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Transient Dynamic Response and Failure of SandwichComposite Structures under Impact Loading with FluidStructure Interaction

机译:流固耦合作用下三明治复合结构的瞬态动力响应与破坏

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摘要

The objective of this study is to examine the Fluid Structure Interaction (FSI) effect on transient dynamic response and failure of sandwich composite structures under impact loading. The primary sandwich composite used in this study consisted of a 6.35 mm balsa core and a multi-ply symmetrical plain weave 6 oz E-glass skin. Both clamped sandwich composite plates and beams were studied using a uniquely designed vertical drop-weight testing machine. There were three impact conditions on which these experiments focused. The first of these conditions was completely dry (or air surrounded) testing. The second condition was completely water submerged. The final condition was also a water submerged test with air support at the backside of the plates. The tests were conducted sequentially, progressing from a low to high drop height to determine the onset and spread of damage to the sandwich composite when impacted with the test machine. The study showed the FSI effect on sandwich composite structures is very critical such that impact force, strain response, and damage size are generally much greater with FSI under the same impact condition. As a result, damage initiates at much lower impact energy conditions with the effect of FSI. Neglecting to account for FSI effects on sandwich composite structures results in very non-conservative analysis and design. Additionally, it was observed that the damage location changed for sandwich composite beams with the effect of FSI.
机译:这项研究的目的是研究流体结构相互作用(FSI)对冲击载荷作用下夹层复合结构瞬态动力响应和破坏的影响。本研究中使用的主要三明治复合材料由6.35毫米轻木芯和多层对称平纹6盎司E玻璃表皮组成。使用独特设计的垂直落锤试验机研究了夹层夹心复合材料板和梁。这些实验关注的是三个影响条件。这些条件中的第一个是完全干燥(或空气包围)测试。第二个条件是完全被水淹没。最终条件也是在板的背面进行空气支撑的水浸试验。依次进行测试,从低落高度到高落差高度确定夹层复合材料在受到试验机撞击时的破坏开始和蔓延。研究表明,FSI对夹芯复合结构的影响非常关键,因此在相同的冲击条件下,FSI的冲击力,应变响应和损伤大小通常要大得多。结果,在FSI的作用下,在低得多的冲击能条件下开始发生损坏。忽略考虑FSI对夹芯复合结构的影响会导致非常不保守的分析和设计。此外,观察到,夹层复合材料梁的损伤位置在FSI的作用下发生了变化。

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