Zagórski Ireneusz, Korpysa Jarosław, Weremczuk Andrzej
Department of Production Engineering, Mechanical Engineering Faculty, Lublin University of Technology, 36 Nadbystrzycka Str., 20-618 Lublin, Poland.
Department of Applied Mechanics, Mechanical Engineering Faculty, Lublin University of Technology, 20-618 Lublin, Poland.
Materials (Basel). 2021 May 12;14(10):2517. doi: 10.3390/ma14102517.
The article presents the results of an analysis of the influence of the technological parameters related to tool holder types on the vibrations occurring during the milling of AZ91D magnesium alloy. Magnesium alloys are very low-density materials and, therefore, are increasingly being considered as replacement materials for the more commonly used aluminium alloys. The tool used in the study was a carbide end mill with TiAlN coating, clamped in three different types of tool holder: ER collet, heat shrink, and Tendo E hydraulic. The milling tests used straight toolpaths at varied cutting speeds and feed per tooth values. Based on the vibration displacement and acceleration signals recorded during the machining tests, the following were analysed: maximum value, amplitude, and root mean square (RMS) value of the vibrations. As part of the study, composite multiscale entropy (CMSE) analysis was also performed, describing the level of disorderliness of the obtained vibration signals. The increase in machining parameters caused an increase in the values characterising the displacement and acceleration of the vibrations. It was noted that multiscale entropy might be an important parameter describing the vibration signal (both displacement and acceleration).
本文介绍了与刀架类型相关的工艺参数对AZ91D镁合金铣削过程中产生的振动影响的分析结果。镁合金是密度非常低的材料,因此越来越多地被视为常用铝合金的替代材料。研究中使用的刀具是带有TiAlN涂层的硬质合金立铣刀,安装在三种不同类型的刀架中:ER夹头、热缩刀柄和Tendo E液压刀柄。铣削试验采用直线刀具路径,切削速度和每齿进给量各不相同。根据加工试验中记录的振动位移和加速度信号,分析了以下参数:振动的最大值、幅值和均方根(RMS)值。作为研究的一部分,还进行了复合多尺度熵(CMSE)分析,以描述所获得振动信号的无序程度。加工参数的增加导致表征振动位移和加速度的值增加。研究发现,多尺度熵可能是描述振动信号(位移和加速度)的一个重要参数。