Antibacterial anti-scale shower head
By designing a cleaning and drainage mechanism for the antibacterial and anti-scaling showerhead, the problem of bacterial growth and dirt accumulation caused by residual water in the showerhead pipe is solved, achieving automatic cleaning of the spray nozzles and smooth water flow, thus extending the service life of the showerhead.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHANGRAO SUNMAX TECH CO LTD
- Filing Date
- 2023-11-21
- Publication Date
- 2026-04-24
AI Technical Summary
After use, residual water in the hoses of existing showerheads can lead to bacterial growth and dirt buildup, causing clogged nozzles and affecting water spray performance and water quality.
An antibacterial and anti-scaling shower head was designed, which includes a cleaning mechanism and a drain conversion mechanism. The cleaning mechanism automatically cleans the dirt in the spray holes through the cleaning fan shaft, and the drain conversion mechanism controls the water flow direction through a ball-shaped multi-hole valve to achieve automatic draining.
It effectively removes dirt from the spray nozzles, prevents bacterial growth, keeps water flowing smoothly, extends the life of the shower head, and prevents scale and bacteria from accumulating in the water pipes.
Smart Images

Figure CN121911599A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of shower head cleaning and antibacterial technology, specifically an antibacterial and anti-scaling shower head. Background Technology
[0002] In most existing showerheads, some water remains in the showerhead and shower hose after use. The current technology involves inverting the showerhead, shaking it, or gently tapping it to drain the water from the nozzles or holes as much as possible, and then wiping the water stains with a towel or paper towel.
[0003] Residual water stored in existing shower hoses may affect bacterial growth, especially when there is a certain degree of humidity and suitable temperature conditions inside the hose. The residual water stays in the hose for a long time, providing conditions for bacterial growth and reproduction. Furthermore, the residual water inside the hose may form an organic layer called biofilm over a long period of time. This organic layer is difficult to remove by conventional cleaning methods. If the inside of the hose cannot be kept dry and disinfected, the number of bacteria may continue to increase. At the same time, the bacteria multiplying in the stored water will produce an unpleasant odor and may pollute the water quality.
[0004] Meanwhile, the organic biofilm that forms in the showerhead due to the humid environment can clog the nozzles, leading to dirt buildup. This dirt accumulation in the nozzles restricts the smooth flow of water, causing it to weaken or become uneven, affecting the shower's spray performance and resulting in uneven or no water flow. The dirt may contain impurities, dust, and bacteria. If this dirt enters the water flow, it can affect water quality, resulting in unclean water, poor water quality, unpleasant odors, or water stains remaining on the showerhead surface. If someone in the household has an unhealed wound and water accidentally splashes onto it while using the shower, bacterial infection could occur, posing a health hazard.
[0005] Therefore, an antibacterial and anti-scaling shower head was proposed to solve the above problems. Summary of the Invention
[0006] In view of this, the technical problem to be solved by the present invention is to provide an antibacterial and anti-scaling shower head, so as to solve the problem that in the prior art, after the shower head and shower head pipe are used, residual water is stored in the shower head and shower head pipe, which leads to the growth of bacteria and the generation of dirt, which in turn causes the shower head nozzles to be blocked and the nozzles cannot spray water normally.
[0007] To achieve the above objectives, the present invention provides the following technical solution: an antibacterial and anti-scaling shower head, comprising a panel, wherein the panel includes a support block, the support block is fixedly connected to the bottom of the panel, a clamping frame is fixedly connected to the top of the panel, a shower head is snapped onto the end of the clamping frame away from the panel, a shower pipe is threadedly connected to the end of the shower head near the clamping frame, the end of the shower pipe away from the shower head is fixedly connected to the support block, a spherical water groove is formed at the connection between the support block and the shower pipe, an inlet pipe is fixedly connected to one end of the spherical water groove on the shower pipe, and an outlet pipe is fixedly connected to the other end of the spherical water groove on the shower pipe, characterized in that the antibacterial and anti-scaling shower head includes: a cleaning mechanism and a drain conversion mechanism, the cleaning mechanism being disposed inside the shower head, and the drain conversion mechanism being disposed on the support block;
[0008] The cleaning mechanism includes a slide for squeezing and sliding. The slide is located inside the shower head and is fixedly connected to the shower head. The cleaning mechanism is used for automatic cleaning of dirt in the shower head.
[0009] The sewage conversion mechanism includes a spherical multi-hole valve for controlling the water inflow and outflow, which is rotatably connected to a spherical water trough in the shower pipe.
[0010] As an improvement, the cleaning mechanism also includes a pressing block, the middle of which is fixedly connected to the shower head. A sliding tooth is provided on one end of the pressing block inside the shower head, and a medium-sized multi-toothed plate A is engaged with the sliding tooth on the pressing block. The middle upper part of the medium-sized multi-toothed plate A is fixedly connected to the shower head. A tension spring is fixedly connected to the pressing block near the sliding tooth, and the other end of the tension spring is fixedly connected to the shower head. A small multi-toothed plate B is engaged with the end of the medium-sized multi-toothed plate A away from the pressing block, and the middle part of the small multi-toothed plate B is slidably connected to a slide rail.
[0011] As an improvement, the medium-sized multi-tooth plate A is composed of two gear plates, the diameter of the upper gear plate of the medium-sized multi-tooth plate A is smaller than the diameter of the lower gear plate, and the sliding teeth provided on the pressing block mesh with the small gear plate above the medium-sized multi-tooth plate A.
[0012] As an improvement, the small multi-tooth plate B is composed of two gear plates with smaller diameters compared to the medium multi-tooth plate A. The diameter of the upper gear plate of the small multi-tooth plate B is larger than that of the lower gear plate. The larger lower gear plate of the medium multi-tooth plate A meshes with the smaller lower gear plate of the small multi-tooth plate B. A gear shaft is provided next to the slide rail. The upper end of the gear shaft is rotatably connected to the shower head, and the lower end of the gear shaft is fixedly connected to the cleaning fan shaft.
[0013] As an improvement, the sewage conversion mechanism further includes a cylindrical housing, the bottom of which is fixedly connected to a support block. A rotating disk is rotatably connected to the bottom of the cylindrical housing, and the rotating disk is fixedly connected to the axis of a spherical multi-hole valve. An extrusion column is fixedly connected to the other end of the rotating disk away from the spherical multi-hole valve, and the extrusion column is disposed in the cylindrical housing.
[0014] As an improvement, a pressing column is slidably connected inside the cylindrical housing. An X-shaped groove is provided on the cylindrical housing, and vertical grooves are also provided on both sides of the X-shaped groove. The vertical grooves on the cylindrical housing are the same as the X-shaped grooves. An extrusion block is fixedly connected to the pressing column, and the extrusion block is slidably connected in the X-shaped groove and the vertical grooves provided on the cylindrical housing.
[0015] As an improvement, a pressing spring is fixedly connected to the bottom of the pressing column, and the end of the pressing spring away from the pressing column is fixedly connected to the rotating disk. The pressing spring is set in the cylindrical housing, and an elongated groove is opened in the pressing column. The rotating disk is slidably connected in the elongated groove opened in the pressing column.
[0016] As an improvement, the ball-shaped multi-hole valve has a T-shaped hole in the center for water flow transfer. Under the pressure of the sewage conversion mechanism, the ball-shaped multi-hole valve can be rotated 180 degrees clockwise along the connection of the support block, so that the original water inlet pipe and the shower pipe are connected by the ball-shaped multi-hole valve, and the water outlet pipe and the shower pipe are connected after the ball-shaped multi-hole valve is rotated 180 degrees.
[0017] Compared with the prior art, the present invention provides an antibacterial and anti-scaling shower head, which has the following beneficial effects:
[0018] 1. The cleaning mechanism effectively allows the cleaning fan shaft to cover every corner of the spray holes while rotating, thoroughly cleaning the dirt on the spray holes and ensuring smooth water flow. It can not only remove surface stains but also clean deep dirt such as limescale and bacteria. Regularly cleaning the dirt on the shower spray holes can extend the service life of the shower head.
[0019] 2. The cleaning mechanism allows for easy cleaning of the showerhead's spray nozzles without disassembling the entire showerhead. Simply turn on the water spray, and the cleaning component will automatically rotate, increasing internal water pressure for a more even water spray and improving the drainage of dirt from the spray nozzles. After spraying, pressing the button will restart the cleaning mechanism, causing the cleaning fan shaft to rotate again. This not only cleans the dirt from the spray nozzles again but also ensures that any remaining water in the showerhead is thoroughly drained into the shower hose.
[0020] 3. The press-to-drain function, set up with a wastewater conversion mechanism, can drain water that has accumulated in the shower hose due to prolonged disuse, causing scale and dirt blockages. This prevents the growth of scale and bacteria in the hose, keeping the shower head clean. The press-to-drain function also allows for regular cleaning of the hose, preventing blockages and ensuring smooth water flow. Furthermore, the ball-shaped multi-hole valve, controlled by the wastewater conversion mechanism, allows for easy switching between the inlet and outlet, making operation convenient and achieving a simpler and more effective wastewater drainage and antibacterial effect. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0022] Figure 2 This is an auxiliary schematic diagram of the three-dimensional structure of the present invention;
[0023] Figure 3 This is a schematic diagram of the connection relationship of the upper half-section structure of the shower head of the present invention;
[0024] Figure 4 This is a schematic diagram showing the connection relationship of the lower half of the shower head of the present invention in a semi-sectional view;
[0025] Figure 5 For this purpose Figure 4 Enlarged view of point A in the middle;
[0026] Figure 6 This is a schematic diagram showing the connection relationship of the half-section structure in the middle of the spherical porous valve of the present invention;
[0027] Figure 7 This is a schematic diagram of the connection relationship of the half-section structure at the central axis of the sewage conversion mechanism of the present invention;
[0028] Figure 8 This is a schematic diagram of the columnar shell in the three-dimensional structure of the sewage conversion mechanism of the present invention in a semi-sectional state.
[0029] Figure 9 This is an auxiliary schematic diagram showing the semi-sectional state of the columnar shell in the three-dimensional structure of the sewage conversion mechanism of the present invention.
[0030] In the picture:
[0031] 1. Panel; 101. Support block; 102. Clamping bracket; 103. Shower head; 104. Shower hose; 105. Inlet hose; 106. Outlet hose;
[0032] 2. Cleaning mechanism; 201. Pressing block; 202. Tension spring; 203. Medium-sized multi-tooth plate A; 204. Small multi-tooth plate B; 205. Slide rail; 206. Gear shaft; 207. Cleaning fan shaft;
[0033] 3. Sewage discharge conversion mechanism; 301. Columnar housing; 302. Rotary disc; 303. Extrusion column; 304. Pressing column; 305. Extrusion block; 306. X-shaped slide groove; 307. Pressing spring; 308. Spherical multi-hole valve. Detailed Implementation
[0034] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.
[0036] Example
[0037] Please refer to Figures 1 to 5 As shown:
[0038] To address the problems mentioned in the technical solutions, this application provides an antibacterial and anti-scaling shower head. The antibacterial and anti-scaling shower head, used for disinfection and descaling, includes a panel 1. The panel 1 includes a support block 101 fixedly connected to the bottom of the panel 1. A clamping frame 102 is fixedly connected to the top of the panel 1. A shower head 103 is snapped onto the end of the clamping frame 102 away from the panel 1. A shower hose 104 is threadedly connected to the end of the shower head 103 near the clamping frame 102. 04 The end away from the shower head 103 is fixedly connected to the support block 101. A spherical water groove is opened at the connection between the support block 101 and the shower pipe 104. One end of the spherical water groove on the shower pipe 104 is fixedly connected to the inlet pipe 105, and the other end of the spherical water groove on the shower pipe 104 is fixedly connected to the outlet pipe 106. An antibacterial and anti-scaling shower head includes: a cleaning mechanism 2 and a sewage conversion mechanism 3. The cleaning mechanism 2 is set inside the shower head 103, and the sewage conversion mechanism 3 is set on the support block 101.
[0039] The cleaning mechanism 2 includes a slide 205 for squeezing and sliding. The slide 205 is installed inside the shower head 103 and is fixedly connected to the shower head 103 above the slide 205. The cleaning mechanism 2 is used for automatic cleaning of dirt in the shower head 103.
[0040] The cleaning mechanism 2 also includes a pressing block 201, which is fixedly connected to the shower head 103 in the middle. A sliding tooth is provided on one end of the pressing block 201 inside the shower head 103. A medium-sized multi-toothed plate A203 is engaged with the sliding tooth on the pressing block 201. The medium-sized multi-toothed plate A203 is fixedly connected to the shower head 103 in the upper middle part. A tension spring 202 is fixedly connected to the pressing block 201 near the sliding tooth. The other end of the tension spring 202 is fixedly connected to the shower head 103. A small multi-toothed plate B204 is engaged with the end of the medium-sized multi-toothed plate A203 away from the pressing block 201. The small multi-toothed plate B204 is slidably connected to the slide rail 205 in the middle.
[0041] The medium-sized multi-tooth plate A203 is composed of two gear plates. The diameter of the upper gear plate of the medium-sized multi-tooth plate A203 is smaller than that of the lower gear plate. The sliding teeth on the pressing block 201 mesh with the small gear plate on the upper part of the medium-sized multi-tooth plate A203.
[0042] The small multi-tooth plate B204 is composed of two gear plates with smaller diameters compared to the medium multi-tooth plate A203. The diameter of the upper gear plate of the small multi-tooth plate B204 is larger than that of the lower gear plate. The larger gear plate at the bottom of the medium multi-tooth plate A203 meshes with the smaller gear plate at the bottom of the small multi-tooth plate B204. A gear shaft 206 is provided next to the slide 205. The upper end of the gear shaft 206 is rotatably connected to the shower head 103, and the lower end of the gear shaft 206 is fixedly connected to the cleaning fan shaft 207.
[0043] The larger toothed plate below the medium-sized multi-toothed plate A203 meshes with the smaller toothed plate below the small multi-toothed plate B204;
[0044] Among them, the medium-sized multi-tooth plate A203 and the small multi-tooth plate B204 are both composed of two gear plates, and the overall shape and size of the medium-sized multi-tooth plate A203 is larger than that of the small multi-tooth plate B204. The shape of the pressing block 201 is set to resemble a V-shaped block, which is conducive to the display of the function when the pressing block 201 is pressed.
[0045] Through the implementation of this embodiment, the cleaning mechanism 2 can be restarted by pressing the pressing block 201. At this time, the cleaning fan shaft 207 will rotate again, which can not only clean the dirt on the spray holes again, but also allow the remaining water in the shower head to be drained into the shower head pipe more thoroughly while the cleaning fan shaft 207 is rotating. This can not only remove stains on the surface of the spray holes, but also clean deep dirt, such as limescale and bacteria. Regularly cleaning the dirt on the shower head spray holes can extend the service life of the shower head.
[0046] For further embodiments, please refer to Figures 6 to 9 As shown:
[0047] The sewage conversion mechanism 3 includes a spherical multi-hole valve 308 for controlling the water inlet and outlet. The spherical multi-hole valve 308 is rotatably connected to the spherical water tank opened in the shower pipe 104.
[0048] The sewage conversion mechanism 3 also includes a columnar housing 301. The bottom of the columnar housing 301 is fixedly connected to the support block 101. A rotating disk 302 is rotatably connected to the bottom of the columnar housing 301. The rotating disk 302 is fixedly connected to the axis of the spherical multi-hole valve 308. A pressing column 303 is fixedly connected to the other end of the rotating disk 302 away from the spherical multi-hole valve 308. The pressing column 303 is disposed in the columnar housing 301.
[0049] A pressing column 304 is slidably connected inside the cylindrical housing 301. An X-shaped groove 306 is provided on the cylindrical housing 301. Vertical grooves are also provided on both sides of the X-shaped groove 306 on the cylindrical housing 301. The vertical grooves on the cylindrical housing 301 are the same as those on the X-shaped groove 306. An extrusion block 305 is fixedly connected to the pressing column 304. The extrusion block 305 is slidably connected in the X-shaped groove 306 and the vertical grooves provided on the cylindrical housing 301.
[0050] A pressing spring 307 is fixedly connected to the bottom of the pressing column 304. The end of the pressing spring 307 away from the pressing column 304 is fixedly connected to the rotating disk 302. The pressing spring 307 is set in the cylindrical housing 301. An elongated groove is opened in the pressing column 304. The rotating disk 302 is slidably connected in the elongated groove opened in the extrusion column 303.
[0051] Among them, the ball-shaped multi-hole valve 308 has a T-shaped hole in the center for water flow transfer. Under the pressing action of the sewage conversion mechanism 3, the ball-shaped multi-hole valve 308 can rotate 180 degrees clockwise along the connection of the support block 101, so that the original water inlet pipe 105 and the shower pipe 104 are connected by the ball-shaped multi-hole valve 308, and the water outlet pipe 106 and the shower pipe 104 are connected after the ball-shaped multi-hole valve 308 rotates 180 degrees.
[0052] Through the implementation of this embodiment, water accumulation in the shower hose caused by prolonged disuse of the shower head, resulting in scale and dirt blockage, can be drained at any time. This prevents the growth of scale and bacteria in the hose, maintaining the hygiene of the shower head. Furthermore, the press-to-drain function allows for regular cleaning of the hose, preventing blockages and ensuring smooth water flow. Simultaneously, under the action of the ball-shaped multi-hole valve 308 and controlled by the sewage conversion mechanism 3, the inlet and outlet can be easily switched, making operation convenient and achieving a simpler and more effective sewage discharge and antibacterial growth effect.
[0053] The working principle of all the content in the above embodiments is as follows:
[0054] In the initial state: the water inlet pipe 105 is connected to the shower pipe 104 through the water groove hole provided in the ball-shaped multi-hole valve 308, and the extrusion block 305 is located in the groove below the X-shaped chute 306;
[0055] The following is the working process of cleaning the surface dirt of the shower pipe 104 by the cleaning mechanism 2:
[0056] Main support method: According to Pascal's principle, when water or liquid is in a closed container, the pressure applied to the container will be evenly transmitted to every point in the container. This means that even if the pressure is applied to a small area of the container, the water in the entire container will be subjected to the same pressure.
[0057] (1) The cleaning fan shaft 207 automatically cleans the shower head 103 under water pressure.
[0058] (Open the tap water valve);
[0059] By manually opening the tap water switch at the front end of the inlet pipe 105, under the pressure of the tap water, as... Figure 6 As shown, water is conveyed into the spherical multi-hole valve 308 through the inlet pipe 105. At this time, because the upper part of the T-shaped hole on the spherical multi-hole valve 308 leads to the shower head 104, while the lower part, under the pressure of the support block 101, can only allow water to flow into the shower head 104 through the inlet pipe 105. As the tap water pressure continuously increases, the water will be conveyed upwards along the shower head 104 to the shower head 103. With the continuous action of water pressure, the water will gradually fill the entire shower head. The shower head 103 has micro-spray holes. As tap water continuously fills the shower head 103, the internal pressure of the shower head 103 continuously increases. This causes the water to release pressure through the spray holes and outward. At the same time, the cleaning fan shaft 207 on the spray hole rotates under the action of the pressure-relieving spray water. As the cleaning fan shaft 207 rotates on the spray hole, it cleans the dirt on the surface of the spray hole, thereby preventing the dirt from clogging the spray hole.
[0060] (2) The cleaning fan shaft 207 cleans the dirt in the spray holes of the shower head 103 and drains the remaining water inside the shower head 103 into the shower pipe 104 by manually pressing the cleaning mechanism 2:
[0061] (Close the tap water valve);
[0062] Usage Notes: When using, you can pour the water in the shower hose 104 into the shower head 103 and then perform the following operation. After the operation is completed, pour the water in the shower head 103 back into the shower hose 104. This will have a better effect on removing dirt.
[0063] When the tap water valve is closed, the tap water cannot supply water pressure to the inside of the shower pipe 104, resulting in insufficient pressure inside the shower pipe 104 and the inability to discharge through the spray holes in the shower head 103, causing some water to remain in the shower pipe 104 and the shower head 103.
[0064] The shower head 103, which is clipped onto the holder 102, is then manually removed, as follows: Figure 1 As shown, after removing the shower head 103, manually press the pressing block 201 in the middle of the shower head 103, so that the pressing block 201 is pressed inward along the internal direction of the shower head 103, as shown. Figure 3 As shown, because the sliding groove is provided on the other end of the press block 201 inside the shower head 103, and the sliding teeth mesh with the smaller diameter gear plate above the medium multi-tooth plate A203, when the press block 201 is pressed inward along the direction inside the shower head 103, the other end of the press block 201 will drive the smaller diameter gear plate above the medium multi-tooth plate A203 to rotate counterclockwise around the center point under the action of the sliding teeth. Because the center of the smaller gear plate above is fixed with the center of the larger gear plate below, the larger gear plate below will start to rotate concentrically counterclockwise. Because the larger gear plate below the medium multi-tooth plate A203 meshes with the smaller gear plate on the small multi-tooth plate B204 at the end away from the press block 201, and because the medium multi-tooth plate A203 and the small multi-tooth plate B204 have the same structure, the counterclockwise rotation of the medium multi-tooth plate A203 will drive the meshing small multi-tooth plate B204 to start to rotate clockwise around the center.
[0065] Furthermore, because the small multi-toothed disc B204 slides above the axis of the slide rail 205, and when the axis of the small multi-toothed disc B204 begins to rotate clockwise, the small multi-toothed disc B204 will slide along the slide rail 205 towards the other end of the slide rail 205 under the squeezing action of the slide rail 205. When the small multi-toothed disc B204 rotates clockwise along the slide rail 205 to the other end of the slide rail 205, it will mesh with the gear shaft 206 rotating in the shower head 103. At this time, as the small multi-toothed disc B204 continues to rotate clockwise on the slide rail 205, it will drive the cleaning fan shaft 207 below the gear shaft 206 to start rotating clockwise along the center of the spray hole surface on the shower head 103. After one press, the pressing block 201... Under the fixed extension action of the side tension spring 202, it returns to its initial position, further causing the medium-sized multi-tooth plate A203 to start rotating clockwise, which in turn drives the meshing small multi-tooth plate B204 to start rotating counterclockwise. Under the aforementioned conditions, the small multi-tooth plate B204 starts rotating counterclockwise and slides along the slide 205 towards the end away from the gear shaft 206, thereby achieving unidirectional rotation of the gear shaft 206. By pressing the pressing block 201, the cleaning mechanism 2 is restarted. At this time, the cleaning fan shaft 207 will rotate again, which not only cleans the dirt on the spray holes again, but also allows the remaining water in the shower head to be drained more thoroughly into the shower head hose while the cleaning fan shaft 207 is rotating. This not only removes stains on the surface of the spray holes, but also cleans deep dirt.
[0066] Please refer to the above work process. Figures 6 to 9 .
[0067] The following describes the working process of the sewage conversion mechanism 3, where water and dirt from the shower pipes 104 and shower heads 103 are discharged through the ball-shaped perforated valve 308 onto the outlet pipe 106:
[0068] When using, such as Figure 7 As shown, when water and dirt accumulate in the shower hose 104, the flushing mechanism 3 can be activated by manually pressing the press pin 304. Figure 8As shown, the pressing column 304 slides downward along the cylindrical housing 301. At this time, the pressing block 305 fixed on the pressing column 304 slides in the vertical groove on the cylindrical housing 301. The vertical groove on the cylindrical housing 301 is located on both sides of the X-shaped groove 306 and is identical to the X-shaped groove 306. Further, as the pressing column 304 slides down, the pressing block 305 slides downward in the groove of the cylindrical housing 301. At this time, the pressing spring 307, located below the pressing column 304 and inside the cylindrical housing 301, begins to compress, further compressing the cylindrical housing... The extrusion column 303 in body 301 slides into the groove opened in the cylindrical housing 301. When the extrusion block 305 slides to the bottom of the groove along the cylindrical housing 301 under the continuous pressing action of the pressing column 304, the pressing ends. Under the action of the pressing spring 307, the pressing column 304 will slide upward along the cylindrical housing 301 again. At this time, the extrusion block 305 will slide to the upper left along the X-shaped groove 306 under the pressing action of the X-shaped groove 306. When the pressing column 304 drives the extrusion block 305 to slide along the X-shaped groove 306 to the upper groove of the other end of the cylindrical housing 301, as... Figure 9 As shown, under the extension of the pressing spring 307 and the squeezing action of the X-shaped slide groove 306, the pressing column 304 will rotate counterclockwise by 180 degrees around the center. This will further drive the internal sliding squeezing column 303 to rotate clockwise on the same axis. Since the bottom of the squeezing column 303 is fixedly connected to the rotating disk 302, the counterclockwise rotation of the squeezing column 303 will drive the rotating disk 302 to rotate clockwise. Furthermore, since the axial part of the spherical multi-hole valve 308 is fixedly connected to the bottom of the rotating disk 302, the spherical multi-hole valve 308 will start to rotate clockwise by the rotating disk 302. Due to the T-shaped hole on the spherical multi-hole valve 308, when the spherical multi-hole valve 308 rotates 180 degrees, the water flow direction will change from the original inlet pipe 105 to the shower head. Pipe 104 is redirected from the shower pipe 104 to the outlet pipe 106, further realizing the discharge of sewage in the shower pipe 104. Under the action of the ball-shaped multi-hole valve 308 and controlled by the sewage conversion mechanism 3, the inlet and outlet can be easily switched, making operation convenient and achieving a simpler and more effective sewage discharge and antibacterial growth effect. After the sewage in the shower pipe 104 is discharged, the press column 304 is pressed again. As mentioned above, under the squeezing action of the X-shaped slide 306, the press column 304 will rotate 180 degrees again to achieve sewage switching. The sewage conversion mechanism 3 is equipped with a press-to-drain function, which can discharge the water accumulated in the shower pipe due to long-term disuse of the shower, causing scale and dirt blockage, and can prevent scale and bacteria growth in the water pipe.
[0069] Please refer to the above work process. Figures 6 to 9 .
[0070] Overview:
[0071] The cleaning mechanism 2 allows for easy cleaning of the showerhead's spray nozzles without disassembling the entire showerhead. Simply turn on the water spray, and the rotating cleaning component will automatically rotate, increasing internal water pressure for a more even water spray and improving the drainage of the spray nozzles. The drainage conversion mechanism 3 features a press-to-drain function, which can remove water buildup in the showerhead hoses caused by prolonged inactivity, preventing scale and bacteria growth and maintaining the showerhead's hygiene. The press-to-drain function also allows for regular cleaning of the hoses, preventing blockages and ensuring smooth water flow.
[0072] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0073] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An antibacterial and anti-scaling shower head, used for disinfection and descaling of the shower head, comprising a panel (1), wherein the panel (1) includes a support block (101), the support block (101) is fixedly connected to the lower part of the panel (1), and a clamping frame (102) is fixedly connected to the upper part of the panel (1), wherein a shower head (103) is clamped to the end of the clamping frame (102) away from the panel (1), and the shower head (103) is screwed to the end near the clamping frame (102). A shower hose (104) is connected to the shower head (103). One end of the shower hose (104) away from the shower head (103) is fixedly connected to a support block (101). A spherical water groove is formed at the connection between the support block (101) and the shower hose (104). One end of the spherical water groove on the shower hose (104) is fixedly connected to a water inlet pipe (105), and the other end of the spherical water groove on the shower hose (104) is fixedly connected to a water outlet pipe (106). The shower hose is characterized by the following features: The antibacterial and anti-scaling shower head includes a cleaning mechanism (2) and a drain conversion mechanism (3). The cleaning mechanism (2) is installed inside the shower head (103), and the drain conversion mechanism (3) is installed on the support block (101). The cleaning mechanism (2) includes a slide (205) for squeezing and sliding function. The slide (205) is set inside the shower head (103). The slide (205) is fixedly connected to the shower head (103) above. The cleaning mechanism (2) is used for automatic cleaning of dirt in the shower head (103). The sewage conversion mechanism (3) includes a spherical multi-hole valve (308) for controlling the water inlet and outlet. The spherical multi-hole valve (308) is rotatably connected to a spherical water trough opened in the shower pipe (104).
2. The antibacterial and antiscaling shower head according to claim 1, characterized in that: The cleaning mechanism (2) also includes a pressing block (201), the middle of which is fixedly connected to the shower head (103). A sliding tooth is provided on one end of the pressing block (201) inside the shower head (103). A medium-sized multi-toothed plate A (203) is engaged with the sliding tooth on the pressing block (201). The middle upper part of the medium-sized multi-toothed plate A (203) is fixedly connected to the shower head (103). A tension spring (202) is fixedly connected to the pressing block (201) near the sliding tooth. The other end of the tension spring (202) is fixedly connected to the shower head (103). A small multi-toothed plate B (204) is engaged with the middle part of the medium-sized multi-toothed plate A (203) away from the pressing block (201). The middle part of the small multi-toothed plate B (204) is slidably connected to the slide rail (205).
3. The antibacterial and antiscaling shower head according to claim 2, characterized in that: The medium-sized multi-tooth plate A (203) is composed of two gear plates. The diameter of the upper gear plate of the medium-sized multi-tooth plate A (203) is smaller than that of the lower gear plate. The sliding teeth provided on the pressing block (201) mesh with the small gear plate above the medium-sized multi-tooth plate A (203).
4. The antibacterial and antiscaling shower head according to claim 2, characterized in that: The small multi-tooth plate B (204) is composed of two gear plates with smaller diameters compared to the medium multi-tooth plate A (203). The diameter of the upper gear plate of the small multi-tooth plate B (204) is larger than that of the lower gear plate. A gear shaft (206) is provided next to the slide (205). The upper end of the gear shaft (206) is rotatably connected to the shower head (103), and the lower end of the gear shaft (206) is fixedly connected to the cleaning fan shaft (207).
5. The antibacterial and antiscaling shower head according to claim 1, characterized in that: The sewage conversion mechanism (3) further includes a cylindrical housing (301), the bottom of which is fixedly connected to the support block (101). A rotating disk (302) is rotatably connected to the bottom of the cylindrical housing (301). The rotating disk (302) is fixedly connected to the axis of the spherical multi-hole valve (308). A squeezing column (303) is fixedly connected to the other end of the rotating disk (302) away from the spherical multi-hole valve (308). The squeezing column (303) is disposed in the cylindrical housing (301).
6. The antibacterial and antiscaling shower head according to claim 5, characterized in that: A pressing column (304) is slidably connected inside the cylindrical housing (301). An X-shaped groove (306) is provided on the cylindrical housing (301). Vertical grooves are also provided on both sides of the X-shaped groove (306) on the cylindrical housing (301). The vertical grooves on the cylindrical housing (301) are the same as those on the X-shaped groove (306). An extrusion block (305) is fixedly connected to the pressing column (304). The extrusion block (305) is slidably connected in the X-shaped groove (306) and the vertical grooves provided on the cylindrical housing (301).
7. The antibacterial and antiscaling shower head according to claim 6, characterized in that: A pressing spring (307) is fixedly connected to the bottom of the pressing column (304). The end of the pressing spring (307) away from the pressing column (304) is fixedly connected to the rotating disk (302). The pressing spring (307) is set in the cylindrical housing (301). An elongated groove is opened in the pressing column (304). The rotating disk (302) is slidably connected in the elongated groove opened in the pressing column (303).
8. The antibacterial and antiscaling shower head according to claim 1, characterized in that: The ball-shaped multi-hole valve (308) has a T-shaped hole in the center for water flow transfer. Under the pressing action of the sewage conversion mechanism (3), the ball-shaped multi-hole valve (308) can rotate 180 degrees clockwise along the connection of the support block (101), so that the original water inlet pipe (105) and the shower pipe (104) are connected by the ball-shaped multi-hole valve (308), and are converted into the water outlet pipe (106) and the shower pipe (104) being connected after the ball-shaped multi-hole valve (308) rotates 180 degrees.