Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C

In this study, as much as 10 and 15 wt.% nanosized silicon and carbon (Si+C) were reacted with (Mg+2B) at 650°C and 850°C, respectively, for 1 hour. The phase formation, surface morphology and superconducting properties of these samples were evaluated. The relative peak intensity as calculated from...

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Main Authors: Tan, Kwee Yong, Tan, Kar Ban, Lim, Kean Pah, Shaari, Abdul Halim, Chen, Soo Kien
Format: Article
Language:English
Published: Trans Tech Publications 2015
Online Access:http://psasir.upm.edu.my/id/eprint/42218/1/Effect%20of%20sintering%20temperature%20on%20the%20superconducting%20properties%20of%20MgB2%20superconductor%20co-added%20with%20a%20high%20concentration%20of%20Si%20and%20C.pdf
http://psasir.upm.edu.my/id/eprint/42218/
http://www.scientific.net/AMR.1107.589
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spelling my.upm.eprints.422182016-04-12T04:47:47Z http://psasir.upm.edu.my/id/eprint/42218/ Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C Tan, Kwee Yong Tan, Kar Ban Lim, Kean Pah Shaari, Abdul Halim Chen, Soo Kien In this study, as much as 10 and 15 wt.% nanosized silicon and carbon (Si+C) were reacted with (Mg+2B) at 650°C and 850°C, respectively, for 1 hour. The phase formation, surface morphology and superconducting properties of these samples were evaluated. The relative peak intensity as calculated from the XRD patterns indicates the formation of large Mg2Si volume fraction at low sintering temperature. MgB4 phase was detected in the samples sintered at high temperature as a result of Mg deficiency. The C substitution level as estimated from the lattice parameters, was shown to increase in the samples reacted with a higher amount of (Si+C) at high temperature. Scanning electron micrograph showed that (Si+C) co-addition had refined the grain size and improved the grain coupling of MgB2. The superconducting transition temperature was found to decrease with increasing addition level. The superconducting transition width was also broadened because of a large volume fraction of secondary phases. The improved field dependent critical current density at both 5 K and 20 K is accounted to enhanced scattering by C substitution and grain boundary pinning. Trans Tech Publications 2015 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/42218/1/Effect%20of%20sintering%20temperature%20on%20the%20superconducting%20properties%20of%20MgB2%20superconductor%20co-added%20with%20a%20high%20concentration%20of%20Si%20and%20C.pdf Tan, Kwee Yong and Tan, Kar Ban and Lim, Kean Pah and Shaari, Abdul Halim and Chen, Soo Kien (2015) Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C. Advanced Materials Research, 1107. pp. 589-594. ISSN 1022-6680; ESSN: 1662-8985 http://www.scientific.net/AMR.1107.589 10.4028/www.scientific.net/AMR.1107.589
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description In this study, as much as 10 and 15 wt.% nanosized silicon and carbon (Si+C) were reacted with (Mg+2B) at 650°C and 850°C, respectively, for 1 hour. The phase formation, surface morphology and superconducting properties of these samples were evaluated. The relative peak intensity as calculated from the XRD patterns indicates the formation of large Mg2Si volume fraction at low sintering temperature. MgB4 phase was detected in the samples sintered at high temperature as a result of Mg deficiency. The C substitution level as estimated from the lattice parameters, was shown to increase in the samples reacted with a higher amount of (Si+C) at high temperature. Scanning electron micrograph showed that (Si+C) co-addition had refined the grain size and improved the grain coupling of MgB2. The superconducting transition temperature was found to decrease with increasing addition level. The superconducting transition width was also broadened because of a large volume fraction of secondary phases. The improved field dependent critical current density at both 5 K and 20 K is accounted to enhanced scattering by C substitution and grain boundary pinning.
format Article
author Tan, Kwee Yong
Tan, Kar Ban
Lim, Kean Pah
Shaari, Abdul Halim
Chen, Soo Kien
spellingShingle Tan, Kwee Yong
Tan, Kar Ban
Lim, Kean Pah
Shaari, Abdul Halim
Chen, Soo Kien
Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C
author_facet Tan, Kwee Yong
Tan, Kar Ban
Lim, Kean Pah
Shaari, Abdul Halim
Chen, Soo Kien
author_sort Tan, Kwee Yong
title Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C
title_short Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C
title_full Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C
title_fullStr Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C
title_full_unstemmed Effect of sintering temperature on the superconducting properties of MgB2 superconductor co-added with a high concentration of Si and C
title_sort effect of sintering temperature on the superconducting properties of mgb2 superconductor co-added with a high concentration of si and c
publisher Trans Tech Publications
publishDate 2015
url http://psasir.upm.edu.my/id/eprint/42218/1/Effect%20of%20sintering%20temperature%20on%20the%20superconducting%20properties%20of%20MgB2%20superconductor%20co-added%20with%20a%20high%20concentration%20of%20Si%20and%20C.pdf
http://psasir.upm.edu.my/id/eprint/42218/
http://www.scientific.net/AMR.1107.589
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