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INVESTIGATION INTO THERMOELASTIC DISPLACEMENT OF SURFACES SUBJECTED TO GAS ASSISTED LASER REPETITIVE PULSE HEATING

机译:气体辅助激光重复性脉冲加热对表面热弹性位移的影响

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摘要

Gas assisted laser repetitive pulse heating of metallic surfaces finds wide application in industry. As the temperature inside the substrate material rises, thermal expansion of the irradiated region occurs. The monitoring of the surface displacement is a potential candidate for measuring the surface temperature during the laser heating process. In the present study, gas assisted laser repetitive pulse heating of steel is modeled. The strain in the surface vicinity and the thermoelastic displacement of the surface are predicted for two pulse types. The correlation between the surface temperature and the surface displacement is explored. It is found that the surface displacement follows the frequency of the temperature profiles; however, the rise and fall of the rates of the surface displacement differ considerably from those of the temperature field. This is more pronounced for the repetitive pulses with long cooling periods. In addition, the spatial resolution of the surface displacement differs from the spatial resolution of the surface temperature across the irradiated surface.
机译:金属表面的气体辅助激光重复脉冲加热在工业中得到了广泛的应用。随着基板材料内部的温度升高,发生照射区域的热膨胀。表面位移的监测是在激光加热过程中测量表面温度的潜在候选者。在本研究中,对钢的气体辅助激光重复脉冲加热进行了建模。对于两种脉冲类型,预测了表面附近的应变和表面的热弹性位移。探索了表面温度和表面位移之间的关系。发现表面位移遵循温度分布曲线的频率。但是,表面位移率的上升和下降与温度场的上升和下降有很大的不同。对于较长冷却时间的重复脉冲,这一点尤其明显。另外,表面位移的空间分辨率不同于整个被照射表面的表面温度的空间分辨率。

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