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粉末原料粒徑對WC-17Co涂層性能的影響
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天津市民用航空器適航與維修重點實驗室,中國民航大學,中國民航大學理學院,中國民航大學理學院

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工信部重大專項 (2011zx04014-21),中央高?;究蒲袠I(yè)務費中國民航大學專項(3122015L001)


Effect of feedstock size on the properties of WC-17Co coatings
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Tianjin Key Laboratory for Civil Aircraft Airworthiness and Maintenance,Civil Aviation University of China,Tianjin,College of Science,Civil Aviation University of China,College of Science,Civil Aviation University of China

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    摘要:

    本文利用超音速火焰噴涂技術噴涂四種不同粒徑的WC-17Co粉末,評價粉末粒徑對涂層機械性能和抗磨粒磨損性能的影響。結果表明,粉末的粒徑越小,在超音速焰流作用下獲得的速度和溫度越高,形成的涂層越致密,顆粒間的粘接強度越高,同時涂層的顯微硬度也越高。WC-17Co粉末的粒徑越小,獲得涂層的孔隙直徑越小,顆粒間的粘接缺陷越少,因此涂層的抗磨粒磨損性能越好。但是當WC-17Co粉末的粒徑過于微小時,涂層的斷裂韌性將受到影響。在本文研究的四種粒徑分布的WC-17Co粉末中,中間粒徑且分布范圍集中的粉末制得的涂層兼具良好的機械性能和抗磨粒磨損性能。

    Abstract:

    High velocity oxy-fuel (HVOF) spray technique has been utilized to fabricate WC-17Co cermet coatings. To achieve a high performance of mechanical properties and abrasive wear resistance, four types of WC-17Co powders with different feedstock particle size were investigated. The results show that the feedstock powder with finer particle size had higher velocity and temperature during spraying process, resulting in a denser coating and a stronger splat-splat bonding. It was found that the micro-hardness of WC-17Co coating increased with the decreasing of feedstock size. The coating deposited by finer feedstock powder had superior abrasive wear resistance, attributing to the smaller porosity and boundary flaws on coating. However, coating fracture toughness could be affected by feedstock size if it is too small. Among all those investigated, the one with medium particle size and narrow size distribution exhibited both excellent mechanical properties and wear resistance.

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丁坤英,郭亞飛,程濤濤.粉末原料粒徑對WC-17Co涂層性能的影響[J].稀有金屬材料與工程,2017,46(5):1197~1201.[Ding Kunying, Guo Yafei, Cheng Taotao. Effect of feedstock size on the properties of WC-17Co coatings[J]. Rare Metal Materials and Engineering,2017,46(5):1197~1201.]
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  • 收稿日期:2015-03-03
  • 最后修改日期:2015-04-23
  • 錄用日期:2015-06-11
  • 在線發(fā)布日期: 2017-09-27
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