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A general constitutive equation of an ER suspension based on the internal variable theory

机译:基于内部变量理论的ER悬架的一​​般本构方程

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摘要

A microstructural constitutive theory of ER suspensions was formulated in this investigation. The framework was based on the internal variable theory and the mechanism analysis. The ER suspension consists of fine particles with high dielectric constant and the supporting fluid. Under the action of the electric field, the polarized particles will aggregate together to form the chain-like structures along the direction of the electric field. As the size and orientation of the particle aggregates are volatile, and they adjust according to the applied electric field and strain rate, the energy conservation equation and the force equilibrium equation were thus established to determine the orientation and size of the aggregates. Following that, a three-dimensional, explicit form of the constitutive equation was derived based on the interaction energy and the dissipation function of the system. The response of the system under the action of a simple shearing load was considered and discussed in detail. It is found that the shear-thinning viscosity of an ER suspension is well approximated by the power-law ∝ (Mn)−0.82.
机译:在这项研究中提出了ER悬浮液的微观结构本构理论。该框架基于内部变量理论和机理分析。 ER悬浮液由具有高介电常数的细颗粒和辅助流体组成。在电场的作用下,极化粒子将聚集在一起,形成沿电场方向的链状结构。由于颗粒聚集体的尺寸和取向是易变的,并且它们根据施加的电场和应变率进行调节,因此建立了能量守恒方程和力平衡方程,从而确定了聚集体的取向和尺寸。然后,基于系统的相互作用能和耗散函数,导出了本构方程的三维显式形式。考虑并讨论了系统在简单剪力作用下的响应。发现ER悬浮液的剪切稀化粘度可以通过幂律∝(Mn)-0.82 很好地近似。

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  • 来源
    《Acta Mechanica》 |2003年第2期|99-120|共22页
  • 作者

    B. Wang; Z. Xiao;

  • 作者单位

    Electro-Optics Technology Center and Research Center for Composite Materials Harbin Institute of Technology Harbin P. R. China (E-mail: mmwangb@polyu.edu.hk);

    School of Mechanical and Production Engineering Nanyang Technological University Nanyang Avenue Singapore;

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  • 正文语种 eng
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