Trojanová Zuzanka, Džugan Ján, Halmešová Kristýna, Németh Gergely, Minárik Peter, Lukáč Pavel, Bohlen Jan
Department of Physics of Materials, Faculty of Mathematics and Physics, Charles University, Ke Karlovu 5, 121 16 Praha 2, Czech Republic.
COMTES FHT a.s., Průmyslová 995, 334 41 Dobřany, Czech Republic.
Materials (Basel). 2018 Jan 5;11(1):73. doi: 10.3390/ma11010073.
Deformation behaviour of rolled AZ31 sheets that were subjected to the accumulative roll bonding was investigated. Substantially refined microstructure of samples was achieved after the first and second pass through the rolling mill. Sheets texture was investigated using an X-ray diffractometer. Samples for tensile tests were cut either parallel or perpendicular to the rolling direction. Tensile tests were performed at temperatures ranging from room temperature up to 300 °C. Tensile plastic anisotropy, different from the anisotropy observed in AZ31 sheets by other authors, was observed. This anisotropy decreases with an increasing number of rolling passes and increasing deformation temperature. Grain refinement and texture are the crucial factors influencing the deformation behaviour.
研究了经过累积轧制粘结的轧制 AZ31 板材的变形行为。在第一次和第二次通过轧机后,样品实现了显著细化的微观结构。使用 X 射线衍射仪研究板材织构。拉伸试验样品沿轧制方向平行或垂直切割。在从室温到 300°C 的温度范围内进行拉伸试验。观察到与其他作者在 AZ31 板材中观察到的各向异性不同的拉伸塑性各向异性。这种各向异性随着轧制道次的增加和变形温度的升高而降低。晶粒细化和织构是影响变形行为的关键因素。