Nowakowski Lukasz, Bartoszuk Marian, Skrzyniarz Michal, Blasiak Slawomir, Vasileva Dimka
Department of Manufacturing Engineering and Metrology, Kielce University of Technology, 25-314 Kielce, Poland.
Department of Manufacturing Engineering and Materials Science, Opole University of Technology, 45-758 Opole, Poland.
Materials (Basel). 2022 May 19;15(10):3626. doi: 10.3390/ma15103626.
The article presents the results and process analysis of the face milling of aluminium alloy 2017A with the CoroMill 490 tool on an AVIA VMC 800 vertical milling centre. The study analysed the effects of the cutting speed, the feed rate, the actual number of teeth involved in the process, the minimum thickness of the cut layer (hmin), and the relative displacement in the tool-workpiece system D(ξ) on the surface roughness parameter Ra. To measure relative displacement, an original bench was used with an XL-80 laser interferometer. The analysis of relative displacement and surface roughness allowed these factors to be correlated with each other. The purpose of this article is to determine the stable operating ranges of the CoroMill 490-050Q22-08M milling head with respect to the value of the generated relative displacement w during the face-milling process and to determine its influence on surface roughness. The research methodology presented in this paper and the cutting tests carried out allowed the determination of the optimum operating parameters of the CoroMill 490-050Q22-08M tool during the face milling of aluminium alloy 2017A, which are vc 300 m/m and fz—0.14 mm/tooth. Working with the defined cutting parameters allows all the cutting inserts in the tool body to be involved in shaping the geometrical structure of the surface, while maintaining a low vibration level D(ξ) > 1 µm, a low value of the parameter hmin > 1.5 µm, and the desired value of the parameter Ra > 0.2 µm
本文介绍了在AVIA VMC 800立式铣削中心上使用CoroMill 490刀具对2017A铝合金进行端面铣削的结果及工艺分析。该研究分析了切削速度、进给率、加工过程中实际参与切削的齿数、切削层最小厚度(hmin)以及刀具 - 工件系统中的相对位移D(ξ)对表面粗糙度参数Ra的影响。为测量相对位移,使用了配备XL - 80激光干涉仪的原始工作台。通过对相对位移和表面粗糙度的分析,使这些因素相互关联。本文的目的是确定CoroMill 490 - 050Q22 - 08M铣刀头在端面铣削过程中相对于所产生的相对位移w值的稳定工作范围,并确定其对表面粗糙度的影响。本文所介绍的研究方法和进行的切削试验,确定了CoroMill 490 - 050Q22 - 08M刀具在对2017A铝合金进行端面铣削时的最佳操作参数,即vc 300 m/min和fz—0.14 mm/齿。按照定义的切削参数进行加工,可使刀体中的所有切削刀片都参与到表面几何结构的加工中,同时保持较低的振动水平D(ξ) > 1 µm、较低的hmin参数值hmin > 1.5 µm以及所需的Ra参数值Ra > 0.2 µm