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@article{VSGTU_2002_16_a23, author = {G. V. Kozlov and L. A. Dovbnya and I. V. Dolbin and Yu. S. Lipatov}, title = {{\CYRV}{\cyrz}{\cyra}{\cyri}{\cyrm}{\cyro}{\cyrd}{\cyre}{\cyrishrt}{\cyrs}{\cyrt}{\cyrv}{\cyri}{\cyre} {\cyro}{\cyrs}{\cyrn}{\cyro}{\cyrv}{\cyrn}{\cyrery}{\cyrh} {\cyrk}{\cyro}{\cyrm}{\cyrp}{\cyro}{\cyrn}{\cyre}{\cyrn}{\cyrt} {\cyrv}~{\cyrd}{\cyri}{\cyrs}{\cyrp}{\cyre}{\cyrr}{\cyrs}{\cyrn}{\cyro}-{\cyrn}{\cyra}{\cyrp}{\cyro}{\cyrl}{\cyrn}{\cyre}{\cyrn}{\cyrn}{\cyrery}{\cyrh} {\cyrk}{\cyro}{\cyrm}{\cyrp}{\cyro}{\cyrz}{\cyri}{\cyrt}{\cyra}{\cyrh}}, journal = {Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences}, pages = {140--144}, publisher = {mathdoc}, number = {16}, year = {2002}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/VSGTU_2002_16_a23/} }
TY - JOUR AU - G. V. Kozlov AU - L. A. Dovbnya AU - I. V. Dolbin AU - Yu. S. Lipatov TI - Взаимодействие основных компонент в~дисперсно-наполненных композитах JO - Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences PY - 2002 SP - 140 EP - 144 IS - 16 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/VSGTU_2002_16_a23/ LA - ru ID - VSGTU_2002_16_a23 ER -
%0 Journal Article %A G. V. Kozlov %A L. A. Dovbnya %A I. V. Dolbin %A Yu. S. Lipatov %T Взаимодействие основных компонент в~дисперсно-наполненных композитах %J Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences %D 2002 %P 140-144 %N 16 %I mathdoc %U http://geodesic.mathdoc.fr/item/VSGTU_2002_16_a23/ %G ru %F VSGTU_2002_16_a23
G. V. Kozlov; L. A. Dovbnya; I. V. Dolbin; Yu. S. Lipatov. Взаимодействие основных компонент в~дисперсно-наполненных композитах. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 16 (2002), pp. 140-144. http://geodesic.mathdoc.fr/item/VSGTU_2002_16_a23/
[1] Kozlov G. V., Mikitaev A. K., “Novyi podkhod k fraktalnym razmernostyam struktury polimernykh dispersno-napolnennykh kompozitov”, Mekhanika kompozitsionnykh materialov i konstruktsii, 2:3-4 (1996), 144–157
[2] Sanditov D. S., Kozlov G. V., Belousov V. N., Lipatov Yu. S., “The model of fluctuation free volume and cluster model of amorphous polymers”, Ukrain. Polymer J., 1:3–4 (1992), 241–258
[3] Beloshenko V. A., Kozlov G. V., Lipatov Yu.S., “Mekhanizm steklovaniya setchatykh polimerov”, Fizika tverdogo tela, 36:10 (1994), 2903–2906
[4] Kozlov G. V., Novikov V. U., “Fizicheskie osnovy okhrupchivaniya polimernykh disperno-napolnennykh kompozitov”, Prikladnaya fizika, 1997, no. 1, 95–101
[5] Novikov V. U., Kozlov G. V., “Fraktalnaya parametrizatsiya struktury napolnennykh polimerov”, Mekhanika kompozitnykh materialov, 35:3 (1999), 269–290
[6] Chow T. S., “Prediction of stress-strain relationships in polymer composites”, Polymer, 32:1 (1991), 29–33 | DOI
[7] Kozlov G. V., Abaev A. M., Novikov V. U., Komalov A. S., “Svoistva napolnennogo grafitom poligidroksiefira v usloviyakh udarnogo nagruzheniya”, Materialovedenie, 1997, no. 5, 31–35
[8] Kozlov G. V., Shetov R. A., Mikitaev A. K., “Metodiki izmereniya modulya uprugosti v udarnykh ispytaniyakh polimerov”, Vysokomolekulyarnye soedineniya A, 29:5 (1987), 1109–1110
[9] Kozlov G. V., Shetov R. A., Mikitaev A. K., “Opredelenie predela vynuzhdennoi elastichnosti pri udarnom nagruzhenii polimerov po metodu Sharpi”, Vysokomolekulyarnye soedineniya A, 29:9 (1987), 2012–2013
[10] Baknell K. B., Udaroprochnye plastiki, Khimiya, L., 1981
[11] Halsey T. C., Jensen M. N., Kadanoff L., Procaccia I., Shraiman B. I., “Fractals measures and their singularities: the characterization of strange sets”, Phys. Rev. A, 33:2 (1986), 1141–1151 | DOI | MR
[12] Williford R. E., “Multifractal fracture”, Scr. Met., 22:11 (1988), 1749–1754 | DOI
[13] Meakin P., “Stress distribution for a rigid fractal embedded in a two-dimensional elastic medium”, Phys. Rev. A, 36:1 (1987), 325–331 | DOI
[14] Avnir D., Farin D., Pfeifer P., “Chemistry in noninteger dimensions between two and three. II: Fractal surfaces of adsorbents”, J. Chem. Phys., 79:7 (1983), 3566–3571 | DOI | MR
[15] Mikos A. G., Peppas N. A., “Polymer chain entanglements and brille fracture. 2: Autohesion of linear polymers”, Polymer, 30:1 (1989), 84–91 | DOI
[16] Mashukov N. I., Serdyuk V. D., Kozlov G. V., Gladyshev G. P., “Otsenka napryazheniya razrusheniya polietilena vysokoi plotnosti, modifitsirovannogo vysokodispersnoi smesyu $\mathrm{Fe}$ i $\mathrm{FeO}$, v usloviyakh udarnogo nagruzheniya”, Voprosy oboronnoi tekhniki. Ser. 15, 97:3 (1991), 13–15
[17] Kozlov G. V., Novikov V. U., Sinergetika i fraktalnyi analiz setchatykh polimerov, Klassika, M., 1998
[18] Kozlov G. V., Temiraev K. B., Shetov R. A., Mikitaev A. K., “Vliyanie strukturnykh i molekulyarnykh kharakteristik na molekulyarnuyu podvizhnost v dibloksopolimerakh oligoformal 2,2-di-(4-oksifenil)-propana- oligosulfon fenolftaleina”, Materialovedenie, 1999, no. 2, 34–39.
[19] Berri Dzh. P., “Razrushenie stekloobraznykh polimerov”, Razrushenie, T. 7, ed. G. M. Libovits, Mir, M., 1976, 7–65
[20] Budtov V. P., Fizicheskaya khimiya rastvorov polimerov, Khimiya, SPb., 1992
[21] Aharoni S. M., “On entanglements of flexible and rodlike polymers”, Macromolecules, 16:9 (1983), 1722–1728 | DOI
[22] Aharoni S. M., “Correlations between chain parameters and failure characteristics of polymers below their glass transition temperature”, Macromolecules, 18:12 (1985), 2624–2630 | DOI
[23] Kozlov G. V., Ovcharenko E. N., Lipatov Yu. S., “Modelirovanie protsessov agregatsii chastits napolnitelya v polimernykh kompozitsiyakh v ramkakh modelei neobratimoi agregatsii”, Dokl. NAN Ukrainy, 1999, no. 11, 128–132
[24] Sumita M., Tsukumo Y., Miyasaka K., Inhikawa K., “Tensile yield stress of polypropylene composites filled with ultrafine particles”, J. Mater. Sci., 18:5 (1983), 1758–1764 | DOI