优化设计 |
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爬壁机器人磁吸附模块设计分析与结构参数优化 |
杨培( ),张明路,孙凌宇( ) |
河北工业大学 机械工程学院,天津 300130 |
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Design analysis and structural parameter optimization for magnetic adsorption module of wall-climbing robot |
Pei YANG( ),Minglu ZHANG,Lingyu SUN( ) |
School of Mechanical Engineering, Hebei University of Technology, Tianjin 300130, China |
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陈咏华, 孙振国, 张文, 等. 爬壁机器人焊缝高效修形技术研究[J]. 机械工程学报, 2023, 59(9): 12-19. doi:10.3901/jme.2023.09.012 CHEN Y H, SUN Z G, ZHANG W, et al. Research on high efficiency weld modification technology for wall-climbing robot[J]. Journal of Mechanical Engineering, 2023, 59(9): 12-19.
doi: 10.3901/jme.2023.09.012
|
2 |
刘志辉, 蔡伟, 付兴伟, 等. 一种滚动密封爬壁机器人失效分析[J]. 中国机械工程, 2022, 33(22): 2755-2763, 2771. LIU Z H, CAI W, FU X W, et al. Failure analysis of a rolling sealed wall climbing robots[J]. China Mechanical Engineering, 2022, 33(22): 2755-2763, 2771.
|
3 |
王洋, 张小俊, 张明路, 等. 可自适应变曲率立面的分体柔性爬壁机器人设计与分析[J]. 机械工程学报, 2021, 57(3): 49-58. doi:10.3901/jme.2021.03.049 WANG Y, ZHANG X J, ZHANG M L, et al. Design and analysis of split-flexible wall-climbing robot with adaptive variable curvature facade[J]. Journal of Mechanical Engineering, 2021, 57(3): 49-58.
doi: 10.3901/jme.2021.03.049
|
4 |
姜泽, 王珉, 赵哲, 等. 爬壁机器人发展现状与关键技术研究综述[J]. 包装工程, 2023, 44(12): 29-38, 117, 8. JIANG Z, WANG M, ZHAO Z, et al. Review on development status and key technologies of wall-climbing robots[J]. Packaging Engineering, 2023, 44(12): 29-38, 117, 8.
|
5 |
马吉良, 彭军, 郭艳婕, 等. 爬壁机器人研究现状及发展趋势[J]. 机械工程学报, 2023, 59(5): 11-28. doi:10.3901/jme.2023.05.011 MA J L, PENG J, GUO Y J, et al. Research status and development trend of wall climbing robot[J]. Journal of Mechanical Engineering, 2023, 59(5): 11-28.
doi: 10.3901/jme.2023.05.011
|
6 |
周依霖, 张华, 叶艳辉, 等. 永磁吸附履带式爬壁机器人转向动力特性分析[J]. 机械设计, 2017, 34(2): 56-61. ZHOU Y L, ZHANG H, YE Y H, et al. Steering dynamic characteristics analysis of permanent magnetic tracked wall-climbing robot[J]. Journal of Machine Design, 2017, 34(2): 56-61.
|
7 |
LU X R, GUO D H, CHEN Y. Design and optimization of the magnetic adsorption mechanism of a pipeline-climbing robot[J]. Journal of Mechanical Science and Technology, 2021, 35(11): 5161-5171.
|
8 |
张栋, 杨培, 黄哲轩, 等. 爬壁机器人悬摆式磁吸附机构的设计与优化[J]. 工程设计学报, 2023, 30(3): 334-341. ZHANG D, YANG P, HUANG Z X, et al. Design and optimization of pendulous magnetic adsorption mechanism for wall-climbing robots[J]. Chinese Journal of Engineering Design, 2023, 30(3): 334-341.
|
9 |
SAHBEL A, ABBAS A, SATTAR T. Experimental and numerical optimization of magnetic adhesion force for wall climbing robot applications[J]. International Journal of Mechanical Engineering and Robotics Research, 2019, 8(1): 18-24.
|
10 |
HALBACH K. Strong rare earth cobalt quadrupoles[J]. IEEE Transactions on Nuclear Science, 1979, 26(3): 3882-3884.
|
11 |
钟道方, 田颖, 张明路. 轮腿式爬壁机器人的永磁吸附装置设计与优化[J]. 工程设计学报, 2022, 29(1): 41-50. ZHONG D F, TIAN Y, ZHANG M L. Design and optimization of permanent magnet adsorption device for wheel-legged wall-climbing robot[J]. Chinese Journal of Engineering Design, 2022, 29(1): 41-50.
|
12 |
潘柏松, 张晋, 魏凯, 等. 基于Halbach阵列爬壁机器人永磁轮吸附单元的设计与优化[J]. 浙江工业大学学报, 2015, 43(4): 393-397, 474. doi:10.3969/j.issn.1006-4303.2015.04.009 PAN B S, ZHANG J, WEI K, et al. The optimization of a novel permanent-magnetic wheel adsorption unit for wall-climbing robot based on Halbach array[J]. Journal of Zhejiang University of Technology, 2015, 43(4): 393-397, 474.
doi: 10.3969/j.issn.1006-4303.2015.04.009
|
13 |
陈勇. Halbach阵列机器人磁吸附单元理论分析与实验研究[D]. 南京: 南京理工大学, 2013. CHEN Y. Theoretical and experiment research on magnetic adhesion device for wall-climbing robot based on Halbach array[D]. Nanjing: Nanjing University of Science and Technology, 2013.
|
14 |
JIAO S L, ZHANG X J, ZHANG X, et al. Magnetic circuit analysis of Halbach array and improvement of permanent magnetic adsorption device for wall-climbing robot[J]. Symmetry, 2022, 14(2): 429.
|
15 |
赵智浩, 陶友瑞, 裴佳星, 等. 履带式爬壁机器人磁吸附单元的参数分析与优化[J]. 机械强度, 2023, 45(3): 626-632. ZHAO Z H, TAO Y R, PEI J X, et al. Parameter analysis and optimization of magnetic adsorption unit for crawler wall-climbing robot[J]. Journal of Mechanical Strength, 2023, 45(3): 626-632.
|
16 |
ZHAO Z H, TAO Y R, WANG J, et al. The multi-objective optimization design for the magnetic adsorption unit of wall-climbing robot[J]. Journal of Mechanical Science and Technology, 2022, 36(1): 305-316.
|
17 |
孙玲. 除锈爬壁机器人壁面行走控制技术研究[D]. 大连: 大连海事大学, 2015. SUN L. Research on wall travelling control for ship rust removal wall climbing robot[D]. Dalian: Dalian Maritime University, 2015.
|
18 |
黄哲轩. 石化储罐壁面检测爬壁机器人设计及其特性研究[D]. 天津: 河北工业大学, 2018. HUANG Z X. Wall-climbing robot design and property study based on surface testing of petrochemical tank[D]. Tianjin: Hebei University of Technology, 2018.
|
19 |
PALAR P S, SHIMOYAMA K. On efficient global optimization via universal Kriging surrogate models[J]. Structural and Multidisciplinary Optimization, 2018, 57: 2377-2397.
|
20 |
KEANE A J, VOUTCHKOV I I. Robust design optimization using surrogate models[J]. Journal of Computational Design and Engineering, 2020, 7(1): 44-55.
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21 |
张扬. 多参数非线性系统全局敏感性分析与动态代理模型研究[D]. 长沙: 湖南大学, 2014. ZHANG Y. The study on global sensitivity analysis and dynamic metamodel of multiple-parameters nonlinear system[D]. Changsha: Hunan University, 2014.
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