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首页> 外文期刊>Journal of Materials Processing Technology >A time based method for predicting the workpiece surface micro-topography under pulsed laser ablation
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A time based method for predicting the workpiece surface micro-topography under pulsed laser ablation

机译:基于时间的脉冲激光烧蚀预测工件表面微观形貌的方法

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摘要

The generation of micro-features in a predictable and repeatable manner by use of pulsed laser ablation requires an understanding of the temporal and energetic distributions of the laser beam upon the work-piece surface. Modelling the response of the material to known energetic and kinematic parameters of the pulsed laser ablation process can be carried out in a discretised time-based approach, allowing the workpiece topography to be simulated mathematically to reflect a real-life process. Considerations of the antecedent workpiece surface texture such as increases in irradiated area due to the surface gradient, and increases in laser spot size due to beam divergence throughout the elevation of the workpiece are used to predict energy densities and hence the resultant ablated depth and texture of the targeted surfaces. A fully calibrated Yb:YAG pulsed fibre laser (SPI G3.0 RM) was used to validate the model on three materials, highlighting the models strengths for different material types. It was found that Ni based workpieces presented redeposition phenomena under these laser ablation conditions. To analyse the model without redeposition, validations trials on materials that do not present such side effects, e.g. diamond, were carried out and differences were found to be up to 9.39%.
机译:通过使用脉冲激光烧蚀以可预测和可重复的方式生成微特征,需要了解激光束在工件表面上的时间和能量分布。可以采用离散的基于时间的方法对材料对脉冲激光烧蚀过程的已知能量和运动学参数的响应进行建模,以数学方式模拟工件形貌以反映实际过程。考虑到之前的工件表面纹理,例如由于表面梯度而导致的照射面积增加,以及由于整个工件高程中的光束发散所导致的激光光斑尺寸增加,都可用于预测能量密度,从而预测最终的烧蚀深度和结构。目标表面。使用经过完全校准的Yb:YAG脉冲光纤激光器(SPI G3.0 RM)来验证三种材料的模型,强调了不同材料类型的模型强度。发现在这些激光烧蚀条件下,Ni基工件呈现出再沉积现象。为了在不进行重新沉积的情况下分析模型,请对不存在此类副作用的材料进行验证试验,例如进行了钻石测试,发现差异最大为9.39%。

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