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首页> 外文期刊>ACS Omega >Analysis and Modeling of Viscosity for Aqueous Polyurethane Dispersion as a Function of Shear Rate, Temperature, and Solid Content
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Analysis and Modeling of Viscosity for Aqueous Polyurethane Dispersion as a Function of Shear Rate, Temperature, and Solid Content

机译:作为剪切速率,温度和固体含量的含水聚氨酯分散体粘度的分析与建模

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Aqueous polyurethane dispersion (PUD) has attracted increasing attention in a wide range of industrial applications because of their versatile properties as well as ecofriendly nature. In this study, the aqueous PUD used in warp-knitted vamp printing was characterized by Fourier transform infrared spectra, dynamic light scattering, and laser Doppler electrophoresis. The mean diameter and zeta potential are 206.6 nm and ?18.3 mV, respectively. The rheological behavior of aqueous PUD as a function of shear rate, temperature, and solid content was investigated experimentally. Besides, a new correlation model was proposed based on the Carreau equation and Arrhenius relation. The resulting model has high accuracy in viscosity estimation under complex conditions according to the prediction interval of 95%. Furthermore, the reasonable ranges of parameters were proposed theoretically for successful printing.
机译:由于它们的多功能性质以及Ecofriendly的性质,水性聚氨酯分散体(PUD)在广泛的工业应用中引起了越来越多的关注。在该研究中,通过傅里叶变换红外光谱,动态光散射和激光多普勒电泳,表征用于经翘曲针织鞋面的含水PUD。平均直径和ζ电位分别为206.6nm和?18.3mV。实验研究了作为剪切速率,温度和固体含量的函数的水性pud的流变行为。此外,基于Carreau方程和Arhenius关系提出了一种新的相关模型。根据预测间隔为95%,所得模型在复杂条件下具有高精度。此外,理论上提出了合理的参数范围,以便成功进行印刷。

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