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The Blast Response of Sandwich Composites with In-Plane Pre-Loading

机译:夹层复合材料与平面内装载的爆炸响应

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The in-plane pre-loading in the ship hull structures during their service life will likely change the dynamic behavior of these structures under transverse blast loading. In the present study, the dynamic behavior of E-glass Vinyl Ester composite face sheet/foam core sandwich panels with in-plane pre-loading is investigated under shock wave loading. A special test fixture was designed which enables the application of uni-axial in-plane compressive loading when the panels are subjected to transverse blast loading. Blast tests are carried out under two levels of pre-loading and with no pre-loading using a shock tube apparatus. A high-speed side-view camera system and a high-speed back-view Digital Image Correlation (DIC) system are utilized to acquire the real time deformation of the sandwich panels. The results show that the in-plane pre-loading induced buckling and failure in the front face sheet. This mechanism greatly reduced the blast resistance of the sandwich composites. The back face deflections, back face in-plane strains, and mitigated energies were also experimentally quantified.
机译:在其使用寿命期间,船舶船体结构中的面内预装载可能会在横向鼓胀下改变这些结构的动态行为。在本研究中,在冲击波载荷下研究了在冲击波加载下采用平面内预加载的E-玻璃乙烯基酯复合面板/泡沫芯夹层板的动态行为。设计了一种特殊的测试夹具,当面板经受横向喷射时,能够在平面上的面内压缩负载施加。爆破试验在两个水平的预加载水平下进行,并且使用冲击管装置没有预装载。高速侧视摄像机系统和高速反向视图数字图像相关(DIC)系统用于获取夹层面板的实时变形。结果表明,面内预装的屈曲和前面板的失效。该机制大大降低了夹层复合材料的抗爆破。背面偏转,背面面内菌株和缓解能量也是通过实验量化的。

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