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Modelling of simultaneous estimating the laser heat flux and melted depth during laser processing by inverse methodology

机译:利用逆方法同时估算激光加工过程中的激光热通量和熔化深度的模型

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摘要

In the present study, a conjugate gradient method based inverse algorithm is applied to simultaneously estimate the unknown time-dependent laser heat flux and melted depth during laser processing based on available temperature measurements. It is assumed that no prior information is available on the functional form of the unknown laser heat flux and melted depth. While knowing the temperature history at the measuring positions, the laser heat flux and melted depth can be simultaneously determined. The methodology presented in this paper can also be applied to other various applications, such as to calculate the cutting forces in nanomachining by atomic force microscopy (AFM), to estimate the heat sources in X-ray lithographic process, or to determine the location of the solid-liquid interface and the temperature distributions of the two phases during microthermal machining by using scanning thermal microscopy.
机译:在本研究中,基于共轭梯度法的逆算法被用于基于可用的温度测量值,同时估计激光加工过程中未知的与时间有关的激光热通量和熔化深度。假定没有关于未知激光热通量和熔化深度的功能形式的先验信息。在知道测量位置的温度历史记录的同时,可以同时确定激光的热通量和熔化深度。本文介绍的方法还可以应用于其他各种应用,例如通过原子力显微镜(AFM)计算纳米加工中的切削力,估算X射线光刻过程中的热源或确定工件的位置。扫描热显微镜观察微热加工过程中两相的固液界面和温度分布。

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