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基于加速栅溅射腐蚀失效的离子推力器寿命预测
引用本文:李军星,张勇波,王治华,傅惠民,刘佳.基于加速栅溅射腐蚀失效的离子推力器寿命预测[J].航空动力学报,2016,31(5):1047-1052.
作者姓名:李军星  张勇波  王治华  傅惠民  刘佳
作者单位:1. 北京航空航天大学 小样本技术研究中心, 北京 100191;
基金项目:国家自然科学基金(11501022);北京市自然科学基金(3154034)
摘    要:离子推力器加速栅溅射腐蚀失效是制约离子推力器寿命的关键失效模式之一.针对离子推力器长寿命、多功率条件下运行的特点,基于坑和凹槽的溅射腐蚀数据,建立模型对其进行寿命预测.通过研究离子推力器加速栅中心凹槽腐蚀深度在不同功率段下随工作时间的变化规律发现:运行功率顺序对加速栅凹槽腐蚀率影响较小,进而采用累积损伤理论建立离子推力器多功率段下运行的寿命预测模型.最后, 对美国的NASA's Evolutionary Xenon Thruster(NEXT)进行了寿命预测,预测结果寿命为46041h,与试验结果符合较好. 

关 键 词:离子推力器    溅射腐蚀    加速栅    累积损伤    寿命预测
收稿时间:2014/9/15 0:00:00

Life prediction of ion thruster based on sputtering erosion failure of accelerator grid
LI Jun-xing,ZHANG Yong-bo,WANG Zhi-hu,FU Hui-min and LIU Jia.Life prediction of ion thruster based on sputtering erosion failure of accelerator grid[J].Journal of Aerospace Power,2016,31(5):1047-1052.
Authors:LI Jun-xing  ZHANG Yong-bo  WANG Zhi-hu  FU Hui-min and LIU Jia
Institution:1. Research Center of Small Sample Technology, Beijing University of Aeronautics and Astronautics, Beijing 100191, China;2. DFH Satellite Company Limited, China Academy of Space Technology, China Aeropsace Science and Technology Corporation, Beijing 100094, China
Abstract:A crucial failure mode restricting the life of ion thruster lies in the sputtering erosion of accelerator grid. For the characteristics of long life and multi-power working, a corresponding model was used to predict the life of ion thruster based on the accelerator grid pit and groove erosion data. Firstly, by analyzing the change law between accelerator grid groove depth and operating time under various power segments, it was found that the operating power sequence had little influence on the erosion rate of groove. And then the fatigue accumulation damage was introduced to establish the life prediction model for ion thruster operating under multi-power segments. At last, the life prediction model was used to predict the life of NASA''s Evolutionary Xenon Thruster (NEXT). The predicted result of 46041h coincides with the test well.
Keywords:ion thruster  sputtering erosion  accelerator grid  accumulation damage  life prediction
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