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首页> 外文期刊>Powder Metallurgy and Metal Ceramics >Hardness and Wear Behaviours of Al Matrix Composites and Hybrid Composites Reinforced with B4C and SiC
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Hardness and Wear Behaviours of Al Matrix Composites and Hybrid Composites Reinforced with B4C and SiC

机译:用B4C和SiC加固Al基质复合材料和混合复合材料的硬度和磨损行为

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摘要

The conversion into the desired shape of the metal powders using Powder Metallurgy (PM) method enables economically mass productions. This case allows producing parts with complex and high dimensional accuracy with no machining. In this study the composites and hybrid composites with Al matrix were produced using PM method with different ratios B4C and SiC. Microhardness and wear experiments of the produced composites were investigated. Wear experiments were performed at a constant speed of 0.5 m/s, application loads of 5, 10 and 15 N and sliding distances of 250, 500, and 750 m. Then, SEM images of composites and hybrid composites were captured. The increase of the reinforcement ratio in the composites contributed to the increase of the hardness. The highest hardness value was computed as 58.7 HV from 16% B4C reinforced composite. In addition, the increase in the reinforcement ratio contributed to the increase of the wear resistance. The increase in the load and sliding distance also increased the wear. The minimum weight loss was calculated as 18 mg from 5 N load, 250 m sliding distance and 16% SiC reinforced composite.
机译:使用粉末冶金(PM)方法转化为金属粉末的所需形状,使得能够经济上的质量浓度。这种情况允许生产具有复杂和高尺寸精度的部件,没有加工。在该研究中,使用具有不同比例B4C和SiC的PM方法生产与Al基质的复合材料和杂化复合材料。研究了所生产的复合材料的显微硬度和磨损实验。耐磨实验以0.5m / s的恒定速度进行,施加载荷为5,10和15 n,滑动距离为250,500和750μm。然后,捕获复合材料的SEM图像和混合复合材料。复合材料中的增强率的增加导致了硬度的增加。从16%B4C增强复合材料计算最高硬度值为58.7 HV。此外,增强率的增加导致耐磨性的增加。负载和滑动距离的增加也增加了磨损。最小重量损失计算为18mg,从5 n负载,250米滑动距离和16%SiC加强复合材料。

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