Vibration reduction apparatus and method
US-9212722-B2 · Dec 15, 2015 · US
US9543498B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9543498-B2 |
| Application number | US-201414186916-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 21, 2014 |
| Priority date | Aug 24, 2011 |
| Publication date | Jan 10, 2017 |
| Grant date | Jan 10, 2017 |
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An actuator device and a method for manufacturing the actuator device, which is formed by stacking and rolling films of electrostrictive material into a cylindrical body and can ensure electrical connection with inner electrodes at both end portions of the cylindrical body. The actuator device is formed by stacking and rolling two films of electrostrictive material into a cylindrical body, the two films each having an inner electrode on one or both surfaces thereof. The cylindrical body has at least one cut portion at each end portion thereof, the cut portion being configured to reach the inner electrode (electrode pattern). By applying conductive ink to each of the cut portions, the conductive ink flows through the cut portions and reaches the inner electrodes on the films. By heat-hardening the conductive ink, it is possible to ensure electrical connection between outer and inner electrodes.
Opening claim text (preview).
The invention claimed is: 1. An actuator device comprising two films of electrostrictive material stacked and rolled into a cylindrical body, the two films each having an inner electrode on one or both surfaces thereof, the inner electrodes of the two films including first and second inner electrodes which have different polarities and do not overlap within a region in a stacking direction, the cylindrical body having at least one cut portion at each end portion thereof, the cut portion being configured to reach the inner electrode, extend through the two films in the stacking direction, and be provided within the region where the first and second inner electrodes do not overlap in the stacking direction; and conductive ink applied to the cut portion. 2. The actuator device according to claim 1 , wherein the inner electrodes on one or both surfaces of the two films of electrostrictive material are stacked to be shifted from each other in one direction such that the inner electrodes partially overlap each other; and the cylindrical body is formed by rolling the stacked films in a direction intersecting with the one direction. 3. An actuator device manufacturing method comprising: forming an inner electrode on one or both surfaces of each of two films made of electrostrictive material, the inner electrodes of the two films including first and second inner electrodes which have different polarities and do not overlap within a region in a stacking direction; stacking the two films and rolling the stacked films into a cylindrical body; forming at least one cut portion at each end portion of the cylindrical body such that the cut portion reaches the inner electrode, extends through the two films in the stacking direction, and is provided within the region where the first and second inner electrodes do not overlap in the stacking direction; and applying conductive ink to the cut portion. 4. The actuator device manufacturing method according to claim 3 , wherein the inner electrodes on one or both surfaces of the two films of electrostrictive material are stacked to be shifted from each other in one direction such that the inner electrodes partially overlap each other; and the cylindrical body is formed by rolling the stacked films in a direction intersecting with the one direction. 5. An actuator device manufacturing method comprising: forming an inner electrode on one or both surfaces of each of two films made of electrostrictive material, the inner electrodes of the two films including first and second inner electrodes which have different polarities and do not overlap within a region in a stacking direction; stacking the two films and forming at least one cut portion in the stacked films such that the cut portion reaches the inner electrode, extends through the two films in the stacking direction, and is provided within the region where the first and second inner electrodes do not overlap in the stacking direction; applying conductive ink to the cut portion; and forming a cylindrical body by rolling the stacked films such that a surface to which the conductive ink has been applied faces outward. 6. The actuator device manufacturing method according to claim 5 , wherein the inner electrodes on one or both surfaces of the two films of electrostrictive material are stacked to be shifted from each other in one direction such that the inner electrodes partially overlap each other; and the cut portion is formed at each end portion of the stacked films in the one direction, and the cylindrical body is formed by rolling the stacked films in a direction intersecting with the one direction.
Electricity · mapped topic
Electricity · mapped topic
Electricity · mapped topic
Electricity · mapped topic
Electricity · mapped topic
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