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首页> 外文期刊>Journal of Composite Materials >On the mechanical performance of noncrimp fabric H-shaped adhesively bonded joints
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On the mechanical performance of noncrimp fabric H-shaped adhesively bonded joints

机译:非卷曲织物H形粘合接头的机械性能

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摘要

Adhesive bonding is contemplated as an alternative method to mechanical fastening for joining composite aerostructures. Ongoing research in this area is focused on the development of new bonding techniques and joining elements. In this article, the mechanical performance of the novel noncrimp fabric (NCF) H-shaped adhesively bonded joints subjected to tension, shear and four-point bending loading conditions was investigated by both experimental tests and numerical modeling. The H profiles were manufactured by employing the preforming and injection molding methods, while bonding of the assembled parts was carried out using a novel stepwise procedure which leads to a high bonding quality. Investigation was conducted by means of mechanical testing and a mesomechanical model based on the FE method and the progressive damage modeling approach. In the model, both adhesive failure (debonding) and failure of the NCF material is considered. In the tension and shear load cases, the joint failed due to extensive debonding attributed to adhesive shearing, while in the four-point bending load case, due to failure of the H element. In all three load cases, the experimental and numerical results compare well thus, providing establishment of the numerical model in simulating the performance of textile structural parts. Finally, the effort presented herein is rated as successful since new adhesive bonded joints of high mechanical performance are proposed.
机译:粘合剂粘结被认为是用于机械连接复合空气结构的机械紧固的替代方法。在该领域正在进行的研究集中在新的粘合技术和连接元件的开发上。在本文中,通过实验测试和数值模型研究了新型非卷曲织物(NCF)H形粘合接头在拉伸,剪切和四点弯曲载荷条件下的机械性能。 H型材是通过预成型和注塑成型方法制造的,而组装零件的粘合是使用新颖的逐步步骤进行的,从而提高了粘合质量。通过机械测试和基于有限元方法和渐进损伤建模方法的细观模型进行研究。在模型中,考虑了粘合失败(脱粘)和NCF材料的失败。在拉伸和剪切载荷情况下,由于粘合剂剪切导致的大量脱胶,接头失效;而在四点弯曲载荷情况下,由于H元件失效,接头失效。在所有三种负载情况下,实验结果和数值结果均能很好地进行比较,从而为模拟纺织品结构部件的性能提供了数值模型的建立。最后,由于提出了具有高机械性能的新型粘合接头,因此本文提出的努力被评为成功。

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