Prediction of residual stress in the process of turning high strength alloy steel by innovative coated carbide microgroove tools

Author:

Jiang HongwanORCID,He Lin,Ren Zhongwei,Shao Fang,Yuan Sen

Funder

Young Scientific Technical Talents Development Fund of Guizhou Province

National Natural Science Foundation of China

Startup Project for High-level Talents of Guizhou Institute of Technology

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference30 articles.

1. Zhan G, He L, Jiang HW, Zou ZF (2017) Finite element simulation of residual stress in 304 stainless steel by cemented carbide micro pits tool. Modul Mach Tool Autom Manuf Tech 8:37–39

2. Moharrami R, Sadri M (2019) Numerical study of plasticity effects on high residual stress measurement using ring-core technique. J Test Eval 47(6):20160581

3. Wu DX, Zhang DH, Yao CF (2019) Effect of turning and surface polishing treatments on surface integrity and fatigue performance of nickel-based alloy GH4169. Metal 8(7):1–17

4. Hu HW, Zou ZC, Jiang YB, Wang XH, Yi KF (2019) Finite element simulation and experimental study of residual stress testing using nonlinear ultrasonic surface wave technique. Appl Acoust 154:11–17

5. Wang Q, Liu XS, Wang P, Xiong X, Fang HY (2017) Numerical simulation of residual stress in 10Ni5VrMoV streel weldments. J Mater Process Technol 240(48):77–86

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