A dynamic recrystallization based constitutive flow model for micro-machining of Ti-6Al-4V

被引:14
|
作者
Yadav, Rahul [1 ]
Chakladar, N. D. [1 ]
Paul, Soumitra [1 ]
机构
[1] Indian Inst Technol Kharagpur, Mech Engn Dept, Kharagpur 721302, West Bengal, India
关键词
Micro-machining; Dynamic recrystallization; Chip serration; Ti-6Al-4V; Modelling; INDUCED RESIDUAL-STRESSES; UNCUT CHIP THICKNESS; EXPERIMENTAL VALIDATION; NUMERICAL-MODELS; ALLOY; PREDICTION; FRICTION; TITANIUM; SIMULATION; MECHANISMS;
D O I
10.1016/j.jmapro.2022.03.040
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The study proposes a coupled thermo-mechanical transient analysis to estimate the cutting performance during micro-machining of Titanium alloy. A constitutive flow model is used along with the effects of dynamic recrystallization which is how the strain-softening evolves at a high strain rate. The frictional stick-slip oscillations that arise from the process are introduced through a Fortran user-subroutine at the chip tool interface. Strain softening and dynamic recrystallization are observed, while the cutting strain exceeds the critical strain of 1.7, owing to strain localization. When the uncut chip thickness reduces from 3 mu m to 1 mu m which is lesser than the edge radius of the tool, the value of maximum residual stresses increases by a factor of 3.7 and a magnitude of chip reduction coefficient of 2.25 is observed due to a local negative rake angle. The level of residual stress, specific cutting energy and morphology of the chip are validated with literature. In addition, a user-defined material stiffening algorithm is proposed which revealed an increase of compressive residual stress at the surface by 20%.
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页码:463 / 484
页数:22
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