Laboratory Study of Polypropylene-based Honeycomb Core for Sandwich Composites

Nowadays, a structure of sandwich composites can be reinforced by with hybrid materials such as polypropylene core. Due to its high strength properties, the polypropylene is widely used in various fields of science, technology and engineering including aerospace applications. This research studies t...

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Autores principales: Karunamit Saensuriwong, Thongchart Kerdphol, Veena Phunpeng
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Publicado: Industrial Engineering Department Faculty of Industrial Technology Universitas Ahmad Dahlan 2021
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spelling oai:doaj.org-article:cabcd0c8d09449de81cbe23519ceed342021-11-12T14:45:35ZLaboratory Study of Polypropylene-based Honeycomb Core for Sandwich Composites10.12928/si.v19i2.216591693-65902442-2630https://doaj.org/article/cabcd0c8d09449de81cbe23519ceed342021-10-01T00:00:00Zhttp://journal.uad.ac.id/index.php/Spektrum/article/view/21659https://doaj.org/toc/1693-6590https://doaj.org/toc/2442-2630Nowadays, a structure of sandwich composites can be reinforced by with hybrid materials such as polypropylene core. Due to its high strength properties, the polypropylene is widely used in various fields of science, technology and engineering including aerospace applications. This research studies the well-known hybrid composites of a carbon fiber (CF) and glass fiber (GF) to evaluate the mechanical properties under the presence of sandwich composites reinforced with such fibers. The different curing-pressure values of each material workpiece have been investigated to determine the curing pressure, resulting in the superior performances and properties. The specimens are moulded by the hand lay-up (i.e., cloth laying angle) of the carbon fiber. By changing direction, the specimens are determined the greatest load-bearing direction based on the bending test. According to the ASTM standard on the strength determination, it is found that when the curing pressure increases, the flexural stress increases. By placing the material orientation in the order (i.e., [CF90 / CF0 / GF0 / Core / GF0 / CF0 / GF0]) provides the highest strength. When the strain reaches its maximum value, the specimens actually fracture. The fracture propagation is generally followed the fiber orientation of the fabric. The experimental results are observed that the lower curing pressure the thicker of the work piece and the fiber volume fraction decreases. The obtained results show that changes in the curing pressure and laying angle significantly affect the mechanical properties of the sandwich compositesKarunamit SaensuriwongThongchart KerdpholVeena PhunpengIndustrial Engineering Department Faculty of Industrial Technology Universitas Ahmad Dahlanarticlecarbon fiber glass fiberpolypropylene (pp)sandwich compositesIndustrial engineering. Management engineeringT55.4-60.8IndustryHD2321-4730.9ENIDSpektrum Industri: Jurnal Ilmiah Pengetahuan dan Penerapan Teknik Industri, Vol 19, Iss 2, Pp 97-104 (2021)
institution DOAJ
collection DOAJ
language EN
ID
topic carbon fiber glass fiber
polypropylene (pp)
sandwich composites
Industrial engineering. Management engineering
T55.4-60.8
Industry
HD2321-4730.9
spellingShingle carbon fiber glass fiber
polypropylene (pp)
sandwich composites
Industrial engineering. Management engineering
T55.4-60.8
Industry
HD2321-4730.9
Karunamit Saensuriwong
Thongchart Kerdphol
Veena Phunpeng
Laboratory Study of Polypropylene-based Honeycomb Core for Sandwich Composites
description Nowadays, a structure of sandwich composites can be reinforced by with hybrid materials such as polypropylene core. Due to its high strength properties, the polypropylene is widely used in various fields of science, technology and engineering including aerospace applications. This research studies the well-known hybrid composites of a carbon fiber (CF) and glass fiber (GF) to evaluate the mechanical properties under the presence of sandwich composites reinforced with such fibers. The different curing-pressure values of each material workpiece have been investigated to determine the curing pressure, resulting in the superior performances and properties. The specimens are moulded by the hand lay-up (i.e., cloth laying angle) of the carbon fiber. By changing direction, the specimens are determined the greatest load-bearing direction based on the bending test. According to the ASTM standard on the strength determination, it is found that when the curing pressure increases, the flexural stress increases. By placing the material orientation in the order (i.e., [CF90 / CF0 / GF0 / Core / GF0 / CF0 / GF0]) provides the highest strength. When the strain reaches its maximum value, the specimens actually fracture. The fracture propagation is generally followed the fiber orientation of the fabric. The experimental results are observed that the lower curing pressure the thicker of the work piece and the fiber volume fraction decreases. The obtained results show that changes in the curing pressure and laying angle significantly affect the mechanical properties of the sandwich composites
format article
author Karunamit Saensuriwong
Thongchart Kerdphol
Veena Phunpeng
author_facet Karunamit Saensuriwong
Thongchart Kerdphol
Veena Phunpeng
author_sort Karunamit Saensuriwong
title Laboratory Study of Polypropylene-based Honeycomb Core for Sandwich Composites
title_short Laboratory Study of Polypropylene-based Honeycomb Core for Sandwich Composites
title_full Laboratory Study of Polypropylene-based Honeycomb Core for Sandwich Composites
title_fullStr Laboratory Study of Polypropylene-based Honeycomb Core for Sandwich Composites
title_full_unstemmed Laboratory Study of Polypropylene-based Honeycomb Core for Sandwich Composites
title_sort laboratory study of polypropylene-based honeycomb core for sandwich composites
publisher Industrial Engineering Department Faculty of Industrial Technology Universitas Ahmad Dahlan
publishDate 2021
url https://doaj.org/article/cabcd0c8d09449de81cbe23519ceed34
work_keys_str_mv AT karunamitsaensuriwong laboratorystudyofpolypropylenebasedhoneycombcoreforsandwichcomposites
AT thongchartkerdphol laboratorystudyofpolypropylenebasedhoneycombcoreforsandwichcomposites
AT veenaphunpeng laboratorystudyofpolypropylenebasedhoneycombcoreforsandwichcomposites
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