三维铝件激光切割机器人工艺优化研究

CONVERTER Pub Date : 2021-01-01 DOI:10.17762/converter.121
Haibing Xiao, Yongquan Zhou
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引用次数: 0

摘要

为了解决三维铝件激光切割的精度问题,研究了主要工艺参数对激光切割特性的影响。首先,研究了复杂曲面的三维激光切割模型,揭示了铝材料三维激光切割的传热机理。通过三维激光切割机器人试验台,以铝材为试验对象,选择合理的激光切割参数,研究各工艺参数对切割质量和狭缝形貌的影响规律。实验研究表明,采用一定的工艺参数组合可以获得较低的表面粗糙度,并尝试在切割速度和激光功率方面对参数进行优化。获得低表面粗糙度,功率800w,切割速度40mm/s,可切割1mm铝材。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Process Optimization of 3D Laser Cutting Robot for Three Dimensional Aluminum Components
In order to solve the precision problem of laser cutting of 3D aluminum components, the influence of main process parameters on the characteristics of laser cutting was studied. Firstly, the model of 3D laser cutting of complex curved surface was studied, and the heat transfer mechanism of 3D laser cutting of aluminum materials was revealed. Through the three-dimensional laser cutting robot test bed, aluminum material is taken as the test object, the reasonable laser cutting parameters are selected, and the influence law of each process parameter on the cutting quality and the morphology of the slit is studied. Experimental studies shows that low surface roughness was achieved with some combinations of process parameters and attempts were made to optimize parameters in terms of cutting speed and laser power. It is obtained low surface roughness, with power 800w, cutting speed 40mm/s for 1mm aluminum.
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