Microstructure and mechanical properties of SPSed (Spark Plasma Sintered) Ti66Nb13Cu8Ni6.8AI6.2 bulk alloys with and without wc addition

12Citations
Citations of this article
6Readers
Mendeley users who have this article in their library.

Abstract

Ti66Nb13Cu8Ni6.8Al 6.2 bulk alloys with and without WC addition were fabricated by spark plasma sintering and crystallization of amorphous phase. Microstructure analysis indicates that Ti66Nb13Cu8Ni 6.8Al6.2 bulk alloy without WC addition has a ultrafine-grained microstructure with in situ precipitated ductile β-Ti(Nb) phase, composed of soft (Cu, Ni-Ti2 regions surrounded by hard ß-Ti regions. The alloy exhibits high fracture strength of above 2000 MPa and remarkable plasticity of ̃21 %. In contrast, Ti66Nb 13Cu8Ni6.8 Al6.2 bulk alloys with WC addition consist of a microstructure of in situ precipitated ductile β-Ti regions surrounded by a mixed phase regions of (Cu, Ni)-Ti2, TiC, WC and residual glassy phase. The alloys with WC addition display brittle facture behavior. The different plastic deformability for the fabricated bulk alloys with and without WC addition can be explained based on their distinctive microstmctures. ©2009 The Thermoelectrics Society of Japan.

Cite

CITATION STYLE

APA

Li, X., Yang, C., Chen, W., Qu, S., & Li, Y. (2009). Microstructure and mechanical properties of SPSed (Spark Plasma Sintered) Ti66Nb13Cu8Ni6.8AI6.2 bulk alloys with and without wc addition. In Materials Transactions (Vol. 50, pp. 1720–1724). https://doi.org/10.2320/matertrans.MF200924

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free