Influence of plasma modification on mechanical and thermal properties of Polypropylene/ Nano-Calcium Silicate Composites

The aim of the research is to study the influence of plasma modification on nano calcium silicate/polypropylene composites. Polypropylene (PP) is considered for this study as it possesses high impact strength, toughness and availability. Calcium silicate is considered as reinforcement because of its...

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Main Authors: Ajeesh. G, Raman Aditya, Parameswaran Adarsh, Pandiyan Sundhara, Parvathy S., George Philip
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Subjects:
Online Access:https://doi.org/10.1051/matecconf/201714402027
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spelling doaj-b6e3a8e6f63946638e34c8754000162e2021-02-02T02:38:40ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011440202710.1051/matecconf/201714402027matecconf_rimes2017_02027Influence of plasma modification on mechanical and thermal properties of Polypropylene/ Nano-Calcium Silicate CompositesAjeesh. GRaman AdityaParameswaran AdarshPandiyan SundharaParvathy S.George PhilipThe aim of the research is to study the influence of plasma modification on nano calcium silicate/polypropylene composites. Polypropylene (PP) is considered for this study as it possesses high impact strength, toughness and availability. Calcium silicate is considered as reinforcement because of its high temperature resistance, high flexural strength and high strength to mass ratio. Fourier transform infrared spectroscopy (FTIR) results show that there is a change in the functional group on the surface of calcium silicate after modification. Thermo-Gravimetric Analysis (TGA), Differential Scanning Calorimetry (DSC) results show that the decomposition temperature increased with increasing amount of filler particles. It is also observed that the modification has produced a marginal increase in the decomposition and glass transition temperature. Tensile test results also show a gradual increase in the tensile properties of composites when high ratio is reinforcement. Tensile test results also show that there is a marginal increase in the tensile strength when reinforced with modified calcium silicate when compared to non-modified. Scanning Electron Microscopy (SEM) reveals that there is a enhanced dispersion of nano particles on modification. Based on the findings it can be concluded that plasma modification enhances the thermal and mechanical property marginally.https://doi.org/10.1051/matecconf/201714402027Polymeric nano compositesPlasma modificationScanning Electron MicroscopyDifferential scanning calorimeterSuperior dispersion
collection DOAJ
language English
format Article
sources DOAJ
author Ajeesh. G
Raman Aditya
Parameswaran Adarsh
Pandiyan Sundhara
Parvathy S.
George Philip
spellingShingle Ajeesh. G
Raman Aditya
Parameswaran Adarsh
Pandiyan Sundhara
Parvathy S.
George Philip
Influence of plasma modification on mechanical and thermal properties of Polypropylene/ Nano-Calcium Silicate Composites
MATEC Web of Conferences
Polymeric nano composites
Plasma modification
Scanning Electron Microscopy
Differential scanning calorimeter
Superior dispersion
author_facet Ajeesh. G
Raman Aditya
Parameswaran Adarsh
Pandiyan Sundhara
Parvathy S.
George Philip
author_sort Ajeesh. G
title Influence of plasma modification on mechanical and thermal properties of Polypropylene/ Nano-Calcium Silicate Composites
title_short Influence of plasma modification on mechanical and thermal properties of Polypropylene/ Nano-Calcium Silicate Composites
title_full Influence of plasma modification on mechanical and thermal properties of Polypropylene/ Nano-Calcium Silicate Composites
title_fullStr Influence of plasma modification on mechanical and thermal properties of Polypropylene/ Nano-Calcium Silicate Composites
title_full_unstemmed Influence of plasma modification on mechanical and thermal properties of Polypropylene/ Nano-Calcium Silicate Composites
title_sort influence of plasma modification on mechanical and thermal properties of polypropylene/ nano-calcium silicate composites
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The aim of the research is to study the influence of plasma modification on nano calcium silicate/polypropylene composites. Polypropylene (PP) is considered for this study as it possesses high impact strength, toughness and availability. Calcium silicate is considered as reinforcement because of its high temperature resistance, high flexural strength and high strength to mass ratio. Fourier transform infrared spectroscopy (FTIR) results show that there is a change in the functional group on the surface of calcium silicate after modification. Thermo-Gravimetric Analysis (TGA), Differential Scanning Calorimetry (DSC) results show that the decomposition temperature increased with increasing amount of filler particles. It is also observed that the modification has produced a marginal increase in the decomposition and glass transition temperature. Tensile test results also show a gradual increase in the tensile properties of composites when high ratio is reinforcement. Tensile test results also show that there is a marginal increase in the tensile strength when reinforced with modified calcium silicate when compared to non-modified. Scanning Electron Microscopy (SEM) reveals that there is a enhanced dispersion of nano particles on modification. Based on the findings it can be concluded that plasma modification enhances the thermal and mechanical property marginally.
topic Polymeric nano composites
Plasma modification
Scanning Electron Microscopy
Differential scanning calorimeter
Superior dispersion
url https://doi.org/10.1051/matecconf/201714402027
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