Gombár Miroslav, Harničárová Marta, Valíček Jan, Kušnerová Milena, Tozan Hakan, Mikuš Rastislav
Department of Machining Technology, Faculty of Mechanical Engineering, University of West Bohemia, 301 00 Pilsen, Czech Republic.
Institute of Electrical Engineering, Automation, Informatics and Physics, Faculty of Engineering, Slovak University of Agriculture in Nitra, 949 76 Nitra, Slovakia.
Materials (Basel). 2025 Feb 20;18(5):921. doi: 10.3390/ma18050921.
The effectiveness of a machining process can be determined by analysing the quality of the generated surface and the rate of tool wear. Stellite is highly challenging to machine, which is why it is primarily processed through grinding methods. This study concentrates on the impact of cutting parameters and tool wear (, ) on the created surface roughness surface (, , ) during the orthogonal cutting of Stellite 6, which is overlaid on a steel surface, C45, prepared by means of HP/HVOF (JP-5000). The results indicate that the dominant influence on the change in the total roughness profile height value () is the mutual interaction of cutting speed and depth of cut at 16% ( < 0.000). The greatest impact on the change in the mean arithmetic deviation of the roughness profile () value is the interaction of cutting speed, tool front angle, and depth of cut with a 15% share ( < 0.000), as well as on the change in the value (15%) and tool wear (25%). This investigation lays the groundwork for potentially substituting the processing of flat surfaces with hardened layers created by thermal spraying (such as Stellite 6) with grinding or methods that offer greater efficiency from both economic and technological perspectives.
加工工艺的有效性可以通过分析所生成表面的质量和刀具磨损率来确定。司太立合金极难加工,这就是为什么它主要通过磨削方法进行加工。本研究聚焦于在对通过热喷涂(JP - 5000型高速火焰喷涂系统)制备在C45钢表面上的司太立合金6进行正交切削时,切削参数和刀具磨损(,)对所产生的表面粗糙度(,,)的影响。结果表明,切削速度和切削深度的相互作用对总粗糙度轮廓高度值()变化的主要影响占比为16%(< 0.000)。切削速度、刀具前角和切削深度的相互作用对粗糙度轮廓平均算术偏差()值变化的影响最大,占比15%(< 0.000),对值变化(15%)和刀具磨损(25%)的影响也是如此。本研究为从经济和技术角度用磨削或更高效的方法替代对由热喷涂(如司太立合金6)形成的硬化层平面的加工奠定了基础。