Constitutive modeling of porosity and grain size effects on superelasticity of porous nanocrystalline NiTi shape memory alloy
Author:
Funder
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Computational Mechanics
Link
https://link.springer.com/content/pdf/10.1007/s00707-023-03721-0.pdf
Reference50 articles.
1. Neeraj, S., Abhishek, S., Kapil, K.G., Shaman, G., Shashi, B., Gaurav, K.S.: Transformation temperature and corrosion behavior of porous NiTi and NiTiCu shape memory alloy. Mater. Today Proc. 63, 215–218 (2022). https://doi.org/10.1016/j.matpr.2022.02.519
2. Chen, X., Wu, Z., Tang, X., Hu, H., Lu, S., Zheng, H.: Orientation-dependent shock compression behavior of non-porous/porous NiTi shape memory alloy: an atomic scale study. Mater. Today Commun. 30, 103114 (2022). https://doi.org/10.1016/j.mtcomm.2021.103114
3. Xu, J., Bao, L., Liu, A., Jin, X., Tong, Y., Luo, J., Zhong, Z., Zheng, Y.: Microstructure, mechanical properties and superelasticity of biomedical porous NiTi alloy prepared by microwave sintering. Mater. Sci. Eng. C 46, 387–393 (2015). https://doi.org/10.1016/j.msec.2014.10.053
4. Zhao, M., Qing, H., Wang, Y., Liang, J., Zhao, M., Geng, Y., Liang, J., Lu, B.: Superelastic behaviors of additively manufactured porous NiTi shape memory alloys designed with Menger sponge-like fractal structures. Mater. Des. 200, 109448 (2021). https://doi.org/10.1016/j.matdes.2021.109448
5. Akbarinia, S., Sadrnezhaad, S.K., Hosseini, S.A.: Porous shape memory dental implant by reactive sintering of TiH2–Ni-Urea mixture. Mater. Sci. Eng. C 107, 110213 (2020). https://doi.org/10.1016/j.msec.2019.110213
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1. Effect of pore on the deformation behaviors of NiTi shape memory alloys: A crystal-plasticity-based phase field modeling;International Journal of Plasticity;2024-04
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