DocumentCode :
2076952
Title :
Production of TiNi sintered body by spark-plasma sintering of (Ti+Ni) powder mixture
Author :
Choi, Yone-Hee ; Lee, Do-Hyun ; Kim, Ji-Soon ; Kang, Ji-Hoon ; Kwon, Young-Soon
Author_Institution :
Dept. of Mater. Sci. & Eng., Ulsan Univ., South Korea
Volume :
2
fYear :
2001
fDate :
26 Jun-3 Jul 2001
Firstpage :
272
Abstract :
A powder mixture of Ti and Ni was sintered by spark-plasma sintering (SPS). Three kinds of (Ti+Ni) powder mixture were prepared with a different combination of starting materials (A, B, and C type). Sintering was carried out at 900 °C for 5-30 min under a vacuum of 10-3 torr with an applied pressure of 50 MPa in the SPS facility. Changes in density and phase formation during the SPS process were observed. The shape memory effect was determined by DSC measurement. All three types of powder mixture showed a maximum densification rate in the temperature range of 500-600 °C. In the early stage of sintering, powder mixture A showed a lower density compared to other mixtures. No SHS reaction was observed during the SPS process. Sintered density higher than 97% relative density was obtained from all powder mixtures. The sintered body consisted of B2 TiNi as the major phase and Ti2Ni and TiNi3 as minor phases. Average Ms and Af temperatures were 65 °C and 110 °C, respectively
Keywords :
X-ray diffraction; densification; density; differential scanning calorimetry; nickel alloys; plasma materials processing; powder metallurgy; shape memory effects; sintering; titanium alloys; 110 C; 1E-3 torr; 5 to 30 min; 50 MPa; 500 to 600 C; 65 C; 900 C; B2 major phase; DSC; Ti-Ni; Ti-Ni powder mixture; TiNi sintered body; XRD analysis; applied pressure; density; maximum densification rate; phase formation; shape memory effect; spark-plasma sintering; vacuum; Aerospace materials; Heat treatment; Inorganic materials; Iron; Nonhomogeneous media; Powders; Production; Steel; Temperature distribution; Welding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Science and Technology, 2001. KORUS '01. Proceedings. The Fifth Russian-Korean International Symposium on
Conference_Location :
Tomsk
Print_ISBN :
0-7803-7008-2
Type :
conf
DOI :
10.1109/KORUS.2001.975253
Filename :
975253
Link To Document :
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