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An Investigation on Si Refinement Mechanism of Hypereutectic Al-Si via Applying Ultrasonic Vibrations

机译:利用超声振动研究过共晶Al-Si的Si细化机理

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Hypereutectic Al-Si alloys possess high abrasion resistance and low thermal coefficient which make them attractive for certain applications like as automotive industry. However, their ductility is affected by large Si particles size and therefore poor mechanical properties. The effect of ultrasonic treatment time on a hypereutectic Al-17% Si was evaluated. The results suggest vibration shock waves would refine the Si primary particles effectively. The refinement mechanism is initiated by creating holes inside the primary Si particle where the complete refinement is acquired within 30 s of ultrasonic vibrations. Another mechanism could be the collision of hard particles like as intermetallic particles to primary Si due to suitable agitation along with strong convection force that could lead to further Si particles fragmentation and refinement. The mechanical properties of the treated samples improved significantly in comparison with the non-treated ones. Better distribution of the primary silicon particles and their refinement could overcome the poor deformation of the Alloy.
机译:过共晶Al-Si合金具有高耐磨性和低热系数,这使其对某些应用(如汽车工业)具有吸引力。但是,它们的延展性受大的硅颗粒尺寸的影响,因此受机械性能的影响。评估了超声处理时间对过共晶Al-17%Si的影响。结果表明,振动冲击波将有效地细化硅一次颗粒。细化机制是通过在原始Si粒子内部创建孔来启动的,在30 s的超声振动内即可获得完全细化。另一个机制可能是硬质颗粒(如金属间化合物颗粒)由于适当的搅拌以及强大的对流力而与原始Si发生碰撞,这可能导致Si颗粒进一步破碎和细化。与未处理的样品相比,处理后的样品的机械性能显着提高。初级硅颗粒的更好分布及其细化可以克服合金的不良变形。

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