Water outlet device

By designing the rotating parts and operating parts of the water outlet device and combining it with the inclined wall structure, the water outlet state of the massage shower is switched, which solves the problem of the inability to conveniently control the water flow in the existing technology and improves the user experience.

CN223337554UActive Publication Date: 2025-09-16JOMOO KITCHEN & BATHROOM
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Patent Information

Application Number
CN202422667524.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-09-16
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

Existing massage showers cannot achieve fixed flow rate water discharge or convenient control of switching to other water channels, resulting in a poor user experience.

Method used

A water outlet device is designed, which includes a main body, a rotating part and an operating part. The rotating part is driven by hydraulic power to rotate, and the operating part blocks the rotating part at different positions to achieve the correspondence or non-correspondence between the water diversion hole and different water outlet cavities. The inclined wall design is combined to realize the switching of internal and external water outlet.

Benefits of technology

The flexible switching of the water outlet device is realized to meet the user's needs for different water outlet states, improve the user experience, and provide a massage effect of alternating internal and external water outlets.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a water outlet device which comprises a body, a rotating piece and an operating piece. A water distribution hole is formed in the rotating part, the water inlet end of the water distribution hole is communicated with the water inlet channel, and the water outlet end of the water distribution hole is suitable for being communicated with the first water outlet cavity when corresponding to the first water outlet cavity; the operating part is suitable for moving at the second position relative to the body, and when the operating part moves at the second position, the operating part is located on the rotating part, so that the rotating part can continuously rotate under the hydraulic action, the water distribution hole corresponds to or does not correspond to the first water outlet cavity, the first water outlet cavity can supply water to the water outlet hole and stop water, the state of the water outlet hole is continuously changed, and the experience is improved. The operating part is further suitable for moving at a first position relative to the body, and when the operating part moves at the first position, the operating part is located on the rotating path of the rotating part to block the rotating part and enable the rotating part to stop at the first stop position, so that the water distribution hole corresponds to or does not correspond to the first water outlet cavity, at the moment, the rotating part does not rotate any more, and the requirement for continuous use of a user in a certain state is met.
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Description

Technical Field

[0001] The utility model relates to the field of water outlet products, in particular to a water outlet device. Background Art

[0002] In order to enrich the bathing experience, the massage shower head includes a main body and an impeller. The main body is provided with a water outlet and a water outlet cavity connected to the water outlet. The impeller is provided with a water diversion hole. When water enters the water channel, the impeller is driven by hydraulic force to make the water diversion hole and the water outlet cavity correspond or not correspond. Since the impeller continues to rotate, this state also continues. Although it has a massage experience, when the user wants to use it normally, such as discharging shower water at a fixed flow rate, or closing the water channel or switching to other water channels, the corresponding switching cannot be achieved. Utility Model Content

[0003] The purpose of the present invention is to overcome the above-mentioned defects or problems in the background technology and provide a water outlet device.

[0004] To achieve the above objectives, the present invention and its preferred embodiments adopt the following technical solutions, but the embodiments are not limited to the following solutions:

[0005] Solution 1: A water outlet device, comprising

[0006] a body, which is provided with a water inlet, a first water outlet cavity and at least one water outlet hole communicating with the first water outlet cavity;

[0007] a rotating member mounted on the body and adapted to be driven by hydraulic force to rotate when water enters the water inlet, the rotating member being provided with a water diversion hole, the water inlet end of the water diversion hole being in communication with the water inlet, and the water outlet end of the water diversion hole being adapted to be in communication with the first water outlet cavity when corresponding to the first water outlet cavity;

[0008] The operating member is adapted to move between a first position and a second position relative to the body. When it moves to the first position, it is located on the rotation path of the rotating member to block the rotating member, so that the rotating member stops at the first stop position, so that the water diversion hole corresponds to or does not correspond to the first water outlet cavity. When it moves to the second position, it gives way to the rotating member to allow the rotating member to rotate under water drive.

[0009] Solution 2, based on Solution 1, the body is further provided with a second water outlet cavity, the second water outlet cavity is communicated with the water outlet hole, the operating member is further adapted to move to a third position, when it moves to the third position, it is located on the rotation path of the rotating member to block the rotating member, so that the rotating member is docked at the second docking position, when the rotating member is docked at the first docking position and the second docking position, the water diversion hole is located in one of the following two docking states:

[0010] The water diversion hole corresponds only to the first water outlet cavity, the water diversion hole corresponds only to the second water outlet cavity, the water diversion hole corresponds to both the first and second water outlet cavities, or the water diversion hole does not correspond to either the first or second water outlet cavity.

[0011] Option three, based on option two, the water outlet hole includes a first water hole and a second water hole, the first water hole is connected to the first water outlet cavity, and the second water hole is connected to the second water outlet cavity.

[0012] Option 4, based on Option 2, the water outlet is provided with a first wall and a second wall, the first wall is inclined inward, and the second wall is inclined outward. When the water diversion hole is only connected to the first water outlet cavity, the water flow of the first water outlet cavity flows out along the first wall, so that the water outlet discharges water inward. When the water diversion hole is only connected to the second water outlet cavity, the water flow of the second water outlet cavity flows out along the second wall, so that the water outlet discharges water outward.

[0013] Solution 5, based on Solution 4, the water diversion hole is adapted to correspond to both the first water outlet cavity and the second water outlet cavity simultaneously, and is adapted to reduce the corresponding area between the water diversion hole and one of the first water outlet cavity and the second water outlet cavity when the corresponding area between the water diversion hole and the other increases. Solution 6, based on Solution 1, further includes a biasing member, the main body is provided with a first surface, the water inlet end of the first water outlet cavity opens to the first surface, the water outlet end of the first water outlet cavity is connected to the water outlet hole, the rotating member is provided with a second surface facing the first surface, the water inlet end of the water diversion hole is connected to the water inlet channel, the water outlet end of the water diversion hole opens to the second surface, and the two ends of the biasing member act on the main body and the rotating member respectively to make the first surface and the second surface fit together.

[0014] Solution seven, based on solution one, the operating member is slidingly connected or rotationally connected to the body.

[0015] Option 8, based on Option 2, the operating member is slidably connected to the main body, and the operating member is provided with a first limiting surface and a second limiting surface. When the operating member slides to the first position, the first limiting surface is suitable for blocking the rotating member so that the rotating member stops at the first stopping position. When the operating member slides to the third position, the second limiting surface is suitable for blocking the rotating member so that the rotating member stops at the second stopping position.

[0016] Option nine, based on Option one, the rotating part includes an impeller and a rotating plate, the main body is provided with an installation cavity isolated from the water path of the main body, the impeller is provided with the water diversion hole, the impeller is suitable for sealingly extending into the installation cavity and being connected to the rotating plate to prevent rotation, the rotating plate is provided with a rotating body and a limiting protrusion protruding from the rotating body in a direction away from its rotation axis, the operating part is provided with a first limiting surface, the first limiting surface is suitable for moving to the rotation path of the limiting protrusion to block the limiting protrusion.

[0017] From the above description of the present invention and its preferred embodiments, it can be seen that, compared with the prior art, the technical solution of the present invention and its preferred embodiments have the following beneficial effects due to the adoption of the following technical means:

[0018] 1. In solution 1 and its preferred embodiment, a water outlet device includes a main body, a rotating part and an operating part.

[0019] The body is provided with a water inlet, a first water outlet cavity and a water outlet hole communicated with the first water outlet cavity;

[0020] The rotating member is mounted on the main body and is suitable for being driven to rotate by hydraulic force when water enters the water inlet. A water diversion hole is provided on the rotating member. The water inlet end of the water diversion hole is communicated with the water inlet, and the water outlet end of the water diversion hole is suitable for being communicated with the first water outlet chamber when corresponding to the first water outlet chamber; the operating member is suitable for moving to a second position relative to the main body. When it moves to the second position, it gives way to the rotating member to allow the rotating member to be driven to rotate by hydraulic force. Therefore, the rotating member can continuously rotate under the action of hydraulic force to make the water diversion hole correspond or not correspond to the first water outlet chamber, so that the first water outlet chamber can supply water to and stop water from the water outlet hole, constantly changing the state of the water outlet hole to improve the experience.

[0021] The operating member is also suitable for moving to a first position relative to the main body. When it moves to the first position, it is located on the rotation path of the rotating member to block the rotating member, so that the rotating member stops at the first stop position, so that the water diversion hole corresponds to or does not correspond to the first water outlet cavity, so that the first water outlet cavity discharges water to the water outlet hole, or the first water outlet cavity does not discharge water to the water outlet hole. At this time, the rotating member no longer rotates, satisfying the user's continuous use of a certain state.

[0022] 2. In the second scheme and its preferred embodiment, the main body is further provided with a second water outlet chamber, which is connected to the water outlet hole. The operating member is also suitable for moving to a third position. When it moves to the third position, it is located on the rotation path of the rotating member to block the rotating member, so that the rotating member is docked at the second docking position. When the rotating member is docked at the first docking position and the second docking position, the water diversion hole is located in two of the following docking states: the water diversion hole corresponds only to the first water outlet chamber, the water diversion hole corresponds only to the second water outlet chamber, the water diversion hole corresponds to the first water outlet chamber and the second water outlet chamber at the same time, and the water diversion hole does not correspond to the first water outlet chamber and the second water outlet chamber, so as to meet the user's continuous use of two states and improve the user experience.

[0023] 3. In scheme three and its preferred embodiment, the water outlet includes a first water hole and a second water hole. The first water hole is connected to the first water outlet cavity, and the second water hole is connected to the second water outlet cavity. The first water hole and the second water hole can be in different positions and water shapes, so that different water outlet holes can be switched continuously for use to meet the user's usage needs.

[0024] 4. In scheme 4 and its preferred embodiment, the water outlet is provided with a first wall and a second wall, the first wall is inclined inwardly, and the second wall is inclined outwardly. When the water diversion hole is only connected to the first water outlet cavity, the water flow of the first water outlet cavity adheres to the first wall and flows out, so that the water outlet discharges water inwardly. When the water diversion hole is only connected to the second water outlet cavity, the water flow of the second water outlet cavity adheres to the second wall and flows out, so that the water outlet discharges water outwardly. The water outlet of the water outlet device can have different water outlet directions, that is, it can have the form of internal water outlet and external water outlet, so as to facilitate user use, or the form of internal water outlet and external water outlet alternatingly to provide a massage effect.

[0025] 5. In scheme five and its preferred embodiment, the water diversion hole is adapted to correspond to the first water outlet chamber and the second water outlet chamber at the same time, and is adapted to reduce the corresponding area between the water diversion hole and one of the first water outlet chamber and the second water outlet chamber when the corresponding area between the water diversion hole and the other increases. Therefore, during the rotation of the rotating part, the water outlet hole will automatically swing inward and outward, thereby improving the massage effect.

[0026] 6. In scheme six and its preferred embodiment, the main body is provided with a first surface, the water inlet end of the first water outlet cavity opens on the first surface, the water outlet end of the first water outlet cavity is connected with the water outlet hole, the rotating member is provided with a second surface facing the first surface, the water outlet end of the water diversion hole opens on the second surface, and the two ends of the biasing member act on the main body and the rotating member respectively to make the first surface and the second surface fit together, preventing a gap between the first surface and the second surface, resulting in water always passing through the first water outlet cavity and affecting use.

[0027] 7. In solution seven and its preferred embodiment, the operating member is slidably connected or rotationally connected to the body to achieve position change.

[0028] 8. In scheme eight and its preferred embodiment, the operating member is slidably connected to the main body, and the operating member is provided with a first limiting surface and a second limiting surface. When the operating member slides to the first position, the first limiting surface is suitable for blocking the rotating member so that the rotating member stops at the first stopping position. When the operating member slides to the third position, the second limiting surface is suitable for blocking the rotating member so that the rotating member stops at the second stopping position. The two surfaces on the operating member are used to achieve the docking of the rotating member at different positions.

[0029] 9. In scheme nine and its preferred embodiments, the rotating part includes an impeller and a rotating plate. The main body is provided with an installation cavity isolated from the water channel of the main body. The impeller is provided with a water diversion hole. The impeller is suitable for extending into the installation cavity in a sealed manner to prevent water from entering the installation cavity. The impeller is connected to the rotating plate in a non-rotating manner to drive the rotating plate to rotate. The rotating plate is provided with a rotating body and a limiting protrusion protruding from the rotating body in a direction away from its rotation axis. The operating part is provided with a first limiting surface. The first limiting surface is suitable for moving to the rotation path of the limiting protrusion to block the limiting protrusion, thereby realizing the parking of the rotating part. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0031] Figure 1 This is a front view of the water outlet device in Example 1;

[0032] Figure 2 This is an exploded view of the water outlet device in Example 1;

[0033] Figure 3 This is an exploded view of the parts in the rotating part area of ​​the water outlet device in Example 1;

[0034] Figure 4 This is a schematic structural diagram of the water outlet device in Example 1;

[0035] Figure 5 This is a schematic diagram of the structure when water is flowing out of the water outlet hole in Example 1;

[0036] Figure 6 This is a schematic diagram of the structure when water is flowing out of the water outlet in Example 1;

[0037] Figure 7 This is a schematic diagram of the coordination between the water diversion hole and the first water outlet cavity and the second water outlet cavity in Example 1. In this case, the water diversion hole corresponds to both the first water outlet cavity and the second water outlet cavity.

[0038] Figure 8 is a schematic diagram of the rotating plate in Example 1;

[0039] Figure 9 is a top view of the operating member in Example 1;

[0040] Figure 10 for Figure 5 The enlarged view of point a in the middle;

[0041] Figure 11 This is a schematic diagram of a water splash in Example 1;

[0042] Figure 12 Schematic diagram of another water splash in Example 1.

[0043] Description of main reference numerals:

[0044] Body 1; water inlet 11; inclined water hole 111; first water outlet chamber 12; second water outlet chamber 13; water diversion chamber 14; first surface 141; water outlet 15; first wall 151; second wall 152; first water inlet surface 153; second water inlet surface 154; installation chamber 16; operation hole 161; through hole 17;

[0045] Rotating member 2; impeller 21; water diversion hole 211; second surface 212; rotating plate 22; rotating body 221; limiting protrusion 222; sealing member 3; biasing member 4; operating member 5; first limiting surface 51; second limiting surface 52; protrusion 53. DETAILED DESCRIPTION

[0046] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are preferred embodiments of the present invention and should not be regarded as excluding other embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0047] In the claims, description and the above-mentioned drawings of the present utility model, unless otherwise clearly defined, the use of terms such as "first", "second" or "third" is to distinguish different objects rather than to describe a specific order.

[0048] In the claims, specification and the above-mentioned drawings of the present utility model, unless otherwise expressly defined, directional words, such as the terms "center", "transverse", "longitudinal", "horizontal", "vertical", "top", "bottom", "inside", "outside", "up", "down", "front", "back", "left", "right", "clockwise", "counterclockwise" and the like, indicating directions or positional relationships are based on the directions and positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction or be constructed and operated in a specific direction, and therefore cannot be understood as limiting the specific scope of protection of the present invention.

[0049] In the claims, specification and the above drawings of the present utility model, unless otherwise clearly defined, if the terms "fixed connection" or "fixed connection" are used, they should be understood in a broad sense, that is, any connection method without any displacement relationship and relative rotation relationship between the two parties, that is to say, including non-detachable fixed connection, detachable fixed connection, integral connection and fixed connection through other devices or elements.

[0050] In the claims, description and drawings of the present utility model, if the terms "include", "have" and their variations are used, they are intended to mean "including but not limited to".

[0051] refer to Figures 1-10 A water outlet device includes a body 1, a rotating member 2, an operating member 5, and a biasing member 4 installed on the body 1. In this embodiment, the water outlet device is a shower head. In other embodiments, it can also be a spray gun, a faucet, a side spray, etc.

[0052] refer to Figure 1-Figure 7 The main body 1 is provided with a water inlet 11, a first water outlet cavity 12, a second water outlet cavity 13, a water diversion cavity 14, and a water outlet hole 15. Figure 4 、 Figure 5 The main body 1 is also provided with an installation cavity 16 isolated from the water path of the main body 1. The installation cavity 16 and the water diversion cavity 14 are connected through a through hole 17 (such as Figure 3 ) is connected, and after subsequent assembly, the through hole 17 is sealed to prevent water flow between the water diversion cavity 14 and the installation cavity 16. Figure 4 、 Figure 5 The installation cavity 16 is provided with an operating hole 161 , which opens on the surface of the body 1 , and a guide groove is further provided in the installation cavity 16 .

[0053] refer to Figure 3 、 Figure 4Water inlet 11 is adapted for water inlet and is provided with an inclined water hole 111, which communicates with water diversion chamber 14. The water outlet direction of inclined water hole 111 is inclined, so that hydraulic force propels the rotating member 2 within water diversion chamber 14 to unidirectional rotation. In other embodiments, the rotating member 2 can also be enabled and disabled by controlling the opening and closing of two inclined water holes 111 with different degrees of inclination in their outlet directions, i.e., when one inclined water hole 111 is open, the other inclined water hole 111 is closed, thereby enabling reciprocal bidirectional rotation of the rotating member 2.

[0054] In this embodiment, reference Figure 5 、 Figure 6 , Figure 10 The water outlet 15 is connected to both the first water outlet cavity 12 and the second water outlet cavity 13. The water outlet 15 has two water outlet states and an intermediate state between the two water outlet states. The water outlet 15 is provided with a first wall 151 and a second wall 152. The first wall 151 is inclined inwardly, and the second wall 152 is inclined outwardly. When only the first water outlet cavity 12 is discharging water, the water flow from the first water outlet cavity 12 flows out along the first wall 151, causing the water outlet 15 to discharge water inwardly. When only the second water outlet cavity 13 is discharging water, the water flow from the second water outlet cavity 13 flows out along the second wall 152, causing the water outlet 15 to discharge water outwardly. When both the first water outlet cavity 12 and the second water outlet cavity 13 are discharging water, if the flow rate of the first water outlet cavity 12 is greater, the water outlet 15 will tend to discharge water inwardly. If the flow rate of the second water outlet cavity 13 is greater, the water outlet 15 will tend to discharge water outwardly. In this embodiment, the water outlet 15 is provided with a first water inlet surface 153 and a second water inlet surface 154. The second water inlet surface 154 is parallel to the first water inlet surface 153 and both face the water outlet end of the water outlet 15. The second water inlet surface 154 is closer to the water outlet end of the water outlet 15 than the first water inlet surface 153. To ensure the water output, there can be multiple water outlets 15. Inward means that the water output of each water outlet 15 converges, usually near the center of the water outlet panel of the main body 1 (i.e., the area where the water outlet 15 is provided), while outward means that the water output of each water outlet 15 spreads out, usually away from the center of the water outlet panel of the main body 1. In this regard, the water outlet angle of each water outlet 15 is not limited, and the water outlet angles of each water outlet 15 can be the same or different.

[0055] refer to Figure 4 The water diversion chamber 14 is provided with a first surface 141. The water inlet openings of the first water outlet chamber 12 and the second water outlet chamber 13 are both on the first surface 141. The water outlet openings are both connected to the water outlet hole 15. For details, refer to Figure 5 、 Figure 6The outlet end of the first water outlet chamber 12 opens at the first water inlet surface 153, and the outlet end of the second water outlet chamber 13 opens at the second water inlet surface 154, preventing the outlet end openings of the first water outlet chamber 12 and the second water outlet chamber 13 from being located in the same plane and affecting the formation of the water shape. The first water outlet chamber 12 and the second water outlet chamber 13 are independent of each other and are not connected to each other. The first water outlet chamber 12 and the second water outlet chamber 13 can both be provided with multiple openings to connect with each water outlet hole 15. Since the main body 1 is relatively complex, the main body 1 can be assembled from multiple parts to form the above-mentioned waterway and installation cavity 16. For example, the main body 1 includes a water outlet panel, a water spray plate, an inner frame, a shower seat, and a handle that are assembled together. The water outlet panel is mainly provided with water outlets. The water spray plate, the inner frame, the shower seat and the water outlet panel are suitable for enclosing together to form the first water outlet chamber 12 and the second water outlet chamber 13. The handle is mainly provided with an installation cavity 16, a water distribution cavity 14 and a water inlet 11.

[0056] refer to Figure 3 and Figure 4 The rotating member 2 is mounted on the main body 1 and is provided with a water diversion hole 211. The rotating member 2 is in a freely rotatable state when not restricted by the operating member 5. The rotating member 2 is also restricted by the operating member 5 to be located in the first or second docking position. When the rotating member 2 is docked in the first and second docking positions, the water diversion hole 211 is located in two of the following docking states: ① The water diversion hole 211 corresponds only to the first water outlet chamber 12; ② The water diversion hole 211 corresponds only to the second water outlet chamber 13; ③ The water diversion hole 211 corresponds to both the first and second water outlet chambers 12 and 13; ④ The water diversion hole 211 does not correspond to either the first or second water outlet chambers 12 and 13. According to the corresponding design, the rotating member 2 can be located in two of the above-mentioned docking states when docked in the first and second docking positions. Of course, if the rotating member 2 has more docking positions, it can also include more docking states to enhance the function of the water outlet device.

[0057] refer to Figure 11 When there are multiple water outlet holes 15, the water diversion hole 211 is only connected to the second water outlet chamber 13. The water outlet holes 15 discharge water outward, which can make the water outlet range larger and meet the user's needs for large-area water outlet, such as bathing and showering. The water diversion hole 211 is only connected to the first water outlet chamber 12. The water outlet holes 15 discharge water inward, which can make the water flows converge into one stream, generating the strongest impact force. It can be used as a spray gun to meet the user's needs for cleaning and flushing. When the water diversion hole 211 is connected to both the first water outlet chamber 12 and the second water outlet chamber 13, it is between the above two types. The water outlet range can be more concentrated, the water output is large and strong, and it will not sting or spray randomly. It is suitable for washing hair, especially for women with thick and long hair. It can easily wet the scalp and clean quickly.

[0058] It should be understood that when there is no corresponding docking state, the water diversion hole 211 is not required to have a corresponding relationship. For example, when there is no docking state in which the water diversion hole 211 does not correspond to the first water outlet chamber 12 and the second water outlet chamber 13, the rotating member 2 may have a state in which the water diversion hole 211 does not correspond to the first water outlet chamber 12 and the second water outlet chamber 13 when it is in a free rotation state, or it may not have the above state.

[0059] In this embodiment, when the rotating member 2 is parked at the first and second parking positions, the water diversion hole 211 corresponds only to the first water outlet cavity 12 and the water diversion hole 211 corresponds only to the second water outlet cavity 13 respectively.

[0060] Specifically, refer to Figure 3 The rotating member 2 includes an impeller 21 and a rotating plate 22. The impeller 21 has blades adapted to be driven by water when water enters the water inlet 11 and rotates. The impeller 21 is partially located in the water diversion chamber 14. The impeller 21 is adapted to sealably pass through the through hole 17 (a seal 3 is installed between the through hole 17 and the impeller 21) and then extend into the mounting chamber 16 to be fixedly connected to the rotating plate 22. For example, the fixed connection is achieved by the cooperation of a non-circular hole and a shaft. Figure 3 、 Figure 4 The portion of the impeller 21 located within the water diversion chamber 14 is provided with a second surface 212 and a water diversion hole 211. The second surface 212 faces the first surface 141 and abuts against the first surface 141. The water inlet end of the water diversion hole 211 opens into the water diversion chamber 14 to communicate with the water inlet 11, and the water outlet end of the water diversion hole 211 opens at the second surface 212. The two ends of the biasing member 4 act on the body 1 and the rotating member 2, respectively, to apply a force toward the first surface 141 on the rotating member 2, so that the first surface 141 and the second surface 212 are in contact, preventing a gap between the first surface 141 and the second surface 212, resulting in water always flowing out of the first and second water outlet chambers 12 and 13. This force is parallel to the rotation axis of the rotating member 2.

[0061] When the water diversion hole 211 corresponds only to the first water outlet cavity 12, it communicates with the first water outlet cavity 12, and water outlet 15 flows inward. When the water diversion hole 211 corresponds only to the second water outlet cavity 13, it communicates with the second water outlet cavity 13, and water outlet 15 flows outward. In this embodiment, the water diversion hole 211 is adapted to correspond simultaneously with the first water outlet cavity 12 and the second water outlet cavity 13. Furthermore, when the corresponding area between the water diversion hole 211 and one of the first water outlet cavity 12 and the second water outlet cavity 13 increases, the corresponding area between the water diversion hole 211 and the other decreases. As the corresponding area increases, the flow rate of the corresponding water outlet cavity increases, and vice versa, it decreases, thereby achieving inward and outward swinging water discharge and uninterrupted water discharge.

[0062] refer to Figure 3 The rotating plate 22 is provided with a rotating body 221 and a limiting protrusion 222 protruding from the rotating body 221 in a direction away from its rotating axis.

[0063] The operating member 5 is adapted to move relative to the body 1 between a first position, a second position, and a third position, such as by sliding or rotating the operating member 5 and the body 1. In this embodiment, the operating member 5 is slidably connected to the body 1, and the operating member 5 is partially disposed in the mounting cavity 16 to cooperate with the rotating plate 22, and partially exposed in the operating hole 161 for easy operation. Figure 9 The portion of the operating member 5 located in the mounting cavity 16 is provided with a first limiting surface 51, a second limiting surface 52 and a guide post, and the guide post is slidably matched with the guide groove to perform sliding guidance.

[0064] When the operating member 5 slides to the first position, the first limiting surface 51 is suitable for moving to the rotation path of the limiting protrusion 222. When the limiting protrusion 222 rotates to abut against the first limiting surface 51, the limiting protrusion 222 is blocked from rotating, thereby causing the rotating member 2 to be unable to rotate and stop at the first stop position.

[0065] When the operating member 5 slides to the third position, the second limiting surface 52 is adapted to move to the rotation path of the limiting protrusion 222 so that the rotating member 2 stops at the second stopping position.

[0066] When the operating member 5 slides to the second position, the first limiting surface 51 and the second limiting surface 52 both give way to the limiting protrusion 222, thereby allowing the rotating member 2 to rotate under hydraulic drive. The first limiting surface 51 and the second limiting surface 52 can be located on the same protrusion 53, or on two protrusions 53 in different areas. In this embodiment, the second position is located between the first and third positions.

[0067] When in use, water starts to flow into the water inlet 11 and enters the water diversion chamber 14 through the inclined water hole 111, driving the rotating member 2 to rotate. If at this time, the operating member 5 is in the second position, the rotating member 2 is driven by the water force to rotate continuously, and the water diversion hole 211 continuously switches between three states: corresponding only to the first water outlet chamber 12, corresponding to the first water outlet chamber 12 and the second water outlet chamber 13 at the same time, and corresponding only to the second water outlet chamber 13. When the rotation speed of the rotating member 2 is slow, the water outlet 15 continuously discharges water from the inner state, the intermediate state, and the outer state, realizing the inner and outer swing water discharge, and can achieve a massage effect, such as Figure 11 When the rotating member 2 rotates at a faster speed, the water shape changes too quickly, and the following will appear: Figure 12 splash shape.

[0068] At this time, when the operating member 5 is operated to the first position, the first limiting surface 51 of the operating member 5 blocks the limiting protrusion 222 of the rotating member 2, causing the rotating member 2 to stop at the first stopping position, so that the water diversion hole 211 corresponds only to the first water outlet cavity 12, and the water outlet 15 flows water inward. When the operating member 5 is operated to the second position, the second limiting surface 52 of the operating member 5 blocks the limiting protrusion 222 of the rotating member 2, causing the rotating member 2 to stop at the second stopping position, so that the water diversion hole 211 corresponds only to the second water outlet cavity 13, and the water outlet 15 flows water outward.

[0069] Compared with the prior art, this embodiment has the following beneficial effects:

[0070] In an exemplary embodiment, a water outlet device includes a main body 1 , a rotating part 2 and an operating part 5 .

[0071] The body 1 is provided with a water inlet 11, a first water outlet cavity 12 and a water outlet hole 15 communicating with the first water outlet cavity 12;

[0072] The rotating member 2 is mounted on the main body 1 and is suitable for being driven to rotate by water when water enters the water inlet 11. A water diversion hole 211 is provided on the rotating member 2. The water inlet end of the water diversion hole 211 is communicated with the water inlet 11, and the water outlet end of the water diversion hole is suitable for being communicated with the first water outlet chamber 12 when corresponding to the first water outlet chamber 12; the operating member 5 is suitable for moving to a second position relative to the main body 1. When it moves to the second position, it gives way to the rotating member 2 to allow the rotating member 2 to be driven to rotate by water. Therefore, the rotating member 2 can continue to rotate under the action of water, so that the water diversion hole 211 corresponds or does not correspond to the first water outlet chamber 12, so that the first water outlet chamber 12 can supply water to and stop water from the water outlet hole 15, constantly changing the state of the water outlet hole 15 to improve the experience.

[0073] The operating member 5 is also suitable for moving to a first position relative to the main body 1. When it moves to the first position, it is located on the rotation path of the rotating member 2 to block the rotating member 2, so that the rotating member 2 stops at the first stop position, so that the water diversion hole 211 corresponds or does not correspond to the first water outlet cavity 12, so that the first water outlet cavity 12 discharges water to the water outlet hole 15, or the first water outlet cavity 12 does not discharge water to the water outlet hole 15. At this time, the rotating member 2 no longer rotates, satisfying the user's continuous use of a certain state.

[0074] In an exemplary embodiment, the main body 1 is further provided with a second water outlet chamber 13, which is connected to the water outlet hole 15. The operating member 5 is also suitable for moving to a third position. When it moves to the third position, it is located on the rotation path of the rotating member 2 to block the rotating member 2, so that the rotating member 2 is docked at the second docking position. When the rotating member 2 is docked at the first docking position and the second docking position, the water diversion hole 211 is located in two of the following docking states: the water diversion hole 211 only corresponds to the first water outlet chamber 12, the water diversion hole 211 only corresponds to the second water outlet chamber 13, the water diversion hole 211 corresponds to the first water outlet chamber 12 and the second water outlet chamber 13 at the same time, and the water diversion hole 211 does not correspond to the first water outlet chamber 12 and the second water outlet chamber 13, so as to meet the user's continuous use of two states and improve the user experience.

[0075] In an exemplary embodiment, the water outlet 15 is provided with a first wall 151 and a second wall 152, the first wall 151 is inclined inwardly, and the second wall 152 is inclined outwardly. When the water diversion hole 211 is only connected to the first water outlet chamber 12, the water flow of the first water outlet chamber 12 flows out along the first wall 151, so that the water outlet 15 discharges water inwardly. When the water diversion hole 211 is only connected to the second water outlet chamber 13, the water flow of the second water outlet chamber 13 flows out along the second wall 152, so that the water outlet 15 discharges water outwardly. The water outlet 15 of the water outlet device can have different water outlet directions, that is, it can have the form of internal water outlet and external water outlet, so as to facilitate user use, or the form of internal water outlet and external water outlet alternating to provide a massage effect.

[0076] In an exemplary embodiment, the water diversion hole 211 is adapted to correspond to the first water outlet chamber 12 and the second water outlet chamber 13 at the same time, and is adapted to reduce the corresponding area of ​​the water diversion hole 211 and one of the first water outlet chamber 12 and the second water outlet chamber 13 when the corresponding area increases. Therefore, during the rotation of the rotating part 2, the water outlet hole 15 will automatically swing inward and outward to improve the massage effect.

[0077] In an exemplary embodiment, the main body 1 is provided with a first surface 141, the water inlet end of the first water outlet chamber 12 opens at the first surface 141, the water outlet end of the first water outlet chamber 12 is connected with the water outlet hole 15, the rotating member 2 is provided with a second surface 212 facing the first surface 141, the water inlet end of the water diversion hole 211 is connected with the water inlet channel 11, and the water outlet end of the water diversion hole 211 opens at the second surface 212, and the two ends of the biasing member 4 act on the main body 1 and the rotating member 2 respectively to make the first surface 141 and the second surface 212 fit together to prevent a gap between the first surface 141 and the second surface 212, which causes water to always pass through the first water outlet chamber 12 and affect use.

[0078] In an exemplary embodiment, the operating member 5 is slidably connected or rotationally connected to the body 1 to achieve position change.

[0079] In an exemplary embodiment, the operating member 5 is slidably connected to the main body 1, and the operating member 5 is provided with a first limiting surface 51 and a second limiting surface 52. When the operating member 5 slides to the first position, the first limiting surface 51 is suitable for blocking the rotating member 2, so that the rotating member 2 stops at the first stopping position. When the operating member 5 slides to the third position, the second limiting surface 52 is suitable for blocking the rotating member 2, so that the rotating member 2 stops at the second stopping position. The two surfaces on the operating member 5 are used to achieve the docking of the rotating member 2 at different positions, thereby reducing the number of operating members 5 and reducing costs.

[0080] In an exemplary embodiment, the rotating member 2 includes an impeller 21 and a rotating plate 22. The main body 1 is provided with an installation cavity 16 isolated from the water path of the main body 1. The impeller 21 is provided with a water diversion hole 211. The impeller 21 is suitable for extending into the installation cavity 16 in a sealed manner to prevent water from entering the installation cavity 16. The impeller 21 is connected to the rotating plate 22 in a non-rotating manner to drive the rotating plate 22 to rotate. The rotating plate 22 is provided with a rotating body 221 and a limiting protrusion 222 protruding from the rotating body 221 in a direction away from its rotation axis. The operating member 5 is provided with a first limiting surface 51. The first limiting surface 51 is suitable for moving to the rotation path of the limiting protrusion 222 to block the limiting protrusion 222, thereby realizing the docking of the rotating member 2.

[0081] In the above embodiment, the first water outlet chamber 12 and the second water outlet chamber 13 are both connected to the same water outlet hole 15. In this embodiment, the first water outlet chamber 12 and the second water outlet chamber 13 are connected to different water outlet holes 15: the water outlet hole 15 includes a first water hole and a second water hole. The first water hole is connected to the first water outlet chamber 12, and the second water hole is connected to the second water outlet chamber 13. The first water hole and the second water hole can be in different positions and different water shapes, so that different water outlet holes 15 can be switched continuously for use to meet the user's usage needs.

[0082] The above description and embodiments are used to explain the scope of protection of the utility model, but do not constitute a limitation on the scope of protection of the utility model. Based on the enlightenment of the utility model or the above embodiments, modifications, equivalent replacements, or other improvements to the embodiments of the utility model or part of the technical features thereof that can be obtained by ordinary technicians in this field through logical analysis, reasoning, or limited experiments in combination with common knowledge, ordinary technical knowledge in this field and / or existing technology should be included in the scope of protection of the utility model.

Claims

1. A water outlet device, characterized in that: include A body (1) is provided with a water inlet (11), a first water outlet cavity (12), and at least one water outlet hole (15) communicating with the first water outlet cavity (12); a rotating member (2) mounted on the body (1) and adapted to be driven by hydraulic force to rotate when water enters the water inlet (11); a water diversion hole (211) is provided on the rotating member (2); a water inlet end of the water diversion hole (211) is communicated with the water inlet (11); and a water outlet end of the water diversion hole (211) is adapted to be communicated with the first water outlet cavity (12) when corresponding to the first water outlet cavity (12); An operating member (5) is adapted to move relative to the body (1) between a first position and a second position. When the operating member moves to the first position, the operating member is located on the rotation path of the rotating member (2) to block the rotating member (2), allowing the rotating member (2) to stop at a first stop position, so that the water diversion hole (211) corresponds to or does not correspond to the first water outlet cavity (12). When the operating member moves to the second position, the operating member gives way to the rotating member (2) to allow the rotating member (2) to rotate under hydraulic drive.

2. A water outlet device according to claim 1, characterized in that: The body (1) is further provided with a second water outlet cavity (13), the second water outlet cavity (13) being in communication with the water outlet hole (15). The operating member (5) is further adapted to move to a third position. When the operating member moves to the third position, the operating member is located on the rotation path of the rotating member (2) to block the rotating member (2), so that the rotating member (2) stops at the second stop position. When the rotating member (2) stops at the first stop position and the second stop position, the water diversion hole (211) is located in two of the following stop states: The water diversion hole (211) corresponds only to the first water outlet cavity (12), the water diversion hole (211) corresponds only to the second water outlet cavity (13), the water diversion hole (211) corresponds to both the first water outlet cavity (12) and the second water outlet cavity (13), or the water diversion hole (211) does not correspond to either the first water outlet cavity (12) or the second water outlet cavity (13).

3. A water outlet device according to claim 2, characterized in that: The water outlet hole (15) comprises a first water hole and a second water hole, the first water hole is in communication with the first water outlet cavity (12), and the second water hole is in communication with the second water outlet cavity (13).

4. A water outlet device according to claim 2, characterized in that: The water outlet hole (15) is provided with a first wall (151) and a second wall (152), wherein the first wall (151) is inclined inwardly, and the second wall (152) is inclined outwardly. When the water diversion hole (211) is only connected with the first water outlet cavity (12), the water flow of the first water outlet cavity (12) flows out along the first wall (151), so that the water outlet hole (15) discharges water inwardly. When the water diversion hole (211) is only connected with the second water outlet cavity (13), the water flow of the second water outlet cavity (13) flows out along the second wall (152), so that the water outlet hole (15) discharges water outwardly.

5. A water outlet device according to claim 4, characterized in that: The water diversion hole (211) is adapted to correspond to the first water outlet cavity (12) and the second water outlet cavity (13) at the same time, and is adapted to reduce the corresponding area between the water diversion hole (211) and one of the first water outlet cavity (12) and the second water outlet cavity (13) when the corresponding area between the water diversion hole (211) and one of the first water outlet cavity (12) and the second water outlet cavity (13) increases.

6. The water outlet device according to claim 1, characterized in that: The invention also includes a biasing member (4), the body (1) is provided with a first surface (141), the water inlet end of the first water outlet cavity (12) opens at the first surface (141), the water outlet end of the first water outlet cavity (12) is connected to the water outlet hole (15), the rotating member (2) is provided with a second surface (212) facing the first surface (141), the water outlet end of the water diversion hole (211) opens at the second surface (212), and the two ends of the biasing member (4) act on the body (1) and the rotating member (2) respectively to make the first surface (141) and the second surface (212) fit together.

7. The water outlet device according to claim 1, characterized in that: The operating member (5) is connected to the body (1) in a sliding or rotational manner.

8. The water outlet device according to claim 2, characterized in that: The operating member (5) is slidably connected to the body (1), and the operating member (5) is provided with a first limiting surface (51) and a second limiting surface (52). When the operating member (5) slides to the first position, the first limiting surface (51) is suitable for blocking the rotating member (2) so that the rotating member (2) stops at the first stopping position. When the operating member (5) slides to the third position, the second limiting surface (52) is suitable for blocking the rotating member (2) so that the rotating member (2) stops at the second stopping position.

9. The water outlet device according to claim 1, characterized in that: The rotating member (2) comprises an impeller (21) and a rotating plate (22); the main body (1) is provided with a mounting cavity (16) isolated from the water path of the main body (1); the impeller (21) is provided with the water diversion hole (211); the impeller (21) is adapted to be sealedly extended into the mounting cavity (16) and connected to the rotating plate (22) for rotation prevention; the rotating plate (22) is provided with a rotating body (221) and a limiting protrusion (222) protruding from the rotating body (221) in a direction away from its rotation axis; the operating member (5) is provided with a first limiting surface (51); the first limiting surface (51) is adapted to move to the rotation path of the limiting protrusion (222) to block the limiting protrusion (222).