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首页> 外文期刊>International journal of materials & product technology >Theoretical and experimental investigation for micro-channel fabrication using low power CO_2 laser
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Theoretical and experimental investigation for micro-channel fabrication using low power CO_2 laser

机译:低功率CO_2激光器微通道制造的理论和实验研究

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摘要

CO_(2) laser being a localised non-contact type machining process depends on the thermal and mechanical properties of a material to a great extent. The scope of this research is to study the effect of process parameters on channel profile of polymethylmethacrylate (PMMA) by CO_(2) laser (0-25 W). The parameters selected are beam power and scanning speed, keeping assist gas pressure constant. Using the principle of energy balance and assuming complete evaporation of molten material, an analytical model for the depth of cut is developed by considering Gaussian beam energy distribution in three-dimensional coordinate systems. Experimental results obtained at 5 mm thick plate by varying process parameters were compared with the analytical data showing good convergence with a variation of 1.83%. An attempt is made to analyse the variation of channel geometry as a function of process parameters analytically. The present model was developed with consideration of x, y and z coordinates associated with laser machining process and was validated by experimentation and 2D model available in the literature. It was observed that the proposed model shows good convergence with the experimental values. Hence, the proposed model is found to be suitable for prediction of micro-channel depth with precision.
机译:CO_(2)激光是一种局部非接触式机加工工艺,在很大程度上取决于材料的热和机械性能。本研究的范围是研究工艺参数对CO_(2)激光(0-25 W)对聚甲基丙烯酸甲酯(PMMA)通道轮廓的影响。选择的参数是射束功率和扫描速度,以保持辅助气压恒定。利用能量平衡原理并假设熔融材料完全蒸发,通过考虑三维坐标系中的高斯光束能量分布,建立了切削深度的解析模型。将通过改变工艺参数在5 mm厚板上获得的实验结果与分析数据进行比较,结果显示收敛性良好,差异为1.83%。试图分析通道几何形状随过程参数的变化。本模型的开发考虑了与激光加工过程相关的x,y和z坐标,并通过实验和文献中的2D模型进行了验证。观察到,提出的模型与实验值显示出良好的收敛性。因此,发现所提出的模型适合于精确地预测微通道深度。

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