Simulation and experimental research on tool temperature field for low-temperature cutting of Ti-5553
Erliang Liu, Shuang Deng, Chao Zhang, Huiping Zhang, Xudong Wei
Abstract
Erliang Liu, Shuang Deng, Chao Zhang, Huiping Zhang, Xudong Wei
Abstract
To solve problems in the cutting of Ti-5553, simulation and experimental studies were conducted with the cutting tool placed in low-temperature liquid nitrogen. A finite-element simulation of dry and liquid-nitrogen cryogenic cooling cutting processes was conducted, and an experiment on dry and liquid-nitrogen cryogenic cutting was implemented. The influence of the cutting parameters with a change in the cutting temperature, and the effect of liquid-nitrogen cryogenic cooling, were considered. The cutting temperature was significantly reduced. A numerical simulation of the tool temperature field can be realized and support the application of liquid-nitrogen cryogenic cooling during the Ti-5553 cutting process.
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To solve problems in the cutting of Ti-5553, simulation and experimental studies were conducted with the cutting tool placed in low-temperature liquid nitrogen. A finite-element simulation of dry and liquid-nitrogen cryogenic cooling cutting processes was conducted, and an experiment on dry and liquid-nitrogen cryogenic cutting was implemented. The influence of the cutting parameters with a change in the cutting temperature, and the effect of liquid-nitrogen cryogenic cooling, were considered. The cutting temperature was significantly reduced. A numerical simulation of the tool temperature field can be realized and support the application of liquid-nitrogen cryogenic cooling during the Ti-5553 cutting process.
Key concepts: Liquid nitrogen, Materials science, Cryogenics, Cryogenic temperature, Nitrogen, Field (mathematics), Finite element method, Mechanical engineering