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The effect of strontium on the microstructure and wear properties of A356-10%B_4C cast composites

机译:锶对A356-10%B_4C铸造复合材料组织和耐磨性能的影响

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摘要

This study was undertaken to investigate the effect of strontium (0.5%) as a modifier on the microstructure and dry sliding wear behavior of A356-10%B_4C particulate metal matrix composite (PMMC). The composite ingots were made by stir casting process. In this work, composite were characterized by scanning electron microscope equipped with energy dispersive spectrometer (EDS), and dry sliding wear experiment were performed in a pin-on-disc wear tester against a DIN 100Cr6 steel disc at speed of 0.5 ms~(-1) and normal loads of 20, 40 and 60 N. The obtained results showed that 0.5%Sr was needed to modify of silicon eutectic in A356-10%B_4C cast composite. Also, the wear results showed that the addition of strontium to MMCs can lead to reduction of wear rate through strong bonding (between B_4C and matrix) and silicon particle modification. Formation of compact transfer layer has been identified on the entire surface of the pins at the applied load of 60 N. It is suggested that the transfer layer which was formed under an applied load of 60 N can act as a protective layer and helps to reduce wear rate.
机译:进行这项研究以研究锶(0.5%)作为改性剂对A356-10%B_4C颗粒金属基复合材料(PMMC)的微观结构和干滑磨损行为的影响。复合铸锭是通过搅拌铸造法制成的。在这项工作中,复合材料通过配备能量分散光谱仪(EDS)的扫描电子显微镜进行表征,并在销钉盘磨损测试仪上以0.5 ms〜(-)的速度对DIN 100Cr6钢盘进行干式滑动磨损实验。 1)以及20、40和60 N的正常载荷。所得结果表明,在A356-10%B_4C铸造复合材料中,需要0.5%Sr来改性硅共晶。同样,磨损结果表明,向MMC中添加锶可以通过牢固的结合(B_4C和基体之间)和硅颗粒改性来降低磨损率。已经确认在施加60 N的负载时会在引脚的整个表面上形成致密的传输层。建议在60 N的负载下形成的传输层可以用作保护层并有助于减少磨损率。

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  • 来源
    《Materials & design》 |2010年第4期|2187-2195|共9页
  • 作者单位

    Center of Excellence for High Performance Materials, School of Metallurgy and Materials, University of Tehran, Tehran, Iran;

    Center of Excellence for High Performance Materials, School of Metallurgy and Materials, University of Tehran, Tehran, Iran;

    Center of Excellence for High Performance Materials, School of Metallurgy and Materials, University of Tehran, Tehran, Iran;

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