首页> 外文期刊>Acta astronautica >MDM: A flight mission to observe materials degradation in-situ on satellite in super low Earth orbit
【24h】

MDM: A flight mission to observe materials degradation in-situ on satellite in super low Earth orbit

机译:MDM:在超低地球轨道上观察材料退化原位的飞行使命

获取原文
获取原文并翻译 | 示例
       

摘要

Satellites in low Earth orbit (LEO) are subject to several environmental factors, atomic oxygen (AO) having the greatest effect on space materials, especially polymers. Recently, the possibility of utilizing orbits at an altitude lower than 300 km (super LEO or S-LEO) has been explored, but one complication in using these orbits is that AO fluence is expected to far exceed that in an ordinary LEO. The effect of S-LEO AO on materials used in space is not well understood. To investigate the influence of S-LEO AO on space materials, we developed the Material Degradation Monitor (MDM), which is installed on a JAXA spacecraft, the Super Low Altitude Test Satellite (SLATS, also known as TSUBAME). The SLATS is the first S-LEO satellite to operate at an altitude under 200 km and the MDM is the first near real-time experiment to examine the effects of AO on materials in this orbit. The aim of the MDM is to clarify degradation behaviors of the space materials according to AO fluence. We developed the instruments needed to detect AO fluence and the changes it causes to samples of various materials in S-LEO. The MDM performed as expected until the end of the SLATS operation. Some changes in materials were found from the images taken from front and back LEDs. Although there was no breakage by AO, optical properties changed that are assumed to be due to material erosion by AO.
机译:低地球轨道(LEO)的卫星受到几种环境因素的影响,原子氧(AO)对空间材料,特别是聚合物具有最大的影响。最近,已经探索了在高于300公里(超级Leo或S-Leo)的海拔地区的可能性,但使用这些轨道的一个并发症是,预计普通狮子座的流量将会超过普通乐队。 S-Leo Ao对空间中使用的材料的影响并不熟知。为了调查S-Leo AO对空间材料的影响,我们开发了安装在JAXA SpaceCraft的材料降级监视器(MDM),超低高度测试卫星(Slats,也称为Tsubame)。板条是第一个在高原下运行的S-Leo卫星,MDM是第一个近乎实时实验,以检查AO对该轨道中材料的影响。 MDM的目的是根据AO注释阐明空间材料的降级行为。我们开发了检测AO注入的仪器,以及其导致S-Leo中各种材料样本的变化。 MDM按预期执行,直到板条操作结束。从前后LED拍摄的图像中发现了一些材料的变化。虽然AO没有破裂,但是由于AO的材料侵蚀而被打破,所以可以改变光学性质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号