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TEM investigations of the structural evolution in a pearlitic steel deformed by high-pressure torsion

机译:高压扭转变形珠光体钢组织演变的TEM研究

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A fully pearlitic steel was deformed by high-pressure torsion up to very high strains, and the changes in the microstructure were determined by analytic and conventional transmission electron microscopy. The imposed strain leads to a fragmentation and an alignment of the cementite lamellae parallel to the shear plane. The electron energy-loss near-edge-fine structures of the Fe-L2,3-edge of the iron matrix and the cementite lamellae were measured with high spatial resolution. The results indicated that after high-pressure torsion, the iron matrix contains finely dispersed carbon-rich areas that do not show the electronic fingerprint of cementite. However, the refinement in microstructure leads to an enormous increase in mechanical strength.
机译:全珠光体钢在高压扭转作用下变形到很高的应变,并且通过解析和常规透射电子显微镜确定了显微组织的变化。施加的应变导致渗碳体薄片破裂并平行于剪切平面排列。以高空间分辨率测量了铁基体Fe-L2,3 边缘的电子能量损失近边缘精细结构和渗碳体薄片。结果表明,在高压扭转之后,铁基体包含了细分散的富碳区域,没有显示渗碳体的电子指纹。然而,微结构的细化导致机械强度的极大提高。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第6期|1963-1968|共6页
  • 作者单位

    Erich Schmid Institute for Materials Science Austrian Academy of Sciences Leoben Austria;

    Erich Schmid Institute for Materials Science Austrian Academy of Sciences Leoben Austria;

    Max Planck Institute for Materials Research Stuttgart Germany;

    Materialprüfungsanstalt University of Stuttgart Germany;

    Department of Phtsical Metallurgy and Materials Testing University of Leoben Austria;

    Department of Materials Physics University of Leoben Austria;

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