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Friction-stir processing of Al-12% Si alloys: grain refinement, numerical simulation, microstructure evolution, dry sliding wear performance and hardness measurement

机译:Al-12%Si合金的摩擦搅拌加工:晶粒细化,数值模拟,微观结构演化,干滑动磨损性能和硬度测量

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摘要

Friction-stir processing (FSP) has been proven as a successful method for the grain refinement of cast aluminum alloys. The most important attributes of this process are the fine-grain microstructure and characteristic texture, which impart suitable properties in the as-processed material. In the current work, FSP of Al-12% Si alloy has been carried out and the consequent evolutions of microstructure and mechanical properties have been studied. The influence of the tool rotational speed on such characteristics was also evaluated. The results showed that FSP significantly improved the microstructure of the as-cast Al-12% Si alloy by eliminating the porosity and refining both a-Al grains and the Al-Si eutectics. The microstructures favored the improvement of hardness of the processed surface layers, in comparison with those properties of the base material. Finite elements method based, 3D, thermo-mechanical model was built to better-understand the effect of process parameters on temperature gradients.
机译:已被证明是铸造铝合金晶粒细化的成功方法的摩擦搅拌处理(FSP)。该方法最重要的属性是细粒度微观结构和特征纹理,其在用处理材料中赋予合适的性能。在目前的工作中,已经进行了Al-12%Si合金的FSP,并且已经研究了显微结构和机械性能的作用。还评估了工具转速对这些特性的影响。结果表明,FSP通过消除孔隙率和精制A-Al颗粒和Al-Si Eutectics来显着改善了铸族Al-12%Si合金的微观结构。与基材的那些性质相比,微结构赞成加工表面层的硬度改善。基于有限元方法,3D,热电模型是为了更好地了解过程参数对温度梯度的影响。

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