Li Yuan, Zheng Guangming, Cheng Xiang, Yang Xianhai, Xu Rufeng, Zhang Huaqiang
School of Mechanical Engineering, Shandong University of Technology; 266 West Xincun Road, Zibo 255000, China.
Materials (Basel). 2019 Oct 7;12(19):3266. doi: 10.3390/ma12193266.
The cutting performance of cutting tools in high-speed machining (HSM) is an important factor restricting the machined surface integrity of the workpiece. The HSM of AISI 4340 is carried out by using coated tools with TiN/TiCN/TiAlN multi-coating, TiAlN + TiN coating, TiCN + NbC coating, and AlTiN coating, respectively. The cutting performance evaluation of the coated tools is revealed by the chip morphology, cutting force, cutting temperature, and tool wear. The results show that the serration and shear slip of the chips become more clear with the cutting speed. The lower cutting force and cutting temperature are achieved by the TiN/TiCN/TiAlN multi-coated tool. The flank wear was the dominant wear form in the milling process of AISI 4340. The dominant wear mechanisms of the coated tools include the crater wear, coating chipping, adhesion, abrasion, and diffusion. In general, a TiN/TiCN/TiAlN multi-coated tool is the most suitable tool for high-speed milling of AISI 4340, due to the lower cutting force, the lower cutting temperature, and the high resistance of the element diffusion.
高速加工(HSM)中刀具的切削性能是制约工件加工表面完整性的一个重要因素。分别使用具有TiN/TiCN/TiAlN多层涂层、TiAlN+TiN涂层、TiCN+NbC涂层和AlTiN涂层的涂层刀具对AISI 4340进行高速加工。通过切屑形态、切削力、切削温度和刀具磨损来揭示涂层刀具的切削性能评价。结果表明,随着切削速度的提高,切屑的锯齿化和剪切滑移变得更加明显。TiN/TiCN/TiAlN多层涂层刀具实现了较低的切削力和切削温度。在AISI 4340的铣削过程中,后刀面磨损是主要的磨损形式。涂层刀具的主要磨损机制包括月牙洼磨损、涂层剥落、粘着、磨粒磨损和扩散。总体而言,TiN/TiCN/TiAlN多层涂层刀具是AISI 4340高速铣削最合适的刀具,因为其切削力较低、切削温度较低且元素扩散阻力高。