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首页> 外文期刊>Journal of Materials Engineering and Performance >Fabrication and Characterization of Functionally Graded Al/SiC_p Composites Produced by Remelting and Sedimentation Process
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Fabrication and Characterization of Functionally Graded Al/SiC_p Composites Produced by Remelting and Sedimentation Process

机译:重熔沉淀法制备功能梯度Al / SiC_p复合材料的表征

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摘要

A new process termed here as remelting and sedimentation (RAS) was developed to produce functionally graded Al/SiC composites with a smooth concentration gradient of SiC particles along the height of samples, as opposed to a step change. For this purpose, first settling velocities of different-sized SiC particles in aluminum A356 melt were measured, and the results exhibited a reasonably good agreement with those predicted via the modified Stokes law. Then slices of particulate Al/SiC composites with different SiC contents of 5, 10, 15, and 20 vol.% were stacked in a cast iron mold and heated at 650℃ resulting in remelting and unification of the different composite parts. Considering the preliminary settling experiments, the composite slurry was held at this temperature for three different times to investigate the optimum holding time for obtaining a smooth gradient of SiC concentration along the height of the sample. After quenching, the samples were sectioned and subjected to metallographic studies and hardness measurements. The results confirmed that holding the melt for 60 s provides sufficient settling and redistribution of SiC particles and results in successful production of a functionally graded material.
机译:开发了一种称为重熔和沉淀(RAS)的新工艺,以生产功能梯度的Al / SiC复合材料,该复合材料沿样品高度具有SiC颗粒平滑的浓度梯度,而不是阶跃变化。为此,首先测量了A356铝熔体中不同尺寸SiC颗粒的沉降速度,结果与通过修正的斯托克斯定律预测的结果具有相当好的一致性。然后将具有5%,10%,15%和20%(体积)的不同SiC含量的颗粒状Al / SiC复合材料堆叠在铸铁模具中,并在650℃下加热,从而使不同的复合部件重新熔化和统一。考虑到初步沉降实验,将复合浆料在此温度下保温3次,以研究最佳保温时间,以获得沿样品高度的SiC浓度平滑梯度。淬火后,将样品切片并进行金相研究和硬度测量。结果证实,将熔体保持60 s可提供足够的SiC颗粒沉降和再分布,并成功生产出功能梯度材料。

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