<efrbr:recordSet xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:efrbr="http://vfrbr.info/efrbr/1.1" xmlns:efrbr-work="http://vfrbr.info/efrbr/1.1/work" xmlns:efrbr-expression="http://vfrbr.info/efrbr/1.1/expression" xmlns:efrbr-manifestation="http://vfrbr.info/efrbr/1.1/manifestation" xmlns:efrbr-person="http://vfrbr.info/efrbr/1.1/person" xmlns:efrbr-corporateBody="http://vfrbr.info/efrbr/1.1/corporateBody" xmlns:efrbr-concept="http://vfrbr.info/efrbr/1.1/concept" xmlns:efrbr-structure="http://vfrbr.info/efrbr/1.1/structure" xmlns:efrbr-responsible="http://vfrbr.info/efrbr/1.1/responsible" xmlns:efrbr-subject="http://vfrbr.info/efrbr/1.1/subject" xmlns:efrbr-other="http://vfrbr.info/efrbr/1.1/other" xsi:schemaLocation="http://vfrbr.info/efrbr/1.1 http://vfrbr.info/schemas/1.1/efrbr.xsd"><efrbr:entities><efrbr-work:work identifier="http://purl.tuc.gr/dl/dias/6AB0DD5C-4981-40CF-B4C6-24ACBD97C146"><efrbr-work:titleOfTheWork>Extensional viscosity of a thermotropic liquid crystalline polymer</efrbr-work:titleOfTheWork></efrbr-work:work><efrbr-expression:expression identifier="http://purl.tuc.gr/dl/dias/6AB0DD5C-4981-40CF-B4C6-24ACBD97C146"><efrbr-expression:titleOfTheExpression>Extensional viscosity of a thermotropic liquid crystalline polymer</efrbr-expression:titleOfTheExpression><efrbr-expression:formOfExpression vocabulary="DIAS:TYPES">
            Peer-Reviewed Journal Publication
            Δημοσίευση σε Περιοδικό με Κριτές
         </efrbr-expression:formOfExpression><efrbr-expression:dateOfExpression type="issued">2015-10-24</efrbr-expression:dateOfExpression><efrbr-expression:dateOfExpression type="published">2000</efrbr-expression:dateOfExpression><efrbr-expression:languageOfExpression vocabulary="iso639-1">en</efrbr-expression:languageOfExpression><efrbr-expression:summarizationOfContent>The transient extensional viscosity of the nematic melt of thermotropic liquid crystalline (LCP) copolyester Vectra A950 was measured in uniaxial extensional flow in a commercial constant strain rate rheometer. For extension rates between 0.005 and 1 s−1 the extensional viscosity of Vectra A950 does not reach steady state for Hencky strains up to three to four units, where most samples break. If the viscosity at a certain value of strain is plotted versus the strain rate, a rate-thinning curve is obtained. The extensional viscosity is much higher than three times the shear viscosity over a broad range of accumulated strain, while injection molded samples always show higher viscosity than compressed samples. The theory developed by Larson and Doi [Larson, R. L. and M. Doi, J. Rheol. 35, 539–563 (1991)] to describe the flow of polydomain LCPs has been adapted for use in elongational flow. The trends of the predictions agree with the measured stress growth curves. The flow seems to be dominated by the effect of the texture. The variation in the viscositymeasured in samples prepared by different methods is attributed to the variation in the liquid crystalline structure present in the samples and in particular to the initial domain size.</efrbr-expression:summarizationOfContent><efrbr-expression:useRestrictionsOnTheExpression type="creative-commons">http://creativecommons.org/licenses/by/4.0/</efrbr-expression:useRestrictionsOnTheExpression><efrbr-expression:note type="journal name">Journal of Rheology</efrbr-expression:note><efrbr-expression:note type="journal volume">44</efrbr-expression:note><efrbr-expression:note type="journal number">5</efrbr-expression:note><efrbr-expression:note type="page range">1205-1223</efrbr-expression:note></efrbr-expression:expression><efrbr-person:person identifier="http://users.isc.tuc.gr/~gotsis"><efrbr-person:nameOfPerson vocabulary="TUC:LDAP">
            Gotsis Alexandros
            Γκοτσης Αλεξανδρος
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-person:person identifier="D63CF77C-74EE-4A6E-BF2E-2F87E9C5B461"><efrbr-person:nameOfPerson vocabulary="">
            Odriozola Arantza
         </efrbr-person:nameOfPerson></efrbr-person:person><efrbr-corporateBody:corporateBody identifier="http://www.aip.org/"><efrbr-corporateBody:nameOfTheCorporateBody vocabulary="S/R:PUBLISHERS">
            AIP Publishing
         </efrbr-corporateBody:nameOfTheCorporateBody></efrbr-corporateBody:corporateBody><efrbr-concept:concept identifier="http://id.loc.gov/authorities/subjects/sh85143858"><efrbr-concept:termForTheConcept>
            Gases--Viscosity
            Internal friction (Liquids)
            Liquids--Viscosity
            viscosity
            gases viscosity
            internal friction liquids
            liquids viscosity
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="http://id.loc.gov/authorities/subjects/sh85077357"><efrbr-concept:termForTheConcept>
            Crystals, Liquid
            liquid crystals
            crystals liquid
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="http://id.loc.gov/authorities/subjects/sh87000316"><efrbr-concept:termForTheConcept>
            Crystals, Polymer liquid
            Liquid crystal polymers
            Liquid crystalline polymers
            Liquid crystals, Polymer
            Polymeric liquid crystals
            polymer liquid crystals
            crystals polymer liquid
            liquid crystal polymers
            liquid crystalline polymers
            liquid crystals polymer
            polymeric liquid crystals
         </efrbr-concept:termForTheConcept></efrbr-concept:concept><efrbr-concept:concept identifier="81C0537E-BD72-4EFA-9A8E-425731916AC2"><efrbr-concept:termForTheConcept>
            Shear rate dependent viscosity
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