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Creep-age forming of AA7475 aluminum panels for aircraft lower wing skin application

机译:飞机下机翼蒙皮应用AA7475铝板的蠕变成形

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Creep-age forming (CAF) is an interesting process for the airframe industry, as it is able to form or shape panels into smooth, but complex, curvatures. In the CAF process, the ageing cycle of the alloy is used to relax external loads imposed to the part, through creep mechanisms. Those relaxed stresses impose a new curvature to the part. At the end of the process, significant spring back (sometimes about 70%) is observed and the success in achieving the desired form depends on how the spring back can be predicted in order to compensate it by tooling changes. Most of the applications relate to simple (non stiffened) panels. The present work deals with the CAF of aluminum panels for aircraft wing skin application. CAF was performed using vacuum-bagging autoclave technique in small scale complex shape stiffened panels, machined from an AA7475 alloy plate. An analytical reference model from the literature was employed estimate the spring back effect in such panel geometry. This model that deals with simple plates was adapted to stiffened panels using a geometric simplification, resulting in a semi-empirical model. The results demonstrate that CAF is a promising process to form stiffened panels, and the spring back can be roughly estimated through a simple model and few experiments.
机译:蠕变成形(CAF)对于机身行业来说是一个有趣的过程,因为它能够将面板成形或成形为平滑但复杂的曲率。在CAF工艺中,合金的时效循环用于通过蠕变机制来减轻施加到零件上的外部载荷。这些松弛的应力使零件产生新的曲率。在该过程结束时,观察到明显的回弹(有时约为70%),能否成功获得所需的形状取决于如何预测回弹,以便通过工具更改来补偿它。大多数应用涉及简单(非加固)面板。本工作涉及用于飞机机翼蒙皮应用的铝面板的CAF。 CAF使用真空装袋高压釜技术在由AA7475合金板加工而成的小尺寸复杂形状的加劲板中进行。使用来自文献的分析参考模型来估计这种面板几何形状中的回弹效应。这个处理简单板的模型使用几何简化方法适用于加劲板,从而产生了半经验模型。结果表明,CAF是形成加劲板的有前途的过程,并且可以通过简单的模型和少量实验粗略估计回弹。

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