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Hardenability Characterization and Microstructural Evolution in Heavy Gauge Plate Steels

机译:重型板钢中的淬透性表征和微观结构演化

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High strength heavy gauge plate steels for structural applications are used in the construction of buildings, bridges, sport stadia, oil rigs, power plants, etc. In order to reach the desired mechanical properties, these steels are subjected to a quenching process followed by a tempering treatment. However, different cooling rates are obtained throughout the thickness of the material during quenching and several grades do not fully harden to martensite. In the present study, three alloys containing 0.17 wt pct carbon and different amounts of molybdenum and vanadium were used. The objective was to characterize hardenability by evaluating the influence of alloying on hardness and microstructure. The Jominy End-Quench test was used to assess hardenability and scanning electron microscopy was conducted for microstructural characterization. The effects of grain size and alloying content on hardenability are discussed for each alloy.
机译:用于结构应用的高强度重型板钢用于建筑物,桥梁,体育体育场,石油钻井平台,发电厂等。为了达到所需的机械性能,这些钢经受淬火过程,然后进行淬火过程回火治疗。然而,在淬火期间在材料的整个厚度厚度下获得不同的冷却速率,并且几种等级不会完全硬化到马氏体。在本研究中,使用含有0.17wt PCT碳和不同量的钼和钒的三种合金。目的是通过评估合金化对硬度和微观结构的影响来表征淬透性。 Jominy终骤冷试验用于评估淬透性,进行扫描电子显微镜,以进行微观结构表征。对每个合金讨论了晶粒尺寸和合金化含量对淬透性的影响。

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