摘要
测量了微晶纤维素 /蓖麻油悬浮体构成的电流变液在挤压流中的动态粘弹性 .给出了平行于电场方向的储能模量G′和损耗模量G″对电场和应变幅度的依赖关系 .实验显示 ,当电场超过临界电场后 ,随着应变幅度增加 ,电流变液的粘弹性从线性变到非线性 ,电流变液出现了应变导致的“类固体”和流体之间的转变过程 .还研究了应变幅度和振荡频率对电流变液粘弹性非线性的影响 .
Dynamic viscoelasticity of electrorheological fluids based on microcrystalline cellulose/castor oil suspensions was experimentally investigated in squeeze flow. The dependence of storage modulus G′and loss modulus G″parallel to external electric field on electric fields and strain amplitudes is presented. The experiments show that, when external electric field is higher than the critical field, the viscoelasticity of the ER fluids converts from linear to nonlinear, and the ER fluids transfer from solid like state to fluid state with the growth of strain amplitude. The influences of strain amplitude and oscillatory frequency on the nonlinearity of viscoelasticity were also studied.
出处
《物理学报》
SCIE
EI
CAS
CSCD
北大核心
2000年第9期1887-1891,共5页
Acta Physica Sinica
基金
国家自然科学基金!(批准号 :1983 4 0 2 0和 197740 19)&&
关键词
电流变液
挤压流
粘弹性
微晶纤维素
electrorheological fluids, squeeze flow, viscoelasticity