Investigation of the Ballistic Performance of GFRP Laminate under 150 m/s High-Velocity Impact: Simulation and Experiment

The ballistic resistance of GFRP laminates subjected to high-velocity impact was studied. Based on the damage situation of GFRP laminate observed from the single-stage gas gun testing, the three-dimensional (3D) model combining strain rate effect and Hashin failure criterion was established, and the...

Full description

Bibliographic Details
Main Authors: Fengyan Chen, Yong Peng, Xuanzhen Chen, Kui Wang, Zhixiang Liu, Chao Chen
Format: Article
Language:English
Published: MDPI AG 2021-02-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/13/4/604
id doaj-64cf54f39e1e410eb7bc87e4d32656a9
record_format Article
spelling doaj-64cf54f39e1e410eb7bc87e4d32656a92021-02-18T00:04:50ZengMDPI AGPolymers2073-43602021-02-011360460410.3390/polym13040604Investigation of the Ballistic Performance of GFRP Laminate under 150 m/s High-Velocity Impact: Simulation and ExperimentFengyan Chen0Yong Peng1Xuanzhen Chen2Kui Wang3Zhixiang Liu4Chao Chen5Key Laboratory of Traffic Safety on Track (Central South University) Ministry of Education, School of Traffic & Transportation Engineering, Central South University, Changsha, 410075, ChinaKey Laboratory of Traffic Safety on Track (Central South University) Ministry of Education, School of Traffic & Transportation Engineering, Central South University, Changsha, 410075, ChinaKey Laboratory of Traffic Safety on Track (Central South University) Ministry of Education, School of Traffic & Transportation Engineering, Central South University, Changsha, 410075, ChinaKey Laboratory of Traffic Safety on Track (Central South University) Ministry of Education, School of Traffic & Transportation Engineering, Central South University, Changsha, 410075, ChinaKey Laboratory of Traffic Safety on Track (Central South University) Ministry of Education, School of Traffic & Transportation Engineering, Central South University, Changsha, 410075, ChinaHunan Industry Polytechnic, Changsha 410208, ChinaThe ballistic resistance of GFRP laminates subjected to high-velocity impact was studied. Based on the damage situation of GFRP laminate observed from the single-stage gas gun testing, the three-dimensional (3D) model combining strain rate effect and Hashin failure criterion was established, and the result presented good agreement between the simulation and experiment. Three factors, including layer angle, stacking sequence and proportion of different layer angles, were taken into consideration in the models. An orthogonal test method was used for the analysis, which can reduce the number of simulations effectively without sacrificing the accuracy of the result. The result indicated a correlation between the ballistic resistance and layouts of GFRP laminates, on which the stacking sequence contributed stronger influence. What was more, the laminate with layer angles 0°/90° and ± 45° presented greater ballistic resistance than the other angle pairs, and adopting an equal proportion of different layer angles is helpful for GFRP laminates to resist impact as well.https://www.mdpi.com/2073-4360/13/4/604GFRP laminatehigh-velocity impactfinite element analysisorthogonal test
collection DOAJ
language English
format Article
sources DOAJ
author Fengyan Chen
Yong Peng
Xuanzhen Chen
Kui Wang
Zhixiang Liu
Chao Chen
spellingShingle Fengyan Chen
Yong Peng
Xuanzhen Chen
Kui Wang
Zhixiang Liu
Chao Chen
Investigation of the Ballistic Performance of GFRP Laminate under 150 m/s High-Velocity Impact: Simulation and Experiment
Polymers
GFRP laminate
high-velocity impact
finite element analysis
orthogonal test
author_facet Fengyan Chen
Yong Peng
Xuanzhen Chen
Kui Wang
Zhixiang Liu
Chao Chen
author_sort Fengyan Chen
title Investigation of the Ballistic Performance of GFRP Laminate under 150 m/s High-Velocity Impact: Simulation and Experiment
title_short Investigation of the Ballistic Performance of GFRP Laminate under 150 m/s High-Velocity Impact: Simulation and Experiment
title_full Investigation of the Ballistic Performance of GFRP Laminate under 150 m/s High-Velocity Impact: Simulation and Experiment
title_fullStr Investigation of the Ballistic Performance of GFRP Laminate under 150 m/s High-Velocity Impact: Simulation and Experiment
title_full_unstemmed Investigation of the Ballistic Performance of GFRP Laminate under 150 m/s High-Velocity Impact: Simulation and Experiment
title_sort investigation of the ballistic performance of gfrp laminate under 150 m/s high-velocity impact: simulation and experiment
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2021-02-01
description The ballistic resistance of GFRP laminates subjected to high-velocity impact was studied. Based on the damage situation of GFRP laminate observed from the single-stage gas gun testing, the three-dimensional (3D) model combining strain rate effect and Hashin failure criterion was established, and the result presented good agreement between the simulation and experiment. Three factors, including layer angle, stacking sequence and proportion of different layer angles, were taken into consideration in the models. An orthogonal test method was used for the analysis, which can reduce the number of simulations effectively without sacrificing the accuracy of the result. The result indicated a correlation between the ballistic resistance and layouts of GFRP laminates, on which the stacking sequence contributed stronger influence. What was more, the laminate with layer angles 0°/90° and ± 45° presented greater ballistic resistance than the other angle pairs, and adopting an equal proportion of different layer angles is helpful for GFRP laminates to resist impact as well.
topic GFRP laminate
high-velocity impact
finite element analysis
orthogonal test
url https://www.mdpi.com/2073-4360/13/4/604
work_keys_str_mv AT fengyanchen investigationoftheballisticperformanceofgfrplaminateunder150mshighvelocityimpactsimulationandexperiment
AT yongpeng investigationoftheballisticperformanceofgfrplaminateunder150mshighvelocityimpactsimulationandexperiment
AT xuanzhenchen investigationoftheballisticperformanceofgfrplaminateunder150mshighvelocityimpactsimulationandexperiment
AT kuiwang investigationoftheballisticperformanceofgfrplaminateunder150mshighvelocityimpactsimulationandexperiment
AT zhixiangliu investigationoftheballisticperformanceofgfrplaminateunder150mshighvelocityimpactsimulationandexperiment
AT chaochen investigationoftheballisticperformanceofgfrplaminateunder150mshighvelocityimpactsimulationandexperiment
_version_ 1724263900040396800