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Modified stiffened panel analysis methods for laser beam and friction stir welded aircraft panels

机译:激光束和搅拌摩擦焊接飞机面板的改进的加劲板分析方法

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摘要

The introduction of advanced welding methods as an alternative joining process to riveting in the manufacture of primary aircraft structure has the potential to realize reductions in both manufacturing costs and structural weight. Current design and analysis methods for aircraft panels have been developed and validated for riveted fabrication. For welded panels, considering the buckling collapse design philosophy of aircraft stiffened panels, strength prediction methods considering welding process effects for both local-buckling and post-buckling behaviours must be developed and validated. This article reports on the work undertaken to develop analysis methods for the crippling failure of stiffened panels fabricated using laser beam and friction stir welding. The work assesses modifications to conventional analysis methods and finite-element analysis methods for strength prediction. The analysis work is validated experimentally with welded single stiffener crippling specimens. The experimental programme has demonstrated the potential static strength of laser beam and friction stir welded sheet-stiffener joints for post-buckling panel applications. The work undertaken has demonstrated that the crippling behaviour of welded stiffened panels may be analysed considering standard-buckling behaviour. However, stiffened panel buckling analysis procedures must be altered to account for the weld joint geometry and process altered material properties. © IMechE 2006.
机译:先进的焊接方法的引入作为铆接在飞机主要结构制造中的替代方法,可以降低制造成本和结构重量。已经开发并验证了用于飞机面板的当前设计和分析方法,以进行铆接加工。对于焊接面板,考虑到飞机加劲板的屈曲塌陷设计原理,必须开发并验证考虑了局部屈曲和后屈曲行为的焊接过程影响的强度预测方法。本文报告了为开发使用激光束和搅拌摩擦焊制造的加劲板的断裂破坏分析方法而开展的工作。这项工作评估了对常规分析方法和有限元分析方法的修改,以进行强度预测。分析工作已通过焊接的单个加劲肋致残样本进行了实验验证。该实验程序证明了在弯曲后的面板应用中,激光束和搅拌摩擦焊接的薄板加劲肋接头的潜在静态强度。开展的工作表明,可以考虑标准屈曲行为来分析焊接加劲板的弯曲行为。但是,必须更改加筋的面板屈曲分析程序,以解决焊接接头的几何形状和工艺改变后的材料特性。 ©IMechE 2006。

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