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Characteristics of Elastomer Seals Exposed to Space Environments

机译:暴露于太空环境的弹性体密封件的特性

摘要

A universal docking and berthing system is being developed by the National Aeronautics and Space Administration (NASA) to support all future space exploration missions to low-Earth orbit (LEO), to the Moon, and to Mars. The Low Impact Docking System (LIDS) is being designed to operate using a seal-on-seal configuration in numerous space environments, each having unique exposures to temperature, solar radiation, reactive elements, debris, and mission duration. As the LIDS seal is likely to be manufactured from an elastomeric material, performance evaluation of elastomers after exposure to atomic oxygen (AO) and ultraviolet radiation (UV) was conducted, of which the work presented herein was a part. Each of the three candidate silicone elastomer compounds investigated, including Esterline ELA-SA-401, and Parker Hannifin S0383-70 and S0899-50, was characterized as a low outgassing compound, per ASTM E595, having percent total mass loss (TML) less than 1.0 percent and collected volatile condensable materials (CVCM) less than 0.1 percent. Each compound was compatible with the LIDS operating environment of -50 to 50 C. The seal characteristics presented include compression set, elastomer-to-elastomer adhesion, and o-ring leakage rate. The ELA-SA-401 compound had the lowest variation in compression set with temperature. The S0383-70 compound exhibited the lowest compression set after exposure to AO and UV. The adhesion for all of the compounds was significantly reduced after exposure to AO and was further decreased after exposure to AO and UV. The leakage rates of o-ring specimens showed modest increases after exposure to AO. The leakage rates after exposure to AO and UV were increased by factors of up to 600 when compared to specimens in the as-received condition.
机译:美国国家航空航天局(NASA)正在开发一种通用对接和停泊系统,以支持未来所有向低地球轨道(LEO),月球和火星进行的太空探索任务。低冲击对接系统(LIDS)设计为在多种空间环境中使用密封密封结构进行操作,每种环境均具有独特的暴露于温度,太阳辐射,反应性元素,碎片和任务持续时间的条件。由于LIDS密封件很可能是由弹性体材料制成的,因此在暴露于原子氧(AO)和紫外线(UV)后,对弹性体的性能进行了评估,其中的工作只是其中的一部分。根据ASTM E595,所研究的三种候选有机硅弹性体化合物(包括Esterline ELA-SA-401和Parker Hannifin S0383-70和S0899-50)均被表征为低放气化合物,总质量损失(TML)降低了低于1.0%,收集的挥发性可冷凝物(CVCM)低于0.1%。每种化合物均与-50至50 C的LIDS操作环境兼容。显示的密封特性包括压缩永久变形,弹性体与弹性体的粘附力以及O形圈的泄漏率。 ELA-SA-401化合物的压缩永久变形随温度变化最小。 S0383-70化合物在暴露于AO和UV后表现出最低的压缩永久变形。暴露于AO后,所有化合物的粘合力均显着降低,而暴露于AO和UV后,粘合力进一步降低。 O型圈样品的泄漏率在暴露于AO后显示出适度的增加。与按原样接收的样品相比,暴露于AO和UV后的泄漏率增加了多达600倍。

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