Multi-Joint Bionic Mechanism Based on Non-Circular Gear Drive

Author:

Liu Dawei12ORCID,Zhang Tao1,Cao Yuetong1

Affiliation:

1. College of Mechanical Engineering, Yanshan University, Qinhuangdao 066004, China

2. National Engineering Technology Research Center of Cold Rolling Strip Equipment and Technology, Yanshan University, Qinhuangdao 066004, China

Abstract

Aiming at the nonlinear expansion/contraction drive problem between different cables in multi-joint cable drive mechanisms, a mechanical drive method based on a non-circular gear drive was proposed, which could replace the servo-sensing control system and minimize the system’s complexity and cost. A multi-joint single-degree-of-freedom (DOF) bending mechanism was constructed with several T-shaped components and cross-shaped components. The principle of the multi-joint mechanism driven by non-circular gears was clarified. The corresponding relationships between the joint bending angle, cables’ extension/retraction amount and non-circular gear transmission ratio were established. Using the Bowden cable driving, a multi-DOF bending mechanism decoupling scheme was proposed. Considering the adverse effect of non-circular gear hysteresis on the motion of multi-joint mechanisms, a non-circular gear backlash elimination method was proposed. The expression of the backlash of the non-circular gear with respect to the axial movement amount was deduced, which could enable the precise control of the backlash. A two-DOF multi-joint bionic mechanism driven by the non-circular gear was developed. The experimental results show that the mechanism can achieve coordinated bending motion by precisely controlling the line extension/contraction through non-circular gears. This multi-joint bionic mechanism driven by non-circular gears has the characteristics of reliable structure and simple control, and it is expected to be applied to bionic fish and bionic quadruped robots in the future.

Funder

Natural Science Foundation of Hebei Province

Graduate Innovation Funding Project of Hebei Province

Publisher

MDPI AG

Subject

Molecular Medicine,Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biotechnology

Reference21 articles.

1. Research progress of rigid-soft coupled bionic spine of four-legged robot;Lei;Sci. Technol. Rev.,2020

2. Research progress and analysis of body/caudal fin propulsion model of bionic robotic fish;Wang;J. Mech. Eng.,2016

3. A novel robot fish with wire-driven active body and compliant tail;Zhong;Trans. Mechatron.,2017

4. Research review on space robotic arm control technology;Xue;Robotics,2022

5. (2019, April 01). Lina, Germany Festo Has Produced 3 More Bionic Robot Black Technologies: Tentacles, Elephant Trunks, Arms [EB/OL]. Available online: http://zhidx.com/p/77757.html.

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