Effect the Grain Size on the Polymer Matrix Composites Reinforced by Reenia Particles

Synthetic polymers such as polyurethane are used widely in the field of biomedical applications such as implants or part of implant systems.This paper focuses on the preparation of base polymer matrix composite materials by (Hand Lay-Up) method, and studying the effect of selected grain size (32, 53...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Kdhim khaion kahlol, Hayder Abbas Sallal, Mohammed A.sadik A.hassan
Formato: article
Lenguaje:EN
Publicado: Al-Khwarizmi College of Engineering – University of Baghdad 2013
Materias:
Acceso en línea:https://doaj.org/article/40aa888b85f04aefb3e8ec98e06c536c
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:40aa888b85f04aefb3e8ec98e06c536c
record_format dspace
spelling oai:doaj.org-article:40aa888b85f04aefb3e8ec98e06c536c2021-12-02T01:52:26ZEffect the Grain Size on the Polymer Matrix Composites Reinforced by Reenia Particles1818-1171https://doaj.org/article/40aa888b85f04aefb3e8ec98e06c536c2013-01-01T00:00:00Zhttp://www.iasj.net/iasj?func=fulltext&aId=74872https://doaj.org/toc/1818-1171Synthetic polymers such as polyurethane are used widely in the field of biomedical applications such as implants or part of implant systems.This paper focuses on the preparation of base polymer matrix composite materials by (Hand Lay-Up) method, and studying the effect of selected grain size (32, 53, 63, 75, and 90) µm of (Reenia) particles on some properties of the prepared composite.Mechanical tests were used to evaluate the prepared system (Tensile, Compression, Impact, and Hardness) tests, and a physical test of (Water absorption %), and all tests were accomplished at room temperature.Where results showed tensile test (maximum tensile strength and modulus of elasticity) high at small grain size while the percentage of elongation decreased with increasing size. As the compressive strength increased with small grain size. And also the values of hardness and fracture energy affected by particle size where the hardness and fracture energy increased at small particles size of compared to larger particles size. While the percentage of water absorption increased at large particle size.In general the results showed clear improvement in properties and maximum values which get it of tensile strength, Modulus of elasticity, elongation percentage, compression strength, fracture energy, hardness and water absorption were as follows ((34.8 MPa), (10%), (268 N/mm2), ( 54.2 MPa),( o.408 J), (78.9 Shor (D)), (0.2668 %)) at using (32µm)) except water absorption was at (90µm) .Kdhim khaion kahlolHayder Abbas SallalMohammed A.sadik A.hassanAl-Khwarizmi College of Engineering – University of BaghdadarticleChemical engineeringTP155-156Engineering (General). Civil engineering (General)TA1-2040ENAl-Khawarizmi Engineering Journal, Vol 9, Iss 2, Pp 94-102 (2013)
institution DOAJ
collection DOAJ
language EN
topic Chemical engineering
TP155-156
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle Chemical engineering
TP155-156
Engineering (General). Civil engineering (General)
TA1-2040
Kdhim khaion kahlol
Hayder Abbas Sallal
Mohammed A.sadik A.hassan
Effect the Grain Size on the Polymer Matrix Composites Reinforced by Reenia Particles
description Synthetic polymers such as polyurethane are used widely in the field of biomedical applications such as implants or part of implant systems.This paper focuses on the preparation of base polymer matrix composite materials by (Hand Lay-Up) method, and studying the effect of selected grain size (32, 53, 63, 75, and 90) µm of (Reenia) particles on some properties of the prepared composite.Mechanical tests were used to evaluate the prepared system (Tensile, Compression, Impact, and Hardness) tests, and a physical test of (Water absorption %), and all tests were accomplished at room temperature.Where results showed tensile test (maximum tensile strength and modulus of elasticity) high at small grain size while the percentage of elongation decreased with increasing size. As the compressive strength increased with small grain size. And also the values of hardness and fracture energy affected by particle size where the hardness and fracture energy increased at small particles size of compared to larger particles size. While the percentage of water absorption increased at large particle size.In general the results showed clear improvement in properties and maximum values which get it of tensile strength, Modulus of elasticity, elongation percentage, compression strength, fracture energy, hardness and water absorption were as follows ((34.8 MPa), (10%), (268 N/mm2), ( 54.2 MPa),( o.408 J), (78.9 Shor (D)), (0.2668 %)) at using (32µm)) except water absorption was at (90µm) .
format article
author Kdhim khaion kahlol
Hayder Abbas Sallal
Mohammed A.sadik A.hassan
author_facet Kdhim khaion kahlol
Hayder Abbas Sallal
Mohammed A.sadik A.hassan
author_sort Kdhim khaion kahlol
title Effect the Grain Size on the Polymer Matrix Composites Reinforced by Reenia Particles
title_short Effect the Grain Size on the Polymer Matrix Composites Reinforced by Reenia Particles
title_full Effect the Grain Size on the Polymer Matrix Composites Reinforced by Reenia Particles
title_fullStr Effect the Grain Size on the Polymer Matrix Composites Reinforced by Reenia Particles
title_full_unstemmed Effect the Grain Size on the Polymer Matrix Composites Reinforced by Reenia Particles
title_sort effect the grain size on the polymer matrix composites reinforced by reenia particles
publisher Al-Khwarizmi College of Engineering – University of Baghdad
publishDate 2013
url https://doaj.org/article/40aa888b85f04aefb3e8ec98e06c536c
work_keys_str_mv AT kdhimkhaionkahlol effectthegrainsizeonthepolymermatrixcompositesreinforcedbyreeniaparticles
AT hayderabbassallal effectthegrainsizeonthepolymermatrixcompositesreinforcedbyreeniaparticles
AT mohammedasadikahassan effectthegrainsizeonthepolymermatrixcompositesreinforcedbyreeniaparticles
_version_ 1718402830472052736