Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures
Hexagonal honeycomb cores have found extensive applications particularly in the aerospace and naval industries. In view of the recent interest in novel strong and lightweight core architectures, square honeycomb cores were manufactured and tested under uniform lateral compression. A slotting techniq...
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my.ump.umpir.363932023-02-20T04:57:20Z http://umpir.ump.edu.my/id/eprint/36393/ Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures Rejab, Mohd Ruzaimi Mat TJ Mechanical engineering and machinery Hexagonal honeycomb cores have found extensive applications particularly in the aerospace and naval industries. In view of the recent interest in novel strong and lightweight core architectures, square honeycomb cores were manufactured and tested under uniform lateral compression. A slotting technique has been used to manufacture the square honeycomb self-reinforced polypropylene (SRPP). The compressive responses of the sandwich structures were measured as a function of relative density. In this research, particular focus is placed on examining the compression strength and energy absorption characteristics of the square honeycombs with different types of model. Comparisons in terms of specific strength and specific energy absorption have shown that the Sandwich Star core offers excellent properties in term of compressive strength. The SRPP core could potentially be used as an alternative lightweight core material for recyclable sandwich structures. 2017-04 Research Report NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/36393/1/Periodic%20two-dimensional%20self%20reinforced%20polypropylene%20honeycomb%20core%20for%20sandwich%20structures.wm.pdf Rejab, Mohd Ruzaimi Mat (2017) Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures. , [Research Report: Research Report] (Unpublished) |
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TJ Mechanical engineering and machinery Rejab, Mohd Ruzaimi Mat Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures |
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Hexagonal honeycomb cores have found extensive applications particularly in the aerospace and naval industries. In view of the recent interest in novel strong and lightweight core architectures, square honeycomb cores were manufactured and tested under uniform lateral compression. A slotting technique has been used to manufacture the square honeycomb self-reinforced polypropylene (SRPP). The compressive responses of the sandwich structures were measured as a function of relative density. In this research, particular focus is placed on examining the compression strength and energy absorption characteristics of the square honeycombs with different types of model. Comparisons in terms of specific strength and specific energy absorption have shown that the Sandwich Star core offers excellent properties in term of compressive strength. The SRPP core could potentially be used as an alternative lightweight core material for recyclable sandwich structures. |
format |
Research Report |
author |
Rejab, Mohd Ruzaimi Mat |
author_facet |
Rejab, Mohd Ruzaimi Mat |
author_sort |
Rejab, Mohd Ruzaimi Mat |
title |
Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures |
title_short |
Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures |
title_full |
Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures |
title_fullStr |
Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures |
title_full_unstemmed |
Periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures |
title_sort |
periodic two-dimensional self reinforced polypropylene honeycomb core for sandwich structures |
publishDate |
2017 |
url |
http://umpir.ump.edu.my/id/eprint/36393/1/Periodic%20two-dimensional%20self%20reinforced%20polypropylene%20honeycomb%20core%20for%20sandwich%20structures.wm.pdf http://umpir.ump.edu.my/id/eprint/36393/ |
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1758578247379976192 |
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13.160551 |