Improving the Dielectric Properties of High Density Polyethylene by Incorporating Clay-Nanofiller
Author(s) -
Osama E. Gouda,
Sohair F. Mahmoud,
Ahmed A. ElGendy,
Ahmed S. Haiba
Publication year - 2014
Publication title -
world journal of engineering and technology
Language(s) - English
Resource type - Journals
eISSN - 2331-4222
pISSN - 2331-4249
DOI - 10.4236/wjet.2014.24030
Subject(s) - materials science , dielectric , nanocomposite , thermal stability , polymer , composite material , polyethylene , montmorillonite , thermogravimetric analysis , polymer nanocomposite , polymer clay , gravimetric analysis , scanning electron microscope , dielectric loss , dissipation factor , chemical engineering , chemistry , optoelectronics , organic chemistry , engineering
Polymer nanocomposites have been used for various important industrial applications. The preparation of high density polyethylene composed with Na-montmorillonite nanofiller using melt compounding method for different concentrations of clay-nanofiller of 0%, 2%, 6%, 10%, and 15% has been successfully done. The morphology of the obtained samples was optimized and characterized by scanning electron microscope showing the formation of the polymer nanocomposites. The thermal stability and dielectric properties were measured for the prepared samples. Thermal gravimetric analysis results show that thermal stability in polymer nanocomposites is more than that in the base polymer. It has been shown that the polymer nanocomposites exhibit some very different dielectric characteristics when compared to the base polymer. The dielectric breakdown strength is enhanced by the addition of clay-nanofiller. The dielectric constant (er) and dissipation factor (Tan δ) have been studied in the frequency range 200 Hz to 2 MHz at room temperature indicating that enhancements have been occurred in er and Tan δ by the addition of clay-nanofiller in the polymer material when compared with the pure material.
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