Preparation of Polyester/ Micro Eggshell Fillers Composite as Natural Surface Coating

Authors

  • Aveen N. Jassim Department of Phesics , College of Education for Pure Sciences, Ibn Al – Haitham, University of Baghdad, Baghdad, Iraq.
  • Widad H. Jassim Department of Phesics , College of Education for Pure Sciences, Ibn Al – Haitham, University of Baghdad, Baghdad, Iraq.

DOI:

https://doi.org/10.30526/36.1.2889

Keywords:

natural fibers, polyester, eggshell , mechanical properties, thermal conductivity and water diffusion .

Abstract

    To fabricate an inexpensive surface coating with excellent mechanical properties with good water resistance and thermal diffusion, white eggshell fibers with particle size (~1micrometer) has been added by different weight percentages (1,2,3,4,5,6,7 and 8 %) to Unsaturated Polyester.

The weight ratio (4%) of eggshell powder is a good ratio to be added to polyester to improve its mechanical properties, such as hardness, impact strength, and wear resistance. The hardness was improved by (3.75%); impact strength has the same value as polyester, flexural strength by (8.43%) and high improvement in wear resistance (74.4%), as well as to get further improvements in mechanical properties of polyester, the eggshell powder was added with (5%), where the hardness was improved by (3.63%), impact strength improved by (~23%) and the flexural strength by (23.23%)but the wear resistance by (2.15%) only .

The resistance to thermal of polyester was improved to (9.95%) and (13.77%) by adding the eggshell powder with ratios (of 4%) and (5%), respectively.

(Polyester/ 4% eggshells).  And (Polyester/ 5% eggshells) composites have a higher resistance to water diffusion after being immersed in water between (1-4 weeks).

The electron microscope image was used to observe the degree of homogeneity in polyester composite microstructure, which improved the results mechanical and thermal results.

References

Hassan, S. B.; Aigbodion, V. S.; Patrick, S. N.; Development of polyester/Eggshell Particulate Composites. Tribology in Industry, 2012, 34, 4, 217-225.

Hunton, P.; Research on eggshell structure and quality: an historical overview. Brazilian Journal of Poultry Science, 2005, 7, 2, 67-71.

Widad, H. J.; Nadir, F. H.; Preparation of epoxy chicken eggshell composite as thermal insulation. Journal of the Australian Ceramic Society, 2018,54, 2, 231-235.

‏TORO, P.; Eggshell, a new bio-filler for polypropylene composites. Materials letters, 2007, 61, 22, 4347-4350.‏

Abdulkareem, M. H.; Bohan, A. J.; Ati, A. A.; The Impact of UnCalcined & Calcined Eggshell Powder as BioFiller for Polylacticacid. Diyala Journal of Engineering Sciences, 2020,13, 4, 71-79.‏

Stephen, O. S.; Duncan, E. C.;, Fabrication and Characterization pf Bio-Epoxy Eggshell Composites, Appl. Mech. 2021, 2, 694-713

Hossain, M.; Thermal aging of unsaturated polyester composite reinforced with e-glass nonwoven mat. AUTEX Research Journal, 2017, 17, 4, 313-318.‏

Widad, H. J.; Preparation of the epoxy/chicken eggshell composites to use in surfaces coating. Ibn AL-Haitham Journal For Pure and Applied Science,2016,29, 1.‏

Hameed, H. K.; Jassim, W. H.; Comparison Study of Some Mechanical Properties of Epoxy Composites using uncarbonized Orange peel and Carbonized Orange peel.In: IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2020.. 012075.‏

Majeed, A. H.; Ibrahim, S. Q.; Mechanical properties of unsaturated polyester filled with silica fume, glass powder and carbon black. Engineering and Technology Journal, 2017, 35, 6, 639-647.‏

Olaitan, A. J.; et al. Comparative assessment of mechanical properties of groundnut shell and rice husk reinforced epoxy composites. Am. J. Mech. Eng, 2017,5,3, 76-86.

‏Mohammed, J. K.; Hamza, M. K.; Layla, M. H.; The wear characteristics of thermoset polymers composites filled with ceramic particles, Journal of Mechanical Engineering Research and Developments. 2021, 44, 3, 322-333

Alhazmi, W. H.; Jazaa, Y.; Mousa, S.; Abd-Elhady, A. A.; Sallam, H. E.; Tribological and Mechanical Properties of Epoxy Reinforced by Hybrid Nanoparticles, Latin American Journal of Solids and Structures, 2021,18, 13.361-372

Bhatia, S.; Angra, S.; Khan, S.; Mechanical and wear properties of epoxy matrix composite reinforced with varying ratios of solid glass microspheres. In: Journal of Physics: Conference Series. IOP Publishing, 2019, 1240, 1, 012080.‏

Hosssain, M.; et al. Thermal aging of unsaturated polyester composite reinforced with e-glass nonwoven mat. AUTEX Research Journal, 2017,17, 4, 313-318.‏

Downloads

Published

20-Jan-2023

Issue

Section

Physics

Publication Dates