Properties of wood polymer composite made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali
Wood Polymer Composite is a product to increase the interfacial bonding strength between fibers and polymer. The aims of the study are to determine the mechanical properties of Kenaf (Hibicius cannabinus) and to evaluate the best quality strength based from mesh and portion that use as Wood Polym...
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Faculty Of Applied Sciences
2014
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my.uitm.ir.228332019-01-24T02:46:29Z http://ir.uitm.edu.my/id/eprint/22833/ Properties of wood polymer composite made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali Razali, Muhamad Zulhilmi Materials of engineering and construction Reinforced concrete Wood Polymer Composite is a product to increase the interfacial bonding strength between fibers and polymer. The aims of the study are to determine the mechanical properties of Kenaf (Hibicius cannabinus) and to evaluate the best quality strength based from mesh and portion that use as Wood Polymer Composite. Sizes of specimens were 25 mm x 150 mm x 5.77 mm for bending test and 10 mm x 150 mm x 1.77 mm for tensile test. Kenaf fiber specimens were tested for bending and tensile. The results were analyzed based on standard of EN:310:1993 for bending testing and standard EN:319:1993 for tensile testing. ANDVA showed that no significant different in Tensile but there are significant different in Bending. Mesh 60 shows better result than Mesh 40 and core particles portion indicates better strength in both bending and tensile. Kenaf core particles have better potential material for furniture and building component especially tabletop and ceiling. Faculty Of Applied Sciences 2014 Student Project NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/22833/1/PPb_MUHAMAD%20ZULHILMI%20RAZALI%20AS%20C%2014_5.PDF Razali, Muhamad Zulhilmi (2014) Properties of wood polymer composite made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali. [Student Project] (Unpublished) |
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Materials of engineering and construction Reinforced concrete Razali, Muhamad Zulhilmi Properties of wood polymer composite made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali |
description |
Wood Polymer Composite is a product to increase the interfacial bonding strength
between fibers and polymer. The aims of the study are to determine the
mechanical properties of Kenaf (Hibicius cannabinus) and to evaluate the best
quality strength based from mesh and portion that use as Wood Polymer
Composite. Sizes of specimens were 25 mm x 150 mm x 5.77 mm for bending
test and 10 mm x 150 mm x 1.77 mm for tensile test. Kenaf fiber specimens were
tested for bending and tensile. The results were analyzed based on standard of
EN:310:1993 for bending testing and standard EN:319:1993 for tensile testing.
ANDVA showed that no significant different in Tensile but there are significant
different in Bending. Mesh 60 shows better result than Mesh 40 and core particles
portion indicates better strength in both bending and tensile. Kenaf core particles
have better potential material for furniture and building component especially
tabletop and ceiling. |
format |
Student Project |
author |
Razali, Muhamad Zulhilmi |
author_facet |
Razali, Muhamad Zulhilmi |
author_sort |
Razali, Muhamad Zulhilmi |
title |
Properties of wood polymer composite
made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali |
title_short |
Properties of wood polymer composite
made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali |
title_full |
Properties of wood polymer composite
made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali |
title_fullStr |
Properties of wood polymer composite
made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali |
title_full_unstemmed |
Properties of wood polymer composite
made from Kenaf (hibicus cannabinus) / Muhamad Zulhilmi Razali |
title_sort |
properties of wood polymer composite
made from kenaf (hibicus cannabinus) / muhamad zulhilmi razali |
publisher |
Faculty Of Applied Sciences |
publishDate |
2014 |
url |
http://ir.uitm.edu.my/id/eprint/22833/1/PPb_MUHAMAD%20ZULHILMI%20RAZALI%20AS%20C%2014_5.PDF http://ir.uitm.edu.my/id/eprint/22833/ |
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1685649657168920576 |
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13.211869 |