激光原位金属沉积过程中衬底加热对TiB/Ti6Al4V-ELI显微组织和硬度的影响

PM Lekoadi, M. Tlotleng, B. Masina
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引用次数: 0

摘要

研究了加热温度(℃)对激光金属沉积原位合金化制备TiB/Ti6Al4V-ELI复合熔覆层显微组织和显微硬度的影响。样品在Ti6Al4V基板上制备,在不同温度(25°C, 200°C, 300°C, 400°C和500°C)下加热,然后对其进行显微组织和硬度表征。结果表明,在未预热基板上制备的TiB/Ti6Al4V-ELI样品具有TiB颗粒特征,硬度最低,为511±66 HV。基板加热导致TiB晶须的形成,这些晶须分散在钛基体中。温度为200℃时,TiB晶须形成簇状组织,硬度提高到651±40 HV。在500℃的基片加热温度下,TiB晶须组织良好,分布均匀,硬度为565±14 HV。
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Effects of substrate heating on the microstructure and hardness of TiB/Ti6Al4V-ELI during laser in-situ metal deposition
This work investigated the influence of heating temperature (°C) on the microstructure and microhardness of TiB/Ti6Al4V-ELI composite clads that were produced via in-situ alloying using laser metal deposition technique. The samples were produced on a Ti6Al4V base plates which were heated at different temperatures (25°C, 200°C, 300°C, 400°C and 500°C) before they were characterised for microstructure and hardness. It was found that the TiB/Ti6Al4V-ELI sample that was produced on a non-pre-heated base plate was characterized by TiB particles and had the lowest hardness of 511 ± 66 HV. Base plate heating resulted in the formation of TiB whiskers that were dispersed within the titanium matrix. 200°C led to a microstructure with clusters of TiB whiskers hence it had an increased hardness of 651 ± 40 HV. A fine microstructure with homogeneous distribution of the TiB whiskers was obtained at 500°C base plate heating temperature and had hardness of 565 ± 14 HV.
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