Journal of Minerals and Materials Characterization and Engineering

Volume 2, Issue 6 (November 2014)

ISSN Print: 2327-4077   ISSN Online: 2327-4085

Google-based Impact Factor: 1  Citations  

Comparative Analysis of Rigid PVC Foam Reinforced with Class C and Class F Fly Ash

HTML  XML Download Download as PDF (Size: 3519KB)  PP. 554-565  
DOI: 10.4236/jmmce.2014.26057    4,670 Downloads   6,017 Views  Citations

ABSTRACT

Fly ash particles are usually spherical and based on their chemical composition; they are categorized into two classes: C and F. This study compares the microstructural, mechanical and thermal properties of extruded rigid PVC foam composites reinforced with class C and class F fly ash. The mechanical properties: such as tensile and flexural strength of composites containing class C fly ash were superior to the composites containing class F fly ash particles. Composites containing 6 phr class C fly ash showed a 24% improvement in the tensile strength in comparison to a mere 0.5% increase in composites reinforced with class F fly ash. Similarly, the addition of 6 phr of class F fly ash to the PVC foam matrix resulted in a 5.74% decrease in the flexural strength, while incorporating the same amount of class C fly ash led to a 95% increase in flexural strength. The impact strength of the composites decreased as the amount of either type of fly ash increased in the composites indicating that fly ash particles improve the rigidity of the PVC foam composites. No significant changes were observed in the thermal properties of the composites containing either type of fly ash particles. However, the thermo-mechanical properties measured by DMA indicated a steep increase in the viscoelastic properties of composites reinforced with class C flyash. The microstructural properties studied by Scanning Electron Microscopy (SEM) confirmed that fly ash particles were mechanically interlocked in the PVC matrix with good interfacial interaction with the matrix. However, particle agglomeration and debonding was observed in composites reinforced with higher amounts of fly ash.

Share and Cite:

Khoshnoud, P. , Gunashekar, S. , Jamel, M. and Abu-Zahra, N. (2014) Comparative Analysis of Rigid PVC Foam Reinforced with Class C and Class F Fly Ash. Journal of Minerals and Materials Characterization and Engineering, 2, 554-565. doi: 10.4236/jmmce.2014.26057.

Cited by

[1] Effect of coal fly ash treatments on synthesis of high-quality zeolite A as a potential additive for warm mix asphalt
Materials Chemistry and …, 2022
[2] Valorization of MSW Incinerator Fly Ash for Epoxy-Based Composite for Interior Light Partition Application
Waste and Biomass …, 2022
[3] Circular Economy Applied to Metallurgical Waste: Use of Slags and Fly Ash from the Ferronickel Industry in the Production of Eco-Friendly Composites
Journal of Sustainable Metallurgy, 2022
[4] Effect of Fly Ash on the Mechanical Properties of Polyvinyl Chloride-Fly Ash Composite
2020
[5] Study on thermal, mechanical and morphological properties of recycled poly (vinyl chloride)/fly ash composites
2020
[6] POMZA AGREGASI KULLANILARAK ÜRETİLEN HAFİF BETON ÖZELLİKLERİNİN UÇUCU KÜL İKAMESİ İLE İYİLEŞTİRİLMESİ ÜZERİNE DENEYSEL BİR …
2020
[7] POMZA AGREGASI KULLANILARAK ÜRETİLEN HAFİF BETON ÖZELLİKLERİNİN UÇUCU KÜL İKAMESİ İLE İYİLEŞTİRİLMESİ ÜZERİNE DENEYSEL …
2020
[8] Reliability-Based Evaluation of the Suitability of Polymers for Additive Manufacturing Intended for Extreme Operating Conditions
2020
[9] Synthesis and characterization of highly crystalline Na‐X zeolite from class F fly ash
Water and Environment Journal, 2019
[10] Production of Biodiesel from Microalgae
2019
[11] World Biodiesel Policies and Production
2019
[12] Synthesis and characterization of highly crystalline Na-X zeolite from class F fly ash
Water and Environment Journal, 2019
[13] Production of Biodiesel from Microalgae: A Review of the Microalgae-Based Biorefinery
2019
[14] Experimental Investigation of Mechanical Properties of Impact Modified Polyvinyl Chloride-Fly Ash Composites
2018
[15] The effect of particle size of fly ash (FA) on the interfacial interaction and performance of PVC/FA composites
Journal of Vinyl and Additive Technology, 2018
[16] Pengaruh Fraksi Massa Filler Terhadap Tensile dan Impact pada Komposit Partikel Abu Batubara Dengan Matrik Polyvinyl Chloride Grade K-65R
2018
[17] PENGARUH FRAKSI MASSA FILLER TERHADAP TENSILE DAN IMPACT PADA KOMPOSIT PARTIKEL ABU BATUBARA DENGAN MATRIK POLYVINYL CHLORIDE …
2018
[18] From Flue Gas of Industrial Plants to Biodiesel: Effect of CO2 on Microalgae Growth
2017
[19] Kinetics of thermal decomposition of PVC/Fly ash composites
Separation Science and Technology, 2017
[20] Polymer Foam/Fly Ash Composites: Evaluation of Mechanical, Interfacial, Thermal, Viscoelastic and Microstructural Properties
2017
[21] Evaluating recyclability of fly ash reinforced polyvinyl chloride foams
Journal of Vinyl and Additive Technology, 2016
[22] General model for comparative tensile mechanical properties of composites fabricated from fly ash and virgin/recycled high‐density polyethylene
Polymer Engineering & Science, 2016
[23] Ductility and Flame Retardancy Enhancement of PVC by Nanostructured Fly Ash
Silicon, 2016
[24] Properties of rigid polyvinyl chloride foam composites reinforced with different shape fillers
Journal of Thermoplastic Composite Materials, 2016
[25] Enhancement of dimensional stability of rigid PVC foams using E-glass fibers
2015
[26] Mechanical Properties and Dimensional Stability of Rigid PVC Foam Composites Filled with High Aspect Ratio Phlogopite Mica
Journal of Minerals and Materials Characterization and Engineering, 2015
[27] Effect of E-Glass Fibers and Phlogopite Mica on the Mechanical Properties and Dimensional Stability of Rigid PVC Foams: Properties of Rigid PVC Foam Composites Reinforced with Glass Fibers and Mica
Polymer-Plastics Technology and Engineering, 2015
[28] Studies on Effect of a Silane Coupling Agent (TESPT) on the Properties of Fly Ash-Natural Rubber Composite
Journal of Polymer Materials, 2015
[29] Development and Characterization of Fly Ash Reinforced Natural Rubber Composite
Journal of Polymer Materials, 2014
[30] Pomza agregası kullanılarak üretilen hafif beton özelliklerinin uçucu kül ikamesi ile iyileştirilmesi üzerine deneysel bir araştırma

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.