Field of the Invention
The present invention relates to a bubbling device, and more particularly to a fine bubble generating device.
Description of the Prior Art
A common bubbling device as disclosed in TWM424358 can make a water flow be delicate and contain bubbles.
However, when this type of bubbling device is in use, air and water is mixed directly in the bubbling device without any mechanism which can fully mix air and water and fine bubbles. Therefore, air and water are not mixed evenly, and bubbles are in different sizes, so the water flow cannot maintain the state which is full of smooth and delicate bubbles.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The major object of the present invention is to provide a fine bubble generating device, which can provide a water flow which is full of fine and delicate bubbles.
To achieve the above and other objects, a fine bubble generating device is provided, including: a main body, having an inlet, an outlet and a venturi tube mechanism located between the inlet and the outlet, the venturi tube mechanism having a neck portion communicating with outside; a bubble fining mechanism, having at least one passage which is smaller than the inlet in cross-sectional area, the at least one passage communicating with and between the venturi tube mechanism and the outlet, the bubble fining mechanism including a first vortex member and a second vortex member, the first vortex member including at least one first slant hole, the second vortex member including at least one second slant hole, the at least one first slant hole and the at least one second slant hole being inclined toward opposite directions, the first vortex member and the second vortex member being disposed between the venturi tube mechanism and the outlet.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment(s) in accordance with the present invention.
The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
Please refer to
The main body 10 has an inlet 11, an outlet 12 and a venturi tube mechanism 13 located between the inlet 11 and the outlet 12, the venturi tube mechanism 13 has a neck portion 131 communicating with outside, the inlet 11 is for a water flow to enter therethrough, the neck portion 131 is for inhaling air to be mixed with the water flow, and the outlet 12 is for the water flow to flow out from the main body 10. The bubble fining mechanism 20 has at least one passage which is smaller than the inlet 11 in cross-sectional area, and the at least one passage communicates with and between the venturi tube mechanism 13 and the outlet 12.
In this embodiment, the bubble fining mechanism 20 communicates with and between the venturi tube mechanism 13 and the outlet 12. The bubble fining mechanism 20 includes at least one of a first vortex member 21, a second vortex member 22 and a orifice board 30, the first vortex member 21 includes at least one first slant hole 211, the second vortex member 22 includes at least one second slant hole 221, the at least one first slant hole 211 and the at least one second slant hole 221 are inclined toward opposite directions, the orifice board 30 has a plurality of jetting holes 31, each said jetting hole 31 is tapered toward the outlet 12, the at least one of the first vortex member 21, the second vortex member 22 and the orifice board 30 is disposed between the venturi tube mechanism 13 and the outlet 12, and the at least one first slant hole 211 and the at least one second slant hole 221 are for producing reverse vortexes and enhancing a mixing effect of water and air. After the water flow goes out from the venturi tube mechanism 13, a flowing speed of water increases, and the water flow which contains air impacts the first vortex member 21 so that the water flow is broken, and air and water in the water flow are mixed. When the water flow passes through the first slant hole 211 and goes out from the first vortex member 21, the water flow swirls toward a direction and impacts the second vortex member 22, bubbles are fined, the water flow is broken again, and air and water in the water flow are mixed more evenly. After the water passes through the second slant hole 221 and goes out from the second vortex member 22, the water flow swirls toward another direction, the bubbles are further fined, and air and water are further mixed.
In this embodiment, the main body 10 further includes a barrel member 14, the venturi tube mechanism 13 is received in the barrel member 14, the barrel member 14 has an air-inlet hole 141 communicating with the neck portion 131, and the air-inlet hole 141 is for air to enter therethrough or for being connected to a tube and importing a specific gas (such as ozone). However, the barrel member 14 may not have the air-inlet hole 141, and the gas may be added from the inlet 11 directly. The first vortex member 21 includes a first barrel body 212, a first central portion 214 located in the first barrel body 212 and a first connecting portion 215 connected with the first barrel member 212 and the first central portion 214, and the first connecting portion 215, the first barrel body 212 and the first central portion 214 define the at least one first slant hole 211. An end of the first barrel body 212 near the inlet 11 has an annular guiding face 213 slanting inwardly (as shown in
In this embodiment, the second vortex member 22 includes a second barrel body 222, a second central portion 223 located in the second barrel body 222 and a second connecting portion 224 connected with the second barrel body 222 and the second central portion 223, and the second connecting portion 224, the second barrel body 222 and the second central portion 223 define the at least one second slant hole 221. The second connecting portion 224 includes a plurality of second blades 225, each of the plurality of second blades 225 is circumferentially around the second central portion 223 and slantly connected with the second barrel body 222 and the second central portion 223, and between every neighboring two of the second blades 225 exists one said second slant hole 221 (as shown in
Preferably, the first vortex member may further include a plurality of blocking blocks 23 (as shown in
In other embodiments, an air-inlet hole of a venturi tube mechanism may be connected to a tube for importing other liquids. A barrel member which is provided with the venturi tube mechanism may further have two air-inlet holes, and the two air-inlet holes are respectively for importing other liquids and gases. A central portion of a bubble fining mechanism may be a protrusion in other shapes, for example, triangle or any shape which can make the water flow broken after the water flow impacts thereon. A first vortex member, a second vortex member and an orifice board of a bubble fining mechanism may be assembled alone or selectively cooperate with one another, for example, the bubble fining mechanism of a fine bubble generating device may have only one first vortex member, or the bubble fining mechanism of a fine bubble generating device may have only one second vortex member and an orifice board.
In this embodiment, the fine bubble generating device 1 further includes a bubbler 50 which communicates with and between an interior of the bubble fining mechanism 20 and the outlet 12 and a spacing ring 40 abutting against between the bubbler 50 and the orifice board 30. The bubbler 50 includes a tapered board 51 facing the second barrel body 222, the tapered board 51 has a plurality of hole rows 511 radiantly arranged thereon, each said hole row 511 includes a plurality of through holes 512, and the through hole 512 is greater than the jetting hole 31 in dimension. The bubbler 50 further includes an annular shell 52, a flow-guiding core 53 received in the annular shell 52 and an outlet orifice board 54, two opposite sides of the flow-guiding core 53 respectively has an annular recess 531, the outlet orifice board 54 and the tapered board 51 are respectively arranged on two opposite ends of the annular shell 52, the outlet orifice board 54 has a plurality of flowing holes 541, each said flowing hole 541 is greater than the through hole 512 and communicates with the outlet, and the flowing holes 541 is for the water flow to flow out from the fine bubble generating device 1. A number of the through holes 512 is smaller than a number of the jetting holes 31, and a water flow jetted from each said jetting hole 31 has a greater hydraulic pressure, so the bubbles are fined, and air and water are mixed more completely. An outer surface of the annular shell 52 has a groove 521 which is circumferentially arranged in interval, between every neighboring two of the grooves 521 exists a protrusive bar 522, an end of each said protrusive bar 522 near the outlet 12 has a chamfer 523 which is abuttable against an inner wall of the barrel member 14 so that the bubbler 50 is fixed in the barrel member 14, and the grooves 521 is non-contacted with the inner wall of the barrel member 14 so that the bubbler 50 is not stuck in the barrel member 14. The annular recess 531 is for being impacted by a water flow having a greater hydraulic pressure flowing out from each said through hole 512 to make the bubbles in the water flow more delicate, and the water flow flows out from a side of the annular recess 531. The flow-guiding core 53 protrudes toward a center of the outlet orifice board 54 to form an axial column 532, and the axial column 532 is for restricting the outlet orifice board 54 within a range so that the outlet orifice board 54 will not shake or flip during a process of water flowing out. The spacing ring 40 supports the orifice board 30, and when the hydraulic pressure is greater, the center of the orifice board 30 is bent downward slightly due to the hydraulic pressure, and a center protruding on the tapered board 51 can support the orifice board 30 properly.
Please refer to
Given the above, the first vortex member and the second vortex member can make the bubbles fine and produce the reverse vortexes to increase the mixing effect of water and air. Therefore, air and water in the water flow can be mixed evenly and completely, and the water flow becomes smooth and delicate.
While we have shown and described various embodiments in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
Number | Name | Date | Kind |
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847552 | Carlson | Mar 1907 | A |
3567116 | Lindlof | Mar 1971 | A |
3605388 | Zuiderweg et al. | Sep 1971 | A |
3953002 | England, Jr. | Apr 1976 | A |
5938982 | Sugiura | Aug 1999 | A |
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7510172 | Kojima | Mar 2009 | B2 |
7624969 | Schletz | Dec 2009 | B2 |
7797937 | Endicott | Sep 2010 | B2 |
8826649 | Li | Sep 2014 | B2 |
20170252714 | Bennett | Sep 2017 | A1 |
Number | Date | Country |
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M424358 | Mar 2012 | TW |
Number | Date | Country | |
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20170304782 A1 | Oct 2017 | US |