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dc.contributor.authorPillai, S. K.en
dc.contributor.authorHadjiafxenti, A.en
dc.contributor.authorDoumanidis, C. C.en
dc.contributor.authorAndo, T.en
dc.contributor.authorRebholz, Clausen
dc.creatorPillai, S. K.en
dc.creatorHadjiafxenti, A.en
dc.creatorDoumanidis, C. C.en
dc.creatorAndo, T.en
dc.creatorRebholz, Clausen
dc.date.accessioned2019-05-06T12:24:21Z
dc.date.available2019-05-06T12:24:21Z
dc.date.issued2012
dc.identifier.urihttp://gnosis.library.ucy.ac.cy/handle/7/48723
dc.description.abstractThe fabrication and characterization of metal-based energetic composite materials are currently being examined for a range of new applications. A newly developed ultrasonic consolidation process is used for the synthesis of Al/Fe 2O 3 and Al/Cu 2O compacts over a wide range of powder ratios at room temperature. Powder consolidation was achieved by a multistep procedure involving simultaneous application of pressure and ultrasonic vibrations. The observed reaction characteristics of the composites are similar to those of previously reported thermite compacts prepared by a traditional powder metallurgy method. © 2011 The American Ceramic Society.en
dc.language.isoengen
dc.sourceInternational Journal of Applied Ceramic Technologyen
dc.subjectSynthesis (chemical)en
dc.subjectRoom temperatureen
dc.subjectPowder metalsen
dc.subjectPowder consolidationsen
dc.subjectReaction characteristicsen
dc.subjectUltrasonicsen
dc.subjectIgnition characteristicsen
dc.subjectMulti-step proceduresen
dc.subjectNew applicationsen
dc.subjectPowder metallurgyen
dc.subjectThermitesen
dc.subjectUltrasonic Consolidationen
dc.subjectUltrasonic vibrationen
dc.titleUltrasonic consolidation and ignition characteristics of thermite compositesen
dc.typeinfo:eu-repo/semantics/article
dc.identifier.doi10.1111/j.1744-7402.2011.02655.x
dc.description.volume9
dc.description.startingpage206
dc.description.endingpage213
dc.author.facultyΠολυτεχνική Σχολή / Faculty of Engineering
dc.author.departmentΤμήμα Μηχανικών Μηχανολογίας και Κατασκευαστικής / Department of Mechanical and Manufacturing Engineering
dc.type.uhtypeArticleen
dc.description.totalnumpages206-213


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