2020FerroelectricsRequires access

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

Open publisher page 7 citations

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.

About this research paper

What this paper is about

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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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available 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.

Key concepts: Liquid nitrogen, Materials science, Cryogenics, Cryogenic temperature, Nitrogen, Field (mathematics), Finite element method, Mechanical engineering

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