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Experimental investigation of sandwich panels with hybrid composite face sheets and embedded shape memory alloy wires under low velocity impact

机译:低速冲击下杂交复合面板和嵌入式记忆合金线夹层面板的实验研究

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摘要

This experimental study was conducted to investigate the behavior of hybrid composite sandwich panels with superelastic shape memory alloy (SMA) wires under low velocity impact (LVI). Square-shaped sandwich panels were made few of a foam core and hybrid composite structures with carbon fiber and glass fiber, in which prestrained superelastic SMA wires were embedded between the layers. The sandwich panels had symmetrical and asymmetrical lay-ups and SMA wires were placed between the layers with different states. LVI tests were performed by drop weight impact testing machine. Moreover, damaged areas of the panels were estimated using thermography. The experimental results showed that the impact performance of the panels improved after embedding SMA wires. The presence of the SMA within the composite sandwich structure prevented the full perforation of the samples and reduced the internal delamination area. The utilization of SMA wires embedded in front face sheet, which is subject to the direct impact, is more effective than the utilization of wire in the back face layer. It was also found that increasing the layers of the back face and asymmetrication of the structure were more effective than the use of SMA wires in the symmetric structure in improving the panel impact resistance.
机译:本实验旨在研究超弹性形状记忆合金(SMA)丝混杂复合材料夹芯板在低速冲击(LVI)下的行为。方形夹层板由泡沫芯和碳纤维和玻璃纤维混合复合材料结构制成,其中预应变超弹性SMA丝嵌入层间。夹层板具有对称和非对称的铺层,SMA导线放置在不同状态的层之间。通过落锤冲击试验机进行LVI试验。此外,还使用热成像技术估计了面板的受损区域。实验结果表明,嵌入SMA丝后,面板的冲击性能有所改善。复合材料夹层结构中SMA的存在阻止了样品的完全穿孔,并减少了内部分层区域。前面板中嵌入的SMA电线的使用受到直接影响,比后面板层中使用的电线更有效。研究还发现,在提高面板抗冲击性方面,增加背面层数和结构不对称比在对称结构中使用SMA线更有效。

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