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Divorced eutectic microstructural NiTiNb shape memory alloy with high recovery rate and recovery stress prepared by laser powder bed fusion

  • 01-12-2025

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Abstract

This study delves into the fabrication of NiTiNb shape memory alloys using laser powder bed fusion (LPBF), a promising additive manufacturing technology. The research focuses on regulating the microstructure and determining the evolution of memory properties through non-equilibrium rapid solidification. Key topics include the influence of process parameters such as laser power, scanning speed, and hatch pitch on the formation of eutectic structures and the resulting mechanical and shape memory properties. The study also compares the microstructure and properties of NiTiNb alloys prepared by traditional hot processing and LPBF, clarifying the impact of non-equilibrium solidification. Additionally, the research explores the correlation among process parameters, microstructure, mechanical properties, and shape memory properties. The findings highlight the potential of LPBF to eliminate large eutectic structures and enhance shape memory performance, offering significant advantages over traditional manufacturing methods.

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Title
Divorced eutectic microstructural NiTiNb shape memory alloy with high recovery rate and recovery stress prepared by laser powder bed fusion
Authors
Mei-Li Hou
Zhi-Wei Yang
Xin Liu
Jing-Chao Yang
Bao-Hui Zhu
Xin Lin
Heng Li
Publication date
01-12-2025
Publisher
Shanghai University
Published in
Advances in Manufacturing
Print ISSN: 2095-3127
Electronic ISSN: 2195-3597
DOI
https://doi.org/10.1007/s40436-025-00582-9
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