Open Access
Issue
JNWPU
Volume 43, Number 5, October 2025
Page(s) 978 - 985
DOI https://doi.org/10.1051/jnwpu/20254350978
Published online 05 December 2025
  1. FOSNESS E R, BUCKLEY S J, GAMMILL W F. Deployment and release devices efforts at the air force research laboratory space vehicles directorate[C]//AIAA Space 2001 Conference and Exposition, Albuquerque, New Mexico, 2001 [Google Scholar]
  2. YAN Xiaojun, YU Hai, ZHANG Ke, et al. Design and experimental study of a small and quick response SMA space release device[J]. Journal of Astronautics, 2008, 29(3): 1042–1046 (in Chinese) [Google Scholar]
  3. NESTOR Nava, MARCELO Collado, MASSIMO Palladino. A hold-down and release mechanism for non-explosive actuators bas-ed on SMA technology[C]//The 16th European Space Mechanisms and Tribology Symposium, Bilbao, Spain, 2015: 23–25 [Google Scholar]
  4. LI Xinli, JIANG Shuiqing, LIU Bin. Release reliability validation tests and evaluation methods for the hold-down and release mechanism using thermal knife[J]. Spacecraft Engineering, 2012, 21: 123–126 [Google Scholar]
  5. LEE Myeongjae, LEE Yongkeun, OH Hyunung. Performance evaluation of hinge driving separation nut-type holding and releasing mechanism triggered by nichrome burn wire[J]. Aeronautical & Space Science, 2015, 16(4): 602–613 [Google Scholar]
  6. ZHANG Jiaolong, ZHOU Jun. Electromagnet door release mechanism in deploying mechanism for CubeSats[J]. Optics and Precision Engineering, 2018, 26(3): 606–615 (in Chinese) [Google Scholar]
  7. WU Jun, ZHOU Guohua, LIU Wang. Review of space non-pyrotechnic hold-down and release mechanisms[J]. Spacecraft Engineering, 2023, 32(1): 125–137 (in Chinese) [Google Scholar]
  8. HUANG Long, LI Xupeng, ZHANG Wenhui. Design and experimental research of electromagnetic hold down and release mechanism[J]. Journal of Machine Design, 2024, 41(4): 102–109 (in Chinese) [Google Scholar]
  9. JANI J M, LEARY M, SUBIC A, et al. A review of shape memory alloy research, applications and opportunities[J]. Materials & Design, 2014, 56(4): 1078–1113 [Google Scholar]
  10. COLLADO M, NAVA N, CABÁS R, et al. Characterization results of a novel shape memory alloy and pin puller mechanisms based on this technology[C]//The 14th European Space Mechanisms & Tribology Symposium, Constance, Germany, 2011: 28–30 [Google Scholar]
  11. QIN Xiaoyu, ZHANG Xiaoyong, YAN Xiaojun, et al. An SMA-actuated locking device for feed source structure based on self-lockking principle[J]. Journal of Astronautics, 2016, 37(3): 357–363 (in Chinese) [Google Scholar]
  12. MENG Lixin, MENG Lingchen, LI Xiaoming, et al. Design of repeatable locking/unlocking mechanism for spaceborne laser communication terminal[J]. Optics and Precision Engineering, 2019, 27(7): 1543–1551 (in Chinese) [Google Scholar]
  13. JAVIER Vázquez, JOSÉ IGNACIO Bueno. Non explosive low shock reusable 20 kN hold-down release actuator[C]//The 9th Space Mechanisms and Tribology, Liege, Belgium, 2001 [Google Scholar]
  14. FOUCHÉ F, LEPROUX F, LEVERD M, et al. Development and qualification of a high-temperature shape memory alloys based actuator for hold down[C]//Proceeding of the 19th European Space Mechanisms and Tribology Symposium, Paris, 2021 [Google Scholar]
  15. NESTOR Nava, MARCELO Collado, RAMIRO Caba's. Resettable hold down and release actuator for space applications[J]. Journal of Materials Engineering and Performance, 2014, 23: 2704–2711. [Article] [Google Scholar]
  16. TAK Wonjun, LEE Minsu, KIM Byungkyu. Ultimate load and release time controllable non-explosive separation device using a shape memory alloy actuator[J]. Journal of Mechanical Science and Technology, 2011, 25(5): 1141–1147. [Article] [Google Scholar]
  17. 张述卿, 张强, 刘继奎, 等. 一种记忆合金锁紧释放机构: 中国, 111456986A[P]. 2020-01-28 [Google Scholar]
  18. LIU Chen, ZHU Jiantao, LIU Lihong, et al. Dynamics parameter measurement and analysis of certain satellite platform during the launch and in orbit[J]. Spacecraft Environment Engineering, 2017, 34(3): 270–276 (in Chinese) [Google Scholar]
  19. HWANG Hyunsu, KIM Byungkyu, CHOI Junwoo. A compact non-explosive separation device for high preload and low shock[J]. International Journal of Precision Engineering and Manufacturing, 2014, 15(1): 83–88. [Article] [Google Scholar]
  20. YU Feng, XU Nana, ZHAO Zhenmin. On-orbit temperature analysis and thermal design optimization for camera on GF-4 satellite[J]. Journal of Beijing University of Aeronautics and Astronautics, 2021, 47(1): 177–186 (in Chinese) [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.