[1]
M.G. Goldschmidt, Deformation and stress when metalcutting. Tomsk: STT, 2001, P. 180.
Google Scholar
[2]
E.V. Artamonov, Calculation of cutting tool stress according to the data obtained by the method of holographic interferometry. Proceeding Metalcutting process perfection, Sverdlovsk, 1972. P. 15.
Google Scholar
[3]
V.I. Danilov, L.B. Zuev, V.V. Gorbatenko, K.V. Gonchikov, K.V. Pavlichev, Theuse of fusion and interferometer method for plastic deformation localization studies, J. Plant Laboratory. Material Diagnostics. 72 (2006) 40-45.
Google Scholar
[4]
L.B. Zuev, V.V. Gorbatenko, K.V. Pavlichev, Elaboration of speckle photography techniques for plastic flow analyses, J. Measur. Sci. Technol. 21 (2010) 90-93.
DOI: 10.1088/0957-0233/21/5/054014
Google Scholar
[5]
S.N. Polykov, V.V. Gorbatenko, E.L. Lopaev, L.B. Zuev, Method of computation decorrelation of digital speckle-images for studying plastic deformation. J. Avtometriya. 39 (2003) 102-111.
Google Scholar
[6]
V.V. Gorbatenko, S.N. Polyakov, L.B. Zuev, System for visualization of plastic deformation by means of speckle video images. J. Priboryi Tekhnika Eksperimenta. 45 (2002) 164-165.
Google Scholar
[7]
V.V. Gorbatenko, S.N. Polyakov, L.B. Zuev, Visualization of the deformation localization zones using numerical decorrelation of videoimages with speckles (Chernov-Luders lines). Zavodskaya Laboratoriya. Diagnostika Materialov. 67 (2001) 29-32.
DOI: 10.26896/1028-6861
Google Scholar
[8]
P.F. Luo, Y.J. Chao, M.A. Suttom, W.H. Peters, Accurate measurement of three-dimensional deformations in deformable and rigid boodies using computer vision. Experimental mechanics. (1993) 123-132.
DOI: 10.1007/bf02322488
Google Scholar
[9]
A. Sutton, W.H. Peters, W.J. Wolters, W.F. Ransom, S.R. McNeil, Determination of displacements using an improved digital correlation method. Image and Vision Computing. 1983. Vol. 1 133-139.
DOI: 10.1016/0262-8856(83)90064-1
Google Scholar
[10]
A.V. Filippov, A.V. Proskokov, Chip formation studies when cutting metal using the method ofdigital correlation spekle-interferometry. J. Bulletin of Bauman Moscow State Technical University. Vol. Machine Engineering,. 2 (2014) 100-113.
Google Scholar
[11]
A.V. Filippov, V.V. Gorbatenko Influence of Rake Angle Tool on Plastic Deformation in Chip Formation when Cutting, J. Applied Mechanics and Materials. 682 (2014) 525-529.
DOI: 10.4028/www.scientific.net/amm.682.525
Google Scholar
[12]
S.I. Petrushin, A.V. Proskokov, Theory of constrained cutting: Calculating the stress-strain state in the cutting zone. J. Russian Engineering Research. 30 (2010) 133-137.
DOI: 10.3103/s1068798x10020085
Google Scholar
[13]
S.I. Petrushin, A.V. Proskokov, Theory of constrained cutting: Chip formation with a developed plastic-deformation zone. J. Russian Engineering Research. 30 (2010) 45-50.
DOI: 10.3103/s1068798x10010119
Google Scholar
[14]
A.V. Filippov, A.V. Proskokov, O.Y. Verbitskaya, Experimental test bench for metal deformation studies when cutting. J. Science Review. 5 (2013) 53-57.
Google Scholar