In this study, ternary NiTiFe shape memory alloys with different volume energy densities were fabricated by laser beam powder bed fusion technique via mixed pre-alloy NiTi powder and 3 at. % pure Fe powder. The exceptionally low porosity of
Chunjiang Guo +7 more
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Applicalions of NiTi-based Shape Memory Alloys [PDF]
P. Schmidt-Mende, G. Block
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Mechanical Response and Functional Performance of Heat-Treated LPBF NiTi Shape Memory Alloys. [PDF]
Ratajski J +6 more
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Local chemical inhomogeneity enables superior strength-ductility-superelasticity synergy in additively manufactured NiTi shape memory alloys. [PDF]
Li Z +11 more
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A Quantitative Indicator-Based Framework for Sustainability-Driven Selection of Conventional and Smart Materials in the Built Environment. [PDF]
Trucillo P, Fatehi Peikani F.
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TiZrHf-Based B2-B19'/B19-High Entropy Shape Memory Alloys: A Review and Recent Advances. [PDF]
Yamabe-Mitarai Y.
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Machining behavior and phase transformation in WEDM of Ti₅₀Ni₄₉Co₁ shape memory alloy. [PDF]
Soni H +7 more
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Corrosion behavior of selective laser melted NiTi shape memory alloy. [PDF]
Srivastava A +6 more
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Nickel-Titanium Alloys in Endodontics: A Narrative Review. [PDF]
Valente P +3 more
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Structure-property correlation study on biocompatibility of wire arc additively manufactured nitinol alloy. [PDF]
M K, M V, Gaba S.
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