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Analysis and prediction of dimensions and cost of laser micro-machining internal channel fabrication process

机译:激光微加工内部通道制造工艺的尺寸和成本分析与预测

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摘要

This paper presents the utilisation of Response Surface Methodology (RSM) as the prediction tool for the laser micro-machining process. Laser internal microchannels machined using pulsed Nd:YVO4 laser in polycarbonate were investigated. The experiments were carried out according to 33 factorial Design of Experiment (DoE). In this work the three input process set as control parameters were laser power, P; pulse repetition frequency, PRF; and sample translation speed, U. Measured responses were the channel width and the micro-machining operating cost per metre of produced microchannels. The responses were sufficiently predicted within the set micro-machining parameters limits. Two factorial interaction (2FI) and quadratic polynomial regression equations for both responses were constructed. It is proposed that the developed prediction equations can be used to find locally optimal micro-machining process parameters under experimental and operational conditions.
机译:本文介绍了利用响应表面方法学(RSM)作为激光微加工过程的预测工具。研究了使用脉冲Nd:YVO4激光在聚碳酸酯中加工的激光内部微通道。根据33因子实验设计(DoE)进行了实验。在这项工作中,设置为控制参数的三个输入过程是激光功率P;脉冲重复频率,PRF;样品响应速度为U。测得的响应为通道宽度和每米生产的微通道的微加工操作成本。在设置的微加工参数范围内可以充分预测响应。构造了两个响应的阶乘相互作用(2FI)和二次多项式回归方程。建议开发的预测方程可用于在实验和操作条件下找到局部最佳的微加工工艺参数。

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