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Void Nucleation and Growth in Dual-Phase Steel 600 during Uniaxial Tensile Testing

机译:单相拉伸试验中双相钢600的空核和长大

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摘要

Commercial dual-phase (DP) steel in sheet form and comprised of ferrite, martensite, and bainite was subjected to uniaxial tension up to fracture. The damage characteristics were studied through extensive quantitative metallography and scanning electron microscope (SEM) observations of polished sections and fracture surfaces of failed specimens. The observed void nucleation mechanisms include nucleation at the martensite/ferrite interface or triple junction (most predominant), nucleation due to the cracking of martensite particles, and nucleation at the inclusions. The void characteristics in terms of area fraction, void density, void size ranges, and void orientations were analyzed as a function of thickness strain from various regions of the different uniaxial tensile test specimens taken to fracture. The damage analysis suggests that the void nucleation occurs during the entire deformation process with an almost constant rate and this rate reduces before fracture. A nucleation strain of 0.15 has been estimated for this material.
机译:由铁素体,马氏体和贝氏体组成的片状商用双相(DP)钢经受单轴拉伸直至断裂。通过广泛的定量金相学和扫描电子显微镜(SEM)观察失败的试样的抛光部分和断裂表面,研究了其损伤特征。观察到的空洞形核机理包括在马氏体/铁素体界面或三重结(最主要)处的形核,由于马氏体颗粒破裂而形成的形核以及在夹杂物处的形核。分析了从不同单轴拉伸试样的各个区域断裂得到的,根据面积分数,空隙密度,空隙尺寸范围和空隙取向的空隙特性与厚度应变的关系。损伤分析表明,空洞形核在整个变形过程中以几乎恒定的速率发生,并且该速率在断裂之前减小。该材料的成核应变估计为0.15。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第13期|3117-3127|共11页
  • 作者单位

    Materials Science and Engineering Department McMaster University Hamilton ON L8S4L7 Canada;

    Mechanical Design and Production Department Cairo University Giza 12316 Egypt;

    Mechanical Engineering Department McMaster University Hamilton ON L8S4L7 Canada;

    Materials Science and Engineering Department McMaster University Hamilton ON L8S4L7 Canada;

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