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Research Status and Prospect of Additive Manufactured Nickel-Titanium Shape Memory Alloys

Shifeng Wen, Jie Gan, Fei Li, Yan Zhou, Chunze Yan, Yusheng Shi

2021Materials65 citationsDOIOpen Access PDF

Abstract

Nickel-titanium alloys have been widely used in biomedical, aerospace and other fields due to their shape memory effect, superelastic effect, as well as biocompatible and elasto-thermal properties. Additive manufacturing (AM) technology can form complex and fine structures, which greatly expands the application range of Ni-Ti alloy. In this study, the development trend of additive manufactured Ni-Ti alloy was analyzed. Subsequently, the most widely used selective laser melting (SLM) process for forming Ni-Ti alloy was summarized. Especially, the relationship between Ni-Ti alloy materials, SLM processing parameters, microstructure and properties of Ni-Ti alloy formed by SLM was revealed. The research status of Ni-Ti alloy formed by wire arc additive manufacturing (WAAM), electron beam melting (EBM), directional energy dedication (DED), selective laser sintering (SLS) and other AM processes was briefly described, and its mechanical properties were emphatically expounded. Finally, several suggestions concerning Ni-Ti alloy material preparation, structure design, forming technology and forming equipment in the future were put forward in order to accelerate the engineering application process of additive manufactured Ni-Ti alloy. This study provides a useful reference for scientific research and engineering application of additive manufactured Ni-Ti alloys.

Topics & Concepts

Materials scienceSelective laser meltingAlloyMicrostructureShape-memory alloyMetallurgyTitanium alloyNickel titaniumSinteringAerospaceTitaniumSelective laser sinteringFusible alloyPolitical scienceLawShape Memory Alloy TransformationsAdditive Manufacturing Materials and ProcessesHigh Entropy Alloys Studies