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Superplastic Behavior of a Fine Grained AZ61 Alloy Processed by Large Strain Hot Rolling

机译:大菌株热轧处理精细颗粒AZ61合金的超塑性行为

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A processing route based on conventional hot rolling has been recently developed to induce significant grain refinement in Mg alloys. The simplicity and rapidity of the processing route as well as the fact that conventional rolling is used, may allow it to be put into practice successfully in industry. This method consists of only two to three rolling passes, each producing a large thickness reduction, and intermediate annealings of 5 minutes duration. The resulting microstructure is mainly formed by very fine grains. Tensile tests at different temperatures and strain rates were performed in order to analyse the mechanical behaviour of the processed AZ61 alloy under different testing conditions. Microstructure and texture evolution during deformation were examined by optical microscopy (OM) and X-ray diffraction, respectively. It is shown that the microstructures developed by large strain hot rolling are capable of exhibiting significant superplastic elongations at moderate to low temperatures. Stress exponents close to 2 were measured during deformation under optimum superplastic conditions. Additionally, grams remained equiaxed and a significant decrease in the texture intensity is observed. This is consistent with the predominance of grain boundary sliding as the main deformation mechanism responsible for superplasticity.
机译:最近已经开发出基于常规热轧轧制的加工途径以诱导Mg合金中的显着晶粒细化。处理路线的简单性和快速性以及传统滚动的事实,可以使其在工业中成功地进行实践。该方法仅由两到三个轧辊组成,每个滚动通过,每个厚度减小,持续时间为5分钟的中间退火。所得到的微观结构主要由非常细粒的晶粒形成。在不同温度和应变速率下进行拉伸试验,以分析在不同的测试条件下加工AZ61合金的机械行为。通过光学显微镜(OM)和X射线衍射检查变形过程中的微观结构和纹理演化。结果表明,由大应变热轧轧制产生的微观结构能够在中等至低温下表现出显着的超塑性伸长率。在最佳超塑性条件下变形期间测量近2的应力指数。另外,克仍然是等式的,并且观察到纹理强度的显着降低。这与晶界滑动的主要偏移是负责超塑性的主要变形机制一致。

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