DocumentCode :
3535189
Title :
Fabrication and properties of PVDF/BaTiO3 nanocomposites for electronic applications
Author :
Goyal, R.K. ; Namjoshi, A.H. ; Joshi, B.B.
Author_Institution :
Dept. of Metall. & Mater. Sci., Coll. of Eng., Pune, Pune, India
fYear :
2011
fDate :
28-30 Nov. 2011
Firstpage :
642
Lastpage :
645
Abstract :
In this project, polymer matrix nanocomposites based on poly(vinylidene fluoride) (PVDF) as matrix and nanobarium titanate (BaTiO3) as reinforcement were fabricated using hot pressing at 200 °C and 45 MPa. The BaTiO3 content was varied from 0 to 50 wt% (~ 23 vol%) in the PVDF matrix. Nanocomposites were characterized to get information about topography, density, microhardness and dielectric properties. Scanning electron microscope showed almost uniform dispersion of nanoBaTiO3 in the matrix. However, some aggregates of BaTiO3 were also observed due to Van der Waal´s force. The experimental density was very close to that of theoretical density. The microhardness was increased with increasing BaTiO3 content in the matrix. A 50 wt% BaTiO3 nanocomposite showed Vickers microhardness of 9.7 kg/mm2 compared to that of pure PVDF (7.3 kg/mm2). The dielectric constant of nanocomposites increased by more than 3-fold and it decreased slightly with increasing frequency from 1 kHz to 15 MHz. The significant improvement in microhardness and dielectric constant was attributed to the better dispersion of BaTiO3 in the matrix.
Keywords :
Vickers hardness; barium compounds; filled polymers; hot pressing; microhardness; nanocomposites; nanofabrication; permittivity; scanning electron microscopy; van der Waals forces; BaTiO3; Van der Waals force; Vickers microhardness; dielectric constant; dielectric properties; electronic application; hot pressing; nanobarium titanate; poly(vinylidene fluoride); polymer matrix nanocomposites; pressure 45 MPa; scanning electron microscopy; temperature 200 degC; Ceramics; Density measurement; Dielectrics; Nanocomposites; Powders; BaTiO3; Dielectric constant; Dissipation factor; Microhardness; Nanocomposites; PVDF;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanoscience, Engineering and Technology (ICONSET), 2011 International Conference on
Conference_Location :
Chennai
Print_ISBN :
978-1-4673-0071-1
Type :
conf
DOI :
10.1109/ICONSET.2011.6168015
Filename :
6168015
Link To Document :
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