首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Investigation of the Band Texture Occurring in Acetoxypropylcellulose Thermotropic Liquid Crystalline Polymer Using Rheo-optical, Rheological and Light Scattering Techniques
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Investigation of the Band Texture Occurring in Acetoxypropylcellulose Thermotropic Liquid Crystalline Polymer Using Rheo-optical, Rheological and Light Scattering Techniques

机译:流变,流变和光散射技术研究乙氧基丙基纤维素热致液晶聚合物中的能带结构

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摘要

The optical evolution of the band texture occurring in acetoxypropylcellulose thermotropic polymer has been investigated as a function of temperature and primary shear rate. Two distinct kinds of band texture were observed which are referred to here as the 'fast' and 'slow' band textures with regard to their rate of evolution. The fast band texture appears very quickly following the cessation of shear and then disappears. The slow band texture is much finer than the fast band texture and appears to exist both during and after the appearance of the fast band texture. The evolution behaviour of the fast band texture is interpreted in terms of the shifting of a three-region evolution curve. Particular attention has been paid to investigating the influence of temperature on the formation of the fast band texture. Rheo-optical experiments show that the minimum shear rate required to form the fast band texture increases as a power-law function of the temperature. By subsequently performing steady flow measurements over a range of temperatures, the minimum shear stress required to form the fast band texture has been found to be independent of temperature and to increase linearly with the molecular weight of the sample. Results obtained from dynamic tests are compared with similar tests conducted previously on a lyotropic hydroxypropylcellulose water solution (Harrison and Navard 1999). The results of the comparison provide evidence in support of a connection between the behaviour of the dynamic functions and the optical evolution of the slow band texture. These results suggest that nematic and cholesteric fluids can relax through several different possible mechanisms, each of which results in a periodic band texture following the cessation of shear.
机译:已经研究了在乙酰氧基丙基纤维素热致聚合物中出现的能带结构的光学演化随温度和主剪切速率的变化。观察到两种不同类型的条带纹理,就其演化速率而言,在这里被称为“快速”和“慢速”条带纹理。剪切停止后,快速带纹理很快出现,然后消失。慢带纹理比快带纹理细得多,并且似乎在快带纹理出现期间和之后都存在。快速带纹理的演化行为是根据三区域演化曲线的移动来解释的。已经特别注意研究温度对快速带织构形成的影响。流变光学实验表明,形成快速带状织构所需的最小剪切速率随温度的幂律函数而增加。通过随后在一定温度范围内进行稳定的流量测量,已发现形成快速带状织构所需的最小剪切应力与温度无关,并且随样品分子量的增加而线性增加。从动态测试获得的结果与先前在溶致的羟丙基纤维素水溶液上进行的类似测试进行了比较(Harrison和Navard,1999年)。比较的结果提供了证据来支持动态函数的行为与慢带纹理的光学演化之间的联系。这些结果表明,向列和胆甾型液体可以通过几种不同的可能机制松弛,每种机制在停止剪切后导致周期性的带织构。

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