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Improvement of Corrosion Resistance of Thermal-Sprayed Stainless Steel Coating by Addition of Some Deoxidizing Elements

机译:通过添加一些脱氧元件,改善热喷涂不锈钢涂层的耐腐蚀性

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A modified stainless steel coating, named as M-SUS here, was prepared by the air plasma spray process (APS) and the high velocity flame spray process (HVOF) and compared with a conventional stainless steel (JIS: SUS316L). Anodic polarization tests using NaCl, HC1 solutions, neutral salt spray test, and exposure test in actual tank for HC1 storage were employed for the evaluation of corrosion resistance. Structure of the coatings was investigated by use of optical microscope, scanning electron microscope, electron probe micro-analyzer, and transmission electron microscope. It was found that the coating M-SUS exhibited a remarkably superior corrosion resistance by all tests mentioned above, compared with the conventional ones. Although both of the coatings compose of gamma-austenite (. -Fe) and delta-ferrite (8-Fe) phases, the coating M-SUS reveals much less oxide with chromium and more delta-phase enriched with molybdenum. Another exposure test using a mixed acid of 25%FfNO_3 and 75%HC1 yielded that the 8-Fe was not etched out but the y-Fe vanished, that is, the 8-Fe of M-SUS has a strong anti-corrosion property. It is considered that the superior corrosion resistance of coating M-SUS is attributed to the extensive formation of anti-corrosive 8-Fe and inhibition of chromium depletion resulting from oxide formation.
机译:通过空气等离子体喷涂工艺(AP)和高速火焰喷涂工艺(HVOF)制备改进的不锈钢涂层,并由高速火焰喷涂工艺(HVOF)和常规不锈钢(JIS:SUS316L)进行比较。使用NaCl,HCl溶液,中性盐喷雾试验和HC1储存实际罐中的曝光试验的阳极偏振试验用于评估耐腐蚀性。通过使用光学显微镜,扫描电子显微镜,电子探针微分析仪和透射电子显微镜研究了涂层的结构。发现涂层M-SUS通过与常规方法相比,通过上述所有测试表现出显着的耐腐蚀性。虽然两种涂层组成γ-奥氏体(。-Fe)和δ-铁素体(8-Fe)相,但涂层M-SUS揭示了富含铬的氧化物和更多的δ相氧化物。使用25%FFNO_3和75%HCl的混合酸的另一个曝光试验产生了8-Fe未蚀刻,但Y-Fe消失,即M-Sus的8-Fe具有强烈的抗腐蚀性能。认为涂层M-SUS的卓越耐腐蚀性归因于抗腐蚀性8-Fe的广泛形成和由氧化物形成引起的含铬耗尽的抑制。

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