Three-Dimensional Characterization of Residual Stress in Aircraft Riveted Panel Structures

Yonggang Kang, Huantian Xiao, Zihao Wang, Guomao Li, Yonggang Chen
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Abstract

The residual stress field induced by interference-fit riveting in aircraft panel structures significantly affects the fatigue performance around the rivet holes. Common residual stress analytical models often overlook the non-uniformity of interference between the rivet and the hole, which impacts the applicability of these models. Addressing this issue, an analytical model of residual stress around the rivet hole is proposed for a typical single-riveted structure based on the thick-walled cylinder theory and Lame’s equations, considering the non-uniform interference along the axis of the rivet hole. This novel model is then extended to multi-riveted structures in fuselage panels. Using vector synthesis, analytical models for single-row double-rivets and double-row quadruple-rivets configurations were derived. The established analytical models provide a three-dimensional characterization of the residual stress field in typical riveted structures. Finally, the accuracy of the model is verified through X-ray diffraction experiments and FEM simulation results.
飞机铆接板结构残余应力的三维表征
飞机面板结构中的过盈配合铆接所引起的残余应力场会严重影响铆钉孔周围的疲劳性能。常见的残余应力分析模型通常会忽略铆钉与孔之间过盈量的不均匀性,这影响了这些模型的适用性。针对这一问题,基于厚壁圆柱体理论和 Lame 方程,考虑到沿铆钉孔轴线的非均匀干涉,为典型的单铆接结构提出了铆钉孔周围残余应力分析模型。然后将这一新颖模型扩展到机身面板中的多铆接结构。通过矢量合成,得出了单排双铆钉和双排四铆钉配置的分析模型。建立的分析模型提供了典型铆接结构中残余应力场的三维特征。最后,通过 X 射线衍射实验和有限元模拟结果验证了模型的准确性。
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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