Pop Alina Bianca, Titu Aurel Mihail, Ravai-Nagy Sandor, Daraba Catalin
Department of Engineering and Technology Management, Faculty of Engineering, Northern University Centre of Baia Mare, Technical University of Cluj-Napoca, 62A, Victor Babes Street, 430083 Baia Mare, Romania.
Industrial Engineering and Management Department, Faculty of Engineering, "Lucian Blaga" University of Sibiu, 10 Victoriei Street, 550024 Sibiu, Romania.
Polymers (Basel). 2024 May 24;16(11):1490. doi: 10.3390/polym16111490.
This paper explores the interaction between cutting parameters and the geometric accuracy of machined holes in a variety of engineering plastics, with the aim of improving manufacturing processes in the plastic processing industry. In the context of fast and precise manufacturing technology, the accuracy of drilled holes in polymers is of paramount importance, given their essential role in the assembly and functionality of finished parts. The objective of this research was to determine the influence of cutting speed and feed rate on the diameter and cylindricity of machined holes in six diverse types of plastics using a multilevel factorial design for analysis. The key message conveyed to the reader highlights that careful selection of cutting parameters is crucial to achieving high standards of accuracy and repeatability in plastic processing. The methodology involved structured experiments, looking at the effect of changing cutting parameters on a set of six polymer materials. A CNC machining center for drills and high-precision measuring machines were used to evaluate the diameter and cylindricity of the holes. The results of ANOVA statistical analysis showed a significant correlation between cutting parameters and hole sizes for some materials, while for others the relationship was less evident. The conclusions drawn highlight the importance of optimizing cutting speed and feed rate according to polymer type to maximize accuracy and minimize deviations from cylindricity. It was also observed that, under selected processing conditions, high- and medium-density polyurethane showed the best results in terms of accuracy and cylindricity, suggesting potential optimized directions for specific industrial applications.
本文探讨了切削参数与多种工程塑料中加工孔的几何精度之间的相互作用,旨在改进塑料加工行业的制造工艺。在快速精确制造技术的背景下,聚合物钻孔的精度至关重要,因为其在成品零件的组装和功能中起着关键作用。本研究的目的是使用多水平析因设计进行分析,确定切削速度和进给速度对六种不同类型塑料中加工孔的直径和圆柱度的影响。传达给读者的关键信息强调,仔细选择切削参数对于在塑料加工中实现高标准的精度和可重复性至关重要。该方法包括结构化实验,研究改变切削参数对六种聚合物材料的影响。使用钻孔数控加工中心和高精度测量机来评估孔的直径和圆柱度。方差分析统计分析结果表明,对于某些材料,切削参数与孔尺寸之间存在显著相关性,而对于其他材料,这种关系不太明显。得出的结论强调了根据聚合物类型优化切削速度和进给速度以最大化精度并最小化圆柱度偏差的重要性。还观察到,在选定的加工条件下,高密度和中密度聚氨酯在精度和圆柱度方面表现出最佳结果,为特定工业应用指明了潜在的优化方向。