飞秒
钻探
遗传算法
高温合金
过程(计算)
激光器
钻井工程
支持向量机
计算机科学
激光打孔
打击乐器
机器学习
算法
机械工程
人工智能
工程类
材料科学
声学
光学
物理
操作系统
冶金
微观结构
作者
Zhixi Zhao,Yunhe Yu,Rui-Jia Sun,Wanrong Zhao,Hao Guo,Zhen Zhang,Chenchong Wang
出处
期刊:Micromachines
[Multidisciplinary Digital Publishing Institute]
日期:2023-11-17
卷期号:14 (11): 2110-2110
被引量:12
摘要
Femtosecond laser drilling is extensively used to create film-cooling holes in aero-engine turbine blade processing. Investigating and exploring the impact of laser processing parameters on achieving high-quality holes is crucial. The traditional trial-and-error approach, which relies on experiments, is time-consuming and has limited optimization capabilities for drilling holes. To address this issue, this paper proposes a process design method using machine learning and a genetic algorithm. A dataset of percussion drilling using a femtosecond laser was primarily established to train the models. An optimal method for building a prediction model was determined by comparing and analyzing different machine learning algorithms. Subsequently, the Gaussian support vector regression model and genetic algorithm were combined to optimize the taper and material removal rate within and outside the original data ranges. Ultimately, comprehensive optimization of drilling quality and efficiency was achieved relative to the original data. The proposed framework in this study offers a highly efficient and cost-effective solution for optimizing the femtosecond laser percussion drilling process.
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