用CO2激光切割机研究凝胶叶纤维不饱和聚酯复合材料的可加工性

G. Nugroho, Heryoga Winarbawa, Autha Rachman
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引用次数: 0

摘要

在CO2激光切割过程中,最佳切割参数的确定对获得良好的切割效果至关重要。本实验以凝胶叶纤维/不饱和聚酯(ALF/UP)为试样。使用Agel叶纤维作为复合增强材料是为了解决可持续发展问题。本研究的目的是找出ALF/UP复合材料激光切割过程中的材料去除率。实验中采用田口L27正交阵列法确定影响CO2激光切割过程的参数。方差分析用于找出哪些切削参数对MRR影响最大。实验采用激光切割机的4个参数,激光功率(36、48、60 W),切割速度(2、4、6 mm/s),喷嘴尖端距离(24、26、28 mm),切割角度(0、30、45°),以及复合材料本身的1个参数,层数(4、6、8层)。结果表明,当切削功率为48W,切削速度为6mm /s时,切削比最佳。喷嘴尖端距离和切割角度等参数对MRR的影响不显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Machinability investigation of agel leaf fiber unsaturated polyester composite with CO2 laser cutting machine
Determination of optimal cutting parameters is important in the CO2 laser cutting process to obtain good cutting result. In this experiment, agel leaf fiber/unsaturated polyester (ALF/UP) are being used as test specimen. Agel leaf fiber usage as composite reinforcement is in order to fulfill sustainability issue. The purpose of this study is to find the material removal rate (MRR) of laser cutting process of ALF/UP composites. Taguchi's L27 orthogonal array was implemented in experiment to determine which parameter are most influential in the CO2 laser cutting process. ANOVA used to find which cutting parameters affect MRR the most. Four parameters from laser cutting machine, the laser power (36, 48, 60 W), the cutting speed (2, 4, 6 mm/s), the nozzle tip distance (24, 26, 28 mm), the cutting angle (0, 30, 45°), and one parameter from composite itself, the number of layers (4, 6, 8 layers) were used in the experiment. It was found that optimum MRR is obtained with 48W power and cutting speed of 6 mm/s. Another parameter such as nozzle tip distance and cutting angle have no significant effect to the MRR.
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