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Effect of alumina on grain refinement of Al-Si hypereutectic alloys

机译:氧化铝对Al-Si过度晶体合金晶粒细化的影响

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The size, volume fraction and distribution of primary as well as eutectic silicon affect the mechanical properties of the Al-Si hypereutectic alloys. It is very difficult for the simultaneous refinement and modification of primary and secondary Si particles in hypereutectic Al-Si alloys through traditional processes. This paper explores the role of γ-Al2O3 nanoparticles on Si particles in the course of solidification in hypereutectic Al-Si alloys at particular pouring temperature. The present study involves incorporation of varying contents dispersed Y-Al2O3 nanoparticles into a molten base metal during stir casting and followed by solidification. It has been reported that the synthesized composites having good interfacial bonding (wetting) between the dispersed phase and the liquid matrix was achieved in order to provide improved mechanical properties of the composite. The cast product of hypereutectic Al-16Si alloy with the reinforcement of nanoparticles, illustrated a significant improvement in both wear behaviour and hardness The dry sliding wear test has been performed on a group of specimens with varying parameters (different loads and sliding velocities) in a pin on disc wear testing machine. Moreover, the wear rate and specific wear rate also affected in different load and different sliding velocities. However in XRD analysis of the samples, the enhancement of wear resistance as well as hardness was due to the formation of brittle phases like SiO2, Al2O3 and Al-rich intermetallic compounds. The hardness value of the materials increases nearly 6% in addition to increase in the density of only 0.8%. As per literature, the large plate eutectic Si particles were modified in to the fine core particles and it acquires enough potential for various applications.
机译:初级和共晶硅的尺寸,体积分数和分布影响了Al-Si过度晶体合金的机械性能。通过传统方法将过度化Al-Si合金中的初级和二次Si颗粒同时细化和修饰非常困难。本文探讨了γ-Al2O3纳米颗粒在特定浇注温度下过度凝固Al-Si合金中凝固过程中的γ-Al2O3纳米颗粒的作用。本研究涉及在搅拌浇铸期间将不同内容物分散的Y-Al 2 O 3纳米颗粒掺入熔融贱金属中,然后通过凝固。据报道,在分散相和液体基质之间实现具有良好界面键合(润湿)的合成复合材料,以提供改进的复合材料的机械性能。过度晶体Al-16Si合金与纳米颗粒的增强的铸造产物,显示出磨损行为和硬度的显着改善,已经在一组具有不同参数(不同负载和滑动速度)的试样上进行了干滑动磨损试验圆盘磨损试验机上的别针。此外,磨损率和特定磨损率也影响了不同的负载和不同的滑动速度。然而,在样品的XRD分析中,耐磨性以及硬度的增强是由于SiO 2,Al 2 O 3和富含铝金属间化合物如脆性相。除了仅0.8%的密度增加之外,材料的硬度值近6%。根据文献,将大板共晶Si颗粒改性到细核颗粒中,并获得足够的各种应用的潜力。

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