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Název: | The Influence of nucleating agents and process parameters on phase structure of isotactic polypropylene and its copolymer with 3% ethylene | ||||||||||
Autor: | Jakubíček, Josef; Hřibová, Martina; Kučera, Jaroslav; Kubišová, Milena | ||||||||||
Typ dokumentu: | Recenzovaný odborný článek (English) | ||||||||||
Zdrojový dok.: | Manufacturing Technology. 2016, vol. 16, issue 1, p. 103-106 | ||||||||||
ISSN: | 1213-2489 (Sherpa/RoMEO, JCR) | ||||||||||
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DOI: | https://doi.org/10.21062/UJEP/X.2016/A/1213-2489/MT/16/1/103 | ||||||||||
Abstrakt: | The homopolymer of the isotactic polypropylene (iPP) and the random copolymer of the isotactic polypropyleneand 3% ethylene (iPPE) were used in this study. Isotactic polypropylene can be prepared in α, β and γ morphologicalphases depending on its crystallization conditions. The phase β content has a strong influence on mechanical,optical and thermal properties. The samples with nucleating agents (NA) α and β were used. Various processparameters were used to prepare melted samples: two thicknesses and three different cooling regimes. Wide-angleX-ray scattering (WAXD) and scanning electron microscopy (SEM) were used to investigate the phase structure.The results show that iPP without nucleation agents (4mm, <1°C /min) has the highest crystallinity (83.7%). Thesample of iPP with β-NA (4mm, <1°C /min) has the highest phase β (61.3%); the slower cooling regime and thehigher thickness increased the crystallinity (73.3%). iPPE with β-NA (0.4mm, 15°C /min) has the lower amount ofthe phase β (33.8%); the higher thickness and slower cooling regime decreased the amount of the phase β (7.1%)however the crystalline content of iPPE (63.7%) is increased. © 2016 Published by Manufacturing Technology. | ||||||||||
Plný text: | http://journal.strojirenskatechnologie.cz/templates/obalky_casopis/XVI_2016-1.pdf | ||||||||||
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