In this work, the magnetization response of FeMnAlNi superelastic shape memory alloys (SMAs) is investigated under stress. Wires with a diameter of 0.5 mm were subjected to repeated abnormal grain growth heat treatments in order to obtain bamboo structured oligocrystalline grains that are necessary for superelasticity. Solution heat treated wires were aged at 200ºC for 3 h to strengthen the austenite matrix. Tensile cyclic tests were performed at room temperature until failure, while the magnetization response of the wires was monitored using a hall sensor during loading and unloading in each cycle. It is observed that after each cycle, overall magnetization of the alloy decreases once the irrecoverable strain is introduced after large defo...
Shape memory alloys (SMAs) have gained considerable attention in a broad range of engineering applic...
Shape Memory Alloys (SMAs) are a unique class of intermetallic alloys that can cyclically sustain la...
Shape memory alloys (SMAs) are a new generation material which exhibits unique nonlinear deformation...
In this work, the magnetization response of FeMnAlNi superelastic shape memory alloys (SMAs) is inve...
This research designs and characterizes multifunctional materials, in particular inexpensive shape m...
The objective of this research study is to design, fabricate, and characterize multifunctional high ...
University Transportation Centers Program2018PDFTech ReportKaraman, IbrahimHartl, DarrenTexas A&M Un...
An investigation into the thermo-mechanical response of trained Ni–Ti shape memory alloy (SMA) wires...
The interaction between the stress-induced martensitic transformation and resistivity behavior of su...
University Transportation Centers Program2019PDFTech ReportKaraman, IbrahimHartl, DarrenTexas A & M ...
Effects of grain size on superelastic properties in Fe-34Mn-15Al-7.5Ni alloy wires with a ⟨110⟩ fibe...
In this study, FeMnAlNi shape memory alloys are demonstrated to experience room temperature (RT) agi...
A few years ago, a unique way to use shape memory alloys for actuation purposes was proposed, involv...
A series of experiments is presented examining the thermo-electro-mechanical response of commerciall...
In the field of structural health monitoring (SHM), innovative methods of non-destructive evaluation...
Shape memory alloys (SMAs) have gained considerable attention in a broad range of engineering applic...
Shape Memory Alloys (SMAs) are a unique class of intermetallic alloys that can cyclically sustain la...
Shape memory alloys (SMAs) are a new generation material which exhibits unique nonlinear deformation...
In this work, the magnetization response of FeMnAlNi superelastic shape memory alloys (SMAs) is inve...
This research designs and characterizes multifunctional materials, in particular inexpensive shape m...
The objective of this research study is to design, fabricate, and characterize multifunctional high ...
University Transportation Centers Program2018PDFTech ReportKaraman, IbrahimHartl, DarrenTexas A&M Un...
An investigation into the thermo-mechanical response of trained Ni–Ti shape memory alloy (SMA) wires...
The interaction between the stress-induced martensitic transformation and resistivity behavior of su...
University Transportation Centers Program2019PDFTech ReportKaraman, IbrahimHartl, DarrenTexas A & M ...
Effects of grain size on superelastic properties in Fe-34Mn-15Al-7.5Ni alloy wires with a ⟨110⟩ fibe...
In this study, FeMnAlNi shape memory alloys are demonstrated to experience room temperature (RT) agi...
A few years ago, a unique way to use shape memory alloys for actuation purposes was proposed, involv...
A series of experiments is presented examining the thermo-electro-mechanical response of commerciall...
In the field of structural health monitoring (SHM), innovative methods of non-destructive evaluation...
Shape memory alloys (SMAs) have gained considerable attention in a broad range of engineering applic...
Shape Memory Alloys (SMAs) are a unique class of intermetallic alloys that can cyclically sustain la...
Shape memory alloys (SMAs) are a new generation material which exhibits unique nonlinear deformation...