Journal of Liaoning Petrochemical University
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Simulation Study on Cutting Titanium Alloy with Micro-Texture Tool Based on ABAQUS
Yan HE, Zicheng XU, Ping LI, Ming LIU, Xingjun GAO, Lin FAN
Abstract1191)   HTML4)    PDF (4068KB)(84)      

A model of a micro-texture tool featuring various textures such as micro-pits, parallel grooves, vertical grooves, and oblique grooves was developed. The impact of these micro-texture tools on the turning process of titanium alloy was investigated using the finite element analysis software ABAQUS. Through an examination of cutting force, friction coefficient, cutting temperature, and surface residual stress for micro-texture tools with distinct morphologies, the optimal micro-texture morphology was determined. The findings reveal that micro-texture tools can effectively reduce the cutting force, friction coefficient, and cutting temperature while transforming surface residual stress from tensile to compressive on the workpiece. Furthermore, with increasing cutting speed, cutting force and cutting temperature rises, friction coefficient decrease, and the residual stress on the workpiece surface shifts from compressive to tensile stress, exhibiting an ascending trend.

2024, 44 (3): 61-69. DOI: 10.12422/j.issn.1672-6952.2024.03.009