TY - JOUR
T1 - New phase and deformation behavior in directional solidified NiTiAl based intermetallic alloy upon cyclic tensile loading-unloading
AU - Zheng, L. J.
AU - Zhang, F. X.
AU - Ding, R. G.
AU - Wang, F. F.
AU - Zhang, H.
N1 - Publisher Copyright:
© 2016 Elsevier Ltd
PY - 2016/11/15
Y1 - 2016/11/15
N2 - In the present paper, to understand the nature of newly designed Ni43Ti4Al2Nb2Hf alloys in the case of avoiding shape memory, TEM and HREM were used to reveal the precipitation type, phase composition and its relationship with the hardness. Cyclic tensile loading-unloading test is also carried out to study the deformation behavior. It is observed that a new phase with the approximate composition of Ti36 ± 2-Ni34 ± 2-Nb20 ± 2-Al8 ± 1-Hf2 ± 0.5 precipitates in the directional solidified Ni43Ti4Al2Nb2Hf alloy, which is identified to be the base-centred monoclinic lattice with lattice parameters a = 0.987 nm, b = 0.504 nm, c = 1.172 nm, α = γ = 90°, β = 130.18°, and space group C2/c. The hardness of the Ni36Ti20Nb8Al2Hf alloy with same composition to the new phase is more than 810 HV, nearly twice of that of the Ni43Ti4Al2Nb2Hf alloy, which confirms the strengthening effect of the new phase. In addition, the cyclic loading results indicate that the linear recoverable strain is more than 3%, which exhibits the significantly enhanced load capability of this alloy.
AB - In the present paper, to understand the nature of newly designed Ni43Ti4Al2Nb2Hf alloys in the case of avoiding shape memory, TEM and HREM were used to reveal the precipitation type, phase composition and its relationship with the hardness. Cyclic tensile loading-unloading test is also carried out to study the deformation behavior. It is observed that a new phase with the approximate composition of Ti36 ± 2-Ni34 ± 2-Nb20 ± 2-Al8 ± 1-Hf2 ± 0.5 precipitates in the directional solidified Ni43Ti4Al2Nb2Hf alloy, which is identified to be the base-centred monoclinic lattice with lattice parameters a = 0.987 nm, b = 0.504 nm, c = 1.172 nm, α = γ = 90°, β = 130.18°, and space group C2/c. The hardness of the Ni36Ti20Nb8Al2Hf alloy with same composition to the new phase is more than 810 HV, nearly twice of that of the Ni43Ti4Al2Nb2Hf alloy, which confirms the strengthening effect of the new phase. In addition, the cyclic loading results indicate that the linear recoverable strain is more than 3%, which exhibits the significantly enhanced load capability of this alloy.
KW - Base-centred monoclinic lattice
KW - Cyclic strain-stress response behavior
KW - Hardness
KW - Intermetallics
KW - NiTiAl based alloy
UR - https://www.scopus.com/pages/publications/84981306157
U2 - 10.1016/j.matdes.2016.07.149
DO - 10.1016/j.matdes.2016.07.149
M3 - 文章
AN - SCOPUS:84981306157
SN - 0264-1275
VL - 110
SP - 494
EP - 502
JO - Materials and Design
JF - Materials and Design
ER -