Development of a novel severe plastic deformation method: friction stir equal channel angular pressing
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[1] S. A. J. Jahromi,et al. Influence of ECAP on the fatigue behavior of age-hardenable 2xxx aluminum alloy , 2015, International Journal of Minerals, Metallurgy, and Materials.
[2] M. Meratian,et al. Improvement of ECAP process by imposing ultrasonic vibrations , 2015 .
[3] C. Wu,et al. Effects of Extrusion Speed on the Deformation of Copper Using ECAP Based on FEM , 2015 .
[4] Ali Shokuhfar,et al. Improving homogeneity of ultrafine-grained/nanostructured materials produced by ECAP using a bevel-edge punch , 2015, Journal of Materials Science.
[5] M. Sanei,et al. Development of a novel method for the backward extrusion , 2014 .
[6] M. Arzaghi,et al. Fatigue Crack Growth in Ultrafine-Grained Copper Obtained by ECAP , 2014 .
[7] I. Dinaharan,et al. Microstructural Characterization of Pure Copper Tubes Produced by a Novel Method Friction Stir Back Extrusion , 2014 .
[8] H. Ahmadian,et al. Ultrasonic assisted-ECAP. , 2013, Ultrasonics.
[9] J. Cabrera,et al. Mechanical, microstructural and electrical evolution of commercially pure copper processed by equal channel angular extrusion , 2013 .
[10] Enes,et al. QUANTITATIVE CHARACTERIZATION OF MICROSTRUCTURE OF PURE COPPER PROCESSED BY ECAP , 2013 .
[11] Igor V. Alexandrov,et al. Finite element analysis of plastic deformation in twist extrusion , 2012 .
[12] F. Abu-Farha. A preliminary study on the feasibility of friction stir back extrusion , 2012 .
[13] F. Djavanroodi,et al. Effect of die parameters and material properties in ECAP with parallel channels , 2010 .
[14] R. Lapovok,et al. ECAP with back pressure for optimum strength and ductility in aluminium alloy 6016. Part 2: Mechanical properties and texture , 2010 .
[15] M. H. Paydar,et al. Application of forward extrusion-equal channel angular pressing (FE-ECAP) in fabrication of aluminum metal matrix composites , 2010 .
[16] Seung Chae Yoon,et al. An experimental verification of the finite element modelling of equal channel angular pressing , 2009 .
[17] W. Liang,et al. A modified die for equal channel angular pressing , 2009 .
[18] A. Zarei‐Hanzaki,et al. Accumulative back extrusion (ABE) processing as a novel bulk deformation method , 2009 .
[19] M. H. Paydar,et al. Equal channel angular pressing-forward extrusion (ECAP-FE) consolidation of Al particles , 2009 .
[20] Guoqun Zhao,et al. Numerical simulation and experimental investigation of pure copper deformation behavior for equal channel angular pressing/extrusion process , 2008 .
[21] Hyoung-Seop Kim,et al. Finite element analysis of rotary-die equal channel angular pressing , 2008 .
[22] J. Cabrera,et al. Grain Refinement of Pure Copper by ECAP , 2008 .
[23] Joong-Keun Park,et al. ECAP of commercially pure titanium: A review , 2008 .
[24] T. Langdon,et al. A finite element analysis of the superplastic forming of an aluminum alloy processed by ECAP , 2007 .
[25] Guang Chen,et al. Origin of inhomogenous behavior during equal channel angular pressing , 2006 .