A REVIEW OF EPOXY-NANOCOMPOSITE PROPERTIES

Epoxy resins have been the subject of many studies as a consequence of their extensive usage in recent years. The brittleness and low resistance to propagation and crack initiation of epoxy resins are well-recognized characteristics. Therefore, in recent years, experts have concentrated on increasi...

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Main Authors: Samer Saad Abbas, Raouf Mahmood Raouf, Harith Al-Moameri
Format: Article
Language:Arabic
Published: Mustansiriyah University/College of Engineering 2024-01-01
Series:Journal of Engineering and Sustainable Development
Subjects:
Online Access:https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1601
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author Samer Saad Abbas
Raouf Mahmood Raouf
Harith Al-Moameri
author_facet Samer Saad Abbas
Raouf Mahmood Raouf
Harith Al-Moameri
author_sort Samer Saad Abbas
collection DOAJ
description Epoxy resins have been the subject of many studies as a consequence of their extensive usage in recent years. The brittleness and low resistance to propagation and crack initiation of epoxy resins are well-recognized characteristics. Therefore, in recent years, experts have concentrated on increasing epoxy resin's fracture resistance. Adding inorganic nanoparticles like titanium dioxide (TiO2) TiO2, silica (SiO2), carbon black, alumina (Al2O3), and others to the polymer matrix is one of the most investigated techniques in polymer science. Despite having a modest nanofiller content, the resulting nanocomposites may enhance their thermal, mechanical, rheological, electrical, and optical characteristics. These nanocomposites are an alternative to metal-based materials. They have great promise as multifunctional materials in a range of applications, including optoelectronic devices, semiconductor devices, civil engineering, automotive, and aerospace. To show potential future directions and market prospects for polymer nanocomposites reinforced with TiO2 nanoparticles, current results, and trends have been examined and highlighted. In addition, the current review surveys many studies that highlighted using nanoparticles as reinforcement, their different structure, the interface, and the geometry and structure of the resulting nano-materials reinforced resin.
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spelling doaj.art-323ae411bd0a484caf0cb99989f48a5f2024-01-01T05:23:55ZaraMustansiriyah University/College of EngineeringJournal of Engineering and Sustainable Development2520-09172520-09252024-01-0128110.31272/jeasd.28.1.6A REVIEW OF EPOXY-NANOCOMPOSITE PROPERTIESSamer Saad Abbas 0Raouf Mahmood Raouf 1Harith Al-Moameri2Material Engineering Department, College of Engineering, Mustansiriyah University, Baghdad, Iraq Material Engineering Department, College of Engineering, Mustansiriyah University, Baghdad, Iraq Material Engineering Department, College of Engineering, Mustansiriyah University, Baghdad, Iraq Epoxy resins have been the subject of many studies as a consequence of their extensive usage in recent years. The brittleness and low resistance to propagation and crack initiation of epoxy resins are well-recognized characteristics. Therefore, in recent years, experts have concentrated on increasing epoxy resin's fracture resistance. Adding inorganic nanoparticles like titanium dioxide (TiO2) TiO2, silica (SiO2), carbon black, alumina (Al2O3), and others to the polymer matrix is one of the most investigated techniques in polymer science. Despite having a modest nanofiller content, the resulting nanocomposites may enhance their thermal, mechanical, rheological, electrical, and optical characteristics. These nanocomposites are an alternative to metal-based materials. They have great promise as multifunctional materials in a range of applications, including optoelectronic devices, semiconductor devices, civil engineering, automotive, and aerospace. To show potential future directions and market prospects for polymer nanocomposites reinforced with TiO2 nanoparticles, current results, and trends have been examined and highlighted. In addition, the current review surveys many studies that highlighted using nanoparticles as reinforcement, their different structure, the interface, and the geometry and structure of the resulting nano-materials reinforced resin. https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1601Carbon-Nanofillers NanofillerPolymerResinmetal oxide
spellingShingle Samer Saad Abbas
Raouf Mahmood Raouf
Harith Al-Moameri
A REVIEW OF EPOXY-NANOCOMPOSITE PROPERTIES
Journal of Engineering and Sustainable Development
Carbon-Nanofillers
Nanofiller
Polymer
Resin
metal oxide
title A REVIEW OF EPOXY-NANOCOMPOSITE PROPERTIES
title_full A REVIEW OF EPOXY-NANOCOMPOSITE PROPERTIES
title_fullStr A REVIEW OF EPOXY-NANOCOMPOSITE PROPERTIES
title_full_unstemmed A REVIEW OF EPOXY-NANOCOMPOSITE PROPERTIES
title_short A REVIEW OF EPOXY-NANOCOMPOSITE PROPERTIES
title_sort review of epoxy nanocomposite properties
topic Carbon-Nanofillers
Nanofiller
Polymer
Resin
metal oxide
url https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1601
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