This work explores the fine microstructural features of BC-TiB composites and suggests an overall microstructure evolution from powder processing to sintering. In addition, small-scale grain structures are correlated to local properties measured by nanoindentation, thus providing trends in mechanical behavior. Dense ceramics were typified by development of a core/shell structure of the boride grains, with the shell comprising a (Ti,W)B solid solution with different assemblage and variable amount of W guest cation depending on the processing route. TEM analyses revealed chemical and morphological differences that were associated to the presumed densification mechanisms. Nanoindentation was used to extract the overall and single phase properties of TiB core, shell and BC phase highlighting for the first time hardness and modulus variation as a function of the lattice perturbation, i.e. of nominally pure core boride and shells region. This work provides new experimental findings fundamental for the development and synthesis of high-performance structural materials starting from a small-length scale perspective.

Disclosing small scale length properties in core-shell structured B4C-TiB2 composites

Silvestroni L.
Writing – Original Draft Preparation
;
Failla S.
Formal Analysis
;
Gilli N.
Formal Analysis
;
Melandri C.
Formal Analysis
;
Sciti D.
Funding Acquisition
2021

Abstract

This work explores the fine microstructural features of BC-TiB composites and suggests an overall microstructure evolution from powder processing to sintering. In addition, small-scale grain structures are correlated to local properties measured by nanoindentation, thus providing trends in mechanical behavior. Dense ceramics were typified by development of a core/shell structure of the boride grains, with the shell comprising a (Ti,W)B solid solution with different assemblage and variable amount of W guest cation depending on the processing route. TEM analyses revealed chemical and morphological differences that were associated to the presumed densification mechanisms. Nanoindentation was used to extract the overall and single phase properties of TiB core, shell and BC phase highlighting for the first time hardness and modulus variation as a function of the lattice perturbation, i.e. of nominally pure core boride and shells region. This work provides new experimental findings fundamental for the development and synthesis of high-performance structural materials starting from a small-length scale perspective.
2021
Istituto di Scienza, Tecnologia e Sostenibilità per lo Sviluppo dei Materiali Ceramici - ISSMC (ex ISTEC)
Inglese
197
109204
14
http://www.scopus.com/record/display.url?eid=2-s2.0-85092463171&origin=inward
Esperti anonimi
solid solution
core-shell
transmission electron microscopy
nanoindentation
Internazionale
Elettronico
7
info:eu-repo/semantics/article
262
Silvestroni, L.; Failla, S.; Gilli, N.; Melandri, C.; Savaci, U.; Turan, S.; Sciti, D.
01 Contributo su Rivista::01.01 Articolo in rivista
open
   SUper Strong ceramics for Protection in harsh ENvironments and defenCE
   SUSPENCE
   NATO
   MYP-G5767

   Sviluppo e ingegnerizzazione di protezioni balistiche ad alta prestazione a base di compositi ceramici TiB2-B4C
   BALTIC
   MInistero della Difesa
   1915, 4.12.2017
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/443834
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