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Structural transitions of an electrorheological and magnetorheological fluid

机译:电流变和磁流变流体的结构转变

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摘要

An electrorheological and magnetorheological fluid has small spherical particles in a space where a uniform electric field is perpendicular to a uniform magnetic field. When the ratio between the electric field and magnetic field varies, structural transitions occur. Lf the electric (or magnetic) field is dominant, the ideal structure of the system is a body-centered tetragonal lattice with its fourfold rotational axis in the electric (or magnetic) field direction. When the electric field and magnetic field are compatible, under the dipolar approximation , the system may have a hexagonal close-packed (hcp) structure. However, because the energy difference between the hcp structure and face-centered cubic (fcc) lattice is small and compatible with the thermal energy at room temperature, the system may develop into a hcp-fce mixed structure when the electric field and magnetic field are compatible. [References: 25]
机译:电流变和磁流变流体在均匀电场垂直于均匀磁场的空间中具有小的球形颗粒。当电场和磁场之间的比率变化时,发生结构转变。如果电场(或磁场)占主导地位,则系统的理想结构是以人体为中心的四边形晶格,其在电场(或磁场)方向的旋转轴为四倍。当电场和磁场兼容时,在偶极近似下,系统可能具有六方密堆积(hcp)结构。但是,由于hcp结构与面心立方(fcc)晶格之间的能量差很小,并且与室温下的热能兼容,因此当电场和磁场为零时,系统可能发展为hcp-fce混合结构。兼容。 [参考:25]

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