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增塑乳胶膜的干燥机制:水平干燥前沿的作用。

Drying Mechanisms in Plasticized Latex Films: Role of Horizontal Drying Fronts.

作者信息

Divry V, Gromer A, Nassar M, Lambour C, Collin D, Holl Y

机构信息

CNRS-ICS & Université de Strasbourg , 23, rue du Loess, BP 84047, 67034 Strasbourg Cedex 2, France.

出版信息

J Phys Chem B. 2016 Jul 14;120(27):6791-802. doi: 10.1021/acs.jpcb.6b03009. Epub 2016 Jun 22.

Abstract

This article presents studies on the drying kinetics of latexes with particles made progressively softer by adding increasing amounts of a plasticizer, in relation to speeds of horizontal drying fronts and particle deformation mechanisms. Global drying rates were measured by gravimetry, and speeds of the horizontal fronts were recorded using a video camera and image processing. Particle deformation mechanisms were inferred using the deformation map established by Routh and Russel (RR). This required precise measurements of the rheological properties of the polymers using a piezorheometer. The results show that latexes with softer particles dry slowly, but in our systems, this is not due to skin formation. A correlation between global drying rates and speeds of horizontal fronts could be established and interpreted in terms of the evolution of mass transfer coefficients of water in different areas of the drying system. The speeds of the horizontal drying fronts were compared with the RR model. A remarkable qualitative agreement of the curve shapes was observed; however, the fit could not be considered good. These results call for further research efforts in modeling and simulation.

摘要

本文介绍了关于通过添加越来越多的增塑剂使颗粒逐渐变软的胶乳干燥动力学的研究,涉及水平干燥前沿速度和颗粒变形机制。通过重量分析法测量整体干燥速率,并使用摄像机和图像处理记录水平前沿的速度。利用劳斯和拉塞尔(RR)建立的变形图推断颗粒变形机制。这需要使用压电流变仪精确测量聚合物的流变特性。结果表明,颗粒较软的胶乳干燥缓慢,但在我们的体系中,这并非由于形成表皮所致。可以建立整体干燥速率与水平前沿速度之间的相关性,并根据干燥系统不同区域中水的传质系数的演变进行解释。将水平干燥前沿的速度与RR模型进行了比较。观察到曲线形状有显著的定性一致性;然而,拟合效果不能被认为良好。这些结果需要在建模和模拟方面进一步开展研究工作。

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