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Comparison of thermoelectric performance of AgPb.sub.x SbTe.sub.20 (x= 20-22.5) polycrystals fabricated by different methods

To link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2012.09.065 Byline: Zong-Yue Li, Minmin Zou, Jing-Feng Li Keywords: Thermoelectric material; LAST; Melting; Mechanical alloying; SPS Abstract: a* Thermoelectric AgPb.sub.xSbTe.sub.20 alloys were fabric... Full description

Journal Title: Journal of Alloys and Compounds Feb 5, 2013, Vol.549, p.319(5)
Main Author: Li, Zong - Yue
Other Authors: Zou, Minmin , Li, Jing - Feng
Format: Electronic Article Electronic Article
Language: English
Subjects:
Quelle: Cengage Learning, Inc.
ID: ISSN: 0925-8388
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recordid: gale_ofa310712842
title: Comparison of thermoelectric performance of AgPb.sub.x SbTe.sub.20 (x= 20-22.5) polycrystals fabricated by different methods
format: Article
creator:
  • Li, Zong - Yue
  • Zou, Minmin
  • Li, Jing - Feng
subjects:
  • Alloys -- Methods
  • Alloys -- Analysis
ispartof: Journal of Alloys and Compounds, Feb 5, 2013, Vol.549, p.319(5)
description: To link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2012.09.065 Byline: Zong-Yue Li, Minmin Zou, Jing-Feng Li Keywords: Thermoelectric material; LAST; Melting; Mechanical alloying; SPS Abstract: a* Thermoelectric AgPb.sub.xSbTe.sub.20 alloys were fabricated by two methods to clarify processing influence. a* Comparison with melting process confirmed the merits of MA-SPS process for fabricating AgPb.sub.20SbTe.sub.20.a* Thermoelectric property of AgPb.sub.xSbTe.sub.20 was revealed more sensitive to Pb content rather than process. a* A dimensionless figure of merit up to 1.25 at 725K was obtained in an optimal composition AgPb.sub.20SbTe.sub.20. Author Affiliation: State Key Laboratory of New Ceramics and Fine Processing, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, China Article History: Received 19 August 2012; Accepted 15 September 2012
language: English
source: Cengage Learning, Inc.
identifier: ISSN: 0925-8388
fulltext: fulltext
issn:
  • 0925-8388
  • 09258388
url: Link


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titleComparison of thermoelectric performance of AgPb.sub.x SbTe.sub.20 (x= 20-22.5) polycrystals fabricated by different methods
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descriptionTo link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2012.09.065 Byline: Zong-Yue Li, Minmin Zou, Jing-Feng Li Keywords: Thermoelectric material; LAST; Melting; Mechanical alloying; SPS Abstract: a* Thermoelectric AgPb.sub.xSbTe.sub.20 alloys were fabricated by two methods to clarify processing influence. a* Comparison with melting process confirmed the merits of MA-SPS process for fabricating AgPb.sub.20SbTe.sub.20.a* Thermoelectric property of AgPb.sub.xSbTe.sub.20 was revealed more sensitive to Pb content rather than process. a* A dimensionless figure of merit up to 1.25 at 725K was obtained in an optimal composition AgPb.sub.20SbTe.sub.20. Author Affiliation: State Key Laboratory of New Ceramics and Fine Processing, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, China Article History: Received 19 August 2012; Accepted 15 September 2012
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abstractTo link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2012.09.065 Byline: Zong-Yue Li, Minmin Zou, Jing-Feng Li Keywords: Thermoelectric material; LAST; Melting; Mechanical alloying; SPS Abstract: a* Thermoelectric AgPb.sub.xSbTe.sub.20 alloys were fabricated by two methods to clarify processing influence. a* Comparison with melting process confirmed the merits of MA-SPS process for fabricating AgPb.sub.20SbTe.sub.20.a* Thermoelectric property of AgPb.sub.xSbTe.sub.20 was revealed more sensitive to Pb content rather than process. a* A dimensionless figure of merit up to 1.25 at 725K was obtained in an optimal composition AgPb.sub.20SbTe.sub.20. Author Affiliation: State Key Laboratory of New Ceramics and Fine Processing, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, China Article History: Received 19 August 2012; Accepted 15 September 2012
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