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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Excellent enhancement of corrosion properties of Fe-9Al-30Mn-1.8C alloy in 3.5% NaCl and 10% HCl aqueous solutions using gas nitriding treatment
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Excellent enhancement of corrosion properties of Fe-9Al-30Mn-1.8C alloy in 3.5% NaCl and 10% HCl aqueous solutions using gas nitriding treatment

机译:采用气体氮化处理,可显着提高Fe-9Al-30Mn-1.8C合金在3.5%NaCl和10%HCl水溶液中的腐蚀性能

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The as-quenched Fe-9.0Al-30Mn-1.8C (in wt.%) alloy gas nitrided at 550 degrees C for 4 h show excellent corrosion resistance investigated in 3.5% NaCl and 10% HCl solutions. Owing to the high corrosion resistance components, the gas-nitrided layer consists mainly of AlN with a slight amount of Fe3N and Fe4N identified by grazing incidence X-ray diffraction technique. Therefore, the pitting potential and corrosion potential of the nitrided sample are + 1860 mV and + 30 mV, respectively. Surprisingly, it is worthy to be pointed out that the nitrided and then tensile-tested alloy reveals very shallow in fracture depth and the excellent lattice coherence is shown between the nitrided layer and the substrate. Moreover, due to the extremely high nitrogen concentration (about 17-18 wt.%) at stretched surface, the corrosion resistance of present gas-nitrided and then tensile-tested alloy is superior to those optimally gas-nitrided or plasma-nitrided high-strength alloy steels, as well as martensitic stainless steels. The nitrided and then stretched alloy still retains a satisfactory corrosion resistance (E-pit = + 890 mV; E-corr = + 10 mV). Furthermore, only nanoscale-size pits were observed on the corroded surface after being immersed in 10% HCl for 24 h. (C) 2015 Elsevier B.V. All rights reserved.
机译:在550摄氏度下氮化4小时的淬火Fe-9.0Al-30Mn-1.8C(wt。%)合金气体在3.5%NaCl和10%HCl溶液中表现出优异的耐腐蚀性。由于具有高的耐腐蚀性成分,该气体氮化层主要由AlN组成,并通过掠入射X射线衍射技术鉴定出少量的Fe3N和Fe4N。因此,氮化样品的点蚀电位和腐蚀电位分别为+ 1860 mV和+ 30 mV。出乎意料的是,值得指出的是,经氮化并随后进行拉伸测试的合金显示出非常浅的断裂深度,并且在氮化层和基底之间显示出优异的晶格连贯性。此外,由于在拉伸表面的氮含量极高(约17-18 wt。%),目前经气体渗氮,然后经过拉力测试的合金的耐蚀性优于经过最佳气体渗氮或等离子渗氮的高合金。高强度合金钢以及马氏体不锈钢。氮化后再拉伸的合金仍保持令人满意的耐腐蚀性(E-pit = + 890 mV; E-corr = + 10 mV)。此外,浸在10%HCl中24小时后,在腐蚀的表面上仅观察到纳米级的凹坑。 (C)2015 Elsevier B.V.保留所有权利。

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