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Nitinol wire-reinforced GLAREs as a novel impact resistant material: An experimental study

机译:Nitinol线加强透明式致力于抗冲击材料:实验研究

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摘要

Glass-fiber-reinforced aluminum layers (GLARE) are one of the excellent impact resistant materials, benefited from both the metal and glass fibers properties. Owing to their high impact damping properties, the shape memory alloys have been also considered as useful materials for arming the conventional impact-exposed materials. In the present paper, the shape memory wires were integrated with GLARE laminate and its response to the Charpy low-velocity impact was experimentally studied. The current study is aimed to determine the effects of three parameters (pre-strain percentage of shape memory alloy (SMA), glass fibers angle and the location of SMA wires within the novel fiber metal laminate) for the first time. Hybrid GLARE specimens of this study were planned by Taguchi design of experiments (DOE) method and contained Nitinol shape memory alloy wires. The results showed that the pre-strain and the angle of glass fibers are the most effective parameters on the impact energy absorption at accepted levels of confidence. Regarding the innovations in the construction of this type of impact-resistant hybrid composites, this study could be used in design of aerospace bodies.
机译:玻璃纤维增​​强铝层(眩光)是优异的抗冲击材料之一,受益于金属和玻璃纤维性质。由于其高冲击阻尼性能,形状记忆合金也被认为是用于武装常规冲击暴露材料的有用材料。在本文中,形状记忆线与眩光层压板集成,并在实验研究其对夏比低速影响的响应。目前的研究旨在首次确定三个参数的影响(形状记忆合金(SMA),玻璃纤维角度和新型纤维金属层压体内的SMA线的位置和SMA线的位置)的效果。本研究的杂交眩光标本由Taguchi设计的实验(DOE)方法设计,并含有Nitinol形状记忆合金线。结果表明,玻璃纤维的预态和角度是在接受的置信水平下的冲击能量吸收上最有效的参数。关于这种抗冲击混合复合材料建设的创新,本研究可用于航空航天体的设计。

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