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首页> 外文期刊>Journal of aerospace engineering >Identifying Sources of Variation in Horizontal Stabilizer Assembly Induced by Rib Using Finite-Element Analysis and Full Factorial Design Method
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Identifying Sources of Variation in Horizontal Stabilizer Assembly Induced by Rib Using Finite-Element Analysis and Full Factorial Design Method

机译:用有限元分析和全因子设计方法识别肋引起的水平稳定器组件变化的原因

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This paper proposes a method to identify sources of variation in the assembly of a horizontal stabilizer using finite-element analysis (FEA) and the full factorial design (FFD) method. The horizontal stabilizer is mainly assembled with edges and ribs. The ribs are the typical thin-walled deformable aluminum components used in a horizontal stabilizer. Residual stress, machining distortion, and other stochastic variables result in the distortion of the ribs. Part-to-part assembly of these compliant components regularly causes difficulties associated with dimensional variations. The FEA and FFD methods are used to analyze the deviation induced by the ribs. The FEA variation analysis is utilized in a case study of the assembly of a horizontal stabilizer system and good performance is obtained. The results show that the precision of the rib bears directly upon the whole geometrical precision of the trailing edge and provide a quantitative evaluation of the rib's distortion affecting the trailing edge. This study will enhance the understanding of the deformation of compliant components during assembly and help systematically improve the efficiency of precision control in the assembly of civil aircraft.
机译:本文提出了一种使用有限元分析(FEA)和全因子设计(FFD)方法来识别水平稳定器组件中变化源的方法。水平稳定器主要由边缘和肋条组装而成。肋是水平稳定器中使用的典型的薄壁可变形铝部件。残余应力,加工变形和其他随机变量会导致肋骨变形。这些顺应性部件的零件到零件的组装通常会引起与尺寸变化相关的困难。 FEA和FFD方法用于分析肋骨引起的偏差。在水平稳定器系统的装配案例研究中利用了FEA变化分析,并获得了良好的性能。结果表明,肋骨的精度直接关系到后缘的整体几何精度,并提供对影响后缘的肋骨变形的定量评估。这项研究将增进对组装期间顺应性部件变形的理解,并有助于系统地提高民用飞机组装中的精确控制效率。

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