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dc.contributor.authorBelgacem, Rokia-
dc.contributor.authorTouil, Ahmed Rafik-
dc.date.accessioned2020-10-18T11:04:38Z-
dc.date.available2020-10-18T11:04:38Z-
dc.date.issued2020-
dc.identifier.urihttp://di.univ-blida.dz:8080/jspui/handle/123456789/6396-
dc.descriptionill., Bibliogr.fr_FR
dc.description.abstractA lab-on-a-chip (LOC) is a device that offers one or several laboratory functions using microfluidic devices such as micropump, microvalves … etc., which manipulate fluid in microchannel (mixing, pumping, change direction …etc), and the important component in microfluidics devices are the actuated membrane, which are generally made of polymer. Various actuation principles have been adopted, including electrostatic, thermal, or piezoelectric. However, these methods present diverse limitations, making their direct utilization difficult. The magnetic actuation shows an interesting result because of the lack of electrical connections, the possibility of being manipulated at a large distance, and the fast response to the external magnetic field. The aim of this thesis is to simulate the magneto-responsivity of a magnetic nanoparticle - polymer composite membrane, and their application in a micropump mechanism using COMSOL Multiphysics.fr_FR
dc.language.isoenfr_FR
dc.publisherUniversité Blida 1fr_FR
dc.subjectLab: lab on a chipfr_FR
dc.subjectMEMS: microelectromechanical systemfr_FR
dc.subjectMNPS: magnetic nanoparticlesfr_FR
dc.subjectPC: Polmer campositefr_FR
dc.subjectPMC: polymer magnetic compositefr_FR
dc.titleStudy of Magnetic Nanoparticle Composite Polymer thin layer for Microfluidic and MEMS applicationsfr_FR
dc.typeThesisfr_FR
Appears in Collections:Mémoires de Master

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