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On the effect of an applied magnetic field on the shear-induced pattern formation in nematic polymer liquid crystals

机译:施加磁场对向列型聚合物液晶中剪切诱导图案形成的影响

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摘要

The effect of an applied magnetic field and of the boundaries on the stability of the shear flow of nematic polymer liquid crystals of the tumbling type with respect to the formation of the transient spatially periodic patterns that appears after the start-up of shearing is studied. The unidirectional shear of a nematic director initially uniformly oriented orthogonally to the sample plane and with strong anchoring is considered. The magnetic field is applied orthogonally to the sample plane or in the same direction of the flow. For a given value of the Ericksen number of the flow a critical value of the magnetic-to-viscous energy ratio shows up above which the uniform flow is stable. When the influence of the boundaries may be neglected, an internal Ericksen number that stays constant in a given material is considered such that the wavelength of the periodic pattern is a self-adjusted length. An internal generalized Ericksen number is defined such that it is a universal function of the magnetic-to-viscous energy ratio.
机译:研究了施加磁场和边界对向列型向列型聚合物液晶剪切流的稳定性的影响,这种关系对剪切开始后出现的瞬态空间周期性图案的形成有关。向列导向器的单向剪切力最初均匀地正交于样品平面并具有牢固的锚固。磁场垂直于样品平面或沿流动的相同方向施加。对于给定的流体埃里克森数值,显示出磁粘能量比的临界值,在该临界值以上,均匀流稳定。当可以忽略边界的影响时,可以考虑在给定材料中保持恒定的内部埃里克森数,以使周期性图案的波长为自调整长度。定义内部广义埃里克森数,使其成为磁粘能量比的通用函数。

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