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Research on fracture mechanism of matrix-type high speed steel in cold forging

机译:冷锻基质型高速钢断裂机理研究

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The failure mechanism of YXR3, a kind of matrix-type high speed steel (HSS), which is widely used in cold forging tooling, was studied in this paper. Through metallographic analysis of YXR3 in different conditions, such as before and after heat treatment and mechanical tests, the metallurgical structures and changes of the steel were analyzed. The failure analysis was conducted to specimens of uniaxial tension, low cycle fatigue, and impact tests by observing the macroscopic and microscopic fractographs and fracture morphology features of YXR3 steel in different loading conditions. The morphology and distribution of all phases in YXR3 steel were clearly found in the SEM micrographs by EBSD (Electron Back-Scattering Diffraction), and the major cracking modes and crack origins were investigated by observing the microcracks, which would be beneficial for finding out the fracture mechanism of YXR3 steel from microscopic perspective. The results of this study could help the tool designer to improve the tool design and manufacture which can avoid the abnormal appearance of tool fracture during cold forging.
机译:本文研究了YXR3,一种基质型高速钢(HSS),一种基质型高速钢(HSS)的故障机理,本文研究了冷锻造工具。通过在不同条件下的YXR3的金相分析,例如热处理和机械测试之前和之后,分析了冶金结构和钢的变化。通过观察不同负载条件下的YXR3钢的宏观和微观特征,对单轴张力,低循环疲劳和抗冲击试验进行了故障分析。通过EBSD(电子背散射衍射)清楚地区发现了YXR3钢中所有阶段的形态和分布,并通过观察微裂纹来研究主要的裂缝模式和裂纹起源,这将有利于发现微观视角下YXR3钢的断裂机理。本研究的结果可以帮助工具设计师改善工具设计和制造,可以避免在冷锻期间替换工具骨折异常外观。

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