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Alexander Laptev
Alexander Laptev
Free Scientist
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Zitiert von
Jahr
Modelling of the temperature distribution during field assisted sintering
K Vanmeensel, A Laptev, J Hennicke, J Vleugels, O Van der Biest
Acta Materialia 53 (16), 4379-4388, 2005
5802005
Study of production route for titanium parts combining very high porosity and complex shape
A Laptev, M Bram, HP Buchkremer, D Stöver
Powder metallurgy 47 (1), 85-92, 2004
2132004
Unveiling the mechanisms of cold sintering of ZnO at 250 C by varying applied stress and characterizing grain boundaries by Kelvin Probe Force Microscopy
J Gonzalez-Julian, K Neuhaus, M Bernemann, JP Da Silva, A Laptev, ...
Acta materialia 144, 116-128, 2018
1622018
Field assisted sintering of electro-conductive ZrO2-based composites
K Vanmeensel, A Laptev, O Van der Biest, J Vleugels
Journal of the European Ceramic Society 27 (2-3), 979-985, 2007
1022007
Green strength of powder compacts provided for production of highly porous titanium parts
A Laptev, O Vyal, M Bram, HP Buchkremer, D Stöver
Powder Metallurgy 48 (4), 358-364, 2005
882005
Low temperature sintering of fully inorganic all-solid-state batteries–Impact of interfaces on full cell performance
M Ihrig, M Finsterbusch, CL Tsai, AM Laptev, C Tu, M Bram, YJ Sohn, ...
Journal of Power Sources 482, 228905, 2021
832021
The influence of percolation during pulsed electric current sintering of ZrO2–TiN powder compacts with varying TiN content
K Vanmeensel, A Laptev, O Van der Biest, J Vleugels
Acta Materialia 55 (5), 1801-1811, 2007
792007
Application of electric current‐assisted sintering techniques for the processing of advanced materials
M Bram, AM Laptev, TP Mishra, K Nur, M Kindelmann, M Ihrig, ...
Advanced engineering materials 22 (6), 2000051, 2020
762020
Method for producing highly porous metallic moulded bodies close to the desired final contours
M Bram, A Laptev, D Stöver, HP Buchkremer
US Patent 7,147,819, 2006
672006
Study of metal injection molding of highly porous titanium by physical modeling and direct experiments
N Tuncer, M Bram, A Laptev, T Beck, A Moser, HP Buchkremer
Journal of Materials Processing Technology 214 (7), 1352-1360, 2014
612014
Sintering of a sodium-based NASICON electrolyte: A comparative study between cold, field assisted and conventional sintering methods
JGP da Silva, M Bram, AM Laptev, J Gonzalez-Julian, Q Ma, F Tietz, ...
Journal of the European Ceramic Society 39 (8), 2697-2702, 2019
592019
Study of LiCoO2/Li7La3Zr2O12:Ta Interface Degradation in All-Solid-State Lithium Batteries
M Ihrig, M Finsterbusch, AM Laptev, C Tu, NTT Tran, CA Lin, LY Kuo, ...
ACS applied materials & interfaces 14 (9), 11288-11299, 2022
552022
Investigations on the machining of sintered titanium foams utilizing face milling and peripheral grinding
M Bram, C Kempmann, A Laptev, D Stöver, K Weinert
Advanced Engineering Materials 5 (6), 441-447, 2003
522003
Manufacturing of highly porous titanium by metal injection molding in combination with plasma treatment
N de Freitas Daudt, M Bram, APC Barbosa, AM Laptev, C Alves Jr
Journal of Materials Processing Technology 239, 202-209, 2017
492017
High-pressure field assisted sintering of half-cell for all-solid-state battery
AM Laptev, H Zheng, M Bram, M Finsterbusch, O Guillon
Materials Letters 247, 155-158, 2019
482019
Equal channel angular extrusion of soft solids
AV Perig, AM Laptev, NN Golodenko, YA Erfort, EA Bondarenko
Materials Science and Engineering: A 527 (16-17), 3769-3776, 2010
472010
Analysis of equal channel angular extrusion by upper bound method and rigid blocks model
AM Laptev, AV Perig, OY Vyal
Materials Research 17, 359-366, 2014
322014
Enhancing efficiency of field assisted sintering by advanced thermal insulation
AM Laptev, M Bram, K Vanmeensel, J Gonzalez-Julian, O Guillon
Journal of materials processing technology 262, 326-339, 2018
302018
Pulsed electric current sintering of electrically conductive ceramics
K Vanmeensel, SG Huang, A Laptev, SA Salehi, AK Swarnakar, ...
Journal of materials science 43, 6435-6440, 2008
252008
The densification of powder mixtures containing soft and hard components under static and cyclic pressure
A Zavaliangos, A Laptev
Acta Materialia 48 (10), 2565-2570, 2000
252000
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