A study of the corrosive behavior of STS304 and STS 430, depending on surface pre-treatment conditions, in PEMFC while in operation
In most cases, graphite is using as a construction material for bipolar plates in PEM fuel cells. Graphite has a stabilized chemical reaction and excellent electrical conductivity. However, it also has weaknesses in that it is costly and prone to gas leaks because of its structural properties. Graph...
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Published in | International journal of precision engineering and manufacturing Vol. 15; no. 6; pp. 1201 - 1205 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
Springer
Korean Society for Precision Engineering
01.06.2014
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Subjects | |
Online Access | Get full text |
ISSN | 2234-7593 2005-4602 |
DOI | 10.1007/s12541-014-0457-z |
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Abstract | In most cases, graphite is using as a construction material for bipolar plates in PEM fuel cells. Graphite has a stabilized chemical reaction and excellent electrical conductivity. However, it also has weaknesses in that it is costly and prone to gas leaks because of its structural properties. Graphite has a porous structure, so graphite plates are thick for preventing these gas leaks. Even though, gas retention is still an issue, and bipolar plate thickness may conversely need to be increased further. Finally, graphite is difficult and expensive to manufacture via machining because of how brittle it is. Metal is a very attractive material for the industrial fields. Some engineers expect to overcome the weaknesses of graphite as a construction material for bipolar plates through the implementation of metallic substitutes. Metal is inexpensive and easy to manufacture while boasting a high-density structure and good electrical conductivity. However, metal has one weakness: its tendency toward corrosion. This study focused on commercial stainless steel’s corrosion behavior in a standard PEMFC operating environment during a 100-hour time frame. We investigated for changes in the microstructure using OM, SEM, and XRD, for corrosion properties using ICP, and for electrical properties using Potentiodynamic polarization. |
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AbstractList | In most cases, graphite is using as a construction material for bipolar plates in PEM fuel cells. Graphite has a stabilized chemical reaction and excellent electrical conductivity. However, it also has weaknesses in that it is costly and prone to gas leaks because of its structural properties. Graphite has a porous structure, so graphite plates are thick for preventing these gas leaks. Even though, gas retention is still an issue, and bipolar plate thickness may conversely need to be increased further. Finally, graphite is difficult and expensive to manufacture via machining because of how brittle it is. Metal is a very attractive material for the industrial fields. Some engineers expect to overcome the weaknesses of graphite as a construction material for bipolar plates through the implementation of metallic substitutes. Metal is inexpensive and easy to manufacture while boasting a high-density structure and good electrical conductivity. However, metal has one weakness: its tendency toward corrosion. This study focused on commercial stainless steel’s corrosion behavior in a standard PEMFC operating environment during a 100-hour time frame. We investigated for changes in the microstructure using OM, SEM, and XRD, for corrosion properties using ICP, and for electrical properties using Potentiodynamic polarization. |
Author | Oh, JeHa Yang, SungMo Moon, MinSeok Woo, KeeDo Kang, ShinJae Song, JoonHyuk |
Author_xml | – sequence: 1 givenname: MinSeok surname: Moon fullname: Moon, MinSeok organization: Korea Institute of Carbon Convergence Technology – sequence: 2 givenname: KeeDo surname: Woo fullname: Woo, KeeDo email: mindolmind@gmail.com organization: Division of Advanced Materials Engineering & RCIT, Chonbuk University – sequence: 3 givenname: ShinJae surname: Kang fullname: Kang, ShinJae organization: Division of Mechanical Design Engineering, Chonbuk University – sequence: 4 givenname: JoonHyuk surname: Song fullname: Song, JoonHyuk organization: Korea Institute of Carbon Convergence Technology – sequence: 5 givenname: JeHa surname: Oh fullname: Oh, JeHa organization: Korea Institute of Carbon Convergence Technology – sequence: 6 givenname: SungMo surname: Yang fullname: Yang, SungMo organization: Division of Mechanical System Engineering, Chonbuk University |
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Cites_doi | 10.1016/S0378-7753(99)00524-8 10.1016/j.ijhydene.2006.03.003 10.1201/9781420041552 |
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Keywords | Metallic bipolar plate PEMFC STS304 Corrosion behavior STS430 |
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References | Tian, Sun, Wang (CR9) 2006; 31 CR2 CR3 Davies, Adcock, Turpin, Rowen (CR6) 2000; 86 CR8 Kim, Choi, Jeong, Jang, Joen, Kim (CR1) 2008; 25 Vanston, Elloitt (CR4) 2003 O’Hayre (CR5) 2006 Hoogers (CR7) 2002 R Tian (457_CR9) 2006; 31 R P O’Hayre (457_CR5) 2006 G Hoogers (457_CR7) 2002 457_CR2 K Kim (457_CR1) 2008; 25 457_CR3 D P Davies (457_CR6) 2000; 86 457_CR8 J Vanston (457_CR4) 2003 |
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Title | A study of the corrosive behavior of STS304 and STS 430, depending on surface pre-treatment conditions, in PEMFC while in operation |
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