SHOWER HEAD STRUCTURE
20190184409 ยท 2019-06-20
Inventors
Cpc classification
B05B1/1681
PERFORMING OPERATIONS; TRANSPORTING
B05B15/40
PERFORMING OPERATIONS; TRANSPORTING
E03C1/04
FIXED CONSTRUCTIONS
B05B12/002
PERFORMING OPERATIONS; TRANSPORTING
B05B1/1609
PERFORMING OPERATIONS; TRANSPORTING
B05B1/185
PERFORMING OPERATIONS; TRANSPORTING
B05B1/1618
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B1/16
PERFORMING OPERATIONS; TRANSPORTING
B05B1/12
PERFORMING OPERATIONS; TRANSPORTING
B05B1/30
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A shower head structure includes a main body, a face plate, and a switching device installed inside the main body for controlling an outflow of water from the face plate. The circumferential portion of the face plate is provided with a plurality of water outlet units. Each water outlet unit includes a plurality of jet orifices. The water flowing from the plurality of jet orifices forms a bunched spout. The bunched spout includes a plurality of fine spouts. The water won't spray about. Since the diameter of the jet orifice is small, the force of the fine spouts is stronger. The water-saving effect is good. The shower head can be used for low pressure environment.
Claims
1. A shower head structure, comprising a main body, a face plate, wherein the face plate is provided with at least one water outlet unit, and the water outlet unit includes at least two jet orifices; wherein the at least one water outlet unit comprises plural water outlet units that are spaced from each other and each of the plural water outlet units comprises a cluster of jet orifices that includes the at least two jet orifices of the water outlet unit, such that the clusters of jet orifices are spaced from each other and the at least two jet orifices of each of the clusters are spaced from each other by a predetermined distance between the jet orifices, the jet orifices of the clusters of the plural water outlet units being structured to jet water therefrom at the same time.
2. The shower head structure as claimed in claim 1, wherein the jet orifices each have a diameter of 0.2 mm-0.7 mm.
3. The shower head structure as claimed in claim 2, wherein the jet orifices each have a diameter of 0.2 mm-0.5 mm.
4. The shower head structure as claimed in claim 2, wherein the jet orifices each have a diameter of 0.5 mm-0.7 mm.
5. The shower head structure as claimed in claim 2, wherein the jet orifices each have a diameter of 0.2 mm-0.3 mm.
6. The shower head structure as claimed in claim 2, wherein the jet orifices each have a diameter of 0.3 mm-0.5 mm.
7. The shower head structure as claimed in claim 1, wherein the predetermined distance between the jet orifices is more than 1 mm.
8. The shower head structure as claimed in claim 1, further comprising a bubbler installed in a middle portion of the face plate, the at least one water outlet unit being disposed on a circumferential portion of the face plate around the bubbler such that the clusters of jet orifices are arranged circumferentially around the bubbler.
9. The shower head structure as claimed in claim 1, wherein the main body comprises a housing and a water diversion body.
10. The shower head structure as claimed in claim 9, wherein the housing and the water diversion body are separate structures to be assembled together.
11. The shower head structure as claimed in claim 9, wherein the housing is integrally formed with the water diversion body.
12. The shower head structure as claimed in claim 1, wherein the face panel is directly formed.
13. The shower head structure as claimed in claim 1, wherein the face panel is made of a plastic material by injection molding.
14. The shower head structure as claimed in claim 1, wherein the at least one water outlet unit is formed of rubber materials by molding and then the face panel is formed by over-molding the plastic materials onto the formed at least one water outlet unit.
15. The shower head structure as claimed in claim 1, wherein the face panel and the at least one water outlet unit are assembled together, wherein the at least one water outlet unit is formed as one piece or more pieces with rubber materials by molding and the face plate is formed by plastic materials or metal materials by molding.
16. The shower head structure as claimed in claim 1, wherein a switching device is installed inside the main body for controlling an outflow of water from the face plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0026] Embodiments of the present invention will now be described, by way of example only, with reference to the accompanying drawings.
[0027] As shown in
[0028] The center of the front of the face plate 2 has an installation trough 21 for installation of the bubbler 3. The bubbler 3 is removably connected to the installation trough 21 by a fastener, such as a threaded fastener. A searing ring is provided between the bubbler 3 and the installation trough 21. The center of the rear of the face plate 2 has a cylindrical first outlet chamber 22 communicating with the installation trough 21. The rear of the face plate 2 further has an annular second outlet chamber 23.
[0029] The circumferential portion of the front of the face plate 2 is provided with at least one water outlet unit 24. The water outlet unit 24 communicates with the second outlet chamber 23. The number of the water outlet units 24 is dependent on the required water discharge amount. The water outlet unit 24 includes at least two jet orifices 241. The water outlet unit 24 is shaped by the arrangement of the jet orifices 241. As shown in
[0030] The diameter of each of the jet orifices 241 is in a range of 0.2 mm-0.7 mm. In this way, it can ensure that water outlet unit 24 provides the desired water discharge flow and pattern while still being suitable for use in different water pressure environments. That is, even if the water pressure environment is relatively low, the water outlet unit 24 still can provide clusters of thin water jets with a mist shape and a relatively strong force, without any unsuitable feeling of the water flow for the person taking a shower.
[0031] This enables the shower head assembly to generate and discharge clusters of thin water jets for purposes of modulating a force of an outflow of water such that the water flow provides a relatively soft feeling for uses and undesired splashing of water can be reduced. This helps to save water and allows the shower head assembly to function normally even in a low pressure environment.
[0032] Preferably, in one example, the diameter of the jet orifices 241 each is between 0.5 mm and 0.7 mm. In another example, the diameter of the jet orifices 241 each is between 0.2-0.5 mm. The diameter of the jet orifices 241 can also have any other suitable ranges, for example in a range of 0.2 mm-0.3 mm or 0.3 mm-0.5 mm. The distance between the two jet orifices 241 is more than 1 mm.
[0033] The face panel 2 is directly formed, or it may be made of a plastic material by injection molding or a rubber material by molding, or assembled by molding. In one example, the at least one water outlet unit 24 is formed of rubber materials by molding and then the face panel 2 is formed by over-molding the plastic materials onto the formed at least one water outlet unit 24. In another example, the face panel 2 and the at least one water outlet unit 24 are assembled together, wherein the at least one water outlet unit 24 is formed as one piece or more pieces with rubber materials by molding and the face plate 2 is formed by plastic materials or metal materials by molding.
[0034] Referring to the Figures, the main body 1 comprises a housing 5 and a water diversion body 6. The upper end of the housing 5 has an opening 51 and an inner flange 52 adjacent the opening 51. The lower end of the housing 5 has a connecting opening 53. The face plate 2 is removably connected to the connecting opening 53 by a fastener, such as a threaded fastener. The side wall of the housing 5 has an installation hole 54 for installation of the switching device 4. The upper portion of the water diversion body 6 has a water inlet passage 61. The middle portion of the water diversion body 6 has an accommodation chamber 62 for installation of the switching device 4 and at least two water outlets to respectively communicate with the first outlet chamber 22 and the second outlet chamber 23 of the face panel 2.
[0035] The switching device 4 is a push-type changeover valve which is installed in the accommodation chamber 62. Referring to
[0036] When the user actuates the button 41, such as depressing the button 41, the gasket 46 on the valve shaft 43 is moved to the set position to close one of the water outlets. For example, the gasket 46 closes one of the water outlets so that the water inlet passage 61 communicates with the second outlet chamber 23, or the gasket 46 closes the other water outlet so that the water inlet passage 61 communicates with the first outlet chamber 22.
[0037] To assemble the present invention, all the parts of the switching device 4 except the button 41 are installed in the water diversion body 6, and the water diversion body 6 is installed in the housing 5. The button 41 is installed on the valve shaft 43 and the protruding post 63 through the installation hole 54. The upper end of the water diversion body 6 is against the flange 52 of the housing 5. The face panel 2 is affixed to the connecting opening 53 of the housing 5, and the face panel 2 is fitted to the lower end of the water diversion body 6 through sealing rings (b) and (c), so that the face panel 2 is stably secured in the housing 5. Finally, the bubbler 3 is removably affixed to the face panel 2.
[0038] The casing 5 and the water diversion body 6 may be integrally formed, not limited to the above-described separate structures to be assembled together. The switching device 4 is not limited to the push-type switching valve, and may be a rotary-type switching valve or a slide-type switching valve.
[0039] To practice the present invention, referring to
[0040] As shown in
[0041] Although particular embodiments of the present invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the present invention. Accordingly, the present invention is not to be limited except as by the following claims.