Multiphysics Modeling and Simulation of Optically Controlled Variable Damping System Based on PLZT/ER
编号:72 访问权限:仅限参会人 更新:2023-03-14 09:52:22 浏览:642次 口头报告

报告开始:2023年06月09日 11:40(Asia/Shanghai)

报告时间:15min

所在会场:[S2] Concurrent Session 2 [S2-1] Concurrent Session 2-1

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摘要
An optically controlled variable damping system based on intelligent photoelectric material PLZT / electrorheological fluid is proposed. In this paper, the structure of the optically controlled variable damping system is built, the mathematical model of PLZT photovoltage and the hydrodynamic model of electrorheological fluid are established, and the relationship between the pressure difference and the light intensity at both ends of the damping channel is deduced. Finally, the simulation analysis is carried out by COMSOL Multiphysics. The simulation results show that the pressure difference at both ends of the channel increases with the increase of light intensity. The farther the fluid is from the central axis, the slower the speed is. This phenomenon is consistent with the mathematical model. When the light intensity is 20 mW / cm2, the theoretical curve intersects with the simulation curve, and the error is 0. With the increase of light intensity, the pressure difference at both ends of the damping channel gradually tends to be saturated. When the light intensity reaches 200 mW / cm2, the error between theory and simulation is 13.8 %. Therefore, when the light intensity changes in the range of 0-200 mW / cm2, the error between theory and simulation is between 0-13.8 %, and the difference is not large, which further verifies the rationality of the mathematical model.
 
关键词
Light controlled variable damping,Electrorheological fluid,PLZT
报告人
Zhicheng LIU
Nanjing University of Science And Technology

稿件作者
Zhicheng LIU Nanjing University of Science And Technology
Xinjie WANG Nanjing University of Science and Technology
Zhen LV Nanjing University of Science And Technology
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重要日期
  • 会议日期

    06月09日

    2023

    06月12日

    2023

  • 03月15日 2023

    摘要录用通知日期

  • 03月31日 2023

    摘要截稿日期

  • 06月12日 2023

    注册截止日期

  • 09月20日 2023

    初稿截稿日期

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Chongqing University
University of Science and Technology of China
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