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dc.contributor.authorGeorgiev, Jordan
dc.contributor.authorAnestiev, Lubomir
dc.contributor.authorBendereva, Ekaterina
dc.contributor.authorLukarski, Yavor
dc.contributor.authorMarcela, Selecka
dc.contributor.authorGavrilova, Rositsa
dc.date.accessioned2018-11-07T08:25:39Z
dc.date.available2018-11-07T08:25:39Z
dc.date.issued2009
dc.identifier.issn1453 – 083X
dc.identifier.urihttp://10.11.10.50/xmlui/handle/123456789/5641
dc.descriptionTHE ANNALS OF “DUNAREA DE JOS” UNIVERSITY OF GALATI. FASCICLE IX. METALLURGY AND MATERIALS SCIENCE N0. 1 – 2009, ISSN 1453 – 083Xro_RO
dc.description.abstractThe objective of the research is development and study of a new ecologically friendly and technologically advanced method for introduction of carbon during sintering of low alloyed iron powders ASC 100.29. The method is based on using hydrocarbon coating of the green powder, which transforms into carbon nanolayers between the powder particles, during the sintering process. The method avoids the use of graphite as alloying element and reductant, and allows for a much better homogenization, less porosity and overall increase of the quality of the final sintered product. The research presented is focused on the processes related to apparent density, fluidity and compressibility of the coated powder and resulting porosity after pressing and sintering. The aim is to determine the optimal coating conditions, and to acquire experimental data concerning key processes during the sintering and the originated microstructure. The sintering process was monitored in situ through DTA measurements and measurement of the exhaust gases pressure. Results obtained so far show better handling conditions for the green coated powders, compared to those using classical approach and higher homogeneity of the sintered specimens.ro_RO
dc.language.isoenro_RO
dc.publisherUniversitatea "Dunărea de Jos" din Galațiro_RO
dc.subjectpowder metallurgyro_RO
dc.subjecthydrocarbonro_RO
dc.subjectdensificationro_RO
dc.subjectmicrostructurero_RO
dc.subjectsinteringro_RO
dc.titleStudy of the Sintering Process of Iron Powders Coated with Nano-Hydrocarbon and the Resulting Microstructure at Temperatures up to 1200°Cro_RO
dc.typeArticlero_RO


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