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Techniques to reveal the austenite grain boundaries in medium carbon microalloyed steels | Técnicas para revelar el borde de grano austenítico en acercos microaleados

机译:揭示中碳微合金钢中奥氏体晶界的技术微合金化方法中揭示奥氏体晶粒边缘的技术

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摘要

The prior austenite grain size (PAGS) exerts an important influence on the microstructures forged by continuous cooling in the steel and on their mechanical properties. Since microalloyed steels have received considerable attention in the last years and enormous difficulties have been repetitively to reveal the austenite grain boundaries in these steels, this work analyzes the different techniques effective in that sense, which enable thus an accurate determination of the PAGS. This paper presents results obtained applying different conventional techniques such us chemical etching of quenched microstructures, the application of thermal cycles that enable the formation of phases around the prior austenite grain boundaries or oxidation etching which reveals the austenite grain boundaries by the preferential accumulation of oxides. Finally, an innovative and effective technique to reveal the prior austenite grain boundaries is presented. This technique is based on the preferential transfer of matter from the grain boundaries to the surrounding austenite by complicated mechanisms such as evaporation-condensation and volume and surface diffusion of atoms.
机译:原始奥氏体晶粒尺寸(PAGS)对钢中连续冷却所形成的显微​​组织及其机械性能产生重要影响。由于微合金钢在过去几年中受到了广泛的关注,并且为揭示这些钢中的奥氏体晶界而反复地遇到了巨大的困难,因此这项工作分析了在这种意义上有效的不同技术,从而能够准确确定PAGS。本文介绍了使用不同常规技术获得的结果,例如化学蚀刻淬火后的微结构,施加热循环以使先有的奥氏体晶界周围形成相或通过氧化物的优先积累而揭示出奥氏体晶界的氧化蚀刻。最后,提出了一种新颖有效的技术来揭示先前的奥氏体晶界。该技术基于通过复杂的机制(例如原子的蒸发浓缩和体积及表面扩散)将物质从晶界优先转移到周围的奥氏体。

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