Intelligent shower head facilitating adjustment of multiple water outlet modes
By incorporating a water distribution chamber and adjustment plate within the shower head, multiple water output modes can be switched. Equipped with a temperature sensor, this design solves the problems of limited water output modes and insufficient intelligent reminders in existing shower heads, thereby enhancing the diversity and convenience of the showering experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEBEI LU ZHUGONG TECHNOLOGY CO LTD
- Filing Date
- 2025-06-16
- Publication Date
- 2026-05-19
AI Technical Summary
Existing shower heads have complex structures and limited water output modes, failing to meet the needs of various users and their requirements. Furthermore, they are inconvenient to turn on and off and cannot intelligently indicate the water temperature.
A smart shower head with multiple water output modes has been designed. It features a water distribution plate, cover, and adjustment plate within the housing, allowing for switching between misting, rain shower, and combing modes. It is also equipped with a valve assembly and a temperature sensor to monitor the water temperature in real time and provide intelligent reminders.
It enables switching between multiple water output modes, improving bathing comfort and functionality to meet the needs of different groups of people, and enhances ease of use through intelligent temperature detection and reminders.
Smart Images

Figure CN224253117U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bathroom equipment technology, specifically to an intelligent shower head that facilitates the adjustment of multiple water outlet modes. Background Technology
[0002] A shower head, also known as a shower head, is a common shower tool in daily life. It is connected to the faucet and cold and hot water pipes through a hose. When showering, the faucet controls the mixing ratio of cold and hot water, allowing for either single discharge of cold or hot water or mixed discharge of cold and hot water.
[0003] Current shower heads have complex structures and limited water output modes, failing to meet the needs of various users. They are also inconvenient to turn on and off and cannot intelligently indicate the water temperature. Therefore, we propose a smart shower head that allows for easy adjustment of multiple water output modes. Utility Model Content
[0004] The purpose of this invention is to provide an intelligent shower head that facilitates the adjustment of multiple water output modes in order to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model specifically adopts the following technical solution:
[0006] A smart shower head with adjustable water flow modes includes a shower head body, which comprises a housing and a fixing ring cover. The housing has a stepped, through-flowing water distribution chamber. The outer wall of the housing has a water inlet port communicating with the water distribution chamber. The water inlet port is detachably connected to the fixing ring cover. A water distribution plate, a cover plate, and an adjustment plate are stacked sequentially within the water distribution chamber. The water distribution plate has a misting chamber, a rain shower chamber, and a combing chamber arranged sequentially from the inside out. The bottom surface of the water distribution plate has evenly distributed misting holes, rain shower holes, and soft comb teeth communicating with the misting chamber, rain shower chamber, and combing chamber, respectively. The end of the adjustment plate facing away from the water distribution plate is rotatably connected to the fixing ring cover. The side wall of the adjustment plate has a water inlet chamber communicating with the water inlet port. During the rotation of the adjustment plate, the water inlet chamber communicates with the misting chamber, rain shower chamber, and combing chamber, respectively.
[0007] Furthermore, the end face of the cover plate is provided with guide holes A1, B1 and C1 respectively connecting the atomizing chamber, the rain chamber and the combing chamber. The end face of the adjusting plate near the cover plate is provided with guide holes A2, B2 and C2 respectively connecting the water inlet chamber. During the rotation of the adjusting plate, the guide holes A2, B2 and C2 are respectively connected to the guide holes A1, B1 and C1 respectively.
[0008] Furthermore, the bottom surface of the atomizing chamber is provided with a ring-shaped distribution of flow-dividing platforms on the outside of the atomizing holes, and a gap is formed between adjacent flow-dividing platforms for water flow.
[0009] Furthermore, the shower head body also includes a diverter plate disposed in the atomizing chamber. The two ends of the diverter plate abut against the cover plate and the diverter platform, respectively. Pins are distributed in a ring on the end face of the diverter plate near the atomizing hole, and the tips of the pins extend into the atomizing hole.
[0010] Furthermore, the outer circle of the middle part of the distribution plate is fitted with the atomizing cavity through a shaft hole, and the outer wall of the distribution plate at one end that abuts the cover plate has a distribution port, which connects the inner hole of the distribution plate and the atomizing cavity.
[0011] Furthermore, the end face of the adjusting plate near the cover plate is provided with an arc-shaped limiting groove, and the end face of the cover plate near the adjusting plate is provided with a positioning cylinder extending into the limiting groove.
[0012] Furthermore, it also includes a valve assembly, which includes a transfer pipe and a valve body. The transfer pipe is connected to the water inlet port, and a switching cavity is formed in the middle of the transfer pipe. The valve body is submerged and installed in the switching cavity. A guide hole communicating with the inner hole of the transfer pipe is opened in the middle of the valve body. A valve stem is provided on the side of the valve body away from the water inlet port. The two ends of the valve stem extend outward from the transfer pipe and the valve body, respectively. A water inlet hole is opened in the middle of the valve stem. The water inlet hole is connected to and disconnected from the guide hole by the sliding of the valve stem.
[0013] Furthermore, a recessed temperature measuring chamber is provided on the side of the valve body near the water inlet port. A heat-conducting cap that extends into the flow guide hole is recessed in the temperature measuring chamber. A control board is provided in the temperature measuring chamber. A battery cell and a digital display are respectively attached to both sides of the control board. The control board is electrically connected to a temperature sensor placed in the heat-conducting cap through a wiring harness.
[0014] Furthermore, the port of the temperature measuring cavity is provided with a viewing window cover, which is connected to the control panel via touch control.
[0015] Furthermore, it also includes a handle assembly, the handle assembly including a handle tube communicating with the adapter tube, the handle tube containing a filter element, the filter element having a plug and a connecting cap at both ends, the connecting cap being used to connect the filter element and the adapter tube.
[0016] The beneficial effects of this utility model are as follows:
[0017] 1. This utility model uses a housing and a fixing ring cover to house a stacked water distribution plate, cover plate, and adjusting plate within the water distribution cavity. The fixing ring cover rotates and positions the adjusting plate, creating independent atomizing, rain, and combing chambers within the water distribution plate. The rotation of the adjusting plate connects the water inlet chamber to these chambers at different positions, providing a showering effect through atomizing holes, rain holes, and soft comb teeth. Simultaneously, the extended soft comb teeth can be used for combing hair, massaging the user's head. The water flow from the soft comb teeth effectively and thoroughly cleanses the scalp and hair, resulting in a more effective shampooing experience, a more comfortable and stress-relieving shampooing experience, and a wider variety of water flow modes and functions to meet the needs of different users.
[0018] 2. This utility model creates water flow disturbance through the annularly distributed distribution platforms, thereby forming gas-liquid mixture through the atomization holes in the atomization chamber. The tip of the tip extends into the space between the annularly distributed distribution platforms and cooperates with the atomization holes to compress the water flow through the atomization holes, resulting in more uniform and delicate atomization and improved atomization effect.
[0019] 3. This utility model features a switch chamber with one open end in the middle of the adapter pipe. The valve body is installed in the switch chamber, and the valve body cooperates with the adapter pipe to limit the valve stem in both directions. By sliding the valve stem, the relative position of the inlet hole and the guide hole can be adjusted to connect or disconnect the water passage inside the adapter pipe and adjust the water flow. This makes operation more convenient. A heat-conducting cap and a temperature sensor are used to measure the temperature of the water flow in the guide hole, and the water temperature is displayed on a digital display. The viewing window cover serves as the touch electrode of the control board, allowing the control board to be touched and opened. The water temperature is monitored in real time during use, and reminders are given to the user, making it more convenient to use. Attached Figure Description
[0020] Figure 1 This is a three-dimensional schematic diagram of the present invention;
[0021] Figure 2 This is a full sectional view of the shower head body in this utility model;
[0022] Figure 3 yes Figure 2 A magnified view of part A in the diagram;
[0023] Figure 4 This is an exploded view of the main body of the shower head in this utility model;
[0024] Figure 5 This is an exploded view of the shower head body in this utility model from another perspective;
[0025] Figure 6 This is a three-dimensional schematic diagram of the water distribution plate in this utility model;
[0026] Figure 7 This is a three-dimensional schematic diagram of the adjustment plate in this utility model;
[0027] Figure 8 This is a full sectional schematic diagram of the valve assembly in this utility model;
[0028] Figure 9 This is an exploded view of the valve assembly in this utility model;
[0029] Figure 10 This is a full sectional view of the handle assembly in this utility model.
[0030] Reference numerals: 100, Shower head body; 101, Housing; 102, Water distribution chamber; 103, Water inlet port; 104, Fixing ring cover; 105, Water distribution plate; 106, Atomizing chamber; 107, Rain shower chamber; 108, Washing chamber; 109, Atomizing hole; 110, Flow distribution platform; 111, Rain shower hole; 112, Soft comb teeth; 113, Cover plate; 114, Sealing ring; 115, A1 guide hole; 116. B1 guide hole; 117. C1 guide hole; 118. Positioning cylinder; 119. Ball bearing; 120. Spring; 121. Adjusting plate; 122. Water inlet chamber; 123. Limiting groove; 124. Positioning groove; 125. A2 guide hole; 126. B2 guide hole; 127. C2 guide hole; 128. Divider; 129. Divider plate; 130. Ejector pin; 131. Divider port; 132. Guide table;
[0031] 200. Valve assembly; 201. Transfer pipe; 202. Switching chamber; 203. Valve body; 204. Flow guide hole; 205. Temperature measuring chamber; 206. Heat-conducting cap; 207. Control board; 208. Battery cell; 209. Digital display; 210. Temperature sensor; 211. Viewing window cover; 212. Valve stem; 213. Baffle; 214. Sealing sleeve; 215. Water inlet hole; 216. Fastener;
[0032] 300. Handle assembly; 301. Handle tube; 302. Filter element; 303. Plug; 304. Support platform; 305. Connecting cover. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.
[0034] Please see Figure 1 - Figure 10This utility model provides an intelligent shower head that facilitates adjustment of multiple water outlet modes. It includes a shower head body 100, which comprises a housing 101 and a fixing ring cover 104. A stepped, through-flow water distribution cavity 102 is formed within the housing 101. An inlet port 103 communicating with the water distribution cavity 102 is formed on the outer wall of the housing 101. The inlet port of the water distribution cavity 102 is detachably connected to the fixing ring cover 104. A water distribution plate 105, a cover plate 113, and an adjusting plate 121 are sequentially stacked within the water distribution cavity 102. Specifically, an annular boss is formed on the bottom surface of the water distribution plate 105, and this annular boss engages with a through hole on the bottom surface of the water distribution cavity 102 via a shaft hole. A sealing gasket is provided between the bottom surface of the water distribution plate 105 and the inner bottom surface of the water distribution cavity 102. The water distribution plate 105 contains an atomizing cavity 106, a rain spray cavity 107, and a combing cavity 108 arranged sequentially from the inside out. The bottom surface of the water distribution plate 105 is evenly distributed with atomizing holes 109, rain spray holes 111, and soft comb teeth 112, respectively connecting the atomizing cavity 106, the rain spray cavity 107, and the combing cavity 108. Specifically, the inner bottom surface of the water distribution cavity 102 is evenly distributed with through holes that mate with the soft comb teeth 112. One end of the soft comb teeth 112 is screwed into the bottom surface of the water distribution plate 105, and the other end of the soft comb teeth 112 penetrates the sealing gasket between the bottom surface of the water distribution plate 105 and the inner bottom surface of the water distribution cavity 102, as well as the inner bottom surface of the water distribution cavity 102. The through-hole extends outward with a length not less than 10mm, and the soft comb teeth 112 have through-holes communicating with the combing chamber 108. The end of the adjusting plate 121 facing away from the water distribution plate 105 is rotatably connected to the fixing ring cover 104. The adjusting plate 121 is a two-layer stepped frustum. The side wall of the adjusting plate 121 has a water inlet cavity 122 communicating with the water inlet port 103. During the rotation of the adjusting plate 121, the water inlet cavity 122 is connected to the atomizing cavity 106, the raining cavity 107 and the combing chamber 108 respectively. The stacked water distribution plate 105, the cover plate 113 and the adjusting plate 121 can be accommodated in the water distribution cavity 102 by the cooperation of the housing 101 and the fixing ring cover 104. The cover 104 rotates and positions the adjusting plate 121, and forms independent atomizing chambers 106, rain shower chambers 107 and combing chambers 108 within the water distribution plate 105. By rotating the adjusting plate 121, the water inlet chamber 122 is connected to the atomizing chamber 106, rain shower chamber 107 and combing chamber 108 at different positions. Then, the atomizing hole 109, rain shower hole 111 and soft comb teeth 112 provide a showering effect in atomization, rain shower and combing modes. At the same time, the outward-extending soft comb teeth 112 can be used to comb hair and massage the user's head. The water flow from the soft comb teeth 112 can effectively and thoroughly clean the scalp and hair, making the shampooing effect more effective and the combing more comfortable and stress-relieving.
[0035] In this embodiment, preferably, the end face of the cover plate 113 is provided with guide holes A1 115, B1 116, and C1 117 respectively, which connect the atomizing chamber 106, the rain shower chamber 107, and the combing chamber 108. Specifically, the included angle between the positions of the guide holes A1 115, B1 116, and C1 117 is in the range of 30°-60°. The end face of the adjusting plate 121 near the cover plate 113 is provided with a guide hole A2 117, which connects to the water inlet chamber 122. 25. Guide holes A2 126 and C2 127. Specifically, guide holes A2 125, B2 126, and C2 127 correspond to the atomizing chamber 106, the rain chamber 107, and the combing chamber 108, which surround each other from the inside out. The included angle between adjacent chambers is zero. The end face of the adjusting plate 121 near the cover plate 113 is provided with a sealing gasket that is recessed into guide holes A2 125, B2 126, and C2 127. This sealing gasket abuts against the end face of the cover plate 113. During the rotation of the adjusting plate 121, guide holes 125, B2, 126, and C2 are respectively connected to guide holes 115, B1, 116, and C1, respectively. This allows guide holes 115, B1, 116, and C1 to be opened at different positions on the end face of the cover plate 113, which normally connect to the atomizing chamber 106, the rain chamber 107, and the combing chamber 108. Water introduced through the water inlet port 103 enters the water inlet chamber 122 and, through rotation... Adjusting plate 121 adjusts the positions of guide hole A2 125, guide hole B2 126 and guide hole C2 127, thereby connecting guide hole A2 125 with guide hole A1 115, guide hole B2 126 with guide hole B1 116 and guide hole C2 127 with guide hole C1 117 at different positions, selectively guiding the water flow entering the water inlet chamber 122 into the atomizing chamber 106, the rain chamber 107 and the combing chamber 108, making it easier to adjust the atomizing mode, rain mode and combing mode.
[0036] In this embodiment, preferably, the end face of the adjusting plate 121 extending out of the fixing ring cover 104 is provided with a dial 128 distributed in a ring. The dial 128 is used to rotate the adjusting plate 121, so that the adjusting plate 121 can be rotated by the dial 128, making it easier to adjust the water outlet mode.
[0037] In this embodiment, preferably, a sealing ring 114 is provided between the water distribution plate 105 and the cover plate 113. The sealing ring 114 is used to independently seal the atomizing chamber 106, the rain shower chamber 107, and the combing chamber 108. Specifically, the sealing ring 114 has an L-shaped and a U-shaped cross-section. The L-shaped sealing ring 114 is used to fit the outer wall of the combing chamber 108, and the U-shaped sealing ring 114 is used for the atomizing chamber 106 and the rain shower chamber 107. Thus, by providing a sealing ring 114 between the water distribution plate 105 and the cover plate 113, the atomizing chamber 106, the rain shower chamber 107, and the combing chamber 108 can be independently sealed.
[0038] In this embodiment, preferably, the bottom surface of the atomizing chamber 106 is provided with a flow divider 110 distributed in a ring around the atomizing hole 109. A gap is formed between adjacent flow dividers 110 to allow water to flow through. The water flow disturbance is generated by the ring-shaped flow dividers 110, thereby forming a gas-liquid mixture through the atomizing hole 109 in the atomizing chamber 106, which improves the atomization effect.
[0039] In this embodiment, preferably, the shower head body 100 further includes a diverter plate 129 disposed in the atomizing chamber 106. The two ends of the diverter plate 129 abut against the cover plate 113 and the diverter platform 110 respectively. The end face of the diverter plate 129 near the atomizing hole 109 is provided with pins 130 arranged in a ring. The tip of the pin 130 extends into the atomizing hole 109. Specifically, the end of the pin 130 near the diverter plate 129 cooperates with the diverter platform 110 arranged in a ring outside the atomizing hole 109. The outer diameter of the tip of the pin 130 is smaller than the inner diameter of the atomizing hole 109, so that the pin 130 can extend into the ring-arranged diverter platform 110. The tip of the pin 130 cooperates with the atomizing hole 109 to compress the water flow through the atomizing hole 109, making the atomization more uniform and delicate.
[0040] The outer circle of the middle part of the diverter plate 129 is fitted with the atomizing chamber 106 through a shaft hole. Specifically, the diverter plate 129 is a stepped shaft with a through inner hole in the middle. The outer wall of the end of the diverter plate 129 that abuts against the cover plate 113 has a diverter port 131. The diverter port 131 connects the inner hole of the diverter plate 129 and the atomizing chamber 106. The atomizing chamber 106 can be divided into two parts through the middle part of the diverter plate 129. The two parts of the atomizing chamber 106 are connected by the diverter port 131 and the inner hole of the diverter plate 129. The water flow entering the atomizing chamber 106 enters the inner hole of the diverter plate 129 through the diverter port 131. The disturbance of the diverter port 131 forms a preliminary mixture of air and water.
[0041] In this embodiment, preferably, the end face of the adjusting plate 121 near the cover plate 113 is provided with an arc-shaped limiting groove 123, and the end face of the cover plate 113 near the adjusting plate 121 is provided with a positioning cylinder 118 extending into the limiting groove 123. The positioning cylinder 118 can cooperate with the limiting groove 123 to limit the rotation of the adjusting plate 121 in both directions, making it easier for users to identify and use the water outlet mode of the shower head body 100.
[0042] In this embodiment, preferably, the positioning cylinder 118 contains a spring 120, the top of the spring 120 abuts against a ball bearing 119, and the bottom surface of the limiting groove 123 has a plurality of positioning grooves 124 corresponding to and cooperating with the ball bearing 119. Specifically, the depth of the positioning groove 124 is less than the radius of the ball bearing 119, and the positions of the positioning groove 124 include at least five positions, specifically: an atomizing spray mode in which the A1 guide hole 115 and the A2 guide hole 125 are completely connected; and a rain spray mode in which the B1 guide hole 116 and the B2 guide hole 126 are completely connected. The combing mode is fully connected between guide holes C1 117 and C2 127; the atomization / rain spray mixed mode is in a transitional state where guide holes A1 115 and A2 125 are partially connected and guide holes B1 116 and B2 126 are partially connected; the rain spray / combing mode is in a transitional state where guide holes B1 116 and B2 126 are partially connected and guide holes C1 117 and C2 127 are partially connected; the ball bearing 119 can be pressed into the positioning groove 124 by spring 120 to keep the position of the adjustment plate 121 and the water outlet mode stable.
[0043] In this embodiment, preferably, the inner wall of the water distribution cavity 102 is provided with guide platforms 132 arranged in a ring. The water distribution plate 105 and the cover plate 113 are slidably inserted into the water distribution cavity 102 through the guide platforms 132. Specifically, the outer circumference of the water distribution plate 105 and the cover plate 113 is provided with grooves that cooperate with the guide platforms 132. The guide platforms 132 can guide the installation of the water distribution plate 105 and the cover plate 113 and prevent the water distribution plate 105 and the cover plate 113 from rotating with the adjusting plate 121, making the structure of the shower head body 100 more stable.
[0044] In this embodiment, preferably, a valve assembly 200 is also included. The valve assembly 200 includes a connector 201 and a valve body 203. The connector 201 is connected to the inlet port 103. A switching cavity 202 is formed in the middle of the connector 201. The valve body 203 is recessed and installed in the switching cavity 202. Specifically, the valve body 203 is recessed and installed through the port of the switching cavity 202. One end of the valve body 203 recessed in the switching cavity 202 is detachably connected to the connector 201 by a fastener 216. A guide hole 204 communicating with the inner hole of the connector 201 is opened in the middle of the valve body 203. Specifically, the central axis of the guide hole 204 corresponds to the central axis of the inner hole of the connector 201, and the inner diameter of the guide hole 204 is smaller than the inner diameter of the connector 201. A valve stem 212 is provided on the side of the valve body 203 away from the inlet port 103. The two ends of the valve stem 212 extend outward from the connector 201 and the inlet port 103, respectively. Specifically, the valve body 203 has a stepped through hole at its bottom to accommodate the valve stem 212. The valve stem 212 has a square cross-section with rounded corners to prevent rotation. The side of the adapter pipe 201 opposite to the valve body 203 is fitted with the end of the valve stem 212. A water inlet hole 215 is provided in the middle of the valve stem 212. The water inlet hole 215 is connected and disconnected with the guide hole 204 by sliding the valve stem 212. The valve body 203 is installed by sinking into the switch cavity 202 in the middle of the adapter pipe 201. The valve stem 212 is bidirectionally limited by the valve body 203 and the adapter pipe 201. By sliding the valve stem 212, the relative position of the water inlet hole 215 and the guide hole 204 can be adjusted to connect, disconnect and adjust the water flow in the internal water passage of the adapter pipe 201, making operation more convenient.
[0045] In this embodiment, preferably, baffles 213 are formed on both sides of the valve stem 212 and are slidably connected to the valve body 203. A sealing sleeve 214 is provided between the baffles 213 and sleeved on the outside of the valve stem 212. Specifically, the water inlet hole 215 is located between the two baffles 213, and the side wall of the sealing sleeve 214 is provided with a through hole corresponding to the water inlet hole 215. The sealing sleeve 214 is used for contact between the valve stem 212 and the valve body 203. Specifically, the outer wall of the sealing sleeve 214 fits into the inner hole of the valve body 203 at the installation position of the valve stem 212. The sealing sleeve 214 can be positioned by the baffles 213, and the baffles 213 cooperate with the inner hole of the valve body 203. The sealing sleeve 214 seals the outside of the water inlet hole 215, which not only increases the sliding resistance of the valve stem 212 and ensures the stability of the valve stem 212, but also seals the contact between the valve stem 212 and the valve body 203.
[0046] In this embodiment, preferably, a recessed temperature measuring chamber 205 is provided on the side of the valve body 203 near the water inlet port 103. Specifically, the temperature measuring chamber 205 is located at the end of the valve body 203 that extends out of the switch chamber 202. A heat-conducting cap 206 is recessed into the temperature measuring chamber 205 and extends into the guide hole 204. Specifically, the heat-conducting cap 206 is screwed into the temperature measuring chamber 205 by threads and filled with sealant for curing and sealing. A control board 207 is provided inside the temperature measuring chamber 205. The control board 207 has two sides... The valve body 203 is equipped with a battery cell 208 and a digital display 209. Specifically, the battery cell 208 is a button cell, and a slot for installing the battery cell 208 is opened on the side wall of the valve body 203. The control board 207 is electrically connected to the temperature sensor 210 placed inside the heat-conducting cap 206 via a wiring harness. Specifically, the temperature sensor 210 is a thermistor. The temperature sensor 210, in conjunction with the heat-conducting cap 206, can measure the temperature of the water flow in the guide hole 204 and display the water flow temperature on the digital display 209.
[0047] In this embodiment, preferably, the port of the temperature measuring cavity 205 is provided with a viewing window cover 211. The viewing window cover 211 is in touch-operated with the control board 207. Specifically, the viewing window cover 211 is a conductive panel, which serves as a touch electrode for the control board 207, allowing the control board 207 to be opened by touch. The viewing window cover 211, the control board 207, and the digital display 209 are encapsulated with curing adhesive and the port of the temperature measuring cavity 205 is sealed.
[0048] In this embodiment, preferably, a handle assembly 300 is also included. The handle assembly 300 includes a handle tube 301 communicating with an adapter tube 201. Specifically, both ends of the adapter tube 201 are threadedly connected to the water inlet port 103 of the housing 101 and the top port of the handle tube 301, respectively. The bottom end of the handle tube 301 is connected to a faucet via a flexible hose. A filter element 302 is placed inside the handle tube 301. Specifically, the outer diameter of the filter element 302 is smaller than the inner diameter of the handle tube 301. The filter element 302 uses high-density PP cotton filter material and has a through hole in the middle. Both ends of the filter element 302 are provided with a plug 303 and a connecting cover 305, respectively. The connecting cover 305 is used to connect the filter element 302 and the adapter tube 201. Specifically, the handle tube 301 and the adapter tube 201 are threadedly connected to the water inlet port 103 of the housing 101 and the top port of the handle tube 201, respectively. After the connecting pipe 201 is threaded, the top of the connecting cover 305 is engaged with the bottom port of the connecting pipe 201 through a shaft hole, and the bottom of the connecting cover 305 is engaged with the top of the filter element 302 through a shaft hole. The through hole in the middle of the connecting cover 305 connects the inner hole of the connecting pipe 201 and the inner cavity of the filter element 302. The plug 303 is used to seal the bottom port of the filter element 302. The water flow entering the handle pipe 301 is dispersed on the outside of the filter element 302 through the plug 303. After being filtered by the filter element 302, it is introduced into the connecting pipe 201 through the connecting cover 305, and then the water from the shower head is purified and filtered through the filter element 302 to remove debris, mud and other harmful substances in the water, and to avoid the inner holes of the atomizing hole 109, the rain shower hole 111 and the soft comb teeth 112.
[0049] The plug 303 is provided with ring-shaped support platforms 304. The support platforms 304 abut against the bottom surface of the inner cavity of the handle tube 301. A gap is formed between adjacent support platforms 304 for water to pass through. The water flow introduced into the handle tube 301 through the hose is diverted through the gap between the support platforms 304 and flows into the inner cavity of the handle tube 301.
[0050] The working principle and usage process of this utility model: When in use, the bottom end of the handle housing 301 is connected through a flexible hose;
[0051] After the faucet is turned on, the water entering the handle tube 301 flows through the gap between the support platform 304 and flows into the inner cavity of the handle tube 301. It is then purified and filtered through the filter element 302 to remove debris, sediment and other harmful substances from the water.
[0052] Pressing the valve stem 212 connects the water inlet 215 with the guide hole 204, allowing water to flow into the guide hole 204 and into the water inlet chamber 122 via the water inlet port 103. When the valve stem 212 is pressed to the bottom, a finger will touch the viewing window cover 211 to activate the control panel 207. The temperature of the water flow in the guide hole 204 is measured by the heat-conducting cap 206 in conjunction with the temperature sensor 210, and the water temperature is displayed on the digital display 209.
[0053] The adjustment plate 121 is in the middle position by default, which is the rain shower mode where the B1 guide hole 116 and the B2 guide hole 126 are fully connected. The water entering the water inlet chamber 122 flows through the B1 guide hole 116 and the B2 guide hole 126 into the rain shower chamber 107, and is discharged through the rain shower hole 111 to form a rain shower effect.
[0054] The adjustment plate 121 is rotated to one side by the dial 128. During the rotation, it enters a transitional state where the A1 guide hole 115 and the A2 guide hole 125 are partially connected and the B1 guide hole 116 and the B2 guide hole 126 are partially connected. This is the atomization / rain spray mixing mode. The water flow entering the water inlet chamber 122 enters the atomization chamber 106 and the rain spray chamber 107 through the A1 guide hole 115 and the A2 guide hole 125, and the B1 guide hole 116 and the B2 guide hole 126, and is discharged through the atomization hole 109 and the rain spray hole 111, forming an atomization / rain spray mixing effect.
[0055] When the A1 guide hole 115 and the A2 guide hole 125 are fully connected, the B1 guide hole 116 and the B2 guide hole 126 are completely disconnected, which is the atomization mode. The water flow only enters the atomization chamber 106 and is discharged through the atomization hole 109 to form an atomization effect.
[0056] The adjustment plate 121 is rotated to the other side by the dial 128. During the rotation, it enters a transitional state where the B1 guide hole 116 and the B2 guide hole 126 are partially connected and the C1 guide hole 117 and the C2 guide hole 127 are partially connected. This is the atomization / combing mixed mode. The water flow entering the water inlet chamber 122 passes through the B1 guide hole 116 and the B2 guide hole 126 and the C1 guide hole 117 and the C2 guide hole 127, and simultaneously enters the rain chamber 107 and the combing chamber 108. It is then discharged through the rain hole 111 and the soft comb teeth 112, forming a rain / combing mixed effect.
[0057] When the C1 guide hole 117 and the C2 guide hole 127 are fully connected, the B1 guide hole 116 and the B2 guide hole 126 are completely disconnected, which is the combing mode. The water flow only enters the combing chamber 108 and is discharged through the inner hole of the soft comb teeth 112, forming a combing effect. The soft comb teeth 112 clean the scalp and comb the hair, and perform a combing massage on the user's head.
[0058] The control panel 207 is turned on by touch and turns off by default after 30 minutes, thus monitoring the water temperature in real time during use and providing intelligent reminders to the user.
[0059] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A smart shower head with adjustable water flow modes, comprising a shower head body (100), the shower head body (100) comprising a housing (101) and a fixing ring cover (104), wherein a stepped through-flow water distribution cavity (102) is formed inside the housing (101), and a water inlet port (103) communicating with the water distribution cavity (102) is formed on the outer wall of the housing (101), and the port of the water distribution cavity (102) is detachably connected to the fixing ring cover (104), characterized in that: The water distribution chamber (102) is provided with a water distribution plate (105), a cover plate (113), and an adjusting plate (121) stacked in sequence. The water distribution plate (105) has an atomizing chamber (106), a rain shower chamber (107), and a combing chamber (108) arranged in sequence from the inside to the outside. The bottom surface of the water distribution plate (105) is evenly distributed with atomizing holes (109) that connect the atomizing chamber (106), the rain shower chamber (107), and the combing chamber (108), respectively. The adjustment plate (121) has a rain shower hole (111) and soft comb teeth (112). The end of the adjustment plate (121) facing away from the water distribution plate (105) is rotatably connected to the fixed ring cover (104). The side wall of the adjustment plate (121) is provided with a water inlet cavity (122) that communicates with the water inlet port (103). The water inlet cavity (122) is connected to the atomizing cavity (106), the rain shower cavity (107) and the combing cavity (108) respectively during the rotation of the adjustment plate (121).
2. The intelligent shower head with multiple water outlet modes as described in claim 1, characterized in that: The end face of the cover plate (113) is provided with A1 guide hole (115), B1 guide hole (116) and C1 guide hole (117) respectively connecting the atomizing chamber (106), the rain shower chamber (107) and the combing chamber (108). The end face of the adjusting plate (121) near the cover plate (113) is provided with A2 guide hole (125), B2 guide hole (126) and C2 guide hole (127) respectively connecting the water inlet chamber (122). During the rotation of the adjusting plate (121), the A2 guide hole (125), B2 guide hole (126) and C2 guide hole (127) are respectively connected to the A1 guide hole (115), B1 guide hole (116) and C1 guide hole (117).
3. The intelligent shower head with multiple water outlet modes as described in claim 1, characterized in that: The bottom surface of the atomizing chamber (106) is provided with a ring-shaped distribution of flow dividers (110) on the outside of the atomizing holes (109), and a gap is formed between adjacent flow dividers (110) for water to flow through.
4. The intelligent shower head according to claim 3, which facilitates adjustment of multiple water outlet modes, is characterized in that: The shower head body (100) also includes a diverter plate (129) disposed in the atomizing chamber (106). The two ends of the diverter plate (129) abut against the cover plate (113) and the diverter platform (110) respectively. The end face of the diverter plate (129) near the atomizing hole (109) is provided with pins (130) arranged in a ring. The tip of the pin (130) extends into the atomizing hole (109).
5. A smart shower head with adjustable multiple water flow modes according to claim 4, characterized in that: The outer circle of the middle part of the flow divider (129) is fitted with the atomizing chamber (106) through a shaft hole. The outer wall of the flow divider (129) that abuts against the cover plate (113) has a flow divider port (131) which connects the inner hole of the flow divider (129) and the atomizing chamber (106).
6. The intelligent shower head according to claim 1, which facilitates adjustment of multiple water outlet modes, is characterized in that: The adjusting plate (121) has an arc-shaped limiting groove (123) on the end face near the cover plate (113), and the cover plate (113) has a positioning cylinder (118) extending into the limiting groove (123) on the end face near the adjusting plate (121).
7. The intelligent shower head according to claim 1, which facilitates adjustment of multiple water outlet modes, is characterized in that: It also includes a valve assembly (200), which includes a connector (201) and a valve body (203). The connector (201) is connected to the water inlet port (103). A switching chamber (202) is formed in the middle of the connector (201). The valve body (203) is installed in the switching chamber (202). A guide hole (204) communicating with the inner hole of the connector (201) is opened in the middle of the valve body (203). A valve stem (212) is provided on the side of the valve body (203) away from the water inlet port (103). The two ends of the valve stem (212) extend outward from the connector (201) and the valve body (203) respectively. A water inlet hole (215) is opened in the middle of the valve stem (212). The water inlet hole (215) is connected to and disconnected from the guide hole (204) by the sliding of the valve stem (212).
8. The intelligent shower head according to claim 7, which facilitates adjustment of multiple water outlet modes, is characterized in that: The valve body (203) has a recessed temperature measuring chamber (205) on the side near the water inlet port (103). A heat-conducting cap (206) is recessed in the temperature measuring chamber (205) and extends into the flow guide hole (204). A control board (207) is provided in the temperature measuring chamber (205). A battery cell (208) and a digital display (209) are respectively attached to both sides of the control board (207). The control board (207) is electrically connected to a temperature sensor (210) placed in the heat-conducting cap (206) through a wire harness.
9. A smart shower head with adjustable multiple water outlet modes according to claim 8, characterized in that: The temperature measuring cavity (205) has a viewing window cover (211) at its port, and the viewing window cover (211) is connected to the control board (207) for touch control.
10. A smart shower head with adjustable multiple water flow modes according to claim 7, characterized in that: It also includes a handle assembly (300), which includes a handle tube (301) communicating with an adapter tube (201). The handle tube (301) contains a filter element (302). The filter element (302) has a plug (303) and a connecting cap (305) at both ends, respectively. The connecting cap (305) is used to connect the filter element (302) and the adapter tube (201).