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Influence of Low-Frequency Vibration and Modification on Solidification and Mechanical Properties of Al-Si Casting Alloy

机译:低频振动和变质对铸造铝硅合金凝固和力学性能的影响

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摘要

One of the major aims of the modern materials foundry industry is the achievement of advanced mechanical properties of metals, especially of light non-ferrous alloys such as aluminum. Usually an alloying process is applied to obtain the required properties of aluminum alloys. However, the presented work describes an alternative approach through the application of vibration treatment, modification by ultrafine powder and a combination of these two methods. Microstructural studies followed by image analysis revealed the refinement of α-Al grains with an increase in the Si network area around them. As evidence, the improvement of the mechanical properties of Al casting alloy was detected. It was found that the alloys subjected to the vibration treatment displayed an increase in tensile and yield strengths by 20% and 10%, respectively.
机译:现代材料铸造业的主要目标之一是实现金属,尤其是轻质非铁合金(如铝)的先进机械性能。通常,采用合金化工艺以获得所需的铝合金性能。但是,目前的工作描述了通过应用振动处理,超细粉末改性以及这两种方法的组合的替代方法。通过显微组织研究和图像分析发现,α-Al晶粒随着周围Si网络面积的增加而细化。作为证据,检测到Al铸造合金的机械性能的改善。已经发现,经受振动处理的合金分别显示出抗张强度和屈服强度增加了20%和10%。

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