不同温度下热振复合处理对TC21钛合金残余应力的影响

Effect of thermo-vibratory treatment at different temperatures on residual stress in TC21 titanium alloy

  • 摘要: TC21钛合金加工过程极易产生残余应力,不仅会降低其尺寸稳定性与力学性能,还会引发断裂失效。文章利用热振复合残余应力调控设备对TC21钛合金进行热振复合处理,随后采用X射线衍射法对零件的轴向残余应力进行测试,以研究不同温度下TC21钛合金轴向残余应力的变化规律,并且进行维氏硬度测试(HV0.5)及SEM形貌观测。结果表明,在振动时效时间和保温时间相同条件下,随着处理温度的不断升高,零件残余应力逐渐降低;当温度达到600 ℃时,零件轴向残余应力的消除效果最为优异,残余应力降低率可达81.8%。600 ℃热振复合处理后的钛合金零件,其硬度较原始态会略有下降,硬度均值也由365.6 HV0.5降至350.0 HV0.5,研究发现零件残余应力的释放将会促使其微观组织的重新排布,可为TC21钛合金残余应力调控工艺优化提供数据支撑。

     

    Abstract: Residual stress is highly prone to develop during the machining of TC21 titanium alloy, which not only impairs its dimensional stability and mechanical properties but also induces fracture failure. In this study, thermo-vibratory stress relief treatment was performed on TC21 titanium alloy using a dedicated thermo-vibratory processing system. The axial residual stress of the specimens was measured by X-ray diffraction to investigate the evolution of residual stress under different processing temperatures. In addition, Vickers hardness tests (HV0.5) and SEM observations were conducted. The results demonstrate that, at a constant vibration aging time and holding duration, the residual stress exhibits a progressive reduction with increasing processing temperature. When the temperature reaches 600 °C, the most effective stress relief is achieved, with a residual stress reduction rate of up to 81.8%. Titanium alloy component after thermo-vibratory treatment at 600 ℃, the hardness of the specimens shows a slight decrease, with the average value decreasing from 365.6 HV0.5 to 350.0 HV0.5. The release of residual stress is found to promote the rearrangement of the microstructure, providing experimental data support for the optimization of residual stress regulation processes in TC21 titanium alloy.

     

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