UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408

There is no direct measurement of tensile strength have been determined for Malaysian tropical hardwood. The usual approach is to consider the tensile strength of timber as 60% of the small clear specimen's bending strength values, as specified in MS 544: Part 2:2001. However, this method prove...

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Published in:JURNAL TEKNOLOGI-SCIENCES & ENGINEERING
Main Authors: Za'ba, Nurul Izzatul Lydia; Ahmad, Zakiah; Hussin, Tengku Anita Raja; Azmi, Anis; Bhkari, Norshariza Mohamad; Chen, Lum Wei
Format: Article
Language:English
Published: PENERBIT UTM PRESS 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001252697700012
author Za'ba
Nurul Izzatul Lydia; Ahmad
Zakiah; Hussin
Tengku Anita Raja; Azmi
Anis; Bhkari
Norshariza Mohamad; Chen
Lum Wei
spellingShingle Za'ba
Nurul Izzatul Lydia; Ahmad
Zakiah; Hussin
Tengku Anita Raja; Azmi
Anis; Bhkari
Norshariza Mohamad; Chen
Lum Wei
UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408
Engineering
author_facet Za'ba
Nurul Izzatul Lydia; Ahmad
Zakiah; Hussin
Tengku Anita Raja; Azmi
Anis; Bhkari
Norshariza Mohamad; Chen
Lum Wei
author_sort Za'ba
spelling Za'ba, Nurul Izzatul Lydia; Ahmad, Zakiah; Hussin, Tengku Anita Raja; Azmi, Anis; Bhkari, Norshariza Mohamad; Chen, Lum Wei
UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408
JURNAL TEKNOLOGI-SCIENCES & ENGINEERING
English
Article
There is no direct measurement of tensile strength have been determined for Malaysian tropical hardwood. The usual approach is to consider the tensile strength of timber as 60% of the small clear specimen's bending strength values, as specified in MS 544: Part 2:2001. However, this method proves inadequate for engineering applications as it fails to provide precise and accurate values. Therefore, in this study, nine (9) species of Malaysian tropical hardwoods were selected namely Balau ( Shorea spp. ), Kempas ( Koompassia Malaccensis ), Kelat ( Syzygium spp. ) Kapur ( Dryobalanops spp. ), Resak ( Vatica spp. ), Keruing ( Dipterocarpus spp. ), Mengkulang ( Heritiera spp .), Light Red Meranti ( Shorea spp. ) and Geronggang ( Cratoxylum spp. ). The specimens were tested in structural sizes and subjected to tensile strength testing in accordance with BS EN 408:2010. Subsequently, the results were transformed into grade stresses following the guidelines of MS 544: Part 3. The lowest mean tensile strength (42.23N/mm 2 ) and Modulus of Elasticity (11972N/mm 2 ) was obtained by the lowest density timber Light Red Meranti while the highest mean tensile strength (84.46N/mm 2 ) and highest Modulus of Elasticity (21329N/mm 2 ) was obtained by the high density Kempas species although not excelled by the highest density of the investigated species. The evaluation also indicated that the grade stresses of the structural specimens in this study surpass those published in MS 544: Part 3.
PENERBIT UTM PRESS
0127-9696
2180-3722
2024
86
4
10.11113/jurnalteknologi.v86.20820
Engineering
gold
WOS:001252697700012
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001252697700012
title UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408
title_short UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408
title_full UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408
title_fullStr UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408
title_full_unstemmed UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408
title_sort UNLEASHING THE POTENTIAL: INVESTIGATING TENSILE STRENGTH GRADE STRESSES IN STRUCTURAL-SIZED MALAYSIAN TROPICAL TIMBER IN ACCORDANCE TO BS EN 408
container_title JURNAL TEKNOLOGI-SCIENCES & ENGINEERING
language English
format Article
description There is no direct measurement of tensile strength have been determined for Malaysian tropical hardwood. The usual approach is to consider the tensile strength of timber as 60% of the small clear specimen's bending strength values, as specified in MS 544: Part 2:2001. However, this method proves inadequate for engineering applications as it fails to provide precise and accurate values. Therefore, in this study, nine (9) species of Malaysian tropical hardwoods were selected namely Balau ( Shorea spp. ), Kempas ( Koompassia Malaccensis ), Kelat ( Syzygium spp. ) Kapur ( Dryobalanops spp. ), Resak ( Vatica spp. ), Keruing ( Dipterocarpus spp. ), Mengkulang ( Heritiera spp .), Light Red Meranti ( Shorea spp. ) and Geronggang ( Cratoxylum spp. ). The specimens were tested in structural sizes and subjected to tensile strength testing in accordance with BS EN 408:2010. Subsequently, the results were transformed into grade stresses following the guidelines of MS 544: Part 3. The lowest mean tensile strength (42.23N/mm 2 ) and Modulus of Elasticity (11972N/mm 2 ) was obtained by the lowest density timber Light Red Meranti while the highest mean tensile strength (84.46N/mm 2 ) and highest Modulus of Elasticity (21329N/mm 2 ) was obtained by the high density Kempas species although not excelled by the highest density of the investigated species. The evaluation also indicated that the grade stresses of the structural specimens in this study surpass those published in MS 544: Part 3.
publisher PENERBIT UTM PRESS
issn 0127-9696
2180-3722
publishDate 2024
container_volume 86
container_issue 4
doi_str_mv 10.11113/jurnalteknologi.v86.20820
topic Engineering
topic_facet Engineering
accesstype gold
id WOS:001252697700012
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001252697700012
record_format wos
collection Web of Science (WoS)
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