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Improvement Of Erosion And Erosion-corrosion Resistance Of Aisi420 Stainless Steel By Low Temperature Plasma Nitriding

机译:低温等离子渗氮改善Aisi420不锈钢的冲蚀和耐蚀性能

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Plasma nitriding experiments were carried out with DC-pulsed plasma in 25% N_2 + 75% H_2 atmosphere at low temperature (350 ℃) and normal temperature (550 ℃) for 15 h. The composition, microstructure, microhardness profiles, residual stress profiles and electrochemical impedance spectrum analyses of the nitrided samples were examined. The influence of plasma nitriding on the erosion and erosion-corrosion resistance of AISI 420 martensitic stainless steel was investigated using a jet solid particle erosion tester and a slurry erosion-corrosion tester.rnResults showed that the 350 ℃ nitriding layer was dominated by ε-Fe_3N and α_N phase, a supersaturated nitrogen solid solution. However, nitrogen would react with Cr in the steel to form CrN precipitates directly during 550 ℃ nitriding, which would lead to the depletion of Cr in the solid solution phase of the nitrided layer. Both 350 and 550 ℃ plasma nitriding could improve the erosion resistance of AISI420 stainless steel under dry erosion, but the former showed better results. In both neutral and acid environment, while the erosion-corrosion resistance of AISI 420 was improved by means of 350 ℃ nitriding, it was decreased through 550 ℃ nitriding.
机译:在25%N_2 + 75%H_2气氛中,在低温(350℃)和常温(550℃)下,用直流脉冲等离子体进行了15 h的等离子体氮化实验。检查了渗氮样品的组成,显微组织,显微硬度,残余应力和电化学阻抗谱。用喷射固体颗粒腐蚀仪和浆液腐蚀腐蚀仪研究了等离子渗氮对AISI 420马氏体不锈钢腐蚀和腐蚀腐蚀性能的影响。结果表明,在350℃渗氮层中ε-Fe_3N占主导α_N相,一种过饱和的氮固溶体。但是,氮会在550℃的氮化过程中直接与钢中的Cr反应形成CrN沉淀,这会导致Cr在氮化层的固溶相中耗竭。 350和550℃的等离子体渗氮均可提高AISI420不锈钢在干腐蚀下的耐腐蚀性,但前者表现出更好的效果。在中性和酸性环境下,虽然AISI 420的耐蚀性通过350℃的氮化处理得以改善,但通过550℃的氮化处理却降低了。

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