Effect of thermomechanical impacts on the deformation of thin polyimide films at uniaxial tension

Bibliographic Details
Parent link:IOP Conference Series: Materials Science and Engineering
Vol. 754 : High Technology: Research and Applications (HTRA-2019).— 2020.— [012012, 6 p.]
Corporate Author: Национальный исследовательский Томский политехнический университет Инженерная школа новых производственных технологий Отделение материаловедения
Other Authors: Kupchishin A. I., Taipova B. G., Niyazov M. N., Lisitsyn V. M. Viktor Mikhailovich, Voronova N. A.
Summary:Title screen
Thermomechanical studies of the dependence of deformation on time (t) and temperature (T) for various static stresses in polyimide under uniaxial tension were carried out. Temporal deformation curves for static stresses in the range from 75 to 110 MPa consist of two stages: 1 - increase; 2 - exit to saturation, which is associated with a change in the nature of structural transformations of macromolecules, due to the action of the static stresses. An increase in temperature and voltage leads to an increase in the dependence e (Т). This is due to the intensification of the processes of structuring macromolecules with increasing temperature and are supplemented by processes of breaking bonds between macromolecules, which increase the strain rate. Experimental data are described in terms of exponential and linear models.
Language:English
Published: 2020
Subjects:
Online Access:http://dx.doi.org/10.1088/1757-899X/754/1/012012
http://earchive.tpu.ru/handle/11683/58043
Format: Electronic Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=661921

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200 1 |a Effect of thermomechanical impacts on the deformation of thin polyimide films at uniaxial tension  |f A. I. Kupchishin, B. G. Taipova, M. N. Niyazov [et al.] 
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330 |a Thermomechanical studies of the dependence of deformation on time (t) and temperature (T) for various static stresses in polyimide under uniaxial tension were carried out. Temporal deformation curves for static stresses in the range from 75 to 110 MPa consist of two stages: 1 - increase; 2 - exit to saturation, which is associated with a change in the nature of structural transformations of macromolecules, due to the action of the static stresses. An increase in temperature and voltage leads to an increase in the dependence e (Т). This is due to the intensification of the processes of structuring macromolecules with increasing temperature and are supplemented by processes of breaking bonds between macromolecules, which increase the strain rate. Experimental data are described in terms of exponential and linear models. 
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