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TC4钛合金的固体渗硼
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国家高技术研究发展计划资助项目(2006AA06Z368);辽宁省高校重点实验室基金项目(20061003)


Solid-State Pack Boronizing of TC4 Titanium Alloy
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    摘要:

    采用固体粉末渗硼法对TC4钛合金基体表面进行渗硼试验。通过扫描电镜(SEM)、能谱(EDS)与X射线衍射 (XRD)研究TC4钛合金渗硼后的物相组成和组织形貌,讨论渗硼过程中元素的扩散行为。结果表明:在1000,1050和1100 ℃分别保温5,20 h后,渗层由外表层的TiB2和内表层的TiB晶须组成,渗层厚度范围为0.8~15 μm。XRD分析表明:TC4钛合金渗硼后形成TiB2与TiB双相硼钛化合物层,随着温度的升高,TiB2与TiB的峰位增多;EDS分析得出表层B原子被TC4钛合金吸附后与基体的Ti化合导致过渡区域内的Ti含量减少,同时Al和V元素开始向基体扩散并在近界面处富集。渗层的显微硬度呈梯度分布,TiB2到TiB晶须维氏硬度值的变化范围为22 000~11 000 MPa,过渡区的硬度值要高于基体的硬度值。

    Abstract:

    The pack boronizing experiment was carried out on TC4 titanium alloy surface with a method of solid powder boronizing. By means of XRD, SEM and EDS, phase composition, microstructure and morphology of the TC4 titanium alloy after boronizing were investigated. Diffusion behavior of elements in boronizing process was discussed. Results show that after holding at 1000, 1050 and 1100 oC for 5 h and 20 h, the thickness of diffusion layer ranges from 0.8 μm to 15 μm. The outer surface is TiB2 and the inner surface is TiB whiskers. XRD patterns reveal TiB-TiB2 biphasic B-Ti compounds layer is formed after boronizing of TC4 alloy and the peak position of TiB2 and TiB increases with the temperature rising. Furthermore, EDS shows, after having been absorbed by TC4, surface B atoms react with Ti of the matrix resulting in the reduction of Ti in transition region. At the same time, Al and V elements begin to diffuse into the matrix and enrich in the near-interface region. Microhardness of the diffusion layer is of gradient distribution; the hardness value of TiB2 to TiB whiskers ranges from HV0.01 22 000 MPa to HV0.01 11 000 MPa and the hardness value in the transition region is higher than that in the matrix.

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衣晓红,樊占国,张景垒,李凤华. TC4钛合金的固体渗硼[J].稀有金属材料与工程,2010,39(9):1631~1635.[Yi Xiaohong, Fan Zhanguo, Zhang Jinglei, Li Fenghua. Solid-State Pack Boronizing of TC4 Titanium Alloy[J]. Rare Metal Materials and Engineering,2010,39(9):1631~1635.]
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  • 收稿日期:2009-09-10
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