Design and Optimisation of Bionic Frog Hind Limbs
DOI:
https://doi.org/10.54097/1mhvkk33Keywords:
Biomimetic; jumping robot; structural optimization.Abstract
With the deepening of human exploration of the Earth, more and more survey tasks are being carried out in unstructured environments. Biomimetic robots that can replace humans in completing related tasks under harsh conditions have gradually become a hot topic in robot development. Therefore, developing a biomimetic robot with a wide range of activities, strong mobility, excellent obstacle crossing ability, and rapid avoidance response has important theoretical research significance and broad application prospects. This paper focuses on frogs as the research object,research is conducted from the perspective of institutional design, aiming to design a frog like jumping robot with strong obstacle crossing ability and good environmental adaptability. In terms of overall structural design, a M-shaped structure based on linear bearings was proposed to ensure the stability of the robot during takeoff and landing; In terms of leg structure design, C-shaped flexible springs are used to integrate the calf, ankle joint, and foot into one, which can play a buffering role when the robot lands; In terms of transmission structure design, Propose to control the compression cycle of the jumping leg through a cam to achieve continuous jumping of the robot. The relevant research results indicate that the structural principle of the designed frog like jumping robot is correct, and the jumping effect is relatively good.For the sake of ideals, this paper provides a certain theoretical basis and basis for further research on bionic jumping robots.
Downloads
References
Meng Wang. Development of a frog like jumping robot [D] Harbin Institute of Technology, 2009
Xiaojun Xu, Bolong Liu, Dibo Pan, et al. Research and application of amphibious bionic robot[J]. Journal of Underwater Unmanned Systems, 2023.
Guoqiang Cao , Pengyue Li , Changlong Ye , et al. Mechanism optimisation of a frog-like deformed wheeled jumping robot[J]. Mechanical Design and Manufacturing Engineering, 2023, 52(8):51-56.
Jizhuang Fan, Qingguo Yu, Xu Yan, et al. Design of control system of soft robot imitating frog swimming[J]. Journal of Harbin University of Commerce: natural science edition, 2018, 34(6):6.
J. Zhang, J. Zhou, S. Yuan. A review of amphibious bionic robot configuration, kinematics and modelling control[J]. Robotics, 2023, 45(3):367-384.
Yao Hua, Sun Meina, Jiang Feng. Analysing the research status and trend of quadruped bionic robot[J]. China High-Tech Zone, 2018, 13:1.
Ma Jin, Hu Jie, Zhu Guoniu, et al. Research status and progress of military bionic robot based on design morphology[J]. Packaging Engineering, 2022, 43(4):11.
Li-Qing L, Wei W, Chi Z, et al. Global Path Planning Strategy of Miniature Bionic Robot in the Oil-immersed Transformer[J].Science Technology and Engineering, 2019.
Shao W, Xu C. Pitch Motion Control of a Soft Bionic Robot Fish Based on Centroid Adjustment[C]//2019 IEEE International Conference on Mechatronics and Automation (ICMA). IEEE, 2019.
Qingran Zhang,Structural optimization and motion synthesis of a frog like jumping robot[J],North China University of Technology, 2016.
Downloads
Published
Issue
Section
License
Copyright (c) 2024 Highlights in Science, Engineering and Technology

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.







