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On an Innovative Optimization Approach for the Design of Cross-section Profiles of Integrally Stiffened Panels Subjected to Elasto-plastic Buckling Deformation Modes

机译:弹塑性屈曲变形模式下整体加筋板截面轮廓设计的创新优化方法

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摘要

Aircraft fuselage panels are conventionally differential reinforced structures, with aluminum skin and stringers being conventionally joined by riveting operations. As a consequence, these structures can present a number of distinct components, making assembly operations time consuming and expensive. Recently, developments in aluminum extrusion have opened up possibilities for new design procedures for aircraft applications. Particularly, complex-section panels known as Integrally Stiffened Panels (ISP), which are reinforced structures integrally obtained from extrusion, are a good example. In structural terms, ISP may be considered as thin-walled structures in which the stability for compressive loads is strongly dependent on the buckling strength of the cross section itself. Besides the difficulties in the project for buckling deformation modes within the elasto-plastic range, in aeronautical design it is mandatory to find the best compromise between weight and structural performance.
机译:飞机机身面板通常是差速增强结构,铝表皮和桁条通常通过铆接连接在一起。结果,这些结构可以呈现许多不同的部件,使得组装操作既费时又昂贵。最近,铝挤压的发展为飞机应用的新设计程序开辟了可能性。特别地,被称为整体加强板(ISP)的复杂截面板是一个很好的例子,该结构是通过挤压整体获得的加强结构。从结构上讲,ISP可以视为薄壁结构,其中压缩载荷的稳定性在很大程度上取决于横截面本身的屈曲强度。除了在弹塑性范围内屈曲变形模式的项目困难之外,在航空设计中,必须在重量和结构性能之间找到最佳折衷方案。

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