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Title: | The behaviour of cross-linking filled PBT measured by nano-hardness | ||||||||||
Author: | Ovsík, Martin; Šenkeřík, Vojtěch; Maňas, David; Staněk, Michal | ||||||||||
Document type: | Peer-reviewed article (English) | ||||||||||
Source document: | MM Science Journal. 2016, vol. 2016, issue OCTOBER, p. 1110-1113 | ||||||||||
ISSN: | 1803-1269 (Sherpa/RoMEO, JCR) | ||||||||||
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DOI: | https://doi.org/10.17973/MMSJ.2016_10_201678 | ||||||||||
Abstract: | Radiation crosslinking of filled PBT is a well-recognized modification of improving basic material characteristics. Radiation, which penetrated through specimens and reacted with the cross-linking agent, gradually formed cross-linking (3D net), first in the surface layer and then in the total volume, which resulted in considerable changes in specimen behaviour. The specimens of 30% glass fiber filled PBT were made by injection moulding technology and irradiated by doses of beta radiation (0, 33, 66 and 99 kGy). The change of nano-mechanical properties is greatly manifested mainly in the surface layer of the modified PBT where a significant growth of nano-mechanical values can be observed. Indentation modulus increased from 1.1 to 1.8 GPa (increasing about 64%) and indentation hardness increased from 56 to 85 MPa (increasing about 52%).The results of the measurements showed considerable increase in nano-mechanical properties (indentation hardness, indentation elastic modulus, indentation creep) when beta radiation are used. © 2016, MM publishing Ltd. All rights reserved. | ||||||||||
Full text: | http://www.mmscience.eu/october-2016.html | ||||||||||
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