涂层方法和腐蚀介质变化对ASTM A36钢聚氨酯涂层的附着强度、腐蚀速率和金相的影响分析

H. Pratikno, Inaya Krista Pradyptia, H. Ikhwani
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引用次数: 0

摘要

由于材料与环境的反应,腐蚀会导致材料损坏。腐蚀会影响施工材料,包括金属材料,从而降低强度和施工寿命,特别是在腐蚀性环境中。最有效和最经济的腐蚀控制是涂层。正确的涂布方法会使涂料与材料结合良好,从而使防腐效果更好。本研究采用ASTM A36碳钢材料和聚氨酯涂层。本研究的目的是通过不同的应用方法,即刷涂、滚涂和喷涂,来确定附着力和腐蚀速率。在拉拔试验中,喷涂法获得的粘接强度最高,平均值为20,82 MPa。而在三电极电池试验中,NaCl腐蚀介质喷涂法的腐蚀速率最低,为0.000025402 mmpy; fecl3腐蚀介质喷涂法的腐蚀速率最低,为0.00182 mmpy。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect Analysis on Coating Methods and Corrosive Media Variations toward Adhesion Strength, Corrosion Rate, and Metallography of ASTM A36 Steel with Polyurethane Coating
Corrosion can cause material damage due to the material’s reaction with the environment. Corrosion will affect materials on construction, including metal material, thereby reducing the strength and the construction life, especially in a corrosive environment. The most effective and economical corrosion control is coating. The right coating application method will result in good bonding of the paint with the material, so that the corrosion protection will be better. T his research used the ASTM A36 carbon steel material and polyurethane coatings. The purpose of this study is to determine the adhesion strength and corrosion rate by varying the application methods, namely brush, roll, and spray. In the pull-off test , the highest value of adhesion strength was obtained in the spray coating method with an average value of 20,82 MPa. Whereas in the three-electrode cell testing, the lowest corrosion rate using NaCl corrosive media was found in the spray coating method with a value of 0.000025402 mmpy and the lowest corrosion rate using FeCl 3 corrosive media was found in the spray coating method with a value of 0.00182 mmpy.
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