Articolo in rivista, 2023, ENG, 10.3390/nano13192683

Sintering, Mechanical and Optical Properties of TiB2 Composites with and without High-Energy Milling

Simone Taraborelli, Simone Failla, Elisa Sani, Diletta Sciti

Consiglio Nazionale delle Ricerche - Istituto di Scienza, Tecnologia e Sostenibilità per lo Sviluppo dei Materiali Ceramici (CNR - ISSMC) Consiglio Nazionale delle Ricerche - Istituto Nazionale di Ottica (CNR - INO)

TiB2 is a promising material for several fields including impact-resistant armor, wearresistant coatings, cutting tools and crucibles given its physical, mechanical and chemical properties, especially due to the combination of high hardness and exceptional wear resistance. It is however very difficult to sinter below 2000 C, even under mechanical pressure; moreover, the low fracture toughness limits the applicability of the ceramic material. By using sintering additives, it is possible to improve the sintering process and increase the mechanical properties since the additives react with oxidized layers and form secondary phases. In this study, different preparation methods and various combinations of additives (B4C, Si3N4 and MoSi2) via hot pressing sintering have been explored. Through the synergy between optimized process and tailored composition, an almost fully dense material was obtained at 1700 C with hardness of 24.4 0.2 GPa and fracture toughness of 5.4 0.2 MPam1/2. However, the highest hardness (24.5 0.2 GPa) and density values were obtained for only the high-energy-milled sample with WC-Co media, featuring a core-shell grain structure. Finally, optical properties for selected samples were measured, identifying the high-energy-milled TiB2 as the sample with the highest spectral selectivity /" and solar absorptance.

Nanomaterials (Basel) 13 (19), pp. 2683–?

Keywords

TiB2, high-energy milling, hardness, armor materials, optical properties, solar absorbers

CNR authors

Failla Simone, Taraborelli Simone, Sciti Diletta, Sani Elisa

CNR institutes

ISSMC – Istituto di Scienza, Tecnologia e Sostenibilità per lo Sviluppo dei Materiali Ceramici

ID: 487581

Year: 2023

Type: Articolo in rivista

Creation: 2023-10-18 15:22:48.000

Last update: 2023-11-23 17:35:54.000

External links

OAI-PMH: Dublin Core

OAI-PMH: Mods

OAI-PMH: RDF

DOI: 10.3390/nano13192683

External IDs

CNR OAI-PMH: oai:it.cnr:prodotti:487581

DOI: 10.3390/nano13192683