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Influence of Warm Rolling and Aging on the Microstructural Evolution and Mechanical Behavior of AZ31 Magnesium Alloy

机译:温暖轧制对AZ31镁合金微观结构演化与力学行为的影响

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The microstructural evolution and tensile properties of AZ31 after warm rolling and different aging methods and conditions were investigated. The warm rolling was conducted on the as-received AZ31 after homogenization at 400°C for 3h. The rolled slabs were artificially aged at different temperature of 120°C, 180°C and for various durations. As an alternative approach, stress aging was applied on the samples. The results of tensile tests illustrated that the ultimate tensile strength of the as- received AZ31 after 24h aging at 120°C increased up to 300 MPa with the expense of 5% reduction in elongation. While the ductility of the sample aged at 180°C and 48h increased to 14% with the UTS of 285MPa. Also, the stress aging at 120 °C for only 1h increased the yield strength of as-received sample to over 240 MPa. This points to almost 50% increase in strength thermo-mechanical processing. Microstructural observations revealed that the grain growth firstly decreased the strength of rolled samples while improving the ductility. This is followed by the nucleation of recrystallized grains during ageing enhanced the strength with decent ductility as compared to the rolled samples.
机译:预热轧制后AZ31的微观结构演化和拉伸性能及不同老化方法及条件。在400℃下均化后,在200℃下均化后,在接收的AZ31上进行温暖轧制3小时。轧制板在120℃,180℃和各种持续时间的不同温度下人工老化。作为一种替代方法,对样品施加应激老化。拉伸试验结果表明,在120℃下24h老化后的最终的AZ31的最终拉伸强度增加到300MPa,伸长率降低5%。虽然在180℃和48h时的样品的延展性随285MPa的UTS增加至14%。而且,在120℃下的应力老化仅1H增加到超过240MPa的接收样品的屈服强度。该指向强度热机械加工的近50%。微观结构观察显示,晶粒生长首先降低卷样样品的强度,同时改善延展性。随后,与卷样样品相比,在老化期间,在老化期间,在老化期间再结晶晶粒增强了具有体面延展性的强度。

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