Access the full text.
Sign up today, get DeepDyve free for 14 days.
Mathias Agmell, A. Ahadi, Jinming Zhou, Ru Peng, V. Bushlya, J. Ståhl (2017)
Modeling subsurface deformation induced by machining of Inconel 718Machining Science and Technology, 21
A. Sharman, J. Hughes, Keith Ridgway (2004)
Workpiece Surface Integrity and Tool Life Issues When Turning Inconel 718™ Nickel Based SuperalloyMachining Science and Technology, 8
Mathias Agmell, A. Ahadi, O. Gutnichenko, J. Ståhl (2017)
The influence of tool micro-geometry on stress distribution in turning operations of AISI 4140 by FE analysisThe International Journal of Advanced Manufacturing Technology, 89
Denkena (2012)
Influence of the cutting edge rounding on the chip formation process: Part 1Investigation of material flow, process forces, and cutting temperature. Prod Eng, 6
J. Rech, Yung-Chang Yen, M.-J. Schaff, H. Hamdi, T. Altan, K. Bouzakis (2005)
Influence of cutting edge radius on the wear resistance of PM-HSS milling insertsWear, 259
I. Al-Zkeri, J. Rech, T. Altan, H. Hamdi, F. Valiorgue (2009)
OPTIMIZATION OF THE CUTTING EDGE GEOMETRY OF COATED CARBIDE TOOLS IN DRY TURNING OF STEELS USING A FINITE ELEMENT ANALYSISMachining Science and Technology, 13
J. Weng, K. Zhuang, Cheng Hu, H. Ding (2020)
A PSO-based semi-analytical force prediction model for chamfered carbide tools considering different material flow state caused by edge geometryInternational Journal of Mechanical Sciences, 169
Yang Liu, Dongdong Xu, Mathias Agmell, R. M'Saoubi, A. Ahadi, J. Ståhl, Jinming Zhou (2021)
Numerical and experimental investigation of tool geometry effect on residual stresses in orthogonal machining of Inconel 718Simul. Model. Pract. Theory, 106
C. Wyen, K. Wegener (2010)
Influence of cutting edge radius on cutting forces in machining titaniumCirp Annals-manufacturing Technology, 59
B. Denkena, D. Biermann (2014)
Cutting edge geometriesCirp Annals-manufacturing Technology, 63
(2012)
Metal cutting theories and models
Yang Liu, Mathias Agmell, Dongdong Xu, A. Ahadi, J. Ståhl, Jinming Zhou (2020)
Numerical contribution to segmented chip effect on residual stress distribution in orthogonal cutting of Inconel718The International Journal of Advanced Manufacturing Technology, 109
M’Saoubi (2008)
A review of surface integrity in machining and its impact on functional performance and life of machined productsInt J Sustain Manuf, 1
B. Denkena, J. Köhler, Mesfin Mengesha (2012)
Influence of the cutting edge rounding on the chip formation process: Part 1. Investigation of material flow, process forces, and cutting temperatureProduction Engineering, 6
S. Laakso, T. Zhao, Mathias Agmell, Andrew Hrechuk, J. Ståhl (2017)
Too Sharp for its Own Good – Tool Edge Deformation Mechanisms in the Initial Stages of Metal CuttingProcedia Manufacturing, 11
Cheng Hu, K. Zhuang, J. Weng, Xiaoming Zhang, H. Ding (2020)
Cutting temperature prediction in negative-rake-angle machining with chamfered insert based on a modified slip-line field modelInternational Journal of Mechanical Sciences, 167
R. M'Saoubi, J. Outeiro, H. Chandrasekaran, O. Dillon, I. Jawahir (2008)
A review of surface integrity in machining and its impact on functional performance and life of machined productsInternational Journal of Shape Modeling, 1
J. Weng, K. Zhuang, Dahu Zhu, Shunsheng Guo, H. Ding (2018)
An analytical model for the prediction of force distribution of round insert considering edge effect and size effectInternational Journal of Mechanical Sciences
Y. Karpat, Tugˇrul Özel (2008)
Mechanics of high speed cutting with curvilinear edge toolsInternational Journal of Machine Tools & Manufacture, 48
Procedia CIRP – CrossRef
Published: Jan 1, 2021
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.