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铈对高铝青铜超音速等离子喷涂层组织及性能的影响

Influence of Cerium on microstructure and performance of high-aluminum bronze coating by supersonic plasma spraying

  • 摘要: 为研制一种新型高铝青铜涂层,采用超音速等离子喷涂技术在45钢基体上制备了新型高铝青铜涂层.采用金相显微镜、扫描电子显微镜、电子探针、X射线衍射、显微硬度计分别对含铈0.0%,0.25%,0.4%,0.55%的涂层进行了分析.结果表明,随着铈含量的增加,涂层组织变致密,硬质K相呈弥散化分布,同时K相从含0.0%铈时的AlFe3,Al13Fe4转变为含0.25%铈时的AlFe3,Al13Fe4,AlFe,当铈含量大于0.4%时K相以Al13Fe4稳定存在.铈的加入使元素Al发生偏聚现象,当含0.4%铈时Al元素开始呈现小片状聚集,当含0.55%铈时,Al元素以小片状聚集且均匀分布.涂层的硬度随铈含量的增加呈现先降低后升高的现象,当铈含量大于0.4%时,涂层的硬度值和稳定性上都优于未含铈的涂层.

     

    Abstract: A high-aluminum bronze coating was prepared on 45 steel substrate by highly efficient supersonic plasma spraying technology. The coating layers with different Ce content were investigated by XRD, SEM, EDS, EPMA, OM and Microhardness tester. The results show that the coating became denser,and hard K phase dispersively distributed with the increase of Cerium content. Ce played a crucial role in transition procedure of AlFe3 and Al13Fe4 into AlFe, AlFe3 and AlFe3 in K phase, and the composition of K phase was Al13Fe4 when Ce content was more than 0.4%. Al segregated with the addition of Ce, and Ce contributed to transition of Al from big flake particle to platelet particle. The hardness of coating first decreased and then increased with the increment of Ce. When Ce content was more than 0.4%,the hardness and stability of coating was better than that without Ce.

     

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