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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >A simple model to describe the thixotropic behavior of paints
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A simple model to describe the thixotropic behavior of paints

机译:描述油漆触变性的简单模型

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摘要

A simple rheological model is proposed to describe the thixotropic behavior of paints since the classical hysteresis area, which is usually employed, is not enough to evaluate thixotropy. The model, which is based on the assumption that viscosity is a direct measure of the structural level of the paint, depends on two equations: the Cross-Carreau equation to describe the equilibrium viscosity and a second order kinetic equation to express the time dependence of viscosity. Two characteristic thixotropic times are distinguished: one for the net structure breakdown, which is defined as a power law function of shear rate, and another for the net structure buildup, which does not depend on the shear rate. The useful information provided by these two kinetic processes can be potentially used to improve both the quality and applicability of paints. Five representative commercial protective marine paints were tested. These are based on chlorinated rubber, acrylic, alkyd, vinyl, and epoxy resins. Furthermore, the influence of the temperature in the theological behavior was also investigated. Results indicate that the paints exhibit both shear thinning and thixotropic behavior. The proposed model fits satisfactorily the thixotropy of all the studied paints and, additionally, it is also able to predict the thixotropy dependence on temperature. Both the viscosity and the degree of thixotropy increase as the temperature decreases. (c) 2006 Elsevier B.V. All rights reserved.
机译:由于通常使用的经典滞后区不足以评估触变性,因此提出了一种简单的流变模型来描述涂料的触变性。该模型基于以下假设:粘度是涂料结构水平的直接量度,它取决于两个方程式:用于描述平衡粘度的Cross-Carreau方程和用于表示涂料的时间依赖性的二阶动力学方程。粘度。区分了两个特征性触变时间:一个用于网状结构破坏,定义为剪切速率的幂律函数,另一个用于网状结构建立,其不依赖于剪切速率。这两个动力学过程提供的有用信息可潜在地用于改善涂料的质量和适用性。测试了五种代表性的商用海洋防护漆。这些是基于氯化橡胶,丙烯酸,醇酸,乙烯基和环氧树脂。此外,还研究了温度对神学行为的影响。结果表明该涂料同时具有剪切稀化和触变性。提出的模型可以令人满意地拟合所有研究涂料的触变性,此外,它还能够预测触变性对温度的依赖性。粘度和触变性随温度降低而增加。 (c)2006 Elsevier B.V.保留所有权利。

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