[1] 秦旭东,龙乐豪,容易. 我国航天运输系统成就与展望[J]. 深空探测学报(中英文),2016,3(4):315-322
QIN X D,LONG L H,RONG Y. The achievement and future of China space transportation system[J]. Journal of Deep Space Exploration,2016,3(4):315-322
[2] 宋征宇,吴义田,徐珊姝,等. 长征八号:长征火箭系列商业化与智慧化的先行者[J]. 深空探测学报(中英文),2021,8(1):3-16
SONG Z Y,WU Y T,XU S S,et al. LM-8:the pioneer of Long March rocket series on the innovations of commercialization and intelligence[J]. Journal of Deep Space Exploration,2021,8(1):3-16
[3] 宋征宇,黄兵,汪小卫,等. 重复使用运载器的发展及其关键技术[J]. 前瞻科技,2022,1(1):62-74
SONG Z Y,HUANG B,WANG X W,et al. Development and key technologies of reusable launch vehicle[J]. Science and Technology Foresight,2022,1(1):62-74
[4] 张宏剑,于兵,吴会强,等. 运载火箭机构技术发展研究[J]. 导弹与航天运载技术,2022,https://kns. cnki. net/kcms/detail/11.3263. V. 20220601.1907. 002. html.
ZHANG H J,YU B,WU H Q,et al. Research on technology development of launch vehicle mechanism[J]. Missiles and Space Vehicles,2022,https://kns.cnki.net/kcms/detail/11.3263.V.20220601.1907.002.html.
[5] 崔乃刚,吴荣,韦常柱,等. 垂直起降可重复使用运载器发展现状与关键技术分析[J]. 宇航总体技术,2018,2(2):27-42
CUI N G,WU R,WEI C Z,et al. Analysis on the development status and key technologies of vertical take-off and landing reusable carrier[J]. Astronautical Systems Engineering Technology,2018,2(2):27-42
[6] 徐大富,张哲,吴克,等. 垂直起降重复使用运载火箭发展趋势与关键技术研究进展[J]. 科学通报,2016,61(32):3453-3463.
XU D F,ZHANG Z,WU K,et al. Recent progress on development trend and key technologies of vertical take-off vertical landing reusable launch vehicle[J]. Chinese Science Bulletin,2016(32):3453-3463.
[7] 岳帅,林轻,杜忠华,等. 运载器着陆装置展开动力学及影响因素分析[J]. 宇航学报,2021,42(6):697-704.
YUE S,LIN Q,DU Z H,et al. Analysis on deployment characteristics and influence factors of landing gear for launch vehicle[J]. Journal of Astronautics,2021(6):697-709.
[8] YUE S,NIE H,ZHANG M,et al. Optimization and performance analysis of oleo-honeycomb damper used in vertical landing reusable launch vehicle[J]. Journal of Aerospace Engineering,2018,31(2):04018002
[9] 肖杰,张明,岳帅,等. 新型垂直起降运载器着陆支架收放系统设计与分析[J]. 机械设计与制造工程,2017,46(3):30-35
XIAO J,ZHANG M,YUE S,et al. Design and analysis on new landing support of vertical take-off and landing launch vehicle[J]. Machine Design and Manufacturing Engineering,2017,46(3):30-35
[10] 田保林,高海波,于海涛,等. 一种垂直起降运载器着陆支腿设计与展开控制[J]. 机械工程学报,2020,56(19):171-181
TIAN B L,GAO H B,YU H T,et al. Design and deployment control of landing leg for a vertical takeoff and landing vehicle[J]. Journal of Mechanical Engineering,2020,56(19):171-181
[11] 王英超,高海波,于海涛,等. 垂直降落运载器着陆动力学建模与稳定性分析[J]. 机械工程学报,2020,56(11):37-47
WANG Y C,GAO H B,YU H T,et al. Landing dynamics modeling and stability analysis of vertical-landing carrier[J]. Journal of Mechanical Engineering,2020,56(11):37-47
[12] 袁晗,王小军,张宏剑,等. 重复使用火箭着陆结构稳定性分析[J]. 力学学报,2020,52(4):1007-1023
YUAN H,WANG X J,ZHANG H J,et al. Stability analysis of reusable launch vehicle landing structure[J]. Chinese Journal of Theoretical and Applied Mechanics,2020,52(4):1007-1023
[13] 王辰,王小军,张宏剑,等. 航天运载器舵类传动机构间隙影响研究[J]. 动力学与控制学报,2017,15(1):44-51
WANG C,WANG X J,ZHANG H J,et al. Stability analysis on transverse vibration of axially moving functionally graded viscoelastic beams[J]. Journal of Dynamics and Control,2017,15(1):44-51
[14] 张宏剑,庄方方,王辰,等. Rocking Block线碰撞离散化研究[J]. 动力学与控制学报,2017,15(4):330-334
ZHANG H J,ZHUANG F F,WANG C,et al. Research on discretized line impact in Rocking Block[J]. Journal of Dynamics and Control,2017,15(4):330-334
[15] 朱冠宁,聂宏,张明,等. 垂直起降运载器着陆支架总体设计与布局优化[J]. 机械设计与制造工程,2020,49(6):62-67
ZHU G N,NIE H,ZHANG M,et al. Overall design and layout optimization on the landing support of vertical takeoff/landing launch vehicle[J]. Machine Design and Manufacturing Engineering,2020,49(6):62-67
[16] 周双林,邹慧军,郭为忠,等. 平面闭链五杆机构柔性工作空间的研究[J]. 机械工程学报,2000,36(11):10-15
ZHOU S L,ZOU H J,GUO W Z,et al. Study on the flexible workspace of plane closed-loop five-bar mechanism[J]. Journal of Mechanical Engineering,2000,36(11):10-15
[17] 蔡敢为,张林,王小纯,等. 多自由度可控装载机构的构型设计与综合研究[J]. 机械设计与制造工程,2015,4(4):1-4
CAI G W,ZHANG L,WANG X C,et al. Configuration design and synthesis study of multi-DOF controllable loadinig mechanism[J]. Machine Design and Manufacturing Engineering,2015,4(4):1-4
[18] 蔡敢为,黄一洋,田军伟,等. 一种新型正铲液压挖掘机工作机构的研究[J]. 机械工程学报,2021,57(13):132-143
CAI G W,HUANG Y Y,TIAN J W,et al. Research on a new working mechanism of face-shovel hydraulic excavator[J]. Journal of Mechanical Engineering,2021,57(13):132-143
[19] 闫辉垠,李传扬,郭宏伟,等. 面向空间应用的3-R(SRS)RP多环机构操作臂结构设计及逆运动学分析[J]. 机械工程学报,2021,57(7):1-9.
YAN H Y,LI C Y,GUO H W,et al. Structural design and inverse kinematics analysis of a 3-R(SRS)RP multi-loop mechanism manipulator for space application[J]. Journal of Mechanical Engineering,2021,57(7):1-9.