首页> 外文期刊>Composites Science and Technology >A magnetic field- and frequency-dependent dynamic shear modulus model for isotropic silicone rubber-based magnetorheological elastomers
【24h】

A magnetic field- and frequency-dependent dynamic shear modulus model for isotropic silicone rubber-based magnetorheological elastomers

机译:各向同性硅橡胶基磁流变弹性体的磁场和频率依赖性动态剪切模量模型

获取原文
获取原文并翻译 | 示例
       

摘要

Both experimental and modeling studies on the dynamic shear storage and loss moduli of isotropic magnetorheological elastomers (MREs) were carried out in this work. Isotropic MREs were prepared based on silicone rubber filled with different contents of micro-sized carbonyl iron particles (CIPs). The magnetization characteristics of the prepared MREs and their dynamic shear moduli at a linear viscoelastic (LVE) strain and under different magnetic flux densities were measured. Based on the magnetization model of MREs, the magnetic dipole theory, and the quantitative analysis on the frequency-dependence of magneto-induced dynamic shear moduli, a new magneto-induced shear modulus model that was dependent on the CIP content and frequency was proposed. The model parameters can be simply determined. Combining with the generalized Maxwell viscoelastic model, that was used to describe the zero-field shear moduli of MREs, a new macroscopic magneto-viscoelastic constitutive model was developed to describe the magnetic field- and frequency-dependent shear modulus of the isotropic MREs with different CIP contents. The developed magneto-viscoelastic constitutive model was verified by comparing the model calculations with experimental data. The results showed that in the LVE strain state, the proposed magneto-viscoelastic model could accurately predict the dynamic shear storage and loss moduli of the isotropic MREs with different CIP contents in broad ranges of frequency and magnetic flux density using the unified model parameters.
机译:实验和各向同性的磁流变弹性体(的MRE)的动态剪切储能和损耗模量建模研究在此项工作中进行。基于填充的微尺寸羰基铁粒子(CIPS)的不同含量的硅橡胶制备各向同性的MRE。测定所制备的MRE并以线性粘弹性(LVE)株和下不同的磁通密度的动态剪切模量的磁化特性。基于的MRE的磁化模式,磁偶极子的理论,并于磁感应的动态剪切模量的频率依赖性的定量分析,一个新的磁引起的剪切模量模型,这是依赖于CIP内容和频率中提出的。模型参数可以被简单地确定。与广义Maxwell粘弹性模型,这是用于描述的MRE的零场剪切模量相结合,一个新的宏观磁 - 黏弹性模型的开发是为了描述与不同各向同性的MRE的磁现场和频率相关的剪切模量CIP内容。在发达的磁黏弹性模型是通过与实验数据对比模型计算验证。结果表明,在LVE应变状态,所提出的磁 - 粘弹性模型可以精确地预测动态使用所述统一模型参数在频率和磁通量密度的宽范围内不同CIP内容各向同性的MRE的剪切储能和损耗模量。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号