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Effect of annealing on the microstructure and mechanical properties of Mg-9Al alloy plates processed with symmetrical and asymmetrical rolling

机译:退火对对称和非对称轧制Mg-9Al%合金板的组织和力学性能的影响

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In this study, the Mg-9AI% plates with a total of approximately 50% thickness reduction corresponding to 0.76mm per pass, were obtained by symmetrical and asymmetrical rolling. The effect of different annealing temperature and corresponding holding time on the microstructure and mechanical properties were investigated. Key results showed that in the as-rolled state, the plates processed by asymmetrical rolling had smaller grain size and higher hardness value and ultimate tensile strength than symmetrical rolling. After annealing treatment, the hardness value of the both plates decreased due to the internal stress released. A good combination of strength and ductility were achieved for symmetrical and asymmetrical processed plates at 350°C for 1 hour and 325°C for 1 hour, respectively, which can be attributed to the static recrystallization and weakening the basal texture. These results show that the appropriate annealing is an effective way to enhance the mechanical formability of plastic deformed Mg plates.
机译:在这项研究中,通过对称和不对称轧制获得了Mg-9Al%钢板,其总厚度减少了约50%,相当于每道次0.76mm。研究了不同退火温度和相应的保温时间对组织和力学性能的影响。关键结果表明,在轧制状态下,与对称轧制相比,非对称轧制的板材晶粒尺寸较小,硬度值和极限抗拉强度更高。退火处理后,由于释放的内部应力,两块板的硬度值均降低。对称和非对称加工板分别在350°C下1小时和325°C下1小时获得了强度和延展性的良好组合,这可以归因于静态再结晶和削弱了基层织构。这些结果表明适当的退火是增强塑性变形镁板的机械成形性的有效方法。

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