王一龙, 俞伟元, 尚凯文. TC4表面激光渗氮研究[J]. 真空与低温, 2015, 21(3): 173-176,180. DOI: 10.3969/j.issn.1006-7086.2015.03.011
引用本文: 王一龙, 俞伟元, 尚凯文. TC4表面激光渗氮研究[J]. 真空与低温, 2015, 21(3): 173-176,180. DOI: 10.3969/j.issn.1006-7086.2015.03.011
WANG Yi-long, YU Wei-yuan, SHANG Kai-wen. STUDIES ON LASER GAS NITRIDING THE SURFACE OF TITANIUM TC4[J]. VACUUM AND CRYOGENICS, 2015, 21(3): 173-176,180. DOI: 10.3969/j.issn.1006-7086.2015.03.011
Citation: WANG Yi-long, YU Wei-yuan, SHANG Kai-wen. STUDIES ON LASER GAS NITRIDING THE SURFACE OF TITANIUM TC4[J]. VACUUM AND CRYOGENICS, 2015, 21(3): 173-176,180. DOI: 10.3969/j.issn.1006-7086.2015.03.011

TC4表面激光渗氮研究

STUDIES ON LASER GAS NITRIDING THE SURFACE OF TITANIUM TC4

  • 摘要: 以TC4合金为基材,利用连续激光器对表面激光渗氮,生成了金黄色的氮化层。用SEM,EDS,XRD对试样渗氮层的微观组织结构、元素分布以及物质组成进行了分析,结果表明生成了氮化钛的缺位式固溶体。表层由氮化层、热影响区及母材组成。渗氮层与基材之间处于完全冶金结合状态,结合力大,不易剥落。利用显微硬度仪对渗氮层进行硬度分析,表层硬度提高了4倍以上,显微硬度≥ 1000HV0.3的厚度超过100μm。

     

    Abstract: Based on TC4,the surface of the TC4 was nitrided by using continuous layer and a golden nitrided layer was generated. With SEM,EDS and XRD,the nitriding layer micro-structure, elements distribution,and composition were analyzed. The result showed that a type of titanium nitride absence solid solution has been generated. Titanium nitrided layer consisted of the nitriding layer, heat affected zone and the substrate metal respectively. Nitriding layer and substrate were in a state of complete metallurgical bonding which binding force was strong and can not easy peeling off. The nitriding layer hardness was measured by micro-hardness meter, the surface hardness could be improved more than 4 times,the micro-hardness about the thickness of the depth ≥ 1000 HV0.3 was more than 100 μm.

     

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