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Characterisation and Development of Nanostructured, Ultrahigh Strength, and Ductile Bainitic Steels

机译:纳米结构,超高强度和韧性贝氏体钢的表征和发展

摘要

The purpose of the present work was to characterise and further develop a novel nanostructured type of bainitic steel. Three chemical compositions were considered with different concentrations of Al and Co. The addition of Al and Co is believed to be necessary to produce the desired nanostructure at very low temperatures within a reasonable transformation time.An overview of the mechanical performance of fully bainitic steels vs other steel systems is presented in Chapter 1. An introduction to metallurgical concepts regarding the design and performance of bainite steels is presented in Chapters 1 and 2.Chapter 2 focuses on the design concepts by which the steel chemical composition was optimised, primarily on the basis of cost and the avoidance of carbide precipitation.Chapter 3 deals with the evolution of the microstructure during uniaxial tension, studied using X-ray diffraction. The effect of tempering deformed and undeformed structures, and heating to high temperatures, have also been investigated. In this context, data on bainite-containing steels in the literature are found to be rather limited.Chapter 4 is a comprehensive assessment of the mechanical behaviour of the steels subjected to a variety of processing routes. It is demonstrated that it is possible to outperform current commercially available steels.The microstructural behaviour of strain-aged and as-transformed steels during uniaxial tension studied using in situ neutron diffraction is described in Chapter 5. The evolution of texture with plastic deformation was confirmed as previously observed using conventional X-ray analysis. Evidence regarding the presence of two populations of carbon-depleted and carbon-rich austenite and their response to strain, grain rotation, anisotropy, stress partitioning between phases and the lack of work-hardening to overcome the onset of necking are presented.
机译:本工作的目的是表征和进一步开发新型的贝氏体钢纳米结构类型。考虑了三种化学成分不同的铝和钴的浓度。据信添加铝和钴对于在合理的转化时间内在非常低的温度下产生所需的纳米结构是必要的。全面贝氏体钢的机械性能与第1章介绍了其他钢系统。第1章和第2章介绍了有关贝氏体钢的设计和性能的冶金概念。第2章着重介绍了基于钢的化学成分进行优化的设计概念。第三章研究了单轴拉伸过程中显微组织的演变,并用X射线衍射研究。还研究了对变形和未变形的结构进行回火以及加热至高温的影响。在这种情况下,文献中有关贝氏体钢的数据非常有限。第四章是对经过各种加工路线的钢的机械性能的综合评估。事实证明,这是有可能超越目前市售钢材的。第五章介绍了使用原位中子衍射研究的时效和变形钢在单轴拉伸过程中的微观组织行为。证实了塑性变形引起的织构演变。如以前使用常规X射线分析所观察到的。提出了关于两个贫碳和富碳奥氏体的存在及其对应变,晶粒旋转,各向异性,相间应力分配以及缺乏克服颈缩现象的加工硬化的响应的证据。

著录项

  • 作者

    Sherif Mohamed;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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