Multi-objective structural optimization design for the waist mounting bracket of MD-1200YJ palletizing robot
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(1. Key Laboratory of Mechanism Theory and Equipment Design, Ministry of Education, Tianjin University, Tianjin300350, China; 2. Department of Mechanical Engineering, Tianjin University Renai College, Tianjin 301636, China;3. Beijing Hanning ZN Tech Co., Ltd., Beijing 100070, China)

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    Abstract:

    Finite element model of waist mounting bracket of MD-1200YJ palletizing robot was established, and the accuracy of the finite element model was verified by modal analysis, the modal test, and static analysis. Taking dynamic factors into account, based on the quintic non-uniform, the rational B-splines motion law was carried out, and the analysis showed that this part had the potential of lightweight design. The mass, the maximal stress, and the maximal deformation were minimized as the optimization objectives were determined. The structure parameters as design variables, the first and second natural frequency no reducing and boundary conditions of design variables as the constraint conditions, the approximation models of objective functions and constraint functions were established by the Box-Behnken and the RSM, and the accuracy of these models were verified. The multi-objective optimization mathematical model was established by the methods mentioned above. The optimal solution was obtained by using NSGA-II algorithm, and the optimized model of waist mounting bracket was also gained. The contrastive analysis results between optimized model and initial model showed that the mass reduction was 8.2%, as the first two natural frequencies were increased, bounding with the maximum stress and deformation within allowable values range. The validity of this optimization design method was verified.

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贺莹,梅江平,孙玉德,等. MD-1200YJ码垛机器人腰部支架的多目标结构优化设计[J].食品与机械英文版,2018,34(11):89-95.

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History
  • Received:August 05,2018
  • Revised:
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  • Online: March 17,2023
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