Investigation of advanced mica powder nanocomposite filler materials: Surface energy analysis, powder rheology and sound absorption performance

dc.contributor.authorLapčík, Lubomír
dc.contributor.authorVašina, Martin
dc.contributor.authorLapčíková, Barbora
dc.contributor.authorOtyepková, Eva
dc.contributor.authorWaters, Kristian Edmund
dc.date.accessioned2015-07-23T11:13:20Z
dc.date.available2015-07-23T11:13:20Z
dc.date.issued2015
dc.description.abstractTwo types of nano/micro sized mica powders for polymer composites, muscovite and phlogopite, were tested for their sound absorption capabilities. Acoustical performance was correlated to surface energy analysis and powder rheology testing. Inverse gas chromatography (iGC) was used to determine the surface energy, with the dominant component being the dispersive component. This reflected the non-polar, hydrophobic, character of the micas. The determined yield locus and Mohr's circles indicated that the material with the highest packing density exhibited more free flowing powder characteristics, compared with the lower packing density materials, which exhibited a greater cohesive powder flow behaviour. All tested mica powders were sensitive to aeration and become fluidised. Based on the acoustical measurements the worst sound absorption performance was found for the highest packing density material exhibiting the highest magnitude of the longitudinal elastic coefficient.cs
dc.description.firstpage304cs
dc.description.lastpage310cs
dc.description.sourceWeb of Sciencecs
dc.description.volume77cs
dc.identifier.citationComposites Part B: Engineering. 2015, vol. 77, p. 304-310.cs
dc.identifier.doi10.1016/j.compositesb.2015.03.056
dc.identifier.issn1359-8368
dc.identifier.issn1879-1069
dc.identifier.urihttp://hdl.handle.net/10084/110443
dc.identifier.wos000356754100035
dc.language.isoencs
dc.publisherElseviercs
dc.relation.ispartofseriesComposites Part B: Engineeringcs
dc.relation.urihttp://dx.doi.org/10.1016/j.compositesb.2015.03.056cs
dc.rightsCopyright © 2015 Elsevier Ltd. All rights reserved.cs
dc.titleInvestigation of advanced mica powder nanocomposite filler materials: Surface energy analysis, powder rheology and sound absorption performancecs
dc.typearticlecs
dc.type.statusPeer-reviewedcs

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