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Rheological Behaviors of PVA/H2O Solutions of High-Polymer Concentration

机译:高聚合物浓度PVA / H2O溶液的流变行为

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The dynamic viscoelastic properties of poly(vinyl alcohol) (PVA)/H2O solutions with concentrations of 10 to 25 wt % have been characterized by controlled-stress rheometry at 30 degrees C. Parameters relating to the linear and nonlinear viscoelasticities include complex viscosity (eta*), storage modulus (G'), loss tangent (tan 8), relaxation time (lambda), thixotropy, and creep. Change curves of eta*, G', tan delta, and lambda with frequency (omega) have been obtained for the PVA/H2O Solutions. Creep and recovery testing yielded compliance (J') curves with loading and unloading. Shear stress versus rate profiles of the PVA solutions have been obtained through thixotropic measurements. The PVA concentration has been found to have a profound influence on the rheological properties of the aqueous solutions. Four aqueous solutions of 10, 15, 20, and 25 wt % PVA at 30 degrees C exhibited shear-thinning and showed different transition behaviors of eta* and G' with frequency, and different degrees of creep under constant stress to recovery with time. The 1.0 wt % PVA solution was viscous and displayed the lowest eta* and G'; the 25 wt % PVA solution was visco-elastic and displayed the highest eta* and G'; the 15 and 20 wt % PVA solutions showed eta* and G' values and creep to recovery behaviors intermediate between those of the 10 wt % and 25 wt %, PVA solutions. The different rheological properties of these PVA/H2O solutions are considered to correlate with interchain hydrogen bonds and shear-induced orientation in the solutions. Shearing is able to break the intrachain and interchain hydrogen bonds, and, at the same time, the orientation creates new interchain hydrogen bonding. The reorganization of hydrogen-bonding mode contributes to the transitions of the macroscopic viscoelasticity with frequency.
机译:浓度为10至25 wt%的聚乙烯醇(PVA)/ H2O溶液的动态粘弹性已通过30摄氏度的控制应力流变法进行了表征。与线性和非线性粘弹性有关的参数包括复数粘度(η *),储能模量(G'),损耗角正切(tan 8),弛豫时间(λ),触变性和蠕变。对于PVA / H2O溶液,已获得eta *,G',tanδ和λ随频率(ω)的变化曲线。蠕变和恢复测试产生的加载和卸载顺应性(J')曲线。 PVA溶液的剪切应力与速率的关系曲线已经通过触变测量获得。已经发现PVA浓度对水溶液的流变性具有深远的影响。在30摄氏度下,四种10、15、20和25 wt%PVA的水溶液表现出剪切稀化作用,并显示出eta *和G'随频率变化的过渡行为,以及在恒定应力下随时间恢复的蠕变程度不同。 1.0重量%的PVA溶液是粘稠的,并显示出最低的eta *和G'。 25重量%的PVA溶液是粘弹性的,并显示出最高的eta *和G'。 15和20 wt%的PVA溶液显示eta *和G'值,蠕变到恢复行为介于10 wt%和25 wt%的PVA溶液之间。这些PVA / H2O溶液的不同流变特性被认为与溶液中的链间氢键和剪切诱导的取向相关。剪切能够破坏链内和链间氢键,并且同时,取向产生新的链间氢键。氢键模式的重组有助于宏观粘弹性随频率的转变。

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