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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Melting and solidification processes in a moving graphite-covered titanium surface subjected to multi-pulse laser irradiation
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Melting and solidification processes in a moving graphite-covered titanium surface subjected to multi-pulse laser irradiation

机译:经受多脉冲激光辐照的移动覆盖石墨的钛表面的熔化和凝固过程

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Experimental results of surface melting by pulsed Nd-YAG laser irradiation of titanium covered with graphite powder were analysed in comparison with the results of numerical simulations. The simulations of the thermal events, such as the maximum of temperature gradient at the surface and the duration of the liquid state after irradiation, were found due to a semi-analytic model of the space-time temperature distributions which were induced by the irradiation treatments. These simulations were required in order to calculate a series of integrals by Simpson's numerical method. They have allowed us to explain the experimental results such as the incorporation of carbon in melted zone, which produces titanium carbide and possible graphite inclusions, as a function of the irradiation parameters. The perpetual absence in the thickness and the exceptional presence at the surface of the solidification structure resulting from the plane-front growth of titanium carbide have, moreover, been justified. [References: 36]
机译:与数值模拟结果相比较,分析了脉冲Nd-YAG激光辐照覆盖有石墨粉的钛表面熔化的实验结果。由于辐射处理引起的时空温度分布的半解析模型,发现了热事件的模拟,例如表面温度梯度的最大值和辐照后的液态持续时间。 。为了通过辛普森数值方法计算一系列积分,需要进行这些模拟。他们使我们能够解释实验结果,例如碳在熔化区的掺入,它会根据辐照参数而产生碳化钛和可能的石墨夹杂物。此外,由于碳化钛的平面生长而导致的永久不存在的厚度和凝固结构表面的异常存在是合理的。 [参考:36]

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