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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Microstructure and wear characteristics of spray formed and hot extruded Al-Si alloys
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Microstructure and wear characteristics of spray formed and hot extruded Al-Si alloys

机译:喷射成形和热挤压Al-Si合金的组织和磨损特性

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摘要

The microstructural and wear properties of spray formed Al-6.5Si, Al-18Si and Al-18Si-5Fe-1.5Cu (wt-%) alloys have been investigated. The microstructure of the Al-6.5Si alloy exhibits the equiaxed grain morphology of the primary α-Al phase with eutectic Si at the grain boundaries. The size of the primary Si particulates in the Al-18Si alloy varied from 3 to 8 μm embedded in the eutectic matrix. Complex intermetallic phases such as β-Al{sub}5SiFe and δ-Al{sub}4Si{sub}2Fe are observed to co-exist with primary Si in the spray formed Al-18Si-5Fe-1.5Cu alloy system. The periphery of the preforms invariably showed pre-solidified particles with a large amount of interstitial pores. An extrusion ratio of 6:1 for these alloys led to drastic porosity reduction and extensive breaking of second phase particles. These microstructural features showed distinct variation in the wear behaviour and the coefficient of friction of the alloys. The Al-18Si-5Fe-1.5Cu alloy shows better wear resistance compared with the other two alloys, particularly at higher loads. The coefficient of friction shows a dependence upon the applied load. However, this becomes steady at higher loads. The wear behaviour of these alloys is discussed in light of the morphology of debris particles as well as that of the worn surfaces.
机译:已经研究了喷射成型的Al-6.5Si,Al-18Si和Al-18Si-5Fe-1.5Cu(wt%)合金的显微组织和磨损性能。 Al-6.5Si合金的显微组织显示出在晶界处具有共晶Si的初生α-Al相的等轴晶粒形态。嵌入共晶基体中的Al-18Si合金中的主要Si微粒的尺寸在3到8μm之间变化。在喷涂形成的Al-18Si-5Fe-1.5Cu合金体系中,观察到复杂的金属间相(例如β-Al{sub} 5SiFe和δ-Al{sub} 4Si {sub} 2Fe)与原始Si共存。预成型坯的周边始终显示出带有大量间隙孔的预固化颗粒。这些合金的挤压比为6:1,导致孔隙率大大降低,第二相颗粒大量破裂。这些微观结构特征显示出合金的磨损行为和摩擦系数的明显变化。与其他两种合金相比,Al-18Si-5Fe-1.5Cu合金具有更好的耐磨性,尤其是在更高的负载下。摩擦系数显示出对所施加载荷的依赖性。但是,这在较高负载下变得稳定。根据碎片颗粒的形态以及磨损表面的形态来讨论这些合金的磨损行为。

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