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深空撞击载荷总体技术分析与效能仿真
引用本文:马鑫,周琪,李明涛,张会锁. 深空撞击载荷总体技术分析与效能仿真[J]. 中国空间科学技术, 2021, 41(1): 120-130. DOI: 10.16708/j.cnki.1000-758X.2021.0015
作者姓名:马鑫  周琪  李明涛  张会锁
作者单位:1 中国科学院国家空间科学中心中国科学院复杂航天系统电子信息技术重点实验室,北京1004002 中国科学院大学,北京1014083 中北大学机电工程学院,太原030051
摘    要:以近地小行星2016HO3为深空撞击目标开展科学探测,从爆炸成型弹丸技术、安全可靠爆炸技术、撞击载荷分离技术、撞击效能仿真技术等7个方面系统详细地进行了基于聚能爆炸成型弹丸的撞击载荷技术体系解析与技术内涵阐述,给出了深空撞击载荷初步总体设计方案;通过弹丸撞击靶板的数值模拟仿真,得到了撞击速度在0.2~0.4 cm/μs...

关 键 词:行星物质探测  聚能爆炸成型  深空探测  撞击载荷  效能仿真

Overall technology analysis and efficiency simulation of the deep space impactor
MA Xin,ZHOU Qi,LI Mingtao,ZHANG Huisuo. Overall technology analysis and efficiency simulation of the deep space impactor[J]. Chinese Space Science and Technology, 2021, 41(1): 120-130. DOI: 10.16708/j.cnki.1000-758X.2021.0015
Authors:MA Xin  ZHOU Qi  LI Mingtao  ZHANG Huisuo
Affiliation:1 Key Laboratory of Electronics and Information Technology for Space System, Chinese Academy of Sciences,Beijing 100400, China2 University of Chinese Academy of Sciences, Beijing, 101408,China3 North University of China,Taiyuan, 030051,China
Abstract:In order to impact the near-Earth asteroid 2016HO3 for scientific exploration, the "deep space impacting mission" and the present state of the deep space impactor were presented, the Hayabusa-2 deep space impacting mission was reviewed in detail, the scientific objectives of the deep space impactor with regard to China′s plan for future deep space missions to near-Earth asteroids were given. Through the deep investigation and analysis of the Hayabusa-2 impactor, the whole technology system of the deep space impactor which is based on explosively-formed projectile was obtained; the detailed technical analysis and technical connotation of the explosively-formed projectile, the safe and reliable explosion, the impactor separation, the impacting simulation and some other aspects were given systematically. The preliminary design of the deep space impactor for the near-Earth asteroid 2016HO3 was obtained. Through the impacting simulation, the results show that the diameters of impact craters vary from 32cm to 47cm with different impacting speed of 0.2cm/μs to 0.4cm/μs. The high resolution variation pattern of the diameter and depth of impact crater with different projectile thicknesses, impacting velocities, and projectile diameters were provided. This paper can provide technology support for the overall optimization of the deep space impactor.
Keywords:asteroid material exploration  explosively-formed projectile  deep space exploration  impactor  impacting simulation  
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