Uniaxial stress and electron irradiation effects on nanochains straightening in film polymer materials

Natalia A. Voronova, Anatoly I. Kupchishin, Marat N. Niyazov, Viktor M. Lisitsyn

    Research output: Chapter in Book/Report/Conference proceedingConference contribution

    4 Citations (Scopus)

    Abstract

    Effects of uniaxial stress, temperatures and electron irradiation on nanochain straightening in film polymer materials (polytetrafluoroethylene and lavsan) have been studied comprehensively. Essential change in material behavior including chain straightening was found in strain (e) - stress (σ) curves.

    Original languageEnglish
    Title of host publicationHigh Technology
    Subtitle of host publicationResearch and Applications 2017
    EditorsGeorgii E. Osokin, Ekaterina A. Kulinich
    PublisherTrans Tech Publications Ltd
    Pages78-83
    Number of pages6
    ISBN (Print)9783035712810
    DOIs
    Publication statusPublished - 1 Jan 2018
    Event6th International Conference for Young Scientists High Technology: Research and Applications, HTRA 2017 - Tomsk, Russian Federation
    Duration: 27 Nov 201729 Nov 2017

    Publication series

    NameKey Engineering Materials
    Volume769 KEM
    ISSN (Print)1013-9826

    Conference

    Conference6th International Conference for Young Scientists High Technology: Research and Applications, HTRA 2017
    CountryRussian Federation
    CityTomsk
    Period27.11.1729.11.17

    Fingerprint

    Straightening
    Electron irradiation
    Polymer films
    Polytetrafluoroethylene
    Polytetrafluoroethylenes
    Temperature
    Lavsan

    Keywords

    • Dose
    • Electrons
    • Irradiation
    • Polyethylenterephtalate
    • Polymer materials
    • Polytetrafluoroethylene
    • Strain
    • Uniaxial stress

    ASJC Scopus subject areas

    • Materials Science(all)
    • Mechanics of Materials
    • Mechanical Engineering

    Cite this

    Voronova, N. A., Kupchishin, A. I., Niyazov, M. N., & Lisitsyn, V. M. (2018). Uniaxial stress and electron irradiation effects on nanochains straightening in film polymer materials. In G. E. Osokin, & E. A. Kulinich (Eds.), High Technology: Research and Applications 2017 (pp. 78-83). (Key Engineering Materials; Vol. 769 KEM). Trans Tech Publications Ltd. https://doi.org/10.4028/www.scientific.net/KEM.769.78

    Uniaxial stress and electron irradiation effects on nanochains straightening in film polymer materials. / Voronova, Natalia A.; Kupchishin, Anatoly I.; Niyazov, Marat N.; Lisitsyn, Viktor M.

    High Technology: Research and Applications 2017. ed. / Georgii E. Osokin; Ekaterina A. Kulinich. Trans Tech Publications Ltd, 2018. p. 78-83 (Key Engineering Materials; Vol. 769 KEM).

    Research output: Chapter in Book/Report/Conference proceedingConference contribution

    Voronova, NA, Kupchishin, AI, Niyazov, MN & Lisitsyn, VM 2018, Uniaxial stress and electron irradiation effects on nanochains straightening in film polymer materials. in GE Osokin & EA Kulinich (eds), High Technology: Research and Applications 2017. Key Engineering Materials, vol. 769 KEM, Trans Tech Publications Ltd, pp. 78-83, 6th International Conference for Young Scientists High Technology: Research and Applications, HTRA 2017, Tomsk, Russian Federation, 27.11.17. https://doi.org/10.4028/www.scientific.net/KEM.769.78
    Voronova NA, Kupchishin AI, Niyazov MN, Lisitsyn VM. Uniaxial stress and electron irradiation effects on nanochains straightening in film polymer materials. In Osokin GE, Kulinich EA, editors, High Technology: Research and Applications 2017. Trans Tech Publications Ltd. 2018. p. 78-83. (Key Engineering Materials). https://doi.org/10.4028/www.scientific.net/KEM.769.78
    Voronova, Natalia A. ; Kupchishin, Anatoly I. ; Niyazov, Marat N. ; Lisitsyn, Viktor M. / Uniaxial stress and electron irradiation effects on nanochains straightening in film polymer materials. High Technology: Research and Applications 2017. editor / Georgii E. Osokin ; Ekaterina A. Kulinich. Trans Tech Publications Ltd, 2018. pp. 78-83 (Key Engineering Materials).
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