塑料科技2024,Vol.52Issue(2) :25-30.DOI:10.15925/j.cnki.issn1005-3360.2024.02.005

压电悬臂碳纤维层合板的振动控制研究

Research on Vibration Control of Piezoelectric Cantilever Carbon Fiber Laminated Plate

杨铮鑫 王凯 张达 党鹏飞 荆兆东
塑料科技2024,Vol.52Issue(2) :25-30.DOI:10.15925/j.cnki.issn1005-3360.2024.02.005

压电悬臂碳纤维层合板的振动控制研究

Research on Vibration Control of Piezoelectric Cantilever Carbon Fiber Laminated Plate

杨铮鑫 1王凯 1张达 1党鹏飞 1荆兆东2
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作者信息

  • 1. 沈阳化工大学机械与动力工程学院,辽宁 沈阳 110142
  • 2. 抚顺市技术创新研究院,辽宁 抚顺 113008
  • 折叠

摘要

为实现碳纤维复杂结构的振动控制,实验以压电悬臂碳纤维层合板为研究对象.基于Kirchhoff薄板理论和Hamilton原理,运用压电本构方程、假设模态法、广义坐标法及状态空间变量,构造压电悬臂碳纤维层合板的振动状态空间方程.对悬臂层合板进行应力、应变分析,确定压电陶瓷纤维片的铺设位置.采用PID控制方法、模糊控制方法以及模糊PID控制方法在MATLAB中设计控制器,对悬臂层合板的振动控制进行数值仿真.结果表明:三种控制器均可有效抑制层合板的振动,模糊PID控制器的抑振效果最好,该结果可为碳纤维复杂结构的振动控制提供参考.

Abstract

In order to realize the vibration control of the complex structure of carbon fiber,piezoelectric cantilever carbon fiber laminates were used as the research object in this experiment.Based on Kirchhoff's thin plate theory and Hamilton's principle,the vibration state space equation of piezoelectric cantilever carbon fiber laminates was constructed using piezoelectric constitutive equations,hypothetical mode method,generalized coordinate method and state-space variables.Stress and strain analysis were carried out on the cantilever laminated plate to determine the laying position of the piezoelectric ceramic fiber sheet.The PID control method,fuzzy control method and fuzzy PID control method were used to design the controller in MATLAB,and the vibration control of the cantilever laminated plate was numerically simulated.The results show that the three controllers can effectively suppress the vibration of the laminated plate,and the fuzzy PID controller has the best vibration suppression effect,which can provide a reference for the vibration control of carbon fiber complex structures.

关键词

悬臂层合板/压电陶瓷纤维片/PID控制/模糊控制

Key words

Cantilever laminated plate/Piezoelectric ceramic fiber sheet/PID control/Fuzzy control

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出版年

2024
塑料科技
大连塑料研究所有限公司 深圳市塑胶行业协会

塑料科技

CSTPCD北大核心
影响因子:0.553
ISSN:1005-3360
参考文献量18
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