Nebulization structure
09731312 ยท 2017-08-15
Inventors
- Shu-Pin Hsieh (Bade, TW)
- Tun-Ying Fang (Bade, TW)
- Mei-Hui Huang (Bade, TW)
- Yu-Ju Su (Bade, TW)
- Chin-Jung Chang (Bade, TW)
Cpc classification
A01M1/205
HUMAN NECESSITIES
F02M61/186
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B05B17/0646
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B17/06
PERFORMING OPERATIONS; TRANSPORTING
A61M11/00
HUMAN NECESSITIES
Abstract
A nebulization structure includes a driving element, a structure plate and a nebulization plate. The structure plate is installed on a side of the driving element, and the structure plate is substantially in a circular disc shape and has a plurality of through holes, and at least one rib is formed between adjacent through holes to define a water guide passage. The nebulization plate is clamped between the driving element and the structure plate and made of a polymer material to overcome the problems of having easy metal fatigue and embrittlement of the nebulization plate made of metal, and being corroded by corrosive liquids.
Claims
1. A nebulization structure, comprising: a container for holding a liquid, and the container further includes a channel for releasing the liquid; a driving element having an inlet side and an outlet side; a structure plate, in a circular disc shape, and installed on the inlet side of the driving element, and having four through holes and at least two ribs formed between adjacent two of said four through holes; and a nebulization plate having a plurality of firing holes penetrating the nebulization plate, and the nebulization plate is clamped between the driving element and the structure plate such that the at least two ribs are in contact with and support the nebulization plate and transmit vibration energy from the driving element to the nebulization plate during driving element oscillation, wherein the four through holes are arranged radially with respect to a center point of the structure plate and that the at least two ribs intersect at and overlay the center point of the structure plate, wherein intersection of the at least two ribs are in contact with a center position of the nebulization plate, and the intersection partially covers the channel of the liquid container abuts with some of the plurality of firing holes at the nebulization plate.
2. The nebulization structure of claim 1, wherein the through holes are arranged symmetrically into a circular shape with respect to the center point of the structure plate.
3. The nebulization structure of claim 1, wherein the driving element is a piezoelectric annular plate.
4. The nebulization structure of claim 1, wherein the nebulization plate and the structure plate are coupled and combined by an adhesive.
5. The nebulization structure of claim 1, wherein the nebulization plate is made of a polymer material or a metal material.
6. The nebulization structure of claim 5, wherein the polymer material is one selected from the collection of polyimide, polyethylene (PE), polypropylene (PP) and polyether ether ketone (PEEK).
7. The nebulization structure of claim 1, wherein the structure plate is made of a metal material or a polymer material.
8. The nebulization structure of claim 7, wherein the polymer material is one selected from the collection of polyimide, polyethylene (PE), polypropylene (PP) and polyether ether ketone (PEEK).
9. The nebulization structure of claim 1, wherein the intersection of the at least two ribs does not completely obstruct the liquid from leaving the container.
10. The nebulization structure of claim 1, wherein the intersection of the at least two ribs never seals the channel.
11. A nebulization structure, comprising: a driving element having an inlet side and an outlet side; a structure plate, in a circular disc shape, and installed on the inlet side of the driving element, and having four through holes and at least two ribs formed between adjacent two of said four through holes; and a nebulization plate having a plurality of firing holes penetrating the nebulization plate, and the nebulization plate is clamped between the driving element and the structure plate such that the at least two ribs are in contact with and support the nebulization plate and transmit vibration energy from the driving element to the nebulization plate during driving element oscillation, wherein the four through holes are arranged radially with respect to a center point of the structure plate and that the at least two ribs intersect at and overlay the center point of the structure plate, wherein intersection of the at least two ribs are in contact with a center position of the nebulization plate, wherein the nebulization structure is coupled with a container for holding a liquid to be provided to the nebulization structure for nebulization, and the container further includes a liquid-releasing channel overlaid by the structure plate, wherein the intersection of the at least two ribs abuts with some of the plurality of firing holes at the nebulization plate and does not cover the liquid-releasing channel entirely.
12. The nebulization structure of claim 11, wherein the liquid-releasing channel has a first dimension and the intersection has a second dimension, wherein the second dimension is not larger than the first dimension.
13. The nebulization structure of claim 12, wherein the first and second dimensions are cross-sectional areas.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(19) The technical content of the present invention will become apparent with the detailed description of preferred embodiments and the illustration of related drawings as follows.
(20) With reference to
(21) In this preferred embodiment, the driving element 21 is a piezoelectric annular plate made of a piezoelectric ceramic material.
(22) The structure plate 22 is installed on a side of the driving element 21. In this preferred embodiment, the structure plate 22 is in a circular disc shape and includes a plurality of through holes 221, and at least one rib 222 formed between two adjacent through holes. In this preferred embodiment, there are five through holes 221, wherein one of the five through holes 221 is formed at the center position of the structure plate 22, and the other four through holes 221 are arranged radially in a circular shape with respect to the center of the structure plate 22. In this preferred embodiment, the structure plate 22 is preferably made of metal to provide a better effect of transmitting vibration energy. Of course, the material is not limited to metal only, but it also can be a polymer such as polyimide, polyethylene (PE), polypropylene (PP) or polyether ether ketone (PEEK).
(23) The nebulization plate 23 is clamped between the driving element 21 and the structure plate 22 and has a plurality of firing holes 231. In this preferred embodiment, the nebulization plate 23 is made of a polymer such as polyimide, polyethylene (PE), polypropylene (PP) or polyether ether ketone (PEEK) to prevent the nebulization plate 23 from being embrittled or having metal fatigue by high frequency oscillations for a long time which results in a gradually decreasing oscillation effect or a crack of the nebulization plate 23. However, the material used for making the nebulization plate 23 is not limited to the aforementioned polymers only, but it can also be made of metal depending on actual requirements. Wherein, at least one rib 222 formed on the structure plate 22 can support the nebulization plate 23 and combine with the nebulization plate 23 more securely, so that the vibration energy produced by the driving element 21 can be transmitted to the structure plate 22 directly, and then the structure plate 22 produces vibrations directly to drive the nebulization plate 23 to nebulize a liquid. Therefore, the oscillation frequency for the operation of the combined nebulization plate 23 and structure plate 22 is close to the oscillation frequency of the driving element 21, so that a better nebulization effect can be achieved.
(24) With reference to
(25) In other implementation modes, the structure plate 22 has three, four or more through holes, and the through holes 221 are symmetrically and radially arranged with respect to the center of the structure plate 22, and one of the through holes 221 is formed at the center position of the structure plate 22, but the invention is not limited to such arrangement only, but it can also be arranged as shown in
(26) With reference to
(27) In this preferred embodiment, the structure and functions of the driving element 31, the rib 322 and the nebulization plate 33 are the same as those of the first preferred embodiment, and thus will not be described. The difference of this preferred embodiment and the first preferred embodiment resides on that the structure plate 32 further includes a plurality of glue overflow passages 35 formed thereon and disposed with an interval apart at the external periphery of the through holes 321 and at positions corresponding to the internal periphery of the piezoelectric element 31. The glue overflow passages 35 are provided for extra glues to overflow therein in order to prevent the extra glues from flowing into the through holes 321 or affecting the nebulization effect.
(28) In other implementation modes, the shape and arrangement of the through holes 321 and the glue overflow passage 35 can be as shown in
(29) In one of the characteristics of the nebulization structure of the present invention, the nebulization plate is made of a polymer material instead, so that the metal nebulization plate can have a better stability and improve the chemical resistance.
(30) In another characteristic of the nebulization structure of the present invention, the rib formed between two adjacent through holes on the structure plate can support the nebulization plate and combine the nebulization plate closely, so that the oscillation frequency of the nebulization plate is close to the vibration frequency of the driving element.
(31) In a further characteristic of the nebulization structure of the present invention, the ribs formed on the structure plate can be used as a passage for transmitting vibration energy and the liquid to be nebulized. Compared with the prior art, the present invention can transmit energy and liquid to be nebulized to the whole area of the nebulization plate more effectively and efficiently, so as to improve the nebulization effect.