Effect of electric current on densification behavior of conductive ceramic powders consolidated by spark plasma sintering
暂无分享,去创建一个
[1] E. Olevsky,et al. Proportional integral derivative, modeling and ways of stabilization for the spark plasma sintering process , 2020, 2011.11633.
[2] T. Yuan,et al. Direct current-enhanced densification kinetics during spark plasma sintering of tungsten powder , 2018 .
[3] Brandt J. Ruszkiewicz,et al. A Review of Electrically-Assisted Manufacturing With Emphasis on Modeling and Understanding of the Electroplastic Effect , 2017 .
[4] E. Olevsky,et al. Current understanding and future research directions at the onset of the next century of sintering science and technology , 2017 .
[5] H. Desplats,et al. Contact resistances in spark plasma sintering: From in-situ and ex-situ determinations to an extended model for the scale up of the process , 2017 .
[6] E. Olevsky,et al. Densification mechanism and mechanical properties of tungsten powder consolidated by spark plasma sintering , 2016 .
[7] D. Yoo,et al. Evaluation of the Athermal Effect of Electric Pulsing on the Recovery Behavior of Magnesium Alloy , 2016, Metallurgical and Materials Transactions A.
[8] J. Monchoux,et al. Spark plasma sintering mechanisms at the necks between TiAl powder particles , 2016 .
[9] S. Qidwai,et al. In situ electron microscopy studies of electromechanical behavior in metals at the nanoscale using a novel microdevice-based system. , 2016, The Review of scientific instruments.
[10] C. Estournès,et al. Identification of the Norton‐Green Compaction Model for the Prediction of the Ti–6Al–4V Densification During the Spark Plasma Sintering Process , 2016 .
[11] C. Estournès,et al. Finite-element modeling of the electro-thermal contacts in the spark plasma sintering process , 2016 .
[12] B. Appolaire,et al. Multiscale Theory of Dislocation Climb. , 2015, Physical review letters.
[13] E. Olevsky,et al. Densification of zirconium nitride by spark plasma sintering and high voltage electric discharge consolidation: A comparative analysis , 2015 .
[14] E. Olevsky,et al. Contribution of Electric Current into Densification Kinetics During Spark Plasma Sintering of Conductive Powder , 2015 .
[15] Christopher D. Haines,et al. Experimental Investigation of Electric Contact Resistance in Spark Plasma Sintering Tooling Setup , 2015 .
[16] Yucheng Wang,et al. Sintering boron carbide ceramics without grain growth by plastic deformation as the dominant densification mechanism , 2015, Scientific Reports.
[17] T. Nagao,et al. Examining the Performance of Refractory Conductive Ceramics as Plasmonic Materials: A Theoretical Approach , 2015, 1510.04760.
[18] J. Monchoux,et al. Electromigration experiments by spark plasma sintering in the silver–zinc system , 2015 .
[19] B. S. Murty,et al. On Joule heating during spark plasma sintering of metal powders , 2014 .
[20] R. Raj,et al. The Effect of Electric Field on Sintering and Electrical Conductivity of Titania , 2014 .
[21] J. Narayan. A new mechanism for field-assisted processing and flash sintering of materials , 2013 .
[22] F. Delannay,et al. Densification of alumina by SPS and HP: A comparative study , 2012 .
[23] E. Olevsky,et al. The microwave ponderomotive effect on ceramic sintering , 2012 .
[24] E. Olevsky,et al. Densification mechanisms of spark plasma sintering: multi-step pressure dilatometry , 2012, Journal of Materials Science.
[25] Z. A. Munir,et al. Effect of pulsed DC current on neck growth between tungsten wires and tungsten plates during the initial stage of sintering by the spark plasma sintering method , 2012, Journal of Materials Science.
[26] Michael J. Hoffmann,et al. Electric Field‐Assisted Sintering and Hot Pressing of Semiconductive Zinc Oxide: A Comparative Study , 2011 .
[27] M. Cologna,et al. Influence of Externally Imposed and Internally Generated Electrical Fields on Grain Growth, Diffusional Creep, Sintering and Related Phenomena in Ceramics , 2011 .
[28] U. Anselmi-Tamburini,et al. Temperature and stress fields evolution during spark plasma sintering processes , 2010 .
[29] Wei Chen,et al. Elastic Properties and Electronic Structures of 4d- and 5d-Transition Metal Mononitrides , 2010 .
[30] A. Maître,et al. A study of the densification mechanisms during spark plasma sintering of zirconium (oxy-)carbide powders , 2010 .
[31] Michael J. Hoffmann,et al. Direct comparison between hot pressing and electric field-assisted sintering of submicron alumina , 2009 .
[32] Antonio Mario Locci,et al. Consolidation/synthesis of materials by electric current activated/assisted sintering , 2009 .
[33] Z. A. Munir,et al. Current effects on neck growth in the sintering of copper spheres to copper plates by the pulsed electric current method , 2007 .
[34] G. Bernard-Granger,et al. Spark plasma sintering of a commercially available granulated zirconia powder: I. Sintering path and hypotheses about the mechanism(s) controlling densification , 2007 .
[35] S. Yamanaka,et al. Effect of porosity on thermal and electrical properties of polycrystalline bulk ZrN prepared by spark plasma sintering , 2007 .
[36] R. Chaim. Densification mechanisms in spark plasma sintering of nanocrystalline ceramics , 2007 .
[37] J. Ottaviani,et al. Experimental assessment of thermophysical properties of (Pu, Zr)N , 2005 .
[38] J. Groza,et al. Temperature evolution during field activated sintering , 2004 .
[39] Z. A. Munir,et al. Electric current enhanced defect mobility in Ni3Ti intermetallics , 2004 .
[40] H. Conrad. Thermally activated plastic flow of metals and ceramics with an electric field or current , 2002 .
[41] T. Ikeshoji,et al. A Numerical Calculation Method Advantageous for Complex Boundary Problems -An Application to the Pulse Discharge Sintering Process- , 2001 .
[42] H. Conrad,et al. Influence of an electric field on the plastic deformation of fine-grained MgO at high homologous temperatures , 2000 .
[43] H. Conrad. Electroplasticity in metals and ceramics , 2000 .
[44] J. Groza,et al. Sintering activation by external electrical field , 2000 .
[45] Y. Fahmy,et al. Influence of an electric field on the plastic deformation of fine-grained Al2O3 , 1999 .
[46] A. Borbely,et al. The contrast factors of dislocations in cubic crystals: the dislocation model of strain anisotropy in practice , 1999 .
[47] K. R. Anderson,et al. Surface oxide debonding in field assisted powder sintering , 1999 .
[48] H. Conrad,et al. Plastic deformation of fine-grained Al2O3 in the presence of an electric field , 1999 .
[49] Eugene A. Olevsky,et al. Theory of sintering: from discrete to continuum , 1998 .
[50] D. Johnson,et al. Master Sintering Curve: A Practical Approach to Sintering , 1996 .
[51] Tamás Ungár,et al. The effect of dislocation contrast on x‐ray line broadening: A new approach to line profile analysis , 1996 .
[52] A. Sprecher,et al. Electroplasticity—the effect of electricity on the mechanical properties of metals , 1990 .
[53] A. Sprecher,et al. Measurement of the electroplastic effect in Nb , 1989 .
[54] S. L. Mannan,et al. Overview no. 49: On the mechanisms for the electroplastic effect in metals , 1986 .
[55] M. Ashby,et al. Hot isostatic pressing diagrams : new developments , 1985 .
[56] M. Ashby,et al. Deformation-Mechanism Maps: The Plasticity and Creep of Metals and Ceramics , 1982 .
[57] K. Okazaki,et al. A study of the electroplastic effect in metals , 1978 .
[58] T. Endo,et al. Deviations from Matthiessen's Rule of the Electrical Resistivity of Dislocations in Aluminum , 1974 .
[59] E. Machlin. Applied Voltage and the Plastic Properties of ``Brittle'' Rock Salt , 1959 .
[60] Michael J. Hoffmann,et al. Electric Field‐Assisted Sintering in Comparison with the Hot Pressing of Yttria‐Stabilized Zirconia , 2011 .
[61] D. Hull,et al. Chapter 10 – Strength of Crystalline Solids , 2011 .
[62] S. Golovashchenko,et al. Enhanced formability of 5754 aluminum sheet metal using electric pulsing , 2008 .
[63] A. Stepanov,et al. Influence of structural defects on 1/f in thin niobium films , 1992 .
[64] T. Bieler,et al. Superplasticity in metals and ceramics , 1989 .
[65] Hellmut F. Fischmeister,et al. Densification of Powders by Particle Deformation , 1983 .
[66] L. K. Shvedova,et al. Hot pressing of transition metal nitrides and their properties , 1972 .