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Improving the strength of adhesively bonded joints through the introduction of various surface treatments

机译:通过引入各种表面处理来提高粘合接头的强度

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摘要

The aim of this paper is to model an interface adhesion and failure mechanism of single lap joints, subjected to tensile loading, focusing on the effects of various surface treatments, including surface characterization parameters, such as surface roughness and contact angle of adherend surfaces. The applied surface treatments are sandblasting, etching, anodic oxidation and hybrid processes. The influence of surface treatment techniques and conditions on single lap joint strength and interfacial properties is investigated by performing a static tensile test. A numerical approach, which is a cohesive zone model, is implemented using ABAQUS (TM) and introduced to create a correlation between maximum interface traction and surface processing parameters, such as surface roughness and work of adhesion. As a result of experiments, an etching plus sanding process was found to provide the best single lap joint performance (8726 N), having surface roughness of Ra = 2.93 mu m and work of adhesion, W-a = 119.4 mJ/m(2). Based on numerical solutions, a correlation between maximum interface traction and type of surface treatment process has been established, taking certain assumptions into consideration.
机译:本文的目的是对承受拉伸载荷的单搭接接头的界面粘附和破坏机理进行建模,重点研究各种表面处理的影响,包括表面表征参数,例如表面粗糙度和被粘物表面的接触角。所应用的表面处理为喷砂,蚀刻,阳极氧化和混合工艺。通过进行静态拉伸试验,研究了表面处理技术和条件对单搭接接头强度和界面性能的影响。使用ABAQUS(TM)实施了一种数值方法,即粘聚区模型,并将其引入来创建最大界面牵引力和表面处理参数(例如表面粗糙度和粘合功)之间的相关性。作为实验的结果,发现蚀刻加砂光工艺可提供最佳的单搭接性能(8726 N),表面粗糙度为Ra = 2.93μm,附着力为W-a = 119.4 mJ / m(2)。基于数值解,考虑了某些假设,已经建立了最大界面牵引力与表面处理工艺类型之间的相关性。

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