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基于填料和增塑剂添加剂组合的磁流变弹性体对磁致模量的增强作用。

Enhancement of Magneto-Induced Modulus by the Combination of Filler and Plasticizer Additives-Based Magnetorheological Elastomer.

作者信息

Khairi Muntaz Hana Ahmad, Noor Ervina Efzan Mhd, Ubaidillah Ubaidillah, Aziz Siti Aishah Abdul, Mazlan Saiful Amri, Tarmizi Siti Maisarah Ahmad, Nordin Nur Azmah

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.

Faculty of Engineering and Technology, Multimedia University, Jalan Ayer Keroh Lama, Bukit Beruang, Melaka 75450, Malaysia.

出版信息

Materials (Basel). 2022 Sep 15;15(18):6396. doi: 10.3390/ma15186396.

Abstract

Filler additive is used to provide superior bonding in rubber matrix to enhance the storage modulus of magnetorheological elastomer (MRE). However, the magneto-induced modulus is reduced as the initial storage modulus increases. Therefore, this paper aims to increase the magneto-induced modulus and maintain the initial storage modulus by combining filler and plasticizer additives. Both types of additives have different functions, where cobalt ferrite (CoFeO) is capable of enhancing the maximum storage modulus and silicone oil (SO) reduces the initial storage modulus. Thus, four MRE samples have been fabricated using (a) no additive, (b) CoFeO, (c) SO, and (d) a combination of CoFeO and SO. The sample's hardness and magnetic properties were investigated via Durometer Shore A and Vibrating Sample Magnetometer (VSM), respectively. Furthermore, the rheological properties of MRE samples in terms of storage modulus were investigated upon the frequency and magnetic field sweep using a rheometer. The results demonstrated that the storage modulus of the MRE samples has increased with increasing the oscillation frequency from 0.1 to 50 Hz. Interestingly, the combination of additives has produced the largest value of magneto-induced modulus of 0.90 MPa as compared to other samples. Furthermore, their initial storage modulus was in between samples with SO (lowest) and without additive (highest). Therefore, fundamental knowledge in adding the combination of additives can offer solutions for a wide range of stiffness in MR device applications such as vibration and noise control devices, sensing devices, and actuators.

摘要

填充添加剂用于在橡胶基体中提供优异的粘结性,以提高磁流变弹性体(MRE)的储能模量。然而,随着初始储能模量的增加,磁致模量会降低。因此,本文旨在通过将填充剂和增塑剂添加剂结合使用来提高磁致模量并保持初始储能模量。这两种添加剂具有不同的功能,其中钴铁氧体(CoFeO)能够提高最大储能模量,而硅油(SO)则会降低初始储能模量。因此,制备了四个MRE样品,分别为:(a)无添加剂,(b)CoFeO,(c)SO,以及(d)CoFeO和SO的组合。分别通过邵氏A硬度计和振动样品磁强计(VSM)研究了样品的硬度和磁性。此外,使用流变仪在频率和磁场扫描条件下研究了MRE样品在储能模量方面的流变性能。结果表明,MRE样品的储能模量随着振荡频率从0.1Hz增加到50Hz而增加。有趣的是,与其他样品相比,添加剂组合产生的磁致模量最大值为0.90MPa。此外,它们的初始储能模量介于含SO的样品(最低)和无添加剂的样品(最高)之间。因此,添加添加剂组合的基础知识可为诸如振动和噪声控制装置、传感装置及致动器等磁流变装置应用中的广泛刚度问题提供解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ab9/9501520/852d3c5a419e/materials-15-06396-g001.jpg

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