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Influence of rolling direction on flow and cavitation in a superplastic magnesium alloy processed by equal-channel angular pressing

机译:轧制方向对等通道角向挤压超塑性镁合金流动和空化的影响

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Experiments were conducted to investigate the influence of the rolling direction on the flow properties and the development of internal cavities in a magnesium AZ31 alloy. Billets were machined from the rolled alloy both parallel and perpendicular to the rolling direction and then processed by equal-channel angular pressing. Tensile specimens were cut from the billets after processing and pulled to failure over a range of strain rates at temperatures of 623 and 673 K. Superplastic elongations were achieved at strain rates of 10~(-4)-10~(-3) s~(-1) with a measured strain rate sensitivity of ~0.5. A quantitative examination of the internal cavities developed at 623 1< showed that the smaller cavities grow by diffusion growth and the larger cavities grow by plasticity-controlled growth. The results show the flow properties and the cavity morphologies are essentially identical for specimens cut both parallel and perpendicular to the rolling direction. This similarity occurs because the cavities are nucleated at grain boundaries instead of at precipitates and therefore the rolling direction has no effect on either the flow or the cavitation behavior.
机译:进行实验以研究轧制方向对AZ31镁合金的流动性能和内腔发展的影响。用平行于轧制方向和垂直于轧制方向的轧制合金加工坯料,然后通过等径角挤压进行加工。加工后从坯料上切下拉伸试样,并在623和673 K的温度下,在一定的应变速率范围内将其拉至断裂。在10〜(-4)-10〜(-3)s〜的应变速率下获得超塑性伸长(-1)的测得应变率灵敏度为〜0.5。对在623 1 <处形成的内腔的定量检查表明,较小的腔通过扩散生长而生长,较大的腔通过可塑性控制的生长而生长。结果表明,平行和垂直于轧制方向切割的试样的流动特性和型腔形态基本相同。之所以发生这种相似性,是因为型腔在晶界处而不是在析出物处成核,因此轧制方向对流动或空化行为均没有影响。

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