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空间增材制造技术的应用

王功 刘亦飞 程天锦 刘鸣

王功, 刘亦飞, 程天锦, 刘鸣. 空间增材制造技术的应用[J]. 空间科学学报, 2016, 36(4): 571-576. doi: 10.11728/cjss2016.04.571
引用本文: 王功, 刘亦飞, 程天锦, 刘鸣. 空间增材制造技术的应用[J]. 空间科学学报, 2016, 36(4): 571-576. doi: 10.11728/cjss2016.04.571
WANG Gong, LIU Yifei, CHENG Tianjin, LIU Ming. Application of Additive Manufacturing Technology for Space[J]. Chinese Journal of Space Science, 2016, 36(4): 571-576. doi: 10.11728/cjss2016.04.571
Citation: WANG Gong, LIU Yifei, CHENG Tianjin, LIU Ming. Application of Additive Manufacturing Technology for Space[J]. Chinese Journal of Space Science, 2016, 36(4): 571-576. doi: 10.11728/cjss2016.04.571

空间增材制造技术的应用

doi: 10.11728/cjss2016.04.571 cstr: 32142.14.cjss2016.04.571
详细信息
    作者简介:
    • 刘亦飞,liuyifei@csu.ac.cn
  • 中图分类号: V524

Application of Additive Manufacturing Technology for Space

  • 摘要: 中国空间站旨在进行大量在轨科学实验和空间应用研究,在轨保障是支持空间站在全寿命周期内完成载人航天任务的重要途径.传统地面制造及上行补给方式难以满足较大规模应用的需求,亟需一种创新性的保障模式突破资源瓶颈,空间增材制造技术具有极大的潜力实现即造即用的资源保障模式.本文根据空间增材制造技术的最新研究进展,结合中国空间站和载人深空探测任务需求,对空间增材制造技术的在轨应用模式进行分析,提出了中国空间增材制造技术未来发展所面临的问题和解决途径.

     

  • [1] Zero-Gravity 3D Printer[EB/OL].[2014-09-19]. http://www.madeinspace.us/projects/3dp/
    [2] The first zero-g 3D printer is about to launch into orbit (update: launch scrubbed)[EB/OL].[2014-09-19]. http://www.engadget.com/2014/09/19/zero-g-3d-printer/
    [3] FINGAS J. The International Space Station is now making 3D-printed tools[EB/OL].[2014-12-22]. http://www.engadget.com/2014/12/22/3d-printed-space-tools/
    [4] TAMINGER K. Langley researchers to conduct second round of 0-g flight tests[EB/OL].[2006-05-18]. http://www.nasa.gov/centers/langley/news/researcher-news/rn_zero-g5.18.06.html
    [5] HUANG Qiushi, LI Liangqi, GAO Binbin. Foreign metal parts additive manufacturing technology development overview[J]. Def. Manuf. Technol., 2012, 10(5):27-29
    [6] Materials Manufactured from 3D printed synthetic biology arrays[EB/OL].[2012-01-01]. http://www.nasa.gov/centers/ames/cct/office/cif/2012/3d_synbio_prt.htm
    [7] TAYLOR S. NASA is 3D scanning on Mars and 3D printing on Earth[EB/OL].[2014-04-29]. http://3dpr-intingindustry.com/2014/04/29/nasa-3d-scanning-mars-3d-printing-earth/
    [8] ROBERT H. Additive manufacturing and assembly on-orbit[EB/OL].[2013-06-13]. http://www.te-thers.com/SpiderFab.html
    [9] HOYT R P, CUSHING J I, SLOSTAD J T. SpiderFab: an architecture for self-Fabricating space systems[J]. Am. Inst. Aeron. Astron., 2013:2-6
    [10] 3D printing for space: the additive revolution[EB/OL].[2013-10-16]. http://www.esa.int/Our_Activities/Human_Spaceflight/Research/3D_printing_for_space_the_additive_revolution
    [11] Europe 3D printer set for space station[EB/OL].[2014-11-13]. http://www.esa.int/Our_Activities/Space_Enginee-ring_Technology/Europe_s_3D_printer_set_for_Space_Sta-tion
    [12] Building a lunar base with 3D printing[EB/OL].[2013. 1.31]. http://www.esa.int/Our_Activities/Space_Enginee-ring_Technology/Building_a_lunar_base_with_3D_printing
    [13] GONG Shuili, SUO Hongbo, LI Huaixue. Metal additive manufacturing technology on the development and application in the field of aviation[J]. Aeron. Manuf. Technol., 2013(13):66-71(巩水利, 锁红波, 李怀学.金属增材制造技术在航空领域的发展与应用[J]. 航空制造技术, 2013(13):66-71)
    [14] WANG Huaming. Open a new chapter by high performance metal components additive manufacturing technology[J]. Def. Manuf. Technol., 2013(3):5-7(王华明. 高性能金属构件增材制造技术开启国防制造新篇章[J]. 国防制造技术, 2013(3):5-7)
    [15] LU Bingheng, LI Dichen. Additive manufacturing and 3D printing[J]. Mach. Eng. Trends, 2012(11/12):4-10(卢秉恒, 李涤尘. 增材制造和3D打印[J]. 机械工程导报, 2012(11/12):4-10)
    [16] LIAO Wenjun, HU Jie. The situation of the additive manufacturing technology and industry prospect[J]. Equip. Mach., 2015(1):1-7(廖文俊, 胡捷. 增材制造技术的现状和产业前景[J]. 装备机械, 2015(1):1-7)
    [17] China Aerospace Science and Technology Group Co. LTD and Shanghai space technology research institute jointly invent a multiple laser metal 3d printer[EB/OL].[2014-12-28]. http://www.3d-dyjsw.com/3d-dayinji/jiguang3ddayinji/2014/12-08/2987.html
    [18] SNYDER M, DUNN J, GONZALEZ E. The effects of microgravity on extrusion based additive manufacturing[C]//AIAA SPACE Conference and Exposition. San Diego: AIAA, 2013
    [19] HOYT R P, CUSHING J I, SLOSTAD J T, et al. Spiderfab: An architecture for self-fabricating space sy-stems[C]//AIAA SPACE Conference and Exposition. San Diego: AIAA, 2013
    [20] QI Naiming, ZHANG Wenhui, GAO Jiuzhou. Ground-based space microgravity simulation test method overview[J]. Aerospace Control, 2011, 29(3):95-100
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出版历程
  • 收稿日期:  2015-11-10
  • 修回日期:  2016-04-07
  • 刊出日期:  2016-07-15

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