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羰基铁颗粒表面包覆对磁流变液分散稳定性的影响

Effect of the surface coating of carbonyl iron particles on the dispersion stability of magnetorheological fluid.

作者信息

Chen Fang, Zhang Jie, Li Zhenggui, Yan Shengnan, Li Wangxu, Yan Zhaoqiang, Liu Xiaobing

机构信息

Key Laboratory of Fluid Machinery and Engineering (Xihua University), Ministry of Education, Chengdu, 610039, People's Republic of China.

School of Energy and Power Engineering, Lanzhou University of Technology, Lanzhou, 730050, People's Republic of China.

出版信息

Sci Rep. 2024 May 18;14(1):11358. doi: 10.1038/s41598-024-61934-2.

Abstract

The dispersion stability of carbonyl iron particle (CIP)-based magnetorheological fluid (MRF) is improved by CIP, which particle is etched with hydrochloric acid (HCl) to form porous structure with many hydroxyl groups and subsequently coated with silane coupling agents that have varying chain lengths. The microstructures, coating effect and magnetism of the CIPs were examined using the Scanning Electron Microscopy, Automatic Surface and Porosity Analyzer (BET), Fourier-Transform Infrared Spectroscopy, Thermogravimetric Analysis and Vibrating Sample Magnetometer. Furthermore, the rheological properties and dispersion stability of the MRFs were assessed using a Rotating Rheometer and Turbiscan-lab. The results revealed that the nanoporous structure appeared on the CIPs and the specific surface area increased remarkably after being etched by hydrochloric acid. Additionally, as the chain length of the silane coupling agent increases, the coated mass on the particles increases, the the density and the saturation magnetization of particles decreased, and the coated particles with different shell thicknesses were obtained; without a magnetic field, the viscosity of MRF prepared by coated particles increase slightly, due to the enhancement of special three-dimensional network structure; under a magnetic field, the viscosity of the MRF decreased distinctly; the sedimentation rate of MRF decreased from 58 to 3.5% after 100 days of sedimentation, and the migration distances of the MRFs were 22.4, 3.7, 2.4, and 0 mm, with particle sedimentation rates of 0.149, 0.019, 0.017, and 0 mm/h, respectively. The MRF with high dispersion stability was obtained, and the etching of CIP by HCl and the proper chain length of the coating of silane coupling agent were proved effective manners to improve the dispersion stability of MRF.

摘要

羰基铁颗粒(CIP)基磁流变液(MRF)的分散稳定性通过CIP得到改善,该颗粒用盐酸(HCl)蚀刻以形成具有许多羟基的多孔结构,随后用具有不同链长的硅烷偶联剂进行包覆。使用扫描电子显微镜、自动表面和孔隙率分析仪(BET)、傅里叶变换红外光谱、热重分析和振动样品磁强计对CIP的微观结构、包覆效果和磁性进行了研究。此外,使用旋转流变仪和Turbiscan-lab评估了MRF的流变性能和分散稳定性。结果表明,CIP经盐酸蚀刻后出现纳米多孔结构,比表面积显著增加。此外,随着硅烷偶联剂链长的增加,颗粒上的包覆质量增加,颗粒的密度和饱和磁化强度降低,获得了具有不同壳层厚度的包覆颗粒;在无磁场的情况下,由包覆颗粒制备的MRF的粘度略有增加,这是由于特殊三维网络结构的增强;在磁场作用下,MRF的粘度明显降低;MRF沉降100天后沉降率从58%降至3.5%,MRF的迁移距离分别为22.4、3.7、2.4和0mm,颗粒沉降速率分别为0.149、0.019、0.017和0mm/h。获得了具有高分散稳定性的MRF,证明HCl对CIP的蚀刻以及硅烷偶联剂包覆的适当链长是提高MRF分散稳定性的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e66/11102448/b726890ea163/41598_2024_61934_Fig1_HTML.jpg

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