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TC4钛合金表面涂层改性:CrN素多层
引用本文:李金龙,周艳文,张开策,黄振,祁继隆,王亚男,郭媛媛. TC4钛合金表面涂层改性:CrN素多层[J]. 表面技术, 2021, 50(4): 215-224. DOI: 10.16490/j.cnki.issn.1001-3660.2021.04.021
作者姓名:李金龙  周艳文  张开策  黄振  祁继隆  王亚男  郭媛媛
作者单位:辽宁科技大学 材料与冶金学院 表面工程研究所,辽宁 鞍山 114051
基金项目:国家自然科学基金(51972155,51672119,51702145);辽宁科技大学海工钢国家重点实验室联合基金项目(SKLMEA-USTL- 201709);辽宁科技大学产业技术研究院重大应用项目(601012431-10)
摘    要:目的 提高TC4钛合金的硬度和耐磨损性,改善CrN硬质涂层与TC4钛合金的适应性.方法 采用等离子体增强磁控溅射系统,通过调节热丝放电电流,在TC4钛合金基体表面沉积疏密CrN单层和素多层涂层.利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、能谱仪(EDS)、纳米压痕仪、洛氏压痕仪、摩擦磨损仪以及台阶仪,表征涂层...

关 键 词:TC4钛合金  素多层涂层  硬度  耐磨损性  耐腐蚀性
收稿时间:2020-08-11
修稿时间:2020-10-30

Surface Modification of TC4 Titanium Alloy by CrN Prime Multilayer
LI Jin-long,ZHOU Yan-wen,ZHANG Kai-ce,HUANG Zhen,QI Ji-long,WANG Ya-nan,GUO Yuan-yuan. Surface Modification of TC4 Titanium Alloy by CrN Prime Multilayer[J]. Surface Technology, 2021, 50(4): 215-224. DOI: 10.16490/j.cnki.issn.1001-3660.2021.04.021
Authors:LI Jin-long  ZHOU Yan-wen  ZHANG Kai-ce  HUANG Zhen  QI Ji-long  WANG Ya-nan  GUO Yuan-yuan
Affiliation:Research Institute of Surface Engineering, School of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan 114051, China
Abstract:This propose is to improve the hardness and wear resistance of TC4 titanium alloy and to improve the adaptability of CrN hard coating to TC4 titanium alloy. By using plasma-enhanced magnetron sputtering system, loose and dense CrN monolayer and multilayer coatings are deposited on surface of TC4 titanium alloy substrate by adjusting the hot wire discharge current. The morphology, composition, phase structure and performance of CrN coatings are characterized by X-ray diffraction (XRD), energy dispersive spectroscopy (EDS), scanning electron microscopy (SEM), nano-indentation, Rockwell indenter, ball- on-disk tribometer and step tester. The corrosion resistance of CrN coatings is characterized by the electrokinetic polarization method. When the hot wire discharge current is 4 A×4, the morphology of the CrN monolayer coating are loose structure with the defects of pinholes; that of CrN monolayer coating deposited at the discharge current of 8 A×4 is dense and defect free structure. The CrN prime multilayer coating with alternating loose and dense sublayers are obtained by periodically adjusting discharge currents. The CrN coatings are composed of a single CrN phase with a face-centered cubic structure. The diffraction orientations of the loose CrN monolayer coating are (111), (200), (220) and (222). On the other hand, the dense CrN monolayer coating showed its preferred orientation of (111) plane. The (111) diffraction peak of the CrN prime multilayer coatings increased with the increases of the modulation ratio of the loose sublayer to dense one. The H and E of the loose CrN monolayer coating and the CrN prime multilayer coatings with a modulation ratio of 1:4 are the minimum and maximum, namely 13.0 GPa and 207.5 GPa, 17.0 GPa and 257.4 GPa, respectively. The Rockwell indentation method under a load of 1470 N shows that the dense CrN monolayer coating is with the weakest bonding strength, the grade of HF5, the remaining coatings are within the grades of HF1-HF4. The self-corrosion potential of CrN coatings is positively shifted compared to that of TC4 titanium alloy. CrN hard coating can effectively improve hardness and wear resistance of TC4 titanium alloy. Compared with a monolayer, CrN prime multilayer coatings deposited under periodic adjustment of the plasma density exhibited significantly improved performance.
Keywords:TC4 titanium alloy   prime multilayer coating   hardness   wear resistance   corrosion resistance
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