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Mechanical Properties and Microstructural Evolution of Bimetal 1050/Al2O3/5083 Composites Fabricated by Warm Accumulative Roll Bonding

机译:热累积辊轧结合制备双金属1050 / Al2O3 / 5083复合材料的力学性能和微观结构演变

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In this study, a warm accumulative roll bonding process was used to produce a 1050/5% Al2O3/5083 composite from AA1050 and AA5083 sheets. Firstly, the raw materials were roll-bonded and then rolled up to five accumulative rolling cycles by preheating for 5 min at 280 degrees C before each cycle. The mechanical properties of the ARBed bimetals were evaluated in comparison with 1050/5% Al2O3 and 5083/5% Al2O3 roll-bonded single-metal metal matrix composites ( MMCs). It was found that two different layers of the bimetal sheet ( 1050/5% Al2O3/5083 composite) were deformed in a nearly identical way during the first three cycles. After that, the 5083 layers started necking. The strength of the bimetal samples was superior to the average of these two single-metal MMCs. Furthermore, the strength and ductility of the ARBed bimetal improved by ARB cycles. Finally, the fracture surfaces of the bimetal composite were studied at all ARB cycles by scanning electron microscopy.
机译:在这项研究中,采用热累积辊压粘合工艺从A1050和AA5083板材生产1050/5%Al2O3 / 5083复合材料。首先,将原料辊压结合,然后在每个循环之前通过在280摄氏度下预热5分钟将其卷起至五个累积轧制循环。与1050/5%Al2O3和5083/5%Al2O3辊压单金属金属基复合材料(MMC)相比,评估了ARBed双金属的机械性能。发现在前三个循环中,双金属薄板的两个不同层(1050/5%Al2O3 / 5083复合材料)以几乎相同的方式变形。之后,5083层开始缩颈。双金属样品的强度优于这两个单金属MMC的平均值。此外,ARB循环提高了ARBed双金属的强度和延展性。最后,通过扫描电子显微镜研究了在所有ARB循环下双金属复合材料的断裂表面。

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