Zawada-Michałowska Magdalena, Józwik Jerzy, Legutko Stanisław, Mika Dariusz, Pieśko Paweł, Pytka Jarosław
Faculty of Mechanical Engineering, Lublin University of Technology, 20-618 Lublin, Poland.
Faculty of Mechanical Engineering, Poznan University of Technology, 60-965 Poznań, Poland.
Materials (Basel). 2020 Dec 15;13(24):5725. doi: 10.3390/ma13245725.
This paper presents the analysis of cutting force during surface layer milling of selected aluminium alloys, which are widely used in the aviation industry. The cutting force is one of the most important parameters determining the machinability of the material and also provides important information about the course of the cutting. The study analysed the influence of the technological parameters, i.e., cutting speed and depth of cut as well as the relation between cutting tool feed direction and rolling direction on the value of cutting force during milling of selected aluminium alloys, i.e., EN AW-2017A T451 and EN AW-2024 T351. The material anisotropy is a very important issue, since the engineering industry faces enormous problems related to the cutting of the tested materials that are usually supplied in the form of rolled plates. The surface layer was cut due to the fact that it accumulates the greatest residual stresses. The measurement process of cutting force was performed by using 9257B Kistler piezoelectric dynamometer. As part of the analysis of the results, the measurement uncertainty was also estimated, which was determined on the basis of two components obtained by using the A and B methods, respectively.
本文介绍了对特定铝合金进行表层铣削时切削力的分析,这些铝合金在航空工业中广泛应用。切削力是决定材料可加工性的最重要参数之一,同时也提供了有关切削过程的重要信息。该研究分析了工艺参数的影响,即切削速度和切削深度,以及切削刀具进给方向与轧制方向之间的关系对特定铝合金(即EN AW - 2017A T451和EN AW - 2024 T351)铣削时切削力值的影响。材料各向异性是一个非常重要的问题,因为工程行业在切削通常以轧制板材形式供应的测试材料时面临巨大问题。由于表层积累了最大的残余应力,所以对其进行切削。切削力的测量过程使用9257B奇石乐压电测力计进行。作为结果分析的一部分,还估计了测量不确定度,它分别基于通过A法和B法获得的两个分量来确定。