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基于二氧化硅纳米颗粒的三元乙丙橡胶基磁流变弹性体的温度与力学和流变性能的关系

Temperature Dependent on Mechanical and Rheological Properties of EPDM-Based Magnetorheological Elastomers Using Silica Nanoparticles.

作者信息

Rashid Rusila Zamani Abdul, Yunus Nurul Azhani, Mazlan Saiful Amri, Johari Norhasnidawani, Aziz Siti Aishah Abdul, Nordin Nur Azmah, Khairi Muntaz Hana Ahmad, Johari Mohd Aidy Faizal

机构信息

Engineering Materials & Structures (eMast) iKhoza, Malaysia-Japan International Institute of Technology (MJIIT), Universiti Teknologi Malaysia, Kuala Lumpur 54100, Malaysia.

Mechanical Engineering Department, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Malaysia.

出版信息

Materials (Basel). 2022 Mar 31;15(7):2556. doi: 10.3390/ma15072556.

Abstract

Temperature is one of the most influential factors affecting the performance of elastomer matrix in magnetorheological elastomer (MRE). Previous studies have utilized silica as a reinforcing filler in polymer composite and as a coating material in MRE to improve the thermal stability of the base material. However, the usage of silica as an additive in the thermal stability of MRE has not been explored. Thus, in this study, the effect of silica as an additive on the temperature-dependent mechanical and rheological properties of ethylene propylene diene monomer (EPDM)-based MREs was investigated by using 30 wt.% carbonyl iron particles (CIPs) as the main filler, with different contents of silica nanoparticles (0 to 11 wt.%). The microstructure analysis was examined by using field-emission scanning electron microscopy (FESEM), while the thermal characterizations were studied by using a thermogravimetric analyzer and differential scanning calorimetry. The tensile properties were conducted by using Instron Universal Testing Machine in the absence of magnetic field at various temperatures. Meanwhile, the rheological properties were analyzed under oscillatory loadings in the influence of magnetic field, using a rotational rheometer at 25 to 65 °C. The results revealed that the temperature has diminished the interfacial interactions between filler and matrix, thus affecting the properties of MRE, where the tensile properties and MR effect decrease with increasing temperature. However, the presence of silica capable improved the thermal stability of EPDM-based MRE by enhancing the interactions between filler and matrix, thus reducing the interfacial defects when under the influence of temperature. Consequently, the incorporation of silica nanoparticles as an additive in EPDM-based MRE requires more exploration, since it has the potential to sustain the properties of MRE devices in a variety of temperature conditions. Thus, the study on the temperature-dependent mechanical and rheological properties of MRE is necessary, particularly regarding its practical applications.

摘要

温度是影响磁流变弹性体(MRE)中弹性体基体性能的最具影响力的因素之一。先前的研究已将二氧化硅用作聚合物复合材料中的增强填料以及MRE中的涂层材料,以提高基体材料的热稳定性。然而,尚未探索二氧化硅作为添加剂在MRE热稳定性方面的用途。因此,在本研究中,以30 wt.%的羰基铁颗粒(CIPs)作为主要填料,添加不同含量的二氧化硅纳米颗粒(0至11 wt.%),研究了二氧化硅作为添加剂对基于乙丙三元橡胶(EPDM)的MRE的温度依赖性力学和流变性能的影响。使用场发射扫描电子显微镜(FESEM)进行微观结构分析,同时使用热重分析仪和差示扫描量热法研究热特性。在不同温度下,在无磁场的情况下使用英斯特朗万能材料试验机进行拉伸性能测试。同时,在25至65°C下,使用旋转流变仪在磁场影响下的振荡载荷下分析流变性能。结果表明,温度降低了填料与基体之间界面相互作用,从而影响了MRE的性能,其中拉伸性能和磁流变效应随温度升高而降低。然而,二氧化硅的存在通过增强填料与基体之间的相互作用,改善了基于EPDM的MRE的热稳定性,从而减少了温度影响下的界面缺陷。因此,将二氧化硅纳米颗粒作为添加剂引入基于EPDM的MRE中还有待进一步探索,因为它有可能在各种温度条件下维持MRE器件的性能。因此,研究MRE的温度依赖性力学和流变性能是必要的,特别是对于其实际应用而言。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68c0/9000172/fe3ad06ab801/materials-15-02556-g001a.jpg

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