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Effect of nitrided-layer microstructure control on wear behavior of AISI H13 hot work die steel

机译:氮化层组织控制对AISI H13热作模具钢磨损行为的影响

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Gas nitriding has become a popular thermo-chemical surface treatment, which is being used to develop thermal/mechanical fatigue and wear characteristics of iron and steels. In this study, the gas nitriding of AISI H13 hot work die steel was carried out in flowing NH3 gas at 550 degrees C for 5-15 h. By adjusting the nitrogen potential ranging from 0.18 to 2.8, three types of nitrided surface layer consisting of epsilon-Fe2-3N and gamma'-Fe4N phases, gamma'-Fe4N single-phase, as well as the alpha-(Fe, N) phase had been prepared, respectively. The corresponding microstructure, hardness and thickness of the nitrided layer were systematically characterized. A contrastive analysis of influence of nitrided-layer microstructure control on wear behavior of AISI H13 hot work die steel was conducted. The nitrided surface layer consisting of epsilon-Fe2-3N and gamma'-Fe4N phases showed excellent wear resistance under loads of 100 N but poor wear properties at 300 N. The wear mechanism was revealed based on the microstructure characteristics, surface hardness and toughness of each nitrided surface layer. (C) 2017 Elsevier B.V. All rights reserved.
机译:气体氮化已成为一种流行的热化学表面处理,已被用于发展钢铁的热/机械疲劳和磨损特性。在这项研究中,AISI H13热作模具钢的气体氮化是在550℃的NH3气流中进行5-15小时。通过将氮势调节在0.18至2.8之间,可以形成由ε-Fe2-3N和γ'-Fe4N相,γ'-Fe4N单相以及α-(Fe,N)组成的三种渗氮表面层阶段已经分别准备好了。系统地表征了氮化层的相应微观结构,硬度和厚度。进行了对比分析,分析了氮化层组织控制对AISI H13热作模具钢的磨损行为的影响。由ε-Fe2-3N和γ'-Fe4N相组成的渗氮表面层在100 N的载荷下表现出优异的耐磨性,但在300 N的条件下却表现出较差的耐磨性。磨损机理是通过显微组织特征,表面硬度和韧性来揭示每个渗氮表面层。 (C)2017 Elsevier B.V.保留所有权利。

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