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作 者:张振龙[1] 韩建伟[1] 全荣辉[1,2] 安广朋[1]
机构地区:[1]中国科学院空间科学与应用研究中心,北京100190 [2]中国科学院研究生院,北京100039
出 处:《航天器环境工程》2009年第3期210-213,197,共4页Spacecraft Environment Engineering
摘 要:利用电子枪发射的单能电子束、以及放射源发射的能谱结构接近空间电子环境的β射线电子,模拟试验了几种常用空间介质材料和某卫星部件的深层充电过程;结合对放电电流脉冲和电场脉冲的测量,观测了深层放电脉冲信号及其对试验电路的影响。试验结果表明,在类似实际空间强度的pA量级电子束辐照下,介质材料可以累积大量电荷,其表面电位可以达到近万V;随后发生的介质材料放电可产生高强度的放电电流脉冲和电场脉冲,放电脉冲对试验电路造成较强的干扰。This paper discusses the simulation experiment for deep charging and discharging process in dielectric materials for a satellite component used in space. Samples were irradiated with mono-energy electrons by using an electron gun and with β ray from a radioactive source. By measuring the current pulses and electric field pulses, the deep dielectric discharging and their effects on the experimental circuit can be studied. Results show that with irradiation of electron beam with a current density of pico-amperes, as is close to that in a real space environment, massive charge may be accumulated in dielectric materials to reach a surface potential of several kilo-volts. The subsequent discharge will generate high amplitude current and electric field pulses, which may heavily disturb the operation signals of theexperimental circuit.
分 类 号:TM215.1[一般工业技术—材料科学与工程] V416.5[电气工程—电工理论与新技术]
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