Foamed water discharging device and foamed water discharging unit
10654053 ยท 2020-05-19
Assignee
Inventors
Cpc classification
B05B7/005
PERFORMING OPERATIONS; TRANSPORTING
B05B7/0425
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A foamed water discharging device includes a water feeding hole, a water discharging hole, a water passage, a ventilation passage, and a foamed water generator. The water passage has a cylindrical inner circumferential surface extending from the water feeding hole to the water discharging hole. The ventilation passage takes in external air on the upstream side of the water passage. The foamed water generator causes water containing the external air to undergo a collision on the downstream side of the water passage so as to convert the water into foamed water. The foamed water generator includes flow dividing ribs along the inner circumferential surface of the water passage, which protrude radially toward the center of the water passage. On a top portion of each flow dividing rib, at least a pair of inclined surfaces are formed to divide, rightward and leftward, water inflowing from a water guiding passage through the water feeding hole.
Claims
1. A foamed water discharging device comprising: a casing being a cylindrical member; a water passage disposed in the casing and comprising a water feeding hole at one end of the casing and a water discharging hole at another end of the casing; a foamed water generator disposed at the water passage to convert water supplied through the water feeding hole into foamed water; and a ventilation passage disposed on an upstream side of the foamed water generator to take external air into the water passage, the foamed water generator comprising a flow dividing rib and a water receiving rib, the flow dividing rib protruding toward an inside of the water passage, the flow dividing rib being made up of an approximately triangular shape of a protrusion piece protruding from an inner circumferential surface of the water passage toward a center of the water passage, and the flow dividing rib comprising a top portion and side surfaces, the top portion inclined downward from the upstream side of the water passage toward a downstream side of the water passage, and the top portion comprising an edge at the center of the top portion and a pair of inclined surfaces at two sides of the edge, the edge extending and inclined downward from the upstream side of the water passage to the downstream side of the water passage; and the pair of inclined surfaces inclined from the edge at a predetermined angle, one of the pair of inclined surfaces inclined in rightward direction from the edge and another of the pair of inclined surfaces inclined in leftward direction from the edge, the side surfaces disposed on the left and right of the flow dividing rib and extending downward from the pair of inclined surfaces; the water receiving rib formed by protruding from each of the side surfaces of the flow dividing rib and configured to receive part of divided water, the water receiving rib comprising a receiving surface disposed at a position lower than the pair of inclined surfaces of the flow dividing rib, and the receiving surface extending toward the downstream side of the water passage at an inclination angle smaller than an inclination angle of the edge of the flow dividing rib.
2. The foamed water discharging device according to claim 1, wherein the water passage comprises the cylindrical member comprising a circular inner circumferential surface, and wherein the flow dividing rib comprises a plurality of flow dividing ribs protruding from the inner circumferential surface of the cylindrical member toward the center of the water passage.
3. The foamed water discharging device according to claim 1, wherein the water passage comprises a cylindrical member comprising a planar portion at a portion of an inner circumferential surface of the cylindrical member, and wherein the flow dividing rib comprises a plurality of flow dividing ribs protruding from the planar portion of the inner circumferential surface of the cylindrical member in a direction orthogonal to the planar portion.
4. The foamed water discharging device according to claim 1, further comprising a pressure reducer in the water passage between the water feeding hole disposed at the one end of the casing and the ventilation passage to increase a flowing speed of the water supplied through the water feeding hole.
5. The foamed water discharging device according to claim 4, wherein the pressure reducer comprises a bush fitted in the water feeding hole disposed at the one end of the casing, and wherein a water guiding passage is disposed on an outer circumferential surface of the bush to guide the water supplied through the water feeding hole to the water passage on a downstream side of the bush.
6. The foamed water discharging device according to claim 5, wherein the bush comprises a larger-diameter portion fitted in the water feeding hole, and a smaller-diameter portion comprising a diameter smaller than a diameter of the larger-diameter portion and fittable with an inner circumferential surface of the water passage, and wherein the water guiding passage comprises a stripe-shaped groove formed on the outer circumferential surface of the bush between the larger-diameter portion and the smaller-diameter portion.
7. The foamed water discharging device according to claim 6, wherein the stripe-shaped groove comprises a plurality of stripe-shaped grooves along the outer circumferential surface of the bush.
8. The foamed water discharging device according to claim 5, wherein the casing comprises a ventilation window to take external air into the water passage, the ventilation window being open between the water guiding passage and the flow dividing rib.
9. The foamed water discharging device according to claim 8, wherein the ventilation window is disposed at a position on a linear passage connecting the water guiding passage to the top portion of the flow dividing rib.
10. The foamed water discharging device according to claim 8, wherein the ventilation window is disposed at a position displaced in a rightward direction or a leftward direction from a linear passage connecting the water guiding passage to the top portion of the flow dividing rib.
11. The foamed water discharging device according to claim 1, wherein the ventilation passage comprises an elastic member that regulates a diameter and a width of the ventilation passage for adjusting an amount of external air to be taken into the water passage.
12. The foamed water discharging device according to claim 1, wherein a filter is disposed between the foamed water generator and the water discharging hole, the filter comprising a stack of meshed members each comprising a plurality of fine holes.
13. A foamed water discharging unit combined with the foamed water discharging device according to claim 1, the foamed water discharging device being attachably and detachably disposed between a water feeding case communicating with the water feeding hole and a water discharging case communicating with the water discharging hole.
14. The foamed water discharging unit according to claim 13, wherein flow amount adjusting means for adjusting an amount of external air to be taken into the water passage between the water feeding hole and the water discharging hole is disposed between the water feeding case and the water discharging case.
15. The foamed water discharging device according to claim 3, wherein the cylindrical member defining the water passage comprises a ventilation window for the ventilation passage to take external air into the water passage.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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MODE FOR CARRYING OUT THE INVENTION
(19) Embodiments of the foamed water discharging device according to the present invention will be described in detail below by referring to the accompanying drawings. As illustrated in
(20) As illustrated in
(21) As illustrated in
(22) Each of the plurality of grooves 25 is a continuous groove made up of a perpendicular portion 25a, a bent portion 25b, and an inclined portion 25c. The perpendicular portion 25a has an approximately perpendicular surface along the outer circumferential surface of the larger-diameter portion 21 of the bush 23. The bent portion 25b is bent gently between the lower end of the perpendicular portion 25a and an upper portion of the smaller-diameter portion 22. The inclined portion 25c extends from the lower end of the bent portion 25b toward the lower surface 22a of the smaller-diameter portion 22 and is inclined inwardly.
(23) As illustrated in
(24) As a result of the above-described fitting, a plurality of through, water guiding passages 24 are formed between the outer circumferential surface of the bush 23 and the inner circumferential surface of the casing 4. The water guiding passages 24 correspond to the plurality of grooves 25. The flow of water through the water guiding passage 24 is diminished from the perpendicular portion 25a through the bent portion 25b, and is increased in flowing speed during the downward flow through the inclined portion 25c. This configuration causes the water to be forced out toward the downstream side of the water passage 11.
(25) In a conventional foamed water discharging device, such a structure of the pressure reducer is employed that a plurality of small holes are disposed through the casing, from the water feeding hole toward the downstream side of the casing. In the present invention, the plurality of grooves 25 are formed along the outer circumferential surface of the bush 23, and the grooves 25 are in close contact with the inner circumferential surface of the casing 4. This configuration enables more precise, finer hole processing to be performed. Also, the bush 23 is detachable from the casing 4. This configuration enables cleaning to be performed with the parts taken apart. This enables clogging, if any, in the grooves 25 to be eliminated more easily, providing superior maintainability. Additionally, the above configuration optimizes water flow adjustment by adjusting the shape, size, or number of the grooves 25 formed on the bush 23 or by replacing the entire bush 23 itself based on the shape, size, or flow amount of the faucet or a similar device to which the foamed water discharging device 1 is mounted.
(26) In the foam generator 14, which is positioned on the downstream side of the pressure reducer 13, external air is emitted from the ventilation windows 18, which are open toward the inner circumferential surface of the casing 4, and is applied to the water forced out from the plurality of the water guiding passages 24. In this manner, air bubble water, which contains air, is obtained. The ventilation windows 18 are open on the downstream side of the plurality of the water guiding passages 24 and immediately under the plurality of the water guiding passages 24. A flow of air is introduced through the ventilation windows 18 to turn the water emitted through the water guiding passages 24 into air bubble water. The air bubble water flows toward the center of the casing 4 while being scattered on a suitable level.
(27) As illustrated in
(28) Each flow dividing rib 31 is made up of a protrusion piece 29. The protrusion piece 29 is an approximately triangular plate protruding from the inner circumferential surface of the water passage 11. The inclined top portion 30 of the protrusion piece 29 is inclined downward from the inner circumferential surface of the water passage 11 toward the center of the water passage 11. The top portion 30 includes an edge 35 at the center in the longitudinal direction of the top portion 30. The edge 35 is the center of a pair of inclined surfaces 33, which are inclined by a predetermined angle in the rightward and leftward directions. The inclination angle of the pair of inclined surfaces 33, which are centered around the edge 35, is set based on the flowing speed at which the foamed water is discharged. At an acute angle, the flow of water can be divided without decreasing the flowing speed. At an obtuse angle, the flow of water can be divided with lowered water flowing speed. While in the embodiment illustrated in
(29) The pair of water receiving ribs 32 include the receiving surfaces 34. The receiving surfaces 34 receive, at positions lower than the inclined surfaces 33, the water divided by the pair of inclined surfaces 33 of the flow dividing rib 32. The receiving surfaces 34 protrude from two side surfaces of the flow dividing rib 31 at an inclination angle smaller than the inclination angle of the top portion 30 of the flow dividing rib 31. This configuration ensures that the water divided by the flow dividing rib 31 is guided toward a cylindrical rib 36, which is provided for rectifying purposes, with the flowing speed of the water lowered. As a result, more finely foamed water is obtained.
(30) The water that passes through the plurality of flow dividing ribs 31 and the plurality of water receiving ribs 32 constitutes approximately from 30 percent to 40 percent of the water that flows through the water passage 11 as a whole. The 30 to 40-percent water undergo more collisions in the water passage 11 than when guided directly to the cylindrical rib 36 from the foam generator 14, since the water flows in varying directions and passes through such elements as the flow dividing ribs 32, the water receiving ribs 32, and the cylindrical rib 36. Each of the plurality of flow dividing ribs 31 uses the edge 35 to cut the water forced out from the upstream side so as to divide the water toward the adjacent, right and left water receiving ribs 32. This configuration further promotes collisions of the water in the course toward the water discharging hole 3, from the cylindrical rib 36 through vertical ribs 37.
(31) As illustrated in
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(33) In this embodiment, the flow dividing ribs 31 and the water receiving ribs 32 are provided at positions that divide the inner circumferential surface of the casing 4 uniformly in six. Additionally, the cylindrical rib 36 is provided. This structure causes the jet flow refined at the flow dividing ribs 31 and the cylindrical rib 36 to take in air around the jet flow at the time of collision with the liquid phase formed by the receiving surfaces 34 of the water receiving ribs 32, resulting in more finely foamed water discharged through the water discharging hole. As illustrated in
(34) In the water passage 11, the ventilation windows 18, through which external air is guided, are positioned immediately above the respective flow dividing ribs 31. That is, the ventilation windows 18 are positioned on linear passages connecting the water guiding passages 24 of the pressure reducer 13 to the top portion 30 of the flow dividing ribs 31. This configuration causes external air to directly contact the water dropping toward the flow dividing ribs 31. As a result, the generated foamed water contains an increased number of air bubbles.
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(36) In this embodiment, the opening positions of the ventilation windows 18 are displaced to avoid overlapping with the passages for the water flowing from the water guiding passages 24 toward the top portions 30 of the flow dividing ribs 31. It is also possible to adjust the amount of air bubbles to be contained based on the distance by which one end of the opening of the ventilation window 18 is spaced apart from the top portion 30 of the flow dividing rib 31.
(37) Also, in the ventilation passage 12, in which the ventilation windows 18 are disposed, flow amount adjusting means for adjusting the amount of external air to be introduced into the water passage 11b may be disposed. The flow amount adjusting means ensures setting of the size and amount of air bubbles to be contained in the foamed water generated through the flow dividing ribs 31.
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(39) In the foamed water discharging unit 71, routes communicating with the ventilation passage 12 of the foamed water discharging device 1 are: the plurality of discharge holes 75, which are disposed on the water discharging case 73; and the connection portion at which the water feeding case 72 and the water discharging case 73 are combined with each other via the elastic member 76. The elastic member 76, which is interposed at the connection portion, functions as the flow amount adjusting means. This configuration ensures that by loosening and tightening the engagement between the water feeding case 72 and the water discharging case 73, the diameter and width of the ventilation passage 12 of the foamed water discharging device 1 are regulated, enabling the amount of external air guided into the water passage 11b to be conveniently changed. Thus, the amount of air bubbles to be contained in the water foamed by the flow dividing ribs 31 can be adjusted, and the air bubbles can be refined by adjusting the amount of external air inflowing through the ventilation windows 18.
(40) Also as illustrated in
(41) Next, a foamed water discharging device according to the second embodiment of the present invention will be described by referring to
(42) As illustrated in
(43) The pressure reducer 63 includes a flat bush fittable with the water feeding hole 52. On the one planar portion 58a and a part of the corner portion 59 that is in contact with the bush, a plurality of stripe-shaped grooves 67, which extend from the upstream side toward the downstream side, are disposed at equal intervals. The grooves 67 define the water guiding passages 68, which extend toward the foamed water generator 65 through the foam generator 64.
(44) As illustrated in
(45) As illustrated in
(46) Also, flow amount adjusting means for adjusting the amount of external air may be disposed in the ventilation passage 62, which communicates with the ventilation windows 66. The flow amount adjusting means ensures setting of the size and amount of air bubbles to be contained in the water flowing toward the foamed water generator 65 from the water guiding passages 68. The flow amount adjusting means may be implemented by, as described above, an O-ring or some other elastic member that expands and contracts based on changes in the diameter of the ventilation passage 62 or by a shutter or a similar device that opens and closes slidably along the ventilation windows 66. Further, the filter 38 illustrated in
(47) Thus, the foamed water discharging device 51 according to this embodiment, in order to discharge wide, film-shaped foamed water through the water discharging hole 53, the casing 54 has a flat shape for the water passage 61 from the water feeding hole 52 to the water discharging hole 53. Except for this configuration, the foamed water discharging device 51 has a structure similar to the foamed water discharging device 1 according to the first embodiment. In this embodiment, the water passage 61, which is made up of elements such as the water guiding passages 68, the ventilation windows 66, and the flow dividing ribs 31, is formed along the one planar portion 58a of the inner circumferential surface of the casing 54. The water passage 61 may alternatively be formed along the other planar portion 58b. It is also possible to form similar water passages 61 both on the pair of planar portions 58a and 58b insofar as elements such as the water guiding passages 68, the ventilation windows 66, and the flow dividing ribs 31 do not overlap each other and are opposed to each other.
(48) The foamed water discharging unit 71 illustrated in
DESCRIPTION OF THE REFERENCE NUMERAL
(49) A Gas phase B Liquid phase C Gas-liquid boundary 1 Foamed water discharging device (first embodiment) 2 Water feeding hole 3 Water discharging hole 4 Casing 5 Receptacle 6 Inner circumferential surface 7 Outer circumference surface 8 Screw groove 11 Water passage (first embodiment) 11b Water passage (second embodiment) 12 Ventilation passage 13 Pressure reducer 14 Foam generator 15 Foamed water generator 16 Rectifier 17a First external air inlet hole 17b Second external air inlet hole 18 Ventilation window 21 Larger-diameter portion 21a Upper surface 22 Smaller-diameter portion 22a Lower surface 23 Bush 24 Water guiding passage 25 Groove 25a Perpendicular portion 25b Bent portion 25c Inclined portion 27 Gasket 29 Protrusion piece 30 Top portion 31 Flow dividing rib 32 Water receiving rib 33 Inclined surface 34 Receiving surface 35 Edge (ridge) 36 Cylindrical rib 37 Vertical rib 38 Filter 51 Foamed water discharging device (second embodiment) 52 Water feeding hole 53 Water discharging hole 54 Casing 55 Discharge head 56 Inner circumferential surface 58a, 58b Planar portion 59 Corner portion 61 Water passage 62 Ventilation passage 63 Pressure reducer 64 Foam generator 65 Foamed water generator 66 Ventilation window 67 Groove 68 Water guiding passage 69 Rectifier 71 Foamed water discharging unit 72 Water feeding case 73 Water discharging case 74 Outer diameter portion 75 Discharge hole 76 Elastic member