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首页> 外文期刊>Journal of Materials Engineering and Performance >Microstructure Evolution During Continuous Cooling in AISI 5140 Steel Processed by Induction Heating Chromizing
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Microstructure Evolution During Continuous Cooling in AISI 5140 Steel Processed by Induction Heating Chromizing

机译:通过感应加热铬化加工连续冷却过程中连续冷却过程中的微观结构演变

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摘要

In this study, induction heating chromizing (IHC) and box-type furnace heating chromizing (BFHC) were conducted on commercial AISI 5140 steels, respectively. Microstructure, microhardness and wear resistance of the chromized samples were characterized. The results show that the IHC samples have thicker Cr coating layer and stronger interface bond due to pre-compressive stress among the packed powders. Three kinds of microstructures including alloyed cementite (AC-layer), fine pearlite zone (FP-zone) and carbonpoor zone (CP-zone) are formed near the interface in the IHC samples. The main reason given for this is that different contents of Cr and C have different effects on pearlite phase and morphology. The IHC sample shows better wear properties due to its stronger interface bonding strength than that of the BFHC sample. The formation mechanism of CP-zone and its influences on microhardness and wear resistance are also discussed.
机译:在该研究中,在商业AISI 5140钢上分别在商业AISI 5140钢上进行感应加热铬化(IHC)和箱式炉加热镀铬(BFHC)。 特征在于微观结构,微硬度和耐磨性。 结果表明,由于填充粉末中的预压缩应力,IHC样品具有较厚的Cr涂层和较强的界面粘合。 在IHC样品中的界面附近形成三种微观结构,包括合金渗碳晶酯(AC层),细珠光体区(FP-ZONE)和碳源区(CP区)。 为此提供的主要原因是Cr和C的不同含量对珠光体相和形态产生了不同的影响。 由于其较强的界面粘合强度而不是BFHC样品,IHC样品显示出更好的磨损性能。 还讨论了CP区的形成机制及其对微硬度和耐磨性的影响。

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