About Communication of the Comparative Properties Plasticized PVC Compositions and Quantities of Additives Used

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In work influence of the main additives (a heat stabiliser, softener, an excipient) on physicomechanical properties of compositions on the basis of polyvinylchloride (PVC) is studied. It is noted that increase in content of additives in a system in the stated quantities leads to change of Shore hardness of A. and melt flow rate. The functional interrelation between the applied additives and properties of plastic compounds is established. The reliability of the received mathematical model and its applicability for prediction of properties of PVC compositions depending on structure of a compounding is proved.

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359-363

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May 2020

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] Ch. Wilkie, J. Summers, Ch. Daniyels, Polivinilkhlorid, SPb.: Profession, 2007, 728 p.

Google Scholar

[2] M.V. Hrulyov, Polivinilkhlorid, M.: Chemistry, 1964, 262 p.

Google Scholar

[3] V.M. Polyvinylchloride, M.: Chemistry, 1992, 288 p.

Google Scholar

[4] A.K. Mazitova, G.K. Aminova, R.F. Nafikova, R.Ya. Deberdeev, Main polyvinylchloride compositions of structural appointment, Ufa, 2013, 130 p.

Google Scholar

[5] F. Grossman, The guide to development of compositions on the basis of PVC, M.: Scientific bases and technologies, 2009, 550 p.

Google Scholar

[6] S.V. Vlasov, L.B. Kandyrin, V.N. Kuleznev, etc., Fundamentals of technology of processing of plastic: The textbook for Higher education institutions, M.: Chemistry, 2004, 600 p.

Google Scholar

[7] V.V. Guzeev, The rational choice of additives for PVC compositions, Polymeric materials. 7–8 (2010) 38-48.

Google Scholar

[8] M. Schiller, Additives to PVC, Structure, properties and the application, Lane with English language under the editorship of N.N. Tikhonov, SPb.: TsOP Profession,, 2017, 400 p.

Google Scholar

[9] K.S. Minsker, A destruction and stabilization of polyvinylchloride, M.: Chemistry, 1972, 420 p.

Google Scholar

[10] P.V. Kozlov, Stabilnost of the plasticized polymeric systems, Layer. Masses. 2 (1989) 14-16.

Google Scholar

[11] R.S. Barstein, Softeners for polymers, M.: Chemistry, 1982, 200 p.

Google Scholar

[12] K. Tinius, Softeners, M.: Chemistry, 1964, 915 p.

Google Scholar

[13] B.P. Shtarkman, PVC plasticization, M.: Chemistry, 1975, 248 p.

Google Scholar

[14] A. Voskresenskiyv, Theoretical bases of processes of plasticization and filling of polymer, Kazan: KHTI, 1977, 79 p.

Google Scholar

[15] M.B. Neumann, Building and stabilization of polymers, M.: Chemistry, 1964, 396 p.

Google Scholar

[16] A.K. Mazitova, R.F. Nafikova, G.K. Aminova, Polyvinylchloride softeners, Science and era: monograph, under the general editorship of the prof. O.I. Kirikov, Voronezh, 2011, pp.276-296.

Google Scholar

[17] I.I. Farberova, Influence of filling and plasticization on wear resistance of plastic, Layer, masses. 4 (1967) 68-71.

Google Scholar

[18] O.Ya. Fedotova, N.M. Kozyreva, Theoretical bases of processing of polymers and plasts. Softeners, excipients, stabilizers. Under the editorship of M.S. Akutin, Moscow, RHTU, 1977, 54 p.

Google Scholar

[19] Processing of plastic, entrance of a general edition of A.D. Panimatchenko, SPb.: Profession, 2005, 320 p.

Google Scholar

[20] A.R. Maskova, The polyvinylchloride compositions of structural appointment plasticized the ftalatamioksialkilirovannykh of alcohols: autoref. yew.... Cand.Tech.Sci., Ufa, 2012, 24 p.

Google Scholar

[21] A.R. Maskova, G.K. Aminova, L.Z. Rolnik, G.F. Faizullina, A.K. Mazitova, Oxyalkylatedalcoholsphthalates, Nanotechnologies in Construction. 11, 1 (2019) 52–71.

DOI: 10.15828/2075-8545-2019-11-1-52-71

Google Scholar

[22] A.K. Mazitova, G.K. Aminova, A.R. Maskova, I.N. Sabitov, I.V. Nedoseko, New polyvinylchloride plasticizers, Nanotechnologies in Construction. 9, 6 (2017) 168–180.

DOI: 10.15828/20758545-2017-9-6-168-180

Google Scholar

[23] A.K. Mazitova, G.K. Aminova, A.R. Maskova, G.G. Yagafarova, R.M. Mazitov, New plasticizers for PVC-compositions in construction, Nanotechnologies in Construction. 9, 4 (2017) 48–63. DOI: dx.doi.org/10.15828/2075-8545-2017-9-4-48-63.

DOI: 10.15828/2075-8545-2017-9-4-48-63

Google Scholar

[24] G.K. Aminova, Synthesis and some properties of diethoxyoctylphthalates, Bashkir chemical magazine. 16, 3 (2009) 143-145.

Google Scholar

[25] A.K. Mazitova, G.K. Aminova, A.I. Gabitov, A.R. Maskova, R.G. Rakhmatullina, New softeners of special purpose PVC compositions, Bashkir chemical magazine. 22, 3 (2015) 23-26.

Google Scholar

[26] A.K. Mazitova, G.F. Aminova, A.I. Gabitov, A.R. Maskova, B.R. Husnutdinov, A.M. Fattakhova, Development of new softeners of polyvinylchloride, Oil and gas business. 12, 1 (2014) 120-127.

Google Scholar

[27] Mathematical model operation, Theoretical bases, Materials for a practical training and self-contained work of students, Study guide [Electronic resource]: educational and methodical complex, UGNTU, PED; G.U. Yarmukhametova, Ufa: UGNTU, (2018).

Google Scholar