Buckling and Postbuckling of Sandwich Beams With Delaminated Faces Based on Higher Order Core Theory

R. Li, Y. Frostig, G. Kardomateas
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Abstract

Delaminations within the face sheets are often observed when a sandwich structure is exposed to impact loads. The buckling and postbuckling behavior of sandwich beams with delaminated faces is investigated in this work. The governing nonlinear equations, boundary conditions, and continuity conditions are formulated through variational principles. The beam construction consists of upper and lower, metallic or composite laminated symmetric skins, and a soft core of a foam or low strength honeycomb type. A high order theory is used for the core that accounts for the nonlinear distortion of the plane of section of the core and the compressibility in the vertical direction. The delamination considered is an interface crack, in which the substrate includes the transversely flexible core. The case of a debond at one of the skin-core interfaces is also included. The effects of the delamination length and location on the overall and local behavior are examined with an arbitrary initial imperfection.
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基于高阶核理论的分层夹层梁屈曲和后屈曲
当夹层结构暴露在冲击载荷下时,通常会观察到面板内的分层现象。本文研究了层状夹层梁的屈曲和后屈曲行为。控制非线性方程、边界条件和连续性条件是通过变分原理制定的。梁结构由上下、金属或复合层压对称表皮和泡沫或低强度蜂窝型软芯组成。对岩心采用了高阶理论,该理论解释了岩心剖面平面的非线性畸变和垂直方向上的可压缩性。所考虑的分层是一种界面裂纹,其中基材包括横向柔性芯。在其中一个皮肤-核心接口剥离的情况也包括在内。用任意初始缺陷考察了脱层长度和位置对整体和局部行为的影响。
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Optimal Design of Composite Plates Under Thermal Loads Determination of the Permeability Tensor of Fibrous Reinforcements for VARTM Similarity Conditions for Sandwich Shell-Like Configurations Buckling of Debonded (Delaminated) Sandwich Panels With Transversely Flexible Core Design of a Frangible Laminated Composite Launch Tube Closure
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