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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Effects of magnetic field on shear stress of nematic liquid crystalline polymer under simple shear flow
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Effects of magnetic field on shear stress of nematic liquid crystalline polymer under simple shear flow

机译:磁场对简单剪切流下向列型液晶聚合物剪切应力的影响

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摘要

The effect of magnetic fields on the shear stress of liquid crystalline polymers (LCPs) under shear flows is numerically analyzed using the Doi theory. The evolution equation for the probability density of LCP molecules is directly solved without any closure approximations. When the magnetic field is imposed on the LCPs along the shear flow, the low-shear rate plateau of the time-averaged generalized viscosity η?~*(= σ? ~*_(sy)/γ?~*) disappears, which is due to the manner of the new aligning mode observed by Fu et al. The negative first normal stress difference N?~*_1 becomes opposite in all the shear rate regimes with the disappearance of periodic oscillations. For the magnetic field parallel to the velocity gradient direction, the more complicated sign changes of N?~*_1 is investigated because of the moment caused by the magnetic field vertical to the one caused by the shear flow. The ratio N? ~*_2/N?~*_1 increases with the increasing magnetic field strength. Finally, when the molecular shape parameter is considered as 0.9, the similar discussions are achieved according to the phase diagram among tumbling, wagging, and aligning modes versus the magnetic field strength.
机译:使用Doi理论数值分析了磁场对剪切流作用下液晶聚合物(LCP)的剪切应力的影响。 LCP分子的概率密度的演化方程式可以直接求解,无需任何闭合近似。当沿剪切流向LCP施加磁场时,时间平均广义粘度η?〜*(=σ?〜* _(sy)/γ?〜*)的低剪切速率平稳期消失,从而这是由于Fu等人观察到的新对齐模式的方式。负的第一法向应力差Nα〜* _1在所有的剪切速率状态下都随着周期振动的消失而相反。对于平行于速度梯度方向的磁场,由于与剪切流引起的磁场垂直的磁场所引起的力矩,所以研究了更复杂的符号变化。 N比〜* _2 / N?〜* _1随着磁场强度的增加而增加。最后,当分子形状参数设为0.9时,根据相图在翻滚,摆动和排列模式与磁场强度之间进行了类似的讨论。

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