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A new design concept of dual-constituent sandwich panel with in-plane zero thermal expansion

机译:具有面内零热膨胀的双组成夹芯板的新设计理念

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摘要

The lattice metamaterials with zero, large positive or negative coefficients of thermal expansions (CTEs) have attracted much attention because of urgent demands in practical engineering structure. Due to the porosity of the above lattice metamaterials, most of structures made of them are also porous and are unsuitable to the outermost need to seal, for example, the skin of supersonic vehicles. In this paper, a new design concept of dual-constituent sandwich panel with in-plane zero thermal expansion is proposed. Different from the structures made of porous metamaterial with zero CTE, the upper and lower face-sheets of sandwich panels are all solid and not porous. The counterintuitive properties come from the special design of face-sheets, which are comprised of bi-layer materials with different positive CTEs. The difference of CTEs of two bonded layers leads to transverse bending of face-sheet during temperature increase, which results in the in-plane contraction and thereby compensates the in-plane thermal expansion deformation. The core is connected to the special locations on face-sheets to ensure the desired thermal transverse deformation occurs. In order to verify the validity of the design concept, two kinds of specific examples of corrugated and lattice sandwich panels are separately presented. The results indicate they can separately achieve in-plane unidirectional and bidirectional zero thermal expansion if the appropriate structure parameters and materials are selected.
机译:由于实际工程结构的紧急需求,具有零,零辐射或负系数的晶片超材料(CTES)引起了很多关注。由于上述晶格超材料的孔隙率,由它们制成的大多数结构也是多孔的并且不适合最外面的需要密封,例如超音速车辆的皮肤。本文提出了一种具有面内零热膨胀的双组成夹层板的新设计理念。与具有零CTE多孔超材料制成的结构不同,夹层面板的上部和下部面板都是固体而不是多孔。反思属性来自面部纸张的特殊设计,其由具有不同阳性CTE的双层材料组成。两个粘合层的CTE的差异导致温度升高期间面膜的横向弯曲,从而导致面内收缩,从而补偿面内热膨胀变形。核心连接到面部纸上的特殊位置,以确保发生所需的热横向变形。为了验证设计概念的有效性,分别呈现了两种波纹状和晶格夹层板的具体实例。结果表明,如果选择合适的结构参数和材料,它们可以单独实现面内单向和双向零热膨胀。

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