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具有喷泉状颗粒链排列的磁流变弹性体的场依赖流变特性

Field-Dependent Rheological Properties of Magnetorheological Elastomer with Fountain-Like Particle Chain Alignment.

作者信息

Fakhree Muhammad Akif Muhammad, Nordin Nur Azmah, Nazmi Nurhazimah, Mazlan Saiful Amri, Aziz Siti Aishah Abdul, Ubaidillah Ubaidillah, Ahmad Fauzan, Choi Seung-Bok

机构信息

Engineering Materials and Structures (eMast) iKohza, Malaysian-Japan International Institute of Technology, Universiti Teknologi Malaysia, Jalan Sultan Yahya Petra, Kuala Lumpur 54100, Malaysia.

Institute for Vehicle Systems and Engineering (IVeSE), Sultan Ibrahim Chancellery Building, Universiti Teknologi Malaysia, Jalan Iman, Skudai 81310, Malaysia.

出版信息

Micromachines (Basel). 2022 Mar 22;13(4):492. doi: 10.3390/mi13040492.

Abstract

Magnetorheological elastomer (MRE) consists of magnetic particles known as carbonyl iron (CIPs), which have been locked in a silicone-based matrix, in various alignments. However, current MRE exhibits inadequate rheological properties due to several issues such as particle alignments. Therefore, in this study, a new approach of the particle alignment of CIPs in MRE, namely fountain-like structure, is introduced. It is expected that this kind of MRE exhibits enhancement rheological responses, in off- and on-state conditions. This work includes the development of a new mold that can produce various directions of magnetic flux lines in order to have fountain-like structures of CIPs in MRE, during the curing process. Three types of particle alignments in MRE, namely isotropic, fountain-like and inverted fountain-like, are fabricated. The rheological properties of MRE in terms of storage modulus and MR effect are measured in an oscillatory shear mode using a rheometer. The results have revealed that fountain-like MRE exhibits higher storage modulus than the isotropic MRE, approximately 0.6 MPa of increment in the strain sweep test, in an on-state condition. Furthermore, it has been demonstrated from strain, frequency and the current sweep test that the rheological properties of fountain-like MRE related to storage modulus and magnetorheological (MR) effect are higher compared to the inverted fountain-like MRE.

摘要

磁流变弹性体(MRE)由被称为羰基铁颗粒(CIPs)的磁性颗粒组成,这些颗粒以各种排列方式被锁定在硅基基质中。然而,由于颗粒排列等几个问题,目前的MRE表现出不足的流变性能。因此,在本研究中,引入了一种新的MRE中CIPs颗粒排列方法,即喷泉状结构。预计这种MRE在开态和关态条件下表现出增强的流变响应。这项工作包括开发一种新模具,该模具可以在固化过程中产生各种方向的磁通线,以便在MRE中形成CIPs的喷泉状结构。制备了MRE中的三种颗粒排列类型,即各向同性、喷泉状和倒喷泉状。使用流变仪在振荡剪切模式下测量MRE在储能模量和磁流变效应方面的流变性能。结果表明,在开态条件下,喷泉状MRE在应变扫描试验中的储能模量比各向同性MRE更高,增量约为0.6MPa。此外,通过应变、频率和电流扫描试验表明,与倒喷泉状MRE相比,喷泉状MRE在储能模量和磁流变(MR)效应方面的流变性能更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e88/9032288/22db5694e641/micromachines-13-00492-g001.jpg

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