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On the microstructure effects when using electropulsing versus furnace treatments while drawing inox 308L

机译:关于在使用Inox 308L时使用电脉冲与熔炉处理的微观结构效应

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In the present work, microstructure and texture evolution in a commercial 308L stainless steel wire is assessed by comparing several electropulsing configurations and thermal annealing treatments performed during and after a single pass wire drawing process. In this context, the objective is to determine if the electropulsing brings significant differences on the material microstructure with respect to a conventional annealing treatment. To this end, electron backscattered diffraction was used to analyze the microstructure changes in all the studied cases. The results indicate that recrystallization and detwinning are drastically accelerated when in situ electropulsing treatment is applied in the specimen during its drawing. Moreover, electropulsing or large times of furnace treatments after the wire drawing are found to enhance the material conductivity compared to the in situ electropulsing treatment during the wire drawing. Finally, differential scanning calorimetry and material resistivity are performed to analyze the thermal events in a meso/micro scale. Accordingly, the bulk temperature for the electropulsed specimens is assumed to be much higher than the bulk temperature recorded at the surface of the specimen.
机译:在本工作中,通过比较单道拉丝过程中和之后进行的几种电脉冲配置和热退火处理,评估了商用308L不锈钢丝的微观结构和组织演变。在本文中,目的是确定相对于常规退火处理,电脉冲是否在材料微观结构上带来显着差异。为此,在所有研究案例中,均采用电子背散射衍射来分析微观结构的变化。结果表明,在拉伸过程中对样品进行原位电脉冲处理后,其重结晶和脱晶作用得到了极大的促进。而且,发现与拉丝过程中的原位电脉冲处理相比,拉丝之后的电脉冲或大量的炉子处理可以提高材料的电导率。最后,执行差示扫描量热法和材料电阻率以中/微尺度分析热事件。因此,假设电脉冲试样的体温比在试样表面记录的体温高得多。

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