Tanaka Yayoi, Sato Hisashi, Eryu Osamu
Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya, Aichi, 466-8555, Japan.
Heliyon. 2023 Sep 10;9(9):e19930. doi: 10.1016/j.heliyon.2023.e19930. eCollection 2023 Sep.
We have previously shown that sharpening the cutting edge of a cemented carbide tool by chemical-mechanical polishing (CMP) improved the cutting speed by approximately 150% and reduced the wear on the flank surface by approximately 50% compared to a commercial tool when cutting a heat-resistant alloy. In addition, the cutting edges of carbide tools treated by laser doping (LD) using boron nitride as doping material achieved approximately 100 times longer cutting distance in glass machining than the edges of carbide tools treated with CMP grinding wheels. In this study, LD was conducted on a tool base material (WC-Co) to investigate and understand the crystal structure changes of the base material upon treatment. Electron backscatter diffraction and X-ray diffraction results show that the effect of LD was observed in the region 50 nm below the surface. LD improved the strength by approximately 11.7% without destroying the surface crystal structure. Thus, doping can be performed on tool tips while maintaining the WC structure to improve the performance of WC-Co cutting tools.
我们之前已经表明,在切割耐热合金时,通过化学机械抛光(CMP)来锐化硬质合金刀具的切削刃,与商用刀具相比,切削速度提高了约150%,后刀面磨损减少了约50%。此外,以氮化硼作为掺杂材料通过激光掺杂(LD)处理的硬质合金刀具的切削刃,在玻璃加工中的切削距离比用CMP砂轮处理的硬质合金刀具的切削刃长约100倍。在本研究中,对刀具基体材料(WC-Co)进行了激光掺杂,以研究和了解处理后基体材料的晶体结构变化。电子背散射衍射和X射线衍射结果表明,在表面以下50纳米的区域观察到了激光掺杂的效果。激光掺杂在不破坏表面晶体结构的情况下将强度提高了约11.7%。因此,可以在保持WC结构的同时对刀尖进行掺杂,以提高WC-Co切削刀具的性能。