A water outlet device
Patent Information
- Application Number
- CN202521949371.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-10
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-10
AI Technical Summary
[0002]现有技术中,为实现出水件的360度转动,通常通过将安装件拆分为上壳体和下壳体,出水件安装于下壳体后,再通过上壳体与下壳体的固定,实现出水件的限位,从而允许出水件360度转动,然而该种安装方式,使得安装件的结构较为复杂,且安装较为麻烦
[0019] 1. In Scheme 1 and its preferred embodiments, a water outlet device includes an installation component, a water outlet component, and a connector.
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Figure CN224769482U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water discharge products, specifically to a water discharge device. Background Technology
[0002] In the prior art, in order to achieve 360-degree rotation of the water outlet, the mounting component is usually divided into an upper shell and a lower shell. After the water outlet is installed in the lower shell, the upper shell and the lower shell are fixed to limit the water outlet, thereby allowing the water outlet to rotate 360 degrees. However, this installation method makes the structure of the mounting component more complicated and the installation more troublesome. Utility Model Content
[0003] The purpose of this utility model is to overcome the above-mentioned defects or problems existing in the background art or to provide a material basis for overcoming the above-mentioned defects or problems existing in the background art, and to 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] Option 1: A water outlet device, including...
[0006] The mounting component has a mounting cavity and a plug hole communicating with the mounting cavity;
[0007] The water outlet has an annular groove on its outer wall, and the water outlet is adapted to be inserted into the mounting cavity with the groove opening facing the insertion hole; the water outlet rotates relative to the mounting component about an axis parallel to the first direction;
[0008] A connector adapted to be inserted into the insertion hole and adapted to abut against the insertion hole and the annular groove in a first direction.
[0009] Option 2, based on Option 1, the connector includes two oppositely arranged elastic arms. Each elastic arm has an arc-shaped groove. The elastic arm is adapted to engage with the inclined surface of the bottom of the annular groove to open radially and return to its original position when the arc-shaped groove corresponds to the bottom of the annular groove, so that the arc-shaped groove abuts against the bottom of the annular groove.
[0010] Option 3, based on Option 1 or Option 2, the water outlet component includes an inlet shaft and an outlet assembly. The inlet shaft is adapted to receive water and is provided with an annular groove. The outlet assembly is adapted to discharge water. The outlet assembly is rotatably connected to the inlet shaft about an axis perpendicular to the first direction.
[0011] Option 4, based on Option 3, also includes a wear-resistant pad, which is sandwiched between the water outlet assembly and the water inlet shaft.
[0012] Option 5, based on Option 3, includes a water passage provided in the mounting component, a water outlet assembly with a water outlet cavity connected to the water passage, and a water inlet shaft with a water channel. When the water inlet shaft is inserted into the mounting cavity, the water inlet end of the water channel is connected to the water passage.
[0013] Option 6, based on Option 5, involves multiple water passages, with the number of water channels and water outlet chambers being the same as the number of water passages, and all connected in a one-to-one correspondence.
[0014] Option 7, based on Option 6, has two water passages, defined as a first water passage and a second water passage, with the second water passage surrounding the first water passage; it also has two through water passages, defined as a first through water passage and a second through water passage, with the second through water passage surrounding the first through water passage; the first water passage is adapted to communicate with the first through water passage, and the second water passage is adapted to communicate with the second through water passage.
[0015] Option 8, based on Option 6, includes an inlet shaft with an inlet section and a first rotating section and a second rotating section located on both sides of the inlet section; the inlet section has a first water passage and a second water passage; the first rotating section and the second rotating section each have a first water dividing hole and a second water dividing hole, which are perpendicularly connected to the first water passage and the second water passage, respectively; the outlet assembly has a first insertion section and a second insertion section, the first insertion section being inserted into the first rotating section and adapted to rotate, and the second insertion section being inserted into the second rotating section and adapted to rotate; the first insertion section and the second insertion section each have a first outlet cavity and a second outlet cavity respectively connected to the first water dividing hole and the second water dividing hole.
[0016] Option 9, based on Option 1, wherein the water outlet is a top spray.
[0017] Option 10, based on Option 1, further includes a vertical pole, wherein the mounting component is installed on the vertical pole and is adapted to slide relative to the vertical pole in a vertical direction.
[0018] As can be seen from the above description of the present invention and its preferred embodiments, 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:
[0019] 1. In Scheme 1 and its preferred embodiments, a water outlet device includes an installation component, a water outlet component, and a connector.
[0020] The mounting component has a mounting cavity and a plug hole communicating with the mounting cavity. The mounting cavity is for inserting part of the water outlet component, and the plug hole is for inserting the plug component and making part of the plug component suitable for entering the mounting cavity.
[0021] The water outlet component is designed for water dispensing and features an annular groove. It is inserted into the mounting cavity with the groove opening aligned with the insertion hole. The insertion component is suitable for insertion into the insertion hole and abuts against it along a first direction, thus limiting its range of motion in that direction. The insertion component abuts against the annular groove along the first direction, further restricting the water outlet component's movement. This allows the water outlet component to be mounted on the mounting component without falling off. Furthermore, because the annular groove has a circular cross-section, when the water outlet component rotates relative to the mounting component around an axis parallel to the first direction, it does not exert force on the insertion component, preventing it from disengaging from the insertion hole. Therefore, the insertion component will not loosen, and the water outlet component will not fall off, allowing for 360-degree rotation. The large rotation angle of the water outlet component allows for further adjustment of the water outlet angle and mode, simplifying installation.
[0022] 2. In Scheme 2 and its preferred embodiments, the connector includes two opposing elastic arms. Each elastic arm has an arc-shaped groove, adapted to engage with the inclined surface of the bottom of the annular groove to open radially and return to its original position when the arc-shaped groove corresponds to the bottom of the annular groove, so that the arc-shaped groove abuts against the bottom of the annular groove. The arc-shaped groove increases the contact area between the connector and the annular groove, and under the elastic action of the elastic arms, enhances the clamping effect between the connector and the annular groove, making the installation of the connector more stable. Furthermore, the arc-shaped groove does not affect the rotation of the annular groove, maintaining the rotational function of the water outlet component. Simultaneously, the arc-shaped groove also has a certain anti-detachment function. When the water outlet component needs to detach from the arc-shaped groove, an inclined engagement is required, overcoming the elastic force of the elastic arms to allow the annular groove to detach from the arc-shaped groove, thus improving the anti-detachment effect of the water outlet component.
[0023] 3. In Scheme 3 and its preferred embodiments, the water outlet component includes an inlet shaft and an outlet assembly. The inlet shaft is adapted to receive water and is provided with an annular groove. The outlet assembly is adapted to discharge water. The outlet assembly is rotatably connected to the inlet shaft about an axis perpendicular to the first direction. Thus, the outlet assembly can be raised or lowered by swinging relative to the inlet shaft, thereby changing the corresponding water outlet angle.
[0024] 4. In Scheme 4 and its preferred embodiments, a wear-resistant pad is also included. A wear-resistant pad is sandwiched between the water outlet component and the water inlet shaft to prevent the corresponding rotation of the water outlet component and the water inlet shaft from being damaged by friction, thereby improving the service life.
[0025] 5. In Scheme 5 and its preferred embodiments, the mounting component is provided with a water passage, the water outlet component is provided with a water outlet cavity, the water outlet cavity is connected to the water passage, the water inlet shaft is provided with a water channel, when the water inlet shaft is inserted into the mounting cavity, the water inlet end of the water channel is connected to the water passage, and the mounting component is also used as a water passage component, which facilitates the setting of water channels.
[0026] 6. In Scheme 6 and its preferred embodiments, there are multiple water passages, and the number of water passages and water outlet chambers is the same as the number of water passages, and they are connected one by one to increase the diversity of water output.
[0027] 7. In Scheme 7 and its preferred embodiments, there are two water passages, which are defined as the first water passage and the second water passage, respectively, with the second water passage surrounding the first water passage; there are two through water passages, which are defined as the first through water passage and the second through water passage, with the second through water passage surrounding the first through water passage; the first water passage is suitable for connecting with the first through water passage, and the second water passage is suitable for connecting with the second through water passage. The internal and external water passage design reduces the difficulty of processing.
[0028] 8. In Scheme 8 and its preferred embodiments, the water inlet shaft is provided with a water inlet section and a first rotating section and a second rotating section located on both sides of the water inlet section. The water inlet section is provided with a first water passage and a second water passage. The first rotating section and the second rotating section are respectively provided with a first water distribution hole and a second water distribution hole. The first water distribution hole and the second water distribution hole are respectively perpendicularly connected to the first water passage and the second water passage. The T-shaped design provides the material basis for establishing the water passage connection between the water inlet shaft and the water outlet component and realizing the rotation of the two. The water outlet component is provided with a first insertion part and a second insertion part. The first insertion part is inserted into the first rotating section and is adapted to rotate. The second insertion part is inserted into the second rotating section and is adapted to rotate. The first insertion part and the second insertion part are respectively provided with a first water outlet cavity and a second water outlet cavity connected to the first water distribution hole and the second water distribution hole, thereby realizing the installation of the water outlet component and the water inlet shaft, realizing the water passage connection between the two, and realizing the rotational cooperation.
[0029] 9. In Scheme 9 and its preferred embodiments, the water outlet is a top spray to facilitate showering.
[0030] 10. In Scheme 10 and its preferred embodiments, when the water outlet component is difficult to rotate directly by hand, such as when the water outlet component is at a high position, it is necessary to set up corresponding electrical control components or mechanical linkages to trigger the rotation of the water outlet component, which will increase costs. By installing the mounting component on the upright and adapting it to slide vertically relative to the upright, the water outlet component can be driven to rise and fall by the mounting component, thereby facilitating the rotation of the water outlet component. Attached Figure Description
[0031] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0032] Figure 1 This is a perspective view of the water outlet device in Example 1;
[0033] Figure 2 This is an exploded view of the water outlet device in Example 1;
[0034] Figure 3 This is a schematic diagram of water flowing out of the first water outlet chamber in Embodiment 1;
[0035] Figure 4 This is a schematic diagram of water flowing out of the second water outlet chamber in Example 1;
[0036] Figure 5 This is a schematic diagram showing the rotation of the water outlet component relative to the water inlet shaft in Embodiment 1;
[0037] Figure 6 This is a schematic diagram showing the rotation of the water outlet component relative to the mounting component in Example 1;
[0038] Figure 7 This is a schematic diagram of the water outlet device in Example 1;
[0039] Figure 8 for Figure 7 Enlarged view of the marked area;
[0040] Figure 9 This is a partial schematic diagram of the mounting components in Example 1;
[0041] Figure 10 This is a perspective view of a portion of the structure of the mounting component in Embodiment 1;
[0042] Figure 11 This is an exploded view of the water outlet component in Example 1;
[0043] Figure 12 This is an assembly diagram of the connector in Example 1.
[0044] Explanation of key figure labels:
[0045] 1. Upright pole; 2. Mounting component; 21. Mounting cavity; 22. Insertion hole; 23. First water passage; 24. Second water passage; 3. Water outlet component; 31. Water inlet shaft; 311. Water inlet part; 3111. Circular groove; 3111. First water passage; 3112. Second water passage; 3113. First rotating part; 3121. First water distribution hole; 3131. Second rotating part; 3131. Water outlet assembly; 32. Top cover; 321. Clearance hole; 3211. Water outlet panel; 3221. First insertion part; 3222. Second insertion part; 3223. Receiving groove; 3223. First water outlet cavity; 324. Insertion component; 41. Connecting arm; 42. Elastic arm; 421. Arc groove; 5. Wear-resistant pad; 6. First direction. Detailed Implementation
[0046] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are preferred embodiments of the present utility model and should not be considered as excluding other embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.
[0047] Unless otherwise expressly defined, the use of terms such as "first," "second," or "third" in the claims, description, and drawings of this utility model is for distinguishing different objects and not for describing a specific order.
[0048] Unless otherwise expressly defined, in the claims, description, and accompanying drawings of this utility model, the use of directional terms such as "center," "lateral," "longitudinal," "horizontal," "vertical," "top," "bottom," "inner," "outer," "upper," "lower," "front," "rear," "left," "right," "clockwise," and "counterclockwise" to indicate orientation or positional relationships is based on the orientation and positional relationships shown in the accompanying drawings and is only for the convenience of describing the invention and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as limiting the specific scope of protection of the invention.
[0049] Unless otherwise expressly defined, the terms "fixed connection" or "fixed connection" used in the claims, description and drawings of this utility model shall be interpreted broadly to refer to any connection in which there is no displacement or relative rotation relationship between the two parties, including non-removable fixed connection, detachable fixed connection, integral connection and fixed connection through other devices or components.
[0050] In the claims, description and accompanying drawings of this utility model, the terms "comprising", "having", and variations thereof are used to mean "including but not limited to".
[0051] refer to Figures 1-12 A water outlet device includes a pole 1, a mounting component 2, a water outlet component 3, and a connector 4. In this embodiment, the water outlet device is a shower overhead sprayer. In other embodiments, it can be a faucet, a spray gun, etc.
[0052] The pole 1 extends vertically and has a water inlet pipe to supply water to the mounting component 2.
[0053] Mounting component 2 is installed on the upright 1 and is adapted to slide vertically relative to the upright 1. Specifically, mounting component 2 includes a water pipe and a connecting assembly installed on the water pipe and connected by water passage. The water pipe is inserted into the water inlet pipe and is adapted to bear force to achieve lifting, lowering, and stopping. The lifting and stopping of the water pipe is widely used in shower rods, and its structure will not be described in detail. Of course, when the upright 1 does not have a water inlet pipe, the part of mounting component 2 inside the upright 1 can be a flexible hose for lifting.
[0054] The connecting assembly is used to supply water to the water supply component 3. The connecting assembly is provided with a mounting cavity 21, a plug hole 22 and a water passage.
[0055] refer to Figure 8 , Figure 12 The mounting cavity 21 is adapted to partially insert the water supply component 3. The insertion hole 22 communicates with the mounting cavity 21, and the other end of the insertion hole 22 is open on the surface of the connecting component.
[0056] The water passage is suitable for connecting the water pipe and the water outlet 3. There can be one or more water passages. In this embodiment, reference is made to... Figure 8 There are two water passages, defined as the first water passage 23 and the second water passage 24. The second water passage 24 surrounds the first water passage 23, and the water passages are independent of each other. The flow of water through the first water passage 23 and the second water passage 24 can be achieved by a switching valve. Depending on the function of the switching valve, modes such as single flow through the first water passage 23, single flow through the second water passage 24, and mixed flow through the first water passage 23 and the second water passage 24 can be achieved, thereby realizing different water discharge modes of the water outlet 3.
[0057] refer to Figure 1 , Figure 2 The water outlet component 3 is a top spray and is supported by the upright 1 via the mounting component 2. The water outlet component 3 includes an inlet shaft 31 and a water outlet assembly 32.
[0058] refer to Figure 8 The water inlet shaft 31 is provided with a water inlet part 311, a first rotating part 312, and a second rotating part 313.
[0059] refer to Figure 8 , Figure 11 , Figure 12 The outer wall of the water inlet 311 is provided with an annular groove 3111. The water inlet 311 is also provided with water passages, the number of which is the same as the number of water channels, and they are connected one-to-one. Therefore, in this embodiment, referring to... Figure 8There are two water passages, which are defined as the first water passage 3112 and the second water passage 3113 respectively. The second water passage 3113 surrounds the first water passage 3112. When the water inlet 311 is inserted into the mounting cavity 21, the groove of the annular groove 3111 is opposite to the insertion hole 22, so that the insertion part 4 can act on the annular groove 3111. The first water passage 3112 is connected to the first water passage 23, and the second water passage 3113 is connected to the second water passage 24.
[0060] refer to Figure 8 The first rotating part 312 and the second rotating part 313 are located on both sides of the water inlet part 311 and are perpendicular to the water inlet part 311, so that the water inlet shaft 31 is approximately T-shaped. The first rotating part 312 is provided with a first water dividing hole 3121, and the second rotating part 313 is provided with a second water dividing hole 3131. The first water dividing hole 3121 is perpendicularly connected to the first water passage 3112, and the second water dividing hole 3131 is perpendicularly connected to the second water passage 3113.
[0061] refer to Figure 8 The water outlet assembly 32 is adapted to discharge water. The water outlet assembly 32 is rotatably connected to the water inlet shaft 31 about an axis perpendicular to the first direction 6. In this embodiment, the rotation is achieved through a plug-in connection. The water outlet assembly 32 has water outlet chambers, and the number of water outlet chambers is the same as the number of water channels, and they are connected one-to-one. In this embodiment, there are two water outlet chambers, defined as the first water outlet chamber 323 and the second water outlet chamber 324, respectively. The first water outlet chamber 323 and the second water outlet chamber 324 can have different water discharge modes, as shown in this embodiment, referring to... Figure 3 , Figure 4 The first water outlet chamber 323 emits a relatively dense spray of water, while the second water outlet chamber 324 emits a spray of water with a stronger impact. The first direction 6 refers to the water outlet direction of the water outlet assembly 32. In this embodiment, it is inclined relative to the vertical direction, but in other embodiments, it can also be vertical or horizontal.
[0062] For details, please refer to Figure 11 The water outlet assembly 32 includes an upper cover 321 and a water outlet panel 322, which are adapted to be fixed to each other by means of snap-fit, screw connection or other methods. The upper cover 321 is provided with a clearance hole 3211 for the water inlet part 311 of the water inlet shaft 31 to extend out.
[0063] The water outlet panel 322 is provided with a first insertion part 3221, a second insertion part 3222, and a receiving groove 3223. (Reference) Figure 8The first insertion part 3221 is inserted into the first rotating part 312 and is adapted to rotate. The first insertion part 3221 is provided with a first water outlet cavity 323. The second insertion part 3222 is inserted into the second rotating part 313 and is adapted to rotate. The second insertion part 3222 is provided with a second water outlet cavity 324. In this embodiment, the first insertion part 3221 is inserted into the first water distribution hole 3121 so that the first water outlet cavity 323 communicates with the first water distribution hole 3121. The second insertion part 3222 is inserted into the second water distribution hole 3131 so that the second water outlet cavity 324 communicates with the second water distribution hole 3131. In other embodiments, the first insertion part 3221 can also be sleeved on the outside of the first rotating part 312 to realize the insertion and water channel communication between the two. The cross-section of the insertion part of the two is circular, so that relative rotation can be realized.
[0064] refer to Figure 11 The receiving groove 3223 has its opening facing downwards towards the upper cover 321 and is used to place the wear-resistant pad 5. The wear-resistant pad 5 can be made of rubber.
[0065] refer to Figure 8 During installation, first place the wear-resistant pad 5 in the receiving groove 3223, then place the water inlet shaft 31 on the wear-resistant pad 5, so that the wear-resistant pad 5 is sandwiched between the water outlet panel 322 and the water inlet shaft 31 of the water outlet assembly 32. Finally, fix the top cover 321 to the water outlet panel 322 to prevent the water inlet shaft 31 from coming off.
[0066] refer to Figure 12 The connector 4 includes a connecting arm 41 and two elastic arms 42 connected to both ends of the connecting arm 41, making the connector 4 approximately U-shaped. The two elastic arms 42 are arranged opposite each other and each elastic arm 42 has an arc-shaped groove 421. The connector 4 is adapted to be inserted into the insertion hole 22, allowing the elastic arms 42 to enter the mounting cavity 21 from the insertion hole 22 and engage with the inclined surface of the bottom of the annular groove 3111, causing the two elastic arms 42 to open radially (wherein the radial direction is the radial direction of the annular groove 3111). The elastic arms 42 return to their original position when the arc-shaped groove 421 corresponds to the bottom of the annular groove 3111, so that the arc-shaped groove 421 abuts against the bottom of the annular groove 3111, thereby clamping the bottom of the annular groove 3111 and preventing loosening. Simultaneously, the connector... Arm 41 is adapted to abut against the insertion hole 22 along the first direction 6, thereby preventing the insertion part 4 from wobbling along the first direction 6. Elastic arm 42 is adapted to abut against the annular groove 3111 along the first direction 6, thereby preventing the insertion part 4 from wobbling along the first direction 6. Simultaneously, since the cross-section of the annular groove 3111 is circular, when the water outlet part 3 rotates relative to the mounting part 2 around an axis parallel to the first direction 6, it will not exert force on the insertion part 4 to disengage it from the insertion hole 22. Therefore, the insertion part 4 will not loosen, and the water outlet part 3 will not fall off, allowing the water outlet part 3 to achieve 360-degree rotation. The inclined surface fit refers to at least one inclined or curved surface between the two mating objects to change the direction of the force.
[0067] In use, water can be discharged from the first outlet chamber 323 and / or the second outlet chamber 324 by switching the valve. When the outlet angle needs to be adjusted, it can be done in two ways, as referred to... Figure 5 Firstly, it allows the water outlet component 32 to swing relative to the water inlet shaft 31, enabling stepless adjustment forward and backward, thereby controlling the distance of the water outlet angle; (Reference) Figure 6 Alternatively, the water outlet 3 can be rotated 360 degrees relative to the mounting part 2, allowing the water outlet angle to be adjusted forward, backward, left, and right. For users who are too short to reach the water outlet 3 and cannot make the above adjustments, the above operations can be performed by lowering the mounting part 2 relative to the upright 1 (the lifting and lowering operation part of the mounting part 2 is usually in a low position).
[0068] Compared with the prior art, this embodiment has the following beneficial effects:
[0069] In one exemplary embodiment, a water outlet device includes an installation component 2, a water outlet component 3, and a connector 4.
[0070] The mounting component 2 is provided with a mounting cavity 21 and a plug hole 22 communicating with the mounting cavity 21. The mounting cavity 21 is for inserting part of the water outlet component 3, and the plug hole 22 is for inserting the plug component 4 and making part of the plug component 4 suitable for entering the mounting cavity 21.
[0071] The water outlet 3 is adapted to dissipate water. The water outlet 3 is provided with an annular groove 3111. The water outlet 3 is adapted to be inserted into the mounting cavity 21 and the groove opening of the annular groove 3111 is opposite to the insertion hole 22. The insertion member 4 is adapted to be inserted into the insertion hole 22 and is adapted to abut against the insertion hole 22 along the first direction 6, thereby limiting the range of movement of the insertion member 4 along the first direction 6. The insertion member 4 is adapted to abut against the annular groove 3111 along the first direction 6, thereby limiting the range of movement of the water outlet 3 along the first direction 6. Thus, the water outlet 3 is installed on the mounting member 2 through the insertion member 4, so that the water outlet 3 will not fall off. Meanwhile, since the cross-section of the annular groove 3111 is circular, when the water outlet 3 rotates relative to the mounting part 2 around the axis parallel to the first direction 6, it will not exert force on the plug 4 to disengage it from the plug hole 22. Therefore, the plug 4 will not loosen, and the water outlet 3 will not fall off. The water outlet 3 can then achieve 360-degree rotation. The rotation angle of the water outlet 3 is relatively large, so the water outlet angle and water outlet mode can be adjusted through the rotation of the water outlet 3. Moreover, the installation is simpler.
[0072] In one exemplary embodiment, the connector 4 includes two opposing elastic arms 42. Each elastic arm 42 has an arc-shaped groove 421, adapted to engage with the inclined bottom surface of the annular groove 3111 to open radially and return to its original position when the arc-shaped groove 421 corresponds to the bottom of the annular groove 3111, thus abutting the bottom of the annular groove 3111. The arc-shaped groove 421 increases the contact area between the connector 4 and the annular groove 3111, and under the elastic action of the elastic arms 42, enhances the clamping effect between the connector 4 and the annular groove 3111, making the installation of the connector 4 more stable. Furthermore, the arc-shaped groove 421 does not affect the rotation of the annular groove 3111, maintaining the rotational function of the water outlet component 3. Meanwhile, the arc groove 421 also has a certain anti-detachment function. When the water outlet part 3 needs to detach from the arc groove 421, an inclined surface is generated, which needs to overcome the elastic force of the elastic arm 42 in order to make the annular groove 3111 detach from the arc groove 421. Therefore, the anti-detachment effect of the water outlet part 3 is better.
[0073] In one exemplary embodiment, the water outlet component 3 includes an inlet shaft 31 and an outlet assembly 32. The inlet shaft 31 is adapted to receive water and is provided with an annular groove 3111. The outlet assembly 32 is adapted to discharge water. The outlet assembly 32 is rotatably connected to the inlet shaft 31 about an axis perpendicular to the first direction 6. Thus, the outlet assembly 32 can be raised or lowered by swinging relative to the inlet shaft 31, thereby changing the corresponding water outlet angle.
[0074] In one exemplary embodiment, a wear-resistant pad 5 is also included. The wear-resistant pad 5 is sandwiched between the water outlet component 32 and the water inlet shaft 31, so that the corresponding rotation of the water outlet component 32 and the water inlet shaft 31 will not be damaged by friction, thereby improving the service life.
[0075] In one exemplary embodiment, the mounting component 2 is provided with a water passage, the water outlet component 32 is provided with a water outlet cavity, the water outlet cavity is connected to the water passage, the water inlet shaft 31 is provided with a water channel, when the water inlet shaft 31 is inserted into the mounting cavity 21, the water inlet end of the water channel is connected to the water passage, and the mounting component 2 is also used as a water passage component, which facilitates the setting of water channels.
[0076] In one exemplary embodiment, there are multiple water passages, and the number of through water channels and outlet chambers is the same as the number of water passages, and they are connected one-to-one to increase the diversity of water output.
[0077] In one exemplary embodiment, there are two water passages, defined as a first water passage 23 and a second water passage 24, with the second water passage 24 surrounding the first water passage 23; there are also two through water passages, defined as a first through water passage 3112 and a second through water passage 3113, with the second through water passage 3113 surrounding the first through water passage 3112; the first water passage 23 is adapted to communicate with the first through water passage 3112, and the second water passage 24 is adapted to communicate with the second through water passage 3113. This internal and external waterway design reduces processing difficulty.
[0078] In one exemplary embodiment, the water inlet shaft 31 is provided with a water inlet portion 311 and a first rotating portion 312 and a second rotating portion 313 located on both sides of the water inlet portion 311. The water inlet portion 311 is provided with a first water passage 3112 and a second water passage 3113. The first rotating portion 312 and the second rotating portion 313 are respectively provided with a first water dividing hole 3121 and a second water dividing hole 3131. The first water dividing hole 3121 and the second water dividing hole 3131 are perpendicularly connected to the first water passage 3112 and the second water passage 3113, respectively. The T-shaped design establishes the water passage connection between the water inlet shaft 31 and the water outlet assembly 32, and facilitates the connection between the two components. The rotation of the two components provides the material basis; the water outlet assembly 32 is provided with a first insertion part 3221 and a second insertion part 3222. The first insertion part 3221 is inserted into the first rotating part 312 and is adapted to rotate. The second insertion part 3222 is inserted into the second rotating part 313 and is adapted to rotate. The first insertion part 3221 and the second insertion part 3222 are provided with a first water outlet cavity 323 and a second water outlet cavity 324 respectively connected to the first water distribution hole 3121 and the second water distribution hole 3131. This allows the water outlet assembly 32 and the water inlet shaft 31 to be installed simultaneously, and their water channels to be connected and rotated.
[0079] In one exemplary embodiment, the water outlet 3 is a top spray for convenient showering.
[0080] In one exemplary embodiment, when the water outlet component 3 is difficult to rotate directly by hand, such as when the water outlet component 3 is located at a high position, it is necessary to install corresponding electrical control components or mechanical linkages to trigger the rotation of the water outlet component 3, which would increase costs. By installing the mounting component 2 on the upright 1 and adapting it to slide vertically relative to the upright 1, the water outlet component 3 can be driven to rise and fall by the mounting component 2, thereby facilitating the rotation of the water outlet component 3.
[0081] The foregoing description of the specifications and embodiments is intended to explain the scope of protection of this utility model, but does not constitute a limitation on the scope of protection of this utility model. Modifications, equivalent substitutions, or other improvements to the embodiments of this utility model or a portion thereof that can be obtained by those skilled in the art through logical analysis, reasoning, or limited experimentation, based on the teachings of this utility model or the foregoing embodiments, should all be included within the scope of protection of this utility model.
Claims
1. A water outlet device, characterized by: include The mounting component (2) is provided with a mounting cavity (21) and a plug hole (22) communicating with the mounting cavity (21); The water outlet (3) has an annular groove (3111) on its outer wall. The water outlet (3) is adapted to be inserted into the mounting cavity (21) and the groove opening of the annular groove (3111) is opposite to the insertion hole (22). The water outlet (3) rotates relative to the mounting component (2) about an axis parallel to the first direction (6). A connector (4) adapted to be inserted into the connector hole (22) and adapted to abut against the connector hole (22) and the annular groove (3111) in a first direction (6).
2. A water outlet device as claimed in claim 1, characterized in that: The connector (4) includes two opposing elastic arms (42), each elastic arm (42) having an arc-shaped groove (421). The elastic arm (42) is adapted to engage with the inclined surface of the bottom of the annular groove (3111) to open radially and to return to its original position when the arc-shaped groove (421) corresponds to the bottom of the annular groove (3111), so that the arc-shaped groove (421) abuts against the bottom of the annular groove (3111).
3. A water outlet device as claimed in either of claims 1 or 2, characterised in that: The water outlet component (3) includes an inlet shaft (31) and an outlet assembly (32). The inlet shaft (31) is adapted to receive water and is provided with an annular groove (3111). The outlet assembly (32) is adapted to discharge water. The outlet assembly (32) and the inlet shaft (31) are rotatably connected about an axis perpendicular to the first direction (6).
4. A water outlet device as claimed in claim 3, characterized in that: It also includes a wear-resistant pad (5), which is sandwiched between the water outlet assembly (32) and the water inlet shaft (31).
5. A water outlet device as claimed in claim 3, characterized in that: The mounting component (2) is provided with a water passage, and the water outlet assembly (32) is provided with a water outlet cavity, which is connected to the water passage; the water inlet shaft (31) is provided with a water channel, and when the water inlet shaft (31) is inserted into the mounting cavity (21), the water inlet end of the water channel is connected to the water passage.
6. A water outlet device as claimed in claim 5, characterised in that: The number of water passages is multiple, and the number of water channels and water outlet chambers is the same as the number of water passages, and they are connected one-to-one.
7. A water outlet device as claimed in claim 6, characterised in that: The number of water passages is two, and they are respectively defined as the first water passage (23) and the second water passage (24), with the second water passage (24) surrounding the first water passage (23); the number of water channels is two, and they are respectively defined as the first water channel (3112) and the second water channel (3113), with the second water channel (3113) surrounding the first water channel (3112); the first water passage (23) is adapted to communicate with the first water channel (3112), and the second water passage (24) is adapted to communicate with the second water channel (3113).
8. A water outlet device as claimed in claim 7, characterized in that: The water inlet shaft (31) is provided with a water inlet section (311) and a first rotating section (312) and a second rotating section (313) located on both sides of the water inlet section (311); the water inlet section (311) is provided with a first water passage (3112) and a second water passage (3113); the first rotating section (312) and the second rotating section (313) are respectively provided with a first water dividing hole (3121) and a second water dividing hole (3131), the first water dividing hole (3121) and the second water dividing hole (3131) respectively connecting to the first water passage (3112) and the second water passage (3131). The channel (3113) is vertically connected; the water outlet component (32) is provided with a first insertion part (3221) and a second insertion part (3222), the first insertion part (3221) is inserted into the first rotating part (312) and is adapted to rotate, and the second insertion part (3222) is inserted into the second rotating part (313) and is adapted to rotate; the first insertion part (3221) and the second insertion part (3222) are provided with a first water outlet cavity (323) and a second water outlet cavity (324) respectively connected to the first water distribution hole (3121) and the second water distribution hole (3131).
9. A water outlet device as claimed in claim 1, characterized in that: The water outlet component (3) is a top spray.
10. A water outlet device as claimed in claim 1, characterized in that: It also includes a pole (1), the mounting member (2) is mounted on the pole (1) and is adapted to slide relative to the pole (1) in a vertical direction.