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Selecting enhanced space debris shields for manned spacecraft

机译:为载人航天器选择增强型空间碎片防护罩

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A research program was funded by the European space agency (ESA) to improve and optimize the shields used to protect the manned elements of the international space station (ISS) against impacts of micro-meteoroids and orbital debris. After a review of existing shielding systems and after a series of light gas gun (LGG) experiments to screen interesting new materials and configurations, the research focused on shields with a metallic outer bumper, an intermediate stuffing and an inner metallic wall (representing the pressure shell of a manned spacecraft). Additional LGG experiments were performed on several configurations, with bumpers containing aluminum foam or made from titanium and aluminum super-alloys and with several combinations of stuffing materials. The comparison of the test results showed that ceramic cloth (Nextel) plus aramid fabric (both 2D and 2.5D Kevlar weaving) used as intermediate bumper gave a good protection compared to the overall area density requested. Configurations with by-layered aluminum foam bumpers (sandwich panels with asymmetric Al face sheets and a core made from Al foam) and Kevlar stuffing showed excellent resistance to normal impacts at about 6.5km/s. However, the influence of material properties varying from batch to batch and threshold phenomena made ranking among the tested options rather difficult. The test campaign showed that it was rather difficult to improve over the already good ballistic performances of the debris shields developed by Alenia Spazio for the ISS manned elements. The by-layered Al-foam bumper and Kevlar stuffing configuration was selected for additional tests, including low velocity and oblique impacts, to develop ballistic limit curves.
机译:欧洲航天局(ESA)资助了一项研究计划,以改进和优化用于保护国际空间站(ISS)载人部件免受微流星体和轨道碎片撞击的防护罩。在审查了现有的屏蔽系统并进行了一系列的轻气枪(LGG)实验以筛选有趣的新材料和配置之后,该研究的重点是带有金属外部保险杠,中间填充物和内部金属壁(代表压力)的屏蔽载人飞船的外壳)。另外的LGG实验是在几种配置下进行的,其中包含铝泡沫或钛和铝超级合金制的保险杠,以及填充材料的几种组合。测试结果的比较表明,用作中间保险杠的陶瓷布(Nextel)加芳纶织物(2D和2.5D Kevlar编织)与所需的总面积密度相比,具有很好的保护作用。具有分层铝泡沫缓冲器(具有不对称Al面板和由Al泡沫制成的内芯的夹芯板)和Kevlar填料的配置在约6.5 km / s的速度下显示出出色的抵抗正常撞击的能力。但是,不同批次之间材料特性的影响以及阈值现象使测试选项之间的排名变得相当困难。测试活动表明,要改善Alenia Spazio为ISS载人元件开发的碎片防护罩本已良好的弹道性能是相当困难的。选择了分层铝泡沫保险杠和凯夫拉(Kevlar)填料配置进行其他测试,包括低速和倾斜冲击,以形成弹道极限曲线。

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