1Department of Material Science and Engineering, Shahid Bahonar University of Kerman, P.O. Box No. 76135-133, Kerman, Iran
Islamic Azad University, Kerman, Iran
*Corresponding Author Email: hadi20ebrahimifar@yahoo.com
**Email: m.zandrahimi@mail.uk.ac.ir
Online published on 13 February, 2013.
From an electrical conductivity perspective, only chromia forming alloys can be considered as candidates for interconnect application in solid oxide fuel cell. In this research, AISI 430 ferritic stainless steel was coated in a Mn-base pack mixture by pack cementation method. Electrical conductivity of the coated coupons was measured as a function of temperature by oxidizing the samples from room temperature to 800°C. Also the electrical conductivity has been studied as a function of oxidation time during isothermal oxidation at 800°C. Results showed the increase of temperature caused to the decrease of electrical conductivity and also, the coating layer transformed to manganese spinels during isothermal oxidation. The spinel compositions ameliorated the electrical conductivity activation energy of coated coupons (0.029 eV) compared to uncoated ones (0.031 eV).
Manganese, Solid oxide fuel cell (SOFC), Spinel, Electrical conductivity activation energy, Ferritic stainless steel