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dc.contributor.authorDoğan, Mehmet
dc.contributor.authorGündüz, Zürriye
dc.contributor.authorKızılduman, Berna Koçer
dc.contributor.authorBeyli, Pınar Turan
dc.contributor.authorTurhan, Yasemin
dc.contributor.authorDoğan, Serap
dc.contributor.authorDiken, Mehmet Emin
dc.date.accessioned2023-09-07T08:23:42Z
dc.date.available2023-09-07T08:23:42Z
dc.date.issued2022en_US
dc.identifier.issn1465-8011 / 1743-2898
dc.identifier.urihttps://doi.org/10.1080/14658011.2022.2106727
dc.identifier.urihttps://hdl.handle.net/20.500.12462/13331
dc.descriptionMinistry of Energy & Natural Resources - Turkey 2009.C0231en_US
dc.description.abstractNano boron oxide (B2O3) was firstly produced from granular B2O3 by ball milling under cryogenic conditions. Then, PMMA/B2O3 nanocomposites were synthesized by melting method and then characterized. Finally, the rheological properties of PMMA/B2O3 nanocomposite were investigated using a high pressure capillary rheometer. BraunerEmmet-Teller (BET) surface area analysis showed that the surface area of B2O3 increased with cryogenic grinding. Transmission electron microscopy (TEM) images revealed that B2O3 particles were nano-sized. Scanning electron microscopy (SEM) images showed that the morphology changed with the increase of B2O3 amount. The thermal stability of nanocomposites was found to be better than PMMA. PMMA degraded in two steps, while nanocomposites degraded in one step. It was determined that the amount of residue increased with increasing amount of B2O3. Both PMMA and nanocomposites exhibited nonNewtonian shear thinning flow behavior. In addition, rheological data were found to be highly compatible with the Power Law model.en_US
dc.language.isoengen_US
dc.publisherTaylor & Francis Ltden_US
dc.relation.isversionof10.1080/14658011.2022.2106727en_US
dc.rightsinfo:eu-repo/semantics/embargoedAccessen_US
dc.subjectNanocompositeen_US
dc.subjectThermal Stabilityen_US
dc.subjectRheological Propertiesen_US
dc.titleThermal stability and rheological properties of PMMA/B2O3 nanocomposites synthesised by melting methoden_US
dc.typearticleen_US
dc.relation.journalPlastics, Rubber and Compositesen_US
dc.contributor.departmentFen Edebiyat Fakültesien_US
dc.contributor.authorID0000-0002-3707-0497en_US
dc.identifier.volume52en_US
dc.identifier.issue3en_US
dc.identifier.startpage186en_US
dc.identifier.endpage196en_US
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US


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