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Buckling design of stiffened sheet-based inner core based on bifurcation analysis

机译:基于分叉分析的加筋片基内芯屈曲设计

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摘要

In the structural design of the sandwich plate, the inner core plays a key role to have its maximum performance. A shaped pyramidal truss core is proposed in order to increase the strength and productivity of the sandwich core. In this paper, the design guidelines of the shaped pyramidal truss core, which is enhanced by forming a cross-section of an arc shape at the strut of the inner core, is described. The inner core is composed of a stiffened section and a transient section with a varying cross-section. The critical load for bifurcation in compressive instability is calculated using an analytical and FEM simulation. The analytical equation for the critical load of the shaped column is derived using the energy method. The various buckling modes (global, distortional, local) occur due to these effects. Therefore, complications induced by such effects must be taken into account in the design. Parametric studies for the stiffened core are conducted. The effect of geometric parameters is investigated for optimal design of the inner core and their influence have been discussed.
机译:在夹心板的结构设计中,内芯在发挥其最大性能方面起着关键作用。为了增加夹芯的强度和生产率,提出了一种异形的锥体桁架芯。在本文中,描述了锥形金字塔形桁架芯的设计准则,该准则通过在内芯支柱上形成弧形横截面来增强。内芯由一个变截面的加强部分和一个过渡部分组成。使用解析和有限元模拟计算出了压缩不稳定性中分叉的临界载荷。使用能量法导出了异型柱的临界载荷的解析方程。由于这些效应,会发生各种屈曲模式(整体,变形,局部)。因此,在设计中必须考虑到由这种效应引起的并发症。进行了加固芯的参数研究。研究了几何参数对内芯优化设计的影响,并讨论了它们的影响。

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