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Influence of salt bath nitrocarburizing and post-oxidation process on surface microstructure evolution of 17-4PH stainless steel

机译:盐浴碳氮共渗和后氧化工艺对17-4PH不锈钢表面组织演变的影响

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摘要

The effect of Quench-Polish-Quench complex salt bath heat-treatment (QPQ) on surface microstructure of the 17-4PH stainless steel (SS) was investigated. A bright zone (compound ε-Fe{sub}2(N,C)) is formed at the outermost surface of the nitrocarburized sample, followed by a zone (mixture Fe{sub}3N/Fe4N/CrN/α-Fe) which is slightly etched. A thin oxides zone (Fe{sub}3O{sub}4/FeO) is formed at the outer surface of the post-oxidized sample, followed by a zone (mixture Cr{sub}2N/ε-Fe{sub}2(N,C) and the inner zone (CrN/α{sub}N). A significantly high amount of oxygen is found at the outermost surface of the post-oxidized sample. The push-effect of oxygen leads to the peak nitrogen concentration, while the peak carbon concentration at the front of the nitrided layer is due to the push-effect of nitrogen. High microhardness values (>1200 HV{sub}0.1) is obtained at the surface and then drops abruptly at the case/core interface to substrate microhardness value for both of the nitrocarburized and post-oxidized samples.
机译:研究了Quench-Polish-Quench复合盐浴热处理(QPQ)对17-4PH不锈钢(SS)表面组织的影响。在氮碳共渗样品的最外表面形成一个亮区(化合物ε-Fe{sub} 2(N,C)),然后是一个区(混合物Fe {sub} 3N / Fe4N / CrN /α-Fe)略有蚀刻。在后氧化样品的外表面形成一个薄的氧化物区(Fe {sub} 3O {sub} 4 / FeO),然后形成一个区(混合物Cr {sub} 2N /ε-Fe{sub} 2( N,C)和内部区域(CrN /α{sub} N)。在后氧化样品的最外层表面发现大量氧气,氧气的推动作用导致峰值氮气浓度,而在氮化层前部的峰值碳浓度是由于氮的推动作用,在表面获得了较高的显微硬度值(> 1200 HV {sub} 0.1),然后在壳/核的界面处突然下降。氮碳共渗和后氧化样品的基材显微硬度值。

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