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Experimental Investigation of Dynamic Response and Deformation of Aluminium Honeycomb Sandwich Panels Subjected to Underwater Impulsive Loads

机译:水下冲击载荷作用下铝蜂窝夹芯板动力响应与变形的实验研究

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The response of aluminium sandwich panels with three thicknesses’ core subjected to different underwater loading levels has been studied in the fluid-structure interaction (FSI) experiments. The transient response of the panels is measured using a three-dimensional (3D) Digital Image Correlation (DIC) system, along with high-speed photography. The full-field shape and displacement profiles of dry face sheets were recorded in real time compared with those of monolithic plate. The out-of-plane deflection and in-plane strain were quantified and analyzed. Three typical deformation modes of sandwich panel were identified. The results show that the core structure is crushed resulting in an initial large circular shape of deformation in the center area of panels. From this moment on, the panel is starting to act as a free vibration beam with initial velocities. The deformation modes consisted of homogeneous large deformation for both face sheets, obvious deformation border on wet face sheet, core node imprinting, remarkable wrinkled skin of deformation border, and a partial delamination and partial tear failure of the dry face. The blast-resistance of sandwich panel can be highly efficiently improved by increasing the thickness of core structure.
机译:在流固耦合实验中研究了三种厚度的铝芯夹芯板在不同水下载荷下的响应。使用三维(3D)数字图像关联(DIC)系统以及高速摄影来测量面板的瞬态响应。与整块板相比,实时记录了干面板的全场形状和位移轮廓。平面外挠度和平面内应变被量化和分析。确定了夹芯板的三种典型变形模式。结果表明,芯结构被压碎,从而在面板的中心区域产生了初始的大圆形变形。从这一刻起,面板开始以初始速度起自由振动梁的作用。变形模式包括两个面板的均匀大变形,湿面板上明显的变形边界,核心节点印记,变形边界明显的起皱皮以及干面的部分分层和部分撕裂破坏。通过增加芯结构的厚度,可以高度有效地改善夹芯板的抗爆炸性。

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