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MICROSTRUCTURAL CHARACTERIZATION OF DUAL PHASE STEELS BY MEANS OF ELECTRON MICROSCOPY

机译:用电子显微镜对双相钢的微观结构表征

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Dual phase (DP) steels have a low yield strength due to the soft ferrite matrix and a high tensile strength due to the hard dispersed martensite second phase islands. This makes them excellent steels for use in light weight automobile structural parts. A profound understanding of microstructure-properties relationships of advanced high strength steels is of crucial importance to the rational development of these steels. This demands the ability to perform advanced quantification of the complex multiphase microstructure, addressing the full range of microstructural properties that are relevant to the macroscopic mechanical behaviour.The ferrite-martensite microstructure will be studied by means of Light Optical Microscopy, Scanning Electron Microscopy and Electron BackScatter Diffraction. The martensite fraction in ferrite-martensite DP steels will be measured both on a FEG-SEM and a LaB6-SEM. The influence of the microscope resolution on the determination of the martensite fraction by means of the Image Quality (IQ) factor will be investigated.
机译:由于软的铁素体基体,双相(DP)钢具有较低的屈服强度,而由于硬质分散的马氏体第二相岛具有较高的拉伸强度。这使它们成为用于轻型汽车结构件的优质钢材。对高级高强度钢的微观结构-性能关系的深刻理解对于这些钢的合理开发至关重要。这要求对复杂的多相微结构进行高级定量分析的能力,以解决与宏观机械行为有关的整个微结构特性。 铁素体-马氏体的微观结构将通过光学显微镜,扫描电子显微镜和电子背散射衍射研究。铁素体-马氏体DP钢中的马氏体分数将通过FEG-SEM和LaB6-SEM进行测量。将研究显微镜分辨率对借助图像质量(IQ)因子确定马氏体分数的影响。

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