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作 者:Daniel Moreno Yohanan Nachmana Shimon Bashan Barak Weizman Denis Panchenko Michael Mansano Elinor Itzhak Moshe Shapira Daniel Moreno;Yohanan Nachmana;Shimon Bashan;Barak Weizman;Denis Panchenko;Michael Mansano;Elinor Itzhak;Moshe Shapira(Beth Shemesh Engines Ltd., FAA&EASA, Beth Shemesh, Israel)
机构地区:[1]Beth Shemesh Engines Ltd., FAA&EASA, Beth Shemesh, Israel
出 处:《Journal of Minerals and Materials Characterization and Engineering》2023年第5期161-171,共11页矿物质和材料特性和工程(英文)
摘 要:Nitriding of the surface in martensitic stainless steels is commonly carried out to improve their wear resistance. The process of plasma nitriding in stainless steel is influenced by two mechanisms: physical diffusion through the surface and chemical gas-metal reaction. The inner nitriding interaction involves the simultaneous penetration and formation of a solid solution, as well as the interaction of nitrogen with specific alloying elements, resulting in the development of homogeneous and heterogeneous structures. Our study concludes that the observed intergranular hydrogen embrittlement and crack formation during the surface nitridation process of AMS 5719 martensite alloy steel can be attributed to the ammonium concentration of approximately 50% at a temperature of 530˚C.Nitriding of the surface in martensitic stainless steels is commonly carried out to improve their wear resistance. The process of plasma nitriding in stainless steel is influenced by two mechanisms: physical diffusion through the surface and chemical gas-metal reaction. The inner nitriding interaction involves the simultaneous penetration and formation of a solid solution, as well as the interaction of nitrogen with specific alloying elements, resulting in the development of homogeneous and heterogeneous structures. Our study concludes that the observed intergranular hydrogen embrittlement and crack formation during the surface nitridation process of AMS 5719 martensite alloy steel can be attributed to the ammonium concentration of approximately 50% at a temperature of 530˚C.
关 键 词:Hydrogen Embrittlement Nitriding Coat Cracks Martensite Steel Surface Hardness
分 类 号:TG1[金属学及工艺—金属学]
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