Parabolic Model for Optimum Dry Film Thickness (DFT) of Corrosion Protective Coatings

Anyanwu K.O
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Abstract

This study proposes a model for calculating the optimum dry film thickness of corrosion protective Coatings. It was assumed that the graph of coating thickness against corrosion rate is a parabola whose coordinates at turning point consists of optimum thickness and minimum corrosion rate. On this basis, equation of parabola was formed. Three equations of parabola were also formed with three assumed thicknesses, taking arbitrarily with their corresponding corrosion rates of the coated metals. From the equations, a 3x3 matrix was derived. From the solution of the matrix, equations for optimum thickness, minimum corrosion rates and corrosion rate of uncoated specimen were obtained. It is assumed that with this model a technical ground shall be established, upon which the optimum thicknesses of corrosion protective coatings shall be recommended.
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腐蚀防护涂层最佳干膜厚度的抛物线模型
本文提出了一种计算防腐涂层最佳干膜厚度的模型。假设涂层厚度随腐蚀速率的变化曲线为抛物线,其拐点坐标为最佳涂层厚度与最小腐蚀速率。在此基础上,建立了抛物线方程。在三个假设厚度下,形成了三个抛物线方程,任意取其对应的涂层金属腐蚀速率。由方程推导出一个3x3矩阵。通过对基体的求解,得到了涂层试样的最佳厚度、最小腐蚀速率和腐蚀速率方程。假定有了这个模型,应该建立一个技术基础,并在此基础上推荐最佳的防腐涂层厚度。
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