TY - JOUR
T1 - Microstructure and mechanical properties of directionally solidified and heat treated Nb- 14Si-24Ti-2Cr alloy
AU - Wang, L. G.
AU - Weng, J. F.
AU - Guan, K.
AU - Su, L. F.
AU - Jia, L. N.
AU - Zhang, H.
PY - 2012/8
Y1 - 2012/8
N2 - In this work, the directional solidification of an Nb-14Si-24Ti-2Cr alloy (at-%) was performed at 1900°C with withdrawal rates of 1·2, 6 and 18 mm min -1, and the alloy was then heat treated (HT) at 1450°C for 100 h. The microstructures and mechanical properties of the directionally solidified and HT alloy were investigated. The phases present in the sample were confirmed to be NbSS dendrites, lath-like Nb 3Si, eutectic Nb SS+Nb 3Si and Ti enriched areas. As the withdrawal rate increased, the effects of directional solidification became more evident, and the microstructure became more refined. After the heat treatment, the microstructure was characterised by Nb SS dendrites, residual Nb 3Si and lamellar eutectic Nb SS+Nb 3Si, which was decomposed from the lath-like Nb 3Si. An increase in the withdrawal rate resulted in a decrease in the room temperature fracture toughness of the HT alloy. However, the room temperature compressive strength of the HT alloy increased to 1593·9 MPa with increasing withdrawal rate, which was twice the value of the compressive strength before heat treatment.
AB - In this work, the directional solidification of an Nb-14Si-24Ti-2Cr alloy (at-%) was performed at 1900°C with withdrawal rates of 1·2, 6 and 18 mm min -1, and the alloy was then heat treated (HT) at 1450°C for 100 h. The microstructures and mechanical properties of the directionally solidified and HT alloy were investigated. The phases present in the sample were confirmed to be NbSS dendrites, lath-like Nb 3Si, eutectic Nb SS+Nb 3Si and Ti enriched areas. As the withdrawal rate increased, the effects of directional solidification became more evident, and the microstructure became more refined. After the heat treatment, the microstructure was characterised by Nb SS dendrites, residual Nb 3Si and lamellar eutectic Nb SS+Nb 3Si, which was decomposed from the lath-like Nb 3Si. An increase in the withdrawal rate resulted in a decrease in the room temperature fracture toughness of the HT alloy. However, the room temperature compressive strength of the HT alloy increased to 1593·9 MPa with increasing withdrawal rate, which was twice the value of the compressive strength before heat treatment.
KW - Directional solidification
KW - Heat treatment
KW - Mechanical properties
KW - Microstructure
KW - Nb-Si
UR - https://www.scopus.com/pages/publications/84867147615
U2 - 10.1179/1433075X12Y.0000000017
DO - 10.1179/1433075X12Y.0000000017
M3 - 文章
AN - SCOPUS:84867147615
SN - 1432-8917
VL - 16
SP - 276
EP - 280
JO - Materials Research Innovations
JF - Materials Research Innovations
IS - 4
ER -