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Embrittlement of MISSE 5 Polymers After 13 Months of Space Exposure

机译:太空暴露13个月后MISSE 5聚合物的脆化

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Understanding space environment induced degradation of spacecraft materials is essential when designing durable and stable spacecraft components. As a result of space radiation, debris impacts, atomic oxygen interaction, and thermal cycling, the outer surfaces of space materials degrade when exposed to low Earth orbit (LEO). The objective of this study was to measure the embrittlement of 37 thin film polymers after LEO space exposure. The polymers were flown aboard the International Space Station and exposed to the LEO space environment as part of the Materials International Space Station Experiment 5 (MISSE 5). The samples were flown in a nadir-facing position for 13 months and were exposed to thermal cycling along with low doses of atomic oxygen, direct solar radiation and omni-directional charged particle radiation. The samples were analyzed for space-induced embrittlement using a bend-test procedure in which the strain necessary to induce surface cracking was determined. Bend-testing was conducted using successively smaller mandrels to apply a surface strain to samples placed on a semi-suspended pliable platform. A pristine sample was also tested for each flight sample. Eighteen of the 37 flight samples experienced some degree of surface cracking during bend-testing, while none of the pristine samples experienced any degree of cracking. The results indicate that 49% of the MISSE 5 thin film polymers became embrittled in the space environment even though they were exposed to low doses (~2.75 krad (Si) dose through 127 μm Kapton) of ionizing radiation.
机译:在设计耐用,稳定的航天器组件时,了解太空环境引起的航天器材料降解至关重要。由于空间辐射,碎片撞击,原子氧相互作用和热循环的结果,空间材料的外表面在暴露于低地球轨道(LEO)时会退化。这项研究的目的是测量LEO空间暴露后37种薄膜聚合物的脆化。作为材料国际空间站实验5(MISSE 5)的一部分,将聚合物悬挂在国际空间站上并暴露于LEO太空环境中。将样品在面向最低点的位置飞行13个月,并与低剂量的原子氧,直接的太阳辐射和全向带电粒子辐射一起进行热循环。使用弯曲测试程序分析样品的空间诱发脆性,在该程序中确定引起表面开裂所需的应变。使用相继较小的心轴进行弯曲测试,以对放置在半悬浮柔韧性平台上的样品施加表面应变。还针对每个飞行样品测试了原始样品。 37个飞行样品中有18个在弯曲测试过程中出现了一定程度的表面开裂,而所有原始样品中均未出现任何程度的开裂。结果表明,即使将49%的MISSE 5薄膜聚合物暴露于低剂量(通过127μmKapton照射到约2.75 krad(Si)剂量)的电离辐射中,它们仍会在太空环境中变脆。

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