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Properties and influence of magnetic fields on iron particles of anisotropic magnetorheological elastomers

机译:磁场对各向异性磁流变弹性体铁颗粒的性质和影响

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The magnetorheological elastomer (MRE) is an intelligent material whose mechanical properties can be rapidly adjusted under a magnetic flux density. This material's mechanical properties change due to the interaction between the iron particles inside the material. Understanding the influence of magnetic flux on iron particles in MRE materials is essential. Studies have proven that the distance and angle of inclination between iron particles significantly affect the magnetic flux density and the interaction force between the particles. Therefore, the distribution of iron particles substantially affects the material's properties. However, understanding magnetic flux through magnetic particles is necessary to improve the material's mechanical properties and to design magnetic field systems in systems using the materials. This study maps three problems affecting magnetic flux density to the properties of MRE. First, the mechanical characteristics of the MRE were presented in the frequency, amplitude, magnetic flux density, and magnetic flux inclination domains relative to the particle chain. Next, the influence of the magnetic flux on the particle chain was investigated based on the dipole interaction model and the magnetic force on iron particles. The finite element method also explored the magnetic flux distribution in the MRE material. Finally, the response of the single-degree-of-freedom damping system is tested experimentally. The results show that the influence of the magnetic flux on the iron particles in the MRE material is significant. The research results aim to improve the mechanical properties of MRE materials.(c) 2023 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license(http://creativecommons.org/licenses/by/4.0/).
机译:磁流变弹性体(MRE)是一种智能材料,其机械性能可以在磁通密度下快速调节。由于材料内部铁颗粒之间的相互作用,这种材料的机械性能会发生变化。了解磁通量对MRE材料中铁颗粒的影响至关重要。研究证明,铁颗粒之间的距离和倾角对磁通密度和颗粒间的相互作用力有显著影响。因此,铁颗粒的分布会极大地影响材料的性能。然而,了解通过磁性颗粒的磁通量对于提高材料的机械性能和在使用材料的系统中设计磁场系统是必要的。本研究将影响磁通密度的三个问题映射到MRE的性质。首先,从频率、振幅、磁通密度和相对于粒子链的磁通量倾角域中呈现了MRE的力学特性;接下来,基于偶极子相互作用模型和磁力对铁颗粒的影响,研究了磁通量对粒子链的影响。有限元方法还研究了MRE材料中的磁通量分布。最后,通过实验测试了单自由度阻尼系统的响应。结果表明:磁通量对MRE材料中铁颗粒的影响显著;研究成果旨在提高MRE材料的力学性能。(c) 2023 年作者。除非另有说明,否则所有文章内容均根据知识共享署名 (CC BY) 许可 (http://creativecommons.org/licenses/by/4.0/) 获得许可。

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