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An Exotic Phase Change in Dynamic Electrorheological Fluids

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【作者】 唐强果黄俊樱李丛郑杰孟现文黄吉平周鲁卫

【Author】 Tang Qiang-Guo;HUANG Jun-Ying;LI Cong;ZHENG Jie;MENG Xian-Wen;HUANG Ji-Ping;ZHOU Lu-Wei;Department of Physics and State Key Laboratory of Surface Physics, Fudan University;College of Information Technology, Shanghai Ocean University;

【机构】 Department of Physics and State Key Laboratory of Surface Physics Fudan UniversityCollege of Information Technology Shanghai Ocean University

【摘要】 It is well known that constant or time-varying electric fields can induce phase changes in electrorheological(ER) fluids, from a liquid to semi-solid state, provided the field strength is larger than some critical value. We describe here an experimental and theoretical study considering yet a different class of phase changes, specifically those for an ER fluid in the presence of both shear flow and a time-varying electric field. We note that as the frequency of the field is decreased, the ER fluid will go from a liquid to an intermediate transition state, and eventually to a shear banding state. Our theoretical analysis further indicates that this phase change originates from competing effects of viscous and electrical forces. Ultimately, we conclude that it is possible to achieve various states and corresponding(desired)macroscopic properties of dynamic colloidal suspensions by adjusting the frequency of the externally applied electric field.

【Abstract】 It is well known that constant or time-varying electric fields can induce phase changes in electrorheological(ER) fluids, from a liquid to semi-solid state, provided the field strength is larger than some critical value. We describe here an experimental and theoretical study considering yet a different class of phase changes, specifically those for an ER fluid in the presence of both shear flow and a time-varying electric field. We note that as the frequency of the field is decreased, the ER fluid will go from a liquid to an intermediate transition state, and eventually to a shear banding state. Our theoretical analysis further indicates that this phase change originates from competing effects of viscous and electrical forces. Ultimately, we conclude that it is possible to achieve various states and corresponding(desired)macroscopic properties of dynamic colloidal suspensions by adjusting the frequency of the externally applied electric field.

【基金】 Supported by the National Natural Science Foundation of China under Grant Nos.10334020,10974030,10574027,11222544;the Fok Ying Tung Education Foundation under Grant No.131008;the Program for New Century Excellent Talents in University(NCET-120121);the CNKBRSF under Grant No.2011CB922004
  • 【文献出处】 Communications in Theoretical Physics ,理论物理通讯(英文版) , 编辑部邮箱 ,2015年01期
  • 【分类号】O441.1
  • 【下载频次】42
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