A thermoelastic-plastic large deformation model for orthogonal cutting with tool flank wear—Part II: Machining application

Author:

Lin Zone-Ching,Pan Wen-Chueh

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,Civil and Structural Engineering

Reference14 articles.

1. The theory of plasticity applied to a problem of machining;Lee;Trans. ASME, J. Appl. Mech.,1951

2. A study of some aspects of metal machining using the finite element method;Lajczok,1980

3. Mechanics of machining—from descriptive to predictive theory, on the art of cutting metals—75 years later a tribute to F. W. Taylor;Usui,1982

4. Influence of flank wear on the stresses in a cutting tool;Chandrasekaran;Trans. ASME, Series B, J. Engng Ind.,1977

5. The mechanical state of the sublayer of a surface generated by chip removal process, part 2: cutting with a tool with flank wear;Liu;ASME J. Engng Ind.,1976

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2. CURRENT STATUS AND FUTURE DIRECTION IN THE NUMERICAL MODELING AND SIMULATION OF MACHINING PROCESSES: A CRITICAL LITERATURE REVIEW;Machining Science and Technology;2010-08-17

3. Evaluation criteria of the constitutive law formulation for the metal-cutting process;Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture;2010-02-17

4. On predicting chip morphology and phase transformation in hard machining;The International Journal of Advanced Manufacturing Technology;2005-03-09

5. Characterizing the Effect of 319 Aluminum Microstructure on Machinability: Part 1 — Model Development;Manufacturing Engineering and Materials Handling, Parts A and B;2005-01-01

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