Lee Hyeonhwa, Kim Jinsoo, Lee Sungcheul, Park Jongeun, Park Jeongyeon, Kim Jongsu
Molding & Metal Forming R&D Department, Korea Institute of Industrial Technology, Bucheon 14441, Republic of Korea.
Department of Ultra-Precision Machines and Systems, Korea Institute of Machinery & Material, Daejeon 34103, Republic of Korea.
Micromachines (Basel). 2023 Mar 16;14(3):664. doi: 10.3390/mi14030664.
Nano-crystalline diamond (NCD) coating to improve the performance of cutting tools, as the coating thickness varies, the cutting performance and lifespan of the tool varies because the radius of its cutting edge and coating surface roughness are altered. Therefore, an in-depth analysis on the impact of the variations in coating thickness on the cutting tool abrasion and quality of machined surface is necessary. In this study, two NCD ball endmills were coated with 8 and 12 μm thicknesses, and the tool abrasion and roughness of the machined plane were observed after milling. Furthermore, the morphology of the coated surface and abrased cutting edge were observed using a 3D confocal microscope. Consequently, we observed that individual nodules were formed on the continuous aggregates as the coating thickness increased, which increased the coated surface roughness. The two damage modes of the aggregation determined the dominant abrasion that occurred on the cutting edges of both types of coating thicknesses. Delamination and crater wear caused a sharp increase in the roughness of the machined surface. In summary, the increase in coating thickness delayed the delamination of the coating but increased the roughness of the cutting edge, which reduced the machined surface roughness.
纳米晶金刚石(NCD)涂层用于提高切削刀具的性能,随着涂层厚度的变化,刀具的切削性能和寿命也会改变,因为其切削刃半径和涂层表面粗糙度会发生变化。因此,有必要深入分析涂层厚度变化对刀具磨损和加工表面质量的影响。在本研究中,对两把NCD球头立铣刀分别进行了厚度为8μm和12μm的涂层处理,并在铣削后观察了刀具磨损情况和加工平面的粗糙度。此外,使用三维共聚焦显微镜观察了涂层表面和磨损切削刃的形态。结果发现,随着涂层厚度增加,连续聚集体上形成了单个瘤状物,这增加了涂层表面粗糙度。聚集体的两种损伤模式决定了两种涂层厚度的切削刃上主要发生的磨损。分层和月牙洼磨损导致加工表面粗糙度急剧增加。总之,涂层厚度的增加延迟了涂层的分层,但增加了切削刃的粗糙度,从而降低了加工表面粗糙度。