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dc.contributor.authorKhairul Fauzi, Karim
dc.contributor.authorHalim, Zulkifli
dc.contributor.authorSazali, Yaacob
dc.contributor.authorMohamed Rizon, Mohamed Juhari
dc.contributor.authorAbu Hassan, Abdullah
dc.date.accessioned2009-09-04T08:58:23Z
dc.date.available2009-09-04T08:58:23Z
dc.date.issued2005-05-14
dc.identifier.citationp.107-111en_US
dc.identifier.urihttp://dspace.unimap.edu.my/123456789/7156
dc.descriptionOrganized by Kolej Universiti Kejuruteraan Utara Malaysia (KUKUM), 14th - 15th May 2005 at Putra Palace Hotel, Kangar, Perlis.en_US
dc.description.abstractPart deposition time and surface finish are two important concerns in rapid prototyping (RP). These two items contradict with each other. Commonly, a concession is made between the two aspects pertaining to model building in RP.A concession between these two contradicting issues can be achieved by using an adaptive slicing scheme; however, selection of a proper part deposition orientation will further provide an improve solution. Current work is an effort towards obtaining an optimum part deposition orientation for fused deposition modeling process for enhancing part surface finish and reducing build time. Models for evaluation of average part surface roughness and build time are developed. Proposed methodology; which is studying the surface roughness of FDM processed part surface; can be used to obtain the optimum deposition orientation for any type of component and incorporates with an adaptively slicing algorithm for tackling the compromising issue of building speed and surface accuracy in RP.en_US
dc.language.isoenen_US
dc.publisherKolej Universiti Kejuruteraan Utara Malaysiaen_US
dc.relation.ispartofseriesProceedings of the 1st International Workshop on Artificial Life and Roboticsen_US
dc.subjectDepositionen_US
dc.subjectRapid prototypingen_US
dc.subjectSoftware engineeringen_US
dc.subjectPrototypes, Engineeringen_US
dc.subjectFused deposition modeling (FDM)en_US
dc.subjectSlicing algorithmen_US
dc.titleOptimum part deposition orientation and adaptive slicing in fused deposition modelingen_US
dc.typeWorking Paperen_US


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