties of carbon fiber-reinforced epoxy composites-bonded joints
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The influence of surface treatment on the tensile properties of carbon fiber-reinforced epoxy composites-bonded joints

机译:表面处理对碳纤维增强环氧复合材料粘结接头拉伸性能的影响

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摘要

The surface characteristics of carbon fiber-reinforced composites significantly influence the tensile properties of adhesive-bonded joints. The main objective of this study was to research the effect of surface treatment by sandpaper rubbing on the strength of adhesive joints. In the present research, surfaces were prepared using four grades of sandpaper with grit sizes of up to 60, 220, 400, 800, and polish grit. Further, the two types of joints (single lap joint and scarf adhesive joint) were tested to investigate the effects of the grit sizes and sanding direction of the sandpaper (parallel to the fiber direction, perpendicular to the fiber direction, and random direction) on the tensile properties. The experimental results showed that the highest bonding strength could be achieved when the surface was sanded in the random direction. Moreover, the grit sizes of the sandpaper significantly influenced the surface characteristics, including the surface profile, surface roughness, surface contact angle, and surface free energy of the specimens, and then affected the bonding strength of the joints by mechanical interlocking and adsorption effect. Furthermore, for both single lap and scarf adhesive joints, the failure mode and the force of the adhesive layer under tensile load were different; therefore, the dominant factors affecting the bonding enhancement mechanism were consequently different.
机译:碳纤维增强复合材料的表面特性会显着影响粘合接头的拉伸性能。这项研究的主要目的是研究砂纸摩擦表面处理对粘合接头强度的影响。在目前的研究中,使用四种等级的砂纸制备了表面,这些砂纸的粒度最大为60、220、400、800和抛光粒度。此外,还测试了两种类型的接头(单搭接接头和围巾粘合接头),以研究砂纸的粒度和砂磨方向(平行于纤维方向,垂直于纤维方向以及随机方向)的影响。拉伸性能。实验结果表明,当在随机方向上打磨表面时,可以获得最高的结合强度。此外,砂纸的粒度会显着影响试样的表面特性,包括表面轮廓,表面粗糙度,表面接触角和试样的表面自由能,然后通过机械互锁和吸附作用影响接缝的结合强度。此外,对于单圈和围巾式粘合接头,在拉伸载荷作用下,粘合层的破坏模式和作用力是不同的。因此,影响键合增强机制的主导因素因此是不同的。

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