Experimental Estimation of Energy Absorbed and Impact Strength of Kevlar/Basalt-Epoxy Interwoven Composite Laminate Added with Al2O3 Nanoparticles after High-Velocity Bullet Impact
The use of composites has increased exponentially in most industries, especially in the aerospace industry; the usage of composites has increased by almost 40% in the last 15 years. Aerospace components are often subject to high-impact loads, so it is important to use impact-resistant materials. Kev...
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Published in | Journal of engineering (Cairo, Egypt) Vol. 2023; pp. 1 - 11 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Cairo
Hindawi
10.02.2023
John Wiley & Sons, Inc Wiley |
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Abstract | The use of composites has increased exponentially in most industries, especially in the aerospace industry; the usage of composites has increased by almost 40% in the last 15 years. Aerospace components are often subject to high-impact loads, so it is important to use impact-resistant materials. Kevlar is known for its high-impact resistance and is commonly used as a fiber with various resins to achieve the desired properties. This paper mainly focuses on weaving Kevlar with basalt fiber in plain weave type by the traditional handloom weaving method. The epoxy resin, along with the harder, is then mixed with the aluminum oxide nanoparticles (Al2O3) in different percentages [1%-KB1, 3%-KB2, and 5%-KB3] to form the matrix. The laminate fabricated is then subjected to the high-velocity bullet impact of around 250 m/s. A steel hemispherical head projectile was used in the testing, and it was found to be penetrated through all the specimens making holes. The impact strength for all the different specimens was then estimated by calculating the bullet damage area and energy absorbed. The plate added with 3% Al2O3 nanoparticle was found to have improved impact strength when compared with the other two specimens. This plate can be used for bulletproof and other high-velocity impact applications. |
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AbstractList | The use of composites has increased exponentially in most industries, especially in the aerospace industry; the usage of composites has increased by almost 40% in the last 15 years. Aerospace components are often subject to high-impact loads, so it is important to use impact-resistant materials. Kevlar is known for its high-impact resistance and is commonly used as a fiber with various resins to achieve the desired properties. This paper mainly focuses on weaving Kevlar with basalt fiber in plain weave type by the traditional handloom weaving method. The epoxy resin, along with the harder, is then mixed with the aluminum oxide nanoparticles (Al2O3) in different percentages [1%-KB1, 3%-KB2, and 5%-KB3] to form the matrix. The laminate fabricated is then subjected to the high-velocity bullet impact of around 250 m/s. A steel hemispherical head projectile was used in the testing, and it was found to be penetrated through all the specimens making holes. The impact strength for all the different specimens was then estimated by calculating the bullet damage area and energy absorbed. The plate added with 3% Al2O3 nanoparticle was found to have improved impact strength when compared with the other two specimens. This plate can be used for bulletproof and other high-velocity impact applications. |
Author | Jensin Joshua, J. Bipin Sai Eswar, A. Venkatanarayanan, P. S. Snehit, Ch. Sai Singh, Dalbir Desta, Melaku |
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Cites_doi | 10.1177/0021998318765290 10.1016/j.compstruct.2004.05.006 10.5923/j.textile.20120104.02 10.1155/2022/5902616 10.1155/2018/4696143 10.1002/pc.25289 10.1002/pc.24766 10.1016/j.ijimpeng.2015.10.014 10.1016/j.msea.2018.03.092 10.1007/978-981-16-8899-7_2 10.1177/002199838802200103 10.3390/ma3063654 10.3144/expresspolymlett.2011.57 10.1007/s12221-019-8794-2 10.1016/j.compstruct.2017.02.039 10.1002/app.25789 10.1080/15376494.2021.1871688 10.1016/j.matdes.2016.05.075 10.22055/JACM.2018.26297.1318 10.1016/j.matpr.2020.05.390 10.1016/j.dt.2021.03.013 10.1007/s11665-017-2699-2 10.1016/j.dt.2020.02.013 10.1016/j.jpowsour.2009.10.091 10.1177/1528083721990902 10.1016/j.dt.2018.08.006 10.1016/j.memsci.2014.05.004 10.1016/j.matpr.2022.03.572 10.1016/j.progpolymsci.2015.07.004 10.1016/j.compscitech.2005.07.007 10.1016/j.compositesb.2011.01.030 10.1007/s12221-020-1130-z 10.1007/s12221-020-1418-z 10.1088/1757-899X/987/1/012003 10.1016/j.compositesa.2014.12.001 10.1088/1757-899X/912/5/052023 |
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Copyright | Copyright © 2023 J. Jensin Joshua et al. Copyright © 2023 J. Jensin Joshua et al. This is an open access article distributed under the Creative Commons Attribution License (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. https://creativecommons.org/licenses/by/4.0 |
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SubjectTerms | Aerospace industry Aircraft Alumina Aluminum oxide Aramid fiber reinforced plastics Basalt Carbon Composite materials Density Epoxy resins Heat resistance Hybridization Impact loads Impact resistance Impact strength Kevlar (trademark) Load Mechanical properties Nanocomposites Nanoparticles Polymers Projectiles Research methodology Tensile strength Velocity Weaving |
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Title | Experimental Estimation of Energy Absorbed and Impact Strength of Kevlar/Basalt-Epoxy Interwoven Composite Laminate Added with Al2O3 Nanoparticles after High-Velocity Bullet Impact |
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