A water guide strip, a water guide assembly, and a shower enclosure

By designing a rotatable water guide strip and linkage components, the problem of water overflowing from the shower room's water guide strip after the door is opened is solved, achieving effective water guidance and drainage in different states and ensuring the dryness of the shower room.

CN122280438APending Publication Date: 2026-06-26JOMOO KITCHEN & BATHROOM
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JOMOO KITCHEN & BATHROOM
Filing Date
2026-04-14
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

The existing shower enclosure's water guide strip cannot effectively drain water and draw water simultaneously after the door is opened, resulting in water overflowing even after the door is opened, affecting the dryness of the shower area.

Method used

A water guide strip was designed, including a connector and a rotating component. When the rotating door is closed, the rotating component serves as a guide position to tilt inward and block water. When the door is open, it serves as a return water position to tilt to store water and drain water. The rotation state is switched through magnetic attraction and linkage components to ensure effective water guidance in different states.

Benefits of technology

It effectively guides water into the inside of the shower room when the rotating door is closed, and effectively drains water when it is opened, preventing water from overflowing and ensuring that the outside of the shower room is dry.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a water guide strip, a water guide assembly, and a shower enclosure. The water guide strip includes a connector and a rotating component. The connector is adapted to be fixed below the rotating door as a mounting base for the water guide strip. The rotating component includes a first water-blocking strip, a second water-blocking strip, and a drain section connected to each other. The drain section has a first drain outlet. When the rotating door is closed, in the guide position, the first water-blocking strip extends downward and tilts inward to prevent water from overflowing. Since the second water-blocking strip is located outward of the first water-blocking strip, it blocks water on the outside of the first water-blocking strip, achieving double water blocking. When the rotating door is opened outward, in the return water position, the first water-blocking strip extends upward and tilts inward to form a water storage space to receive water from the rotating door. The first drain outlet communicates with the water storage space above the first water-blocking strip and is located inside the bottom frame, preventing water from overflowing the water storage space and allowing water to drain inward, achieving the return water function.
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Description

Technical Field

[0001] This invention relates to the field of home furnishing products, specifically to a water guide strip, a water guide component, and a shower enclosure. Background Technology

[0002] Currently, in shower enclosures with hinged doors, the water guide strip at the bottom of the rotating door has two functions: receiving water accumulated on the rotating door (return type) and draining water into the interior of the enclosure (guiding type). The guiding type can quickly divert water accumulated on the rotating door into the interior of the shower enclosure, but it cannot receive water flowing down from the rotating door after the door is opened, causing it to spill into the dry shower area. The return type can receive water accumulated on the rotating door after the door is opened, but the act of receiving water continues during the shower. Furthermore, the shower water in the water storage space is not emptied beforehand to receive water accumulated on the rotating door after the door is opened, resulting in incomplete water reception (the water storage space is already full during the shower, and the drainage capacity of the drain outlet on the rotating side of the water storage space is generally insufficient due to the size limitation of the structure), causing water to overflow from the water storage space and spill into the dry shower area after the door is opened. Summary of the Invention

[0003] The purpose of this invention is to overcome the aforementioned defects or problems existing in the prior art or to provide a material basis for overcoming the aforementioned defects or problems existing in the prior art, and to provide a water guide strip, a water guide assembly, and a shower room.

[0004] To achieve the above objectives, the present invention and its preferred embodiments employ the following technical solutions, but the embodiments are not limited to the following solutions: Option 1: A water guide strip suitable for use in a shower enclosure, the shower enclosure including a rotating door and a bottom frame, the rotating door being located above the bottom frame and adapted to rotate to close or open; including... A connector adapted to be fixed to the underside of the revolving door; A rotating component includes a first water-blocking strip, a second water-blocking strip, and a drain section connected to each other. The drain section has a first drain outlet. The rotating component is rotatably connected to the connecting component and is adapted to be subjected to force to rotate to a guide position when the rotating door is closed and to rotate to a return water position when the rotating door is open. In the guide position, the first water-blocking strip extends downward and tilts inward, and the second water-blocking strip is located in the outward direction of the first water-blocking strip, and the second water-blocking strip extends downward and tilts outward. In the return water position, the first water-blocking strip extends upward and tilts inward, the bottom end of the second water-blocking strip is higher than the bottom frame, and the first drain outlet communicates with the water storage space above the first water-blocking strip and is located inside the bottom frame.

[0005] Option 2, based on Option 1, further includes a third water-blocking strip. The third water-blocking strip extends downward and tilts inward. The third water-blocking strip is adapted to abut against the upper surface of the first water-blocking strip when the rotating member is in the return water position.

[0006] Option 3, based on Option 1, further includes a second drain outlet, wherein the drain section is adapted to abut against the connector in the return water position, thereby connecting the first drain outlet with the second drain outlet.

[0007] Option 4, based on Options 1 to 3, the connecting member is provided with a first magnetic attraction part, and the rotating member is provided with a second magnetic attraction part. The second magnetic attraction part is adapted to magnetically engage with the first magnetic attraction part when in the return water position, so that the rotating member stops at the return water position.

[0008] Option 5: A water guiding component, comprising a sliding member, a linkage component, and a water guiding strip as described in any one of claims 1-5; the sliding member is adapted to slide in cooperation with the rotating door in a horizontal direction, and drives the rotating member to rotate through the linkage component.

[0009] Option 6, based on Option 5, the linkage component includes a slide rod, a connecting rod, and a biasing member; the slide rod is adapted to slide in a vertical direction with the rotating door; the slide member is provided with an abutting slope, which is inclined relative to the vertical direction; the biasing member is adapted to apply force to the slide rod so that the upper end of the slide rod is adapted to abut against the abutting slope. The two ends of the connecting rod are rotatably connected to the sliding rod and the rotating component, respectively.

[0010] Option 7, based on Option 5, the linkage component includes a sliding rod and a biasing member. The sliding rod is adapted to slide in the vertical direction with the revolving door. The sliding member is provided with an abutting slope, which is inclined relative to the vertical direction. The biasing member is adapted to apply force to the sliding rod so that the upper end of the sliding rod is adapted to abut against the abutting slope. The slide bar is provided with a horizontally extending groove, and the rotating member is provided with a toggle part adapted to slide with the groove to rotate the rotating member.

[0011] Option 8, based on Option 6 or Option 7, further includes a first magnetic chuck and a second magnetic chuck. The first magnetic chuck is fixed to the sliding member, and the second magnetic chuck is adapted to be fixed relative to the rotating door and magnetically engages with the first magnetic chuck when the rotating member is in the guide position.

[0012] Option 9, a shower enclosure, includes a lock block, a magnetic lock assembly, a reset magnet, a rotating door, a bottom frame, and a water guide strip as described in any one of Options 1 to 4, or a water guide assembly as described in any one of Options 5 to 8; the magnetic lock assembly and the reset magnet are mounted on a fixed door or door frame; the rotating door has a lock hole, the lock block is slidably connected to the rotating door, and is adapted to magnetically engage with the magnetic lock assembly when slid to the locked position, causing the magnetic lock assembly to slide and extend into the lock hole; the reset magnet is adapted to magnetically engage with the magnetic lock assembly when the lock block moves to the unlocked position to disengage from the magnetic lock assembly, causing it to exit the lock hole.

[0013] Option 10, based on Option 9, further includes a first locking magnet and a second locking magnet. The first locking magnet is fixed to the rotating door, and the second locking magnet is fixed to the lock block. The first locking magnet is adapted to magnetically engage with the second locking magnet when the lock block slides to the unlock position, so that the magnetic lock assembly is adapted to exit the keyhole.

[0014] Option 11, based on Option 9, further includes an operating component, a sliding component, and a linkage component; the sliding component is adapted to slide and engage with the revolving door in a horizontal direction, and drives the revolving door to rotate through the linkage component; the operating component is rotatably connected to the revolving door and is adapted to drive the sliding component and the locking block to slide, and when the locking block is in the locked position, the sliding component causes the revolving door to rotate to the guide position, and when the locking block is in the unlocked position, the sliding component causes the revolving door to rotate to the return water position.

[0015] Option 12, based on Option 11, wherein the rotating component is provided with a gear, the gear meshing with the sliding component and the locking block for transmission; or, the rotating component is provided with a first pushing part and a second pushing part, and the sliding component and the locking block are provided with a first pushing groove and a second pushing groove respectively for the first pushing part and the second pushing part to be inserted.

[0016] As can be seen from the above description of the present invention and its preferred embodiments, compared with the prior art, the technical solution of the present invention and its preferred embodiments have the following beneficial effects due to the adoption of the following technical means: A water guide strip is suitable for use in a shower enclosure, the shower enclosure including a rotating door and a bottom frame, the rotating door being located above the bottom frame and adapted to rotate to close or open; the water guide strip includes a connector and a rotating element.

[0017] The connector is suitable for fixing to the bottom of the revolving door as a mounting base for the water guide strip.

[0018] The rotating component includes a first water-blocking strip, a second water-blocking strip, and a drain section connected to each other. The drain section has a first drain outlet. The rotating component is rotatably connected to the connecting component and is adapted to be subjected to force to rotate to the guide position and the return water position when the rotating door is closed or opened. When the rotating door is closed, the rotating component is in the guide position. The first water-blocking strip extends downward and tilts inward. Through the extension direction of the first water-blocking strip, the water on the rotating door or splashing water is guided to the inside of the shower room, preventing water from overflowing. Even if water splashes outward and crosses the first water-blocking strip, the second water-blocking strip is located in the outward direction of the first water-blocking strip, thereby blocking the water outside the first water-blocking strip, realizing double water blocking and realizing the function of guiding water. When the rotating door is opened outwards, and the rotating component is in the return water position, the first water-blocking strip extends upwards and tilts inwards to form a water storage space to receive the water flow from the rotating door. The extension direction of the first water-blocking strip prevents water in the storage space from dripping directly onto the outside of the shower enclosure. The bottom end of the second water-blocking strip is higher than the bottom frame so that the second water-blocking strip does not interfere with the bottom frame when the rotating door is opened outwards, thus allowing the rotating door to open outwards. When the rotating door is opened outwards, the first drain outlet connects with the water storage space above the first water-blocking strip and is located inside the bottom frame, preventing water from overflowing the water storage space and allowing water to drain inwards, thereby ensuring that the outside of the shower enclosure is dry and realizing the return water function. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a front view of the shower room in Example 1; Figure 2 This is an exploded view of the water guide strip in Example 1; Figure 3 This is a perspective view of the water guide strip in Example 1; Figure 4 This is a three-dimensional schematic diagram of the rotating component in Embodiment 1 when it is rotated to the guide position; Figure 5 This is a three-dimensional schematic diagram of the rotating component in Embodiment 1 when it rotates to the return water position; Figure 6 This is a schematic diagram of drainage when the rotating component rotates to the return water position in Embodiment 1; Figure 7 This is an exploded view of the slider and locking block in Embodiment 1; Figure 8 This is a schematic diagram of the structure of the sliding member and the locking block when the rotating member is in the guide position in Embodiment 1; Figure 9 This is a side view of the rotating component in the guide position in Embodiment 1; Figure 10 This is a schematic diagram of the rotating component in the guide position in Embodiment 1; Figure 11 This is a schematic diagram of the magnetic lock assembly being inserted into the lock hole when the rotating component is in the guide position in Embodiment 1; Figure 12 This is a schematic diagram of the sliding member and locking block when the rotating member is in the return water position in Embodiment 1; Figure 13 This is a side view of the rotating component in the return water position in Embodiment 1; Figure 14 This is a schematic diagram of the rotating component in the return water position in Embodiment 1; Figure 15 This is a schematic diagram of the magnetic lock assembly being inserted into the lock hole when the rotating component is in the return water position in Embodiment 1; Figure 16 This is a schematic diagram of another type of operating component, the linkage lock block, and the sliding component in Embodiment 1, where the rotating component is located in the guide position. Figure 17 This is a schematic diagram of another type of operating component, the linkage lock block, and the sliding component in Embodiment 1, where the rotating component is located at the return water position. Figure 18 This is a perspective view of the fixed connector in Embodiment 1; Figure 19 This is an enlarged view of the toggle section in Example 1; Explanation of key figure labels: Water guide strip 1; connector 11; adapter 111; first magnetic suction part 1111; second drain outlet 1112; water-blocking strip 112; third water-blocking strip 1121; fixing joint 113; C-shaped hole 1131; fixing part 114; fixing groove 1141; rib 1142; insertion groove 1143; Rotating component 12; Actuating connector 121; Second magnetic suction part 1211; Actuating part 1212; First drain outlet 1213; Water-guiding rubber strip 122; First water-blocking strip 1221; Second water-blocking strip 1222; Sliding component 2; Abutting inclined surface 21; First pushing groove 22; Linkage component 3; slide bar 31; rod part 311; contact surface 3111; strip groove 3112; rotating wheel 312; Connecting rod 32; biasing component 33; First magnetic accommodating element 41; Second magnetic accommodating element 42; Lock block 51; second push groove 511; magnetic lock assembly 52; reset magnet 53; first locking magnet 54; second locking magnet 55; Operating component 6; gear 61; first pusher 62; second pusher 63; Revolving door 71; lock hole 711; bottom frame 72; seating part 721; water-blocking part 722; fixed door 73; Detailed Implementation 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 preferred embodiments of the present invention and should not be considered as excluding other embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0021] Unless otherwise expressly defined, the use of terms such as "first," "second," or "third" in the claims, description, and accompanying drawings of this invention is for distinguishing different objects and not for describing a specific order.

[0022] Unless otherwise expressly defined, in the claims, description, and accompanying drawings of this invention, the use of directional terms such as "center," "lateral," "longitudinal," "horizontal," "vertical," "top," "bottom," "inner," "outer," "upper," "lower," "front," "rear," "left," "right," "clockwise," and "counterclockwise" to indicate orientation or positional relationships is based on the orientation and positional relationships shown in the accompanying drawings and is only for the convenience of describing the invention and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as limiting the specific scope of protection of this invention.

[0023] Unless otherwise expressly defined, the terms "fixed connection" or "fixed connection" used in the claims, description and drawings of this invention should be interpreted broadly to refer to any connection in which there is no displacement or relative rotation relationship between the two parties, including non-removable fixed connection, detachable fixed connection, integral connection and fixed connection by other means or components.

[0024] In the claims, description and accompanying drawings of this invention, the terms "comprising," "having," and variations thereof are used to mean "including but not limited to."

[0025] refer to Figures 1-17 A shower enclosure includes a rotating door 71, a bottom frame 72, a water guide strip 1, a fixed door 73, a lock block 51, a magnetic lock assembly 52, a reset magnetic block 53, a sliding member 2, a linkage assembly 3, and an operating member 6.

[0026] refer to Figure 10The base frame 72 is roughly L-shaped and includes a sitting part 721 and a water-retaining part 722. The sitting part 721 is located on the ground, and the water-retaining part 722 protrudes above the sitting part 721 and is located at one end near the outer side. The wet area of ​​the shower room is the inner side, and the dry area is the outer side.

[0027] refer to Figure 1 The rotating door 71 is located above the base frame 72 and is adapted to rotate to close or open. The rotating door 71 can be rotatably connected to the base frame 72 or the fixed door 73.

[0028] The fixed door 73 remains stationary relative to the bottom frame 72. In this embodiment, there are two of them, located on both sides of the rotating door 71.

[0029] The water guide strip 1 is applied to the shower enclosure and installed at the lower end of the rotating door 71. The water guide strip 1 includes a connector 11 and a rotating component 12.

[0030] refer to Figure 2 and Figure 3 The connector 11 is adapted to be fixed below the revolving door 71 as a mounting base for the water guide strip 1. The connector 11 includes an adapter 111, a water-blocking strip 112, a fixing connector 113, and a fixing member 114.

[0031] refer to Figure 14 The fixing member 114 has a fixing groove 1141 on its upper part, and a plurality of ribs 1142 are provided in the fixing groove 1141. The fixing groove 1141 is suitable for being fitted onto the bottom end of the rotating door 71, so that the ribs 1142 rub against the rotating door 71 to fix the fixing member 114. The fixing member 114 has an insertion groove 1143 on its lower part for the water-blocking rubber strip 112, the fixing connector 113 and the adapter 111 to be inserted.

[0032] refer to Figure 2 There are two adapters 111 and two water-blocking rubber strips 112. Along the length direction (left and right direction) of the insertion groove 1143, the adapter 111, the water-blocking rubber strip 112, the fixed connector 113, the water-blocking rubber strip 112 and the adapter 111 are arranged in sequence.

[0033] refer to Figure 3 The water-blocking strip 112 is provided with a third water-blocking strip 1121, which extends downward and tilts inward. The third water-blocking strip 1121 is a flexible strip.

[0034] Both adapters 111 are provided with a first magnetic suction part 1111. And the adapter 111 near the rotating connection of the rotating door 71 is provided with a second drain outlet 1112.

[0035] refer to Figure 2 , Figure 18The fixed joint 113 is provided with a C-shaped hole 1131 for rotatably connecting with the middle part of the rotating part 12.

[0036] The rotating component 12 includes two actuating joints 121 and a water-guiding strip 122 adapted for synchronous rotation. The actuating joints 121 are fixed to both sides of the water-guiding strip 122 respectively. The actuating joints 121 are rotatably connected to the adapter 111 and are provided with a second magnetic attraction part 1211 adapted for magnetic engagement with the first magnetic attraction part 1111. (Reference) Figure 19 Furthermore, a toggle joint 121 located away from the rotating connection point of the revolving door 71 is provided with a toggle part 1212. (Reference) Figure 2 The actuating joint 121 near the rotating connection of the rotating door 71 is provided with a drainage part, and the drainage part is provided with a first drainage outlet 1213.

[0037] refer to Figure 3 , Figure 4 The middle part of the water-guiding rubber strip 122 is rotatably connected to the C-shaped hole 1131 of the fixed connector 113. The water-guiding rubber strip 122 includes a first water-blocking strip 1221 and a second water-blocking strip 1222 connected to each other. The first water-blocking strip 1221 is a flexible rubber strip, and the second water-blocking strip 1222 is a rigid rubber strip. The second water-blocking strip 1222 cooperates with the fixed connector 113 and the actuating connector 121. The first water-blocking strip 1221 protrudes between the two ends of the second water-blocking strip 1222, and the included angle between the first water-blocking strip 1221 and the second water-blocking strip 1222 is approximately an acute angle in this embodiment.

[0038] The rotating member 12 is rotatably connected to the connecting member 11, and is adapted to be subjected to force to rotate to the guide position and the return water position when the rotating door 71 is closed or opened to achieve different functions.

[0039] refer to Figure 10 When the rotating member 12 is in the guide position, the first water-blocking strip 1221 extends downward and tilts inward, the second water-blocking strip 1222 is located in the outward direction of the first water-blocking strip 1221, and the second water-blocking strip 1222 extends downward and tilts outward to be close to the water-blocking part 722, and the lower end of the second water-blocking strip 1222 is lower than the top surface of the water-blocking part 722; refer to Figure 14 In the return water position, the first water-blocking strip 1221 extends upward and tilts inward, and its upper surface abuts against the third water-blocking strip 1121. The bottom end of the second water-blocking strip 1222 is higher than the water-blocking portion 722 of the bottom frame 72; Reference Figure 6 The drainage section abuts against the connector 11. The first drainage port 1213 and the second drainage port 1112 are connected to form a drainage hole extending in the left and right direction with a larger water passage area. The drainage hole is connected to the water storage space above the first water-blocking strip 1221, and the drainage hole is located inside the bottom frame 72. (Reference) Figure 3The second magnetic attraction part 1211 magnetically engages with the first magnetic attraction part 1111 to stop the rotating member 12 at the return water position. In this embodiment, the water storage space is formed by the first water baffle 1221 and the third water baffle 1121. In other embodiments, it can also be formed by the first water baffle 1221 and the rotating door 71 or the second water baffle 1222.

[0040] refer to Figure 8 The sliding member 2 is adapted to slide and engage with the rotating door 71 in a horizontal direction, and drives the rotating member 12 to rotate through the linkage assembly 3. The sliding member 2 has an abutting inclined surface 21 on the side near the linkage assembly 3. The abutting inclined surface 21 is inclined in a relatively vertical direction so as to abut against the slide rod 31 of the linkage assembly 3 at different heights, so that the slide rod 31 is located at different heights.

[0041] The first magnetic attractor 41 is fixed to the side of the sliding member 2 that is away from the linkage assembly 3.

[0042] The second magnetic chuck 42 is adapted to be fixed relative to the rotating door 71 and is adapted to be magnetically engaged with the first magnetic chuck 41 so that the sliding member is fixed in a certain position.

[0043] Linkage component 3 can have the following two modes: ①Reference Figure 8 , Figure 9 The linkage component 3 includes a slide bar 31, a connecting rod 32, and an biasing component 33; The slide bar 31 is adapted to slide in a vertical direction with the rotating door 71; the slide bar 31 includes a rod portion 311 and a rotating wheel 312, the rotating wheel 312 being rotatably connected to the rod portion 311 and adapted to abut against the inclined surface 21. The end of the rod portion 311 facing away from the rotating wheel 312 is rotatably connected to the connecting rod 32. The rod portion 311 is provided with an abutment surface 3111, which faces downward.

[0044] One end of the biasing element 33 acts on the abutment surface 3111, and the other end acts on the revolving door 71. It is adapted to apply an upward force to the slide rod 31 so that the upper end of the slide rod 31 is adapted to abut against the abutment inclined surface 21. The biasing element 33 can be a spring, or rubber, a cylinder, a magnetic component, etc.

[0045] The two ends of the connecting rod 32 are rotatably connected to the rod part 311 and the actuating part 1212 respectively, so as to drive the rotating part 12 to rotate.

[0046] As the slide bar 31 slides up and down, the rotation of the connecting rod 32 drives the rotating component 12 to rotate.

[0047] ② Unlike method ①, this method does not have link 32.

[0048] For details, please refer to Figure 16 , Figure 17The linkage component 3 includes a slide rod 31 and a biasing member 33. The slide rod 31 is adapted to slide in a vertical direction with the rotating door 71. The biasing member 33 is adapted to apply force to the slide rod 31 so that the upper end of the slide rod 31 is adapted to abut against the inclined surface 21. The slide rod 31 also includes a rod portion 311 and a rotating wheel 312.

[0049] The rod 311 has a horizontally extending strip groove 3112 on the side opposite to the rotating wheel 312. The rotating member 12 has a toggle part 1212 that is suitable for slidingly engaging with the strip groove 3112 to make the rotating member 12 rotate. As the sliding rod 31 slides up and down, its position in the strip groove 3112 changes, thereby causing the rotating member 12 to rotate.

[0050] In some embodiments, the slider 2 is also used as a lock. Specifically, the slider 2 is adapted to slide relative to the revolving door 71 to lock (e.g., insert into the lock hole 711 of the door frame or fixed door 73) or unlock it, so that the revolving door 71 can remain closed or allow it to open. The lock is also linked to the revolving door 12 through the linkage component 3 so that when locked with the door frame or fixed door 73, the revolving door 12 rotates to the guide position, and when unlocked with the door frame or fixed door 73, the revolving door 12 rotates to the return position.

[0051] In this embodiment, the sliding member 2 is not used as a locking member. In this application, the locking and unlocking of the rotating door 71 is achieved through the cooperation of the locking block 51 and the magnetic lock assembly 52.

[0052] Specifically, the magnetic lock assembly 52 and the reset magnet 53 are installed on the fixed door 73 or the door frame, and the rotating door 71 is provided with a lock hole 711.

[0053] refer to Figure 8 , Figure 11 The locking block 51 is slidably connected to the rotating door 71, and is adapted to magnetically engage with the magnetic lock assembly 52 when slid to the locked position (the force of the locking block 51 on the magnetic lock assembly 52 is greater than the force of the reset magnet 53 on the magnetic lock assembly 52), causing the magnetic lock assembly 52 to slide and extend into the lock hole 711. (Reference) Figure 12 , Figure 15 When the locking block 51 slides to the unlock position, the force of the locking block 51 on the magnetic lock assembly 52 is less than the force of the reset magnet 53 on the magnetic lock assembly 52. ​​At this time, the locking block 51 and the magnetic lock assembly 52 are disengaged from magnetic engagement, and the reset magnet 53 and the magnetic lock assembly 52 are magnetically engaged, causing the magnetic lock assembly 52 to slide out of the lock hole 711.

[0054] The first locking magnetic block 54 is fixed to the rotating door 71; The second locking magnet 55 is fixed to the side of the lock block 51 opposite to the magnetic lock assembly 52. ​​The second locking magnet 55 is adapted to magnetically engage with the first locking magnet 54 when the lock block 51 slides to the unlock position, so as to keep the lock block 51 in the unlock position, so that the magnetic lock assembly 52 is adapted to exit the keyhole 711.

[0055] refer to Figure 8 To facilitate reduced operation and enable the locking block 51 and the sliding member 2 to work together, preferably, the shower room also includes an operating member 6.

[0056] The operating element 6 is rotatably connected to the rotating door 71 and is adapted to drive the sliding element 2 and the locking block 51 to slide. When the locking block 51 is in the locked position, the sliding element 2 causes the rotating element 12 to rotate to the guide position. When the locking block 51 is in the unlocked position, the sliding element 2 causes the rotating element 12 to rotate to the return position. In this embodiment, when the operating element 6 causes the locking block 51 to slide to the left, it causes the sliding element 2 to slide to the right, and vice versa.

[0057] Specifically, refer to Figure 8 , Figure 12 The operating member 6 is provided with a first pushing part 62 and a second pushing part 63, and the sliding member 2 and the locking block 51 are provided with a first pushing groove 22 and a second pushing groove 511 for the first pushing part 62 and the second pushing part 63 to be inserted respectively.

[0058] Or, refer to Figure 16 The operating component 6 is equipped with a gear 61, which meshes with the rack on the sliding component 2 and the locking block 51 for transmission. The operating component 6 also has a handle for easy operation.

[0059] When using, refer to Figures 8-11 Taking the initial locking position of the locking block 51 as an example, at this time, the second locking magnet 55 and the first locking magnet 54 are far apart from each other, the locking block 51 is located on the right side and magnetically engages with the magnetic lock assembly 52, the magnetic lock assembly 52 slides to the left and extends into the lock hole 711 on the rotating door 71, and the rotating door 71 is in the locked state. The first magnetic suction member 41 and the second magnetic suction member 42 are attached and magnetically engaged, the sliding member 2 is located on the left side, the sliding rod 31 is located at the top, and the rotating member 12 is positioned in the guide position through the connecting rod 32 or the strip groove 3112. The first water-blocking strip 1221 extends downward and tilts inward, and the second water-blocking strip 1222 extends downward and tilts outward to be close to the water-blocking part 722, realizing double water blocking.

[0060] refer to Figures 12-15When the door needs to be opened, the operating component 6 is rotated. The operating component 6 drives the lock block 51 to slide to the unlock position via the gear 61 or the first pushing part 62. The second locking magnet 55 and the first locking magnet 54 are attached to each other and magnetically engaged. The lock block 51 is located on the left side. The reset magnet 53 is magnetically engaged with the magnetic lock assembly 52. ​​The magnetic lock assembly 52 slides to the right and exits the lock hole 711 on the revolving door 71 to allow the revolving door 71 to open. At the same time, the sliding component 2 slides to the right under the action of the gear 61 or the second pushing part 63. Under the action of the abutting inclined surface 21, the sliding rod 31 slides to the bottom and, through the connecting rod 32 or the strip groove 3112, the rotating component 12 is positioned in the water return position. The first water-blocking strip 1221 extends upward and tilts inward, and the upper surface of the first water-blocking strip 1221 abuts against the third water-blocking strip 1121 to form a sealing fit. The second water-blocking strip 1222 rises above the top surface of the bottom frame 72, and the drain hole is located inside the bottom frame 72 after the rotating door 71 is opened, so as to discharge water to the inner area; preferably, the drain hole and the water storage space are located below the fixed joint 113 of the water guide strip 1, or the third water-blocking strip 1121 covers the fixed joint 113, thereby preventing water from overflowing from the fixed joint 113.

[0061] The second magnetic attraction part 1211 and the first magnetic attraction part 1111 are magnetically engaged to maintain stability. Since the sliding member 2 and the locking block 51 are linked, the stability of one of them will also lead to the stability of the other, achieving mutual locking and improving stability.

[0062] Compared with the prior art, this embodiment has the following beneficial effects: In one exemplary embodiment, a water guide strip 1 is suitable for application in a shower room, the shower room including a rotating door 71 and a bottom frame 72, the rotating door 71 being located above the bottom frame 72 and adapted to rotate to close or open; the water guide strip 1 includes a connector 11 and a rotating member 12.

[0063] The connector 11 is adapted to be fixed below the rotating door 71 as a mounting base for the water guide strip 1.

[0064] The rotating member 12 includes a first water-blocking strip 1221, a second water-blocking strip 1222, and a drain section connected to each other. The drain section is provided with a first drain outlet 1213. The rotating member 12 is rotatably connected to the connecting member 11 and is adapted to be subjected to force to rotate to the guide position and the return water position when the rotating door 71 is closed or opened. When the rotating door 71 is closed, the rotating member 12 is in the guide position. The first water-blocking strip 1221 extends downward and tilts inward. The water falling on it falls due to gravity through the extension direction of the first water-blocking strip 1221. It can guide the water on the rotating door 71 or the splashing water to the inside of the shower room and prevent water from overflowing. Even if the water splashes outward and crosses the first water-blocking strip 1221, the second water-blocking strip 1222 is located in the outward direction of the first water-blocking strip 1221, thereby blocking the water on the outside of the first water-blocking strip 1221, realizing double water blocking and realizing the function of guiding water. When the rotating door 71 is opened outwards, and the rotating component 12 is in the return water position, the first water-blocking strip 1221 extends upwards and tilts inwards to form a water storage space to receive the water flow on the rotating door 71. The extension direction of the first water-blocking strip 1221 prevents the water in the water storage space from passing over the first water-blocking strip 1221 and dripping directly onto the outside of the shower room. The bottom end of the second water-blocking strip 1222 is higher than the bottom frame 72 so that when the rotating door 71 is opened outwards, the second water-blocking strip 1222 does not interfere with the bottom frame 72, thereby allowing the rotating door 71 to open outwards. When the rotating door 71 is opened outwards, the first drain outlet 1213 is connected to the water storage space above the first water-blocking strip 1221 and is located inside the bottom frame 72 to prevent water from overflowing the water storage space and to allow water to drain inwards (the first water-blocking strip 1221, the second water-blocking strip 1222 and the rotating door 71 are of equal length), thereby ensuring that the outside of the shower room is dry and realizing the return water function.

[0065] In one exemplary embodiment, when the rotating member 12 is in the guide position, the second water-blocking strip 1222 extends downward and tilts outward to make the space between the second water-blocking strip 1222 and the first water-blocking strip 1221 larger, thereby expanding the blocking range and preventing water from splashing out.

[0066] In one exemplary embodiment, the connector 11 is further provided with a third water-blocking strip 1121 (equal in length to the rotating door 71). The third water-blocking strip 1121 extends downward and tilts inward. When the rotating door 71 is opened, its tilting direction also allows it to guide the water or splashed water on the rotating door 71 to the inside of the shower room, preventing water from overflowing. The third water-blocking strip 1121 is adapted to abut against the upper surface of the first water-blocking strip 1221 when the rotating member 12 is in the return water position to achieve a sealing fit. The water storage space formed in this way has good sealing performance, preventing water leakage caused by gaps in the water storage space.

[0067] In one exemplary embodiment, the connector 11 is further provided with a second drain outlet 1112. The draining part is adapted to abut against the connector 11 when in the return water position, and to connect the first drain outlet 1213 with the second drain outlet 1112. By adding the second drain outlet 1112 on the basis of the first drain outlet 1213, the drainage area is increased and the drainage is faster.

[0068] In one exemplary embodiment, the connector 11 is provided with a first magnetic attraction part 1111, and the rotating part 12 is provided with a second magnetic attraction part 1211. The second magnetic attraction part 1211 is adapted to magnetically engage with the first magnetic attraction part 1111 when the water return position is in place, so that the rotating part 12 stops at the water return position, preventing the rotating part 12 from rotating due to vibration or other reasons, thus preventing the water return effect from failing or the sealing of the water storage space from being damaged.

[0069] In one exemplary embodiment, a water guiding component includes a sliding member 2, a linkage component 3, and the aforementioned water guiding strip 1. The sliding member 2 is adapted to slide and engage with the rotating door 71 in a horizontal direction, and drives the rotating member 12 to rotate through the linkage component 3. Since the rotating member 12 is located below the rotating door 71, it is usually difficult to operate. Through the sliding of the sliding member 2 and the transmission of the linkage component 3, the force is transmitted to the rotating member 12, making the rotation operation of the rotating member 12 simpler.

[0070] In one exemplary embodiment, the linkage component 3 includes a slide rod 31, a connecting rod 32, and a biasing member 33. The slide rod 31 is adapted to slide in a vertical direction with the rotating door 71. The slide rod 2 is provided with an abutting inclined surface 21, which is inclined relative to the vertical direction. The biasing member 33 is adapted to apply force to the slide rod 31 so that the upper end of the slide rod 31 is adapted to abut against the abutting inclined surface 21. The two ends of the connecting rod 32 are rotatably connected to the slide rod 31 and the rotating member 12, respectively. When the slide rod 2 slides, the position of the abutting inclined surface 21 changes, and the contact position between the slide rod 31 and the abutting inclined surface 21 changes, thereby causing the slide rod 31 to slide up and down. When the slide rod 31 slides up and down, the position of the connecting rod 32 changes and drives the rotating member 12 to rotate. The setting of the connecting rod 32 makes it less likely for dead points to occur during the operation process, and the rotation of the rotating member 12 is smoother.

[0071] In one exemplary embodiment, unlike the above, this solution does not provide a connecting rod 32. Instead, the sliding rod 31 has a horizontally extending strip groove 3112, and the rotating member 12 has a toggle part 1212 that is suitable for slidingly engaging with the strip groove 3112 to rotate the rotating member 12. Since the position of the strip groove 3112 changes when the sliding rod 31 slides, and the rotating member 12 is rotatably connected to the connecting member 11, it cannot slide up and down. Therefore, the toggle part 1212 will slide within the strip groove 3112 to realize the rotation of the rotating member 12. This method has a simpler structure.

[0072] In one exemplary embodiment, the slide bar 31 includes a rod portion 311 and a rotating wheel 312. The rotating wheel 312 is rotatably connected to the rod portion 311 and is adapted to abut against the inclined surface 21. The rod portion 311 is rotatably connected to the connecting rod 32. By the rolling of the rotating wheel 312, the friction between the slide bar 31 and the inclined surface 21 is reduced, the resistance is reduced, and the transmission is made smoother.

[0073] In one exemplary embodiment, the device further includes a first magnetic chuck 41 and a second magnetic chuck 42. The first magnetic chuck 41 is fixed to the sliding member 2, and the second magnetic chuck 42 is adapted to be fixed relative to the rotating door 71. When the rotating member 12 is in the guide position, it magnetically engages with the first magnetic chuck 41. The magnetic force ensures that the rotating member 12 is in the guide position, preventing vibration and other effects, thereby ensuring stable and reliable operation.

[0074] In one exemplary embodiment, the sliding member 2 is a locking member, adapted to slide relative to the revolving door 71 to lock or unlock with the door frame or fixed door 73, so as to keep the revolving door 71 closed or allow it to open. The sliding member 2 also has the function of locking the revolving door 71, thus enriching its functionality. Furthermore, the locking member is linked to the revolving member 12, so that when locked, the revolving member 12 rotates to the guide position, and when unlocked, the revolving member 12 rotates to the return water position, thereby realizing the corresponding function of the water guide strip 1 in both states of the revolving door 71, making operation simpler.

[0075] In one exemplary embodiment, a shower enclosure includes a locking block 51, a magnetic lock assembly 52, a reset magnetic block 53, a rotating door 71, a bottom frame 72, and the aforementioned water guide strip 1 or the aforementioned water guide assembly. The magnetic lock assembly 52 and the reset magnetic block 53 are mounted on the fixed door 73 or the door frame. The rotating door 71 has a lock hole 711. The locking block 51 is slidably connected to the rotating door 71 and is adapted to magnetically engage with the magnetic lock assembly 52 when it slides to the locked position, causing the magnetic lock assembly 52 to slide and extend into the lock hole 711, thus restricting the rotation of the rotating door 71. The reset magnetic block 53 is adapted to magnetically engage with the magnetic lock assembly 52 when the locking block 51 moves to the unlocked position to disengage from the magnetic lock assembly 52, causing it to exit the lock hole 711, thereby allowing the rotating door 71 to rotate. Locking and unlocking are achieved through magnetic force, resulting in a simple structure.

[0076] In one exemplary embodiment, the device further includes a first locking magnet 54 and a second locking magnet 55. The first locking magnet 54 is fixed to the rotating door 71, and the second locking magnet 55 is fixed to the lock block 51. The first locking magnet 54 is adapted to magnetically engage with the second locking magnet 55 when the lock block 51 slides to the unlock position, so that the magnetic lock assembly 52 is adapted to exit the lock hole 711. This ensures the stability of the lock block 51 through the action of magnetic force, preventing vibration from causing it to slide and relock.

[0077] In one exemplary embodiment, the system further includes an operating component 6, a sliding component 2, and a linkage component 3. The sliding component 2 is adapted to slide and engage with the revolving door 71 in a horizontal direction, and drives the revolving component 12 to rotate via the linkage component 3. The operating component 6 is rotatably connected to the revolving door 71 and is adapted to drive the sliding component 2 and the locking block 51 to slide. When the locking block 51 is in the locked position, the sliding component 2 causes the revolving component 12 to rotate to the guide position. When the locking block 51 is in the unlocked position, the sliding component 2 causes the revolving component 12 to rotate to the return position. By simultaneously linking the sliding component 2 and the locking block 51 through the operating component 6, the locked state of the revolving door 71 and the position of the revolving component 12 correspond to each other, making the operation simple and convenient.

[0078] In one exemplary embodiment, the rotating member 12 is provided with a gear 61, which meshes with the sliding member 2 and the locking block 51 for transmission, resulting in high precision; or, the rotating member 12 is provided with a first pushing part 62 and a second pushing part 63, and the sliding member 2 and the locking block 51 are provided with a first pushing groove 22 and a second pushing groove 511 for the first pushing part 62 and the second pushing part 63 to be inserted respectively, so that the corresponding sliding is achieved by the abutment force, which is more reliable.

[0079] The foregoing description of the specifications and embodiments is intended to explain the scope of protection of this invention, but does not constitute a limitation on the scope of protection of this invention. Modifications, equivalent substitutions, or other improvements to the embodiments of this invention or a portion thereof that can be obtained by those skilled in the art through logical analysis, reasoning, or limited experimentation, based on the teachings of this invention or the foregoing embodiments, in conjunction with common knowledge, general technical knowledge, and / or existing technology, should all be included within the scope of protection of this invention.

Claims

1. A water guide strip suitable for use in a shower enclosure, the shower enclosure comprising a rotating door (71) and a bottom frame (72), the rotating door (71) being located above the bottom frame (72) and adapted to rotate to close or open; characterized in that: include A connector (11) adapted to be fixed below the rotating door (71); The rotating component (12) includes a first water-blocking strip (1221), a second water-blocking strip (1222), and a drainage section connected to each other. The drainage section is provided with a first drain outlet (1213). The rotating component (12) is rotatably connected to the connecting component (11) and is adapted to be subjected to force to rotate to a guide position when the rotating door (71) is closed and to rotate to a return water position when the rotating door (71) is open. In the guide position, the first water-blocking strip (1221) extends downward and inward. The second water-blocking strip (1222) is located outward of the first water-blocking strip (1221), and the second water-blocking strip (1222) extends downward and tilts outward; in the return water position, the first water-blocking strip (1221) extends upward and tilts inward, the bottom end of the second water-blocking strip (1222) is higher than the bottom frame (72), the first drain outlet (1213) is connected to the water storage space above the first water-blocking strip (1221) and is located inside the bottom frame (72).

2. A water guide strip as described in claim 1, characterized in that: The connector (11) is also provided with a third water-blocking strip (1121), which extends downward and tilts inward. The third water-blocking strip (1121) is adapted to abut against the upper surface of the first water-blocking strip (1221) when the rotating member (12) is in the return water position.

3. A water guide strip as described in claim 1, characterized in that: The connector (11) is also provided with a second drain outlet (1112), and the drain part is adapted to abut against the connector (11) in the return water position, so that the first drain outlet (1213) and the second drain outlet (1112) are connected.

4. A water guide strip as described in any one of claims 1-3, characterized in that: The connector (11) is provided with a first magnetic attraction part (1111), and the rotating part (12) is provided with a second magnetic attraction part (1211). The second magnetic attraction part (1211) is adapted to magnetically engage with the first magnetic attraction part (1111) in the return water position so that the rotating part (12) stops at the return water position.

5. A water guiding component, characterized in that: It includes a sliding member (2), a linkage assembly (3), and a water guide strip (1) as described in any one of claims 1-5; the sliding member (2) is adapted to slide in a horizontal direction with the rotating door (71) and drive the rotating member (12) to rotate through the linkage assembly (3).

6. A water-guiding component as described in claim 5, characterized in that: The linkage component (3) includes a slide rod (31), a connecting rod (32), and a biasing member (33); the slide rod (31) is adapted to slide in a vertical direction with the rotating door (71); the slide member (2) is provided with an abutting inclined surface (21), which is inclined relative to the vertical direction; the biasing member (33) is adapted to apply force to the slide rod (31) so that the upper end of the slide rod (31) is adapted to abut against the abutting inclined surface (21); The two ends of the connecting rod (32) are rotatably connected to the slide rod (31) and the rotating member (12), respectively.

7. A water guiding component as described in claim 5, characterized in that: The linkage component (3) includes a slide rod (31) and a biasing member (33). The slide rod (31) is adapted to slide in a vertical direction with the rotating door (71). The slide member (2) is provided with an abutting inclined surface (21), which is inclined relative to the vertical direction. The biasing member (33) is adapted to apply force to the slide rod (31) so that the upper end of the slide rod (31) is adapted to abut against the abutting inclined surface (21). The slide bar (31) is provided with a strip groove (3112) extending in the horizontal direction, and the rotating member (12) is provided with a toggle part (1212) adapted to slide with the strip groove (3112) to make the rotating member (12) rotate.

8. A water guiding component as described in claim 6 or 7, characterized in that: It also includes a first magnetic chuck (41) and a second magnetic chuck (42), the first magnetic chuck (41) being fixed to the sliding member (2), and the second magnetic chuck (42) being adapted to be fixed relative to the rotating door (71) and magnetically engaged with the first magnetic chuck (41) when the rotating member (12) is in the guide position.

9. A shower enclosure, characterized in that: The device includes a lock block (51), a magnetic lock assembly (52), a reset magnetic block (53), a rotating door (71), a bottom frame (72), and a water guide strip (1) as described in any one of claims 1-4 or a water guide assembly as described in any one of claims 5-8; the magnetic lock assembly (52) and the reset magnetic block (53) are mounted on a fixed door (73) or a door frame; the rotating door (71) is provided with a lock hole (711), the lock block (51) is slidably connected to the rotating door (71), and is adapted to magnetically engage with the magnetic lock assembly (52) when it is slid to the locked position, so that the magnetic lock assembly (52) slides and extends into the lock hole (711); the reset magnetic block (53) is adapted to magnetically engage with the magnetic lock assembly (52) when the lock block (51) moves to the unlocked position to disengage from the magnetic engagement with the magnetic lock assembly (52), so that it exits the lock hole (711).

10. A shower room as described in claim 9, characterized in that: It also includes a first locking magnet (54) and a second locking magnet (55), the first locking magnet (54) being fixed to the rotating door (71), and the second locking magnet (55) being fixed to the lock block (51). The first locking magnet (54) is adapted to magnetically engage with the second locking magnet (55) when the lock block (51) slides to the unlock position, so that the magnetic lock assembly (52) is adapted to exit the keyhole (711).

11. A shower room as described in claim 9, characterized in that: It also includes an operating component (6), a sliding component (2), and a linkage component (3); the sliding component (2) is adapted to slide and cooperate with the rotating door (71) in the horizontal direction, and drives the rotating component (12) to rotate through the linkage component (3); the operating component (6) is rotatably connected to the rotating door (71), and is adapted to drive the sliding component (2) and the locking block (51) to slide, and when the locking block (51) is in the locked position, the sliding component (2) causes the rotating component (12) to rotate to the guide position, and when the locking block (51) is in the unlocked position, the sliding component (2) causes the rotating component (12) to rotate to the return water position.

12. A shower room as described in claim 11, characterized in that: The rotating member (12) is provided with a gear (61), which meshes with the sliding member (2) and the locking block (51) for transmission; or, the rotating member (12) is provided with a first pushing part (62) and a second pushing part (63), and the sliding member (2) and the locking block (51) are provided with a first pushing groove (22) and a second pushing groove (511) for the first pushing part (62) and the second pushing part (63) to be inserted respectively.