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September 19, 2025Smart Materials and Structures3 citations

Compression and fatigue performance of additively manufactured NiTi architected shape memory alloys

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BZBorit ZwerinkCBCarlo Alberto BiffiJFJacopo Fiocchi

Key Points

  • The NiTi lattice structures exhibited remarkable fatigue performance under cyclic loading, sustaining 8 kN for about 86,000 cycles.
  • Fatigue performance was characterized using an S–N curve generated from results of cyclic loading tests conducted at 40 °C.
  • The study involved initial quasi-static compression tests to determine load levels necessary for subsequent fatigue experiments.
  • Microstructural analysis identified martensite transformation zones near fracture regions, indicating stress-induced phase changes during loading.

Abstract

Abstract Additive manufacturing of architected materials, particularly lattice or porous structures, has gained significant attention in recent years due to their enhanced strength-to-weight ratios, load-bearing capabilities, and energy absorption properties. The integration of these structures with shape memory alloys (SMAs) offers multifunctional performance for advanced engineering applications. This study investigates the compressive fatigue behavior of NiTi lattice structures fabricated by Laser Powder Bed Fusion (LPBF). Initial quasi-static compression tests, carried out to full structural collapse, were used to define load levels for subsequent fatigue experiments. Fatigue testing was then conducted at 40 °C to induce pseudoelastic behavior, and an S–N curve was generated to characterize fatigue performance. Results showed that the NiTi lattice could sustain cyclic loading at 8 kN for an average of approximately 86,000 cycles, and around 18,000 cycles at 11 kN. Post-mortem microstructural analyses revealed martensite accumulation near fracture regions, attributed to stress-induced phase transformation.

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Cite This Study

Zwerink et al. (2025) studied this question.

synapsesocial.com/papers/68d464e031b076d99fa63d6dhttps://doi.org/10.1088/1361-665x/ae0904
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