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dc.contributor.authorN. Jaitanongen_US
dc.contributor.authorR. Yimnirunen_US
dc.contributor.authorH. R. Zengen_US
dc.contributor.authorG. R. Lien_US
dc.contributor.authorQ. R. Yinen_US
dc.contributor.authorA. Chaipanichen_US
dc.date.accessioned2018-09-04T09:50:18Z-
dc.date.available2018-09-04T09:50:18Z-
dc.date.issued2014-09-01en_US
dc.identifier.issn0167577Xen_US
dc.identifier.other2-s2.0-84902182602en_US
dc.identifier.other10.1016/j.matlet.2014.05.040en_US
dc.identifier.urihttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84902182602&origin=inwarden_US
dc.identifier.urihttp://cmuir.cmu.ac.th/jspui/handle/6653943832/53490-
dc.description.abstractNew and novel cement-based piezoelectric composites were fabricated using lead zirconate titanate (PZT), polyvinylidene fluoride (PVDF) and Portland cement (PC). Dielectric constant (ε33), piezoelectric charge coefficient (d33) and piezoelectric voltage coefficient (g33) of the PZT-PVDF-PC composites with 50 vol% PZT and 1-20 vol% PVDF content were investigated. The results indicated that PVDF as a third phase was found to enhance piezoelectric properties where piezoelectric charge coefficient (d33) and piezoelectric voltage coefficient (g33) increased to 24 pC/N and 25.7×10-3Vm/N respectively when PVDF was added at 5 vol%. Moreover, a significant reduction in the poling time was found when PVDF was incorporated in the 0-3 composites. © 2014 Elsevier B.V.en_US
dc.subjectEngineeringen_US
dc.subjectMaterials Scienceen_US
dc.subjectPhysics and Astronomyen_US
dc.titlePiezoelectric properties of cement based/PVDF/PZT compositesen_US
dc.typeJournalen_US
article.title.sourcetitleMaterials Lettersen_US
article.volume130en_US
article.stream.affiliationsChiang Mai Universityen_US
article.stream.affiliationsSuranaree University of Technologyen_US
article.stream.affiliationsShanghai Institute of Ceramics Chinese Academy of Sciencesen_US
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