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dc.contributor.author MORALES HERNANDEZ, JORGE
dc.contributor.author MANDUJANO RUIZ, ARACELI
dc.contributor.author TORRES GONZALEZ, JULIETA
dc.contributor.author ESPINOZA BELTRAN, FRANCISCO JAVIER
dc.contributor.author HERRERA HERNANDEZ, HECTOR
dc.creator MORALES HERNANDEZ, JORGE; 217816
dc.creator MANDUJANO RUIZ, ARACELI; 351996
dc.creator TORRES GONZALEZ, JULIETA; 122534
dc.creator ESPINOZA BELTRAN, FRANCISCO JAVIER; 6439
dc.creator HERRERA HERNANDEZ, HECTOR; 87908
dc.date.accessioned 2017-02-23T20:15:47Z
dc.date.available 2017-02-23T20:15:47Z
dc.date.issued 2015-05-18
dc.identifier.issn 0034-8570
dc.identifier.uri http://hdl.handle.net/20.500.11799/64894
dc.description.abstract Magnetron Sputter Deposition technique with DC was used for the deposition of Ni-Cr coatings on AISI 316 SS like substrate. The cathode with a nominal composition Ni-22 at% Cr was prepared by Mechanical Alloying (MA) technique, with a maximum milling time of 16 hours and, with a high energy SPEX 8000 mill. The coatings were made under Argon atmosphere at room temperature with a power of 100 W at different times of growth. Chemical composition, microstructure, topography, nanohardness and wear of the coatings were evaluated using the techniques of microanalysis by energy dispersive X-ray analyzer (EDAX), X-Ray Diffraction (XRD), atomic Force Microscopy (AFM), Nano-indentation and pin-on-Disk, respectively. After milling, was not detected contamination in the mixtures. XRD analysis revealed that the microstructure of the Ni-Cr alloy was maintained in the coatings with respect to MA powders, with some degree of recrystallization. Nanohardness values were in the order of 8.8 GPa with a Young’s modulus of 195 GPa. The adhesion of the films was evaluated according to their resistance to fracture when these were indented at different loads using Vickers microhardness. The wear test results showed a decrease in the friction coefficient with respect to the increase of thickness’ films, getting a minimum value of 0.08 with a thickness of 1 µm and which correspond with the maximum growing time. es
dc.description.sponsorship Financial support provided by the National Council of Science and Technology (CONACyT), with the number project 135100 from basics science program, and the support offered by CINVESTAV-QRO, México, specially to the Dr. F.J. Espinoza Beltrán. es
dc.language.iso spa es
dc.publisher Revista de Metalurgia es
dc.relation.ispartofseries Vol.51;Núm. 3
dc.rights openAccess es
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/4.0
dc.subject mechanical alloying (ma) es
dc.subject magnetron sputtering es
dc.subject ni-cr coatings es
dc.subject.classification BIOLOGÍA Y QUÍMICA
dc.title Low friction coefficient coatings Ni-Cr by magnetron sputtering, DC es
dc.type Artículo es
dc.provenance Científica es
dc.road Dorada es
dc.organismo Centro Universitario UAEM Valle de México es
dc.ambito Internacional es
dc.cve.progEstudios 43 es
dc.modalidad Artículo especializado para publicar en revista indizada es
dc.audience students
dc.audience researchers
dc.type.conacyt article
dc.identificator 2


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  • Título
  • Low friction coefficient coatings Ni-Cr by magnetron sputtering, DC
  • Autor
  • MORALES HERNANDEZ, JORGE
  • MANDUJANO RUIZ, ARACELI
  • TORRES GONZALEZ, JULIETA
  • ESPINOZA BELTRAN, FRANCISCO JAVIER
  • HERRERA HERNANDEZ, HECTOR
  • Fecha de publicación
  • 2015-05-18
  • Editor
  • Revista de Metalurgia
  • Tipo de documento
  • Artículo
  • Palabras clave
  • mechanical alloying (ma)
  • magnetron sputtering
  • ni-cr coatings
  • Los documentos depositados en el Repositorio Institucional de la Universidad Autónoma del Estado de México se encuentran a disposición en Acceso Abierto bajo la licencia Creative Commons: Atribución-NoComercial-SinDerivar 4.0 Internacional (CC BY-NC-ND 4.0)

Mostrar el registro sencillo del objeto digital

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