高斯脉冲激光灼烧TC4钛合金时变温度场特性

Time-varying temperature field characteristics of TC4 titanium alloy by Gaussian-pulsed laser

  • 摘要: TC4钛合金具有优良的耐蚀性、低密度、高比强度及较好的韧性和焊接性等一系列优点,在航空航天领域起到越来越重要的作用。以有限元分析方法为基础,利用热传导方程对TC4钛合金圆盘温度场进行了数值计算。分析了脉冲激光加工金属材料的工作特点,建立了符合实际加工特点的热模型,数值分析了TC4钛合金温度场随激光功率、光斑半径及激光脉宽的影响规律。研究结果表明:若使用中心激光波长为1064 nm,激光功率为2 kW,光斑半径为2 mm,激光脉宽为8 ms,脉冲重复频率为1 kHz,尺寸直径为Φ5.0 cm,厚度为5 mm的TC4钛合金在50 ms间具有的峰值温升为1209.80 K;在相同条件下,光斑半径分别为1.5 mm、2.0 mm、2.5 mm、5 mm时,钛合金端面的最高热形变量为30.033 μm。研究结果将为激光加工钛合金时准确设置激光加工参数提供理论依据。

     

    Abstract: TC4 titanium alloy has a series of advantages such as excellent corrosion resistance, low density, high specific strength, good toughness and weldability, and plays an increasingly important role in the aerospace field. Based on the finite element analysis method, the temperature field of TC4 titanium alloy disc was numerically calculated by using the heat conduction equation. Based on the analysis of the working characteristics of metal materials processed by pulsed laser, a thermal model that conforms to the actual processing characteristics is established, and the influence of the temperature field of TC4 titanium alloy with laser power, spot radius and laser pulse width is numerically analyzed. The results show that if the central laser wavelength is 1064 nm, the laser power is 2 kW, the spot radius is 2 mm, the laser pulse width is 8 ms, the pulse repetition rate is 1 kHz, the diameter is 5.0 cm, and the thickness of 5 mm is TC4 titanium alloy, the peak temperature rise is 1209.80 K in 50 ms. Under the same conditions, when the spot radii are 1.5 mm, 2.0 mm, 2.5 mm and 5 mm, respectively, the highest thermal deformation of the end face of titanium alloy is 30.033 μm. The research results will provide a theoretical basis for laser processing of titanium alloys and accurate setting of laser processing parameters

     

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