磁流变弹性体
参数统计
插值(计算机图形学)
算法
磁流变阻尼器
多项式的
阻尼器
参数化模型
压缩(物理)
计算机科学
控制理论(社会学)
磁流变液
材料科学
数学
结构工程
工程类
数学分析
人工智能
运动(物理)
统计
控制(管理)
复合材料
作者
Amrina Rasyada Zubir,Khisbullah Hudha,Zulkiffli Abd Kadir,Noor Hafizah Amer
出处
期刊:Strojniški vestnik
[University of Ljubljana]
日期:2023-11-21
卷期号:69 (11-12): 471-482
标识
DOI:10.5545/sv-jme.2023.604
摘要
This paper presents an approach to model the impact behaviour of a dual-acting magnetorheological elastomer (MRE) damper using 4th-order polynomial functions optimized with a gravitational search algorithm. MRE is a type of smart material that can change its mechanical properties in response to an injected current, making it well-suited for a wide range of applications such as vibration absorption, noise cancellation, and shock mitigation. The proposed model uses a combination of polynomial functions designed to predict the nonlinearity of MRE during compression and extension stages. The model is tuned and validated using experimental data from impact tests conducted on the MRE damper under various currents. The results indicate that the developed model can accurately track the impact behaviour of MRE with minimum error. Additionally, an interpolation model is proposed to estimate the appropriate forces for median currents. The interpolation model predicts the force between the upper and lower currents, demonstrating the model's ability to predict MRE behaviour accurately. The main contribution of this study is proposing a non-parametric model of MRE that is able to identify the hysteretic behaviour of the MRE based on specific current applied. In addition, an interpolation model is introduced in this study to cover not only the input current starting from 0 A to 2 A but also the intermediate current such as 0.3 A, 0.7 A, 1.3 A and 1.7 A.
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