Perforation of polycarbonate sheet when subjected to impact test– A review
Polycarbonate (PC) material has a variety of applications which offers high resistance to impact loadings. Perforation performance of a projectile striking a PC target is the main character that determines the resistance capability of PC mate-rial. There are three methods to investigate the PC penet...
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iium-621332018-06-21T01:21:32Z http://irep.iium.edu.my/62133/ Perforation of polycarbonate sheet when subjected to impact test– A review Hasan, Muhamad Abid H. Shah, Qassim Shaik Dawood, Mohd. Sultan Ibrahim T Technology (General) Polycarbonate (PC) material has a variety of applications which offers high resistance to impact loadings. Perforation performance of a projectile striking a PC target is the main character that determines the resistance capability of PC mate-rial. There are three methods to investigate the PC penetration trajectories such as experimental test, numerical modeling and combination of experimental and simulation values. The ob-jective of this review paper is to discuss all the available re-search methods on the penetration of PC material, and record their potential and lack areas. Moreover investigations of mul-tilayered plates with different materials bonded together with PC plates to observe the impact effects of different projectiles shapes are been discussed. Furthermore the analysis of PC material behaviors during different stress-strain rates are also been presented in this paper. Research India Publications 2017 Article PeerReviewed application/pdf en http://irep.iium.edu.my/62133/1/paper2017.pdf Hasan, Muhamad Abid and H. Shah, Qassim and Shaik Dawood, Mohd. Sultan Ibrahim (2017) Perforation of polycarbonate sheet when subjected to impact test– A review. International Journal of Applied Engineering Research, 12 (24). pp. 14514-14522. ISSN 0973-4562 E-ISSN 0973-9769 https://www.ripublication.com/ijaer17/ijaerv12n24_74.pdf |
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T Technology (General) Hasan, Muhamad Abid H. Shah, Qassim Shaik Dawood, Mohd. Sultan Ibrahim Perforation of polycarbonate sheet when subjected to impact test– A review |
description |
Polycarbonate (PC) material has a variety of applications which offers high resistance to impact loadings. Perforation performance of a projectile striking a PC target is the main character that determines the resistance capability of PC mate-rial. There are three methods to investigate the PC penetration trajectories such as experimental test, numerical modeling and combination of experimental and simulation values. The ob-jective of this review paper is to discuss all the available re-search methods on the penetration of PC material, and record their potential and lack areas. Moreover investigations of mul-tilayered plates with different materials bonded together with PC plates to observe the impact effects of different projectiles shapes are been discussed. Furthermore the analysis of PC material behaviors during different stress-strain rates are also been presented in this paper. |
format |
Article |
author |
Hasan, Muhamad Abid H. Shah, Qassim Shaik Dawood, Mohd. Sultan Ibrahim |
author_facet |
Hasan, Muhamad Abid H. Shah, Qassim Shaik Dawood, Mohd. Sultan Ibrahim |
author_sort |
Hasan, Muhamad Abid |
title |
Perforation of polycarbonate sheet when subjected to impact test– A review |
title_short |
Perforation of polycarbonate sheet when subjected to impact test– A review |
title_full |
Perforation of polycarbonate sheet when subjected to impact test– A review |
title_fullStr |
Perforation of polycarbonate sheet when subjected to impact test– A review |
title_full_unstemmed |
Perforation of polycarbonate sheet when subjected to impact test– A review |
title_sort |
perforation of polycarbonate sheet when subjected to impact test– a review |
publisher |
Research India Publications |
publishDate |
2017 |
url |
http://irep.iium.edu.my/62133/ http://irep.iium.edu.my/62133/ http://irep.iium.edu.my/62133/1/paper2017.pdf |
first_indexed |
2023-09-18T21:28:05Z |
last_indexed |
2023-09-18T21:28:05Z |
_version_ |
1777412326849249280 |