Žmak Irena, Jozić Sonja, Ćurković Lidija, Filetin Tomislav
Department of Materials, Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb, 10000 Zagreb, Croatia.
Department of Manufacturing Engineering, Faculty of Electrical Engineering, Mechanical Engineering and Naval Architecture, University of Split, 21000 Split, Croatia.
Materials (Basel). 2025 Jun 16;18(12):2813. doi: 10.3390/ma18122813.
Choosing the appropriate cutting tool material is essential for enhancing machining processes because it directly affects product quality, surface finish, dimensional accuracy, tool longevity, and overall efficiency. Different materials are used for cutting tools, i.e., for cutting inserts. Due to their high hardness and high temperature resistance, ceramics cutting inserts allow for increased cutting speeds, resulting in shorter manufacturing times and reduced costs, despite being pricier than traditional cemented carbide and facing certain technical challenges due to their brittleness. Alumina-based ceramics dominate the market, accounting for about two-thirds of usage, followed by silicon nitride and zirconia. This paper provides a comprehensive overview of recent advances in alumina ceramic materials used as cutting inserts, focusing on research conducted in the last five years to optimize static and dynamic mechanical and thermal properties, wear resistance, density, etc. They ways in which the properties are altered through the incorporation of whiskers, nanoparticles, or nanotubes; the modification of the structure; the optimization of sintering parameters; and the application of advanced sintering techniques are demonstrated. The paper also addresses sustainability, environmental impact, and the management of critical raw materials associated with cutting inserts, which pertains to the future development of cutting insert materials.
选择合适的刀具材料对于提高加工工艺至关重要,因为它直接影响产品质量、表面光洁度、尺寸精度、刀具寿命和整体效率。刀具,即切削刀片,使用不同的材料。由于其高硬度和耐高温性,陶瓷切削刀片允许提高切削速度,从而缩短制造时间并降低成本,尽管它们比传统硬质合金更昂贵,并且由于其脆性面临某些技术挑战。氧化铝基陶瓷主导市场,占用量约三分之二,其次是氮化硅和氧化锆。本文全面概述了用作切削刀片的氧化铝陶瓷材料的最新进展,重点关注过去五年为优化静态和动态机械及热性能、耐磨性、密度等所进行的研究。展示了通过加入晶须、纳米颗粒或纳米管、结构改性、烧结参数优化以及先进烧结技术的应用来改变性能的方法。本文还讨论了与切削刀片相关的可持续性、环境影响以及关键原材料的管理,这与切削刀片材料的未来发展有关。