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Micromechanical properties of hydroxyapatite nanocomposites reinforced with CNTs and ZrO2

Authors
Musharavati, FarayiJaber, FadiNasor, MohamedSarraf, MasoudNezhad, Erfan ZalUzun, KaanMa, YeBae, Sung ChulSingh, RameshChowdhury, Muhammad E.H.
Issue Date
Mar-2023
Publisher
Elsevier
Keywords
Hydroxyapatite; Zirconia; Carbon nanotube; Wear resistance; Wettability; Nanoindentation
Citation
Ceramics International, v.49, no.5, pp 7466 - 7475
Pages
10
Indexed
SCIE
SCOPUS
Journal Title
Ceramics International
Volume
49
Number
5
Start Page
7466
End Page
7475
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/191655
DOI
10.1016/j.ceramint.2022.10.218
ISSN
0272-8842
1873-3956
Abstract
This study examined the mechanical properties, wettability, and tribology of hydroxyapatite (HA)-zirconia (ZrO2)-carbon nanotube (CNTs) ceramic nanocomposites (with various CNT ratios (x): 1, 5, and 10 wt%). HA-ZrO2-CNT-x powders were hydrothermally synthesized. Hot isostatic pressing (HIP) and cold isostatic pressing were used to manufacture solid and dense tablets; consolidation was performed by sintering the nanocomposites under Ar gas at 1150 degrees C during HIP. The microstructure and morphology of the nanocomposites were characterized via transmission electron microscopy, energy-dispersive X-ray spectroscopy, powder X-ray diffractometry, Fourier transform infrared (FTIR), and scanning electron microscopy. The effects of ZrO2 and CNTs on the mechanical characteristics of the nanocomposites were examined via nanoindentation, recipro-cating wear, and Vickers hardness tests. The microhardness of HA-ZrO2-CNT-1% and HA-ZrO2-CNT-5% increased by 36.8% and 66.67%, respectively, compared with that of pure HA. The nanohardness of the HA-ZrO2-CNT-1%, HA-ZrO2-CNT-5%, and HA-ZrO2-CNT-10% samples was 8.3, 9.65, and 8.02 Gpa, and the corresponding elastic modulus was 83.72, 114.34, and 89.27 GPa, respectively. Both of these parameters were higher than those of pure HA. However, in the nanocomposite reinforced with 10% CNT, as opposed to those with lower CNT ratios, their values were lower. Additionally, HA-ZrO2-CNT-10% was the most hydrophilic nanocomposite synthesized in this study with a contact angle of 48.8 degrees.
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