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A finite element stress analysis of aircraft bolted joints loaded in tension

机译:飞机螺栓连接受拉的有限元应力分析

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摘要

Accurate stress and strain analysis in bolted joints is of considerable interest in order to design more efficient and safer aerospace structural elements. In this paper, a finite element modelling of aluminium alloy 7075-T6 bolted plates, which are extensively used in aircraft structures, is discussed. The ANSYS Finite Element (FE) package was used for modelling the joint and estimating the stresses and strains created in the joint due to initial clamping forces and subsequent longitudinal tensile loadings. A double-lap bolted joint with a single bolt and nut was considered in the study. A three-dimensional (3D) finite element model of the joint was generated, and then subjected to three different simulated clamping forces followed by different levels of longitudinal tensile load. 3D surface-to-surface contact elements were employed to model the contact between the various components of the bolted joint. Friction effects were considered in the numerical analysis; and moreover, the clearance between the bolt and the plates was simulated in the model. FE results revealed beneficial compressive stresses near the hole edge as a result of applying the clamping. It was found that a higher clamping force can significantly decrease the magnitude of the resultant tensile stress at the hole edge and also bearing stress in the joint when subjected to the longitudinal tensile load.
机译:为了设计更有效,更安全的航空航天结构元件,螺栓连接中的精确应力和应变分析引起了人们的极大兴趣。本文讨论了广泛用于飞机结构的铝合金7075-T6螺栓板的有限元建模。 ANSYS有限元(FE)软件包用于对接缝进行建模,并估算由于初始夹紧力和随后的纵向拉伸载荷而在接缝中产生的应力和应变。在研究中考虑了带有单个螺栓和螺母的双搭接螺栓连接。生成了关节的三维(3D)有限元模型,然后对其施加了三种不同的模拟夹紧力,然后施加了不同水平的纵向拉伸载荷。使用3D表面对表面接触元件来模拟螺栓连接的各个组件之间的接触。在数值分析中考虑了摩擦效应。此外,在模型中模拟了螺栓与板之间的间隙。有限元分析结果表明,由于施加了夹紧力,孔边缘附近产生了有利的压缩应力。已经发现,当承受纵向拉力时,较高的夹紧力会显着减小孔边缘处所产生的拉应力的大小以及接头中的轴承应力。

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  • 来源
    《Aeronautical journal》 |2010年第1155期|315-320|共6页
  • 作者单位

    Department of Mechanical and Aerospace Engineering Monash University Melbourne, Australia;

    Department of Mechanical Engineering, Islamic Azad University Firuzkooh Branch Firuzkooh, Iran;

    Aerospace Engineering, The University of Sheffield Sheffield, UK;

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  • 正文语种 eng
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