Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.]

The El Nino phenomenon can damage the skin and cause sickness such as skin cancer, heat stroke and heat exhaustion. Due to this phenomenon, an analysis on mechanical properties on animal skin is carried out, where sheepskin is used for investigation through uniaxial tensile test. The aim of this stu...

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Main Authors: Adull Manan, Nor Fazli, Abdul Aziz, Abdul Hakeem, Mahmud, Jamaluddin, Abdullah, Abdul Halim
Format: Article
Language:English
Published: Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM) 2018
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Online Access:http://ir.uitm.edu.my/id/eprint/39428/1/39428.pdf
http://ir.uitm.edu.my/id/eprint/39428/
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spelling my.uitm.ir.394282020-12-22T03:27:13Z http://ir.uitm.edu.my/id/eprint/39428/ Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.] Adull Manan, Nor Fazli Abdul Aziz, Abdul Hakeem Mahmud, Jamaluddin Abdullah, Abdul Halim Engineering mathematics. Engineering analysis TJ Mechanical engineering and machinery The El Nino phenomenon can damage the skin and cause sickness such as skin cancer, heat stroke and heat exhaustion. Due to this phenomenon, an analysis on mechanical properties on animal skin is carried out, where sheepskin is used for investigation through uniaxial tensile test. The aim of this study is to investigate the effect of varied temperature on mechanical properties of animal skin. The process consists of an integration between experimental and numerical approach. A uniaxial tensile test is performed first to measure the basic mechanical parameter of stress-stretch by following the ASTM D2209-00 International testing standard. Next, the hyperelastic constitutive model Arruda and Boyce (A&B) equation is simplified via numerical approach for finding the material parameter. Then, a graph of Stress – Stretch (σ-λ) is plotted for a curve fit with the experimental data to obtain the mechanical properties of the material parameter. As a result, the material parameter which are Arruda and Boyce coefficient, μ and Arruda and Boyce exponent, N are 4.967(MPa) and 3.116, respectively, for SL Temp 33. However, μ and N for SNL Temp 33 are 5.134 (MPa) and 2.357. In contrast, the value of the value of μ and N for SL Temp 36 are 4.943(MPa) and 2.728 and for SNL Temp 36 are 5.199(MPa) and 2.209 .Therefore, this study could be useful for future studies in analysis of skin by adapting hyperelastic constitutive model. Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM) 2018 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/39428/1/39428.pdf Adull Manan, Nor Fazli and Abdul Aziz, Abdul Hakeem and Mahmud, Jamaluddin and Abdullah, Abdul Halim (2018) Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.]. Journal of Mechanical Engineering (JMechE), SI 5 (3). pp. 123-140. ISSN 18235514
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Engineering mathematics. Engineering analysis
TJ Mechanical engineering and machinery
spellingShingle Engineering mathematics. Engineering analysis
TJ Mechanical engineering and machinery
Adull Manan, Nor Fazli
Abdul Aziz, Abdul Hakeem
Mahmud, Jamaluddin
Abdullah, Abdul Halim
Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.]
description The El Nino phenomenon can damage the skin and cause sickness such as skin cancer, heat stroke and heat exhaustion. Due to this phenomenon, an analysis on mechanical properties on animal skin is carried out, where sheepskin is used for investigation through uniaxial tensile test. The aim of this study is to investigate the effect of varied temperature on mechanical properties of animal skin. The process consists of an integration between experimental and numerical approach. A uniaxial tensile test is performed first to measure the basic mechanical parameter of stress-stretch by following the ASTM D2209-00 International testing standard. Next, the hyperelastic constitutive model Arruda and Boyce (A&B) equation is simplified via numerical approach for finding the material parameter. Then, a graph of Stress – Stretch (σ-λ) is plotted for a curve fit with the experimental data to obtain the mechanical properties of the material parameter. As a result, the material parameter which are Arruda and Boyce coefficient, μ and Arruda and Boyce exponent, N are 4.967(MPa) and 3.116, respectively, for SL Temp 33. However, μ and N for SNL Temp 33 are 5.134 (MPa) and 2.357. In contrast, the value of the value of μ and N for SL Temp 36 are 4.943(MPa) and 2.728 and for SNL Temp 36 are 5.199(MPa) and 2.209 .Therefore, this study could be useful for future studies in analysis of skin by adapting hyperelastic constitutive model.
format Article
author Adull Manan, Nor Fazli
Abdul Aziz, Abdul Hakeem
Mahmud, Jamaluddin
Abdullah, Abdul Halim
author_facet Adull Manan, Nor Fazli
Abdul Aziz, Abdul Hakeem
Mahmud, Jamaluddin
Abdullah, Abdul Halim
author_sort Adull Manan, Nor Fazli
title Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.]
title_short Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.]
title_full Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.]
title_fullStr Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.]
title_full_unstemmed Analysis of Dryness Effect on Skin by Adapting Hyperelastic Constitutive Model / Nor Fazli Adull Manan ...[et al.]
title_sort analysis of dryness effect on skin by adapting hyperelastic constitutive model / nor fazli adull manan ...[et al.]
publisher Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM)
publishDate 2018
url http://ir.uitm.edu.my/id/eprint/39428/1/39428.pdf
http://ir.uitm.edu.my/id/eprint/39428/
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score 13.209306