School of Engineering & Innovation, The Open University, Walton Hall, Milton Keynes, MK7 6AA, United Kingdom.
Sci Rep. 2017 Aug 16;7(1):8449. doi: 10.1038/s41598-017-09180-7.
This work reveals a torque from electric field to electrically neutral flakes that are suspended in a higher electrical conductive matrix. The torque tends to rotate the particles toward an orientation with its long axis parallel to the electric current flow. The alignment enables the anisotropic properties of tiny particles to integrate together and generate desirable macroscale anisotropic properties. The torque was obtained from thermodynamic calculation of electric current free energy at various microstructure configurations. It is significant even when the electrical potential gradient becomes as low as 100 v/m. The changes of electrical, electroplastic and thermal properties during particles alignment were discussed.
这项工作揭示了电场对悬浮在高导电性基质中的电中性薄片的扭矩。该扭矩倾向于将颗粒旋转到其长轴与电流平行的方向。这种排列方式使微小颗粒的各向异性特性能够集成在一起,从而产生所需的宏观各向异性特性。该扭矩是通过对各种微结构构型下电流自由能的热力学计算得到的。即使在电位梯度低至 100V/m 时,该扭矩仍然具有重要意义。讨论了颗粒排列过程中电、电塑性和热性能的变化。