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Effect of Sc Addition on the Microstructure and Wear Properties of A356 Alloy and A356–TiB2in Situ Composite

机译:添加Sc对A356合金和A356–TiB2原位复合材料显微组织和磨损性能的影响。

摘要

In this study, the effect of Sc addition on the grain refinement, modification of the eutectic Si, mechanical and wear properties of A356 and A356–10 wt% TiB2in situ composite has been investigated. The A356–10 wt% TiB2 composites were prepared by an in situ reaction between K2TiF6 and KBF4 salts, which are added in proper stoichiometric ratio to form TiB2 in the A356 alloy melt at a temperature of 1073 K (800 °C). Al–2 wt% Sc master alloy was added to A356 and A356–10 wt% TiB2 melt to introduce 0.2 and 0.4 wt% Sc in the alloy and the composite. Addition of Sc reduced the secondary dendrite arms spacing (SDAS) by 50% and changed the Si morphology from needle-like to fine spheroidal particles. Microstructure of Sc modified alloys which were cast for different holding times of 0, 30, 60 and 120 min indicated that there was no fading or poisoning effect on the SDAS and eutectic Si morphology. Hardness was found to increase due to addition of Sc and TiB2. Pin-on-disk wear tests indicated that Sc addition increase the wear resistance of A356 alloy but reduced the wear resistance of A356–TiB2 composite.
机译:在这项研究中,研究了Sc添加对原位复合材料中A356和A356–10 wt%TiB2的晶粒细化,共晶Si改性,机械和磨损性能的影响。 A356–10 wt%TiB2复合材料是通过K2TiF6和KBF4盐之间的原位反应制备的,这些盐按适当的化学计量比添加,以1073 K(800°C)的温度在A356合金熔体中形成TiB2。将Al–2 wt%的Sc中间合金添加到A356和A356–10 wt%的TiB2熔体中,以在合金和复合材料中引入0.2和0.4 wt%的Sc。添加Sc可使次级枝晶臂间距(SDAS)降低50%,并将Si形态从针状变为细球形。在0、30、60和120分钟的不同保温时间下铸造的Sc改性合金的显微组织表明,对SDAS和共晶S​​i形态无褪色或中毒作用。发现由于添加了Sc和TiB2,硬度增加了。针盘磨损试验表明,添加Sc可以提高A356合金的耐磨性,但会降低A356-TiB2复合材料的耐磨性。

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