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The relationship between the fracture toughness and grain boundary characteristics in hot-dip galvanized zinc coatings

机译:热浸镀锌锌层的断裂韧性与晶界特征的关系

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摘要

This publication presents an experimental study on the relation between the grain boundary (GB) characteristics and the intergranular cracking resistance in a hot dip zinc coating. The cracking was studied using in situ tensile tests in a scanning electron microscope on small tensile samples of a hot dip galvanized steel sheet. In situ testing offered a series of advantages like monitoring the kinematical evolution of cracking without unloading, or making micrographs and OIM imaging on the same area of the tensile sample. The grain boundaries were classified into random and special boundaries (respectively Low angle boundaries and Coincidence site lattice-CSL boundaries). These special boundaries which account for 3.5% of the whole boundaries clearly show better cracking resistance than the random boundaries. The only special boundaries which present cracking failure are in an orientation with their normal direction close to the tensile direction, i.e. submitted to a maximum effective stress. The grain boundaries characteristics are obtained from EBSD individual orientation measurements.
机译:该出版物提出了热浸镀锌层中晶界(GB)特性与耐晶间开裂性之间关系的实验研究。在扫描电子显微镜中使用原位拉伸试验对热浸镀锌钢板的小拉伸样品进行了研究。原位测试提供了一系列优势,例如在不卸荷的情况下监控裂纹的运动演变,或者在拉伸样品的相同区域进行显微照片和OIM成像。晶界分为随机边界和特殊边界(分别为低角度边界和重合点晶格-CSL边界)。这些占整个边界的3.5%的特殊边界显然比随机边界具有更好的抗裂性。呈现开裂破坏的唯一特殊边界是在其法线方向接近拉伸方向的方向上,即承受最大有效应力的方向。晶界特征是从EBSD单个取向测量获得的。

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