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Influence of particle-matrix interface, temperature, and agglomeration on heat conduction in dispersions
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10.1063/1.4812734
/content/aip/journal/jap/114/1/10.1063/1.4812734
http://aip.metastore.ingenta.com/content/aip/journal/jap/114/1/10.1063/1.4812734

Figures

Image of FIG. 1.
FIG. 1.

Effective thermal conductivity of a SiGe nanocomposite comprising spherical Si particles with the radius: (a) , (b) , and (c) as a function of the particle volume fraction .

Image of FIG. 2.
FIG. 2.

Experimental and calculated values of the effective thermal conductivity as a function of the volume fractions of SiO and AlN embedded in epoxy resin.

Image of FIG. 3.
FIG. 3.

Temperature dependence of theoretical phonon thermal conductivities for bulk silicon and germanium fitted to experimental data.

Image of FIG. 4.
FIG. 4.

Effective thermal conductivity of SiGe nanocomposite comprising spherical Si particles with the radius: (a) , and (b) as a function of the particle volume fraction in different temperatures.

Image of FIG. 5.
FIG. 5.

Effect of temperature on thermal conductivity of Si/Ge nanocomposite for three differences particle sizes and volume fractions (a) , (b) , and (c) .

Image of FIG. 6.
FIG. 6.

Effect of agglomeration: (a) and (b) as a function of the volume fraction of well-dispersed particles, for different degree of agglomeration.

Image of FIG. 7.
FIG. 7.

Effect of different sizes of agglomerates: (1) ; (2) the same as in (1) except that ; (3) and (4) the same as in (1) except that for (3) and for (4). The homogenization in ((1)–(4)) is (AB) and in ((5)–(8)) (BA).

Tables

Generic image for table
Table I.

Material parameters used in calculations.

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/content/aip/journal/jap/114/1/10.1063/1.4812734
2013-07-03
2014-04-23
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752b84549af89a08dbdd7fdb8b9568b5 journal.articlezxybnytfddd
Scitation: Influence of particle-matrix interface, temperature, and agglomeration on heat conduction in dispersions
http://aip.metastore.ingenta.com/content/aip/journal/jap/114/1/10.1063/1.4812734
10.1063/1.4812734
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