Identification of interaction mechanisms during drag finishing by means of an original macroscopic numerical model
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Joël Rech | Ferdinando Salvatore | Pedro José Arrazola | C. Claudin | Irati Malkorra | Hanène Souli | Hervé Seux | Aude Mathis | Jason Rolet | J. Rech | P. Arrazola | F. Salvatore | H. Souli | C. Claudin | J. Rolet | A. Mathis | I. Malkorra | Hervé Seux
[1] Pierre-Yves Hicher,et al. Identification des paramètres de comportement des sols injectés par analyse inverse d'essais pressiométriques , 2002 .
[2] E. Uhlmann,et al. Investigation of Material Removal and Surface Topography Formation in Vibratory Finishing , 2014 .
[3] INTERFACE MASS TRANSFER DURING THE TRIBOFINISHING PROCESS , 2009 .
[4] K. Hokkirigawa,et al. An experimental and theoretical investigation of ploughing, cutting and wedge formation during abrasive wear , 1988 .
[5] A. Beaucamp,et al. Model of material removal in vibratory finishing, based on Preston’s law and discrete element method , 2019, CIRP Annals.
[6] Jan K. Spelt,et al. Two-dimensional discrete element modeling of a spherical steel media in a vibrating bed , 2009 .
[7] Guillaume Kermouche,et al. Experimental and Numerical Study of Media Action During Tribofinishing in the Case of SLM Titanium Parts , 2017 .
[8] A. Yu,et al. Modelling the granular flow in a rotating drum by the Eulerian finite element method , 2015 .
[9] A. Huang,et al. CFD simulation of particle segregation in a rotating drum. Part I: Eulerian solid phase kinetic viscosity , 2017 .
[10] M. Bolton. THE STRENGTH AND DILATANCY OF SANDS , 1986 .
[11] Michael N. Morgan,et al. Design Process Control for Improved Surface Finish of Metal Additive Manufactured Parts of Complex Build Geometry , 2017 .
[12] R. Jackson,et al. Frictional–collisional constitutive relations for granular materials, with application to plane shearing , 1987, Journal of Fluid Mechanics.
[13] V. Schulze,et al. Optimization of the stream finishing process for mechanical surface treatment by numerical and experimental process analysis , 2019, CIRP Annals.
[14] Liu Yingjie,et al. A study on the formation of wear debris during abrasion , 1985 .
[15] O. E. Saljé,et al. Relations Between Abrasive Processes , 1988 .
[16] Tom Schanz,et al. Angles of friction and dilatancy of sand , 1996 .
[17] Jan K. Spelt,et al. Impact velocity measurement of media in a vibratory finisher , 2007 .
[18] Frédéric Cabanettes,et al. Toward a new tribological approach to predict cutting tool wear , 2018 .
[19] S. Yang,et al. Study on polyurethane media for mass finishing process: Dynamic characteristics and performance , 2018 .
[20] Richard B. Nelson,et al. Modelling the elastic behaviour of granular materials , 1987 .
[21] P. Krajnik,et al. On geometry and kinematics of abrasive processes: The theory of aggressiveness , 2020, International Journal of Machine Tools and Manufacture.
[22] Jongsoo Kim,et al. Development of a metal removal model using spherical ceramic media in a centrifugal disk mass finishing machine , 2008 .
[23] Jan K. Spelt,et al. Finite element continuum modeling of vibrationally-fluidized granular flows , 2015 .
[24] R. P. Cunha,et al. Determining the Elastic Deformation Modulus From a Compacted Earth Embankment Via Laboratory and Ménard Pressuremeter Tests , 2016, Soils and Rocks.
[25] A. Hosokawa,et al. Fundamental investigation of gyro finishing experimental investigation of contact force between cylindrical workpiece and abrasive media under dry condition , 2021 .
[26] Vikram Cariapa,et al. Material removal model for vibratory finishing , 2004 .
[27] K. Hokkirigawa,et al. Analysis of the abrasive wear mechanism by successive observations of wear processes in a scanning electron microscope , 1986 .
[28] Konrad Wegener,et al. Abrasive fine-finishing technology , 2016 .
[29] E. Koç,et al. Improving the surface quality and mechanical properties of selective laser sintered PA2200 components by the vibratory surface finishing process , 2021, SN Applied Sciences.
[30] Eckart Uhlmann,et al. Investigation into a geometry-based model for surface roughness prediction in vibratory finishing processes , 2014 .