Notable mechanical behavior of thin monoholar rubber flat slab under tension loading

There have been strong interests in achieving unconventional mechanical properties of materials utilized for various applications in recent years. Apart from the well known composite material approach, an innovative approach of employing cellular structure or repeated geometric pattern has been of g...

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Main Authors: Kulyuth Boonseng, Chatchai Waiyapattanakorn, Prayoon Surin
Format: Article
Language:English
Published: Khon Kaen University 2021-01-01
Series:Engineering and Applied Science Research
Subjects:
Online Access:https://ph01.tci-thaijo.org/index.php/easr/article/download/239966/165843/
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spelling doaj-c68f599834b34156aa2b66f9bebc171e2021-01-28T10:03:32ZengKhon Kaen UniversityEngineering and Applied Science Research2539-61612539-62182021-01-014811710.14456/easr.2021.1Notable mechanical behavior of thin monoholar rubber flat slab under tension loadingKulyuth BoonsengChatchai WaiyapattanakornPrayoon SurinThere have been strong interests in achieving unconventional mechanical properties of materials utilized for various applications in recent years. Apart from the well known composite material approach, an innovative approach of employing cellular structure or repeated geometric pattern has been of great interest. The simple example that has been proved useful and promising is the monoholar pattern. Experimental investigations of monoholar rubber flat slab have demonstrated a number of unusual mechanical behaviors under compression loading unable to achieve before. It is thus enticing to find out if the same is possible under tension loading. This research therefore embarks on applying tension load on a thin monoholar rubber flat slab, 1/10 as thick as the flat slab tested under compression loading. Results of the experiments clearly demonstrate similar behaviors as observed in the case of compression loading. However stress plateau is not observable in the stress-strain curve obtained under tension loading. This is because the test specimen reaches rupture point after undergoing a certain level of stress. Ligament thickness has been observed to effect noticeable drop in stress level before gradually increasing towards stress level that causes full blown rupture. This may lead to some promising applications related to tension loading.https://ph01.tci-thaijo.org/index.php/easr/article/download/239966/165843/mechanical behaviorsthin monoholarsolid materialtension loading
collection DOAJ
language English
format Article
sources DOAJ
author Kulyuth Boonseng
Chatchai Waiyapattanakorn
Prayoon Surin
spellingShingle Kulyuth Boonseng
Chatchai Waiyapattanakorn
Prayoon Surin
Notable mechanical behavior of thin monoholar rubber flat slab under tension loading
Engineering and Applied Science Research
mechanical behaviors
thin monoholar
solid material
tension loading
author_facet Kulyuth Boonseng
Chatchai Waiyapattanakorn
Prayoon Surin
author_sort Kulyuth Boonseng
title Notable mechanical behavior of thin monoholar rubber flat slab under tension loading
title_short Notable mechanical behavior of thin monoholar rubber flat slab under tension loading
title_full Notable mechanical behavior of thin monoholar rubber flat slab under tension loading
title_fullStr Notable mechanical behavior of thin monoholar rubber flat slab under tension loading
title_full_unstemmed Notable mechanical behavior of thin monoholar rubber flat slab under tension loading
title_sort notable mechanical behavior of thin monoholar rubber flat slab under tension loading
publisher Khon Kaen University
series Engineering and Applied Science Research
issn 2539-6161
2539-6218
publishDate 2021-01-01
description There have been strong interests in achieving unconventional mechanical properties of materials utilized for various applications in recent years. Apart from the well known composite material approach, an innovative approach of employing cellular structure or repeated geometric pattern has been of great interest. The simple example that has been proved useful and promising is the monoholar pattern. Experimental investigations of monoholar rubber flat slab have demonstrated a number of unusual mechanical behaviors under compression loading unable to achieve before. It is thus enticing to find out if the same is possible under tension loading. This research therefore embarks on applying tension load on a thin monoholar rubber flat slab, 1/10 as thick as the flat slab tested under compression loading. Results of the experiments clearly demonstrate similar behaviors as observed in the case of compression loading. However stress plateau is not observable in the stress-strain curve obtained under tension loading. This is because the test specimen reaches rupture point after undergoing a certain level of stress. Ligament thickness has been observed to effect noticeable drop in stress level before gradually increasing towards stress level that causes full blown rupture. This may lead to some promising applications related to tension loading.
topic mechanical behaviors
thin monoholar
solid material
tension loading
url https://ph01.tci-thaijo.org/index.php/easr/article/download/239966/165843/
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AT chatchaiwaiyapattanakorn notablemechanicalbehaviorofthinmonoholarrubberflatslabundertensionloading
AT prayoonsurin notablemechanicalbehaviorofthinmonoholarrubberflatslabundertensionloading
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