Impact of Riveting Parameters on Mechanical Properties of Aluminum Alloy (LY-12) Sealant Applied Lap Joint of an Aircraft

A. A. Qureshi
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Abstract

 The assembling process includes various techniques, out of which riveting has been employed most successfully in fields like construction of enormous structures, auto-motives, and most notably in the aerospace industry. This process includes marking, drilling followed by riveting. Furthermore, being a successful process, most of the aircraft structure is assembled using rivets. However, various factors contribute to the result. Therefore, the effect of riveting process parameters such as Sheet Thickness, Rivet Diameter, Rivet Type, and Riveting Sequence have been studied on responses, i.e., Deformation and Joint Load Capacity of lap joint composed of Aluminum Alloy sheets (LY-12) at T0 condition by sandwiching aerospace-grade sealant (XM-22B). Each of these parameters is studied on three levels and the experimental setup is designed using Response Surface Methodology (RSM). The main objective of this work is to demonstrate the effect of riveting parameters on lap joints with sealant and analyze the effect through careful measurement of deformation and joint load capacity of the test specimen. Finally, a variance analysis (ANOVA) is performed to identify significant factors influencing response parameters using Design Expert Software V-12.
铆接参数对飞机搭接铝合金(LY-12)密封胶力学性能的影响
装配过程包括各种各样的技术,其中铆接技术最成功地应用于大型结构建筑、汽车制造以及最著名的航空航天工业等领域。这个过程包括打标、钻孔和铆接。此外,作为一个成功的过程,大多数飞机结构是用铆钉组装的。然而,各种因素促成了这一结果。为此,研究了板材厚度、铆钉直径、铆钉类型、铆接顺序等铆接工艺参数对夹带航空级密封胶(XM-22B)铝合金板材(LY-12)在T0工况下搭接接头的变形响应和接头承载能力的影响。在三个层面上对这些参数进行了研究,并利用响应面法设计了实验装置。本工作的主要目的是论证铆接参数对密封胶搭接接头的影响,并通过仔细测量试件的变形和接头承载能力来分析这种影响。最后,使用Design Expert Software V-12进行方差分析(ANOVA)以确定影响响应参数的显著因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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