THE DEGRADATION OF THE OPTICAL CHARACTERISTICS OF POLYALKYLIMIDE WHEN IRRADIATED BY ELECTRONS
Abstract and keywords
Abstract (English):
The article discusses the effect of electron irradiation on the samples of polyalkylimide at normal temperatures. Irradiation of the samples the electron fluence of 5•1015 cm-2 with energy of 150 Kev were carried out in vacuum at a pressure of not more than 10-4 PA. The paper presents spectra of diffuse reflectance in the solar range (0,22 – 2,1 µm) before and after irradiation of samples by accelerated electrons in modes. Shows the decrease in the values of the spectra of diffuse reflection of polyalkylimide, which leads to increase absorption coefficient. After irradiation of the sample polyalkylimide electrons at normal temperatures the integrated absorption coefficient increased by 4,5 % 0,452 to 0,472. The increase in the integral absorption coefficient for polyalkylimide after irradiation by electrons at ordinary temperature does not exceed the permissible values that satisfy the statutory conditions. The expediency of use of polyalkylimide as a matrix for creating polymer composites thermoregulatory purposes.

Keywords:
electron irradiation, the Overdrive mode, diffuse reflectance spectra, thermoregulation
References

1. Akishin A.I. Kosmicheskoe materialovedenie. Metodicheskoe i uchebnoe posobie. M: NIIYaF MGU, 2007. 209 s.

2. Kiseleva L.V., Strapolova V.N., Tokar´ S.V., Prosvirikov V.M., Kostyuk V.I. Issledovanie novykh TRP klassa «Istinnyy poglotitel´». Perspektivnye materialy. 2011. № 11. S. 376-382.

3. Shamaev A.M. Prognozirovanie izmene-niya opticheskikh kharakteristik termoreguliruyushchikh pokrytiy v protsesse ekspluatatsii KA. V sbornike: Innovatsionnye aspekty sotsial´no-ekonomicheskogo razvitiya regiona, sbornik statey po materialam uchastnikov V ezhegodnoy nauchnoy konferentsii (aspirantov FTA). 2014. S. 612-621.

4. Mikhaylov M.M., Neshchimenko V.V., Skripka N.G., Khokhlov R.N. Opticheskie svoystva i radiatsionnaya stoykost´ poroshkov dioksida tsirkoniya, modifitsirovannykh redkozemel´nymi elementami. Perspektivnye materialy. 2010. № 3. S. 14-2¬2.

5. Mikhaylov M.M., Lapin A.N., Andriets S.P., Dedov N.V. Spektry diffuzionnogo otrazheniya i ikh izmenenie pri obluchenii elektronami mikro-, modifitsirovannykh i nanoporoshkov oksida alyuminiya. Izvestiya vysshikh uchebnykh zavedeniy. Fizika. 2009. T. 52. № 10. S. 32-37.

6. Mikhaylov M.M., Sokolovskiy A.N. Radiatsionnaya stoykost´ pigmentov ZnO, legirovannykh peroksoboratom kaliya. Poverkhnost´. Rentgenovskie, sinkhrotronnye i neytronnye issledovaniya. 2006. № 5. S. 72-78.

7. Mikhaylov M.M., Sokolovskiy A.N. Is-sledovanie radiatsionnoy stoykosti pokrytiy na osnove dioksida titana s dobavkami nanoporoshkov A12O3 I ZrO2. Poverkhnost´. Rentgenovskie, sinkhrotronnye i neytronnye issledovaniya. 2006. № 8. S. 79-85.

8. Mikhaylov M.M. O vozmozhnosti povysheniya radiatsionnoy stoykosti poroshkov TiO2 (rutil) progrevom v kislorode. Poverkhnost´. Rentgenovskie, sinkhrotronnye i neytronnye issledovaniya. 2007. № 7. S. 102-106.

9. Mikhaylov M.M. O vozmozhnosti povysheniya radiatsionnoy stoykosti poroshkov TiO2 pri UF-obluchenii na vozdukhe. Poverkhnost´. Rentgenovskie, sinkhrotronnye i neytronnye issledovaniya. 2007. № 10. S. 68-72.

10. Kalugina E.V., Gumargalieva K.Z., Zaikov G.E. Polialkanimidy: monografiya, Izdatel´stvo: Nauchnye osnovy i tekhnologii, Sankt-Peterburg, 2008. 262 s.

11. Voloshinov E.B. Vyazkouprugoe povedenie polialkanimida v shirokom intervale temperatur. V sbornike: Materialy 65-oy Mezhdunarodnoy nauchno-tekhnicheskoy konferentsii Assotsiatsii avtomobil´nykh inzhenerov (AAI) Prioritety razvitiya otechestvennogo avtotraktorostroeniya i podgotovki inzhenernykh i nauchnykh kadrov, Mezhdunarodnogo nauchnogo simpoziuma "Avtotraktorostroenie - 2009" 2009. S. 1-5.

12. Sukhoroslova V.V. Ustanovka dlya spetsial´nykh ispytaniy dielektrikov vysokoenergeticheskim elektronnym izlucheniem. Mezhdunarodnyy nauchno-issledovatel´skiy zhurnal. 2014. № 9 (28). S. 53-54.

13. Panasyuk M.I. Relyativistskie elektrony v kosmose. Zemlya i Vselennaya. 2013. № 6. S. 15-19.

14. Novikov L.S. Radiatsionnye vozdey-stviya na materialy kosmicheskikh apparatov: uchebnoe posobie. Moskva: Universitetskaya kniga, 2010. 192 s.

15. Bezrodnykh I.P., Tyutnev A.P., Semenov V.T. Radiatsionnye effekty v kosmose. Chast´ 2. Vozdeystvie kosmicheskoy radiatsii na elektrotekhnicheskie materialy. Moskva: AO «Korporatsiya «VNIIEM», 2016. 122 s.


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