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Influence of the rubber content and particle morphology on the mechanical properties of the (hiPP)

The effect of the final morphology and the role of ethylene propylene rubber (EPR) content and (iPP) particle size on the mechanical properties of (iPP/EPR) in situ blends are investigated. The addition of EPR causes a significant improvement in the impact strength of the composites, from 20 kJ/m2 i... Full description

Contained in: Journal of Applied Polymer Science Vol. 133, No. 46 (2016), p. 44197/1-6
Journal Title: Journal of Applied Polymer Science
Fulltext access:
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Links: Additional Link (dx.doi.org)
ISSN: 1097-4628
Additional Keywords: ELEKTRONENMIKROSKOPIE
KORNGROESSE
PARTIKELMORPHOLOGIE
POLYPROPYLEN
PROPEN
STOFFGEMISCH
VERBUNDWERKSTOFF
ZUGFESTIGKEIT
DOI: 10.1002/app.44197
Notes: Copyright: Metadaten: TEMA, Copyright WTI-Frankfurt eG
Copyright: (C) Alle Rechte beim Herausgeber
Physical Description: 6 Seiten
ID (e.g. DOI, URN): 10.1002/app.44197
PPN (Catalogue-ID): WTI002077639
Note: WTI TEMA DB
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520 |a The effect of the final morphology and the role of ethylene propylene rubber (EPR) content and (iPP) particle size on the mechanical properties of (iPP/EPR) in situ blends are investigated. The addition of EPR causes a significant improvement in the impact strength of the composites, from 20 kJ/m2 in unthoughned composite iPP to 100 kJ/m2 in iPP/EPR composites containing 50% EPR. Conversely, the tensile strength and the Young's modulus of the blends decrease as the EPR amount increases. The mechanical tensile strength is similar for the composite which have a time of homopolymerization less or equal to 60 min, and a higher value is observed in the case of 100 min. The scanning electron microscopy characterization shows that the larger the iPP particle is, the less the rubber settles on the surface of the high impact polypropylene and the less the final material is resistant to shocks. [Copyright John Wiley & Sons. Reproduced with permission.] 
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