Affiliation:
1. College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou 310023, China
2. Southwest Technology and Engineering Research Institute, Chongqing 400039, China
Abstract
Tantalum–tungsten alloys have been widely used in different industrial sectors—for example, in chemical, medical, aerospace, and military equipment. However, they are usually difficult to cut because of the large cutting force, rapid tool wear, and poor surface finish during machining. This paper presents the machining performance and cutting tool wear of AlCrN/TiAlN-coated carbide tools during the milling process of Ta-2.5W. The effects of cutting parameters on the cutting forces and surface roughness of AlCrN/TiAlN-coated carbide tools were obtained and analyzed. The results show that the wear resistance of AlCrN-coated tools is better than that of TiAlN-coated tools, and that the main wear mechanisms of both cutting tools are crater wear, adhesive wear, and diffusion wear. Compared to TiAlN-coated tools, AlCrN-coated tools reduced the cutting forces by 1% to 15% and decreased the surface roughness by 6% to 20%. A cutting speed within the range of 80–120 m/min can ensure a low cutting force while maintaining good surface roughness, which is more conducive to machining Ta-2.5W.
Reference23 articles.
1. The microstructure and strength of a tantalum alloy: Influence of temperature;Ma;Mater. Sci. Eng. A,2023
2. Optimization of Leaching Parameters for Recovery of Tantalum from Waste Tantalum Capacitors;Agrawal;Springer Proceedings in Physics: Proceedings of the 3rd International Conference on Advances in Materials Processing: Challenges and Opportunities, Roorkee, India, 17–19 October 2023,2023
3. Tantalum-tungsten alloy photonic crystals for high-temperature energy conversion systems;Stelmakh;Conf. Photonic Cryst. Mater. Devices,2014
4. Microstructure evolution and deformation mechanism with comparison of Ta-2.5 W and Cu under detonation load;Liu;Mater. Today Commun.,2024
5. Experimental and numerical study of tantalum-tungsten alloy rod penetrator impacting thick armor plate;Cheng;Int. J. Refract. Met. Hard Mater.,2022