Huang Long, Li Bingyuan, Xu Bopin, Zhou Yicheng, Li Mengzhao, Li Chenglin, Yang Bing, Pan Chunxu, Zhang Guodong
School of Power and Mechanical Engineering, Wuhan University, Wuhan 430072, China.
Hubei Port Yakou Navigation Junction Limited Company, Xiangyang 441100, China.
Materials (Basel). 2023 Nov 28;16(23):7401. doi: 10.3390/ma16237401.
The low strength caused by the single FCC structure of the CrMnFeCoNi high entropy alloy (HEA) limits its application in the field of coating. Here, we prepared high-entropy alloy coatings of CrMnFeCoNi with different ZrC contents on Q235 steel by a plasma transferred arc process. The effects of ZrC on the microstructure and properties of the CrMnFeCoNi HEA coating were investigated by optical microscopy, scanning electron microscope, and X-ray diffraction and by employing a potensiostat/galvanostat. The results showed that ZrC mainly existed in the coatings as a second phase, having little influence on the main crystal structure and micromorphology of the CrMnFeCoNi HEA coating. The hardness of the CrMnFeCoNi HEA coating increased with the ZrC content. ZrC can effectively improve the corrosion resistance of the CrMnFeCoNi HEA coating. In a 1 mol/L NaCl solution with 4 wt% ZrC, the annual corrosion rate was only 5.997% of that of the HEA coating. Nevertheless, the improvement in the wear resistance of CrMnFeCoNi high-entropy alloy coatings was not apparent with the addition of ZrC. Consequently, the addition of ZrC to the FeCoCrNiMn high-entropy alloy coating holds promise for applications in corrosion resistance, particularly in oceanic environments.
CrMnFeCoNi高熵合金(HEA)单一的面心立方结构导致其强度较低,限制了其在涂层领域的应用。在此,我们通过等离子转移弧工艺在Q235钢上制备了不同ZrC含量的CrMnFeCoNi高熵合金涂层。通过光学显微镜、扫描电子显微镜、X射线衍射以及使用恒电位仪/恒电流仪研究了ZrC对CrMnFeCoNi高熵合金涂层微观结构和性能的影响。结果表明,ZrC主要以第二相的形式存在于涂层中,对CrMnFeCoNi高熵合金涂层的主要晶体结构和微观形貌影响较小。CrMnFeCoNi高熵合金涂层的硬度随ZrC含量的增加而提高。ZrC能有效提高CrMnFeCoNi高熵合金涂层的耐腐蚀性。在含有4 wt% ZrC的1 mol/L NaCl溶液中,年腐蚀速率仅为高熵合金涂层的5.997%。然而,添加ZrC后CrMnFeCoNi高熵合金涂层的耐磨性改善并不明显。因此,在FeCoCrNiMn高熵合金涂层中添加ZrC在耐腐蚀应用方面具有前景,特别是在海洋环境中。