Investigation of a Ti-30Zr binary alloy fabricated through spark plasma sintering

"A series of Ti-30Zr alloys have been synthesized by the spark plasma sintering (SPS) process using a mixture of elemental powders processed by mechanical alloying. A sintering temperature of 900 degrees C was used during SPS with heating rates of 140, 200 and 350 degrees C min(-1) with a const...

Descripción completa

Detalles Bibliográficos
Autores: Jorge Chávez, Luis Olmos, Omar Jimenez, FRANCISCO ALVARADO HERNANDEZ, Horacio Flores Zúñiga, JUAN PABLO RAMON CAMARILLO GARCIA, SANTIAGO JOSE GUEVARA MARTINEZ
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2020
País:México
Institución:Instituto Potosino de Investigación Científica y Tecnológica
Repositorio:Repositorio Institucional del IPICYT
OAI Identifier:oai:ipicyt.repositorioinstitucional.mx:1010/2348
Acceso en línea:http://ipicyt.repositorioinstitucional.mx/jspui/handle/1010/2348
Access Level:acceso abierto
Palabra clave:info:eu-repo/classification/Autor/Spark plasma sintering
info:eu-repo/classification/Autor/Mechanical alloying
info:eu-repo/classification/Autor/Titanium alloys
info:eu-repo/classification/Autor/Phase transitions
info:eu-repo/classification/Autor/Powder consolidation
info:eu-repo/classification/cti/7
info:eu-repo/classification/cti/33
info:eu-repo/classification/cti/3315
Descripción
Sumario:"A series of Ti-30Zr alloys have been synthesized by the spark plasma sintering (SPS) process using a mixture of elemental powders processed by mechanical alloying. A sintering temperature of 900 degrees C was used during SPS with heating rates of 140, 200 and 350 degrees C min(-1) with a constant load of SO MPa. The effect of the heating rate on the densification, microstructure, phase transformation and microhardness is discussed. The sintering kinetics and the in situ densification were performed by the analysis of the punch displacement during SPS processing. Structural details of consolidated materials were evaluated by the combination of X-ray diffraction, field emission scanning electron microscopy and differential scanning calorimetry tests. Vickers microhardness of samples was also evaluated. The results show that samples reached high densification values up to 99.7% of the relative density by using lower sintering temperatures in comparison to conventional sintering techniques. Phase transformation analysis demonstrates the formation of c and w metastable phases without using any post-treatment. Microhardness values between 950 and 1040 HV were obtained as an effect of the SPS parameters and metastable phase precipitations."