Department of Mechanical Engineering, Universiti Teknologi PETRONAS, 32610 Bandar Seri Iskandar, Malaysia.
Advanced Vehicle System Laboratory, Malaysia⁻Japan International Institute of Technology, Universiti Teknologi Malaysia, Jalan Sultan Yahya Petra, 54100 Kuala Lumpur, Malaysia.
Int J Mol Sci. 2019 Feb 10;20(3):746. doi: 10.3390/ijms20030746.
Determination of the thermal characteristics and temperature-dependent rheological properties of the magnetorheological elastomers (MREs) is of paramount importance particularly with regards to MRE applications. Hitherto, a paucity of temperature dependent analysis has been conducted by MRE researchers. In this study, an investigation on the thermal and rheological properties of epoxidized natural rubber (ENR)-based MREs was performed. Various percentages of carbonyl iron particles (CIPs) were blended with the ENR compound using a two roll-mill for the preparation of the ENR-based MRE samples. The morphological, elemental, and thermal analyses were performed before the rheological test. Several characterizations, as well as the effects of the strain amplitude, temperature, and magnetic field on the rheological properties of ENR-based MRE samples, were evaluated. The micrographs and elemental results were well-correlated regarding the CIP and Fe contents, and a uniform distribution of CIPs was achieved. The results of the thermal test indicated that the incorporation of CIPs enhanced the thermal stability of the ENR-based MREs. Based on the rheological analysis, the storage modulus and loss factor were dependent on the CIP content and strain amplitude. The effect of temperature on the rheological properties revealed that the stiffness of the ENR-based MREs was considered stable, and they were appropriate to be employed in the MRE devices exposed to high temperatures above 45 °C.
测定磁流变弹性体(MRE)的热特性和温度相关流变性能至关重要,尤其是在 MRE 应用方面。迄今为止,MRE 研究人员对温度相关分析的研究还很少。在这项研究中,我们对基于环氧化天然橡胶(ENR)的 MRE 的热和流变性能进行了研究。使用双辊轧机将不同百分比的羰基铁粉(CIP)与 ENR 化合物混合,制备基于 ENR 的 MRE 样品。在进行流变测试之前,进行了形态、元素和热分析。评估了几种特性以及应变幅度、温度和磁场对基于 ENR 的 MRE 样品流变性能的影响。微观照片和元素结果与 CIP 和 Fe 含量很好地相关,并且实现了 CIP 的均匀分布。热测试的结果表明,CIP 的掺入提高了基于 ENR 的 MRE 的热稳定性。基于流变分析,储能模量和损耗因子取决于 CIP 含量和应变幅度。温度对流变性能的影响表明,基于 ENR 的 MRE 的刚度被认为是稳定的,它们适合在温度高于 45°C 的 MRE 器件中使用。