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MODIFYING FLAT CONDUCTOR CABLES FOR AGGRESSIVE SPACE ENVIRONMENTS

机译:修改扁平导体电缆以进行积极的空间环境

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A novel ion-beam surface treatment process with simultaneous surface renewal (IB/SSR) impairing to the treated surfaces charge-dissipative properties was developed at ITL and successfully used for treatment of both sides of variously shaped and sized flat conductor cables (FCC) that are being used in various applications in aerospace, space and commercial programs. The results of surface resistivity (SR) measurements of the front side of FCC's used as interconnects in solar panel arrays on satellites in Geostationary (GEO) orbit averaged around 10 MΩ/sq for short FCC units and around 8 MΩ/sq for long units. The SR values for back sides averaged around 18 MΩ/sq for both short and long FCCs. These values remained unchanged during ~ 1 month storage of the treated FCCs at lab conditions, and after a following 2-2.5 year's storage. Extended long-term ground-based GEO environment simulation testing experiments (15 years space equivalent) that involved simultaneous exposure to three GEO environmental factors, i.e. protons, electrons, and UV have been performed on two specially selected FCC sets. These sets included pristine and IB/SSR-treated FCCs, with both front and back FCC surfaces being exposed. It was demonstrated that the surface conductivity obtained on the insulating space polymer films is almost insensitive to space radiation during the 15 years in GEO. It was also shown that the long-term influence of GEO radiation on thermal optical characteristics of both FCCs sides does not significantly differ for pristine and ion-beam treated samples.
机译:具有同时表面更新(IB / SSR)的新型离子束表面处理过程损害处理过的表面电荷耗散性能,并成功地用于处理各种形状和尺寸的扁平导体电缆(FCC)的两侧正在航空航天,空间和商业计划中的各种应用中使用。 FCC的前侧的表面电阻率(SR)测量结果用作地球静止(地理学)卫星(地理)轨道上的太阳能电池板阵列的互连(GEO)轨道,对于短FCC单元的轨道约为10mΩ/ SQ,长约8mΩ/平方英尺。用于短和长FCC的后边的SR值平均为约18mΩ/ sq。在实验室条件下的处理FCCS〜1个月储存期间,这些值保持不变,并在下列2-2.5年的储存后。扩展的长期地基地理环境模拟测试实验(15年空间等效),涉及同时接触三个地理环境因素,即质子,电子和UV,已经在两个特殊选择的FCC套上进行。这些集合包括原始和IB / SSR处理的FCC,前后FCC表面都暴露。结果证明,在Geo的15年内,在绝缘空间聚合物膜上获得的表面电导率几乎对空间辐射不敏感。还表明原始和离子束处理样品对两个FCCS侧面的Geo辐射对FCCS侧面的热光学特性的长期影响没有显着不同。

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