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In the present work, a Ti-based shape memory alloy with the composition of Ti 7.5Nb 4Mo 1Sn was designed based on the d-electron orbit theory.
Based on the obtained results, cyclic mechanical loading experiments were performed to analyze the structural fatigue behavior of the shape memory alloy with regard to its use for prestressing or coupling elements in civil and mechanical engineering, respectively.
The feasibility of creating a ferromagnetic shape memory alloy with a nanoscale self-patterned surface, during the very same process of film deposition, can be interesting for potential applications where control of the surface architecture would be needed.
The three-dimensional size, morphology and distribution of Ni4Ti3 precipitates in a Ni50.8Ti49.2 polycrystalline shape memory alloy with a heterogeneous microstructure have been investigated using a focused ion beam/scanning electron microscopy slice-and-view procedure.
The hydrogen embrittlement behavior of Ni-Ti shape memory alloy with different microstructures in acidic fluoride solution was examined, and the following results were obtained: 1.
Therefore, the purpose of the present study is to investigate the hydrogen embrittlement behavior of Ni-Ti shape memory alloy with different microstructures in acidic fluoride solution.
Similar(50)
The idea is to combine the intrinsic and novel properties of nickel titanium shape memory alloys with purposely engineered topologies.
Ferromagnetic Ni Mn Ga shape memory alloys with large magnetic-field-induced strains are promising candidates for actuators.
The conventionally produced Ti50Ni50−xCux shape memory alloys with Cu-content exceeding 12 at.% have been reported to be brittle.
In this work we studied the martensitic transformation behavior of Cu Al Be single crystalline shape memory alloys with three different concentrations.
High temperature shape memory alloys with operating temperatures above 100 °C are in demand for use as solid-state thermal actuators in aerospace, automobile and other engineering applications.
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