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首页> 外文期刊>International journal of impact engineering >Behavior of dragon skin flexible metal bumper under hypervelocity impact
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Behavior of dragon skin flexible metal bumper under hypervelocity impact

机译:高速冲击下龙皮柔性金属保险杠的行为

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摘要

The need for large space structures has been of significant interest in recent years, owing to the expansion of potential space applications. The use of flexible and inflatable shield designs is a very promising method for constructing spacious structures in space. Dragon skin or so-called fish-scale armor may provide an effective flexible bumper structure for space. This is the first study to evaluate dragon skin as a bumper against hypervelocity impact of micro-meteoroid and orbital debris in space. In this research, hypervelocity impact experiments and various numerical simulations were conducted. It was found that the deflection effect and critical impact location factor prevailed in the dragon skin bumper; hence, fragmentation can be seriously affected by the dragon skin shape. However, a simulation work of the research showed that the shape effect can be alleviated by using a thin and dense metal material instead of aluminum. In conclusion, the dragon skin structure can be utilized as a bumper in space with consideration of several design factors that are reported in this study.
机译:由于潜在空间应用的扩展,近年来对大型空间结构的需求引起了极大的兴趣。使用柔性且可充气的防护罩设计是在空间中构造宽敞结构的非常有前途的方法。龙皮或所谓的鱼鳞装甲可以为空间提供有效的柔性保险杠结构。这是第一项评估龙皮作为抵御空间中微流星体和轨道碎片超高速冲击的研究。在这项研究中,进行了超高速冲击实验和各种数值模拟。发现在龙皮保险杠中普遍存在挠度效应和临界冲击定位因子。因此,碎裂会受到龙皮形状的严重影响。但是,研究的仿真工作表明,使用薄而致密的金属材料代替铝可以减轻形状效果。总之,考虑到本研究报告的几种设计因素,龙皮结构可以用作空间的保险杠。

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