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September 10, 2025International Journal of Extreme ManufacturingOpen Access

Superelastic NiTi scaffolds with extensively tuneable mechanical and mass transfer properties

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Authors

SZShiyu ZhongLZLei ZhangYLYing Li

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Overview

This study presents superelastic NiTi scaffolds improving mass transfer and mechanical properties, suggesting effective bone implant solutions.

Key Points

  • The study shows that superelastic NiTi scaffolds can achieve ϵ rec of 6%–7%, surpassing natural bone capabilities.
  • Extensive tuning of properties such as elastic modulus and permeability enhances scaffold performance for bone applications.
  • Innovative structures with hierarchical microstructures promote martensitic transformation during deformation, improving adaptability.
  • This research highlights the potential of NiTi scaffolds to serve diverse applications beyond bone implantation, advocating for multifunctional metamaterial development.

Cite This Study

Zhong et al. (2025) studied this question.

synapsesocial.com/papers/68c1ae7054b1d3bfb60e66c7https://doi.org/10.1088/2631-7990/adf01e
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Also Consider

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  1. 1Hydromechanical mechanism behind the effect of pore size of porous titanium scaffolds on osteoblast response and bone ingrowth2019 · 163 citations
  2. 2Microstructural and Mechanical Response of NiTi Lattice 3D Structure Produced by Selective Laser Melting2020 · 52 citations
  3. 3Synthetic bone: Design by additive manufacturing2019 · 316 citations