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The frequency response and damping effect of three-layer thin shell with viscoelastic core

机译:粘弹性三层薄壳的频率响应和阻尼效应

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General differential equations of motion of three-layer sandwich structure with viscoelastic core are derived. The Hamiltion's principle and Donnell-Mushtari-Vlasov simplification are employed in the derivation. The differential equations, unlike the existing models with five displacements, contain only three displacements, which are one transverse displacement and two in-plane displacements of the host structure. The proposed theory is very general and can be specialized to account for many other commonly occurring geometry, such as spherical shells, cylindrical shells, plates, cones, beams, etc. The derived theory can be directly applied to the studies of structures with constrained layer damping (CLD). The theory can also degenerate into one single layer or two-layer structures. Specialization of the theory to a cylindrical shell, to a rectangular plate and to a beam is demonstrated in a sequel as some of the possible applications.
机译:推导了具有粘弹性芯层的三层夹心结构的一般运动微分方程。在推导过程中,采用了汉密尔顿原理和唐内尔-穆斯塔里-弗拉索夫简化法。与现有的具有五个位移的模型不同,该微分方程仅包含三个位移,它们是主体结构的一个横向位移和两个平面内位移。所提出的理论非常笼统,可以专门解决许多其他常见的几何问题,例如球形壳,圆柱壳,板,圆锥,梁等。派生的理论可以直接应用于具有约束层的结构的研究阻尼(CLD)。该理论也可以退化为一层或两层结构。该理论专门介绍了圆柱壳,矩形板和梁,并在后续的一些可能应用中得到了证明。

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