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热老化磁流变弹性体的损耗因子行为

Loss Factor Behavior of Thermally Aged Magnetorheological Elastomers.

作者信息

Aziz Siti Aishah Abdul, Mazlan Saiful Amri, Ubaidillah Ubaidillah, Mohamad Norzilawati, Sedlacik Michal, Nordin Nur Azmah, Nazmi Nurhazimah

机构信息

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

Department of Mechanical Engineering, Faculty of Engineering, Universitas Sebelas Maret, Surakarta 57126, Indonesia.

出版信息

Materials (Basel). 2021 Aug 27;14(17):4874. doi: 10.3390/ma14174874.

Abstract

Polymer composites have been widely used as damping materials in various applications due to the ability of reducing the vibrations. However, the environmental and surrounding thermal exposure towards polymer composites have affected their mechanical properties and lifecycle. Therefore, this paper presents the effect of material-temperature dependence on the loss factor and phase shift angle characteristics. Two types of unageing and aging silicone-rubber-based magnetorheological elastomer (SR-MRE) with different concentrations of carbonyl iron particles (CIPs), 30 and 60 wt%, are utilized in this study. The morphological, magnetic, and rheological properties related to the loss factor and phase shift angle are characterized using a low-vacuum scanning electron microscopy, and vibrating sample magnetometer and rheometer, respectively. The morphological analysis of SR-MRE consisting of 30 wt% CIPs revealed a smoother surface area when compared to 60 wt% CIPs after thermal aging due to the improvement of CIPs dispersion in the presence of heat. Nevertheless, the rheological analysis demonstrated inimitable rheological properties due to different in-rubber structures, shear deformation condition, as well as the influence of magnetic field. No significant changes of loss factor occurred at a low CIPs concentration, whilst the loss factor increased at a higher CIPs concentration. On that basis, it has been determined that the proposed changes of the polymer chain network due to the long-term temperature exposure of different concentrations of CIPs might explain the unique rheological properties of the unaged and aged SR-MRE.

摘要

聚合物复合材料由于具有减振能力,已在各种应用中广泛用作阻尼材料。然而,聚合物复合材料所面临的环境和周围热暴露影响了它们的机械性能和生命周期。因此,本文介绍了材料 - 温度依赖性对损耗因子和相移角特性的影响。本研究使用了两种不同羰基铁颗粒(CIPs)浓度(30 wt% 和 60 wt%)的未老化和老化的硅橡胶基磁流变弹性体(SR-MRE)。分别使用低真空扫描电子显微镜、振动样品磁强计和流变仪对与损耗因子和相移角相关的形态、磁性和流变特性进行表征。对由 30 wt% CIPs 组成的 SR-MRE 进行的形态分析表明,由于热老化过程中 CIPs 分散性的改善,与含 60 wt% CIPs 的 SR-MRE 相比,其表面积更光滑。然而,流变分析表明,由于橡胶内部结构、剪切变形条件以及磁场的影响,其流变特性独特。在低 CIPs 浓度下,损耗因子没有显著变化,而在较高 CIPs 浓度下,损耗因子增加。在此基础上,已确定由于不同浓度 CIPs 的长期温度暴露导致的聚合物链网络的变化可能解释了未老化和老化的 SR-MRE 的独特流变特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d7f/8432649/89c9cb2f3b00/materials-14-04874-g001a.jpg

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