The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures

The study aims to investigate the effect of different infill pattern structures on the energy-absorbing characteristics of single filament wound carbon fiber-reinforced plastic tubes, single polylactic acid and hybrid carbon fiber-reinforced plastic/ polylactic acid tubes under quasi-static axial co...

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Main Authors: Quanjin, Ma, Idris, Mat Sahat, M. R. M., Rejab, Shukur, Abu Hassan, Zhang, Bo, Merzuki, M.N.M.
Format: Article
Language:English
Published: SAGE Publications 2019
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Online Access:http://umpir.ump.edu.my/id/eprint/26344/1/The%20energy-absorbing%20characteristics%20of%20filament%20wound%20hybrid%20.pdf
http://umpir.ump.edu.my/id/eprint/26344/
https://doi.org/10.1177/0731684419868018
https://doi.org/10.1177/0731684419868018
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spelling my.ump.umpir.263442019-12-09T02:55:29Z http://umpir.ump.edu.my/id/eprint/26344/ The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures Quanjin, Ma Idris, Mat Sahat M. R. M., Rejab Shukur, Abu Hassan Zhang, Bo Merzuki, M.N.M. TA Engineering (General). Civil engineering (General) TJ Mechanical engineering and machinery The study aims to investigate the effect of different infill pattern structures on the energy-absorbing characteristics of single filament wound carbon fiber-reinforced plastic tubes, single polylactic acid and hybrid carbon fiber-reinforced plastic/ polylactic acid tubes under quasi-static axial compression condition, which were fabricated using filament winding and additive manufacturing techniques. Five infill pattern structures of single polylactic acid tubes and hybrid tubes were studied and compared on their energy-absorbing characteristics, which referred to normal, triangle, square, hexagonal and tetrahedral patterns. It concluded that the effect of the infill pattern structure had a significant influence on energy-absorbing characteristics of single polylactic acid and hybrid carbon fiber-reinforced plastic/polylactic acid tubes. For pure polylactic acid tubes, the triangle infill pattern tube represented the highest values of energy absorption (EA) of 0.75 kJ, specific energy absorption (SEA) of 28.50 J/g, compressive strength and modulus of 69.72 MPa and 1.40 GPa, yield strength of 27.80 MPa, peak crushing force (Fpeak) of 23.13 kN and mean crushing force (Fmean) of 18.82 kN. For the hybrid carbon fiber-reinforced plastic/polylactic acid tube, tetrahedral infill pattern tube showed the highest values of EA with 0.99 kJ, SEA with 29.66 J/g, Fpeak with 22.68 MPa and yield strength with 29.91 MPa. Energy absorption interaction (EAinteraction) and interaction ratio (φe) of all specimens were evaluated, which showed that the tetrahedral infill pattern tube recorded the highest of all hybrid tubes with 259.92 J and 35.72 %. The result revealed that the tetrahedral pattern displayed better crashworthiness in terms of crushing force efficiency (CFE), EA and SEA in the hybrid structure, which had greater potential to apply as energy absorbers. Moreover, triangle and square infill patterns of hybrid tubes provided the negative interaction effect results, which conducted lower energy-absorbing characteristics compared to individual tubes, respectively. SAGE Publications 2019-08-03 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/26344/1/The%20energy-absorbing%20characteristics%20of%20filament%20wound%20hybrid%20.pdf Quanjin, Ma and Idris, Mat Sahat and M. R. M., Rejab and Shukur, Abu Hassan and Zhang, Bo and Merzuki, M.N.M. (2019) The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures. Journal of Reinforced Plastics and Composites, 38 (23-24). pp. 1067-1088. ISSN 0731-6844 (print); 1530-7964 (online) https://doi.org/10.1177/0731684419868018 https://doi.org/10.1177/0731684419868018
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
spellingShingle TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
Quanjin, Ma
Idris, Mat Sahat
M. R. M., Rejab
Shukur, Abu Hassan
Zhang, Bo
Merzuki, M.N.M.
The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures
description The study aims to investigate the effect of different infill pattern structures on the energy-absorbing characteristics of single filament wound carbon fiber-reinforced plastic tubes, single polylactic acid and hybrid carbon fiber-reinforced plastic/ polylactic acid tubes under quasi-static axial compression condition, which were fabricated using filament winding and additive manufacturing techniques. Five infill pattern structures of single polylactic acid tubes and hybrid tubes were studied and compared on their energy-absorbing characteristics, which referred to normal, triangle, square, hexagonal and tetrahedral patterns. It concluded that the effect of the infill pattern structure had a significant influence on energy-absorbing characteristics of single polylactic acid and hybrid carbon fiber-reinforced plastic/polylactic acid tubes. For pure polylactic acid tubes, the triangle infill pattern tube represented the highest values of energy absorption (EA) of 0.75 kJ, specific energy absorption (SEA) of 28.50 J/g, compressive strength and modulus of 69.72 MPa and 1.40 GPa, yield strength of 27.80 MPa, peak crushing force (Fpeak) of 23.13 kN and mean crushing force (Fmean) of 18.82 kN. For the hybrid carbon fiber-reinforced plastic/polylactic acid tube, tetrahedral infill pattern tube showed the highest values of EA with 0.99 kJ, SEA with 29.66 J/g, Fpeak with 22.68 MPa and yield strength with 29.91 MPa. Energy absorption interaction (EAinteraction) and interaction ratio (φe) of all specimens were evaluated, which showed that the tetrahedral infill pattern tube recorded the highest of all hybrid tubes with 259.92 J and 35.72 %. The result revealed that the tetrahedral pattern displayed better crashworthiness in terms of crushing force efficiency (CFE), EA and SEA in the hybrid structure, which had greater potential to apply as energy absorbers. Moreover, triangle and square infill patterns of hybrid tubes provided the negative interaction effect results, which conducted lower energy-absorbing characteristics compared to individual tubes, respectively.
format Article
author Quanjin, Ma
Idris, Mat Sahat
M. R. M., Rejab
Shukur, Abu Hassan
Zhang, Bo
Merzuki, M.N.M.
author_facet Quanjin, Ma
Idris, Mat Sahat
M. R. M., Rejab
Shukur, Abu Hassan
Zhang, Bo
Merzuki, M.N.M.
author_sort Quanjin, Ma
title The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures
title_short The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures
title_full The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures
title_fullStr The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures
title_full_unstemmed The energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures
title_sort energy-absorbing characteristics of filament wound hybrid carbon fiber-reinforced plastic/polylactic acid tubes with different infill pattern structures
publisher SAGE Publications
publishDate 2019
url http://umpir.ump.edu.my/id/eprint/26344/1/The%20energy-absorbing%20characteristics%20of%20filament%20wound%20hybrid%20.pdf
http://umpir.ump.edu.my/id/eprint/26344/
https://doi.org/10.1177/0731684419868018
https://doi.org/10.1177/0731684419868018
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score 13.211869