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dc.contributor.authorFujino, Masayasuen
dc.contributor.authorTaniguchi, Takashien
dc.contributor.authorKawaguchi, Yasuhiroen
dc.contributor.authorOhshima, Masahiroen
dc.contributor.alternative大嶋, 正裕ja
dc.date.accessioned2013-10-22T01:20:25Z-
dc.date.available2013-10-22T01:20:25Z-
dc.date.issued2013-12-
dc.identifier.issn0009-2509-
dc.identifier.urihttp://hdl.handle.net/2433/179293-
dc.description.abstractThermally expandable microcapsules, often called microspheres or microballoons, are utilized in compression, injection molding and extrusion processes to foam different types of polymers. Microballoons consist of a polymer shell and a liquid hydrocarbon core. Hydrocarbons are used as a physical blowing agent. In this study, a mathematical model was developed to describe the expansion behavior of a microballoon in air and in a polymer matrix. The model was used to determine the key factors in improving the expandability of the balloon at designated temperatures. The viscoelastic properties of the polymer shell, evaporation of hydrocarbons in the balloon and diffusion behavior of the blowing agent through the polymer shell were taken into account in the model. The results of the developed model showed quite good agreement with the experimentally observed thermal expansion behavior of a microballoon. A sensitivity analysis of the expansion behavior with respect to the properties of the microballoon was also conducted to devise an optimal design strategy for high-expansion microballoons.en
dc.format.mimetypeapplication/pdf-
dc.language.isoeng-
dc.publisherElsevier Ltd.en
dc.rights© 2013 Elsevier Ltd.en
dc.rightsThis is not the published version. Please cite only the published version.en
dc.rightsこの論文は出版社版でありません。引用の際には出版社版をご確認ご利用ください。ja
dc.subjectMicroballoonen
dc.subjectMicrosphereen
dc.subjectExpandabilityen
dc.subjectMathematical modelingen
dc.subjectPolymer processingen
dc.subjectViscoelasticityen
dc.titleMathematical models and numerical simulations of a thermally expandable microballoon for plastic foamingen
dc.typejournal article-
dc.type.niitypeJournal Article-
dc.identifier.ncidAA0060198X-
dc.identifier.jtitleChemical Engineering Scienceen
dc.identifier.volume104-
dc.identifier.spage220-
dc.identifier.epage227-
dc.relation.doi10.1016/j.ces.2013.09.010-
dc.textversionauthor-
dcterms.accessRightsopen access-
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