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EFFECT OF VANADIUM AND ALUMINUM GRAIN REFINING TREATMENT ON STEEL MACHINABILITY

机译:钒和铝晶粒精制处理对钢加工的影响

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The effects of vanadium and aluminum grain refining treatment on the machinability of hot rolled engineering plain carbon and low alloy 4140 steels were investigated using the critical tool wear method during turning of several bars. The flank wear of the machining tool was accurately measured after each machined bar using an SEM. The microstructure and non-metallic inclusions in steel bars and machining chips were characterized using micro-hardness measurements, optical microscopy, and automated SEM/EDX inclusion analysis. High resolution transmission electron microscopy (TEM) was used to characterize MnS/metal matrix boundary in severely deformed chips. Worn machining tools were SEM/EDX analyzed to characterize deposits which were located on the tool surface. The investigation showed that aluminum treated steels exhibit better machinability than vanadium treated steels in both plain carbon and 4140 steel grades. The combined effects of hardness, microstructure and precipitates on the steel machinability are presented and discussed.
机译:使用临界工具磨损方法在几个条后,研究了钒和铝晶粒精制处理对热轧工程普通碳和低合金4140钢的可加工性的影响。使用SEM的每个机加工杆后精确地测量加工工具的侧面磨损。使用微硬度测量,光学显微镜和自动化SEM / EDX夹杂物分析表征钢筋和加工芯片中的微观结构和非金属夹杂物。高分辨率透射电子显微镜(TEM)用于表征严重变形芯片的MNS /金属矩阵边界。磨损的加工工具是SEM / EDX分析,以表征位于工具表面上的沉积物。该研究表明,铝处理钢在普通碳和4140钢等级中的钒处理钢的钒处理性更好。提出和讨论了硬度,微观结构和沉淀物对硬度,微观结构和沉淀性的综合影响。

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