Water outlet assembly
By designing a water outlet assembly including fixtures, water outlets, descaling parts and resetting parts, the rotation of the water outlets and the abutment point drive descaling is solved, and the existing shower water holes are prone to blockage and cumbersome descaling are achieved, and a simple descaling and water outlet process is achieved.
Patent Information
- Application Number
- CN202421588897.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-07-05
AI Technical Summary
The hard glue holes of existing multi-head water-out rotation switching showers are easily blocked by scale, which has poor user experience, and the soft glue nozzle needs to be repeatedly moved one by one, which is more troublesome.
A water outlet assembly is designed, including a fixing member, a water outlet member, a descaling member and a reset member. By rotating the water outlet, the descaling member is driven to slide by the abutment point to achieve descaling or ensure the water outlet of the water outlet hole. The resetting member is used to reset the descaling member.
The descaling and water discharge are achieved simultaneously, which simplifies the descaling process and improves the user experience. The descaling parts are directly driven to move through the abutment point of the fixture, avoiding the need for other transmissions, and the structure is relatively simple.
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Figure CN222998970U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of water outlet products, and particularly to a water outlet assembly. Background Art
[0002] The multi-head water outlet rotating switching shower on the market has rich functions, but the main hard rubber water holes of the shower are easily blocked by scale, resulting in poor use experience. And removing scale from the soft glue nozzle requires repeatedly toggling each nozzle to remove scale, which is rather troublesome. Summary of the Utility Model
[0003] The purpose of the utility model is to overcome the above-mentioned defects or problems in the background art and provide a water outlet assembly.
[0004] To achieve the above purpose, the utility model 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 assembly adapted to cooperate with a fixing member, the fixing member being provided with a water inlet hole; comprising
[0006] a water outlet member rotatably connected to the fixing member about a first axis and rotatable between a first position and a second position, the water outlet member being provided with a first water outlet hole and a first abutting point, the first water outlet hole being adapted to communicate with the water inlet hole;
[0007] a descaling member disposed within the water outlet member and adapted to slide relative to the water outlet member to extend into or withdraw from the first water outlet hole;
[0008] a reset member having two ends respectively acting on the descaling member and the water outlet member; when the water outlet member rotates to the first position, the first abutting point abuts the descaling member to cause the descaling member to slide to a position where it extends into the first water outlet hole, and the reset member stores energy; when the water outlet member rotates to the second position, the first abutting point moves away from the descaling member to allow the reset member to release energy to cause the descaling member to slide to a position where it withdraws from the first water outlet hole.
[0009] Solution 2, based on Solution 1, the water outlet member is provided with a first water distribution hole for communicating the first water outlet hole and the water inlet hole; when the water outlet member is in the first position, the first water distribution hole is not in communication with the water inlet hole, and when the water outlet member is in the second position, the first water distribution hole is in communication with the water inlet hole.
[0010] Solution 3, based on Solution 2, the water outlet member is further provided with a second water distribution hole and a second water outlet hole, the second water distribution hole being used for communicating the second water outlet hole and the water inlet hole, when the water outlet member is in the first position, the second water distribution hole is in communication with the water inlet hole, and when the water outlet member is in the second position, the second water distribution hole is not in communication with the water inlet hole.
[0011] Solution Four: Based on Solution Three, when the water outlet member is in the first position, the second water outlet hole faces downward; when the water outlet member is in the second position, the first water outlet hole faces downward.
[0012] Solution Five: Based on Solution One, the fixing member is provided with a second abutting point, and the distance from the second abutting point to the first axis is less than the distance from the first abutting point to the first axis; when the water outlet member rotates to the second position, the second abutting point abuts against the descaling member so that the descaling member is located at a position where it withdraws from the first water outlet hole.
[0013] Solution Six: Based on Solution Five, the fixing member is provided with a cam, the cam is provided with the second abutting point and the first abutting point, and the second abutting point and the first abutting point are transitioned by an arc surface, and during the rotation of the water outlet member, the cam is always in contact with the descaling rack.
[0014] Solution Seven: Based on Solution Five, the descaling member is provided with a stress point, the stress point is located at the center of the descaling member, and both the first abutting point and the second abutting point are adapted to abut against the stress point.
[0015] Solution Eight: Based on Solution Three, the water outlet member includes a main body, a face cover assembly and a water distributor. The main body is provided with a second water outlet hole, the face cover assembly is provided with a first water outlet hole, and the face cover assembly is adapted to be fixedly connected to the main body; the water distributor is provided with a first water distribution hole and the second water distribution hole, and the water distributor is adapted to be fixedly connected to the main body or the face cover assembly and communicate the first water distribution hole and the second water distribution hole with the first water outlet hole and the second water outlet hole respectively, and the water distributor is provided with the first abutting point.
[0016] Solution Nine: Based on Solution Eight, the face cover assembly is snap-connected to the main body, and the face cover assembly is also snap-connected to the water distributor.
[0017] Solution Ten: Based on Solution Eight, the face cover assembly includes a fixed seat and a water outlet face cover. The water outlet face cover is provided with the first water outlet hole. The water outlet face cover is fixedly connected to the fixed seat and encloses to form a water outlet cavity communicating with the first water outlet hole and the first water distribution hole. The descaling member includes a rack body and a pressing plate; a through hole is provided on the fixed seat. Part of the rack body is placed in the water outlet cavity, and part of it extends out of the through hole in a sealed manner to be fixedly connected to the pressing plate. The reset member is placed in the water outlet cavity, and the first abutting point is adapted to abut against the pressing plate.
[0018] As described above for the present invention and its preferred embodiments, compared with the prior art, the technical solutions and their preferred embodiments of the present invention have the following beneficial effects due to the following technical means:
[0019] 1. In Solution 1 and its preferred embodiments, a water outlet assembly includes a fixing member, a water outlet member, a descaling member, and a reset member.
[0020] The fixing member is provided with a first abutting point for driving the descaling member to slide. The water outlet member is provided with a first water outlet hole for discharging water. The descaling member is placed inside the water outlet member and is adapted to slide relative to the water outlet member to extend into or withdraw from the first water outlet hole so as to achieve descaling or ensure the water discharge amount of the first water outlet hole. Both ends of the reset member act on the descaling member and the water outlet member respectively for resetting the descaling member. The water outlet member and the fixing member are adapted to be rotatably connected about a first axis and rotate between a first position and a second position. The fixing member is provided with a first abutting point. When the water outlet member rotates to the first position, the first abutting point abuts against the descaling member to make the descaling member slide to a position where it extends into the first water outlet hole, and the reset member stores energy. When the water outlet member rotates to the second position, the first abutting point moves away from the descaling member to allow the reset member to release energy so that the descaling member slides to a position where it withdraws from the first water outlet hole. This descaling can be achieved by the rotation of the water outlet member. When it rotates back to the original position, the descaling member is reset by the reset member to ensure the water discharge of the water outlet member, enabling both descaling and water discharge to be better realized. And the movement of the descaling member is directly achieved by the first abutting point of the fixing member against the descaling member, without the need for other transmission parts, which is relatively simple.
[0021] 2. In Solution 2 and its preferred embodiments, the fixing member is provided with a water inlet hole adapted to communicate with the first water outlet hole, and the water outlet member is provided with a first water distribution hole for communicating the first water outlet hole and the water inlet hole. When the water outlet member is in the first position, the first water distribution hole is not in communication with the water inlet hole to achieve descaling of the first water outlet hole. When the water outlet member is in the second position, the first water distribution hole is in communication with the water inlet hole to achieve water discharge from the first water outlet hole. When the water outlet member rotates, it can also achieve the opening and closing of the first water outlet hole, making the operation more convenient.
[0022] 3. In Solution 3 and its preferred embodiments, the water outlet member is further provided with a second water distribution hole and a second water outlet hole. The second water distribution hole is used to communicate the second water outlet hole and the water inlet hole. When the water outlet member is in the first position, the second water distribution hole is in communication with the water inlet hole. When the water outlet member is in the second position, the second water distribution hole is not in communication with the water inlet hole. By providing the second water outlet hole and the second water distribution hole, the water discharge style is increased. And at the same time of rotating and switching the water path, descaling is also completed, without the need for separate operation for descaling, which is convenient to use.
[0023] 4. In Solution 4 and its preferred embodiments, when the water outlet member is in the first position, the second water outlet hole faces downward. When the water outlet member is in the second position, the first water outlet hole faces downward, making each water outlet hole face downward, which is convenient for users.
[0024] 5. In Solution Five and its preferred embodiments, the fixing member is further provided with a second abutting point. When the water outlet member rotates to the second position, the second abutting point abuts against the descaling member to make the descaling member located at a position where it exits the first water outlet hole. Since the distance from the second abutting point to the first axis is less than the distance from the first abutting point to the first axis, it is possible to allow the descaling member to exit the first water outlet hole. At the same time, the second abutting point restricts the position of the descaling member and can also control the retraction distance of the descaling member, preventing it from freely retracting under the action of the reset member, which may lead to an increase in the ineffective stroke. At the same time, since the movement space of the descaling member becomes smaller, the internal space of the water outlet member can also be reduced, and the size of the water outlet member can be reduced.
[0025] 6. In Solution Six and its preferred embodiments, the fixing member is provided with a cam. The cam is provided with a second abutting point and a first abutting point. The second abutting point and the first abutting point are transitioned by an arc surface. During the rotation of the water outlet member, the cam is always in contact with the descaling frame, so that during the process of the first abutting point switching to the second abutting point, the distance from the cam to the first axis gradually becomes smaller, making the force acting on the descaling member change slowly and increasing the feel during the switching.
[0026] 7. In Solution Seven and its preferred embodiments, the descaling member is provided with a force application point, and the force application point is located at the center of the descaling member. Both the first abutting point and the second abutting point are adapted to abut against the force application point, so that the first abutting point and the second abutting point act on the center of gravity of the descaling member. In this way, the descaling member will not be deflected and tilted, resulting in the inability to descale.
[0027] 8. In Solution Eight and its preferred embodiments, the water outlet member includes a main body, a face cover assembly, and a water distributor. The main body is provided with a second water outlet hole, and the face cover assembly is provided with a first water outlet hole. The face cover assembly is adapted to be fixedly connected to the main body; the water distributor is provided with a first water distribution hole and a second water distribution hole. The water distributor is adapted to be fixedly connected to the main body or the face cover assembly, and the first water distribution hole and the second water distribution hole are respectively communicated with the first water outlet hole and the second water outlet hole. The main body, the face cover assembly, and the water distributor are manufactured separately and then fixedly connected together to form the water outlet member, which is convenient for the production of complex and multifunctional water outlet members.
[0028] 9. In Solution Nine and its preferred embodiments, the face cover assembly is both snap-connected to the main body and snap-connected to the water distributor. By snap-connecting the face cover assembly to the main body and the water distributor, the three are fixedly connected together, and there is no need to set a fixing structure between each pair, making the structure simpler and more convenient.
[0029] 10. In Solution Ten and its preferred embodiments, the face cover assembly includes a fixed seat and a water outlet face cover. The water outlet face cover is provided with a first water outlet hole. The water outlet face cover is fixedly connected to the fixed seat and encloses to form a water outlet cavity communicating with the first water outlet hole and the first water distribution hole. The descaling member includes a frame body and a pressing plate. The fixed seat is provided with a through hole. Part of the frame body is placed in the water outlet cavity, and part of it extends out of the through hole in a sealed manner to be fixedly connected to the pressing plate and prevent water from leaking through the through hole. The reset member is placed in the water outlet cavity, and the first abutting point is adapted to abut against the pressing plate. Through this setting, while facilitating the installation of the descaling member, the stressed part and the descaling part of the descaling member are respectively arranged outside and inside the water outlet cavity, so as to facilitate assembly and reduce the hydraulic influence. 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 the description of the embodiments. Obviously, the following drawings are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0031] Figure 1 Front view of the water outlet assembly in Embodiment 1;
[0032] Figure 2 Exploded view of the water outlet member in Embodiment 1;
[0033] Figure 3 Stereogram of the fixed seat in Embodiment 1;
[0034] Figure 4 Exploded view of the water distribution body in Embodiment 1;
[0035] Figure 5 Structural schematic diagram when the first water outlet hole discharges water in Embodiment 1;
[0036] Figure 6 For Figure 5 Enlarged view of the water outlet member;
[0037] Figure 7 Another structural schematic diagram when the first water outlet hole discharges water in Embodiment 1;
[0038] Figure 8 For Figure 7 Enlarged view of the water outlet member;
[0039] Figure 9 Front view when the second water outlet hole discharges water in Embodiment 1;
[0040] Figure 10 For Figure 9 Cross-sectional view of the shown section;
[0041] Main reference numeral description:
[0042] Fixing member 1; water inlet hole 11; cam 12; first abutting point 121; second abutting point 122;
[0043] Water outlet member 2; main body 21; second water outlet hole 211; face cover assembly 22; fixing seat 221; through hole 2211; first clamping portion 2212; second clamping portion 2213; water outlet face cover 222; first water outlet hole 2221; water outlet cavity 223; water dividing body 23; buckling groove 232; first water dividing hole 233; second water dividing hole 234; descaling member 3; frame body 31; pressing plate 32; resetting member 4. Specific embodiments
[0044] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are the 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 those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0045] In the claims, the description and the above-mentioned drawings of the present invention, unless otherwise clearly defined, when using terms such as "first", "second" or "third", etc., are all used to distinguish different objects and not for describing a specific order.
[0046] In the claims, the description and the above-mentioned drawings of the present invention, unless otherwise clearly defined, for orientation terms, when using terms such as "center", "horizontal", "vertical", "level", "vertical", "top", "bottom", "inner", "outer", "upper", "lower", "front", "rear", "left", "right", "clockwise", "counterclockwise", etc. to indicate the orientation or position relationship, it is based on the orientation and position relationship shown in the drawings, and is 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 orientation or be constructed and operated in a specific orientation, so it cannot be understood as limiting the specific protection scope of the present invention.
[0047] In the claims, the description and the above-mentioned drawings of the present invention, unless otherwise clearly defined, when using terms such as "fixed connection" or "fixedly connected", should be understood in a broad sense, that is, any connection method without displacement relationship and relative rotation relationship between the two, that is, including non-detachable fixed connection, detachable fixed connection, being integrally connected, and being fixed connected through other devices or elements.
[0048] In the claims, the description and the above-mentioned drawings of the present invention, when using terms such as "comprising", "having" and their variants, are intended to mean "including but not limited to".
[0049] Reference Figures 1-10 , a water outlet assembly, which includes a fixing member 1, a water outlet member 2, a descaling member 3 and a reset member 4.
[0050] The fixing member 1 is provided with a water inlet hole 11 and is suitable for water inlet. The fixing member 1 is further provided with a cam 12, the cam 12 is provided with a first abutting point 121 and a second abutting point 122, the distance from the second abutting point 122 to the first axis is less than the distance from the first abutting point 121 to the first axis, and the second abutting point 122 and the first abutting point 121 are transitioned through an arc surface.
[0051] Reference Figure 2 , the water outlet member 2 is suitable for water outlet, the water outlet member 2 and the fixing member 1 are suitable for being rotatably connected around the first axis and rotating relative to the fixing member 1 between a first position and a second position. The water outlet member 2 is rotatably connected to the fixing member 1, so that the water outlet member 2 will not be easily separated from the fixing member 1 due to hydraulic force or pulling, but allows the water outlet member 2 to rotate relative to the fixing member 1, which can be realized by parts such as a pin or a gland, or the water outlet member 2 is snap-connected to the fixing member 1, etc.
[0052] Specifically, the water outlet member 2 includes a main body 21, a face cover assembly 22 and a water distributor 23. The face cover assembly 22 is suitable for being fixedly connected to the main body 21. Specifically, in this embodiment, the face cover assembly 22 is snap-connected to the main body 21. Preferably, the face cover assembly 22 is also snap-connected to the water distributor 23. The face cover assembly 22 includes a fixing seat 221 and a water outlet face cover 222. The water outlet face cover 222 is provided with a first water outlet hole 2221, and the first water outlet hole 2221 is suitable for communicating with the water inlet hole 11; Reference Figure 6 and Figure 8 , the water outlet face cover 222 is fixedly connected to the fixing seat 221 and encloses to form a water outlet cavity 223 communicating with the first water outlet hole 2221 and the first water distribution hole 233. Reference Figure 3 , the fixing seat 221 is provided with a through hole 2211, a first clamping portion 2212 and a second clamping portion 2213. The first clamping portion 2212 is shown as a plurality of clamping protrusions and is snap-connected to the clamping groove on the main body 21. The second clamping portion 2213 is shown as a C-shaped buckle and is snap-connected to the buckle groove 232 on the water distributor 23.
[0053] Reference Figure 2 , the main body 21 is provided with a second water outlet hole 211, and the second water outlet hole 211 is suitable for communicating with the water inlet hole 11.
[0054] Reference Figure 4, the water distributor 23 is adapted to be fixedly connected to the main body 21 or the face cover assembly 22. In this embodiment, the water distributor 23 is provided with a buckle groove 232 for snap - fitting with the fixing seat 221, thereby realizing the installation and fixation. In other embodiments, the water distributor 23 can also be installed and fixed by being fixedly connected to the main body 21. The water distributor 23 is provided with a first water distribution hole 233 and a second water distribution hole 234. The first water distribution hole 233 is used to connect the first water outlet hole 2221 and the water inlet hole 11; the second water distribution hole 234 is used to connect the second water outlet hole 211 and the water inlet hole 11. When the installation of the water distributor 23 is completed, the first water distribution hole 233 and the second water distribution hole 234 are respectively connected to the first water outlet hole 2221 and the second water outlet hole 211.
[0055] Reference Figure 2 、 Figure 6 and Figure 8 , the descaling member 3 is placed inside the water outlet member 2 so as to rotate synchronously with the water outlet member 2 when the water outlet member 2 rotates. The descaling member 3 is adapted to slide relative to the water outlet member 2 to extend into the first water outlet hole 2221 to perform descaling or withdraw from the first water outlet hole 2221 to ensure the water output of the first water outlet hole 2221. The descaling member 3 includes a frame body 31 and a pressing plate 32; a part of the frame body 31 is placed in the water outlet cavity 223, and a part extends out from the through - hole 2211 in a sealed manner to be fixedly connected to the pressing plate 32. The pressing plate 32 is provided with a force - receiving point, and the force - receiving point is located at the center of the descaling member 3. The first abutting point 121 and the second abutting point 122 are adapted to abut against the force - receiving point on the pressing plate 32.
[0056] Reference Figure 6 and Figure 8 , the reset member 4 is placed in the water outlet cavity 223. In this embodiment, the reset member 4 is a spring, and both ends of the reset member 4 act on the descaling member 3 and the water outlet member 2 respectively.
[0057] Reference Figure 8 , during installation, first install the frame body 31 and the reset member 4 on the water outlet face cover 222, and then fixedly connect the fixing seat 221 and the water outlet face cover 222 to form the face cover assembly 22. In this embodiment, the fixing seat 221 and the water outlet face cover 222 are welded or sealed with soft glue to form the face cover assembly; then install the fixing member 1 (the cam 12 and other parts of the fixing member 1 are separable) on the water distributor 23, and then insert the water distributor 23 into the main body 21, and insert the face cover assembly 22 into the main body 21 and snap - fit it with the main body 21 and the water distributor 23 to complete the installation.
[0058] During operation: Reference Figure 9 、 Figure 10 , when the water outlet member 2 rotates to the first position, the first abutting point 121 abuts against the descaling member 3 to make the descaling member 3 slide to the position where it extends into the first water outlet hole 2221 to perform descaling, and the reset member 4 stores energy. At this time, the first water distribution hole 233 is not connected to the water inlet hole 11, the second water distribution hole 234 is connected to the water inlet hole 11, and the second water outlet hole 211 faces downward and discharges water;
[0059] Reference Figures 5-8 When the water outlet member 2 rotates to the second position, the first abutting point 121 moves away from the descaling member 3, and the second abutting point 122 abuts against the descaling member 3 to limit the position of the descaling member 3. Since the distance from the second abutting point 122 to the first axis is less than the distance from the first abutting point 121 to the first axis, at this time, the reset member 4 is allowed to release energy, so that the descaling member 3 slides in a direction away from the first water outlet hole 2221 until it exits the first water outlet hole 2221. At this time, the first water distribution hole 233 is communicated with the water inlet hole 11, the second water distribution hole 234 is not communicated with the water inlet hole 11, and the first water outlet hole 2221 faces downward and discharges water.
[0060] This water outlet assembly can be installed on a shower handle or a faucet handle or other positions. The fixing member 1 is provided with a fixing structure that can be interconnected with the shower handle or the faucet handle, such as a threaded structure. In other embodiments, the fixing member 1 may not be provided with a water inlet hole 11 and is not used for water passing, and it is only used for connecting with other objects and driving the descaling member 3 to move. In other embodiments, the fixing member 1 may include a shower handle or a faucet handle. Compared with the prior art, this embodiment has the following beneficial effects:
[0061] In an exemplary embodiment, a water outlet assembly includes a fixing member 1, a water outlet member 2, a descaling member 3, and a reset member 4.
[0062] The fixing member 1 is provided with a first abutting point 121 for driving the descaling member 3 to slide. The water outlet member 2 is provided with a first water outlet hole 2221, and the first water outlet hole 2221 is adapted to be communicated with the water inlet hole 11 for discharging water; the descaling member 3 is placed inside the water outlet member 2 and is adapted to slide relative to the water outlet member 2 to extend into or exit the first water outlet hole 2221 so as to achieve descaling or ensure the water discharge amount of the first water outlet hole 2221. The two ends of the reset member 4 act on the descaling member 3 and the water outlet member 2 respectively for resetting the descaling member 3; the water outlet member 2 and the fixing member 1 are adapted to be rotatably connected about a first axis and rotate between a first position and a second position. The fixing member 1 is provided with a first abutting point 121. When the water outlet member 2 rotates to the first position, the first abutting point 121 abuts against the descaling member 3 to make the descaling member 3 slide to a position where it extends into the first water outlet hole 2221, and the reset member 4 stores energy; when the water outlet member 2 rotates to the second position, the first abutting point 121 moves away from the descaling member 3 to allow the reset member 4 to release energy, so that the descaling member 3 slides to a position where it exits the first water outlet hole 2221. This descaling can be achieved by the rotation of the water outlet member 2. When it rotates back to the original position, the descaling member 3 is reset by the reset member 4 to ensure the water discharge of the water outlet member 2, so that both descaling and water discharge can be better achieved. And the movement of the descaling member 3 is directly achieved by the first abutting point 121 of the fixing member 1 abutting against the descaling member 3, without the need for other transmission parts, which is relatively simple.
[0063] In an exemplary embodiment, the fixing member 1 is provided with a water inlet hole 11 adapted to communicate with the first water outlet hole. The water outlet member 2 is provided with a first water distribution hole 233 for communicating the first water outlet hole 2221 and the water inlet hole 11. When the water outlet member 2 is in the first position, the first water distribution hole 233 is not communicated with the water inlet hole 11, so as to remove scale from the first water outlet hole 2221. When the water outlet member 2 is in the second position, the first water distribution hole 233 is communicated with the water inlet hole 11, so as to allow water to flow out of the first water outlet hole 2221. When the water outlet member 2 rotates, the opening and closing of the first water outlet hole 2221 can also be realized, making the operation more convenient.
[0064] In an exemplary embodiment, the water outlet member 2 is further provided with a second water distribution hole 234 and a second water outlet hole 211. The second water distribution hole 234 is used for communicating the second water outlet hole 211 and the water inlet hole 11. When the water outlet member 2 is in the first position, the second water distribution hole 234 is communicated with the water inlet hole 11. When the water outlet member 2 is in the second position, the second water distribution hole 234 is not communicated with the water inlet hole 11. By providing the second water outlet hole 211 and the second water distribution hole 234, the water outlet styles are increased. Moreover, while rotating to switch the water path, the scale removal is also completed, and there is no need for separate operation to remove scale, which is convenient to use.
[0065] In an exemplary embodiment, when the water outlet member 2 is in the first position, the second water outlet hole 211 faces downward. When the water outlet member 2 is in the second position, the first water outlet hole 2221 faces downward, so that each water outlet hole faces downward, which is convenient for users to use.
[0066] In an exemplary embodiment, the fixing member 1 is provided with a second abutting point 122. When the water outlet member 2 rotates to the second position, the second abutting point 122 abuts against the descaling member 3 so that the descaling member 3 is located at a position where it withdraws from the first water outlet hole 2221. Since the distance from the second abutting point 122 to the first axis is less than the distance from the first abutting point 121 to the first axis, the descaling member 3 can be allowed to withdraw from the first water outlet hole 2221. At the same time, the second abutting point 122 restricts the position of the descaling member 3 and can also control the retraction distance of the descaling member 3, preventing it from freely retracting under the action of the reset member 4, resulting in an increase in the ineffective stroke. At the same time, since the movement space of the descaling member 3 becomes smaller, the internal space of the water outlet member 2 can also be reduced, and the size of the water outlet member 2 can be reduced.
[0067] In an exemplary embodiment, the fixing member 1 is provided with a cam 12. The cam 12 is provided with a second abutting point 122 and a first abutting point 121. The second abutting point 122 and the first abutting point 121 are transitioned through an arc surface. During the rotation of the water outlet member 2, the cam 12 is always in contact with the descaling rack 3, so that during the process of switching from the first abutting point 121 to the second abutting point 122, the distance from the first axis gradually becomes smaller, making the force acting on the descaling member 3 change slowly and increasing the feel during switching.
[0068] In an exemplary embodiment, the descaling member 3 is provided with a stress point located at the center of the descaling member 3. Both the first abutting point 121 and the second abutting point 122 are adapted to abut against the stress point, such that the first abutting point 121 and the second abutting point 122 act on the center of gravity of the descaling member 3. In this way, the descaling member 3 will not be subjected to a deflecting force and tilt, thus enabling descaling to be achieved.
[0069] In an exemplary embodiment, the water outlet member 2 includes a main body 21, a face cover assembly 22, and a water distributor 23. The main body 21 is provided with a second water outlet hole 211, and the face cover assembly 22 is provided with a first water outlet hole 2221. The face cover assembly 22 is adapted to be fixedly connected to the main body 21. The water distributor 23 is provided with a first water distribution hole 233 and a second water distribution hole 234. The water distributor 23 is adapted to be fixedly connected to the main body 21 or the face cover assembly 22, and the first water distribution hole 233 and the second water distribution hole 234 are respectively communicated with the first water outlet hole 2221 and the second water outlet hole 211. The water outlet member 2 is formed by separately manufacturing and fixedly connecting the main body 21, the face cover assembly 22, and the water distributor 23, which facilitates the production of the complex and multifunctional water outlet member 2.
[0070] In an exemplary embodiment, the face cover assembly 22 is both snap-connected to the main body 21 and snap-connected to the water distributor 23. By snap-connecting the face cover assembly 22 to the main body 21 and the water distributor 23, the three are fixedly connected together, eliminating the need to provide a fixing structure between each pair, making the structure simpler and more convenient.
[0071] In an exemplary embodiment, the face cover assembly 22 includes a fixing base 221 and a water outlet face cover 222. The water outlet face cover 222 is provided with a first water outlet hole 2221. The water outlet face cover 222 is fixedly connected to the fixing base 221 and encloses to form a water outlet cavity 223 communicating with the first water outlet hole 2221 and the first water distribution hole 233. The descaling member 3 includes a frame body 31 and a pressing plate 32. The fixing base 221 is provided with a through hole 2211. A part of the frame body 31 is placed in the water outlet cavity 223, and a part extends out from the through hole 2211 in a sealed manner to be fixedly connected to the pressing plate 32 to prevent water from leaking through the through hole 2211. The reset member 4 is placed in the water outlet cavity 223. The first abutting point 121 and the second abutting point 122 are adapted to abut against the pressing plate 32. With this arrangement, while facilitating the installation of the descaling member 3, the stressed part and the descaling part of the descaling member 3 are respectively arranged outside and inside the water outlet cavity 223, facilitating assembly and reducing the hydraulic influence.
[0072] The above description of the specification and embodiments is used to explain the protection scope of the present invention, but does not constitute a limitation to the protection scope of the present invention. Through the inspiration of the present invention or the above embodiments, those of ordinary skill in the art, in combination with common general knowledge, ordinary technical knowledge in the art, and / or the prior art, can make modifications, equivalent replacements, or other improvements to the embodiments of the present invention or some of its technical features through logical analysis, reasoning, or limited experiments, and all of these should be included within the protection scope of the present invention.
Claims
1. A water outlet assembly, characterized in that: include A fixing member (1) having a first supporting point (121); A water outlet member (2), which is rotatably connected to the fixing member (1) around a first axis and rotates between a first position and a second position, and is provided with a first water outlet hole (2221); a descaling member (3), which is disposed in the water outlet member (2) and is adapted to slide relative to the water outlet member (2) so as to extend into or exit from the first water outlet hole (2221); A reset member (4), two ends of which act on the descaling member (3) and the water outlet member (2) respectively; when the water outlet member (2) rotates to a first position, the first abutting point (121) abuts against the descaling member (3), causing the descaling member (3) to slide to a position extending into the first water outlet hole (2221), and the reset member (4) stores energy; when the water outlet member (2) rotates to a second position, the first abutting point (121) moves away from the descaling member (3), allowing the reset member (4) to release energy, causing the descaling member (3) to slide to a position exiting the first water outlet hole (2221).
2. A water outlet assembly according to claim 1, characterized in that: The fixing member (1) is provided with a water inlet hole (11) adapted to be in communication with the first water outlet hole (2221); the water outlet member (2) is provided with a first water diversion hole (233), the first water diversion hole (233) being used to connect the first water outlet hole (2221) and the water inlet hole (11); when the water outlet member (2) is located in a first position, the first water diversion hole (233) is not in communication with the water inlet hole (11); when the water outlet member (2) is located in a second position, the first water diversion hole (233) is in communication with the water inlet hole (11).
3. A water outlet assembly according to claim 2, characterized in that: The water outlet member (2) is further provided with a second water diversion hole (234) and a second water outlet hole (211); the second water diversion hole (234) is used to connect the second water outlet hole (211) and the water inlet hole (11); when the water outlet member (2) is in the first position, the second water diversion hole (234) is connected to the water inlet hole (11); when the water outlet member (2) is in the second position, the second water diversion hole (234) is not connected to the water inlet hole (11).
4. A water outlet assembly according to claim 3, characterized in that: When the water outlet member (2) is in the first position, the second water outlet hole (211) faces downwards; when the water outlet member (2) is in the second position, the first water outlet hole (2221) faces downwards.
5. A water outlet assembly according to claim 1, characterized in that: The fixing member (1) is further provided with a second abutting point (122), and the distance between the second abutting point (122) and the first axis is smaller than the distance between the first abutting point (121) and the first axis; when the water outlet member (2) rotates to the second position, the second abutting point (122) abuts against the descaling member (3) so that the descaling member (3) is located at a position exiting the first water outlet hole (2221).
6. A water outlet assembly according to claim 5, characterized in that: The fixing member (1) is provided with a cam (12), and the cam (12) is provided with the second supporting point (122) and the first supporting point (121), and the second supporting point (122) and the first supporting point (121) are transitioned via an arc surface, and during the rotation of the water outlet member (2), the cam is always in contact with the descaling member (3).
7. A water outlet assembly according to claim 5, characterized in that: The descaling component (3) is provided with a force-bearing point, which is located at the center of the descaling component (3), and the first abutting point (121) and the second abutting point (122) are both suitable for abutting against the force-bearing point.
8. A water outlet assembly according to claim 3, characterized in that: The water outlet component (2) comprises a main body (21), a surface cover assembly (22) and a water diversion body (23); the main body (21) is provided with a second water outlet hole (211); the surface cover assembly (22) is provided with a first water outlet hole (2221); the surface cover assembly (22) is suitable for being fixedly connected to the main body (21); the water diversion body (23) is provided with a first water diversion hole (233) and a second water diversion hole (234); the water diversion body (23) is suitable for being fixedly connected to the main body (21) or the surface cover assembly (22), and the first water diversion hole (233) and the second water diversion hole (234) are respectively connected to the first water outlet hole (2221) and the second water outlet hole (211).
9. A water outlet assembly according to claim 8, characterized in that: The surface cover assembly (22) is snap-fitted to the main body (21), and the surface cover assembly (22) is also snap-fitted to the water diversion body (23).
10. A water outlet assembly according to claim 8, characterized in that: The surface cover assembly (22) comprises a fixing seat (221) and a water outlet surface cover (222); the water outlet surface cover (222) is provided with the first water outlet hole (2221); the water outlet surface cover (222) is fixedly connected to the fixing seat (221) and encloses a water outlet cavity (223) which is in communication with the first water outlet hole (2221) and the first water diversion hole (233); the descaling component (3) comprises a frame (31) and a pressing plate (32); the fixing seat (221) is provided with a through hole (2211); a portion of the frame (31) is disposed in the water outlet cavity (223) and a portion of the frame (31) is sealedly extended from the through hole (2211) to be fixedly connected with the pressing plate (32); the reset component (4) is disposed in the water outlet cavity (223); and the first abutting point (121) is suitable for abutting against the pressing plate (32).