Delben F, Lapasin R, Pricl S
Institute of Applied and Industrial Chemistry, University of Trieste, Italy.
Int J Biol Macromol. 1990 Feb;12(1):9-13. doi: 10.1016/0141-8130(90)90075-l.
The flow behaviour and the viscoelastic properties of N-(carboxymethyl) chitosan aqueous systems in the sol and gel domains have been investigated by means of dynamic, steady and transient shear techniques. For polymer concentrations Cp up to 1%, a typical response of moderately concentrated polymer solutions was observed under continuous and oscillatory shear conditions. No time-dependent properties were detected during transient shear experiments. On the other hand, for all the samples with Cp greater than 1%, the rheological properties were more similar to those of a weak gel system. The continuous shear flow behaviour was of the plastic type and the viscoelastic quantities G' and G" were parallel to each other and slightly dependent on the frequency of oscillation omega. Stress overshoots were observed during transient shear experiments, and the kinetics of the structural breakdown and build-up processes were found to be dependent both on the polymer concentration and the applied shear rate.
通过动态、稳态和瞬态剪切技术研究了N-(羧甲基)壳聚糖水体系在溶胶和凝胶区域的流动行为和粘弹性特性。对于聚合物浓度Cp高达1%的情况,在连续和振荡剪切条件下观察到了中等浓度聚合物溶液的典型响应。在瞬态剪切实验中未检测到时间依赖性特性。另一方面,对于所有Cp大于1%的样品,其流变特性更类似于弱凝胶体系。连续剪切流动行为属于塑性类型,粘弹性量G'和G"相互平行,且略微依赖于振荡频率ω。在瞬态剪切实验中观察到了应力过冲现象,并且发现结构破坏和形成过程的动力学既取决于聚合物浓度,也取决于施加的剪切速率。