杨闯,刘静,马亚芹,洪流.不同压力对 TC4 钛合金真空脉冲渗氮的影响[J].表面技术,2015,44(8):76-80,114.
YANG Chuang,LIU Jing,MA Ya-qin,HONG Liu.Influence of Different Pressure on Vacuum Pulse Nitriding of TC4 Titanium Alloy[J].Surface Technology,2015,44(8):76-80,114
不同压力对 TC4 钛合金真空脉冲渗氮的影响
Influence of Different Pressure on Vacuum Pulse Nitriding of TC4 Titanium Alloy
投稿时间:2015-04-12  修订日期:2015-08-20
DOI:10.16490/j.cnki.issn.1001-3660.2015.08.014
中文关键词:  TC4 钛合金  真空脉冲渗氮  组织  性能
英文关键词:TC4 titanium alloy  vacuum pulse nitriding  microstructure  properties
基金项目:贵州省教育厅重点实验室建设项目(KY2012004 号);贵州师范大学 2014 年博士科研启动项目
作者单位
杨闯 贵州师范大学 材料与建筑工程学院, 贵阳 550025 
刘静 贵州师范大学 材料与建筑工程学院, 贵阳 550025 
马亚芹 贵州师范大学 材料与建筑工程学院, 贵阳 550025 
洪流 贵州师范大学 材料与建筑工程学院, 贵阳 550025 
AuthorInstitution
YANG Chuang School of Materials and Architecture Engineering, Guizhou Normal University, Guiyang 550025, China 
LIU Jing School of Materials and Architecture Engineering, Guizhou Normal University, Guiyang 550025, China 
MA Ya-qin School of Materials and Architecture Engineering, Guizhou Normal University, Guiyang 550025, China 
HONG Liu School of Materials and Architecture Engineering, Guizhou Normal University, Guiyang 550025, China 
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中文摘要:
      目的 采用不同压力对 TC4 钛合金进行真空脉冲渗氮处理,提高其表面硬度及耐磨性。 方法 通过金相显微镜、X 射线衍射仪、显微硬度计及耐磨试验机分析渗氮硬化层的组织与性能。 结果 TC4 钛合金经过真空气体渗氮处理后,形成了由 TiN,Ti2AlN 和钛铝金属间化合物 Ti3Al 组成的复合改性层。 渗氮压力太低,表面氮化物数量较少,氮化物层较薄;随渗氮压力的增大,表面氮化物数量增多,表面硬度及耐磨性增加。 压力为 0. 015 MPa 时,氮化物层表面硬度最大,表面硬度为 1100 ~ 1200HV,有效硬化层深度为 50 ~60 μm。 渗氮压力继续增加,表层组织变得疏松,表面硬度及耐磨性开始降低。 结论 选择合适的渗氮压力和表面氮浓度进行真空脉冲渗氮,可以提高钛合金表面硬度,改善耐磨性。
英文摘要:
      Objective Vacuum pulse nitriding treatment at different pressure was applied to TC4 titanium alloy to improve surface hardness and wear resistance. Methods The microstructure and properties of hardened layer were analyzed by metallurgical microscopy, X-ray diffraction (XRD), microhardness tester and wear testing machine. Results The surface composite modified layer composed of TiN, Ti2AlN and Ti3Al was obtained by vacuum nitriding treatment of TC4 titanium alloy. Low nitriding pressure led to the low number of surface nitrides and the low thickness of the nitriding layer. With the increase of pressure, the number of nitrides increased, the surface hardness and wear resistance also increased. The surface hardness reached the maximum value at 0. 015 MPa. The surface hardness of nitrided TC4 titanium was 1100 ~1200HV, and the thickness of the effective hardened layer reached 50 ~60 μm. With further increase of nitriding pressure, the microstructure became loose, the surface hardness and wear resistance began to decrease. Conclusion Vacuum pulse nitriding treatment under suitable pressure and suitable concentration of N could increase the surface hardness of titanium alloy and improve its wear resistance.
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