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The impact‐induced deformation characteristics of polycarbonate panels.

Authors :
Mullaoglu, Fehmi
Usta, Fatih
Turkmen, Halit Suleyman
Source :
Polymer Engineering & Science; Jun2024, Vol. 64 Issue 6, p2579-2593, 15p
Publication Year :
2024

Abstract

In this study, the investigation of damage caused by a spherical steel projectile on the polycarbonate (PC) panels has been undertaken both numerically and experimentally. The material properties are obtained from both static and dynamic tests. High‐velocity impact experiments are performed using a pressure‐based projectile launching system. The effect of panel curvatures and impact locations on the deformation are investigated experimentally. The impact locations are selected as both at the plate center and near the edge of the plate. A validation study is performed by analyzing the impact response of a PC plate as previously presented in the literature and subsequently comparing it with the results obtained. An analysis of the impact behavior of PC panels is carried out through numerical simulations using finite element program (LS‐DYNA). The effect of boundary conditions on the impact response is also investigated numerically. Plastic strains, von Mises stresses, dent depth, and energy absorption are obtained. It is indicated by the results that the deformation behavior of PC panels exhibits a strain rate dependence. Additionally, the deformation behavior is influenced by panel curvatures and boundary conditions, emphasizing the necessity to consider these factors in the design of structures, such as canopies made of PC panels. Highlights: Provides a comprehensive understanding of polycarbonate behavior.Emphasizes the influence of impact locations and panel curvatures.Dent depth and stress rise with panel curvature, crucial for design considerations.Emphasizes the significance of strain rate and boundary condition in design. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00323888
Volume :
64
Issue :
6
Database :
Complementary Index
Journal :
Polymer Engineering & Science
Publication Type :
Academic Journal
Accession number :
177613113
Full Text :
https://doi.org/10.1002/pen.26711