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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >The effect of surface roughness on corrosion resistance of machined and epoxy coated steel
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The effect of surface roughness on corrosion resistance of machined and epoxy coated steel

机译:表面粗糙度对加工和环氧涂层钢耐腐蚀性的影响

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摘要

By incorporating periodic micro-patterns on steel substrates, the effect of surface roughness on corrosion resistance of a two-component polyamine cured epoxy mastic coating has been studied. Machining was employed to pattern the surfaces with periodic peaks of varying peak-to-valley heights, Rz. The focus of the study was to find the surface parameter that contributes most to the stability of an organic coating in corrosive environment, and to evaluate if machining can be comparable to blast cleaning with respect to coating durability. A strong correlation between roughness (Rz) and corrosive delamination of coated surfaces was seen. Increasing Rz from 57 mu m to 252 mu m on surfaces with triangular peaks, increased the effective contact area by 40% and decreased delamination by 30%. By introducing tilted asperities at Rz = 224 mu m while keeping the effective contact area in general unchanged, delamination decreased another 55%. Hence, an increased Rz is found to be only partially beneficial, and the profile shape is more significant than the roughness value per se. The results suggest that mechanical interlocking has a substantial influence on the interfacial stability of protective coatings in corrosive environments. By optimal selection of cutting parameters, machining can give surfaces where protective coatings have long lifetime.
机译:通过在钢基材上加入周期性微观图案,研究了表面粗糙度对双组分多胺固化环氧乳胶涂层的耐腐蚀性的影响。采用加工来绘制具有不同峰 - 谷高度的周期性峰的表面,RZ。该研究的重点是找到对腐蚀性环境中有机涂层的稳定性有助于最大的表面参数,并且如果加工可以相对于涂覆耐久性的喷砂清洁可以比较。粗糙度(RZ)与涂覆表面的腐蚀分层之间的强关系。在具有三角形峰的表面上增加57μm至252μm,将有效接触面积增加40%并降低分层30%。通过在将有效接触面积保持有效接触区域的Rz = 224 mu m的倾斜粗糙度,除了不变的情况下,分层将另外降低55%。因此,发现RZ的增加仅是部分有益的,并且轮廓形状比粗糙度值更大。结果表明,机械互锁对腐蚀性环境中保护涂层的界面稳定性具有重要影响。通过最佳选择切割参数,加工可以给出保护涂层长寿的表面。

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