The giant magneto-strain effect in Ni-Mn-Ga alloys is particularly attractive for actuator applications. Two different approaches are being pursued to develop MSM microactuators. To observe large deflections of Ni-Mn-Ga microactuators, the material should be exhibiting low twinning stress and large magnetic anisotropy. In addition, design rules and boundary conditions for operating the Ni-Mn-Ga actuator material are having significant importance for evolution of performance characteristics
By introducing smart materials in micro systems technologies, novel smart microactuators and sensors...
By introducing smart materials in micro systems technologies, novel smart microactuators and sensors...
Ni-Mn-Ga alloys close to stoichiometric Ni50Mn25Ga25 (at. %) composition have recently gained consid...
The giant magneto-strain effect in Ni-Mn-Ga alloys is particularly attractive for actuator applicati...
The giant magneto-strain effect in Ni-Mn-Ga alloys is particularly attractive for actuator applicati...
Magnetic Shape Memory (MSM) materials comprise a new active material type, which can change its shap...
Magnetic Shape Memory (MSM) materials comprise a new active material type, which can change its shap...
The giant magneto-strain effect is particularly attractive for actuator applications in micro- and n...
For magnetic shape memory (MSM) alloys, a magnetic field stimulates a shape change. We use the shape...
For magnetic shape memory (MSM) alloys, a magnetic field stimulates a shape change. We use the shape...
Abstract. The giant magneto-strain effect is particularly attractive for actuator applications in mi...
Magnetic shape memory alloys are a new group of "smart" materials that exhibit large strain of 6-12%...
International audienceIn the field of microrobotics, actuators based on smart materials are predomin...
Ferromagnetic shape memory martensites in the Ni-Mn-Ga system have been demonstrated to achieve a nu...
In this work, the actuation principles of single-crystal Ni-Mn-Ga alloys based on the magnetic shape...
By introducing smart materials in micro systems technologies, novel smart microactuators and sensors...
By introducing smart materials in micro systems technologies, novel smart microactuators and sensors...
Ni-Mn-Ga alloys close to stoichiometric Ni50Mn25Ga25 (at. %) composition have recently gained consid...
The giant magneto-strain effect in Ni-Mn-Ga alloys is particularly attractive for actuator applicati...
The giant magneto-strain effect in Ni-Mn-Ga alloys is particularly attractive for actuator applicati...
Magnetic Shape Memory (MSM) materials comprise a new active material type, which can change its shap...
Magnetic Shape Memory (MSM) materials comprise a new active material type, which can change its shap...
The giant magneto-strain effect is particularly attractive for actuator applications in micro- and n...
For magnetic shape memory (MSM) alloys, a magnetic field stimulates a shape change. We use the shape...
For magnetic shape memory (MSM) alloys, a magnetic field stimulates a shape change. We use the shape...
Abstract. The giant magneto-strain effect is particularly attractive for actuator applications in mi...
Magnetic shape memory alloys are a new group of "smart" materials that exhibit large strain of 6-12%...
International audienceIn the field of microrobotics, actuators based on smart materials are predomin...
Ferromagnetic shape memory martensites in the Ni-Mn-Ga system have been demonstrated to achieve a nu...
In this work, the actuation principles of single-crystal Ni-Mn-Ga alloys based on the magnetic shape...
By introducing smart materials in micro systems technologies, novel smart microactuators and sensors...
By introducing smart materials in micro systems technologies, novel smart microactuators and sensors...
Ni-Mn-Ga alloys close to stoichiometric Ni50Mn25Ga25 (at. %) composition have recently gained consid...