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dc.contributor.authorRusz, Stanislav
dc.contributor.authorGreger, Miroslav
dc.date.accessioned2006-10-23T12:48:07Z
dc.date.available2006-10-23T12:48:07Z
dc.date.issued2003
dc.identifier.citationEngineering Plasticity from Macroscale to Nanoscale : 6th Asia-Pacific Symposium on Engineering Plasticity and Its Applications, Sydney, Australia, December 2-6, 2002. Proceedings. 2003, p. 413-418. Key engineering materials, vols. 233-236, pt.1.en
dc.identifier.isbn0-87849-907-5
dc.identifier.issn1013-9826
dc.identifier.urihttp://hdl.handle.net/10084/57315
dc.description.abstractDuring orbital forming, the material flow is realized both by radial and transversal motion. By orbital motion of the upper die and vertical motion of the bottom die, the material is transferred from area of active plastic deformation to area of passive plastic deformation. At the edge parts of semi product arise a compressive stress that leads to a deformation increase in the comparison with classical technology. The paper presents an analysis of the results that have been obtained by testing the method of orbital forming for low-carbon steel, as well as the guidelines for ensuring an optimum process mode for symmetrical elements.en
dc.language.isoenen
dc.publisherTrans Tech Publicationsen
dc.relation.ispartofseriesEngineering Plasticity from Macroscale to Nanoscale : 6th Asia-Pacific Symposium on Engineering Plasticity and Its Applications, Sydney, Australia, December 2-6, 2002. Proceedingsen
dc.subjectforming programsen
dc.subjecthardeningen
dc.subjectinclination angleen
dc.subjectorbital pressingen
dc.subjectorbital pressingen
dc.subjectreduction valueen
dc.subjectrevolution valueen
dc.subjectstrainen
dc.subjectstressen
dc.subjecttensile strengthen
dc.subjecttensometeren
dc.titleNew aspects of orbital forming technologyen
dc.typearticleen
dc.identifier.locationNení ve fondu ÚKen
dc.identifier.wos000180723900064


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