Electronic control system
US-9523621-B2 · Dec 20, 2016 · US
US8963401B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-8963401-B2 |
| Application number | US-201213616724-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 14, 2012 |
| Priority date | Jul 27, 2012 |
| Publication date | Feb 24, 2015 |
| Grant date | Feb 24, 2015 |
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There is provided a vibration actuator including: a housing providing an internal space and including holes formed to allow the internal space to be in communication with the outside; a diaphragm disposed to separate the internal space into first and second chambers; a mass body coupled to the diaphragm; and a piezoelectric element coupled to one inner surface of the housing and disposed under the mass body.
Opening claim text (preview).
What is claimed is: 1. A vibration actuator comprising: a housing providing an internal space and including holes formed to allow the internal space to be in communication with the outside; a diaphragm disposed to separate the internal space into first and second chambers; a mass body coupled to the diaphragm; and a piezoelectric element coupled to one inner surface of the housing and disposed under the mass body. 2. The vibration actuator of claim 1 , wherein the mass body is disposed in the second chamber. 3. The vibration actuator of claim 1 , wherein the holes are formed in the housing such that each of the first and second chambers is in communication with ambient air surrounding the housing. 4. The vibration actuator of claim 1 , wherein the diaphragm includes at least one bent portion formed in one surface thereof and having a hemispherical shape. 5. The vibration actuator of claim 1 , wherein the diaphragm has elastic force. 6. The vibration actuator of claim 1 , wherein in the piezoelectric element, a single piezoelectric film is used. 7. The vibration actuator of claim 1 , wherein in the piezoelectric element, a plurality of piezoelectric films are used. 8. The vibration actuator of claim 1 , wherein one inner surface of the housing is provided with an outer wall protruding to correspond to an outer diameter of the piezoelectric element. 9. The vibration actuator of claim 1 , wherein the mass body includes a protrusion portion formed by protruding at least a portion of an upper surface thereof upwardly, the protrusion portion being coupled to the diaphragm. 10. The vibration actuator of claim 1 , further comprising a support portion disposed between the housing and the diaphragm and elastically supporting the mass body coupled to the diaphragm. 11. The vibration actuator of claim 1 , further comprising a first elastic member disposed between the piezoelectric element and the mass body, wherein the piezoelectric element is disposed to be spaced apart from the mass body by a predetermined interval. 12. The vibration actuator of claim 11 , further comprising a support portion disposed between the housing and the diaphragm and elastically supporting the mass body coupled to the diaphragm. 13. A vibration actuator comprising: a housing providing an internal space and including holes formed to allow the internal space to be in communication with the outside; a piezoelectric element coupled to one inner surface of the housing; a mass body disposed on an upper portion of the piezoelectric element; and a diaphragm having one end coupled to the mass body and the other end coupled to the housing to separate the internal space into first and second chambers together with the mass body. 14. The vibration actuator of claim 13 , wherein the mass body includes a horizontal portion, a protrusion portion protruding upwardly from a central portion of the horizontal portion, and an avoidance portion extended downwardly from an outer side of the horizontal portion. 15. The vibration actuator of claim 14 , wherein the diaphragm has one end coupled to the horizontal portion. 16. The vibration actuator of claim 13 , wherein one inner surface of the housing is provided with an outer wall protruding to correspond to an outer diameter of the piezoelectric element. 17. The vibration actuator of claim 14 , wherein the other inner surface of the housing is provided with a projection portion protruding to have an inner diameter larger than an outer diameter of the protrusion portion. 18. The vibration actuator of claim 13 , wherein the mass body includes a horizontal portion, a protrusion portion protruding upwardly from a central portion of the horizontal portion, an avoidance portion extended downwardly from an outer side of the horizontal portion, a seat portion extended from the avoidance portion in an outer radial direction, and an extension portion extended downwardly from the seat portion. 19. The vibration actuator of claim 18 , wherein the diaphragm has one end coupled to the seat portion. 20. The vibration actuator of claim 18 , further comprising a second elastic member having one end coupled to the housing and the other end coupled to the seat portion to elastically support the mass body. 21. The vibration actuator of claim 18 , further comprising a second elastic member having one end coupled to the housing and the other end coupled to the protrusion portion to elastically support the mass body. 22. The vibration actuator of claim 13 , wherein the mass body includes a horizontal portion, a vertical portion extended from an outer side of the horizontal portion in a vertical direction, and a seat portion formed to be bent from a lower portion of the vertical portion in an outer radial direction. 23. The vibration actuator of claim 22 , wherein the diaphragm has one end coupled to the seat portion. 24. The vibration actuator of claim 23 , further comprising a support portion disposed between the housing and the horizontal portion and elastically supporting the mass body. 25. The vibration actuator of claim 23 , further comprising a second elastic member having one end coupled to the housing and the other end coupled to the seat portion to elastically support the mass body. 26. The vibration actuator of claim 23 , wherein the other inner surface of the housing is provided with a projection portion corresponding to an outer diameter of the support portion, and the support portion is inserted into and fixed to an inner portion of the projection portion and the horizontal portion. 27. The vibration actuator of claim 13 , wherein the mass body includes a horizontal portion, an avoidance portion extended downwardly from an outer side of the horizontal portion, a seat portion formed to be bent from the avoidance portion in an outer radial direction, and an extension portion extended downwardly from the seat portion. 28. The vibration actuator of claim 27 , further comprising a support portion disposed between the housing and the horizontal portion and elastically supporting the mass body. 29. The vibration actuator of claim 28 , wherein the other inner surface of the housing is provided with a projection portion corresponding to an outer diameter of the support portion, and the support portion is inserted into and fixed to an inner portion of the projection portion. 30. The vibration actuator of claim 13 , further comprising a first elastic member disposed between the piezoelectric element and the mass body, wherein the piezoelectric element is disposed to be spaced apart from the mass body by a predetermined interval. 31. The vibration actuator of claim 30 , wherein the mass body includes a horizontal portion, an avoidance portion formed to be bent downwardly from an outer side of the horizontal portion, and a seat portion bent from the avoidance portion in an outer radial direction. 32. The vibration actuator of claim 31 , further comprising a second elastic member having one end coupled to the housing and the other end coupled to the seat portion to elastically support the mass body.
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