首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >MECHANICAL PROPERTIES OF COMPLEX STRUCTURE FORMED FROM ELECTRO-CONVECTION STATE OF SMECTIC LIQUID CRYSTAL
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MECHANICAL PROPERTIES OF COMPLEX STRUCTURE FORMED FROM ELECTRO-CONVECTION STATE OF SMECTIC LIQUID CRYSTAL

机译:近型液晶电对流状态形成的复杂结构的力学性能

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In the present study, electro-rheological characteristics of a liquid crystal (8CB) in smectic-A phase were investigated utilizing a parallel-plate type rheometer under a stress control mode. Solid like behaviors of the liquid crystal under DC electric fields were mainly examined. Bingham-like properties were observed and yield stresses measured were affected with the electric field conditions. When the electric field strength was low, the yield stress was almost the same as that obtained under no electric field. Above a threshold of DC electric field strength, the yield stress increased. It was clarified that the increase in the yield stress was caused with the complex structure formed in cooling process from an electro-convection state in nematic phase. Mechanical property changes after deformation of the structure were also examined as changes in dynamic viscoelasticities under condition of very small strain amplitude and the yield stress. The properties were measured before and after the deformation and compared. Moreover, the deformed structure of the liquid crystal was visualized with a polarizing microscope. Since the initial structures formed after the cooling have unevenness, the strength of the structure varied widely. When the small deformation is applied, peculiar changes in the strength were observed, i.e. the G' measured was increased or decreased after the deformation. Moreover, the values measured after the deformation had reproducibility despite of the scattered initial data. We observed growth of typical optical patterns in the visualization of the structure and it is considered that defects like focal conic domains were generated and developed. After large deformation, the strength of the structure decreased and the deformed structure had almost no elastic properties. The structures were changed to irregular flow structures.
机译:在本研究中,在应力控制模式下利用平行板型流变仪研究椎相晶体(8cb)的液晶(8cb)的电流变特性。主要检查DC电场下液晶的固体等行为。观察到宾厄姆样性能,测量的屈服应力受电场条件的影响。当电场强度低时,屈服应力几乎与在没有电场下获得的相同。高于直流电场强度的阈值,屈服应力增加。澄清说,在向列法中的电 - 对流状态下在冷却过程中形成的复合结构引起屈服应力的增加。在结构的变形变形后,机械性能变化也被检查为在非常小的应变幅度和屈服应力的情况下动态粘弹性的变化。在变形之前和之后测量性质并比较。此外,用偏振显微镜可视化液晶的变形结构。由于冷却后形成的初始结构具有不均匀性,因此结构的强度宽泛变化。当施加小变形时,观察到强度的特殊变化,即测量的G'在变形后增加或减少。此外,尽管散射的初始数据,变形后测量的值具有再现性。我们观察到结构的可视化中典型光学模式的生长,并且认为产生并开发焦点圆锥结构域的缺陷。经过大变形后,结构的强度降低,变形结构几乎没有弹性性质。该结构变为不规则的流动结构。

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