Thermomechanical modeling of oblique turning in relation to tool-nose radius
暂无分享,去创建一个
[1] Kui Liu,et al. The effect of tool edge radius on the contact phenomenon of tool-based micromachining , 2008 .
[2] D. Umbrello,et al. Finite Element Simulation of Residual Stresses in Cryogenic Machining of AZ31B Mg Alloy , 2014 .
[3] S. Yaldiz,et al. The effect of tool geometry and cutting speed on main cutting force and tool tip temperature , 2007 .
[4] G. Boothroyd,et al. Effects of Strain Rate and Temperature in Orthogonal Metal Cutting , 1966 .
[5] S. Kato,et al. Stress Distribution at the Interface Between Tool and Chip in Machining , 1972 .
[6] Luigino Filice,et al. Improving surface integrity in orthogonal machining of hardened AISI 52100 steel by modeling white and dark layers formation , 2009 .
[7] Guillaume Fromentin,et al. A force model for superfinish turning of pure copper with rounded edge tools at low feed rate , 2010 .
[8] B. Moetakef-Imani,et al. The prediction of cutting force for boring process , 2008 .
[9] Tien-Chien Jen,et al. Cutting Tool Temperatures in Contour Turning: Transient Analysis and Experimental Verification , 1997 .
[10] Ulvi Seker,et al. Investigation of the effect of rake angle on main cutting force , 2004 .
[11] G. R. Johnson,et al. A CONSTITUTIVE MODEL AND DATA FOR METALS SUBJECTED TO LARGE STRAINS, HIGH STRAIN RATES AND HIGH TEMPERATURES , 2018 .
[12] P.L.B. Oxley,et al. Allowing for Nose Radius Effects in Predicting the Chip Flow Direction and Cutting Forces in Bar Turning , 1987 .
[13] Guy Sutter,et al. Chip geometries during high-speed machining for orthogonal cutting conditions , 2005 .
[14] G. D. Davis,et al. A numerical method for calculating temperature distributions in machining, from force and shear angle measurements , 1976 .
[15] P. Oxley. Modelling machining processes with a view to their optimization and to the adaptive control of metal cutting machine tools , 1988 .
[16] P. Mathew,et al. Predicting the Cutting Conditions at which Built-Up Edge Disappears when Machining Plain Carbon Steels , 1980 .
[17] E.J.A. Armarego,et al. Oblique machining with a single cutting edge , 1964 .
[18] M. H. F. Al Hazza,et al. Cutting Temperature and Surface Roughness Optimization in CNC End Milling Using Multi Objective Genetic Algorithm , 2012, 2012 International Conference on Advanced Computer Science Applications and Technologies (ACSAT).
[19] P.L.B. Oxley,et al. Prediction of Chip Flow Direction and Cutting Forces in Oblique Machining with Nose Radius Tools , 1995 .
[20] M. E. Merchant. Mechanics of the Metal Cutting Process. I. Orthogonal Cutting and a Type 2 Chip , 1945 .
[21] Napsiah Ismail,et al. Optimization of cutting parameters based on surface roughness and assistance of workpiece surface temperature in turning process , 2010 .
[22] V. Astakhov,et al. A METHODOLOGY FOR PRACTICAL CUTTING FORCE EVALUATION BASED ON THE ENERGY SPENT IN THE CUTTING SYSTEM , 2008 .
[23] A. Moufki,et al. A new thermomechanical model of cutting applied to turning operations. Part II. Parametric study , 2005 .
[24] W. Grzesik,et al. Experimental investigation of the influence of adhesion on the frictional conditions in the cutting process , 1999 .
[25] Vishal S. Sharma,et al. Effect of tool geometry variation on finish turning - A Review , 2011 .
[26] P. Kapsa,et al. Analyse du frottement aux interfaces pièce-outil-copeau au cours de l'usinage d'un acier 42CrMo4 , 2007 .
[27] Tuğrul Özel,et al. Hard turning with variable micro-geometry PcBN tools , 2008 .
[28] N. Zorev. Metal cutting mechanics , 1966 .
[29] C. Rubenstein,et al. A simple theory of orthogonal cutting , 1965 .
[30] Scandvik coromant. Modern Metal Cutting : a practical handbook , 1994 .
[31] Marc Thomas,et al. Investigation of cutting parameter effects on surface roughness in lathe boring operation by use of a full factorial design , 1996 .
[32] Li Zheng,et al. On the prediction of chip flow angle in non-free oblique machining , 2004 .
[33] Wenyu Yang,et al. Analytical modelling of microstructure changes in the machining of 304 stainless steel , 2012 .
[34] Spfc Serge Jaspers. Temperature in orthogonal metal cutting , 1996 .
[35] Pedro J. Arrazola,et al. Characterization of Friction and Heat Partition Coefficients during Machining of a TiAl6V4 Titanium Alloy and a Cemented Carbide , 2012 .
[36] I. Llanos,et al. 3D FINITE ELEMENT MODELLING OF CHIP FORMATION PROCESS FOR MACHINING INCONEL 718: COMPARISON OF FE SOFTWARE PREDICTIONS , 2011 .
[37] Jun Wang,et al. Development of a general tool model for turning operations based on a variable flow stress theory , 1995 .
[38] Sung-Lim Ko,et al. Prediction of tool-chip contact length using a new slip-line solution for orthogonal cutting , 2003 .
[39] Luigino Filice,et al. Numerical Simulation of Machining Nickel-Based Alloys , 2013 .
[40] A. Moufki,et al. A new thermomechanical model of cutting applied to turning operations. Part I. Theory , 2005 .
[41] D. Agard,et al. Microtubule nucleation by γ-tubulin complexes , 2011, Nature Reviews Molecular Cell Biology.
[42] G. Boothroyd. Temperatures in Orthogonal Metal Cutting , 1963 .
[43] Paul Mativenga,et al. A review of tool–chip contact length models in machining and future direction for improvement , 2013 .
[44] Mohammed Nouari,et al. A predictive hybrid force modeling in turning: application to stainless steel dry machining with a coated groove tool , 2015 .
[45] Tarek Mabrouki,et al. The use of numerical simulations to improve a new analytical chip formation model , 2012 .
[46] Binglin Li,et al. AN ANALYTICAL MODEL OF OBLIQUE CUTTING WITH APPLICATION TO END MILLING , 2011 .
[47] Friedrich Kuster,et al. In-Process measurement of friction coefficient in orthogonal cutting , 2014 .
[48] A. Molinari,et al. Thermomechanical modelling of oblique cutting and experimental validation , 2004 .