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Flexible Hypervelocity Impact Shield by Dragon Skin Bumper and Hybrid Fabric Rear Wall

机译:龙皮保险杠和混合织物后壁的柔性超高速冲击防护罩

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Launching a manned spacious space structure at once is advantageous in the manner of cost, and application. However, it is challenging to launch a large structure in space mainly due to limited size of a launch vehicle and high protection requirement against hazardous space environment. Using a flexible and inflatable structure in space can be a possible solution for size limitation. To protect flexible and inflatable space structure against hypervelocity impact of Micrometeoroid and Orbital Debris (M/OD), Multi-shock shield has been developed. The efficiency of the shield, however, quite to be skeptical because of the design without dense and metallic bumpers. In the study, hypervelocity impact tests on the new flexible space shield which consists of the Dragon skin bumper and STF impregnated fabric rear wall were conducted at 3.6 - 4.0 km/s. Compared with aluminum control specimens under identical impact conditions, the proposed shield shows superior performance.
机译:立即发射载人的宽敞空间结构在成本和应用方式上是有利的。然而,主要由于运载工具的尺寸有限以及对危险空间环境的高防护要求,在空间中发射大型结构是具有挑战性的。在空间中使用柔性且可充气的结构可能是尺寸限制的可能解决方案。为了保护柔性和可充气的空间结构免受微流星体和轨道碎片(M / OD)的超高速冲击,已开发了多冲击防护罩。然而,由于没有密集的金属保险杠的设计,屏蔽的效率相当令人怀疑。在这项研究中,以3.6-4.0 km / s的速度对新型挠性太空盾进行了超高速冲击试验,该盾由Dragon皮肤保险杠和STF浸渍织物后壁组成。与相同冲击条件下的铝质控制样品相比,所提出的防护罩表现出优异的性能。

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