Effects of Composite Material Layers on the Mechanical Properties for Partial Foot Prosthetic Socket

In this work, nine types of laminated composite materials used for experimental study to investigate the tensile and fatigue properties of partial foot prosthetic socket which fabricated by using vacuum pressure system . The composite material matrix were Lamination 80:20and reinforced with nine ty...

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Main Author: S. M. Abbas
Format: Article
Language:English
Published: Al-Nahrain Journal for Engineering Sciences 2018-04-01
Series:مجلة النهرين للعلوم الهندسية
Subjects:
Online Access:https://nahje.com/index.php/main/article/view/403
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spelling doaj-9df554f8fef0465caa48af053b97c5292021-02-02T17:55:46ZengAl-Nahrain Journal for Engineering Sciencesمجلة النهرين للعلوم الهندسية2521-91542521-91622018-04-0121210.29194/NJES21020253403Effects of Composite Material Layers on the Mechanical Properties for Partial Foot Prosthetic SocketS. M. Abbas0P&O Eng. Dep., Al-Nahrain University, Baghdad, IRAQ In this work, nine types of laminated composite materials used for experimental study to investigate the tensile and fatigue properties of partial foot prosthetic socket which fabricated by using vacuum pressure system . The composite material matrix were Lamination 80:20and reinforced with nine types of laminations (perlon, n-glass, fiber glass and carbon) by variation of thickness according to lamination. Results show that the mechanical properties were improved by increasing the two layers of carbon fiber, fiber glass and n-glass layers instead of zero layer with six layers of perlon lead to the increased in(yield strength σy, ultimate tensile strength σult and modules of elasticity  E with (71% ,76% and 58%) respectively for carbon fiber, (20% , 19% and 40%) for fiber glass and ( 22% , 5.5% and 29% ) for n-glass. Results show that (3perlon+2carbon fiber+3perlon) gives the best value of mechanical properties and has higher Endurance limit stresses (σe) which increase lifetime for the patient . It is recommend to use this type of lamination for the layup partial foot prosthetic socket because it meets the demand lamination layers for acceptable mechanical properties and its minimizing the cost of socket lamination to suitable costing value. https://nahje.com/index.php/main/article/view/403Partial Foot SocketTensileFatigueLaminated Composites
collection DOAJ
language English
format Article
sources DOAJ
author S. M. Abbas
spellingShingle S. M. Abbas
Effects of Composite Material Layers on the Mechanical Properties for Partial Foot Prosthetic Socket
مجلة النهرين للعلوم الهندسية
Partial Foot Socket
Tensile
Fatigue
Laminated Composites
author_facet S. M. Abbas
author_sort S. M. Abbas
title Effects of Composite Material Layers on the Mechanical Properties for Partial Foot Prosthetic Socket
title_short Effects of Composite Material Layers on the Mechanical Properties for Partial Foot Prosthetic Socket
title_full Effects of Composite Material Layers on the Mechanical Properties for Partial Foot Prosthetic Socket
title_fullStr Effects of Composite Material Layers on the Mechanical Properties for Partial Foot Prosthetic Socket
title_full_unstemmed Effects of Composite Material Layers on the Mechanical Properties for Partial Foot Prosthetic Socket
title_sort effects of composite material layers on the mechanical properties for partial foot prosthetic socket
publisher Al-Nahrain Journal for Engineering Sciences
series مجلة النهرين للعلوم الهندسية
issn 2521-9154
2521-9162
publishDate 2018-04-01
description In this work, nine types of laminated composite materials used for experimental study to investigate the tensile and fatigue properties of partial foot prosthetic socket which fabricated by using vacuum pressure system . The composite material matrix were Lamination 80:20and reinforced with nine types of laminations (perlon, n-glass, fiber glass and carbon) by variation of thickness according to lamination. Results show that the mechanical properties were improved by increasing the two layers of carbon fiber, fiber glass and n-glass layers instead of zero layer with six layers of perlon lead to the increased in(yield strength σy, ultimate tensile strength σult and modules of elasticity  E with (71% ,76% and 58%) respectively for carbon fiber, (20% , 19% and 40%) for fiber glass and ( 22% , 5.5% and 29% ) for n-glass. Results show that (3perlon+2carbon fiber+3perlon) gives the best value of mechanical properties and has higher Endurance limit stresses (σe) which increase lifetime for the patient . It is recommend to use this type of lamination for the layup partial foot prosthetic socket because it meets the demand lamination layers for acceptable mechanical properties and its minimizing the cost of socket lamination to suitable costing value.
topic Partial Foot Socket
Tensile
Fatigue
Laminated Composites
url https://nahje.com/index.php/main/article/view/403
work_keys_str_mv AT smabbas effectsofcompositemateriallayersonthemechanicalpropertiesforpartialfootprostheticsocket
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