The eff ect of thermo-oxidative aging on the structure and properties of polysulfone and prediction of its service life

Author:

Peksimov O. E.1,Andreeva T. I.1,Balabanova V. A.1,Kazakov S. I.1,Dinzburg I. L.1,Molotkova N. N.1

Affiliation:

1. Joint-Stock Company "Institute of Plastics named after G.S. Petrov"

Abstract

The eff ect of thermal oxidative aging on the structure and properties of polysulfones PSF-190 (Institute of Plastics JSC, Russia) and Udel P1700 (Solvay Specialty Polymers, Belgium) has been studied. The shelf life of the selected grades of polysulfones has been predicted. The diff erence in the course of the low-temperature thermo-oxidative aging process for PSF-190 and Udel P1700 is shown. It was found that the main changes in such characteristics as density, tensile yield stress, elongation at break occur during the fi rst 250 hours of thermo-oxidative aging. The value of the specifi c volume electrical resistance of polysulfones does not change under the infl uence of temperature and time under conditions of low-temperature thermo-oxidative aging.

Publisher

Publishing House Plastic Ltd

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

Reference12 articles.

1. Pavlov N.N. Starenie plastmass v estestvennykh i iskusstvennykh usloviyakh. M.: Khimiya, 1982. -224 s.

2. Kuroda S.I., Terarechi K., Negani K., Mita I. Degradation of aromatic polymers. 1. Rates of crosslinking and chain scission during thermal degradation of several soluble aromatic polymers. Eur. Polym. J. 1989. vol. 25. №1. p. 1-7.

3. Bolotina L.M., Chebotarev V.P. Razvitie issledovanii v oblasti khimii i tekhnologii aromaticheskikh polisul'fonov. // Plasticheskie massy, 2003, №11, s. 3-7.

4. Matsuoka S. Failure of plastics., Ed. Broetow. N.Y.: SPE and Hausor. 1986. Ch.3.

5. Launterbur P. In determination of organic structures by physical methods., Ed. Nachod F.C. N.Y.: Academic Press. 1962, vol. 2. p. 7.

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