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Effect of Rolling Conditions on Microstructure and Mechanical Properties of AZ31 Mg Alloy

机译:轧制条件对AZ31镁合金组织和力学性能的影响

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The effect of warm rolling under various conditions on the microstructure and mechanical property was investigated using an AZ31 Mg alloy sheet. Several processing parameters such as initial thickness, thickness reduction by a single pass rolling, rolling temperature, roll speed, and roll temperature were varied to elicit an optimum condition for the warm rolling process of AZ31 Mg alloy. Microstructure and mechanical properties were measured for specimens subjected to rolling experiments of various conditions. Warm rolling of 30% thickness reduction per pass was possible without any side-crack at temperatures as low as 200℃ under the roll speed of 30 m/min. The initial microstructure before rolling was the mixed one consisting of partially recrystallized and cast structures. Grain refinement was found to occur actively during the warm rolling, producing a very fine grain size of 7 μm after 50% reduction in single pass rolling at 200℃. Yield strength of 204MPa, tensile strength of 330MPa and uniform elongation of 32% have been obtained in warm rolled sheets.
机译:使用AZ31镁合金薄板研究了在各种条件下热轧对组织和力学性能的影响。改变了诸如初始厚度,单道次轧制减薄厚度,轧制温度,轧制速度和轧制温度等几个加工参数,从而为AZ31镁合金的热轧工艺创造了最佳条件。测量了经受各种条件的滚动实验的样品的显微组织和力学性能。在低至200 m的温度下以30 m / min的轧制速度进行热轧,可使每道次厚度减少30%,而没有任何侧裂纹。轧制前的初始显微组织是由部分重结晶和铸造组织组成的混合组织。发现在热轧过程中晶粒细化积极发生,在200℃的单道次轧制过程中晶粒细化率降低50%后,晶粒细化为7μm。在热轧板中获得了204MPa的屈服强度,330MPa的抗拉强度和32%的均匀伸长率。

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