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Indeed, with few amount of organoclay, PCNs exhibit enhanced mechanical, optical, thermal and liquid or gas barrier properties compared to pure polymers and to their counterpart microcomposites.
When compared to pure polymers, polymer nanocomposites possess many attractive properties, such as enhanced barrier characteristics, increased moduli and strengths, high heat distortion temperatures, reduced gas permeability and decreased absorption in organic liquids (Gulyas et al. 2013).
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Nanohybrids exhibit better thermal and mechanical responses along with greater self-assembly as compared to pure polymer.
The viscoelastic properties of both types of composites were evaluated by dynamic mechanical analysis and melt rheology and compared to pure polymer matrix and composite containing neat carbon nanotubes.
Both specific surface areas and the total pore volume of the composite materials are slightly reduced as compared to pure polymer.
The properties of these nanocomposites such as tensile strength, tensile modulus, toughness, glass transition temperature, thermal conductivity, electrical conductivity, solvent resistance and optical properties have been improved compare to pure polymers [12].
The two glass/carbon fibrous hybrid composites are [G2C2G] S and [CG3C] S. The tensile strength and flexural strength of [G2C2G]S has been improved by 6.74% and 23% respectively as compared to pure glass fiber reinforced polymer composite.
Compared to pure perfluorosulfonic acid (PFSA) polymer membrane, the composite membranes based on semi-IPN of FPI and PFSA exhibit improved mechanical properties, excellent thermal and dimensional stabilities, and suitable proton conductivity.
An improvement of the material strength and impact resistance of PLLA/PCL polymer blends compared to pure PLLA has been shown previously.
They observed the polymer could demonstrate an increase trend in viscosity as compared to pure component.
Plasticizer incorporation significantly enhanced the elongation at break of the PLLA polymer, which would enable accumulation of higher maximum strain without strut rupture compared to pure PLLA; however the adverse effect was observed for creep behaviour of the material.
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