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Effect of Primary Silicon Refinement on Mechanical and Wear Properties of a Hypereutectic Al-Si Alloy

机译:初级硅细化对过度化Al-Si合金的机械和磨损性能的影响

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摘要

This study explores the effect of primary silicon refinement of hypereutectic Al-Si alloy on the mechanical and wear properties. Refinement has been carried out by purging N-2 into hypereutectic Al-Si alloy melt for different period of time. Hypereutectic Al-Si alloy with 16.2 wt.% of Si was taken for the study and purged by N-2 gas for different time. Hypereutectic alloy under different conditions was characterised for various properties. X-ray diffractometer (XRD) analysis doesn't show formation of any nitride but optical microscopy (OM) and scanning-electron microscopy (SEM) results show modified/refined morphology of silicon. Mechanical and dry sliding wear properties were evaluated at ambient temperature and results reveal improvement in these properties. Worn surfaces were also studied under SEM and 3D-profilometer for surface analysis. Results indicate that at low load/sliding velocity, wear is oxidative/mild in nature, whereas, oxidative-metallic/severe wear is observed at high load/sliding velocity.
机译:该研究探讨了过度晶体细化过度晶体合金对机械和磨损性能的影响。通过将N-2吹入多余的Al-Si合金熔体以进行不同的时间,已经进行了改进。具有16.2重量%的过度化Al-Si合金,占SI的%,用于研究并通过N-2气体吹扫不同的时间。在不同条件下的过度晶体合金的特征在于各种性质。 X射线衍射仪(XRD)分析不显示形成任何氮化物但光学显微镜(OM)和扫描 - 电子显微镜(SEM)结果显示硅的改性/精制形态。在环境温度下评估机械和干滑动磨损性能,结果揭示了这些性质的改善。 SEM和3D-PROFILOMETORER也研究了磨损的表面,用于表面分析。结果表明,在低负载/滑动速度下,磨损是氧化/温和的,而在高负载/滑动速度下观察到氧化金属/严重磨损。

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