Correlating Coating Quality of Coverage with Rheology for Mica-Based Paints

Author:

Anderson Jacob1,Shori Shailesh2,Jabbari Esmaiel1,Ploehn Harry J.3,Gadala-Maria Francis1,Priftis Dimitrios2

Affiliation:

1. College of Engineering and Computing , Department of Chemical Engineering , University of South Carolina , 301 Main St., Columbia, SC 29208 , United States of America

2. Boeing Research & Technology , 4249 Crosspoint Dr., Ladson, SC 29456-6750 , United States of America

3. College of Engineering and Technology, Science and Technology Building Suite 100 , East Carolina University, Greenville , NC 27858 , United States of America

Abstract

Abstract This paper examines the relationship between rheology and the qualitative appearance of dried, mica-based paint coatings used in the aerospace industry. The goal is to identify key rheological characteristics indicative of poor coating visual appearance, providing a screening tool to identify unsatisfactory paint formulations. Four mica paints were studied, having coating visual appearances ranging from very poor to very good. Strain sweeps indicated that the poor-quality paints have a smaller % strain midpoint in the linear visco-elastic range; while the good-quality paints have a lower G’/G” cross-over point in frequency sweeps. Thixotropy experiments utilizing single and multiple-loop hysteresis cycles plotting shear stress as a function of shear rate showed that the base mica paints with good appearance had nearly constant, reversible profiles in the forward and the backward directions; while the mica paints with poor appearance were irreversible with a noticeable gradual change in shear stress as more loops are run. The difference in area between the forward and the reverse curves was determined, leading to a quantifiable criterion that can differentiate good paints from poor paints with significance testing. This work would establish the first rheology model using hysteresis loops to predict the visual properties of mica-based paints.

Publisher

Walter de Gruyter GmbH

Subject

Condensed Matter Physics,General Materials Science

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Statistical Analysis of Dry Grinding of Mica in Planetary Mill;Pertanika Journal of Science and Technology;2022-05-25

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