H
Hanna Borodianska
Researcher at National Institute for Materials Science
Publications - 42
Citations - 892
Hanna Borodianska is an academic researcher from National Institute for Materials Science. The author has contributed to research in topics: Spark plasma sintering & Ceramic. The author has an hindex of 17, co-authored 39 publications receiving 747 citations. Previous affiliations of Hanna Borodianska include Nanyang Technological University.
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Modeling of the temperature distribution of flash sintered zirconia
Salvatore Grasso,Salvatore Grasso,Yoshio Sakka,Yoshio Sakka,Nicolás M. Rendtorff,Chunfeng Hu,Giovanni Maizza,Hanna Borodianska,Oleg Vasylkiv +8 more
TL;DR: In this paper, the mechanisms of the flash sintering phenomenon were elucidated by analyzing the temperature distribution of the bulk sample under the application of the electric field, and it has been reported that the applied electric field as high as 120 V/cm permitted the instantaneous full densification of yttria stabilized tetragonal zirconia at the unusual low temperature of 850°C.
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High-temperature flexural strength performance of ternary high-entropy carbide consolidated via spark plasma sintering of TaC, ZrC and NbC
Dmytro Demirskyi,Dmytro Demirskyi,Hanna Borodianska,Takuya Suzuki,Yoshio Sakka,Kyosuke Yoshimi,Oleg Vasylkiv +6 more
TL;DR: In this article, the solid solution formation and consolidation of the (Ta,Zr,Nb)C single-phase ceramic made from commercial TaC, ZrC and NbC powders prepared by spark plasma sintering at the temperature of 1920°C was investigated.
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Peculiarities of the neck growth process during initial stage of spark-plasma, microwave and conventional sintering of WC spheres
Dmytro Demirskyi,Hanna Borodianska,Hanna Borodianska,Dinesh K. Agrawal,Andrey Ragulya,Yoshio Sakka,Oleg Vasylkiv,Oleg Vasylkiv +7 more
TL;DR: In this article, the neck growth kinetics of free-packed spherical shaped binderless tungsten carbide particles during microwave and spark-plasma sintering were investigated.
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Flash spark plasma sintering of ultrafine yttria-stabilized zirconia ceramics
TL;DR: The microstructure evolution during high heating rate "flash" spark plasma sintering of ultrafine yttria-stabilized zirconia powder is presented in this paper.
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Ultra-high elevated temperature strength of TiB2-based ceramics consolidated by spark plasma sintering
TL;DR: In this article, the flexural strength of the TiB2-10-wt.% boron composites reached 910MPa at room temperature and 1105 MPa at 1600 °C.