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The Influence of Reheating Profile on the Final Microstructure of the Semi-Solid S600 and K100 Tool Steels

机译:再加热谱对半固体S600和K100工具钢的最终微观结构的影响

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Semi-solid processing of steel alloys has attracted the attention of researchers recently. Many attempts have been carried out for the industrialization of the process. High temperature nature of the steel semi-solid processing compared to other semi-solid alloys has been a problem in studying different process parameters like reheating parameters and microstructures continuously and simultaneously. In this research in-process and final microstructures of semi-solid steel alloys M2 and K100 under different reheating cycles and different parameters have been studied. All experiments are carried out in a resistance furnace and in an argon controlled atmosphere to avoid any oxidation and decarburization. During the reheating cycle, surface and core temperature of the samples have been recorded and compared with the oven temperature. The result of such a comparison can be used in other experiments where there is no access to sample for its temperature control or it is very difficult to measure the sample temperature like in rheology tests. Partial reheating and quenching has been used to determine the in-process microstructure of the alloy. For each set of experiments particle shape factor has been derived and its relation to other parameters has been studied. Finally appropriate reheating cycle and parameters for each alloy has been determined.
机译:最近的钢结构的半固体加工引起了研究人员的注意。许多尝试已经开展了该过程的工业化。与其他半固体合金相比,钢半固体加工的高温性是研究不同工艺参数的问题,如连续和同时再加热参数和微观结构。在该研究中,研究了不同再加热循环的半固体钢合金M2和K100的过程和最终微观结构,并研究了不同的参数。所有实验均在电阻炉中和氩气控制气氛中进行,以避免任何氧化和脱碳。在再加热循环期间,样品的表面和核心温度已经记录并与烘箱温度进行了比较。这种比较的结果可以在其他实验中使用,其中没有获得样品的温度控制,否则难以测量样品温度,如流变学试验。部分再加热和淬火已用于确定合金的过程中的微观结构。对于每组实验,已经得出颗粒形状因子,并研究了与其他参数的关系。最后确定了适当的再加热循环和每个合金的参数。

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