Preceramic paper derived Ti3AlC2 – TiC – Al2O3 composites obtained via spark plasma sintering; Materials Letters; Vol. 409

Bibliografski detalji
Parent link:Materials Letters.— .— Amsterdam: Elsevier Science Publishing Company Inc.
Vol. 409.— 2026.— Article number 140124, 4 p.
Daljnji autori: Krotkevich D. G. Dmitry Georgievich, Abdulmenova A. V. Anastasiya Vladimirovna, Voevodin P. I. Pavel Ivanovich, Sedanova E. P. Elizaveta Pavlovna, Travitsky (Travitzky) N. Nakhum, Kashkarov E. B. Egor Borisovich
Sažetak:Title screen
This work presents novel approach for fabricating composite materials based on the Ti₃AlC2 MAX-phase, TiC and Al₂O₃, using preceramic papers as a starting material. Preceramic papers with different contents of Ti₃AlC2 and Al₂O₃ were produced. The composites were consolidated by spark plasma sintering at 1150 °C under a pressure of 50 MPa. The microstructure, phase composition and mechanical properties of the composites were studied. The dense composites (2% porosity) obtained at 30 wt% Al₂O₃ exhibit bending strength of 360 ± 30 MPa and hardness of 13.5 GPa. Increasing the Al₂O₃ content to 50 and 70 wt% results in higher porosity (12% and 25%), with bending strengths of 240 ± 20 MPa and 50 ± 5 MPa, and hardness values of 6.2 GPa and 5.3 GPa, respectively
Текстовый файл
AM_Agreement
Jezik:engleski
Izdano: 2026
Teme:
Online pristup:https://doi.org/10.1016/j.matlet.2026.140124
Format: Elektronički Poglavlje knjige
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=685088

MARC

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330 |a This work presents novel approach for fabricating composite materials based on the Ti₃AlC2 MAX-phase, TiC and Al₂O₃, using preceramic papers as a starting material. Preceramic papers with different contents of Ti₃AlC2 and Al₂O₃ were produced. The composites were consolidated by spark plasma sintering at 1150 °C under a pressure of 50 MPa. The microstructure, phase composition and mechanical properties of the composites were studied. The dense composites (2% porosity) obtained at 30 wt% Al₂O₃ exhibit bending strength of 360 ± 30 MPa and hardness of 13.5 GPa. Increasing the Al₂O₃ content to 50 and 70 wt% results in higher porosity (12% and 25%), with bending strengths of 240 ± 20 MPa and 50 ± 5 MPa, and hardness values of 6.2 GPa and 5.3 GPa, respectively 
336 |a Текстовый файл 
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461 1 |t Materials Letters  |c Amsterdam  |n Elsevier Science Publishing Company Inc. 
463 1 |t Vol. 409  |v Article number 140124, 4 p.  |d 2026 
610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
610 1 |a Ceramic composites 
610 1 |a MAX-phases 
610 1 |a Preceramic papers 
610 1 |a Mechanical properties 
610 1 |a Spark plasma sintering 
701 1 |a Krotkevich  |b D. G.  |c physicist  |c engineer of Tomsk Polytechnic University  |f 1990-  |g Dmitry Georgievich  |9 22434 
701 1 |a Abdulmenova  |b A. V.  |c physicist  |c engineer at Tomsk Polytechnic University  |f 2001-  |g Anastasiya Vladimirovna  |9 88516 
701 1 |a Voevodin  |b P. I.  |g Pavel Ivanovich 
701 1 |a Sedanova  |b E. P.  |c Specialist in the field of nuclear technologies  |c Engineer of Tomsk Polytechnic University  |f 1994-  |g Elizaveta Pavlovna  |9 21923 
701 1 |a Travitsky (Travitzky)  |b N.  |c specialist in the field of material science  |c Professor of Tomsk Polytechnic University  |f 1951-  |g Nakhum  |9 21540 
701 1 |a Kashkarov  |b E. B.  |c Physicist  |c Associate Professor, Researcher of Tomsk Polytechnic University, Candidate of Physical and Mathematical Sciences  |f 1991-  |g Egor Borisovich  |9 18267 
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