Atomization mechanism and machinability evaluation with electrically charged nanolubricant grinding of GH4169

Author:

Xu Wenhao,Li Changhe,Cui Xin,Zhang Yanbin,Yang Min,Gao Teng,Liu Mingzheng,Wang Xiaoming,Zhou Zongming,Sharma Shubham,Dambatta Yusuf Suleiman

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Management Science and Operations Research,Strategy and Management

Reference71 articles.

1. Research progress of eco-friendly grinding technology for aviation nickel-based superalloys;Zhu;Int. J. Adv. Manuf. Technol.,2023

2. Abrasive machining of advanced aerospace alloys and composites;Klocke;CIRP Ann-Manuf Technol,2015

3. Effect of intermittent cutting behavior on the ultrasonic vibration-assisted grinding performance of Inconel718 nickel-based superalloy;Cao;Precis Eng-J Int Soc Precis Eng Nanotechnol,2022

4. CBN grain wear during eco-benign grinding of nickel-based superalloy with oscillating heat pipe abrasive wheel;Qian;Ceram. Int.,2022

5. On a stochastically grain-discretised model for 2D/3D temperature mapping prediction in grinding;Li;Int. J. Mach. Tools Manuf.,2017

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