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Design of double-layer anti-sputtering targets for plume effects experimental system 被引量:4

Design of double-layer anti-sputtering targets for plume effects experimental system
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摘要 The back-sputtering effect of an electric thruster used in a vacuum chamber has an adverse effect on the thruster, vacuum chamber and experimental equipment. An anti-sputtering target (AST) can extend the operating life of the vacuum chamber by reducing the back-sputtering deposition effect. Vacuum chambers used in international facilities have successfully incorpo- rated ASTs. To improve an AST's performance, a double layer structure AST based on the plume effects experimental system (PES) was designed. The structure of primary-end of the AST was designed as a flat while the secondary end was designed as a shutter to resolve factors such as service life, back flow rate of the sputtered material, economy and system security. To veri- fy the effects of the double layer AST, the sputtering effects of the AST with and without the secondary-end were evaluated by a DSMC-PIC algorithm. Additionally, the experimental verifications of the bare chamber and the target were performed. The results indicate that the secondary end graphite sheets can reduce the back flow yield approximately 50%. The design of the double layer AST can be introduced as a reference for the design of an anti-sputtering target.
机构地区 School of Astronautics
出处 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第8期1265-1275,共11页 中国科学(技术科学英文版)
关键词 electric propulsion anti-sputtering target vacuum chamber back-sputtering deposition beam target 设计参考 实验系统 溅射靶 羽流 使用寿命 双层结构 AST 真空室
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