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首页> 外文期刊>Scientific reports. >Nanomechanical characterization of nanostructured bainitic steel: Peak Force Microscopy and Nanoindentation with AFM
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Nanomechanical characterization of nanostructured bainitic steel: Peak Force Microscopy and Nanoindentation with AFM

机译:纳米结构贝氏体钢的纳米机械表征:峰值力显微镜与AFM纳米狭窄

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摘要

The full understanding of the deformation mechanisms in nanostructured bainite requires the local characterization of its mechanical properties, which are expected to change from one phase, bainitic ferrite, to another, austenite. This study becomes a challenging process due to the bainitic nanostructured nature and high Young’s modulus. In this work, we have carried out such study by means of the combination of AFM-based techniques, such as nanoindentation and Peak Force Quantitative Nanomechanical Mapping (PF-QNM) measurements. We have addressed critically the limits and advantages of these techniques and been able to measure some elastoplastic parameters of both phases. Specifically, we have analyzed by PF-QNM two nanostructured bainitic steels, with a finer and a coarser structure, and found that both phases have a similar Young’s modulus.
机译:全面了解纳米结构贝氏体中的变形机制需要其机械性能的局部表征,这预计将从一相,贝氏体铁氧体转变为另一种奥氏体。由于贝氏体纳米结构性和高杨氏模量,这项研究成为一个具有挑战性的过程。在这项工作中,我们通过基于AFM的技术的组合进行了这种研究,例如纳米indentation和峰值力定量纳米机械映射(PF-QNM)测量。我们已经解决了这些技术的限制和优点,并且能够测量两个阶段的一些弹性塑性参数。具体而言,我们已经通过PF-QNM两个纳米结构贝氏体钢分析,具有更精细和更粗糙的结构,并且发现两个阶段具有相似的杨氏模量。

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