Aamir Muhammad, Tu Shanshan, Tolouei-Rad Majid, Giasin Khaled, Vafadar Ana
School of Engineering, Edith Cowan University, Joondalup, WA 6027, Australia.
Faculty of Information Technology, Beijing University of Technology, Beijing 100124, China.
Materials (Basel). 2020 Feb 3;13(3):680. doi: 10.3390/ma13030680.
In industries such as aerospace and automotive, drilling many holes is commonly required to assemble different structures where machined holes need to comply with tight geometric tolerances. Multi-spindle drilling using a poly-drill head is an industrial hole-making approach that allows drilling several holes simultaneously. Optimizing process parameters also improves machining processes. This work focuses on the optimization of drilling parameters and two drilling processes-namely, one-shot drilling and multi-hole drilling-using the Taguchi method. Analysis of variance and regression analysis was implemented to indicate the significance of drilling parameters and their impact on the measured responses i.e., surface roughness and hole size. From the Taguchi optimization, optimal drilling parameters were found to occur at a low cutting speed and feed rate using a poly-drill head. Furthermore, a fuzzy logic approach was employed to predict the surface roughness and hole size. It was found that the fuzzy measured values were in good agreement with the experimental values; therefore, the developed models can be effectively used to predict the surface roughness and hole size in multi-hole drilling. Moreover, confirmation tests were performed to validate that the Taguchi optimized levels and fuzzy developed models effectively represent the surface roughness and hole size.
在航空航天和汽车等行业中,通常需要钻出许多孔来组装不同的结构,其中加工孔需要符合严格的几何公差。使用多轴钻头进行多轴钻孔是一种工业制孔方法,可同时钻出多个孔。优化工艺参数也能改善加工过程。这项工作重点在于使用田口方法优化钻孔参数以及两种钻孔工艺,即单次钻孔和多孔钻孔。进行了方差分析和回归分析,以表明钻孔参数的重要性及其对测量响应(即表面粗糙度和孔径)的影响。通过田口优化,发现使用多轴钻头时,在低切削速度和进给率下可获得最佳钻孔参数。此外,采用模糊逻辑方法预测表面粗糙度和孔径。结果发现模糊测量值与实验值吻合良好;因此,所开发的模型可有效用于预测多孔钻孔中的表面粗糙度和孔径。此外,还进行了验证试验,以确认田口优化水平和模糊开发模型能有效代表表面粗糙度和孔径。