The effect of precursor powder size on the microstructure and integranular properties of Bi2223 superconductors

 We have studied the effect of precursor powder size on the microstructure and intergranular behavior of polycrystalline Bi2223 superconductors using the XRD, SEM, electrical resistivity and AC susceptibility techniques. Polycrystalline Bi2223 superconductors were prepared from the powders with diff...

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Main Authors: I. Abdolhosseini, H. Salamati, P. Kameli
Format: Article
Language:English
Published: Isfahan University of Technology 2006-09-01
Series:Iranian Journal of Physics Research
Subjects:
Online Access:http://ijpr.iut.ac.ir/browse.php?a_code=A-10-1-78&slc_lang=en&sid=1
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spelling doaj-2cd251786784491d8762374fa6425fa32020-11-24T21:07:19ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572006-09-0163169176The effect of precursor powder size on the microstructure and integranular properties of Bi2223 superconductorsI. AbdolhosseiniH. SalamatiP. Kameli We have studied the effect of precursor powder size on the microstructure and intergranular behavior of polycrystalline Bi2223 superconductors using the XRD, SEM, electrical resistivity and AC susceptibility techniques. Polycrystalline Bi2223 superconductors were prepared from the powders with different milling times. The XRD results show that by decreasing the precursor powder size the Bi2223 phase fraction increases. It was found that the grain size and grain connectivity improved by decreasing the precursor powder size. Analysis of the temperature dependence of the AC susceptibility near the transition temperature (Tc) has been done employing Beans critical state model. The observed variation of intergranular critical current densities (Jc) with temperature indicates that the decreasing of precursor powder size in the Bi2223 system cases an increase in the intergranular critical current density. http://ijpr.iut.ac.ir/browse.php?a_code=A-10-1-78&slc_lang=en&sid=1high-Tc superconductorsball millingAC susceptibilityIntergranular properties
collection DOAJ
language English
format Article
sources DOAJ
author I. Abdolhosseini
H. Salamati
P. Kameli
spellingShingle I. Abdolhosseini
H. Salamati
P. Kameli
The effect of precursor powder size on the microstructure and integranular properties of Bi2223 superconductors
Iranian Journal of Physics Research
high-Tc superconductors
ball milling
AC susceptibility
Intergranular properties
author_facet I. Abdolhosseini
H. Salamati
P. Kameli
author_sort I. Abdolhosseini
title The effect of precursor powder size on the microstructure and integranular properties of Bi2223 superconductors
title_short The effect of precursor powder size on the microstructure and integranular properties of Bi2223 superconductors
title_full The effect of precursor powder size on the microstructure and integranular properties of Bi2223 superconductors
title_fullStr The effect of precursor powder size on the microstructure and integranular properties of Bi2223 superconductors
title_full_unstemmed The effect of precursor powder size on the microstructure and integranular properties of Bi2223 superconductors
title_sort effect of precursor powder size on the microstructure and integranular properties of bi2223 superconductors
publisher Isfahan University of Technology
series Iranian Journal of Physics Research
issn 1682-6957
publishDate 2006-09-01
description  We have studied the effect of precursor powder size on the microstructure and intergranular behavior of polycrystalline Bi2223 superconductors using the XRD, SEM, electrical resistivity and AC susceptibility techniques. Polycrystalline Bi2223 superconductors were prepared from the powders with different milling times. The XRD results show that by decreasing the precursor powder size the Bi2223 phase fraction increases. It was found that the grain size and grain connectivity improved by decreasing the precursor powder size. Analysis of the temperature dependence of the AC susceptibility near the transition temperature (Tc) has been done employing Beans critical state model. The observed variation of intergranular critical current densities (Jc) with temperature indicates that the decreasing of precursor powder size in the Bi2223 system cases an increase in the intergranular critical current density.
topic high-Tc superconductors
ball milling
AC susceptibility
Intergranular properties
url http://ijpr.iut.ac.ir/browse.php?a_code=A-10-1-78&slc_lang=en&sid=1
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