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dc.contributor.authorSadagic, Amela
dc.contributor.authorBrutzman, Don
dc.date.accessioned2017-07-12T19:11:29Z
dc.date.available2017-07-12T19:11:29Z
dc.date.issued2016
dc.identifier.urihttp://hdl.handle.net/10945/55216
dc.description.abstractAdditive Manufacturing (AM), 3D printing and CAD export are critical for Navy maintenance. Rapid change continues to occur across the design, engineering, manufacturing, and production process - many products can now be fabricated using AM methods. Iterative design processes require close collaboration of all entities involved from design to production; with AM, the lines between these previously stovepipe steps become blurred. A need to design, test and adopt different maintenance workflow becomes a necessity in cases of preventive and corrective maintenance of mechanical components on Navy ships and aircrafts where such operations have major impact on operational readiness. This project proposes to study and test elements that are identified as critical for effective deployment of AM in Navy operations, with specific emphasis on maintenance operations, while remaining sensitive to other Navy domains and activities where the use of AM could bring significant value. Our overarching goal is to provide a comprehensive approach that would lead towards reduction of energy costs, as well as reduction of materials and human resources engaged in that process.en_US
dc.description.sponsorshipOPNAV 141 - Logistics Programs and Corporate Operationsen_US
dc.publisherMonterey, California. Naval Postgraduate Schoolen_US
dc.rightsThis publication is a work of the U.S. Government as defined in Title 17, United States Code, Section 101. Copyright protection is not available for this work in the United States.en_US
dc.titleCAD interoperability for Navy reuse in 3D printing, maintenance and trainingen_US
dc.typePosteren_US
dc.contributor.corporateNaval Postgraduate School (U.S.)en_US
dc.contributor.departmentMOVES Instituteen_US


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