Linear actuator and groove fashioning method for linear actuator
US-9035732-B2 · May 19, 2015 · US
US9601981B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9601981-B2 |
| Application number | US-201314375133-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 12, 2013 |
| Priority date | Jul 25, 2012 |
| Publication date | Mar 21, 2017 |
| Grant date | Mar 21, 2017 |
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A linear actuator that is configured to be extended/contracted by relatively displacing a first tube and a second tube in an axial direction, includes a rod that is provided inside the first tube, a plurality of permanent magnets that are held in the rod so as to be arranged in the axial direction; a stopper that is provided on a tip-end portion of the rod, a coil that is provided inside the second tube so as to face the permanent magnets, and a stopper receiving portion that is provided on the second tube so as to face the stopper, wherein the relative displacement between the first tube and the second tube in the extension direction is restricted by bringing an extension-direction-side end surface of the stopper into contact with the stopper receiving portion at a fully extended position.
Opening claim text (preview).
The invention claimed is: 1. A linear actuator that is configured to be extended/contracted by a relative axial displacement between a first tube and a second tube, the relative axial displacement being in an axial direction, comprising: a rod that is provided inside the first tube; a plurality of permanent magnets that are held in the rod so as to be arranged in the axial direction; a stopper that is provided on a tip-end portion of the rod; a coil that is provided inside the second tube so as to face the permanent magnets; and a stopper receiving portion that is provided on the second tube so as to contact the stopper when the linear actuator is at a fully extended position, wherein the stopper includes: a guide portion that is fixed to the rod, a stroke defining portion that extends in the axial direction from the guide portion, the stroke defining portion having an extension-direction-side end surface, the extension-direction-side end surface contacting the stopper receiving portion at the fully extended position of the linear actuator, further wherein the second tube includes a guide tube in which an inner circumference thereof is slidably fitted with an outer circumference of the guide portion, further wherein relative displacement between the first tube and the second tube in an extension direction of the linear actuator is restricted when the extension-direction-side end surface of the stroke defining portion and the stopper receiving portion contact each other at the fully extended position, and further wherein a position of the permanent magnets and a position of the coil at the fully extended position are defined when the extension-direction-side end surface of the stroke defining portion and the stopper receiving portion contact each other at the fully extended position. 2. A linear actuator according to claim 1 , further comprising a position detector that is configured to detect relative positional information of the coil and the permanent magnets. 3. A linear actuator according to claim 1 , wherein the guide portion includes a through hole, and the through hole communicates two spaces, partitioned by the stopper, in the guide tube. 4. A linear actuator according to claim 1 , wherein a longitudinal axis of the stroke defining portion is parallel to the axial direction. 5. A linear actuator that is configured to be extended/contracted, the linear actuator comprising: first and second tubes that are movable relative to each other to extend and contract the linear actuator, the first and second tubes being movable along a longitudinal axis so that the linear actuator is extendable to a fully extended position; a rod that is provided inside the first tube; a plurality of permanent magnets that are held in the rod so as to be arranged in an axial direction along the longitudinal axis; a stopper that is provided on a tip-end portion of the rod; a coil that is provided inside the second tube so as to face the permanent magnets; and a stopper receiving portion provided on the second tube so as to contact the stopper when the linear actuator is at the fully extended position, wherein the stopper includes: a guide portion that is fixed to the rod, a stroke defining portion that extends in the axial direction from the guide portion, the stroke defining portion having an extension-direction-side end surface, the extension-direction-side end surface contacting the stopper receiving portion at the fully extended position of the linear actuator, further wherein the second tube includes a guide tube in which an inner circumference thereof is slidably fitted with an outer circumference of the guide portion, further wherein relative displacement between the first tube and the second tube in an extension direction is restricted when the extension-direction-side end surface of the stroke defining portion and the stopper receiving portion contact each other at the fully extended position, and further wherein at the fully extended position, a position of one of the permanent magnets is in the second tube, and a position of another of the permanent magnets is in the first tube.
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