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Microstructure and mechanical properties of laminated Al-Cu-Mg composite fabricated by accumulative roll bonding

机译:通过蓄激轧制粘合制造的层压Al-Cu-Mg复合材料的组织和力学性能

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摘要

In the present research, laminated Al-Cu-Mg composite was processed by the accumulative roll bonding (ARB) method. Initially, aluminium, copper and magnesium strips were alternatively stacked together. Then these stacked strips were rolled at 150 degrees C up to five ARB cycles. The microstructure of composites was studied by optical microscopy. Micro-hardness and tensile tests were conducted to evaluate mechanical properties of the processed composites. After the first cycle of ARB, it was observed that copper and magnesium layers were necked and fractured. With increasing ARB up to four cycles, laminated Al-Mg-Cu composite with homogeneous distribution of fragmented reinforcement in matrix was produced. It was observed that with increasing ARB up to four cycles the strength and micro-hardness of fabricated composites increased and elongation decreased at the same time. These differences in mechanical behaviour have been attributed to the microstructural aspects of the individual layers and the fragmentation processes.
机译:在本研究中,通过累积辊粘合(ARB)方法加工层压的Al-Cu-Mg复合物。最初,铝,铜和镁条替代地堆叠在一起。然后将这些堆叠的条带以150度C滚动至5个ARB周期。通过光学显微镜研究复合材料的微观结构。进行微硬度和拉伸试验以评估加工复合材料的机械性能。在仲裁液的第一个循环之后,观察到铜和镁层被缩放和裂缝。随着最多四个循环的增加,制备了具有基质中碎片增强件的层压Al-Mg-Cu复合材料。观察到,随着速率的增加,最大四个循环,制造复合材料的强度和微硬度同时增加和伸长率。机械行为的这些差异归因于各个层的微观结构方面和碎片过程。

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