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Steady shear viscosity and oscillatory complex viscosity of poly(p-phenylene terephthalamide) solutions in sulfuric acid

机译:聚对苯二甲酰对苯二甲酰胺在硫酸溶液中的稳态剪切粘度和振荡复数粘度

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This study investigated the steady shear viscosity eta and the oscillatory complex viscosity eta* of poly(p-phenylene terephthalamide) solutions in sulfuric acid (PPTA/H2SO4) by rheometric measurements. The influences of steady shear rate, concentration, and temperature were investigated in detail. The results indicated that in the plateau regime (eta independent of (gamma)over dot regime), eta shows a non-monotonic variation with the concentration increase, which reaches the maximum value when the solution changes from the isotropic phase into the nematic-isotropic biphasic system. At the low shear rate, the corresponding critical concentration C-eta(*) is close to the critical concentration C*, at which the birefringence emerges in solutions. In the plateau regime, the dependence of eta on temperature follows different rules when the system is in different phases. In the isotropic phase, eta decreases with the increasing temperature and obeys the Arrhenius exponential rule. Unlike the isotropic solution, eta increases with the temperature in the nematic-isotropic biphasic region and decreases linearly with the temperature in the nematic phase region. The eta(*) measured at different angular frequencies (omega) was compared with eta measured at different eta similar to(gamma)over dot For the isotropic solutions, the vertical bar eta*vertical bar similar to omega. curve coincides with the eta similar to(gamma)over dot variation in a wide shear rate range for the plateau regime, while in the nematic phase region, vertical bar eta*vertical bar is always smaller than eta. For the biphasic systems, the consistency can be seen only in a narrow shear rate range and vertical bar eta*vertical bar deviates from eta with the increasing shear rate.
机译:这项研究通过流变法研究了聚对苯二甲酰对苯二甲酰胺在硫酸(PPTA / H2SO4)溶液中的稳态剪切粘度η和振荡复数粘度η*。详细研究了稳态剪切速率,浓度和温度的影响。结果表明,在平稳状态下(η独立于(γ)点之上),随着浓度的增加,η显示出非单调变化,当溶液从各向同性相变为向列各向同性时达到最大值。双相系统。在低剪切速率下,相应的临界浓度C-eta(*)接近临界浓度C *,在临界浓度C *下溶液中会出现双折射。在平稳状态下,当系统处于不同阶段时,eta对温度的依赖性遵循不同的规则。在各向同性阶段,eta随温度的升高而降低,并遵守Arrhenius指数规则。与各向同性溶液不同,eta随向列各向同性双相区域中的温度而增加,而随向列相区域中的温度线性地减小。将在不同角频率(Ω)处测得的eta(*)与在类似于γ上点的eta处在不同eta处测得的eta进行比较。对于各向同性解决方案,垂直条eta *垂直条类似于omega。该曲线在平稳状态的宽剪切速率范围内与类似于γ的点变化的η相吻合,而在向列相区域中,垂直条η*垂直条总是小于η。对于双相系统,仅在狭窄的剪切速率范围内才能看到一致性,并且随着剪切速率的增加,垂直线eta *垂直线偏离eta。

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