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卫星多层隔热组件表面等电位控制工艺
引用本文:左颖萍,周传君,朱兴鸿,范庆梅.卫星多层隔热组件表面等电位控制工艺[J].航天器环境工程,2018,35(2):195-199.
作者姓名:左颖萍  周传君  朱兴鸿  范庆梅
作者单位:航天东方红卫星有限公司, 北京 100094,航天东方红卫星有限公司, 北京 100094,航天东方红卫星有限公司, 北京 100094,航天东方红卫星有限公司, 北京 100094
摘    要:文章基于电磁监测卫星的空间等离子体表面带电环境和等电位要求,对卫星多层隔热组件表面等电位的控制方法进行分析和优化,给出多层隔热组件制作、安装、接地、检测和保护工艺方法,从而满足整星表面的电位差在±2 V以内的控制要求。

关 键 词:电磁监测卫星  多层隔热组件  空间等离子体环境  表面带电  等电位控制  接地
收稿时间:2017/9/13 0:00:00
修稿时间:2018/4/20 0:00:00

Process for surface equipotential control of satellite multilayer insulation
ZUO Yingping,ZHOU Chuanjun,ZHU Xinghong and FAN Qingmei.Process for surface equipotential control of satellite multilayer insulation[J].Spacecraft Environment Engineering,2018,35(2):195-199.
Authors:ZUO Yingping  ZHOU Chuanjun  ZHU Xinghong and FAN Qingmei
Institution:DFH Satellite Co., Ltd, Beijing 100094, China,DFH Satellite Co., Ltd, Beijing 100094, China,DFH Satellite Co., Ltd, Beijing 100094, China and DFH Satellite Co., Ltd, Beijing 100094, China
Abstract:This paper analyzes and optimizes the method of equipotential control on the surface of the multilayer heat insulation of an electromagnetic monitoring satellite in the space plasma charging environment of the satellite and with consideration of its surface equipotential requirements. The desirable working processes for the multilayer components are proposed, including the fabrication, the installation, the grounding, the detection, and the protection, to meet the requirement of controlling the surface potential difference of the whole satellite within ±2V.
Keywords:electro-magnetic monitoring satellite  multilayer insulation  space plasma environment  surface charging  equipotential control  grounding
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