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Quantitative study of particle size distribution in an in-situ grown Al-TiB2 composite by synchrotron X-ray diffraction and electron microscopy

Authors :
Vincent Ji
Gang Ji
Zhe Chen
Yang Tang
Dominique Schryvers
Huiying Wang
Shengyi Zhong
András Borbély
State Key Laboratory of Metal Matrix Composites
Shanghai Jiao Tong University [Shanghai]
Laboratoire Georges Friedel (LGF-ENSMSE)
Université de Lyon-Centre National de la Recherche Scientifique (CNRS)-École des Mines de Saint-Étienne (Mines Saint-Étienne MSE)
Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)
Centre Science des Matériaux et des Structures (SMS-ENSMSE)
École des Mines de Saint-Étienne (Mines Saint-Étienne MSE)
PMM-ENSMSE- Département Physique et Mécanique des Matériaux
Unité Matériaux et Transformations - UMR 8207 (UMET)
Institut National de la Recherche Agronomique (INRA)-Ecole Nationale Supérieure de Chimie de Lille (ENSCL)-Institut de Chimie du CNRS (INC)-Université de Lille-Centre National de la Recherche Scientifique (CNRS)
Electron Microscopy for Materials Science - EMAT (Antwerp, Belgium)
Universiteit Antwerpen [Antwerpen]
ICMMO/LEMHE
Université Paris-Sud - Paris 11 (UP11)
Institut National de la Recherche Agronomique (INRA)-Ecole Nationale Supérieure de Chimie de Lille (ENSCL)-Université de Lille-Centre National de la Recherche Scientifique (CNRS)
Centre National de la Recherche Scientifique (CNRS)-Université de Lille-Ecole Nationale Supérieure de Chimie de Lille (ENSCL)-Institut National de la Recherche Agronomique (INRA)
Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)-Université de Lyon-Centre National de la Recherche Scientifique (CNRS)
Universiteit Antwerpen = University of Antwerpen [Antwerpen]
Institut de Chimie Moléculaire et des Matériaux d'Orsay (ICMMO)
Université Paris-Sud - Paris 11 (UP11)-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS)
Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)-Centre National de la Recherche Scientifique (CNRS)
Source :
Materials Characterization, Materials Characterization, Elsevier, 2015, 102, pp.131-136. ⟨10.1016/j.matchar.2015.03.003⟩, Materials Characterization, 2015, Materials Characterization, 102, pp.131-136. ⟨10.1016/j.matchar.2015.03.003⟩, Materials Characterization, 2015, 102, pp.131-136. ⟨10.1016/j.matchar.2015.03.003⟩, Materials characterization, Materials Characterization, Elsevier, 2015, 102, pp.131-136 ⟨10.1016/j.matchar.2015.03.003 ⟩
Publication Year :
2015
Publisher :
HAL CCSD, 2015.

Abstract

International audience; Synchrotron X-ray diffraction and transmission electron microscopy (TEM) were applied to quantitatively characterize the average particle size and size distribution of free-standing TiB2 particles and TiB2 particles in an in-situ grown Al-TiB2 composite. The detailed evaluations were carried out by X-ray line profile analysis using the restricted moment method and multiple whole profile fitting procedure (MWP). Both numerical methods indicate that the formed TiB2 particles are well crystallized and free of crystal defects. The average particle size determined from different Bragg reflections by the restricted moment method ranges between 25 and 55 nm, where the smallest particle size is determined using the 110 reflection suggesting the highest lateral-growth velocity of (110) facets. The MWP method has shown that the in-situ grown TiB2 particles have a very low dislocation density (similar to 10(11) m(-2)) and their size distribution can be described by a log-normal distribution. Good agreement was found between the results obtained from the restricted moment and MWP methods, which was further confirmed by TEM. (C) 2015 Elsevier Inc. All rights reserved.

Details

Language :
English
ISSN :
10445803
Database :
OpenAIRE
Journal :
Materials Characterization, Materials Characterization, Elsevier, 2015, 102, pp.131-136. ⟨10.1016/j.matchar.2015.03.003⟩, Materials Characterization, 2015, Materials Characterization, 102, pp.131-136. ⟨10.1016/j.matchar.2015.03.003⟩, Materials Characterization, 2015, 102, pp.131-136. ⟨10.1016/j.matchar.2015.03.003⟩, Materials characterization, Materials Characterization, Elsevier, 2015, 102, pp.131-136 ⟨10.1016/j.matchar.2015.03.003 ⟩
Accession number :
edsair.doi.dedup.....560d2a529c0d6a33ecfc9188c1dbbf8b