Water outlet device capable of spraying different water spots on same nozzle
Through the design of the linear transmission mechanism, the transmission structure of the water outlet device is simplified, the misalignment and disengagement problem caused by uneven transmission is solved, and flexible switching and stable operation of various water splash forms are realized, which improves user experience and product life.
Patent Information
- Application Number
- CN202421754678.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-23
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-07-23
AI Technical Summary
The transmission structure of the existing water outlet mechanism is complex and cumbersome, which makes it difficult to produce and manufacture and is prone to misalignment and dislocation caused by uneven transmission, affecting the product life.
The linear transmission mechanism adopts a linear transmission, through the linkage design of the actuator, slider, rotating member and water-dividing member, the stepless adjustment angle controls the water outlet state, simplifies the transmission structure and improves stability.
It improves the operation convenience and stability of the water outlet device, reduces faults, and realizes flexible switching of various water splash forms, extending product life.
Smart Images

Figure CN223083001U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water outlet mechanisms, in particular to a water outlet device capable of producing different water splashes at the same nozzle. Background Art
[0002] At present, the water outlet mechanisms on the market, such as stepless showers, can control the water inlet conditions of the two water inlets of the water outlet part through a switching mechanism, which can realize the gradual change of the shapes of different water splashes and achieve the goal of producing different water splashes from the same nozzle. The water splash covers a larger area and the water outlet is more uniform.
[0003] Although the existing scheme can produce different water splashes from the same nozzle, its cam-linkage mechanism has many shortcomings in its transmission mode. Not only is its transmission structure complicated and cumbersome, which increases the difficulty of production and manufacturing, but also in daily operation, misalignment and disengagement frequently occur due to uneven transmission, and even affect the service life of the product. Utility Model Content
[0004] In view of this, the purpose of the utility model is to provide a water outlet device capable of producing different water splashes at the same nozzle, so as to solve the above-mentioned problem.
[0005] The utility model adopts the following scheme:
[0006] The present application provides a water outlet device capable of producing different water splashes at the same spout, comprising an installation part, a water outlet part, an operating mechanism, a switching mechanism and a transmission mechanism; the operating mechanism comprises an operating member and a sliding member, the switching mechanism comprises a rotating member, and the water outlet part is provided with a water dividing member linked to and coordinated with the rotating member; the operating member is used to drive the sliding member to slide freely relative to the installation part, and the transmission mechanism is connected between the sliding member and the rotating member, corresponding to triggering the rotation of the rotating member in the form of linear transmission and then driving the water dividing member to move, so as to realize stepless adjustment of the angle, thereby controlling the water inlet and outlet state of the water outlet part, and correspondingly outputting different water splashes at at least one water outlet.
[0007] As a further improvement, the water outlet is correspondingly arranged at the water outlet part, the water inlet condition of the water outlet part includes at least one of whether water is inletting and water inlet flow rate, and the water outlet condition of the water outlet part includes making the water outlet emit different water splashes.
[0008] As a further improvement, the transmission mechanism is configured as a pushing member connected between the sliding member and the rotating member, the pushing member is provided with a rack portion, and the rotating member is correspondingly provided with a tooth portion meshing with the rack portion. The relative sliding of the pushing member can drive the rack portion to always mesh with the tooth portion for transmission.
[0009] As a further improvement, the operating member is constructed as a push button fixedly arranged on the sliding member, and the sliding member is detachably connected to the pushing member by snapping.
[0010] As a further improvement, an installation groove is formed at one end of the pushing member away from the rack portion. An end portion of the sliding member is integrally formed with a bent portion and is movably buckled in the installation groove. When the sliding member linearly slides toward the rotating member, the buckling depth of the bent portion in the installation groove gradually increases.
[0011] As a further improvement, the installation part includes a handle and a water outlet face cover. The water outlet part and its water outlet are formed on the water outlet face cover. The handle is provided with a track adapted to the sliding member, and the handle is provided with a chute adapted to the pushing member.
[0012] As a further improvement, the track extends horizontally along the sliding direction, and the sliding member is a strip-shaped slider seat installed on the track.
[0013] As a further improvement, the chute is formed in the front section of the handle along the sliding direction. One end of the pushing member is guidingly slidably disposed in the chute. The other end of the pushing member is integrally connected with the rack portion, and the rack portion extends along the sliding direction.
[0014] As a further improvement, the rotating member is an arc-shaped tooth piece. The water dividing member has a hinge shaft, and the water dividing member and the arc-shaped tooth piece are coaxially fixed corresponding to the hinge shaft.
[0015] As a further improvement, the pushing member drives the rack portion to freely switch between a first limit position and a second limit position, so that the arc-shaped tooth piece adjusts the angle of the hinge shaft under the drive of the tooth portion to control the gradual change of the water outlet form among atomized water - lantern water - granular water - sprinkler water.
[0016] As a further improvement, the installation part is correspondingly provided with a first limiting member for restricting the upward movement of the pushing member beyond the first limit position, and the water dividing member is correspondingly provided with a second limiting member for restricting the downward movement of the pushing member beyond the second limit position.
[0017] By adopting the above technical solutions, the following technical effects can be achieved by the present utility model:
[0018] The water outlet device of the present application that can produce different water sprays from the same nozzle is provided with a transmission mechanism between the operating mechanism and the switching mechanism, and the transmission mechanism is configured to transmit power in a linear transmission form, making the transmission structure of the sliding member, the transmission structure of the transmission mechanism, and the switching structure of the rotating member more efficient and concise, more intuitive in operation, and easier to operate for the manipulation and switching of the water dividing member, so as to improve the user experience. Moreover, each structural member is stable and reliable, reducing product failures caused by low transmission efficiency and increasing the service life of the mechanism. Since the angle can be adjusted steplessly, the inlet and outlet states of the water outlet part can be controlled to achieve various different water spray forms, such as spray, jet, shower, etc., meeting the user's requirements for different water flow forms, and the practicability and flexibility are particularly remarkable. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic structural diagram of the water outlet device of the embodiment of the present utility model that can produce different water sprays from the same nozzle;
[0020] Figure 2 is a schematic structural diagram of the water outlet device of the embodiment of the present utility model that can produce different water sprays from the same nozzle after hiding the outer shell, where a partial enlarged view is shown for easy display;
[0021] Figure 3 is Figure 2 a schematic structural diagram from other perspectives in;
[0022] Figure 4 is an exploded schematic diagram of the water outlet device of the embodiment of the present utility model that can produce different water sprays from the same nozzle;
[0023] Figure 5 is a schematic structural diagram of the water outlet device of the embodiment of the present utility model that can produce different water sprays from the same nozzle after being switched down to the second extreme position;
[0024] Figure 6 is a schematic structural diagram of the water outlet device of the embodiment of the present utility model that can produce different water sprays from the same nozzle after being switched up to the first extreme position.
[0025] Reference numerals: 1 - operating member; 2 - sliding member; 3 - pushing member; 4 - rotating member; 5 - water dividing member; 6 - rack portion; 7 - tooth portion; 8 - installation groove; 9 - bending portion; 10 - handle; 11 - water outlet face cover; 12 - track; 13 - chute; 14 - first limiting member; 15 - second limiting member; 16 - water outlet. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model. Therefore, the following detailed description of the embodiments of the utility model provided in the drawings is not intended to limit the scope of the utility model for which protection is claimed, but merely represents selected embodiments of the utility model.
[0027] Example
[0028] Combination Figures 1 to 6 This embodiment provides a water outlet device capable of producing different water splashes at the same nozzle, including a mounting portion, a water outlet portion, an operating mechanism, a switching mechanism, and a transmission mechanism. The operating mechanism includes an operating member 1 and a sliding member 2, the switching mechanism includes a rotating member 4, and the water outlet portion is provided with a water distribution member 5 that is linked and cooperates with the rotating member 4. The operating member 1 is used to drive the sliding member 2 to slide freely relative to the mounting portion, and the transmission mechanism is connected between the sliding member and the rotating member, corresponding to triggering the rotation of the rotating member 4 in the form of linear transmission to drive the water distribution member 5 to move, so as to achieve stepless adjustment of the angle, thereby controlling the water inlet and outlet state of the water outlet portion, and correspondingly outputting different water splashes at at least one water outlet 16.
[0029] The above-mentioned water outlet device that can produce different water splashes at the same spout has a transmission mechanism between the operating mechanism and the switching mechanism, and the transmission mechanism is configured to transmit power in the form of linear transmission, so that the transmission structure of the sliding member 2, the transmission structure of the transmission mechanism, and the switching structure design of the rotating member 4 are more efficient and simple, and more intuitive in operation. The water diversion member 5 can be operated and switched more easily to improve the user experience, and each structural member is stable and reliable, reducing product failures caused by low transmission efficiency and prolonging the service life of the mechanism. Since the angle can be adjusted steplessly to control the water inlet and outlet state of the water outlet part, a variety of different water splash forms can be achieved, such as spray, jet, shower, etc., to meet the user's needs for different water flow forms, and the practicality and flexibility are particularly significant.
[0030] In this embodiment, the water outlet 16 is correspondingly arranged in the water outlet part. The water inlet condition of the water outlet part includes at least one of whether water enters and the water inlet flow rate. The water outlet condition of the water outlet part includes making different water flowers come out of the water outlet. Thus, through external water inlet into the water outlet part, the water inlet of the water outlet part is correspondingly controlled by the water distribution member 5. The water distribution member 5 can control the water outlet from two dimensions: the size of the water inlet flow rate and whether water inlet is conducted. And driven by the rotating member 4, the water distribution member 5 can adjust the water inlet flow rate, for example, the opening degree of the water inlet to correspondingly adjust the output flow rate of the water outlet 16, so as to form different water flowers for users to use.
[0031] As Figure 3 and Figure 4 shown, in this embodiment, the transmission mechanism is configured as a pushing member 3 connected between the sliding member 2 and the rotating member 4. A rack portion 6 is provided on the pushing member 3, and a tooth portion 7 meshing with the rack portion 6 is correspondingly provided on the rotating member 4. The relative sliding of the pushing member 3 can drive the rack portion 6 to always mesh and transmit with the tooth portion 7. In this way, the meshing transmission between the pushing member 3 and the rotating member 4 is realized, so as to control the water inlet and outlet state of the water outlet part.
[0032] The pushing member 3 is a key component in the whole system. A section of rack portion 6 is provided thereon. This section of rack portion 6 can be a groove, or a combination of a series of grooves or protrusions. The pushing member 3 can slide relative to the installation part, and the shape and size of its rack portion 6 determine the characteristics of the transmission. Correspondingly, the rotating member 4 is another component meshing and transmitting with the pushing member 3. A tooth portion 7 meshing with the rack portion 6 of the pushing member 3 is provided thereon, and the shape and position of the tooth portion 7 should correspond to the rack portion 6 of the pushing member 3 to ensure the smoothness and stability of the transmission.
[0033] Wherein, when the pushing member 3 slides linearly relative, its rack portion 6 always meshes and transmits with the tooth portion 7 on the rotating member 4. The meshing transmission can control the motion state of the rotating member 4 through the sliding of the pushing member 3, and further adjust the water inlet and outlet state. Thus, through the meshing transmission between the pushing member 3 and the rotating member 4, the control of the motion states of the rotating member 4 and the water distribution member 5 can be realized. The sliding of the pushing member 3 can change the position of the meshing point, thereby adjusting the rotation angle of the rotating member 4, and further driving the water distribution member 5 to realize stepless angle adjustment, so as to control the water outlet form and intensity of the water outlet part. It is simple and reliable. Through the meshing transmission of the rack and the tooth portion 7, the motion synchronization between the pushing member 3 and the rotating member 4 is realized, the rotation angle can be accurately controlled, and the stability and reliability of the transmission system are improved.
[0034] In this embodiment, the operating member 1 is configured as a push button fixedly arranged on the sliding member 2, and the sliding member 2 is detachably buckled and connected to the pushing member 3. On the one hand, as an operation element for pushing and triggering, the push button is fixedly arranged on the sliding member 2, and the user can directly operate the sliding member 2 by pushing the push button, so as to realize the sliding control of the pushing member 3. On the other hand, the sliding member 2 and the pushing member 3 are connected by a detachable buckling method, which makes it more convenient when maintenance or component replacement is required. The sliding member 2 and the pushing member 3 can be quickly disassembled or installed, reducing the time and cost of maintenance and replacement. Thus, as the operating member 1, the push button is simple and intuitive to operate, and the user can easily master the operation method, improving the convenience of use and the user experience. And the buckling method is used to connect the sliding member 2 and the pushing member 3, which can ensure a firm connection, not easy to loosen or fall off, improving the stability and reliability of the system. It not only ensures the convenience and reliability of operation, but also improves the convenience of maintaining and replacing components.
[0035] Specifically, an installation groove 8 is formed at one end of the pushing member 3 away from the rack portion 6. An end portion of the sliding member 2 is integrally formed with a bending portion 9 which is movably buckled in the installation groove 8. When the sliding member 2 linearly slides towards the rotating member, the buckling depth of the bending portion 9 in the installation groove 8 gradually increases. Obviously, the function of the installation groove 8 is to connect the sliding member 2 and ensure the stability and reliability of the sliding connection. In addition, an end portion of the sliding member 2 is integrally formed with a bending portion 9, and the bending portion 9 is buckled with the installation groove 8 of the pushing member 3, making the sliding member 2 and the pushing member 3 more tightly connected. When the sliding member 2 linearly slides towards the rotating member, the buckling depth of the bending portion 9 in the installation groove 8 gradually increases, making the connection more firm and avoiding the loosening or falling off of the connection caused by vibration or external force.
[0036] As Figure 2 and Figure 4 shown, in this embodiment, the installation part includes a handle 10 and a water outlet face cover 11. The water outlet part and its water outlet are formed on the water outlet face cover 11. The handle 10 is provided with a track 12 adapted to the sliding member 2, and the handle 10 is provided with a sliding groove 13 adapted to the pushing member 3. It can be understood that the handle 10 is a component for the user to operate the water outlet structure, usually a handle that is convenient to hold. A track 12 adapted to the sliding member 2 is provided on the handle 10, which can adapt to the up and down sliding of the sliding member 2 on the handle 10, and the user can easily control the water inlet and outlet state of the water outlet structure through the handle 10.
[0037] Among them, the water outlet cover 11 is a part of the water outlet structure, used to wrap the water outlet part and control the water outlet. The interior of the water outlet cover 11 forms the water outlet part, which can be designed to output different water outlet forms and water flow intensities after being connected to the water outlet 16 as needed. Moreover, the track 12 on the handle 10 is adapted to the sliding member 2, enabling the sliding member 2 to slide smoothly up and down on the handle 10, ensuring the stability and smoothness of the operation. At the same time, the sliding groove 13 on the handle 10 is adapted to the pushing member 3, and the user can control the guiding movement of the pushing member 3 through the sliding groove 13, thereby achieving a more stable, precise and convenient operation.
[0038] Further, the track 12 extends horizontally along the sliding direction, and the sliding member 2 is a strip-shaped slider seat installed on the track 12. This is to achieve the stable sliding of the sliding member 2 on the track 12, ensuring the smoothness and accuracy of the operation. The track 12 extending horizontally along the sliding direction can provide a stable sliding track, enabling the sliding member 2 to remain stable during the operation and not easily break away or deviate. The sliding direction of the sliding member 2 on the track 12 is usually horizontal to the track 12, that is, it slides along the horizontal direction of the track 12, making the sliding operation more convenient and intuitive.
[0039] Among them, the sliding groove 13 is opened at the front section of the handle 10 along the sliding direction, one end of the pushing member 3 is configured to slide guidingly in the sliding groove 13, the other end of the pushing member 3 is integrally connected with the rack portion 6, and the rack portion 6 extends along the sliding direction. In this embodiment, the sliding groove 13 is a groove-shaped structure opened at the front section of the handle 10 along the sliding direction of the handle 10. One end of the pushing member 3 is configured to slide guidingly in the sliding groove 13 to ensure the smooth sliding of the pushing member 3 on the handle 10 and limit its movement direction. As a key component connecting the handle 10 and the water outlet structure, one end of the pushing member 3 is configured to slide guidingly in the sliding groove 13, and the other end is integrally connected with the rack portion 6. The rack portion 6 extends along the sliding direction to achieve the movement control and transmission function of the pushing member 3.
[0040] Preferably, the rotating member 4 is an arc-shaped tooth piece, the water dividing member 5 has a hinge shaft (not shown in the figure), and the water dividing member 5 and the arc-shaped tooth piece are fixedly coaxially corresponding through the hinge shaft. The arc-shaped tooth piece can be closely engaged with the rack portion 6 to achieve the transmission of motion. Moreover, the hinge shaft of the water dividing member 5 is fixedly coaxially with the arc-shaped tooth piece, and the two rotate synchronously around the same axis. When the rotating member 4 is controlled to rotate, the hinge shaft will also follow to perform corresponding movements, thereby adjusting the relative position between the water dividing member 5 and the water dividing body.
[0041] It should be noted that the rotation of the hinge shaft causes the water dividing member 5 to rotate relative to the water dividing body, thereby switching different water inlet and outlet channels and correspondingly switching the water outlet states of the sprinkler water and the spray water. As for the water dividing member, the hinge shaft, the water dividing body and the internal water path switching, this is the prior art and will not be elaborated here.
[0042] As Figure 5 and Figure 6 shown, in this embodiment, the pushing member 3 drives the rack portion 6 to freely switch between the first limit position and the second limit position, so that the arc-shaped tooth piece adjusts the angle of the hinge shaft under the drive of the tooth portion 7 to control the gradual change of the water outlet form among atomized water - lantern water - granular water - sprinkler water. Specifically, when the operating member 1 is pushed from bottom to top, the sliding member 2 is transmitted to the pushing member 3 to switch its rack portion 6 to the first limit position. When the operating member 1 is pushed from top to bottom, the rack portion 6 is switched back to the second limit position. The movement of the rack portion 6 along the first limit position and the second limit position is transmitted to the arc-shaped gear to drive the hinge shaft to rotate, correspondingly controlling the switching of the water outlet state, and finally different water sprays can be output.
[0043] Among them, as Figure 3 shown, the installation part is correspondingly provided with a first limiting member 14 for restricting the upward movement of the pushing member 3 beyond the first limit position, and the water dividing member 5 is correspondingly provided with a second limiting member 15 for restricting the downward movement of the pushing member 3 beyond the second limit position. Thus, during the movement of the pushing member 3, the movement range of the pushing member 3 is restricted by the two limiting members to prevent exceeding the set limit position and protect the normal operation of the water outlet structure.
[0044] The above is only the preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention.
Claims
1. A water outlet device capable of producing different water splashes at the same nozzle, comprising a mounting portion, a water outlet portion, an operating mechanism, a switching mechanism and a transmission mechanism; characterized in that: The operating mechanism includes a manipulation member and a sliding member, the switching mechanism includes a rotating member, and the water outlet portion is provided with a water distribution member that cooperates with the rotating member; The operating member is used to drive the sliding member to slide freely relative to the installation part. The transmission mechanism is connected between the sliding member and the rotating member, and triggers the rotation of the rotating member in the form of linear transmission to drive the water diverter member to move, so as to achieve stepless angle adjustment, thereby controlling the water inlet and outlet state of the water outlet part, and outputting different water splashes at at least one water outlet.
2. The water outlet device capable of producing different water sprays from the same nozzle according to claim 1, wherein The water outlet is correspondingly arranged at the water outlet part, the water inlet condition of the water outlet part includes at least one of whether water is inlet and water inlet flow rate, and the water outlet condition of the water outlet part includes making the water outlet emit different water splashes.
3. The water outlet device capable of discharging different water sprays from the same nozzle according to claim 2, characterized in that, The transmission mechanism is configured as a pushing member connected between the sliding member and the rotating member. The pushing member is provided with a rack portion, and the rotating member is correspondingly provided with a tooth portion meshing with the rack portion. The relative sliding of the pushing member can drive the rack portion to always mesh with the tooth portion for transmission.
4. The water outlet device capable of discharging different water sprays from the same nozzle according to claim 3, characterized in that, The operating member is constructed as a push button fixedly arranged on the sliding member, and the sliding member is detachably connected to the pushing member by buckling.
5. The water outlet device capable of discharging different water sprays from the same nozzle according to claim 4, characterized in that, The push member has an installation groove at one end away from the rack portion, and the end of the sliding member is integrally formed with a bending portion and movably engaged in the installation groove. When the sliding member slides linearly toward the rotating member, the engagement depth of the bending portion in the installation groove gradually increases.
6. The water outlet device capable of discharging different water sprays from the same nozzle according to claim 3, characterized in that, The installation part comprises a handle and a water outlet cover, the water outlet part and its water outlet are formed on the water outlet cover, the handle is provided with a track adapted to the sliding member, and the handle is provided with a sliding groove adapted to the pushing member.
7. The water outlet device capable of discharging different water flowers from the same nozzle according to claim 6, characterized in that, The track extends horizontally along a sliding direction, and the sliding member is a strip-shaped sliding block seat installed on the track.
8. The water outlet device capable of discharging different water sprays from the same nozzle according to claim 6, characterized in that, The slide groove is opened at the front section of the handle along the sliding direction, one end of the push member is guided and slidably arranged in the slide groove, the other end of the push member is integrally connected with the rack part, and the rack part is extended along the sliding direction.
9. The water outlet device capable of discharging different water sprays from the same nozzle according to claim 3, characterized in that, The rotating member is an arc-shaped tooth piece, the water-dividing member has a hinge shaft, and the water-dividing member and the arc-shaped tooth piece are fixed coaxially with each other through the hinge shaft.
10. The water outlet device capable of discharging different water sprays from the same nozzle according to claim 9, characterized in that, The pusher drives the rack portion to switch freely between the first extreme position and the second extreme position, so that the arc-shaped tooth piece adjusts the angle of the hinge shaft under the drive of the tooth portion to control the water outlet form to gradually change between atomized water-lantern water-granular water-shower water.