研究不同微粒质量分数的电磁流变液的性能、形貌,分析性能与质量分数、剪切速率以及所加电、磁场强度的关系.研究表明:同成分电磁流变液在相同的外场作用下随质量分数的增加,其强度增加,最佳质量分数值为30%;在电、磁场作用下微粒的形貌随质量分数增加,微粒链逐渐变粗变多,随电磁场强度的增加其微粒链变粗变壮,并出现相互交织.
参考文献
[1] | Tan Suokui;Song Xiaoping .The influence of particle size,concentration of electrorheological fluid on the property and morphology of ER[J].Current Advancements in Molecular Medicines,2011,152/153:1111-1114. |
[2] | Cho M S;Cho Y H;Choi H J et al.Enhanced electrorheology ot conducting polyaniline confined in MCM-41 channels[J].Langmuir,2003,19:5875-5881. |
[3] | Davis L D .Finite-element analysis of particle-particle forces in electrorheological fluid[J].Applied Physics Letters,1992,60(03):319. |
[4] | RONG SHEN;XUEZHAO WANG;YANG LU;GANG SUN;WEIJIA WEN;KUNQUAN LU .THE METHODS FOR MEASURING SHEAR STRESS OF POLAR MOLECULE DOMINATED ER FLUIDS[J].International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics,2007(28/29):4813-4818. |
[5] | Tan Suokui .The effect of particles size on the properties of nano core-shell Ni/TiO2 EMR fluid[J].Adwanced Materials Research,2011,211/212:775-779. |
[6] | Yin JB.;Zhao XP. .Preparation and electrorheological activity of mesoporous rare-earth-doped TiO2[J].Chemistry of Materials,2002(11):4633-4640. |
[7] | White M;Bullough W A;Peel D J et al.Dependence of electrorheohogical response on eonductivity and polarization time[J].Physical Review E,1994,49(06):5249-5251. |
[8] | Ma Y.;Lu KQ.;Zhang YL. .Frequency and temperature dependence of complex strontium titanate electrorheological fluids under an alternating electric field[J].Journal of Applied Physics,1998(10):5522-5524. |
[9] | 谭锁奎,宋晓平,纪松,郭红燕,王耀军,赵红.TiO2电流变液的行为及其性能研究[J].兵器材料科学与工程,2010(06):54-58. |
[10] | Yin JB;Zhao XP .Large enhancement in electrorheological activity of mesoporous cerium-doped TIO2 from high surface area and robust pore walls[J].International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics,2005(7/9):1071-1076. |
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