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首页> 外文期刊>Journal of Sandwich Structures and Materials >On application of catenary principles to sandwich structure design-Sandwich/catenary hybrid beams under uniformly distributed load
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On application of catenary principles to sandwich structure design-Sandwich/catenary hybrid beams under uniformly distributed load

机译:在均匀分布载荷下将延伸原理在三明治结构设计 - 三明治/裂纹混合梁的应用

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摘要

Application of catenary principles to sandwich structure design, whereby one face sheet follows the equilibrium shape of a catenary according to the applied load, is investigated. The difference between load transfer through a sandwich beam and through a catenary is outlined. An initial comparison between an inclined elastic string and a sandwich core under shear deformation provides an indication of the potential stiffness advantages of catenary design. A stiffness comparison is made between an ordinary sandwich beam with thin, parallel face sheets, a catenary suspended by the end-points, and a sandwich/catenary hybrid. It is demonstrated that, for mass parity and a uniformly distributed load, and depending on the constituent materials moduli, the sandwich/catenary hybrid may be designed for superior stiffness. A numerical modeling method is outlined for evaluating the deflection of a catenary, and subsequently expanded to predict deflection of a sandwich/catenary hybrid beam. The method is verified through comparison with experimentally measured deflection. It is demonstrated that first-order shear deformable theory, commonly applied to sandwich structures, is inherently unsuited for describing the elastic response of sandwich/catenary hybrids. For a typical range of face-sheet/core moduli, comparisons of relative stiffness for parallel-face sandwich beams and sandwich/catenary hybrid beams are calculated over a range of core heights, for equivalent core height and equivalent core volume.
机译:将连接原理在三明治结构设计中的应用,从而研究了根据施加的载荷的凸起的平衡形状。概述了通过夹层和通围面的负载转移之间的差异。在剪切变形下倾斜弹性串和夹层芯之间的初始比较提供了延伸设计的潜在刚度优势的指示。在普通的夹心梁与薄,平行的面板,悬浮在终点悬浮的囊网和夹心/凸状杂交之间的刚度比较。证明,对于质量奇偶校验和均匀分布的负载,并且取决于组成材料模量,可以设计夹层/凸裂的杂种以用于优异的刚度。概述了用于评估凸起的偏转的数值建模方法,随后扩展以预测三明治/凸闭束的挠度。通过与实验测量的偏转进行比较来验证该方法。据证明,通常适用于夹层结构的一阶剪切可变形理论本质上是不合适的,用于描述三明治/凸状杂种的弹性响应。对于典型的面部片/核模型,对平行面夹层梁和夹层/凸起的混合梁的相对刚度的比较在一系列芯高度范围内计算,用于等效核心高度和等效芯积。

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