Guide device and shower room

By incorporating grooves and water-blocking edges on the guide blocks, combined with adjusting blocks and components, the problem of water overflow from the shower enclosure guide blocks is solved, achieving water backflow and splash prevention, thus improving the cleanliness and safety of the shower enclosure.

CN223937901UActive Publication Date: 2026-02-24FOSHAN SANSHUI KAILEDE BATHROOM CO LTD
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Patent Information

Application Number
CN202520348813.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-24
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

The existing shower enclosure guide blocks prevent water from draining quickly during showering, leading to water accumulation and overflow, which poses a safety hazard.

Method used

Design a guiding device including a guide block and a water-blocking edge. The guide block is provided with a groove and the water-blocking edge is inclined towards the groove. Combined with an adjusting block and adjusting parts, it can adapt to door glass of different thicknesses and achieve water backflow and splash prevention effects.

Benefits of technology

It effectively prevents water splashing and overflow, improves the cleanliness and safety of the shower room, reduces the cost and maintenance difficulty of replacing the guide device, and enhances the stability and aesthetics of the guide device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of bathroom devices, and discloses a guide device and a shower room, and the guide device comprises a guide block and a water retaining edge. The guide block is suitable for being connected with a guide rail, a groove is formed in the first face of the guide block, the two ends, in the axial direction, of the groove penetrate through the guide block, and the groove is suitable for being in sliding fit with door glass. The edge, away from the groove, of the first face is a first edge, the two edges, intersecting with the first edge, of the first face are a second edge and a third edge respectively, the water blocking edge is arranged on the first edge, and at least one of the second edge and the third edge is provided with the water blocking edge. The first face gradually inclines towards the groove bottom of the groove in the direction from the water retaining edge located on the first edge to the groove. Accumulated water can be prevented from being generated on the upper surfaces of the guide blocks and overflowing, and the peripheral ground of the shower room is kept dry.
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Description

Technical Field

[0001] This application relates to the field of bathroom fixtures technology, specifically to a guide device and a shower enclosure. Background Technology

[0002] As an important functional component of modern bathroom spaces, the structural design and performance of shower doors directly affect the user's bathing experience and the tidiness of the space. These products generally adopt a horizontal sliding structure, achieving smooth sliding through the cooperation of the door frame and guide device. The guide block installed at the bottom of the door frame, as the core guiding component, must withstand the weight of the sliding door while ensuring smoothness and sealing during the sliding process; it is a key factor determining the product's reliability.

[0003] In existing technologies, the guide blocks of shower room sliding doors mostly adopt a top-plane stepped structure design. Specifically, the main body of the guide block is made of engineering plastic or metal, and a horizontal platform extends laterally from its top, with the platform surface forming a continuous or discontinuous planar stepped structure. This step cooperates with the sliding component at the bottom of the sliding door to achieve the lateral guiding function through mechanical limiting.

[0004] However, such traditional guide blocks have significant technical drawbacks in practical applications. Because flat steps lack effective drainage and blocking structures, water splashing onto the step surface during showering cannot drain quickly, easily accumulating on the horizontal surface. As water accumulates, it overflows along the edges of the steps, making the area around the shower enclosure slippery and posing a safety hazard. Utility Model Content

[0005] This application provides a guiding device and a shower room to solve the problem that water splashed onto the surface of a step during showering cannot be drained quickly, easily forming water accumulation on the horizontal surface of the step. As the water accumulates, the water overflows outward along the edge of the step, causing the ground around the shower room to become slippery and posing a safety hazard.

[0006] In a first aspect, this application provides a guiding device suitable for fixing on a guide rail and guiding a door glass panel, comprising a guide block and a water-blocking edge. The guide block is adapted to connect with the guide rail, and a groove is provided on a first surface of the guide block. The two ends of the groove along its axial direction respectively penetrate the guide block, and the groove is adapted to slide with the door glass panel. The edge of the first surface away from the groove is designated as a first side, and the two edges of the first surface intersecting with the first side are designated as a second side and a third side respectively. The water-blocking edge is provided on the first side, and at least one of the second side and the third side is provided with the water-blocking edge. The first surface gradually slopes towards the bottom of the groove along the direction of the water-blocking edge located on the first side towards the groove.

[0007] Beneficial effects: The water-retaining edge effectively prevents water from splashing onto the guide block and overflowing the shower enclosure during showering, improving the cleanliness and safety of the shower room. The water-retaining edge is located on the first side, and at least one of the second and third sides also has a water-retaining edge, further enhancing the water-retaining effect. The design of the first surface gradually sloping towards the groove along the water-retaining edge allows accumulated water to flow smoothly back into the wet area of ​​the shower room, avoiding water stagnation and overflow.

[0008] In one optional embodiment, the first sidewall of the groove is provided with a receiving cavity, and further includes an adjusting block disposed in the receiving cavity. The adjusting block includes two opening and closing parts with an adjustable distance between them. One of the opening and closing parts extends out of the receiving cavity along the first sidewall toward the second sidewall of the groove, and the first sidewall and the second sidewall are disposed opposite to each other.

[0009] Beneficial effects: This guide device adjusts the opening degree of the two opening sections by controlling the position of the adjusting component, thereby accommodating different thicknesses of door glass and adjusting the relative gap between the opening section and the second side wall. This avoids replacing the entire guide device when changing to a different thickness of glass door, reducing costs and maintenance difficulty.

[0010] In one optional embodiment, the guide block has a through hole on its second surface, the first surface intersects the second surface, the through hole communicates with the receiving cavity, and further includes an adjusting member disposed in the through hole and whose position is adjustable along the axial direction of the through hole. The adjusting member is located between the two opening and closing parts and abuts against the two opening and closing parts, and is suitable for adjusting the distance between the two opening and closing parts.

[0011] Beneficial effects: By adjusting the position of the adjusting component in the through hole, the distance between the two opening parts can be adjusted, thereby adjusting the length of one of the opening parts extending from the receiving cavity, and thus enabling adaptive limiting adjustment for door glass of different thicknesses.

[0012] In one alternative embodiment, the first ends of the two opening and closing portions are connected along their axial direction, the distance between the second ends of the two opening and closing portions is adjustable, and the second end of one of the opening and closing portions extends from the receiving cavity along the first sidewall toward the second sidewall.

[0013] Beneficial effects: The connection design of the opening and closing part ensures the stability and adjustability of the adjusting block within the receiving cavity. The second end of the opening and closing part extends out of the receiving cavity and directly contacts the glass door, further enhancing the guiding and supporting functions of the guiding device and enabling adaptive adjustment to glass doors of different thicknesses.

[0014] In an optional embodiment, the system further includes a limiting block and a locking groove. The limiting block is disposed on the inner wall of the receiving cavity and is located between the two opening and closing portions. The locking groove is disposed on the inner wall of the receiving cavity, and the first ends of the two opening and closing portions are provided with locking portions, which engage with the locking groove.

[0015] Beneficial effects: The design of the limiting block and the snap-fit ​​groove increases the stability of the adjusting block within the receiving cavity, preventing accidental movement of the adjusting block during adjustment. The snap-fit ​​structure between the snap-fit ​​part and the snap-fit ​​groove simplifies the installation process and improves assembly efficiency.

[0016] In one alternative embodiment, one end of the adjusting member along its axial direction is located between the second ends of the two opening and closing portions, and the adjusting member abuts against the second ends of the two opening and closing portions.

[0017] Beneficial effects: The adjusting component is located between the second ends of the opening and closing parts and can be adjusted from the opening positions of the two opening and closing parts, thereby ensuring the precise adjustment of the distance between the opening and closing parts and thus achieving precise adaptation to door glass of different thicknesses.

[0018] In one alternative embodiment, a friction pad is provided on the second sidewall, and the line connecting the friction pad and the opening / closing portion extending from the receiving cavity is perpendicular to the axial direction of the groove.

[0019] Beneficial effects: The friction pad increases the friction between the opening / closing part and the glass door, improving the stability and safety of the guide device. The line connecting the friction pad and the opening / closing part is perpendicular to the groove axis, allowing the opening / closing part and the friction pad to contact the two opposite sides of the glass door, ensuring uniform distribution and effective transmission of friction.

[0020] In one optional embodiment, the guide block is provided with a third surface, which is disposed opposite to the first surface. The third surface is adapted to abut against the guide rail, and the abutting surface of the guide rail and the third surface matches the third surface.

[0021] Beneficial effects: The third side of the guide block abuts against the guide rail, ensuring the stability and firmness of the guide device on the guide rail. Furthermore, the contact surface between the guide rail and the third side matches the third side, further enhancing the connection strength between the guide device and the guide rail.

[0022] In an optional embodiment, the guide block further includes a cover, wherein the first surface of the guide block is provided with a connecting hole, the connecting hole penetrating the guide block along the direction from the first surface to the third surface, the guide block is adapted to be connected to the guide rail by a connector inserted into the connecting hole, and the cover is inserted into the connecting hole to block the opening of the connecting hole on the first surface.

[0023] Beneficial effects: The cover design seals the opening of the connection hole on the first surface, preventing water and other debris from entering the connection hole, thus protecting the connector and guide device from damage. The plug-in structure between the cover and the connection hole simplifies the installation process and improves assembly efficiency.

[0024] Secondly, this application also provides a shower enclosure, including a guide rail, a glass door, and the aforementioned guide device. The guide rail is connected to the guide block of the guide device via a connector of the guide device. The edge of the glass door is located within a groove of the guide device.

[0025] Since the shower enclosure includes a guide device, which has the same effect as a guide device, it will not be elaborated on here. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the specific embodiments of this application or the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0027] Figure 1 This is a top view of a guiding device according to an embodiment of this application;

[0028] Figure 2 This is an exploded view of a guiding device according to an embodiment of this application;

[0029] Figure 3 This is a cross-sectional view of a guiding device according to an embodiment of this application;

[0030] Figure 4 This is a side view of a guiding device according to an embodiment of this application;

[0031] Figure 5 This is a schematic diagram of the structure of a shower room according to an embodiment of this application;

[0032] Figure 6 for Figure 5 A magnified view of part A in the diagram.

[0033] Explanation of reference numerals in the attached figures:

[0034] 1. Guide rail; 2. Door glass; 3. Guide block; 3001. First surface; 3002. Groove; 3003. Receiving cavity; 3004. First side wall; 3005. Second surface; 3006. Through hole; 3007. Second side wall; 3008. Third surface; 3009. Connecting hole; 4. Adjusting block; 4001. Opening and closing part; 4002. Limiting block; 4003. Snap-fit ​​part; 5. Friction plate; 6. Cover; 7. Water-blocking edge; 8. Adjusting component. Detailed Implementation

[0035] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0036] The following is combined with Figures 1 to 6 This describes an embodiment of the present application.

[0037] According to an embodiment of this application, in one aspect, a guiding device is provided, suitable for fixing on a guide rail 1 and guiding a door glass 2. The guiding device includes a guide block 3 and a water-blocking edge 7. The guide block 3 is adapted to connect with the guide rail 1. By providing a groove 3002 on the first surface 3001 of the guide block 3, with both ends of the groove 3002 penetrating the guide block 3 along its axial direction, the groove 3002 is adapted to slide against the bottom edge of the door glass 2. The edge of the first surface 3001 away from the groove 3002 is designated as a first side, and the two edges of the first surface 3001 intersecting with the first side are designated as a second side and a third side, respectively. The water-blocking edge 7 is provided on the first side, and at least one of the second and third sides is provided with a water-blocking edge 7. The first surface 3001 gradually slopes towards the bottom of the groove 3002 along the direction of the water-blocking edge 7 towards the groove 3002.

[0038] In this embodiment, the water-blocking edge 7 effectively prevents water from splashing onto the guide block 3 and overflowing the shower room during showering, improving the cleanliness and safety of the shower room. The water-blocking edge 7 is located on the first side, and at least one of the second and third sides is also provided with a water-blocking edge 7, further enhancing the water-blocking effect. The design of the first surface 3001 gradually sloping towards the groove 3002 along the water-blocking edge 7 allows accumulated water to flow smoothly back into the wet area of ​​the shower room, avoiding water retention and overflow. This sloping design also improves the aesthetics and practicality of the guide device.

[0039] Optionally, the water-retaining edges 7 on the first, second, and third sides can be configured as an integral structure.

[0040] In one embodiment, a receiving cavity 3003 is provided on the first sidewall 3004 of the groove 3002, and a through hole 3006 is provided on the second surface 3005 of the guide block 3. The first surface 3001 and the second surface 3005 intersect, and the through hole 3006 connects to the receiving cavity 3003. An adjusting block 4 is placed in the receiving cavity 3003. The adjusting block 4 includes two opening and closing parts 4001. One of the opening and closing parts 4001 extends out of the receiving cavity 3003 along the first sidewall 3004 toward the second sidewall 3007 of the groove 3002, and the first sidewall 3004 and the second sidewall 3007 are arranged opposite to each other. The distance between the two opening and closing parts 4001 is adjustable. By controlling the distance between the two opening and closing parts 4001, the extension amount of the opening and closing part 4001 from the receiving cavity 3003 can be adjusted. Since the distance between the grooves 3002 is fixed, by controlling the extension amount of the opening and closing part 4001, the adaptation to door glass 2 of different thicknesses can be achieved. Since the through hole 3006 is connected to the receiving cavity 3003, and the adjusting member 8 is located between the two opening and closing parts 4001, and the adjusting member 8 abuts against the two opening and closing parts 4001, the adjusting member 8 is placed in the through hole 3006, and the position of the adjusting member 8 in the through hole 3006 along the axial direction of the through hole 3006 can be adjusted, thereby achieving the adaptation to door glass 2 of different thicknesses.

[0041] It should be noted that the first sidewall 3004 and the second sidewall 3007 are two sidewalls opposite to the groove 3002, and define the opening and closing direction of the two opening and closing parts 4001. That is, the two opening and closing parts 4001 open and close along the direction from the first sidewall 3004 to the second sidewall 3007 of the groove 3002, so that one of the opening and closing parts 4001 can extend out of the receiving cavity 3003, thereby realizing the adjustment of the distance between the opening and closing part 4001 and the second sidewall 3007, and thus adapting to door panels of different thicknesses.

[0042] In this embodiment, the guide device adjusts the opening degree of the two opening and closing parts 4001 by controlling the position of the adjusting member 8, so as to adjust the relative gap between the opening and closing parts 4001 and the second side wall 3007 to accommodate door glass 2 of different thicknesses. This avoids replacing the entire guide device when replacing glass doors of different thicknesses, reducing costs and maintenance difficulty.

[0043] In one embodiment, the first ends of the two opening and closing portions 4001 along their axial direction are connected, the distance between the second ends of the two opening and closing portions 4001 is adjustable, and the second end of one of the opening and closing portions 4001 extends out of the receiving cavity 3003 along the first sidewall 3004 toward the second sidewall 3007.

[0044] It should be noted that, referring to Figure 3The second ends of the two opening and closing parts 4001 can be set as arc-shaped structures, so that an included angle is formed between the second ends of the two opening and closing parts 4001. The opening and closing of the two opening and closing parts 4001 is realized by adjusting the member 8 and abutting the included angle position of the two opening and closing parts 4001.

[0045] In this embodiment, the connection design of the opening and closing part 4001 ensures the stability and adjustability of the adjusting block 4 within the receiving cavity 3003. The second end of the opening and closing part 4001 extends out of the receiving cavity 3003 and directly contacts the door glass 2, further enhancing the guiding and supporting functions of the guiding device and enabling adaptive adjustment to door glass 2 of different thicknesses.

[0046] In one embodiment, the system further includes a limiting block 4002 and a snap-fit ​​groove. The limiting block 4002 is disposed on the inner wall of the receiving cavity 3003 and is located between the two opening and closing portions 4001. The snap-fit ​​groove is disposed on the inner wall of the receiving cavity 3003, and the first end of the two opening and closing portions 4001 is provided with a snap-fit ​​portion 4003, which snaps into the snap-fit ​​groove.

[0047] It should be noted that the snap-fit ​​part 4003 can fix the position of the first end of the two opening and closing parts 4001, preventing the position of the first end of the two opening and closing parts 4001 from being relatively fixed when the adjusting member 8 squeezes the second end of the two opening and closing parts 4001. At the same time, the limiting block 4002 is set between the two opening and closing parts 4001, which can ensure that the two opening and closing parts 4001 can open and close to both sides of the limiting block 4002, preventing the two opening and closing parts 4001 from moving into the receiving cavity 3003, thereby ensuring that one of the opening and closing parts 4001 can stably extend out of the receiving cavity 3003.

[0048] Optionally, the two opening and closing parts 4001 and the snap-fit ​​part 4003 can be constructed as an integral structure, thereby increasing the overall connection strength and stability.

[0049] Optionally, a through groove can be provided between the two opening and closing parts 4001, so that the area on the opening and closing part 4001 located in the through groove is a weak area, thereby facilitating the opening and closing deformation of the two opening and closing parts 4001.

[0050] In this embodiment, the design of the limiting block 4002 and the snap-fit ​​groove increases the stability of the adjusting block 4 within the receiving cavity 3003, preventing accidental movement of the adjusting block 4 during the adjustment process. The snap-fit ​​structure between the snap-fit ​​part 4003 and the snap-fit ​​groove simplifies the installation process and improves assembly efficiency.

[0051] In one embodiment, one end of the adjusting member 8 along its axial direction is located between the second ends of the two opening and closing portions 4001, and the adjusting member 8 abuts against the second ends of the two opening and closing portions 4001.

[0052] It should be noted that, referring to Figure 3 The first end of the adjusting member 8 can be set as a pointed tip, which ensures that the first end of the adjusting member 8 can be accurately inserted between the two opening and closing parts 4001.

[0053] Optionally, the adjusting member 8 can be a screw, and the inner wall of the through hole 3006 can be threaded. The adjusting member 8 and the inner wall of the through hole 3006 are connected by threads, thereby realizing the stable adjustment and fixation of the screw position.

[0054] In this embodiment, the adjusting member 8 is located between the second ends of the opening and closing parts 4001 and can be adjusted from the opening position of the two opening and closing parts 4001, thereby ensuring the precise adjustment of the distance between the opening and closing parts 4001 and thus achieving precise adaptation to door glass 2 of different thicknesses.

[0055] In one embodiment, a friction plate 5 is provided on the second sidewall 3007, and the line connecting the friction plate 5 and the opening / closing portion 4001 extending from the receiving cavity 3003 is perpendicular to the axial direction of the groove 3002.

[0056] Optionally, the friction plate 5 may be embedded in the second sidewall 3007 or connected to the second sidewall 3007 by screws.

[0057] In this embodiment, the friction plate 5 increases the friction between the opening / closing portion 4001 and the door glass 2, improving the stability and safety of the guiding device. The line connecting the friction plate 5 and the opening / closing portion 4001 is perpendicular to the axial direction of the groove 3002, allowing the opening / closing portion 4001 and the friction plate 5 to contact the two opposite sides of the door glass 2 respectively, ensuring uniform distribution and effective transmission of friction.

[0058] In one embodiment, the guide block 3 is provided with a third surface 3008, which is disposed opposite to the first surface 3001. The third surface 3008 is adapted to abut against the guide rail 1, and the abutting surface of the guide rail 1 and the third surface 3008 matches the third surface 3008.

[0059] Optionally, the third surface 3008 can be configured as a plane or an inclined surface adapted to the guide rail 1.

[0060] In this embodiment, the third surface 3008 of the guide block 3 abuts against the guide rail 1, ensuring the stability and firmness of the guide device on the guide rail 1. Furthermore, the contact surface between the guide rail 1 and the third surface 3008 matches the third surface 3008, further enhancing the connection strength between the guide device and the guide rail 1.

[0061] In one embodiment, a cover 6 is also included. A connecting hole 3009 is provided on the first surface 3001 of the guide block 3. The connecting hole 3009 passes through the guide block 3 along the direction from the first surface 3001 to the third surface 3008. The guide block 3 is adapted to be connected to the guide rail 1 by a connector inserted into the connecting hole 3009. The cover 6 is inserted into the connecting hole 3009 and is adapted to block the opening of the connecting hole 3009 on the first surface 3001.

[0062] Optionally, the cover 6 includes a plug-in part and a sealing part. The plug-in part is plugged into the connection hole 3009, and the sealing part can abut against the first surface 3001, thereby sealing the connection hole 3009.

[0063] In this embodiment, the cover 6 is designed to block the opening of the connection hole 3009 on the first surface 3001, preventing water and other debris from entering the connection hole 3009, thereby protecting the connector and guide device from damage. The plug-in structure between the cover 6 and the connection hole 3009 simplifies the installation process and improves assembly efficiency.

[0064] In one embodiment, the second surface 3005 of the guide block 3 and the end surface opposite to the second surface 3005 are respectively provided with positioning grooves that are adapted to the guide rail 1 and the other door glass 2.

[0065] According to an embodiment of this application, another aspect provides a shower enclosure, including a guide rail 1, a door glass 2, and a guide device. The guide rail 1 is connected to the guide block 3 of the guide device via a connector of the guide device. The edge of the door glass 2 is located within a groove 3002 of the guide device.

[0066] Since the shower enclosure includes a guide device, which has the same effect as a guide device, it will not be elaborated on here.

[0067] Although embodiments of this application have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of this application, and all such modifications and variations fall within the scope defined by the appended claims.

Claims

1. A guiding device, suitable for fixing on a guide rail (1) and guiding a door glass (2), characterized in that, include: A guide block (3) is adapted to be connected to the guide rail (1). A groove (3002) is provided on the first surface (3001) of the guide block (3). The two ends of the groove (3002) along its axial direction pass through the guide block (3) respectively. The groove (3002) is adapted to slide with the door glass (2). The water-blocking edge (7) is provided on the first surface (3001) away from the groove (3002). The two edges on the first surface (3001) that intersect with the first edge are respectively provided as the second edge and the third edge. The water-blocking edge (7) is provided on the first edge, and at least one of the second edge and the third edge is provided with the water-blocking edge (7). The first surface (3001) gradually slopes towards the bottom of the groove (3002) along the direction of the water-blocking edge (7) located on the first edge toward the groove (3002).

2. The guiding device according to claim 1, characterized in that, The first sidewall (3004) of the groove (3002) is provided with a receiving cavity (3003), and further includes: An adjusting block (4) is disposed in the receiving cavity (3003). The adjusting block (4) includes two opening and closing parts (4001) with an adjustable distance between them. One of the opening and closing parts (4001) extends from the receiving cavity (3003) along the first side wall (3004) toward the second side wall (3007) of the groove (3002), and the first side wall (3004) and the second side wall (3007) are disposed opposite to each other.

3. The guiding device according to claim 2, characterized in that, The guide block (3) has a through hole (3006) on its second surface (3005), the first surface (3001) intersecting the second surface (3005), and the through hole (3006) communicating with the receiving cavity (3003). It also includes: An adjusting member (8) is disposed in the through hole (3006) and its position is adjustable along the axial direction of the through hole (3006). The adjusting member (8) is located between the two opening and closing parts (4001) and abuts against the two opening and closing parts (4001), which is suitable for adjusting the distance between the two opening and closing parts (4001).

4. The guiding device according to claim 3, characterized in that, The first ends of the two opening and closing parts (4001) along their axial direction are connected, the distance between the second ends of the two opening and closing parts (4001) is adjustable, and the second end of one of the opening and closing parts (4001) extends out of the receiving cavity (3003) along the first sidewall (3004) toward the second sidewall (3007).

5. The guiding device according to claim 4, characterized in that, Also includes: A limiting block (4002) is disposed on the inner sidewall of the receiving cavity (3003), and the limiting block (4002) is located between the two opening and closing parts (4001); A snap-fit ​​groove is provided on the inner side wall of the receiving cavity (3003), and the first end of the two opening and closing parts (4001) is provided with a snap-fit ​​part (4003), which snaps into the snap-fit ​​groove.

6. The guiding device according to claim 4, characterized in that, One end of the adjusting member (8) along its axial direction is located between the second ends of the two opening and closing portions (4001), and the adjusting member (8) abuts against the second ends of the two opening and closing portions (4001).

7. The guiding device according to claim 3, characterized in that, A friction plate (5) is provided on the second sidewall (3007), and the line connecting the friction plate (5) and the opening and closing part (4001) extending from the receiving cavity (3003) is perpendicular to the axial direction of the groove (3002).

8. The guiding device according to claim 2, characterized in that, The guide block (3) is provided with a third surface (3008), which is disposed opposite to the first surface (3001). The third surface (3008) is adapted to abut against the guide rail (1), and the contact surface between the guide rail (1) and the third surface (3008) matches the third surface (3008).

9. The guiding device according to claim 8, characterized in that, Also includes: The cover (6) has a connecting hole (3009) on the first surface (3001) of the guide block (3). The connecting hole (3009) passes through the guide block (3) along the first surface (3001) toward the third surface (3008). The guide block (3) is adapted to be connected to the guide rail (1) by a connector inserted into the connecting hole (3009). The cover (6) is inserted into the connecting hole (3009) and is adapted to block the opening of the connecting hole (3009) on the first surface (3001).

10. A shower enclosure, characterized in that, include: The guiding device according to any one of claims 1 to 9; The guide rail (1) is connected to the guide block (3) of the guide device through the connector of the guide device; The door glass (2) has its edge located within the groove (3002) of the guide device.