超声场下激光沉积TA15钛合金的组织和力学性能

Microstructures and mechanical properties of laser deposition of TA15 titanium alloy with ultrasonic treatment

  • 摘要: 为提高激光沉积TA15钛合金力学性能,采用ANSYS有限元动力学分析中的谐响应分析,对超声场下激光沉积修复梯形槽底部表面振幅分布及质点振动情况进行了数值模拟,并对模拟结果进行了实验验证,最后对超声场下激光沉积修复试样的综合力学性能进行了实验研究。结果表明:超声场下梯形槽底部表面各质点呈现周期性运动特点,最大振幅在1.6 m左右,对质点振幅进行测量,与模拟结果吻合较好。进行了超声场下激光沉积实验,沉积区硬度略有提高,修复试样抗拉强度提高3.2%,屈服强度提高7.1%,超声场下显微组织进行观察发现片层变短。

     

    Abstract: In order to improve the mechanical property of laser deposition TA15 titanium alloy, the harmonic response analysis of the ANSYS finite element dynamic analysis was adopted, amplitude distribution and particle vibration of the bottom surface of the trapezoidal groove surface with ultrasound were simulated, and the experiments were carried out to verify the simulation results. The comprehensive mechanics performance of laser deposition layers with ultrasound was researched by experiment test. The results show that, the points of the bottom surface of the trapezoidal groove with ultrasound presents periodic motion characteristics, and the maximum amplitude is about 1.6 m, which is in a good agreement with simulation results. The laser deposition experiment with ultrasound was carried out, and the results show that the hardness of deposition repair region increases, tensile strength of deposition repair region rises by 3.2%, yield strength improves by 7.1%, and microstructures with ultrasonic field are observed that the lamellas become shorter.

     

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