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Property evaluation and structure analysis of polyurethane/epoxy graft interpenetrating polymer networks

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dc.title Property evaluation and structure analysis of polyurethane/epoxy graft interpenetrating polymer networks en
dc.contributor.author Kostrzewa, Marcin
dc.contributor.author Hausnerová, Berenika
dc.contributor.author Bakar, Mohamed Abu
dc.contributor.author Dalka, M.
dc.relation.ispartof Journal of Applied Polymer Science
dc.identifier.issn 0021-8995 Scopus Sources, Sherpa/RoMEO, JCR
dc.date.issued 2011
utb.relation.volume 122
utb.relation.issue 3
dc.citation.spage 1722
dc.citation.epage 1730
dc.type article
dc.language.iso en
dc.publisher Wiley-Blackwell en
dc.identifier.doi 10.1002/app.34070
dc.relation.uri http://onlinelibrary.wiley.com/doi/10.1002/app.34070/full
dc.subject composites en
dc.subject interpenetrating polymer networks (IPN) en
dc.subject mechanical properties en
dc.subject polyurethanes en
dc.subject resins en
dc.description.abstract Polyurethanes obtained from 4,4′-diphenylmethane diisocyanate (MDI) and polydiols with different molecular weights (polyethylene glycol and polyoxypropylene diols) were used as modifiers for diglycidyl ether of bisphenol A. Impact strength (IS), critical stress intensity factor (KC), flexural strength and flexural strain at break were measured as a function of polyurethane (PUR) type and content. Scanning electron microscopy (SEM), differential scanning calorimetry (DSC), and infrared spectroscopy (FTIR) were employed for the structure and morphology analysis. It was found that the addition of polyurethane with an excess of isocyanate groups to epoxy resin resulted in the formation of a grafted interpenetrating polymer network structure. The mechanical properties of epoxy resin were improved with 5 and 10% PUR. Moreover, it was observed that composites containing PUR based on higher molecular weight (PUR 1002 and PUR 2002) with long flexible segments exhibited higher impact strength while PUR prepared from polyethylene glycol had a higher flexural energy to break and a higher flexural modulus. © 2011 Wiley Periodicals, Inc. en
utb.faculty Faculty of Technology
dc.identifier.uri http://hdl.handle.net/10563/1002608
utb.identifier.rivid RIV/70883521:28110/11:43865693!RIV12-MSM-28110___
utb.identifier.obdid 43865709
utb.identifier.scopus 2-s2.0-79960562543
utb.identifier.wok 000293849200031
utb.identifier.coden JAPNA
utb.source j-scopus
dc.date.accessioned 2012-02-10T13:15:15Z
dc.date.available 2012-02-10T13:15:15Z
utb.contributor.internalauthor Kostrzewa, Marcin
utb.contributor.internalauthor Hausnerová, Berenika
utb.fulltext.affiliation M. Kostrzewa,1,2 B. Hausnerova,1 M. Bakar,2 M. Dalka2 1 Tomas Bata University in Zlin, Faculty of Technology, Polymer Centre, Czech Republic 2 Department of Organic Materials Technology, Technical University of Radom, Poland
utb.fulltext.dates Received 15 October 2010 accepted 29 December 2010
utb.fulltext.sponsorship -
utb.fulltext.projects -
utb.fulltext.faculty Faculty of Technology
utb.fulltext.ou Polymer Centre
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