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Study of deformation texture in an AZ31 magnesium alloy rolled at wide range of rolling speed and reductions

机译:AZ31镁合金中变形纹理的研究轧制范围广泛,减少

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The plasticity of Mg is restricted at low temperatures because: (a) only a small number of deformation mechanisms can be activated, and (b) a preferred crystallographic orientation (texture) develops in wrought alloys, especially in flat-rolled sheets. This causes problems in thin sheet processing as well as component manufacturing from the sheet. In this study, different rolling speeds from 15 to 1000m/min were employed to warm-roll AZ31B magnesium alloy to different reductions. The results show that AZ31B sheets rolled at 15 m/min and 100 °C has fractured for reductions of more than 30% per pass. However, by increasing the rolling speed to 1000 m/min the reliability was improved significantly and the material can be rolled to reductions of more than 70% per pass. The results show that with increasing strain rate at 100°C, the splitting of basal poles was observed, indicating the activation of more contraction twins and secondary twins.
机译:Mg的可塑性在低温下受到限制,因为:(a)可以仅激活少量的变形机制,并且(b)在锻造合金中发育优选的晶形取向(纹理),特别是在扁平卷板中。这导致薄板处理中的问题以及从纸张的组件制造。在该研究中,采用15至1000m / min的不同轧制速度在辊辊AZ31B镁合金以不同的降低。结果表明,在15米/分钟和100℃下轧制的AZ31B片材的碎片折断,每次通过的30%以上减少。然而,通过将轧制速度的增加至1000米/分钟,可靠性显着提高,并且可以轧制材料以每次通过的70%以上。结果表明,随着100°C的应变率增加,观察到基底杆的分裂,表明激活更多收缩双胞胎和次生双胞胎。

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