Located beyond the resolution limit of nanoindentation, contact resonance atomic force microscopy (CR-AFM) is employed for nano-mechanical surface characterization of single crystalline 14M modulated martensitic Ni-Mn-Ga (NMG) thin films grown by magnetron sputter deposition on (001) MgO substrates. Comparing experimental indentation moduli-obtained with CR-AFM-with theoretical predictions based on density functional theory (DFT) indicates the central role of pseudo plasticity and inter-martensitic phase transitions. Spatially highly resolved mechanical imaging enables the visualization of twin boundaries and allows for the assessment of their impact on mechanical behavior at the nanoscale. The CR-AFM technique is also briefly reviewed. Its...
Magnetically induced reorientation (MIR) is observed in epitaxial orthorhombic Ni-Mn-Ga films. Ni-Mn...
The underlying mechanisms responsible for the giant magnetic or mechanical field-induced-strains in ...
In recent years there has been an increased demand for the development of smart and functional mater...
The magnetomechanical behavior of ferromagnetic shape memory alloys such as Ni-Mn-Ga, and hence the ...
Ferromagnetic shape memory alloys are characterized by strong magneto-mechanical coupling occurring ...
Ni-Mn-Ga is a ferromagnetic shape memory alloy that deforms by twin boundary motion. The magneto-mec...
Ni-Mn-Ga, a ferromagnetic shape-memory alloy, changes shape upon the application of a variable magne...
Ni-Mn-Ga is a magnetic shape memory alloy (MSMA) that deforms via twin boundary motion. The magneto-...
The magnetomechanical properties of ferromagnetic shape memory alloy Ni–Mn–Ga single crystals depend...
Diffusionless phase transitions are at the core of the multifunctionality of (magnetic) shape memory...
Ni-Mn-Ga shape-memory alloys are promising candidates for large strain actuation and magnetocaloric ...
Ni-Mn-Ga is a ferromagnetic shape memory alloy that deforms by twin boundary motion. The magneto-mec...
Atomic force microscopy (AFM) is a nanoscale scanning probe microscopy (SPM) characterization techni...
We report on vibrating reed measurements combined with density functional theory-based calculations ...
Atomic-force microscopy (AFM), magnetic-force microscopy (MFM), and nanoindentation experiments were...
Magnetically induced reorientation (MIR) is observed in epitaxial orthorhombic Ni-Mn-Ga films. Ni-Mn...
The underlying mechanisms responsible for the giant magnetic or mechanical field-induced-strains in ...
In recent years there has been an increased demand for the development of smart and functional mater...
The magnetomechanical behavior of ferromagnetic shape memory alloys such as Ni-Mn-Ga, and hence the ...
Ferromagnetic shape memory alloys are characterized by strong magneto-mechanical coupling occurring ...
Ni-Mn-Ga is a ferromagnetic shape memory alloy that deforms by twin boundary motion. The magneto-mec...
Ni-Mn-Ga, a ferromagnetic shape-memory alloy, changes shape upon the application of a variable magne...
Ni-Mn-Ga is a magnetic shape memory alloy (MSMA) that deforms via twin boundary motion. The magneto-...
The magnetomechanical properties of ferromagnetic shape memory alloy Ni–Mn–Ga single crystals depend...
Diffusionless phase transitions are at the core of the multifunctionality of (magnetic) shape memory...
Ni-Mn-Ga shape-memory alloys are promising candidates for large strain actuation and magnetocaloric ...
Ni-Mn-Ga is a ferromagnetic shape memory alloy that deforms by twin boundary motion. The magneto-mec...
Atomic force microscopy (AFM) is a nanoscale scanning probe microscopy (SPM) characterization techni...
We report on vibrating reed measurements combined with density functional theory-based calculations ...
Atomic-force microscopy (AFM), magnetic-force microscopy (MFM), and nanoindentation experiments were...
Magnetically induced reorientation (MIR) is observed in epitaxial orthorhombic Ni-Mn-Ga films. Ni-Mn...
The underlying mechanisms responsible for the giant magnetic or mechanical field-induced-strains in ...
In recent years there has been an increased demand for the development of smart and functional mater...