The 19 references in paper O. Pugachev V., Z. Han T., З. Хан Т., О. Пугачёв В. (2016) “Теплопроводность композита с нетеплопроводными шаровыми включениями // Heat Conductivity of Composite Materials with Included Balls of Zero Heat Conductivity” / spz:neicon:technomag:y:2015:i:5:p:205-217

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Missenard A.Conductivite thermique des solides, liquides, gaz et de leurs melanges. Paris, Editions Eyrolles, 1965. (In French). (Russ ed. Missenard A.Teploprovodnost' tverdykh tel, zhidkostey, gazov i ikh kompozitsiy. Moscow, Mir Publ., 1968. 464 p.).
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Zarubin V.S.Inzhenernye metody resheniia zadach teploprovodnosti[Engineering methods of solving problems of heat conductivity]. Moscow, Energoatomizdat Publ., 1983. 328 p. (in Russian).
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Kats E.A.Fullereny, uglerodnye nanotrubki i nanoklastery. Rodoslovnaya form i idey [Fullerens, carbon nano-tubes and nano-clusters. The family-tree of form and ideas]. Moscow, LKI Publ., 2008. 296 p. (in Russian).
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Golovin N.N., Zarubin V.S., Kuvyrkin G.N. Estimation of effective heat conductivity coefficient of fullerene-modified composite material.Kompozity i nanostruktury=Composites and Nanostructures, 2012, no. 4, pp. 15{22. (in Russian).
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Zarubin V.S.,Kuvyrkin G.N.,Savel'eva I.Iu.The Effective Coefficients of Thermal Conductivity of Composites with Spherical Inclusions.Teplovye protsessy v tekhnike=Thermal Processes in Engineering, 2012, no. 10, pp. 470{474. (in Russian).
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Zarubin V.S., Kuvyrkin G.N., Savel'eva I.Iu. Thermal Conductivity of Composite Reinforced with Fibers.Izvestiia vysshikh uchebnykh zavedenii. Mashinostroenie=Proceedings of Higher Educational Institutions. Machine Building, 2013, no. 5, pp. 75{81. (in Russian).
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Zarubin V.S., Kotovich A.V., Kuvyrkin G.N. Estimates of the effective coefficient of heat conductivity of a composite with anisotropic ball inclusions.Izvestiya RAN. Energetika= Proceedings of RAS. Energetics, 2012, no. 6, pp. 118{126. (in Russian).
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Zarubin V.S., Kuvyrkin G.N. Effective Coefficients of Thermal Conductivity of a Composite with Ellipsoidal Inclusions.Vestnik MGTU im. N.E. Baumana. Ser. Estestvennye nauki= Herald of the Bauman Moscow State Technical University. Ser. Natural sciences, 2012, no. 3, pp. 76{85. (in Russian).
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Zarubin V.S., Kuvyrkin G.N., Savel'eva I.Iu. Comparative analysis of estimations of heat conduction of a composite with ball inclusions.Nauka i obrazovanie MGTU im. N.E. Baumana=Science and Education of the Bauman MSTU, 2013, no. 7, pp. 299{318. DOI: 10.7463/0713.0569319(in Russian).
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13
Zarubin V.S., Kuvyrkin G.N., Savel'eva I.Iu. Evaluation of effective thermal conductivity of composites with ball inclusions by the method of self-consistency.Nauka i obrazovanie MGTU im. N.E. Baumana=Science and Education of the Bauman MSTU, 2013, no. 9, pp. 435{444. DOI:10.7463/0913.0601512(in Russian).
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Yankovskii A.P. Numerically-Analytical Modelling of Processes of Thermal Conductivity in Spatially Reinforced Composites at Intensive Thermal Action.Teplovye protsessy v tekhnike =Thermal Processes in Engineering, 2011, no. 11, pp. 500{516. (in Russian).
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Chen Y.-M., Ting J.-M. Ultra high thermal conductivity polymer composites.Carbon, 2002, vol. 40, no. 3, pp. 359{362. DOI:10.1016/S0008-6223(01)00112-9
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Nan C.-W., Birringer R., Clarke D.R., Gleiter H. Effective thermal conductivity of particulate composites with interfacial thermal resistance.Journal of Applied Physics, 1997, vol. 81, no. 10, pp. 6692{6699. DOI:10.1063/1.365209
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19
Pechinkin A.V., Teskin O.I., Tsvetkova G.M., Bocharov P.P., Kozlov N.E.Teoriia veroiatnostei[Probability theory]. Moscow, Bauman MSTU Publ., 2004. 456 p. (Ser.Matematika v tekhnicheskom universitete[Mathematics in Technical University], vol. 16). (in Russian).
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