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Study of Sedimentation Stability of Magnetorheological Fluid

Received: 5 December 2014    Accepted: 17 December 2014    Published: 22 January 2015
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Abstract

Magnetorheological fluid settlement issue has been one of the major issues that affect the performance of the magnetorheological fluid, it was focused by major enterprise and research institutions as new intelligent materials. This paper describes the settlement issue and analyses the reasons that causing settling of MRF at zero field strength. It comments the ways to improve the stability of magnetorheological fluid sedimentation problems, and makes a comprehensive introduction of the improvement measures. for instance: adding a surfactant and stabilizer, the organic polymer is wrapped in the surface of the magnetic particles, the soft magnetic particles are coated in non-metallic surface, the magnetic particle surface coated with a layer of metal powder, using improved version of the preparation process, adjusting ball feed ratio and milling time appropriately, adding in nanomaterials, etc.

Published in Advances in Materials (Volume 4, Issue 1)
DOI 10.11648/j.am.20150401.11
Page(s) 1-5
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Magnetorheological Fluid, Settlement, Stability

References
[1] Zhang Jinqiu, Zhang Jian, Kong Yannan, et al. “Summarization of Magnetorheological Fluid and Its Application,” Journal of Academy of Armored Force Engineering, vol. 24, pp. 1-6. Jun. 2010.
[2] Zheng jun. “Study on Magnetorheological Transmission theory and Experiments”, D.E. thesis, Chongqing University, Chongqing, ON, China, 2008.
[3] Zhang Hongyan, Zhang Zhiyuan, Wang Yuan, et al. Hydrodynamics, CA: Beijing: 2014, pp.100-135.
[4] Liu Jiafu. “A Study of Processing and Evaluation Method of Magnetorheological Fluid”, M.E. thesis, Harbin Institute of Technology, Harbin, ON, China, 2008.
[5] Xiong Chenxi. “Study of Improvement of sedimentation Stability of Magnetorheological Fluid”, M.E. thesis, Chongqing University, Chongqing, ON China, 2011.
[6] Tang Xin, Ling Hong, Hu Keao. “Current Status and Future Trends of Research in Subsidence Stability of Magnetorheological Fluid,” Journal of Magnetic Materials and Devices, vol. 35, pp. 5-8. Jun. 2004.
[7] Chen Weiqing, Du Chengbin, Wan Faxue. “Effect of Surfactant and Thixotropic Agent on the Sedimentation Stability of Magnetorheological Fluid,” Journal of Functional Materials and Devices, vol. 141, pp. 55-58. Apr. 2010.
[8] Liu Qi. “Study On Stability Behaviors Of Magnetorheological Fluid”, M.E. thesis, Chongqing University, Chongqing, ON, China, 2007.
[9] Zhang Ping, Liu Qi, Tang Long. China Patent 1,632,891A. 2005
[10] Foister, Robert T.U.S Patent 2,003,011,163,4 A1,2003
[11] FIyengar, Vardarajan R.U.S Patent 2,030,209,687 A1,2003
[12] Jin Baoyan, Bao Xiaoqian, Zhang Maocai, “Effect of Surface Modification on the Stability and Magnetorheology of Magnetorheological Fluids,” Journal of Functional Materials and Devices, vol. 4, pp. 51-54. Aug. 2007.
[13] Felt D W, Hagenbuchle M, Liu J, “Rheology of a Magnetorheological Fluid,” In: Bullogh WA. Proc. of the 5th Int Conf. on ER Fluids, MR Suspensions and Associated Technology, Singapore, 1996, pp. 738-746.
[14] Yang Shiqing, Zhang Wangli, Gong Jie, “Rheological Properties of Magnetorheological Fluids,” Journal of Functional Materials, vol. 29, pp. 550-552, Jul, 1998.
[15] Zhu Hong, “Fabrication of Practical Magnetorheological Fluids and their Properties”, M.E. thesis, University of Science and Technology of China, Hefei, ON, China, 2010.
[16] Carlson J D, Catanzarite D M, Clair K A St, “Commercial MR fluid devices,” In: Bullogh WA. Proc. of the 5th Int. Conf. on ER Fluids, MR Suspensions and Associated Technology, Singapore, 1996, pp. 20-28.
[17] Kong Yanan, Zhang Jinqiu, Zhang Jian, “Investigation of an improved Manufacturing Process of Magnetorheological Fluid,” New Technology & New Process, vol. 7, pp. 87-89, Jan. 2010.
[18] Yao Jinguang, Yan Hua, Wang Xuemei, “Influence of Milling Time on the Properties of Magnetorheological Fluid,” Journal of Magnetic Materials and Devices, vol. 141, pp. 42-45, Nov. 2009.
[19] Yao Jinguang, Yan Hua, Hu Chenggang, “Effect of Charge Ratio on Magnetorheological Fluids Performance During Its Preparation,” Journal of Logistical Engineering University, vol. 25, pp. 42-45, Jul. 2009.
[20] Lavrov NC, Colloidal chemistry experiment, CA: Beijing, 1992, pp. 200-223.
[21] Chen Weijun, Ma Ping, “The Study of the Anti-precipitation of the Magnetorheological Fluid,” Machine Tool & Hydraulics, vol. 35, pp. 98-100, Oct, 2007.
[22] Hou Peng, “Study on the Evaluation of the Stability of Magnetorheological Fluids”, M.E. thesis, Wuhan University of Technology, Wuhan, ON, China, 2008.
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    Zhou Feng, Luo Yiping, Ren Hongjuan. (2015). Study of Sedimentation Stability of Magnetorheological Fluid. Advances in Materials, 4(1), 1-5. https://doi.org/10.11648/j.am.20150401.11

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    ACS Style

    Zhou Feng; Luo Yiping; Ren Hongjuan. Study of Sedimentation Stability of Magnetorheological Fluid. Adv. Mater. 2015, 4(1), 1-5. doi: 10.11648/j.am.20150401.11

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    AMA Style

    Zhou Feng, Luo Yiping, Ren Hongjuan. Study of Sedimentation Stability of Magnetorheological Fluid. Adv Mater. 2015;4(1):1-5. doi: 10.11648/j.am.20150401.11

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  • @article{10.11648/j.am.20150401.11,
      author = {Zhou Feng and Luo Yiping and Ren Hongjuan},
      title = {Study of Sedimentation Stability of Magnetorheological Fluid},
      journal = {Advances in Materials},
      volume = {4},
      number = {1},
      pages = {1-5},
      doi = {10.11648/j.am.20150401.11},
      url = {https://doi.org/10.11648/j.am.20150401.11},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.am.20150401.11},
      abstract = {Magnetorheological fluid settlement issue has been one of the major issues that affect the performance of the magnetorheological fluid, it was focused by major enterprise and research institutions as new intelligent materials. This paper describes the settlement issue and analyses the reasons that causing settling of MRF at zero field strength. It comments the ways to improve the stability of magnetorheological fluid sedimentation problems, and makes a comprehensive introduction of the improvement measures. for instance: adding a surfactant and stabilizer, the organic polymer is wrapped in the surface of the magnetic particles, the soft magnetic particles are coated in non-metallic surface, the magnetic particle surface coated with a layer of metal powder, using improved version of the preparation process, adjusting ball feed ratio and milling time appropriately, adding in nanomaterials, etc.},
     year = {2015}
    }
    

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    AB  - Magnetorheological fluid settlement issue has been one of the major issues that affect the performance of the magnetorheological fluid, it was focused by major enterprise and research institutions as new intelligent materials. This paper describes the settlement issue and analyses the reasons that causing settling of MRF at zero field strength. It comments the ways to improve the stability of magnetorheological fluid sedimentation problems, and makes a comprehensive introduction of the improvement measures. for instance: adding a surfactant and stabilizer, the organic polymer is wrapped in the surface of the magnetic particles, the soft magnetic particles are coated in non-metallic surface, the magnetic particle surface coated with a layer of metal powder, using improved version of the preparation process, adjusting ball feed ratio and milling time appropriately, adding in nanomaterials, etc.
    VL  - 4
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Author Information
  • Schoolof Automotive Engineering, Shanghai University of Engineering and Science, Shanghai, 201620, P. R. China

  • Schoolof Automotive Engineering, Shanghai University of Engineering and Science, Shanghai, 201620, P. R. China

  • Schoolof Automotive Engineering, Shanghai University of Engineering and Science, Shanghai, 201620, P. R. China

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