Comparison of the thermal stability of magnesium phosphate (newberyite) coating with conventional zinc phosphate (hopeite) coating

Q3 Materials Science
P. Pokorný
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引用次数: 1

Abstract

Abstract This article presents a detail comparison of the thermal stability of the new magnesium phosphate (newberyite – MgHPO4·3H2O) coating with a conventional coating of zinc phosphate (hopeite – Zn3(PO4)2·4H2O). It was confirmed that dehydration of zinc phosphate (hopeite) occurs gradually (dehydration start temperature: 115 °C). The start of magnesium phosphate (newberyite) dehydration is indeed shifted to somewhat higher temperatures (about 125 °C) but the dehydration has an intense jump character. When using magnesium phosphate (newberyite) coating for further surface treatment at higher temperatures, dehydration of the coating can result in reduction of the adhesion between the phosphate/primer coatings. Under these conditions, it is recommended to use a coating of conventional zinc phosphate (hopeite) or manganese phosphate (hurealite).
磷酸镁(新铍石)涂层与常规磷酸锌(希望石)涂层热稳定性的比较
摘要本文详细比较了新型磷酸镁涂层(newberyite–MgHPO4·3H2O)与传统磷酸锌涂层(hopeite–Zn3(PO4)2·4H2O)的热稳定性。经证实,磷酸锌(hopeite)的脱水是逐渐发生的(脱水开始温度:115°C)。磷酸镁(新镁石)脱水的开始确实转移到了更高的温度(约125°C),但脱水具有强烈的跳跃性。当在更高的温度下使用磷酸镁(菜白石)涂层进行进一步的表面处理时,涂层的脱水会导致磷酸盐/底漆涂层之间的附着力降低。在这些条件下,建议使用传统的磷酸锌(hopelite)或磷酸锰(hurealite)涂层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Koroze a ochrana materialu
Koroze a ochrana materialu Materials Science-Materials Science (all)
CiteScore
3.00
自引率
0.00%
发文量
8
审稿时长
14 weeks
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