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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Characterisation of GFRP surfaces amenable for bonding and their effect on the strength of co-cured vacuum resin infused single lap joints
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Characterisation of GFRP surfaces amenable for bonding and their effect on the strength of co-cured vacuum resin infused single lap joints

机译:适于粘结的GFRP表面的特性及其对共固化真空树脂灌注单搭接接头强度的影响

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摘要

The choice of a fabrication method is of primary importance in order to optimise and control the performance of composite materials. This becomes increasingly crucial when the fabrication method itself becomes in parallel an adhesive bonding co-cure technique. In this paper, the manufacturing process of the vacuum resin infusion jointing is introduced and specimens of co-cured single lap joints are fabricated and tested under a tensile load. The aim is to show the correlation between the surface characteristics of mechanically treated composite laminates and the adhesion performances of the corresponding surface assemblies using the vacuum resin infusion as a jointing procedure. The mechanisms that govern adhesion are investigated by measuring several physical and chemical parameters of the bonded surfaces with techniques such as surface profilometry, contact angle and surface energy measurements, X-ray photoelectron spectroscopy and scanning electron microscopy. These methods qualitatively and quantitatively measure the influence of surface characteristics towards adequate interfacial bond strength and reveal the importance of the mechanical interlocking, kinetics of wetting, chemical reactivity and intermolecular adhesion of the vacuum resin infusion joint interfaces. The results clearly demonstrate the major influence of the surface contamination and surface topography but also the role of the joining process itself, having no distinct adhesive layer, on the adhesion properties. It is shown that the interfacial adhesion qualities alter significantly the fragmentation process and the strength of the vacuum resin infused joints.
机译:为了优化和控制复合材料的性能,制造方法的选择至关重要。当制造方法本身并行变为粘合剂粘合共固化技术时,这变得越来越关键。本文介绍了真空树脂灌注接头的制造工艺,并制造了共固化单搭接接头的样品并在拉伸载荷下进行了测试。目的是显示机械处理的复合层压板的表面特性与使用真空树脂灌注作为连接程序的相应表面组件的粘附性能之间的相关性。通过使用表面轮廓测量,接触角和表面能测量,X射线光电子能谱和扫描电子显微镜等技术测量粘合表面的几个物理和化学参数,研究了控制粘合的机理。这些方法定性和定量地测量了表面特性对足够的界面结合强度的影响,并揭示了机械互锁,润湿动力学,化学反应性和真空树脂灌注接头界面的分子间粘附的重要性。结果清楚地表明了表面污染和表面形貌的主要影响,还表明了连接过程本身(没有明显的粘合剂层)对粘合性能的作用。结果表明,界面粘合质量显着改变了真空树脂灌注接头的破碎过程和强度。

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