Development of Microactuators Based on the Magnetic Shape Memory Effect
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...
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Superior document: | Schriften des Instituts für Mikrostrukturtechnik am Karlsruher Institut für Technologie / Hrsg.: Institut für Mikrostrukturtechnik |
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Year of Publication: | 2013 |
Language: | English |
Series: | Schriften des Instituts für Mikrostrukturtechnik am Karlsruher Institut für Technologie / Hrsg.: Institut für Mikrostrukturtechnik
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Physical Description: | 1 electronic resource (X, 153 p. p.) |
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490 | 1 | |a Schriften des Instituts für Mikrostrukturtechnik am Karlsruher Institut für Technologie / Hrsg.: Institut für Mikrostrukturtechnik | |
520 | |a 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. | ||
546 | |a English | ||
653 | |a shape memory alloys | ||
653 | |a Microstructure evalution | ||
653 | |a Magnetic shape memory microactuators | ||
653 | |a thermo mechanical properties | ||
653 | |a Ni-Mn-Ga thin films | ||
776 | |z 3-7315-0125-2 | ||
906 | |a BOOK | ||
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