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Application of continual annealing and roll bonding (CAR) process for manufacturing Al-Zn multilavered composites

机译:连续退火和轧制(CAR)工艺在制造Al-Zn多层复合材料中的应用

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In this study, an aluminium-zinc composite was produced for the first time by using a continual annealing and roll-bonding (CAR) process. A composite with homogeneous distribution of fragmented zinc layers in aluminium matrix was produced after ten CAR cycles. The results demonstrate that tensile strength of the final composites increases up to 410 MPa, which is about 4 times higher than those of initial aluminium and zinc sheets. However, elongation of the composite reduced down to 4% after ten CAR cycles. The fracture surfaces of the tensile samples were observed by scanning electron microscope (SEM) to evaluate the failure mode. Observations reveal that the failure mode in CAR-processed composites is a typical ductile fracture which shows deep dimples in samples with few CAR cycles, while the failure mode was shear ductile fracture with shallow and elongated dimples in samples with ten CAR cycles.
机译:在这项研究中,铝锌复合材料是通过连续退火和轧制(CAR)工艺首次生产的。经过十次CAR循环后,制得了具有均匀分布的破碎锌层的铝基复合材料。结果表明,最终复合材料的拉伸强度提高到410 MPa,比初始铝和锌板的拉伸强度高约4倍。但是,十个CAR循环后,复合材料的伸长率降低至4%。通过扫描电子显微镜(SEM)观察拉伸样品的断裂表面以评估破坏模式。观察结果表明,CAR处理的复合材料的破坏模式是典型的延性断裂,在几个CAR循环的样品中显示出深的凹坑,而破坏模式是剪切延性断裂,在十个CAR循环的样品中出现了浅而细长的凹坑。

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