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Laser Milling Simulation System for Moulds Manufacturing

机译:模具制造的激光铣削仿真系统

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摘要

This paper refers to the development of a numerical simulator for Laser Milling process useful for industrial applications able to predict the machining results when different materials are processed, different surface conditions are encountered and spatial and temporal distributions of the pulsed beam are set. The original software presented, developed by the authors, are well suited for simulating laser milling or laser micromachining operations with power density up to 10~(14) W/m~2 and pulse duration in the order of nanoseconds. The temperature of the solid phase is evaluated by solving the Fourier equation by using the finite difference method (FDM). The recession velocity of the ablating surface is evaluated according to the Hertz-Knudsen equation assuming that the explosive effects are negligible. The plasma plume is considered in local thermodynamical equilibrium (LTE) and the energy balance permits to evaluate the plume temperature, ion distribution and pressure under the assumption that the gas expansion, from the surface target, produces a sonic front. The plume energy balance is influenced by the energy lost for irradiation from the plume and by the quantity of laser beam energy reflected from the target surface. Numerical simulations have been conducted to quantify this influence on the plasma plume physical state and, consequently, on the ablation process considering a Nd:YAG diode pumped source and three different target materials: Fe-C alloy, copper and aluminum.
机译:本文涉及用于激光铣削过程的数值模拟器的开发,该数值模拟器可用于工业应用,能够在处理不同的材料,遇到不同的表面条件以及设置脉冲束的时空分布时预测加工结果。由作者开发的原始软件非常适合于模拟激光铣削或激光微加工操作,其功率密度高达10〜(14)W / m〜2,脉冲持续时间约为纳秒。固相温度通过使用有限差分法(FDM)求解傅立叶方程来评估。假设爆炸效应可忽略不计,则根据赫兹-努德森方程评估烧蚀表面的后退速度。在局部热力学平衡(LTE)中考虑了等离子体羽流,并且在假设来自表面目标的气体膨胀产生声波锋的假设下,能量平衡允许评估羽流温度,离子分布和压力。羽流能量平衡受羽流辐射损失的能量以及从目标表面反射的激光束能量的数量的影响。考虑到Nd:YAG二极管泵浦源和三种不同的目标材料(Fe-C合金,铜和铝),已经进行了数值模拟,以量化这种影响对等离子体羽流物理状态以及因此对消融过程的影响。

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