Effect of Organoclay on the Properties of Vulcanized Siloxane Rubber of the Brand SKTFV-803

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Abstract:

The effectiveness of the use of the organoclay of the Cloisite 30B brand of the Southern Clay Products company (USA), which is a Na+-montmorillonit, modified by methylalkyldi (2-hydroxyethyl) ammoniumchloride, and of the organoclay of the Katamin AB, produced by the Federal State Unitary Enterprise CNIIgeolnerud (Russia), modified by alkylbenzyldimethylammoniumchloride on the properties of vulcanized dimethylphenylvinylsiloxane rubber of the brand SKTFV-803 was studied. It was established that the adding of organoclay in the amount of 5 parts by weight in siloxane rubber increased heat resistance, slightly reduced the swelling index in toluene, and, most importantly, was not impair the frost resistance of obtained siloxane HYPERLINK "https://www.multitran.ru/c/m.exet=598817_1_2&s1=%F0%E5%E7%E8%ED%E0" vulcanizates.

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114-118

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August 2019

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© 2019 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yu.N. Khakimullin, A.D. Khusainov, Osnovy tekhnologii i pererabotki siloksanovyh elastomerov [Fundamentals of technology and processing of siloxane elastomers], KNITU, Kazan, 2014. (in Russian).

Google Scholar

[2] Yu.N. Khakimullin, A.R. Kurbangaleeva, Nanokompozity na osnove elastomerov [Nanocomposites based on elastomers], Vestnik Kazanskogo tekhnologicheskogo universiteta [Bulletin of Kazan Technological University]. 12 (2011) 78-81. (in Russian).

Google Scholar

[3] R. Anyszka, D.M. Bieliński,  Z. Pędzich, M. Szumera, Influence of surface-modified montmorillonites on properties of silicone rubber-based ceramizable composites, Journal of Thermal Analysis and Calorimetry. Vol. 119. 1(2015) 111-121.

DOI: 10.1007/s10973-014-4156-x

Google Scholar

[4] L. Yang, Y. Hu, H. Lu, L. Song, Morphology, thermal, and mechanical properties of flame-retardant silicone rubber/montmorillonite nanocomposites, Journal of Applied Polymer Science. Vol. 99. 6(2006) 3275-3280.

DOI: 10.1002/app.22756

Google Scholar

[5] Alex A. Smitha, R.S. Rajeev, K. Krishnaraj, N. Sreenivas, S.K. Manu, C. Gouri, V. Sekkar, Thermal protection characteristics of polydimethylsiloxane-organoclay nanocomposite, Polymer Degradation and Stability. Vol. 144. October (2017) 281-291.

DOI: 10.1016/j.polymdegradstab.2017.08.026

Google Scholar

[6] S.I. Vol'fson, A.I. Nigmatullina, R.K. Sabirov, T.Z. Lyzina, N.I. Naumkina, A.M. Gubaidullina, Effect of organoclay on properties of dynamic thermoelastoplastics, Russian Journal of Applied Chemistry. Vol. 83. 1(2010) 123-126.

DOI: 10.1134/s1070427210010234

Google Scholar

[7] A.I. Nigmatullina, A.A. Pavlova, A.D. Dement'ev, N.V. Kozlova, Issledovanie termostojkosti i ognestojkosti termoplastichnyh vulkanizatov, soderzhashchih sloistye gliny [Investigation of thermal resistance and fire resistance of thermoplastic vulcanizates containing layered clays], Vestnik Tekhnologicheskogo universiteta [Bulletin of Kazan Technological University]. Vol. 20. 14(2017) 51-53. (in Russian).

Google Scholar

[8] S.I. Vol'fson, N.A. Okhotina, A.I. Nigmatullina, T.Z. Lygina, A.M. Gubaidullina, N.I. Naumkina, F.A. Trofimova, R.K. Sabirov, The use of berezov-field bentonites for the modification of thermoplastic rubber, International Polymer Science and Technology. Vol. 39. 2(2012) T27-T30.

DOI: 10.1177/0307174x1203900206

Google Scholar

[9] F.A. Trofimova, T.Z. Lygina, M.I. Demidova, A.M. Gubajdullina, A.A. Shinkarev, Issledovanie processa obrazovaniya organoalyumosilikatnyh kompleksov iz nizkosortnogo syr'ya i vozmozhnost' primeneniya ih v kachestve napolnitelej v polimernyh nanokompozicionnyh materialah [The study of the formation of organoaluminosilicate complexes of low-grade raw materials and the possibility of their use as fillers in polymer nanocomposite materials], Vestnik Kazanskogo tekhnologicheskogo universiteta [Bulletin of Kazan Technological University]. 6 (2009) 363-368. (in Russian).

Google Scholar

[10] R.N. Gadel'shin, Y.N. Khakimullin, T.Z. Lygina, F.A. Trofimova, A.M. Gubaidullina, N.I. Naumkina, The properties of siloxane rubbers modified with organobentonites, International Polymer Science and Technology. Vol. 42. 6 (2015) T29-T32.

DOI: 10.1177/0307174x1504200607

Google Scholar

[11] R.N. Gadelshin, Yu.N. Khakimullin, T.Z. Lygina, Svojstva siloksanovyh rezin, modificirovannyh organobentonitami [Properties of siloxane rubber modified by organobentonites], Information Technology [Information Technology]. 5(2014) 34. (in Russian).

Google Scholar

[12] R.N. Gadelshin, Yu.N. Khakimullin, T.Z. Lygina, F.A. Trofimova, A.M. Gubajdullina, N.I. Naumkina, Svojstva siloksanovyh rezin, modificirovannyh organobentonitami [Properties of siloxane rubber modified by organobentonites], Kauchuk i rezina. 5(2014) 34-37. (in Russian).

DOI: 10.1177/0307174x1504200607

Google Scholar

[13] R.N. Gadel'shin, A.R. Kurbangaleeva, V.I. Tayorova, R.K. Sabirov, S.I. Vol'fson, Yu.N. Khakimullin, E.S. Nefed'ev, Siloksanovye reziny s povyshennoj termo- i ognestojkost'yu [Silicone Rubbers of Enhanced Thermal and Fire Resistance], Kauchuk i rezina. Vol. 77. 3 (2018) 188-191. (in Russian).

Google Scholar

[14] R.N. Gadelshin, P.V. Ponomarev, A.R. Kurbangaleeva, S.I. Volfson, Y.N. Khakimullin, Effect of organoclays on fire resistance of siloxane rubbers, Solid State Phenomena 284 SSP. (2018) 25-29.

DOI: 10.4028/www.scientific.net/ssp.284.25

Google Scholar