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Journal of Superhard Materials
ISSN 1063-4576 (Print) ISSN 1934-9408 (Online)
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Keywords cBN composite detonation nanodiamonds diamond dressing tool fracture toughness grinding hardness high pressure mechanical properties microhardness microstructure nanoindentation polishing pressure sintering structure superhard materials synthesis turning wear resistance
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Keywords cBN composite detonation nanodiamonds diamond dressing tool fracture toughness grinding hardness high pressure mechanical properties microhardness microstructure nanoindentation polishing pressure sintering structure superhard materials synthesis turning wear resistance
Home > Search > Author Details

Author Details

Tkach, V. N.

Issue Section Title File
Vol 38, No 5 (2016) Production, Structure, Properties Improved core model of indentation and its application to measure diamond hardness
Vol 38, No 5 (2016) Production, Structure, Properties Production and properties of hot-pressed materials based on silicon carbide with additions of boron and titanium carbides
Vol 38, No 6 (2016) Production, Structure, Properties Saturation of capillary pores in silicon carbide briqettes with liquid–phase carbon-containing solutions before the reaction-sintering
Vol 39, No 2 (2017) Production, Structure, Properties Special features of the interface between glass–metal coatings of superhard materials powders and metal matrices
Vol 39, No 6 (2017) Production, Structure, Properties Thermal and physico-mechanical properties of antifriction solid lubricant for cold plastic deformation of titanium alloys
Vol 40, No 1 (2018) Production, Structure, Properties Novel Wear-Resistant Superhard Diamond Composite Polycrystalline Material
Vol 40, No 3 (2018) Letters to the Editor Corrosion Resistance of the Hot-Pressed B4C–VC Ceramic System
Vol 40, No 6 (2018) Production, Structure, Properties The Influence of in situ Formed TiB2–VB2 Borides on the Structure and Properties of Hot-Pressed B4C–(TiH2–VC) Ceramic System
Vol 40, No 6 (2018) Letters to the Editor Structure and Electrophysical Properties of the Diamond–Graphen–Silicon Carbide Composite
 

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