The 10M martensitic Ni–Mn–Ga single crystal materials are usually applied in the magneto-mechanical actuators. Therefore, it is important to know the possible effect of the long-term cyclic shape changes on their structure and behavior. This can be evaluated with the mechanical fatigue testing. In the present study, the single crystal 10M Ni–Mn–Ga samples of different compositions were applied to strain-controlled uniaxial mechanical cycling in the multivariant state at ambient temperature. The experiments revealed distinctive changes of the twin variant structure, especially in the mobile twin area, density of twin boundaries, and in the tendency for fatigue crack growth. Characterization of the crack surface showed that the cracks in the ...
This work concerns the fatigue crack growth behaviour of nickel base single crystal superalloys. The...
In this study, the difference between in-phase (IP) and out-of-phase (OP) thermomechanical fatigue (...
We investigate the mechanically induced local deformation effects in single crystalline Ni–Mn–Ga str...
The 10M martensitic Ni–Mn–Ga single crystal materials are usually applied in the magneto-mechanical ...
AbstractThe 10M martensitic Ni–Mn–Ga single crystal materials are usually applied in the magneto-mec...
In a previous study, magnetic-field-induced strain (MFIS) had been measured for a Ni-Mn-Ga single cr...
In a previous study, magnetic field induced strain MFIS had been measured for a Ni Mn Ga single cr...
In this research, thermomechanical behavior and thermally induced fracture of single crystal Ni-Mn-G...
Long-term fatigue life during high-cycle magnetic-mechanical actuation is crucial to the application...
Fracture resistance and long fatigue life are required to commercialize Ni–Mn–Ga ferromagnetic shape...
Magneto-mechanical experiments with a rotating magnetic field of 0.97T were performed with a Ni-Mn-G...
Ni-Mn-Ga alloys have attracted great interest for more than ten years from the scientific community ...
Single-crystal nickel-based superalloys are dominantly used for turbine blades due to their superior...
In this study, the difference between in-phase (IP) and out-of-phase (OP) thermomechanical fatigue (...
In this work the magnetic, mechanical and fatigue behaviour of a Ni45.4Mn29.1Ga21.6Fe single crystal...
This work concerns the fatigue crack growth behaviour of nickel base single crystal superalloys. The...
In this study, the difference between in-phase (IP) and out-of-phase (OP) thermomechanical fatigue (...
We investigate the mechanically induced local deformation effects in single crystalline Ni–Mn–Ga str...
The 10M martensitic Ni–Mn–Ga single crystal materials are usually applied in the magneto-mechanical ...
AbstractThe 10M martensitic Ni–Mn–Ga single crystal materials are usually applied in the magneto-mec...
In a previous study, magnetic-field-induced strain (MFIS) had been measured for a Ni-Mn-Ga single cr...
In a previous study, magnetic field induced strain MFIS had been measured for a Ni Mn Ga single cr...
In this research, thermomechanical behavior and thermally induced fracture of single crystal Ni-Mn-G...
Long-term fatigue life during high-cycle magnetic-mechanical actuation is crucial to the application...
Fracture resistance and long fatigue life are required to commercialize Ni–Mn–Ga ferromagnetic shape...
Magneto-mechanical experiments with a rotating magnetic field of 0.97T were performed with a Ni-Mn-G...
Ni-Mn-Ga alloys have attracted great interest for more than ten years from the scientific community ...
Single-crystal nickel-based superalloys are dominantly used for turbine blades due to their superior...
In this study, the difference between in-phase (IP) and out-of-phase (OP) thermomechanical fatigue (...
In this work the magnetic, mechanical and fatigue behaviour of a Ni45.4Mn29.1Ga21.6Fe single crystal...
This work concerns the fatigue crack growth behaviour of nickel base single crystal superalloys. The...
In this study, the difference between in-phase (IP) and out-of-phase (OP) thermomechanical fatigue (...
We investigate the mechanically induced local deformation effects in single crystalline Ni–Mn–Ga str...