Knápek Tomáš, Dvořáčková Štěpánka, Váňa Martin
Assembly and Engineering Metrology, Department of Machining, Faculty of Mechanical Engineering, Technical University of Liberec, 461 17 Liberec, Czech Republic.
Materials (Basel). 2023 Jul 14;16(14):5002. doi: 10.3390/ma16145002.
This study aimed to investigate the effect of the clearance angle of the milling tool on wear, cutting forces, machined edge roughness, and delamination during non-contiguous milling of carbon-fiber-reinforced plastic (CFRP) composite panels with a twill weave and 90° fiber orientation. To achieve the objective of the study, it was first necessary to design suitable tools (6 mm diameter sintered carbide shank milling cutters) with a variety of clearance angles (8.4°, 12.4°, and 16.4°) and all the machinery and measuring equipment for the research to be carried out. Furthermore, measurement and evaluation methods for cutting tool wear, cutting forces, machined edge roughness, and delamination were developed. Last but not least, the results obtained during the research were summarized and evaluated. From the experiments conducted in this study, it was found that the tool clearance angle has a significant effect on tool wear, roughness of the machined surface, and delamination of the carbon fiber composite board. The tool with a clearance angle of 8.4° wore faster than the tool with a clearance angle of 16.4°. The same trend was observed for cutting force, machined surface roughness, and delamination. In this context, it was also shown that the cutting force increased as the tool wear increased, which in turn increased surface roughness and delamination. These results are of practical significance, not only in terms of the quality of the machined surface but also in terms of time, cost, and energy savings when machining CFRP composite materials.
本研究旨在探讨铣刀的后角对带有斜纹编织和90°纤维取向的碳纤维增强塑料(CFRP)复合板非连续铣削过程中的磨损、切削力、加工边缘粗糙度和分层的影响。为实现该研究目标,首先有必要设计具有多种后角(8.4°、12.4°和16.4°)的合适刀具(直径6 mm的硬质合金刀柄铣刀)以及开展该研究所需的所有机械和测量设备。此外,还开发了切削刀具磨损、切削力、加工边缘粗糙度和分层的测量与评估方法。最后,对研究过程中获得的结果进行了总结和评估。从本研究进行的实验中发现,刀具后角对刀具磨损、加工表面粗糙度和碳纤维复合板的分层有显著影响。后角为8.4°的刀具比后角为16.4°的刀具磨损更快。切削力、加工表面粗糙度和分层也呈现相同趋势。在此背景下,还表明切削力随着刀具磨损的增加而增加,这反过来又增加了表面粗糙度和分层。这些结果不仅在加工表面质量方面具有实际意义,而且在加工CFRP复合材料时的时间、成本和节能方面也具有实际意义。