Paper
18 July 2023 Finite element analysis of key parts of elevator weights carrying robot
Huiting Han, Bing Li, Jiaxing Song, Chenchen Li, Feng Zhang, Qingzhu Zhang
Author Affiliations +
Proceedings Volume 12722, Third International Conference on Mechanical, Electronics, and Electrical and Automation Control (METMS 2023); 1272245 (2023) https://doi.org/10.1117/12.2679738
Event: International Conference on Mechanical, Electronics, and Electrical and Automation Control (METMS 2023), 2023, Hangzhou, China
Abstract
The performance of the key parts of the elevator weights carrying robot determines the security of the entire device. The traditional theoretical calculation method may have problems such as low calculation accuracy, long time, large data error and inaccurate calculation results., the paper proposes to use the finite element analysis method to analyze the key parts. The finite element analysis of the bearing capacity and bending fatigue of the key parts of the elevator weights carrying robot is carried out by using the three-dimension modeling software simulation module. The stress-strain analysis results are obtained by means of three-dimensional modeling, finite element model establishment, material performance analysis and stress analysis of key parts. The results did not exceed the maximum allowable stress of the material, and the maximum displacement was within the allowable range, which met the analysis requirements and realized the reliability and safety detection of the key parts of the Carrying Robot. The test results meet the required requirements.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Huiting Han, Bing Li, Jiaxing Song, Chenchen Li, Feng Zhang, and Qingzhu Zhang "Finite element analysis of key parts of elevator weights carrying robot", Proc. SPIE 12722, Third International Conference on Mechanical, Electronics, and Electrical and Automation Control (METMS 2023), 1272245 (18 July 2023); https://doi.org/10.1117/12.2679738
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KEYWORDS
Finite element methods

Modeling

3D modeling

Safety

3D applications

Deformation

Design and modelling

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