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. 2014. 4.. 219 227. DOI: 10.14258/jcprm.201404232 544.4:674.03:678. 1*,. 1,. 2 1,, 21,,, 622012 ( ), -mail: shishlov@ucp.ru 2,, 37,, 620100 ( ), -mail: vvg@usfeu.ru. -. -,,. - ( ). :,,,,, -. -, -, [1, 2]., 3- -, 3-(8(Z)-, 3-(8(Z),11(Z)- 3-(8(Z),11(Z),14- - ) [1].,,,,,, -, [3]. 15 -, [2]. -.,,.: (3435) 34-65-92, e-mail: o.shishlov@ucp.ru,.: (3435) 34-67-93, e-mail: s.dozhdikov@ucp.ru,,.: (3432) 62-97-46, e-mail: vvg@usfeu.ru - ( ) - 20 [4], - 1381 73 (. 1). *,.

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222.,.,.. 3. 20 : 1 5, 2 10 3 20 2. ( n ), log A n r 104,92 10,05 1,79 0,9895 119,77 12,29 1,32 0,9940 104,89 10,35 1,22 0,9902 106,78 10,61 1,28 0,9889 180 112,60 11,33 1,18 0,9920 130,34 13,50 1,43 0,9908 110,95 11,01 1,26 0,9915 124,41 12,91 1,26 0,9899 103,96 10,25 1,21 0,9866 115,98 11,73 1,30 0,9944 117,32 11,94 1,62 0,9749 128,89 13,51 1,62 0,9860 113,84 11,50 1,25 0,9892 111,93 11,15 1,30 0,9923, (. 2), (n = 1,18 1,43) (n = 1,62) (n = 1,79). 4). - - [10]. ( ). 5) [8, 9]. ASTM E698,, - ( ), -., -.,,., -, -, -,.

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226.,.,. -. 3.,,,. 4. ) (n). 1. Talbiersky J., Polaczek J., Ramamoorty R., Shishlov O. Phenols from Cashew Nut Shell Oil as a Feedstock for Making Resins and Chemicals // OIL GAS Europeen Magazine. 2009. 1. Pp. 33 39. 2..,., - ( ) //. 2011. 1.. 5 16. 3. Venmalar D., Nagaveni H.C. Evaluation of copperised cashew nut shell liquid and neem oil as wood preservatives // 36th Ann. Meeting of the Intern. Research Group on Wood Protection, 24 28 April 2005, Bangalore, India. IRG/WP 05-30368 20 p. 4..,.,.,. - //.. 2013. 5.. 15 18. 5. He G., Riedl B., Aït-Kadi A. Model-free kinetics: Curing behavior of phenol formaldehyde resins by differential scanning calorimetry // J. Appl. Polym. Sci. 2003. Vol. 87. Issue 3. Pp. 433 440. doi: 10.1002/app.11378 6. Wang J., Laborie M.-P.G., Wolcott M.P. Comparison of model-fitting kinetics for predicting the cure behavior of commercial phenol formaldehyde resins // J. Appl. Polym. Sci. 2007. Vol. 105. Issue 3. Pp. 1289 1296. doi: 10.1002/app.24855 7. Friedman H. L. New methods for evaluating kinetic parameters from thermal analysis data // J. Polym. Sci. B Polym. Lett. 1969. Vol. 7. Issue 1. Pp. 41 46. doi: 10.1002/pol.1969.110070109 8. Vyazovkin S., Burnham A.K., Criado J.M., Pérez-Maqueda L.A., Popescu C., Sbirrazzuoli N. ICTAC Kinetics Committee recommendations for performing kinetic computations on thermal analysis data // Thermochimica Acta. 2011. Vol. 520. Issues 1 2. Pp. 1 19. doi: 10.1016/j.tca.2011.03.034. 9. Vyazovkin S. Evaluation of activation energy of thermally stimulated solid-state reactions under arbitrary variation of temperature // J. Comput. Chem. 1997. Vol. 18. Issue 3. Pp. 393 402. doi: 10.1002/(SICI)1096-987X(199702)18:3<393::AID-JCC9>3.0.CO;2-P 10..,.,..., 1978. 368. 11... ]. URL: http://delostroika.ru/org/dreved/him/3990-himicheskiy-sostav-drevesiny.html 12. Koichiro Kitao. Chemical Constituents of Tropical Woods, (in Japanese) p. 6. 13. Brown A.G., Thomson R.H. 792. Ebenaceae extractives. Part II. Naphthaldehydes from Diospyros ebenum koen // J. Chem. Soc. 1965. Pp. 4292 4295. doi: 10.1039/JR9650004292 14..,..., 1983. 280. 15..,.,.,.,.,. - //. 2001. 3.. 363 367. 16..,.,.,.,.,. - //. 2001. 4.. 21 24. 17..,.,.,. - //. 2005. 4. C. 531 539. 18..,.,.,., -, //. 2010. 3.. 55 60. 19.....;., 1982, 711. 20. Karrer W. Konstitution und Vorkommen der organischen Pflanzenstoffe. Basel, Stuttgart, 1958. 1207 p. 21...., 1941.. 6 7. 22. Wakisaka H. Development of functional materials with carbon waste product of natural resources Yoshi development of activated carbon from bamboo. 2007. Pp. 23 31. (in Japanese) 23. Uchimura Etsuzo. Bamboo charcoal & vinegar. 1999. 187 p. (in Japanese) 2 2014. 31 2014.

227 Shishlov O.F. 1*, Dozhdikov S.A. 1, Gluhih V.V. 2 THE INFLUENCE OF EXTENDER TYPE ON CURE KINETICS IN COMPOSITE MATERIALS BASED ON PHENOL-CARDANOL-FORMALDEHYDE NOVOLAC RESINS 1 JSC «Uralchimplast», Northern Highway, 21, Nizhny Tagil, Sverdlovsk region, 622012 (Russia), e-mail: shishlov@ucp.ru 2 Ural State Forestry University, Russia, Siberian highway, 37, Ekaterinburg, 620100 (Russia), e-mail: vvg@usfeu.ru. The influence of plant extender type on kinetics of curing in composite materials based on phenol-cardanolformaldehyde novolac resins was studied. Traditional for wood industry foliage, coniferous, hard-wooded broadleaved, tropical foliage and gramineous plants were taken as a source of fillers. The influence of plant filler on effective activation energy Ea in dependence from extent of curing and reaction order of curing reaction ( ) were found. Keywords: cardanol, kinetics, activation energy, reaction order, composite materials, plant raw materials. References 1. Talbiersky J., Polaczek J., Ramamoorty R., Shishlov O. OIL GAS Europeen Magazine, 2009, no. 1, pp. 33 39. 2. Shishlov O.F., Gluhih V.V. Himija rastitel'nogo syr'ja, 2011, no. 1, pp. 5 16. (in Russ.) 3. Venmalar D., Nagaveni H.C. 36th Ann. Meeting of the Intern. Research Group on Wood Protection, 24 28 April 2005, Bangalore, India, IRG/WP 05-30368, 20 p. 4. Shishlov O.F., Dozhdikov S.A., Gluhih V.V., Stojanov O.V. Klei. Germetiki. Tehnologii, 2013, no. 5, pp. 15 18. (in Russ.) 5. He G., Riedl B., Aït-Kadi A. J. Appl. Polym. Sci., 2003, vol. 87, issue 3, pp. 433 440, doi: 10.1002/app.11378. 6. Wang J., Laborie M.-P.G., Wolcott M.P. J. Appl. Polym. Sci., 2007, vol. 105, issue 3, pp. 1289 1296, doi: 10.1002/app.24855. 7. Friedman H. L. J. Polym. Sci. B Polym. Lett., 1969, vol. 7, issue 1, pp. 41 46, doi: 10.1002/pol.1969.110070109. 8. Vyazovkin S., Burnham A.K., Criado J.M., Pérez-Maqueda L.A., Popescu C., Sbirrazzuoli N. Thermochimica Acta, 2011, vol. 520, issues 1 2, pp. 1 19, doi: 10.1016/j.tca.2011.03.034. 9. Vyazovkin S. J. Comput. Chem., 1997, vol. 18, issue 3, pp. 393 402, doi: 10.1002/(SICI)1096-987X(199702)18:3<393::AID-JCC9>3.0.CO;2-P. 10. Nikitin V.M., Obolenskaja A.V., Shhegolev V.P. Himija drevesiny i celljulozy. [Wood chemistry and pulp]. Moscow, 1978, 368 p. (in Russ.) 11. Drevesinovedenie. Himicheskij sostav drevesiny. [Wood. The chemical composition of wood]. [Electronic resource]. URL: http://delostroika.ru/org/dreved/him/3990-himicheskiy-sostav-drevesiny.html (in Russ.) 12. Koichiro Kitao. Chemical Constituents of Tropical Woods, (in Japanese) p. 6. 13. Brown A.G., Thomson R.H. 792. J. Chem. Soc., 1965, pp. 4292 4295, doi: 10.1039/JR9650004292. 14. Knop A., Shejb V. Fenol'nye smoly i materialy na ih osnove. [Phenolic resins and materials on their basis]. Moscow, 1983, 280 p. 15. Babkin V.A., Ostrouhova L.A., Malkov Ju.A., Ivanova S.Z., Onuchina N.A., Babkin D.V. Himija v interesah ustojchivogo razvitija, 2001, no. 3, pp. 363 367. (in Russ.) 16. Ivanova S.Z., Fedorova T.E., Ostrouhova L.A., Fedorov S.V., Onuchina N.A., Babkin V.A. Himija rastitel'nogo syr'ja, 2001, no. 4, pp. 21 24. (in Russ.) 17. Kuznecov B.N., Kuznecova S.A., Danilov V.G., Taraban'ko V.E. Himija v interesah ustojchivogo razvitija, 2005, no. 4, pp. 531 539. (in Russ.) 18. Sudakova I.G., Kuznecov B.N., Garynceva N.V., Korol'kova I.V. Himija rastitel'nogo syr'ja, 2010, no. 3, pp. 55 60. (in Russ.) 19. Nikitin N. I. Himija drevesiny i celljulozy. [Wood chemistry and pulp]. Moscow Leningrad, 1982, 711 p. (in Russ.) 20. Karrer W. Konstitution und Vorkommen der organischen Pflanzenstoffe, Basel, Stuttgart, 1958, 1207 p. 21. Zotov P.D. Proizvodstvo stroitel'nyh plit iz kamysha. [Production of building board made of reeds]. Tashkent, 1941, pp. 6 7. 24. Wakisaka H. Development of functional materials with carbon waste product of natural resources Yoshi development of activated carbon from bamboo (in Japanese) 2007. Pp. 23 31 22. Uchimura Etsuzo. Bamboo charcoal & vinegar (in Japanese) 1999. 187 p. Received January 2, 2014 Revised January 31, 2014 * Corresponding author.