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Year
SiC Si3N4-B4C//
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, 12, 2011
6*2011
Microwave absorptivity of refractory powders depending on particle size
AV Shpilko, EV Kirilenko, MV Soltis, VY Petrovskii
Powder Metallurgy and Metal Ceramics 49 (5), 304-316, 2010
32010
Dependence of the resistivity of hot-pressed Si3N4ZrC composites on their composition
EV Kirilenko, AI Derii, VY Petrovskii
Powder Metallurgy and Metal Ceramics 48 (9), 560-568, 2009
32009
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i I i ii ii i, 117-125, 2019
22019
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5 (1 (31)), 51-62, 2016
22016
Effect of the particle size of conductive inclusions on the structurization and resistivity of Si3N4ZrC ceramics
IV Brodnikovska, MV Soltis, KV Kirilenko, IV Zvorskii, VY Petrovskii
Powder Metallurgy and Metal Ceramics 51 (5), 307-315, 2012
22012
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12011
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2021
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2021
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2021
Reasoning of additional diagnostic parameters for electric insulation diagnostics by absorption methods
VM Kyrylenko, KV Kyrylenko, MO Budko, PL Denysiuk
Electrical Engineering, 39, 2021
2021
The influence of organic binders and their decomposition products on the microstructure and thermoelectric properties of conductive materials based on si3n4 with transitional
V Tsygoda, K Kyrylenko, V Petrovsky
Technology audit and production reserves, 51, 2020
2020
Resistive Properties of the Sintered Ceramic Composite Si3N4-SiC
LA Shipilova, VY Petrovskii, SI Chugunova, EV Kirilenko
Powder Metallurgy and Metal Ceramics 44 (9), 446-450, 2005
2005
Sintering of a highly heat-resistant ceramics by using combination SHF-heating and equipment for its realization
VY Petrovskii, EV Kirilenko, Y Raabe, E Bobryk
Powder Metallurgy and Metal Ceramics 38 (11), 550-555, 1999
1999
FIRST INTERNATIONAL SEMINAR ON CERAMIC COMPOSITES WITH AN ORGANIZED MACROSTRUCTURE--FUNCTIONAL GRADIENT MATERIALS--LOM-98-Sintering of a Highly Heat-Resistant Ceramics by Using
VY Petrovskii, EV Kirilenko, Y Raabe, E Bobryk
Powder Metallurgy and Metal Ceramics 38 (11-12), 550-555, 1999
1999
Analysis of the Potential Features in Multicomponent Ceramic Composites Based on the Refractory Anoxic Compounds (Part 2)
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Technology Audit and Production Reserves 6 (1), 9-16, 0
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Articles 1–16