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POROSITY AND CORROSION PROPERTIES OF ELECTROLYTE PLASMA COATINGS ON MAGNESIUM ALLOYS

机译:镁合金上电解质等离子体涂层的孔隙率和腐蚀性能

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摘要

It is shown that oxide-ceramic coatings on magnesium alloys are, in general, characterized by high conosion resistance depending on the porosity of the coating. The surface topology of oxide-ceramic coatings on IMV2 and VMD10 alloys is studied to reveal discontinuities by using special procedures of immersion and electrochemical deposition. Craters detected as a specific feature of the topology of the coatings and not always through and, in this case, they do not affect the corrosion resistance of the alloys. Isolated pores are formed, most often around the craters, in the process of oxidation under the action of high thermal stresses. On the basis of the comparative analysis of various materials and corrosive media, it is possible to make a conclusion that the corrosion resistance of magnesium alloys with oxide-ceramic coatings in acid media is mainly determined by the chemical composition of the alloy. At the same time, in neutral media, it is determined by the porosity of the coatings.
机译:结果表明,镁合金上的氧化物陶瓷涂层的特征通常是高耐渗碳性,取决于涂层的孔隙率。研究了IMV2和VMD10合金上的氧化物陶瓷涂层的表面拓扑,通过使用特殊的浸入和电化学沉积程序来揭示不连续性。火山口不是涂层的唯一特征,而是涂层拓扑结构的特定特征,在这种情况下,它们不会影响合金的耐腐蚀性。在高热应力作用下的氧化过程中,通常在火山口周围形成孤立的孔。在对各种材料和腐蚀性介质进行比较分析的基础上,可以得出结论,在酸性介质中带有氧化物陶瓷涂层的镁合金的耐蚀性主要取决于合金的化学成分。同时,在中性介质中,这取决于涂层的孔隙率。

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