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Effect of TiO2 nanoparticles on basalt/polysiloxane composites: mechanical and thermal characterization
Authors:Rajesh Mishra  Richa Tiwari  Miroslava Marsalkova  BK Behera  Jiri Militky
Affiliation:1. Faculty of Textile Engineering, Technical University of Liberec , Czech Republic rajesh.mishra@tul.cz;3. Department of Textile Technology , IIT Delhi , Delhi , India;4. Faculty of Textile Engineering, Technical University of Liberec , Czech Republic
Abstract:In the present investigation, a novel technique has been developed to fabricate composite materials containing TiO2 nanoparticles, polysiloxane resin, and basalt fabric. A high-intensity ultrasonic probe was used to obtain a homogenous molecular mixture of TiO2 nanoparticles and polysiloxane resin, thus the nanoparticles were infused into the resin through sonic cavitation. The loading effect of TiO2 nanoparticles on the thermal and mechanical properties of basalt fabric reinforced polysiloxane composite materials has been investigated. Composite samples were prepared, each using two layers of basalt fabric with TiO2 nanoparticles loading from 0.5, 1, 1.5, 2, 2.5, and 3% by weight. Size distribution of nanoparticles was observed by particle size analyzer and the prepared fabric nanocomposites were characterized by scanning electron microscopy, dynamic mechanical analysis (DMA), thermo gravimetric analysis (TGA), and differential scanning calorimetry (DSC). Tensile testing was performed as per American standard for testing of materials (ASTM) standards. The dependence of dynamic mechanical parameters E′, E′′, tan (delta), T g, and heat distortion temperature (HDT) are associated with the filler content and can be controlled by the curing conditions. Tensile results show that 1.5 wt.% loading of TiO2 nanoparticles in the nanocomposites resulted in highest improvement in tensile modulus compared to the neat system. DMA studies also revealed that 1.5 wt.% doped system exhibits highest storage modulus as compared to the neat and other loading percentages. DSC and TGA studies show that T g and HDT of the composite increases with the increase in wt.% of nanofillers in the composite. Based on these results, it is clear that miscibility of nanoparticles in the resin is of prime importance with regard to performance.
Keywords:nanocomposites  basalt woven fabrics  scanning electron microscopy  dynamic mechanical analysis  differential scanning calorimetry  thermo gravimetric analysis
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