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The influence factors of critical percolation for electrorheological suspensions (ERS) have been investigated. The work described here involves experimental research into the percolation structure under different temperatures and zero eleetric field, of three kinds of ERS: organic, inorganic and SrTi03/PANI composite. This research was based on the experiments in material microstructure by electric-rheometer apparatuses. The prediction values of critical percolation of the three kinds of ERS have been obtained. The effect temperatures on critical percolation values at different electric fields have been investigated and the variable trend of ERS near and over the critical point of percolation have been discussed. The results show that the values of critieal percolation of ERS depend mainly on the characteristics of particles and operating temperatures.
Rocznik
Tom
Strony
299--308
Opis fizyczny
Bibliogr. 19 poz., rys., tab., wykr.
Twórcy
autor
autor
- College of Mechanical Engineering, Fuzhou University Fujian Province, CHINA, smch2002@vip.sina.com
Bibliografia
- Barnes H.A., Hutton J.F. and Walters K. (1992): An Introduction to Rheology [M]. - Beijin: China Petrifaction Publishing House, pp.139-145 (in Chinese).
- Barnes H.A., Hutton J.F. and Walters K. (1992): An Introduction to Rheology [M]. - Beijin: China Petrifaction Publishing House, pp.141 (in Chinese).
- Deinega Yu.F. and Vinogradov G.V. (1962): Rheological Properties of Electro-Fluids. - Colloid J., vol.24, pp.570.
- Deinega Yu.F. and Vinogradov G.V. (1984): Electric fields in the rheology of disperse systems. - Rheol. Acta, vol.23, p.636.
- Ewing R.P. and Gupta S.C. (1993): Percolation and permeability in partially structured networks. - Water Resour. Res., vol.29, No.9, pp.3179-3188.
- Hong S.R., Choi S.B., Jung W.J. and Jeong W.B. (2001): Vibration Isolation of Structural Systems Using Squeeze Mode ER Mount. - Proceedings of the Eighth International Conference Electrorheological Fluids and Magnerorheological Suspension, p.43.
- Hunt A.G. (2001): Applications of percolation theory to porous media with distributed local conductances. - Advances in Water Resources, vol.24, pp.279-307.
- Inoue A., Ryu U. and Nishimura S. (2001): Caster-Walker with Intelligent Break Employing ER Fluid Composed of Liquid Crystalline Polysiloxane. - Proceedings of the Eighth International Conference Electrorheological Fluids and Magnerorheological Suspension, p.23.
- Klass D.L. and Martinek T.W. (1967a): Electroviscous Fluids. I. Electrical Properties. - J. Appl. Phys., vol.38, pp.67.
- Klass D.L. and Martinek T.W. (1967b): Electroviscous Fluids. II. Electrical Properties. - J. Appl. Phys., vol.38, p.75.
- Kulkarni P., Ciocanel C., Vieira S.L. and Naganathan N. (2001): Study of the Behavior of MR Fluids in Squeeze, Torsional and Valve Modes. - Proceedings of the Eighth International Conference Electrorheological Fluids and Magnerorheological Suspension, p.201.
- Luz Maria Melgoza, Antonio Maria Rabasco, Horacio Sandoval Caraballo Isidoro (2001): Estimation of the percolation thresholds in dextromethorphan hydrobromide matrices. - European Journal of Pharmaceutical Science, No.12, pp.453-459.
- Peel D.J. and Bullough W.A. Binghan (1994): Plastic analysis of ER valve flow. - Intercational J. of Modern Phsics B, No.8, pp.2967-2985.
- Sakurai R, See H, Saito T. and Sumita M. (1999): Effect of matrix viscoelasticity on the electrorheological properties of particle suspensions [J]. - J. Non-Newtonian Fluid Mech, vol.81, pp.235-250.
- Tiao Hao (2002): Electrorheological suspensions. - Advances in Colloid and Interface Science, vol.97, pp.1-35.
- Uejima H. (1972): Dielectric mechanism and rheological properties of electro-fluids. - Japan. J. Appl. Phys., vol.11, p.319.
- Wei Chenguan (2000): Electrorheological technology-theory·Material·Engineering Applications [M]. - Beijing: Beijing Institute of Technology Publishing House, pp.85-86 (in Chinese).
- Wei Chenguan (2000): Electrorheological technology-theory·Material·Engineering Applications [M]. - Beijing: Beijing Institute of Technology Publishing House, pp.116 (in Chinese).
- Winslow W.M. (1949): Induced fibration of suspensions. - J. Appl. Phys, vol.20, pp.1137-1140.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0028-0021
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