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Microstructural engineering and strength-impact toughness prediction in ultra-low carbon bainitic steel

机译:超低碳贝氏体钢中的微观结构和强度 - 冲击韧性预测

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摘要

The strength-toughness combination of an ultra-low carbon, low alloyed 'air-cooled' steel has been enhanced by developing and refining the granular bainite (GB) structure. Suitable alloy design and thermo-mechanical treatment involving forging, austenitisation (950-1150 degrees C) and air-cooling resulted in the formation of GB matrix along with small islands of martensite-austenite constituents and allotriomorphic ferrite grains. Microstructural characterisation and phase transformation behaviour were studied by scanning electron microscopy and electron backscattered diffraction analysis. The effect of microstructural parameters on the strength-impact toughness combination was investigated. The steel showed an exceptionally low yield ratio, which is beneficial for seismic resistance application.
机译:通过显影和精炼粒状贝氏体(GB)结构,通过显影和精炼的超低碳,低合金化的“风冷”钢的强度 - 韧性组合。 适用于锻造的合金设计和热机械处理,奥氏体炎(950-1150℃)和空气冷却导致GB基质的形成以及马氏体 - 奥氏体成分和同种异体铁素体晶粒的小岛。 通过扫描电子显微镜和电子背散射衍射分析研究了微观结构表征和相变性能。 研究了微观结构参数对强度冲击韧性组合的影响。 钢呈异常低的屈服比,这对地震抗性应用有益。

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