[ 1 ] KOBAYASHI T,FUJIWARA R,YAMAKAWA R, et al.
Mobility Performance of a Rigid Wheel in Low
Gravity Environments[J]. Journal of Terramechanics,
2010,47(4):261-274.
[ 2 ] ZHAO C, ZANG M. Analysis of Rigid Tire Traction
Performance on a Sandy Soil by 3D Finite Element-
discrete Element Method[J].Journal of Terramechanics,
2014,55(10):29-37.
[ 3 ] 贾阳,孙泽洲,郑旸,等.星球车技术发展综述[J].深空
探测学报(中英文),2020,7(5):419-427.
[ 4 ] 翟广龙,黄铁球.星球车刚性车轮在混合地形上牵引
性能研究[J].西北工业大学学报,2020,38(6):1240-
1248.
[ 5 ] 杨艳静,向树红.月球车刚性车轮与模拟月壤相互作
用有限元仿真和试验验证[J].强度与环境,2010,37
(1):47-52.
[ 6 ] YU X L,LEI F,LIUA J F.Interaction Mechanical Analysis between the Lunar Rover Wheel-Leg Foot and
Lunar Soil[J].Procedia Engineering,2012,29:58-63.
[ 7 ] SUZUKI H, WATANABE Y, KOBAYASHI T, et al.
Terramechanics-based Investigation of Grouser Shape
for Rigid Wheels:Comparison between Rectangular
and Trapezoidal Grousers[J].Cogent Engineering,
2020, 7(1):1-18.
[ 8 ] DING L,GAO H,DENG Z Q,et al.Wheel Slip-sinkage
and Its Prediction Model of Lunar Rover[J]. Journal
of Central South University of Technology, 2010(1):
133-139.
[ 9 ] 张锐,吉巧丽,张四华,等.轮面曲率半径对沙地刚性
轮沉陷性能影响研究[J].农业机械学报,2016(11):
341-349.
[10] 佚名.我国首个火星探测车"祝融号"[J].现代物理知
识,2021,33(3):2.
[11] 赵广生.月球车轮壤作用关系的刚柔结合仿真研究
[D].长春:吉林大学, 2012.
[12] 金大玮,李建桥,党兆龙,等.滑转条件下月球车轮沉陷
模型研究[J].航空学报,2013,34(5):1215-1221.
[13] 刘琳琳.月球车轮壤系统仿真分析[D].长春:吉林大
学,2012.
[14] 吕凤天,高海波,李楠,等.基于单目视觉的松软地面星
球车车轮滑转率估计[J].机械工程学报,2020,56(2):
77-85. |