首页> 外文期刊>Journal of Thermal Spray Technology >Comparison of 10 μm and 20 nm Al-Al_2O_3 Metal Matrix Composite Coatings Fabricated by Low-Pressure Cold Gas Dynamic Spraying
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Comparison of 10 μm and 20 nm Al-Al_2O_3 Metal Matrix Composite Coatings Fabricated by Low-Pressure Cold Gas Dynamic Spraying

机译:低压冷气动态喷涂制备10μm和20 nm Al-Al_2O_3金属基复合涂层的比较

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摘要

Cold-gas dynamic spraying ("cold spraying") was used to deposit aluminum-alumina (Al-Al_2O_3) metal-matrix composite (MMC) coatings onto 6061 Al alloy. The powders consisted of -45 μm commercially pure Al that was admixed with either 10 μm or agglomerated 20 nm Al_2O_3 in weight fractions of 25, 50, 75, 90, and 95 wt.%. Scanning electron microscopy (SEM), Vickers microhardness testing, and image analysis were conducted to determine the microstructure, properties, and the volume fractions of reinforcing particles in the coatings, which was then converted to weight fractions. As the weight fraction of the Al_2O_3 in the coatings increased, the hardness values of the MMC coatings increased. A maximum hardness of 96 ± 10 HV_(0.2) was observed for the MMC coating that contained the agglomerated 20 nm Al_2O_3 particles, while a maximum hardness of 85 ± 24 HV_(0.2) was observed for the coatings with the 10 μm Al_2O_3 particles. The slight increase in hardness of the coating containing the agglomerated 20 nm Al_2O_3 particles occurred in a coating of Al_2O_3 content that was lower than that in the coating that contained the 10 μm reinforcing Al_2O_3 particles. The increased hardness of the MMC coatings that contained the agglomerated 20 nm Al_2O_3 particles and at lower reinforcing particle content was attributed to the increased spreading of the nanoagglomerated particles in the coating, which increased load-sharing and reinforcement capability of the particles. These results suggest that the use of nano-agglomerated, reinforcing hard-phase particles in cold-sprayed MMC coatings may be a more efficient alternative to the use of conventional micronsized reinforcing particles.
机译:使用冷气动态喷涂(“冷喷涂”)将铝氧化铝(Al-Al_2O_3)金属基复合材料(MMC)涂层沉积到6061铝合金上。粉末由-45μm的市售纯Al组成,该Al与10μm或附聚的20 nm Al_2O_3混合,重量分数为25、50、75、90和95重量%。进行扫描电子显微镜(SEM),维氏显微硬度测试和图像分析,以确定涂层中增强颗粒的微观结构,性能和体积分数,然后将其转换为重量分数。随着涂层中Al_2O_3的重量分数增加,MMC涂层的硬度值增加。对于包含团聚的20 nm Al_2O_3颗粒的MMC涂层,观察到的最大硬度为96±10 HV_(0.2),而对于具有10μmAl_2O_3颗粒的涂层,观察到的最大硬度为85±24 HV_(0.2)。包含团聚的20 nm Al_2O_3颗粒的涂层的硬度略有增加,发生在Al_2O_3含量低于包含10μm增强Al_2O_3颗粒的涂层中。包含团聚的20 nm Al_2O_3颗粒且增强颗粒含量较低的MMC涂层的硬度增加,归因于纳米团聚颗粒在涂层中的扩散增加,这增加了颗粒的负载分担和增强能力。这些结果表明,在冷喷涂MMC涂层中使用纳米团聚的增强硬相颗粒可能是使用传统的微米级增强颗粒的更有效替代方法。

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