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Optimization of machining parameters at high speed drilling of carbon fiber reinforced plastic (CFRP) laminates

机译:碳纤维增强塑料(CFRP)层压板高速钻孔时的加工参数优化

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摘要

High speed machining is now acknowledged to be one of the key manufacturing technologies to ensure high productivity and throughput. Drilling of CFRP, though a challenging task, is being performed successfully at low spindle speeds. However high speed drilling in CFRP thin laminates has not been explored much. This paper reports an experimental investigation of a full factorial design performed on thin CFRP laminates using K20 carbide drill by varying the drilling parameters such as spindle speed and feed rate to determine optimum cutting conditions. The hole quality parameters analyzed include hole diameter, circularity, peel-up delamination and push-out delamination. Analysis of variance (ANOVA) was carried out for hole quality parameters and their contribution rates were determined. Genetic Algorithm (GA) methodology was used in the multiple objective optimization (using MATLAB R2010a software) to find the optimum cutting conditions for defect free drilling. Tool life of the K20 carbide drill was predicted at optimized cutting speed and feed.
机译:现在公认高速加工是确保高生产率和高生产率的关键制造技术之一。 CFRP钻孔虽然是一项艰巨的任务,但却在低主轴转速下成功完成。但是,对于CFRP薄层压板的高速钻孔尚未进行太多研究。本文报告了通过使用K20硬质合金钻头对CFRP薄板进行全因子设计的实验研究,该钻头通过改变钻削参数(例如主轴速度和进给速度)来确定最佳切削条件。分析的孔质量参数包括孔直径,圆度,剥离分层和推出分层。对孔质量参数进行方差分析(ANOVA),并确定其贡献率。遗传算法(GA)方法用于多目标优化(使用MATLAB R2010a软件),以找到无缺陷钻孔的最佳切削条件。 K20硬质合金钻头的刀具寿命是在最佳切削速度和进给的情况下预测的。

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