Have a personal or library account? Click to login
Viscoelastic and Thermal Characterization of a Composite Material Based on Unsaturated Polyester Resin Reinforced with Perlite Cover

Viscoelastic and Thermal Characterization of a Composite Material Based on Unsaturated Polyester Resin Reinforced with Perlite

Open Access
|Dec 2024

References

  1. Kadri A., Chouabia N. (2020). Elaboration et caractérisation d’une matrice de PEHD/SiO2 Mémoire de master, université 08 Mai 45 Guelma-Algérie.
  2. Godara, S.S., Abhishek, Y., Bharat, G., & Rana, R S. (2021). Review on history and characterization of polymer composite materials. Materials Today: Proceedings, 44, 2674-277.https://doi.org/10.1016/j.matpr.2020.12.680.
  3. Henghua, Z., Qianbin, D., Juetian, L., & Jiabang, W. (2023). Modified sodium acetate trihydrate/expanded perlite composite phase change material encapsulated by epoxy resin for Radiant floor heating. Journal of Energy Storage,65.
  4. Aneta, K., Wojciech, K., Jacek, G., & Robert, S. (2018). Ablative test of composites with epoxy resin and expanded perlite. Composite Structures, 202, 978-987. https://doi.org/10.1016/j.compstruct.2018.05.018.
  5. AnilSelmi,K.,Gulnare,A.,Mustafa,K.., Suheyla, K., Mura,t I.,& Mehmet G .(2024).Implementat ion of the PECVD process to produce a novel range of filler-polymer-coated perlites for use in epoxy composites. Journal of Industrial and Engineering Chemistry, 133.379-393. https://doi.org/10.1016/j.jiec.2023.12.009.
  6. Mehmet, N K., & Meral, O. (2023). Effect of expanded perlite addition on the thermal conductivity and mechanical properties of bio-composites with hemp-filled. Journal of Building Engineering, 71, 106515, https://doi.org/10.1016/j.jobe.2023.106515.
  7. Wojciech, K., Damian, D., Wojciech, Ż., & Robert, G. (2018). Effect of composition on ablative properties of epoxy composites modified with expanded perlite. Composite Structures, 183, 654-662. https://doi.org/10.1016/j.compstruct.2017.08.047.
  8. Mohamad, A., & Ahmet, E. (2018). Effect of perlite particle contents on delamination toughness of S-glass fiber reinforced epoxy matrix composites. Composites Part B: Engineering, 141,182-190. https://doi.org/10.1016/j.compositesb.2017.12.059.
  9. Md, A., & Ho, S K. (2017). Prediction and evaluation of density and volume fractions for the novel perlite composite affected by internal structure formation. Construction and Building Materials,141,201-215. https://doi.org/10.1016/j.conbuildmat.2017.03.015.
  10. Chandrakanta, M., Chitta,R D. & Smitismita,B.(2021).Influence of moisture absorption on Mechanical properties of kenaf/glass reinforced polyester hybrid composite. Materials Today: Proceeding,38,2596-2600. DOI. https://doi.org/10.1016/j.matpr.2020.08.100.
  11. Aji,t D.,Kelkar,Ram M.,Ronnie,B., & Sachin,S.(2010).Effect of nanoparticles and nano fibers On Mode I fracture toughnesss of fiber glass reinforced polymeric matrix composites. Materials Science and Engineering B, 168,85-89.
  12. Xuyao, Z, Weiguo, L., Li-Hua, S., Ying, L., & Jianxiang, W. (2024). Micromechanics-based modeling of temperature-dependent effective moduli of fiber reinforced polymer composites with interfacial debonding. Composites: Part A, 180.108049. https://doi.org/10.1016/j.compositesa.2024.108049.
  13. Cuixia, W., Longwei G., Yangyang,X., Chao, Z., Xinxin, S.,Chuanwen, X., Gang, Z., Haibo, J., Peng, Z., Hongyuan, F., Zhuwei, P. & Xiaoguang .(2024). Flexural performance and damage evolution of multiple fiberglass-reinforced UV-CIPP composite materials-- A view from mechanics and energy release. Journal of Materials Research and Technology, 29, 3317–3339. https://doi.org/10.1016/j.jmrt.2024.02.051.
  14. Kutlay, S., Mehmet, S., Yoldas, S., Gökhan, E., Ümit, H. & Seckin, E. (2012). Surface treatments of jute fabric: The influence of surface characteristics on jute fabrics and mechanical properties of jute/polyester composites. Industrial Crops and Products, 35, 22–30. https://doi.org/10.1016/j.indcrop.2011.05.020.
  15. Seshaiah,T., Ravikiran, Ch., Narayanan, K., Bridjesh, P. & Seshibe, M,(2024).Experimental and numerical analysis of the Microstructure and mechanical properties of unidirectional glass fiber reinforced epoxy composites. Composite Structures, 331 .117887. https://doi.org/10.1016/j.compstruct.2024.117887.
  16. Mahima, H., Mohaimenul, I., Pavel, Ch., Rafi, U., & Adib, B. (2024). A comparative study on the influence of MWCNT, GO, and Al (OH)3 gel matrix modification on hierarchical structured composite reinforced with needle-punched jute fiber and glass fiber. Results in Engineering,21. 101671. https://doi.org/10.1016/j.rineng.2023.101671.
  17. Pouya, R., Faramarz, A., Mohammad, F., & Mohammad hossein, S. (2019). Effect of styrenebutadiene rubber and fumed silica nano-filler on the microstructure and mechanical properties of glass fiber reinforced unsaturated polyester resin. Composites Part B,173. 106803. https://doi.org/10.1016/j.compositesb.2019.05.014.
  18. Jiaxin, Ch., Yu,I H., Taka, A ., & Hiroshi, U.(2023). Surface modification of carbon-fiber-reinforced plastic by using photo-activated chlorine dioxide radicals as pretreatment of electroless plating. Surfaces and Interfaces, 37, 102644,https://doi.org/10.1016/j.surfin.2023.102644.
  19. Adib Bin, R., Mahima, H., Mohaimenul, I. & Rafi, U. (2024). Nanotechnology-enhanced fiber-reinforced polymer composites: Recent advancements on processing techniques and applications. Heliyon, 10. Issue 2 .e 24692.https://doi.org/10.1016/j.heliyon.2024.e24692.
  20. Sanjeev, K., Robb, W., Ranganathan, P., Yedla, SB., Kalukanimuttam, M. & Kiran, P. (2003). Sample preparation techniques for nano -mechanical characterization of glass fiber reinforced polyester matrix composites. Composites Part A: Applied Science and Manufacturing,34,53-65.
  21. Kabir, M., Wang, H. & Lau, F. (2012). Chemical treatments on plant-based natural fibre reinforced polymer composites. Composites Part B: Engineering, 43,Issue 7,2883-2892.https://doi.org/10.1016/j.compositesb.2012.04.053.
  22. Sundeep., Kanthi, L., Manikandan, N., Akash,P. & Joby,J.(2023).Study of mechanical properties of pineapple leaf fiber and E-glass fiber reinforced hybrid epoxymatrix composite materials.Materials Today: Proceedings.
  23. Abdul,K.,P Venkat,R.,Snehith,K. & Tanya,B.(2023).Influence of the stacking on mechanical and physical properties of jute/banana natural fiber reinforced polymer matrix composite. Materials Today: Proceedings https://doi.org/10.1016/j.matpr.2023.11.017.
  24. Caroline, A., Baillie., John, E., Castle.,Michael,G. & Bader.(1993).The influence of chemistry on the adhesion at the interface of carbon /epoxy composites. Composites Science and Technology.48,97-102.https://doi.org/10.1016/0266-3538(93)90124-Y.
  25. Anand, H., Govardhan, G., Madan,K. & Vinay,L.(2023).Influence of surface treatment on mechanical properties of Roystorea-regia/banana fiber reinforced hybrid polyester composites. M Materials Today: Proceedings,24.
  26. Kriti, Sh., Devnani, L. (2022). Recent advancement in sisal fiber reinforced polymer Composites. Materials Today: Proceedings, 65,3893-3901. https://doi.org/10.1016/j.matpr.2022.07.185.
  27. Asrar, R., Rajiv, K., Prasanna, K. & Mural . (2023). Natural fiber reinforced polymer composites: A comprehensive review of Tribo-Mechanical properties. Tribology International, 189.108978. https://doi.org/10.1016/j.triboint.2023.108978.
  28. Tejas,R., Sandeep.G & Inderdeep,S.(2024). Microwave-assisted alkali treatment of sisal fiber for fabricating composite as non-structural building materials. Construction and Building Materials,411.134651. https://doi.org/10.1016/j.conbuildmat.2023.134651.
  29. Bismarck, A., Mohanty, A., Aranberri-Askargorta,I S., Czapla., Misra, M., Hinrichsen, G., & al .(2001). Surface characterization of natural fibres: surface properties and the water up-take behavior of modified sisal and coir fibres. Green Chem, 3,100-107.
  30. Bhanu,K.,Goriparthi, K.N.S.,Suman. & Nalluri,M R.(2012).Effect of fiber surface treatments on mechanical and abrasive wear performance of polylactide /jute composites. Composites Part A: Applied Science and Manufacturing,43,1800-1808. https://doi.org/10.1016/j.compositesa.2012.05.007.
  31. Arif Mahmud, Md., Nafis, A., Ferdausee, R A., Ayub, N Kh., Masudur, R.& Nasrin J. (2023). Coir fiber as thermal insulator and its performance as reinforcing material in biocomposite production. Heliyon, 9,e 15597.https://doi.org/10.1016/j.heliyon.2023.e15597
  32. Ezeh, M E., Agu, C. & Peter. (2022). Application of selected chemical modification agents on banana fibre for enhanced composite production. Cleaner Materials, 5,100131. https://doi.org/10.1016/j.clema.2022.100131.
  33. Mohit, H., Rangappa, S., Laongdaw T.,Suchart, S.,Abeer, N. & Abdullah, M.(2023).Banana /coir biofibers and carbon /innegra fabrics and BN/MWCNT nanoparticles reinforced UV resistant polester hybrid composites. Construction and Building Materials, 392.
  34. Subrata, D.,Angela, D.,La, R., Stergios, G., & Sotirios, G.(2023).Effect of accelerated weathering on the performance of natural fibre reinforced recyclable polymer composites and comparison with conventional composites. Composites PartC, 12.100378. https://doi.org/10.1016/j.jcomc.2023.100378.
  35. ] Karla, G.,Minna, H., & Karin, O.(2024). Mechanical recycling of epoxy composites reinforced with short-cut aramid fibers: Surface functionalization – The missing piece of the puzzle. Polymer, 295.126747. https://doi.org/10.1016/j.polymer.2024.126747.
  36. Weikang, L., Yitian, Z., Grant, E., Qiang, G., Tianzhen, Ch., Shuning, S., Michael, H., Darren, M., Lisbeth, G., Mingyuan, L., & Han, H. (2024). Mechanical properties and scratch recovery of nanoclay/polyester composite coatings for pre-coated metal (PCM) sheets. Composites Part B, 273,111217. https://doi.org/10.1016/j.compositesb.2024.111217.
  37. Chieruzzi, M., Miliozzi, A. & Kenny, J. (2013). Effects of the nanoparticles on the thermal expansion and nanoparticlesties of unsaturated polyester/clay nanocomposites. Composites: Part A,45.44-48 https://doi.org/10.1016/j.compositesa.2012.09.016.
  38. Suh, D- J., Lim, Y –T. & Park,O .(2000).The property and formation mechanism of unsaturated polyester–layered silicate nanocomposite depending on the fabrication methods . Polymer, 41.8557-8563. https://doi.org/10.1016/S0032-3861(00)00216-0.
  39. Morote-Martınez, V., Torregrosa-Coque, R. & MiguelMartı´n-Martı´nez, J. (2011). Addition of unmodified nanoclay to improve the performance of unsaturated polyester resin coating on natural stone. International Journal of Adhesion & Adhesives, 31,154-163. https://doi.org/10.1016/j.ijadhadh.2010.12.001.
  40. Gharbi, A., Hassen, R. B & Boufi, S.(2014).Composite materials from unsaturated polyester resin and olive nuts residue: the effect of silane treatment. Industrial Crops and Products, 62, 491-498. https://doi.org/10.1016/j.indcrop.2014.09.012.
  41. Dehas,W.(2017). Elaboration et caractérisation des composites à base de résines insaturées et de renforts d’origine minérales et organiques. thése de doctorat, université Ferhat abbassétif -1-Algérie .
  42. Guessoum, M., Nekkaa, S., Fenouillot-Rimlinger, F. & Haddaoui, N. (2012). Effects of kaolin surface treatments on the thermomechanical properties and on the degradation of polypropylene. International Journal of Polymer Science, 9.
  43. Majouli, A., Alami Younssi, S., Tahiri S., Albizane, A., Loukili, H. & Belhaj, M. (2011). Characterization of flat membrane support elaborated from local Moroccan perlite. Desalination, 277,.61-66. https://doi.org/10.1016/j.desal.2011.04.003.
  44. Dehas, W.,Guessoum, M.,Douibi, A., José Antonio, & J.,José Miguel Martin, M.(2016).Thermal, mechanical, and viscoelastic properties of recycled poly(ethylene terephthalate) fiber-reinforced unsaturated polyester composites. Polymer composite. DOI 10.1002/pc.24119.
  45. Pothan, L-A, Oommen, Z. & Thomas, S. (2003). Dynamic mechanical analysis of banana fiber reinforced polyester composites. Composites Science and Technology, 63,283-293. https://doi.org/10.1016/S0266-3538(02)00254-3.
  46. Aziz, P., Sharifah, H., Martin Ansell,J., Simon Clarke, & Simon Panteny, R.(2005).Modified polyester resins for natural fibre composites. Composites Science and Technology, 65.525-535.
  47. Martınez-Hernandez, A-L., Velasco-Santos, C., de-Icaza M. & Castano, V-M. (2007). Composites from chicken feathers quill and recycled polypropylene. Composites. Part B, 38, 405.
  48. Keusch,S. & Haessler R.(1999). Determination of mechanical properties of Al2O3, Mg (OH)2 and sic filled E-glass/epoxy composites. Composites. Part A, 30,997.
DOI: https://doi.org/10.2478/sspjce-2024-0002 | Journal eISSN: 1338-7278 | Journal ISSN: 1336-9024
Language: English
Published on: Dec 31, 2024
Published by: Technical University of Košice
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2024 Ouided Dehas, Yasmina Biskri, Mohammed Benzerara, Laidi Babouri, Acheref Cherifi, published by Technical University of Košice
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.