An Analysis of the Structural Design and Simulation Process of New Linear Actuator
Abstract
load, long life and high efficiency requirements. In the design scheme selection and parameter optimisation stage, a variety of analysis tools
are used for simulation verification to ensure the feasibility and practicability of the design. The simulation results show that the optimised design can significantly improve the actuators transmission efficiency and load-bearing capacity, especially under high load conditions, showing
better stability and reliability. Finally, based on the simulation results, improvement measures for friction loss and insufficient structural rigidity are proposed to further enhance the comprehensive performance of the actuator.
Keywords
Full Text:
PDFReferences
[1] Su Lei, Liu Haiyan, Luo Fan, et al. Structural design and production line simulation of hand claw of package handling robot[J]. Today's
Manufacturing and Upgrading, 2022, (04):46-49.
[2] Ren Junhui, Qiao Lin. Design and motion simulation of robot end-effector based on UG[J]. Southern Agricultural Machinery, 2022,
53(05):22-24.
[3] Zheng Jinhui, Wang Shoupeng, Zhang Jie. Structural design and analysis of desktop robotic arm[J]. Journal of Jilin Institute of Chemical
Technology, 2022, 39(03):42-50.
[4] Cao Dongjiang, Wang Qiang, Wang Ning. Structural design and dynamic simulation analysis of a dual-arm handling robot[J]. Measurement and Control Technology, 2021, 40(02):32-36.
[5] Guo Kai, Zhuo Puzhou, Meng Zhichao, et al. Structural design and simulation analysis of tool change actuator for TBM[J]. Combined
machine tools and automated machining technology, 2020, (06):137-141.
DOI: http://dx.doi.org/10.70711/frim.v2i12.5727
Refbacks
- There are currently no refbacks.