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首页> 外文期刊>Journal of Materials Engineering and Performance >Hot Roll Bonding of Aluminum to Twin-Roll Cast (TRC) Magnesium and Its Subsequent Deformation Behavior
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Hot Roll Bonding of Aluminum to Twin-Roll Cast (TRC) Magnesium and Its Subsequent Deformation Behavior

机译:铝的热轧粘合至双辊铸(TRC)镁及其随后的变形行为

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In an experiment in which twin-roll cast AZ31 magnesium alloy and commercial purity aluminum (AA 1050) sheets were bonded by hot rolling as Al/Mg/Al laminate composites, it was found that increasing the preheating temperatures up to 400?°C enhances the bonding strength of composites. Further increases in the preheating temperatures accelerate the magnesium oxide growth and thus reduce the bonding strength. The influence of the reduction ratio on the bonding properties was also studied, whereby it was observed that increasing the rolling reduction led to an increase in the bonding strength. The experimental results show that the optimum bonding strength can be obtained at rolling temperatures of 375-400?°C with a 50-60% reduction in thickness. On the other hand, the subsequent deformation behavior of composite was assessed using plane strain compression and deep drawing tests. We demonstrate that the composites produced using the optimum roll bonding conditions exhibited sufficient bonding during subsequent deformation and did not reveal any debonding at the bonding interface.
机译:在一个实验中,通过热轧作为Al / Mg / Al层压复合材料将双辊铸造AZ31镁合金和商业纯度铝(AA 1050)片材粘合的实验中,发现增加了高达400Ω°C的预热温度增强复合材料的粘合强度。预热温度进一步增加,加速氧化镁生长,从而降低粘合强度。还研究了减少比对键合性能的影响,从而观察到增加轧制减少导致粘合强度的增加。实验结果表明,最佳粘接强度可以在375-400Ω℃的轧制温度下获得,厚度为50-60%。另一方面,使用平面应变压缩和深拉绘制测试评估复合材料的随后变形行为。我们证明使用最佳辊粘合条件产生的复合材料在随后的变形期间表现出足够的粘合,并且没有在粘合界面处露出任何脱粘。

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