首页> 外文期刊>Journal of Materials Engineering and Performance >Replacement of Nitrided 33CrMoV Steel with ESR Hot Work Tool Steels for Motorsport Applications: Microstructural and Fatigue Characterization
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Replacement of Nitrided 33CrMoV Steel with ESR Hot Work Tool Steels for Motorsport Applications: Microstructural and Fatigue Characterization

机译:用ESR热工作工具钢更换氮化33crmov钢,用于摩托车应用:微观结构和疲劳特征

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摘要

In this work tensile strength, fatigue resistance and fracture toughness of two electroslag remelted (ESR) tool steels and of 33CrMoV12 ESR steel (both in quenched and tempered condition, as well as nitrided condition) were evaluated. The role of hardness, residual stresses and inclusion sizes on the fatigue behavior was investigated. Tool steels have a tensile strength between about 1900 and 2300 MPa, fracture toughness between 35 and 33 MPa root m, while fatigue strength ranges between 725 and 992 MPa. The tensile strength and fracture toughness of the 33CrMoV12 ESR are, respectively, 1365 MPa and about 150 MPa root m. Nitriding induces a significant increase in fatigue strength from 560 to 980 MPa. These results highlight that appropriate ESR tool steels could replace nitrided steels.
机译:在该工作的拉伸强度,两种电棒熔融(ESR)工具钢和33Crmov12 ESR钢的疲劳电阻和断裂韧性(淬灭和淬火条件下,以及氮化条件)进行了评价。 研究了硬度,残余应力和包涵体对疲劳行为的作用。 工具钢的拉伸强度在约1900和2300mPa之间,35至33MPa根部M之间的断裂韧性,而疲劳强度范围在725和992MPa之间。 33CrMov12 ESR的拉伸强度和断裂韧性分别为1365MPa和约150MPa根部m。 氮化诱导疲劳强度从560升至980MPa的显着增加。 这些结果强调适当的ESR工具钢可以取代氮化钢。

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