Ultrasonic Generator
20180092346 ยท 2018-04-05
Inventors
Cpc classification
H04R17/10
ELECTRICITY
B06B1/0644
PERFORMING OPERATIONS; TRANSPORTING
G10K13/00
PHYSICS
H04R7/26
ELECTRICITY
International classification
G10K13/00
PHYSICS
Abstract
The present invention relates to an ultrasonic generator for repelling harmful animals. The invention comprises a columnar ultrasonic wave generating body 18 which has a piezoelectric element 16 and a connecting body 22 and a smaller-diameter connecting body 24 each having a reduced diameter, a diaphragm 28 which is in the form of a speaker horn, and a connecting rod 26 which extends from the ultrasonic wave generating body 18 and connects and fixes the diaphragm 28 to an end thereof. The thickness of the diaphragm 28 gradually decreases from the base 34 connected to the connecting rod 26 toward an outer edge of the diaphragm 28 and one or more undulated portions 36 are formed concentrically on the front face of the diaphragm.
Claims
1. An ultrasonic generator comprising an ultrasonic wave generating unit comprising a piezoelectric element which outputs ultrasonic waves when a voltage is applied; a diaphragm in the form of a speaker horn; and a connector which connects the ultrasonic wave generating unit and the diaphragm, wherein the connector transmits the output ultrasonic waves to the diaphragm to emit the ultrasonic wave through the diaphragm, wherein the diaphragm has a thickness which gradually decreases from a point of the diaphragm connected to the connector toward an outer edge of the diaphragm.
2. The ultrasonic generator of claim 1, wherein the diaphragm comprises one or more undulated portions formed concentrically on the front face of the diaphragm.
3. The ultrasonic generator of claim 1, wherein one or more rim protection rings are inserted to the outer edge of the diaphragm to mitigate a vibration impact.
4. The ultrasonic generator of claim 1, wherein a plurality of the connector are provided and connected to each other in series and each diameter of the connectors relatively decreases as the connectors being far away from the ultrasonic wave generating unit.
5. The ultrasonic generator of claim 1, wherein the connector is made of titanium.
6. The ultrasonic generator of claim 1, wherein the diaphragm is made of titanium.
7. The ultrasonic generator of claim 1, wherein the connector is in the shape of a straight line.
8. The ultrasonic generator of claim 1, wherein the connector is in the shape of either the letter or the letter S.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
MODE FOR CARRYING OUT THE INVENTION
[0021] Referring to
[0022] The ultrasonic wave generating body 18 may be made of any material known in the art, preferably duralumin.
[0023] To the lower side of the ultrasonic wave generating body 18, a supporting body 20 is fixed for fixing the piezoelectric device 16 to the ultrasonic wave generating body 18. On the other hand, on a distal end of the ultrasonic wave generating body 18, a connecting body 22 having a diameter reduced to about of the diameter of the ultrasonic wave generating body 18, a smaller-diameter connecting body 24 of a diameter reduced to about of the diameter of the connecting body 22, and a connecting rod 26 having a diameter reduced to about of the diameter of the smaller-diameter connecting body 24 are connected and fixed in turn. Such a connecting rod 26 may be made of any material known in the art, preferably titanium.
[0024] Onto the upper end of the connecting rod 26, a diaphragm 28 as the form of a speaker horn is inserted and fastened and fixed with an upper and a lower coupling nut 30 and 32. The diaphragm 28 can be made of any material known in the art, preferably titanium which has excellent durability against vibration.
[0025] The diaphragm 28, which is generally of a cone shape in the form of a speaker horn, expands toward its end from its base 34 which is fixed to the connecting rod 26. To the diaphragm 28 the strong ultrasonic vibration outputs from the ultrasonic wave generating body 18 are applied, which causes the diaphragm 28 to vibrate and diffuse and emit the ultrasonic waves from its front. The amplitude of the ultrasonic vibration being applied to the diaphragm 28 becomes larger as the vibration moves outward from the base 34 on which the diaphragm 28 is fixed to the connecting rod 26, and the ultrasonic vibration becomes maximized at a radially outer edge of the diaphragm 28. Therefore, the outer edge of the diaphragm 28 is susceptible to cracking or rupture due to the vibration impact.
[0026] In the present invention, the thickness of the diaphragm 28 may be also gradually decreased from the base 34 of the diaphragm 28 so that the outer edge may have a relatively thinner thickness than that of the base 34. As such, the outer edge of the diaphragm 28 may adapt to the vibration impact, with having flexibility. In an example of the present invention, thickness t1 at the base 34 of the diaphragm 28 may be about 1.0 to 1.5 mm, preferably 1.2 mm, which may be gradually decreased to thickness t2 of about 0.7 to 0.9 mm, preferably 0.8 mm at the outer edge of the diaphragm 28 (
[0027] According to an embodiment of the present invention, the thickness of the diaphragm 28 may be gradually reduced from the base 34 toward the outer edge as described above so that the diaphragm 28 may flexibly respond to the vibration impact of the ultrasonic vibration, while forming a number of undulated portions 36 concentrically on the front face of the diaphragm 28 which is structurally in the form of a cone. Thus, the amplitudes of the ultrasonic vibrations may be effectively attenuated and the vibration impact may be considerably mitigated, thereby helping to prevent generation of cracks or rupture at the outer edge of the diaphragm 28.
[0028] In an example of the present invention, as shown in. shape, which may also mitigate the impact from the ultrasonic vibration and protect the relatively thin outer edge of the diaphragm 28 from cracking or rupture. The rim protection rings 38 may be made of any known soft material such as synthetic resin, rubber, silicone, and the like.
[0029] According to another embodiment of the present invention, the diaphragm 28 of the ultrasonic generator may be arranged at any variety of angles.
[0030] For this purpose, for example, as shown in
[0031] shape. This is a structure in which the axis of the diaphragm 28 is horizontally arranged when the ultrasonic wave generating body 18 is vertically arranged, which enables arranging the ultrasonic generator of the present invention in various manners. Also,
and the letter S shapes are shown here, the present invention is not limited thereto and also may include all the other formable or variable shapes for the connecting rod 26.
[0032] It should be construed that foregoing general illustrations and following detailed descriptions are exemplified, and also it will be understood by those skilled in the art that various modifications, changes, and additions in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.