首页> 外文会议>International conference on textures of materials;ICOTOM 16 >Texture evolution in thermomechanically control processed multiphase medium carbon microalloyed steel: Forged, rolled and low cycle fatigued microstructures
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Texture evolution in thermomechanically control processed multiphase medium carbon microalloyed steel: Forged, rolled and low cycle fatigued microstructures

机译:热力学控制的多相中碳微合金钢的热力学控制:锻造,轧制和低循环疲劳组织

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A ferrite-bainite-martensite (F-B-M) microstructure was produced in a medium carbon microalloyed steel through two routes, namely, low temperature finish forging or rolling, followed by a two step cooling and annealing. The texture formed in control forged and rolled material after two step cooling followed by annealing (TSCA) was examined. Texture investigation was also carried out after low cycle fatigue testing at low and high total strain amplitudes. Transmission electron microscopy was employed to study the microstructural evolution. Fatigue tested F-B-M microstructure obtained through the rolling route was stable up to a total strain amplitude of 0.6%. This paper reports the evolution of texture and microstructure in two-step cooled F-B-M microstructure and their stability during fatigue loading.
机译:在中碳微合金钢中,通过两种途径,即低温精锻或轧制,然后进行两步冷却和退火,生产出铁素体-贝氏体-马氏体(F-B-M)的组织。在两步冷却然后退火(TSCA)之后,检查在对照锻造和轧制材料中形成的织构。在低和高总应变幅度下进行低周疲劳测试后,还进行了织构研究。透射电子显微镜用于研究组织的演变。通过轧制路线获得的经过疲劳测试的F-B-M显微组织在高达0.6%的总应变幅度下均保持稳定。本文报道了两步冷却的F-B-M显微组织中织构和显微组织的演变及其在疲劳载荷下的稳定性。

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