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首页> 外文期刊>Coatings >Effects of Surface Modification by Means of Low-Temperature Plasma Nitriding on Wetting and Corrosion Behavior of Austenitic Stainless Steel
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Effects of Surface Modification by Means of Low-Temperature Plasma Nitriding on Wetting and Corrosion Behavior of Austenitic Stainless Steel

机译:通过低温等离子体氮化对奥氏体不锈钢润湿性和腐蚀行为的影响

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Low-temperature nitriding of austenitic stainless steels produces modified surface layers, consisting mainly of the S phase, which improve surface hardness and corrosion resistance. Because of the localized plastic deformations, owing to modified layer formation, and ion bombardment occurring during the process itself, this treatment produces also modifications of surface morphology and roughness, which can affect wettability and corrosion behavior. In this study the effects of plasma nitriding, performed using different treatment conditions, on the surface morphology and roughness, and thus on wettability and corrosion resistance, of AISI 202 specimens with different initial finishings (2D and polished finishing) were investigated. Different probe liquids, having both high (bi-distilled water and solution of 3.5% NaCl) and low (ethanol and rapeseed oil) surface tension, were employed for assessing the wetting behavior with the sessile drop method. The contact angle values for water increased markedly when nitriding was performed on polished samples, while this increase was smaller for 2D samples, and on selected specimens a hydrophobic behavior was observed. Very low contact angle values were registered using low surface tension liquids, suggesting an oleophilic behavior. Corrosion resistance in a 5% NaCl solution was assessed, and it depended on the characteristics of the nitrided specimens.
机译:奥氏体不锈钢的低温氮化产生改性表面层,主要由S期组成,可提高表面硬度和耐腐蚀性。由于局部塑性变形,由于修饰的层形成,并且在过程本身期间发生离子轰击,这种处理也会产生表面形态和粗糙度的修饰,这可能会影响润湿性和腐蚀行为。在该研究中,研究了使用不同治疗条件,在表面​​形态和粗糙度上进行的等离子体氮化的影响,以及具有不同初始聚合(2D和抛光精加工)的AISI 202样品的润湿性和耐腐蚀性和耐腐蚀性。使用具有高(双蒸馏水和3.5%NaCl的溶液)和低(乙醇和菜籽油)表面张力的不同探针液体用于评估与无柄液滴法的润湿行为。当在抛光样品上进行氮化时,水的接触角值显着增加,而2D样品的增加较小,并且在选定的样本上观察到疏水性能。使用低表面张力液体注册非常低的接触角值,表明油渗症行为。评估5%NaCl溶液中的耐腐蚀性,依赖于氮化试样的特性。

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