首页> 外文期刊>Archives of Metallurgy and Materials >FABRICATION AND MECHANICAL PROPERTIES OF A NANOSTRUCTURED COMPLEX ALUMINUM ALLOY BY THREE-LAYER STACK ACCUMULATIVE ROLL-BONDING
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FABRICATION AND MECHANICAL PROPERTIES OF A NANOSTRUCTURED COMPLEX ALUMINUM ALLOY BY THREE-LAYER STACK ACCUMULATIVE ROLL-BONDING

机译:三层堆积累积轧制法制备纳米结构复合铝合金的力学性能

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摘要

A multi-layered complex aluminum alloy was successfully fabricated by three-layer stack accumulative roll bonding(ARB) process. The ARB using AA1050 and AA5052 alloy sheets was performed up to 7 cycles at ambient temperature without lubrication. The specimen processed by the ARB showed a multi-layer aluminum alloy sheet in which two aluminum alloys are alternately stacked. The grain size of the specimen decreased with the number of ARB cycles, became about 350nm in diameter after 7cycles. The tensile strength increased with the number of ARB cycles, after 6c it reached 281MPa which is about twice higher than that of the starting material. The microstructures and mechanical properties of a three-layer AA1050/AA5052 alloy fabricated by the ARB were compared to those of the conventional ARB-processed material.
机译:通过三层堆叠累积辊压结合(ARB)工艺成功制备了多层复合铝合金。使用AA1050和AA5052合金薄板的ARB在环境温度下进行了多达7个循环,无需润滑。由ARB处理的样品显示出多层铝合金板,其中两种铝合金交替堆叠。样品的晶粒尺寸随着ARB循环次数的增加而减小,经过7个循环后直径变为350nm。抗张强度随ARB循环次数的增加而增加,在6c后达到281MPa,比起始材料高约两倍。将由ARB制造的三层AA1050 / AA5052合金的显微组织和力学性能与传统的ARB处理材料进行了比较。

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