Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane

This paper reports the development of PTFE membranes as the base substrates for producing proton exchange membrane by using radiation-grafting technique. An aqueous dispersion of PTFE, which includes sodium benzoate, is cast in order to form suitable membranes. The casting was done by using a pneuma...

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Main Authors: Zubir, Nor Aida, Ismail, Ahmad Fauzi
Format: Article
Language:English
Published: Songkla University 2002
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Online Access:http://eprints.utm.my/id/eprint/770/1/AhmadFauziIsmail2002_EffectOfSinteringTemperatureOn.pdf
http://eprints.utm.my/id/eprint/770/
http://www.rdoapp.psu.ac.th/html/sjst/journal/cover-24-Suppl-1-online.html
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spelling my.utm.7702010-10-25T08:17:13Z http://eprints.utm.my/id/eprint/770/ Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane Zubir, Nor Aida Ismail, Ahmad Fauzi TP Chemical technology This paper reports the development of PTFE membranes as the base substrates for producing proton exchange membrane by using radiation-grafting technique. An aqueous dispersion of PTFE, which includes sodium benzoate, is cast in order to form suitable membranes. The casting was done by using a pneumatically controlled flat sheet membrane-casting machine. The membrane is then sintered to fuse the polymer particles and cooled. After cooling process, the salt crystals are leached from the membrane by dissolution in hot bath to leave a microporous structure, which is suitable for such uses as a filtration membrane or as a base substrate for radiation grafted membrane in PEMFC. The effects of sintering temperature on the membrane morphology and tensile strength were investigated at 350oC and 385oC by using scanning electron microscopy (SEM) and EX 20, respectively. The pore size and total void space are significantly smaller at higher sintering temperature employed with an average pore diameter of 11.78 nm. The tensile strength and tensile strain of sintered PTFE membrane at 385oC are approximately 19.02 + 1.46 MPa and 351.04 + 23.13 %, respectively. These results were indicated at 385oC, which represents significant improvements in tensile strength and tensile strain, which are nearly twice those at 350oC. Songkla University 2002 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/770/1/AhmadFauziIsmail2002_EffectOfSinteringTemperatureOn.pdf Zubir, Nor Aida and Ismail, Ahmad Fauzi (2002) Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane. Songklanakarin Journal of Science and Technology, 24 (Suppl). pp. 823-831. ISSN 0125-3395 http://www.rdoapp.psu.ac.th/html/sjst/journal/cover-24-Suppl-1-online.html
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Zubir, Nor Aida
Ismail, Ahmad Fauzi
Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane
description This paper reports the development of PTFE membranes as the base substrates for producing proton exchange membrane by using radiation-grafting technique. An aqueous dispersion of PTFE, which includes sodium benzoate, is cast in order to form suitable membranes. The casting was done by using a pneumatically controlled flat sheet membrane-casting machine. The membrane is then sintered to fuse the polymer particles and cooled. After cooling process, the salt crystals are leached from the membrane by dissolution in hot bath to leave a microporous structure, which is suitable for such uses as a filtration membrane or as a base substrate for radiation grafted membrane in PEMFC. The effects of sintering temperature on the membrane morphology and tensile strength were investigated at 350oC and 385oC by using scanning electron microscopy (SEM) and EX 20, respectively. The pore size and total void space are significantly smaller at higher sintering temperature employed with an average pore diameter of 11.78 nm. The tensile strength and tensile strain of sintered PTFE membrane at 385oC are approximately 19.02 + 1.46 MPa and 351.04 + 23.13 %, respectively. These results were indicated at 385oC, which represents significant improvements in tensile strength and tensile strain, which are nearly twice those at 350oC.
format Article
author Zubir, Nor Aida
Ismail, Ahmad Fauzi
author_facet Zubir, Nor Aida
Ismail, Ahmad Fauzi
author_sort Zubir, Nor Aida
title Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane
title_short Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane
title_full Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane
title_fullStr Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane
title_full_unstemmed Effect of Sintering Temperature on the Morphology and Mechanical Properties of PTFE Membranes as a Base Substrate for Proton Exchange Membrane
title_sort effect of sintering temperature on the morphology and mechanical properties of ptfe membranes as a base substrate for proton exchange membrane
publisher Songkla University
publishDate 2002
url http://eprints.utm.my/id/eprint/770/1/AhmadFauziIsmail2002_EffectOfSinteringTemperatureOn.pdf
http://eprints.utm.my/id/eprint/770/
http://www.rdoapp.psu.ac.th/html/sjst/journal/cover-24-Suppl-1-online.html
_version_ 1643643179658903552
score 13.214268