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首页> 外文期刊>Journal of aerospace engineering >Experimental Investigation of the Ballistic Response of Composite Panels Coupled with a Self-Healing Polymeric Layer
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Experimental Investigation of the Ballistic Response of Composite Panels Coupled with a Self-Healing Polymeric Layer

机译:复合材料自修复聚合物板弹道反应的实验研究

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摘要

In this study, multifunctional panels with structural and self-healing capabilities were experimentally investigated under high velocity impact conditions. The panels were composed of two layers, one made of fiber-reinforced plastics (FRP) and the other of a self-healing ionomer, assembled in four different configurations with surface density ranging from 6.85 to 7.49 kg/m(2). A total number of 16 impact experiments are reported, where spherical aluminium projectiles with diameters from 2.3 to 4.5 mm were shot at impact velocity, which varied from 2.0 to 2.5 km/s. The panel response was analysed in terms of (1) impact damage; and (2) capability to protect equipment located behind the panel from the cloud of fragments ejected downrange after panel perforation. Successful hole sealing was observed in panels consisting of a carbon FRP laminate and ionomer plate hit by projectiles up to 3.5 mm in diameter. The damage of the target was somewhat smaller when the ionomer was on the panel's rear side. Such panels presented smaller debris cloud spread angle but lower momentum transfer to witness plates, suggesting that this panel configuration is preferable from the point of view of nearby equipment shielding effectiveness. (C) 2016 American Society of Civil Engineers.
机译:在这项研究中,对具有结构和自愈功能的多功能面板在高速冲击条件下进行了实验研究。面板由两层组成,一层由纤维增强塑料(FRP)制成,另一层由自愈离聚物组成,组装成四种不同的结构,表面密度范围为6.85至7.49 kg / m(2)。据报道,总共进行了16次冲击实验,其中以从2.0到2.5 km / s的冲击速度射击了直径从2.3到4.5 mm的球形铝弹。根据以下方面分析专家组的响应:(1)冲击损伤; (2)能够保护位于面板后面的设备免受面板穿孔后向下射出的碎片云的影响。在由碳FRP层压板和离聚物板组成的面板中观察到成功的孔密封,该弹丸板被直径高达3.5毫米的弹丸击中。当离聚物位于面板的背面时,对靶的损害较小。这样的面板呈现出较小的碎屑云散布角度,但是传递到见证板的动量较低,这表明从附近设备屏蔽效果的角度来看,这种面板配置是优选的。 (C)2016年美国土木工程师学会。

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