The Measurements of Electrical and Thermal Conductivity Variations With Temperature and Phonon Component of the Thermal Conductivity in Sn-Cd Sn-In Sn-Ag and Sn-Bi Alloys
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Date
2016
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Journal ISSN
Volume Title
Publisher
Elsevier France-editions Scientifiques Medicales Elsevier
Open Access Color
Green Open Access
Yes
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Publicly Funded
No
Abstract
The electrical and thermal conductivity variations with temperature for lead-free ternary solders, namely Sn-41.39 at.% Cd-6.69 at.% Sb, Sn-49 at.% In-1 at.% Cu, Sn-50 at.% Ag-10 at.% Bi and Sn-32 at.% Bi-3 at.% Zn alloys, were measured by the d.c. four-point probe method and radial heat flow apparatus, respectively. The contributions of electrons and phonons to the thermal conductivity were separately determined by using the measured values of the thermal and electrical conductivities obtained by the Wiedemann-Franz law in the lead-free ternary solders. The percentages of the phonon component of thermal conductivity were found to be in the range of 46-55%, 46-50%, 38-47% and 69-73% for Sn-41.39 at.% Cd-6.69 at.% SU, Sn-49 at.% In-1 at.% Cu, Sn-50 at.% Ag-10 at.% Bi and Sn-32 at.% Bi-3 at.% Zn alloys at the ranges of 318-443 K temperature, respectively. The temperature coefficients (alpha) of electrical conductivity for the lead-free ternary solders were found to be 2.47 x 10(-3), 4.97 x 10(-3), 1.14 x 10(-3) and 1.00 x 10(-3) K-1, respectively. The thermal conductivities of the solid phases at their melting temperature and the thermal temperature coefficients for the lead-free ternary solders were also found to be 47.72 +/- 2.38, 68.57 +/- 3.42, 73.52 +/- 3.67, 37.53 +/- 1.87 W/Km and 1.47 x 10(-3), 1.48 x 10(-3), 1.85 x 10(-3) and 2.21 x 10(-3) K-1, respectively. (C) 2015 Elsevier Masson SAS. All rights reserved.
Description
Kaygisiz, Yusuf/0000-0002-2143-5965; , Sezen/0000-0002-8990-1926;
Keywords
Metals and Alloys, Phonons, Thermoelectric, Thermal Analysis, Metals and alloys, Phonons, Thermoelectric, Thermal analysis
Turkish CoHE Thesis Center URL
Fields of Science
0103 physical sciences, 02 engineering and technology, 0210 nano-technology, 01 natural sciences
Citation
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Q1
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OpenCitations Citation Count
19
Source
International Journal of Thermal Sciences
Volume
100
Issue
Start Page
1
End Page
9
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CrossRef : 6
Scopus : 21
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Mendeley Readers : 19
SCOPUS™ Citations
21
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Web of Science™ Citations
22
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Page Views
7
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