A sliding door shower room

CN224747921UActive Publication Date: 2026-09-15ZHEJIANG YUQUAN BATHROOM TECH
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Patent Information

Application Number
CN202522240417.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-23
Publication Date
2026-09-15
Estimated Expiration
2035-10-23

AI Technical Summary

Technical Problem

该淋浴房的结构较为复杂,安装不方便,且拉杆横铝Ⅰ是固定在玻璃顶端,侧向稳定性较差

Benefits of technology

[0016]Beneficial Effects: The design of the fixing components in this utility model simplifies and speeds up the installation process of the shower enclosure, reducing installation steps and required tools, lowering the skill requirements for installers, thereby shortening installation time, improving installation efficiency, and reducing installation costs. The connections between the various components of the shower enclosure are more robust and reliable, effectively preventing loosening or detachment of components due to external forces or long-term use, enhancing the lateral stability and service life of the shower enclosure, and improving safety. Stable installation of the shower enclosure can be achieved without a complex door frame structure, resulting in a simpler door frame structure, reduced material usage, lower production costs, and a more streamlined and aesthetically pleasing appearance.

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Abstract

The utility model discloses a casement door shower room relates to shower room technical field, including being located at left and right sides a plurality of frame sections, and the installation groove in left frame section is equipped with first fixed glass, and the installation groove in right frame section is equipped with second fixed glass, the right side of first fixed glass is hinged with movable glass, and the inboard of first fixed glass top is equipped with fixed assembly, and is equipped with first fixed claw and first fixed glass fixed on fixed assembly, and one end is equipped with second fixed claw and second fixed glass fixed, and the other end is fixed on the wall top wall. The utility model discloses through setting first fixed claw, simplifies the structure and improves the lateral stability of shower room simultaneously, and the lateral force when opening and closing is dispersed, and the installation difficulty of shower room is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of shower room structure, and in particular to a swing door shower room. Background Technology

[0002] In existing shower enclosure designs, the glass is typically fixed to the top of the glass with a horizontal bar. This method has several problems. Installation is extremely inconvenient, requiring work at the top of the glass in confined space. Installers often need to spend considerable time and effort on precise installation, and even slight errors can result in an insecure installation. Secondly, lateral stability is poor. Because the horizontal bar is only fixed at the top, the glass is prone to wobbling under lateral forces, affecting the user experience and even posing safety hazards. Furthermore, during the opening and closing of the shower enclosure door, the horizontal bar can easily interfere with the door frame or other components, causing uneven operation, affecting lifespan, and potentially damaging the glass or the fixing components. Therefore, there is an urgent need for a new type of shower enclosure glass fixing device to solve the problems of inconvenient installation, poor lateral stability, and interference during opening and closing in existing technologies.

[0003] Chinese Patent Publication No. CN211974681U, Publication Date: November 20, 2020, discloses a Chinese patent entitled "Anti-Sagging Structure for Inward and Outward Opening Hinged Doors," comprising a horizontal aluminum rod I and a horizontal aluminum rod II. The horizontal aluminum rod I connects a fixed glass I and an inward and outward opening glass door, and the horizontal aluminum rod II connects to the fixed glass II. Two inward and outward opening hinges are provided between the fixed glass I and the inward and outward opening glass door, respectively located at the top and bottom of the fixed glass I and the inward and outward opening glass door. Each inward and outward opening hinge includes a fixing component, a movable component, a fastener I, and a fastener II. The fixing component is fixed to the fixed glass I, and the movable component is fixed to the inward and outward opening glass door. The fixing component and the fixed glass I are provided with matching mounting holes I, which are fixed by fastener I. The top of the fixing component is provided with a connecting hole for fixing to the horizontal aluminum rod I, and the horizontal aluminum rod I is provided with an oblong hole that matches the position of the connecting hole, which is fixed by screws. The shower enclosure has a relatively complex structure, making installation inconvenient. Furthermore, the horizontal aluminum rod I is fixed to the top of the glass, resulting in poor lateral stability. Utility Model Content

[0004] This utility model provides a swing door shower room. By setting a first fixing claw, the structure is simplified while improving the lateral stability of the shower room, dispersing the lateral force when opening and closing, and reducing the installation difficulty of the shower room.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a hinged shower room, comprising a plurality of frame profiles located on the left and right sides respectively, a first fixed glass is provided in the mounting groove of the left frame profile, and a second fixed glass is provided in the mounting groove of the right frame profile; a movable glass is hinged to the right side of the first fixed glass, a fixing component is provided on the inner side of the top of the first fixed glass, the fixing component is provided with a first fixing claw and the first fixed glass is fixed, a second fixing claw and the second fixed glass are provided at one end, and the other end is fixed to the top wall.

[0006] Preferably, the movable glass is fixedly installed in the slot of the first mounting component on the side closest to the second fixed glass, and the second fixed glass is fixedly installed in the slot of the second mounting component on the side closest to the movable glass. Both the first and second mounting components are elastic. The width of the slot is slightly larger than the thickness of the first and second fixed glass, and the slot wall is provided with barbs for fixing the first and second fixed glass. This effectively prevents the glass from loosening or falling off due to external force during use, enhances the connection stability between the glass and the mounting component, and further improves the overall safety of the shower enclosure.

[0007] Preferably, both the first and second mounting members have chamfers on their opposite sides, allowing them to fit together. The first and second mounting members are arranged perpendicular to each other. The chamfer design ensures a tighter fit between the first and second mounting members, better distributing stress and preventing damage due to stress concentration.

[0008] Preferably, the first and second mounting members have a second mounting groove on their mating edges, and a magnetic strip is provided within the second mounting groove. The magnetic strips attract each other, causing the movable glass to fit tightly against the second fixed glass. The movable glass has a mounting hole near the first mounting member for mounting a handle. This makes the movable glass more stable when closed, reducing swaying caused by water flow impact or external forces, and improving the comfort and safety of the shower enclosure. It effectively prevents the elastic failure that occurs with long-term use of traditional flexible hinge structures.

[0009] Preferably, the mounting groove of the frame profile has several barbs on its sidewall, and the first and second fixed glass panes respectively contact the barbs. This further secures the glass, preventing it from sliding or shifting within the mounting groove, improving the connection stability between the glass and the frame profile, and thus enhancing the overall structural reliability of the shower enclosure.

[0010] Preferably, one end of the first fixing claw is fixed to the first crossbar of the fixing assembly, and the other end is clamped to the top of the first fixed glass. The first crossbar and the first fixed glass are parallel, and there is a gap between the movable glass and the first crossbar, which is parallel to each other. This not only makes assembly easier than the traditional method of placing the fixing assembly on the top of the movable glass, but also avoids interference during opening and closing, thus enhancing stability.

[0011] The first fixing claw is fixed to the side of the first fixed glass closest to the movable glass, and the left and right side frame profiles are respectively fixed to the wall sidewalls. The mounting groove sidewalls are equipped with retaining edges, which abut against the first and second fixed glass respectively. This fixing method of the first fixing claw ensures the stability of the first fixed glass at the top, preventing the glass from tilting or loosening due to external forces. The retaining edge design effectively prevents horizontal displacement of the glass within the mounting groove, further improving the connection stability between the glass and the frame profiles, and also providing additional protection for the glass, preventing damage from collisions with the frame profiles during installation or use.

[0012] Preferably, the second fixing claw is clamped at the top of the second fixed glass, and a fixing block is provided at one end of the first crossbar, which is fixed to the wall. The clamping end of the first fixing claw is a rectangular claw with an open bottom surface and a fixing hole through its inner side. The clamping end is located near the hinge of the movable glass. The location of the clamping end increases the lateral stability of the shower room, which can disperse the force at the hinge point when the movable glass is frequently opened and closed, thus dispersing lateral forces and enhancing stability. The clamping end structures of the first and second fixing claws are identical. A gap is provided between the first crossbar and the first fixed glass. This ensures the firmness of the second fixed glass at the top and prevents the glass from loosening or falling off due to external forces. The fixed connection between the fixing block and the wall allows the fixing assembly to be more firmly fixed to the wall, enhancing the support capacity and stability of the fixing assembly, thereby improving the overall structural reliability of the shower room.

[0013] Preferably, a second crossbar is provided at the bottom of the movable glass, and the movable glass and the second crossbar do not contact each other. This avoids friction or collision between the movable glass and the second crossbar during opening and closing, thereby reducing the risk of glass wear and damage. The first mounting component and the second crossbar do not contact each other.

[0014] Preferably, the second crossbar has fixing members at both ends, and the two fixing members are set perpendicular to each other. This enhances the overall structural strength of the shower enclosure. This design also helps to improve the service life of the shower enclosure, while making the structure more compact and the appearance more concise and aesthetically pleasing.

[0015] Preferably, the bottom ends of the first and second fixed glass panes are fixed to the fasteners. The first and second fixed glass panes provide support, simplifying the door frame structure, eliminating the need for columns, saving materials, reducing the installation difficulty of the shower enclosure, and making the shower enclosure more aesthetically pleasing. The second mounting bracket is fixed to the fastener.

[0016] Beneficial Effects: The design of the fixing components in this utility model simplifies and speeds up the installation process of the shower enclosure, reducing installation steps and required tools, lowering the skill requirements for installers, thereby shortening installation time, improving installation efficiency, and reducing installation costs. The connections between the various components of the shower enclosure are more robust and reliable, effectively preventing loosening or detachment of components due to external forces or long-term use, enhancing the lateral stability and service life of the shower enclosure, and improving safety. Stable installation of the shower enclosure can be achieved without a complex door frame structure, resulting in a simpler door frame structure, reduced material usage, lower production costs, and a more streamlined and aesthetically pleasing appearance. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this utility model.

[0018] Figure 2 for Figure 1 Enlarged view of point A.

[0019] Figure 3 for Figure 1 Enlarged view at point B.

[0020] Figure 4 for Figure 1 Enlarged view at point C.

[0021] Figure 5 This is a cross-sectional view of the first fixed claw.

[0022] Reference numerals: 1: First fixed glass; 2: Second fixed glass; 3: Frame profile; 4: Mounting groove; 5: Barb; 6: Edge guard; 7: Fixing component; 8: Fixing block; 9: First crossbar; 10: First fixing claw; 11: Second fixing claw; 12: Moving glass; 13: First mounting component; 14: Second mounting component; 15: Slot; 16: Second mounting groove; 17: Magnetic strip; 18: Second crossbar; 19: Fixing component. Detailed Implementation

[0023] The structurally stable swing door shower enclosure provided by this utility model, through the multi-directional fixing of the fixing component 7 and the auxiliary support of the edge and fixing parts 19, simplifies the installation process while greatly improving the overall structural stability and safety of use, avoiding the problems of complicated installation and high cost caused by traditional shower enclosures relying on complex columns or door frames.

[0024] exist Figure 1In the illustrated embodiment, the swing-door shower enclosure of this invention uses the left and right side frame profiles 3 as the basic support to construct an opening structure of "fixed glass + movable glass 12". Simultaneously, through innovative design of the fixing component 7 and elastic mounting parts, the structure is simplified while enhancing connection reliability. The first fixed glass 1 is fixed in the mounting groove 4 of the left side frame profile 3, and the second fixed glass 2 is fixed in the mounting groove 4 of the right side frame profile. The two fixed glass pieces form fixed barriers on both sides of the shower enclosure. The right side of the first fixed glass 1 is connected to the movable glass 12 via a hinge structure. The movable glass 12 can rotate around the hinge point to realize the opening and closing of the shower enclosure. The fixing component 7 on the inner side of the top of the first fixed glass 1: This component is fixed to the first fixed glass 1 by the first fixing claw 10 and to the second fixed glass 2 by the second fixing claw 11. Simultaneously, the other end is directly fixed to the top wall, forming a triangular stable support of "glass-component-top wall", completely solving the structural weakness problem caused by the traditional shower enclosure relying solely on the frame for load-bearing, and significantly improving overall stability.

[0025] exist Figure 2 In the preferred embodiment shown, the movable glass 12 is engaged in the slot 15 of the first mounting member 13 near the side of the second fixed glass 2, and the corresponding side of the second fixed glass 2 is engaged in the slot 15 of the second mounting member 14. Both mounting members are made of elastic material, and the width of their slots 15 is slightly larger than the thickness of the glass. The elastic material can tightly wrap the side of the glass through its own deformation, avoiding damage to the glass caused by hard contact. At the same time, the slightly wider slot width facilitates glass installation and reduces the risk of bumps during assembly. The barb structure on the wall of the slot 15 further locks the glass position: the barb protrudes inward into the slot 15. After the glass is engaged, the barb can hook the edge of the glass, preventing the glass from loosening or falling off due to external forces (such as water flow impact or accidental collision) during use.

[0026] exist Figure 2In the preferred embodiment shown, the chamfered fit and perpendicular arrangement of the first mounting member 13 and the second mounting member 14 further optimize structural stability and stress dispersion capabilities. Both mounting members have chamfered edges on opposite sides. When the movable glass 12 is closed, the chamfered surfaces can completely fit together, forming a tight seal and reducing the risk of leakage from gaps. Simultaneously, the chamfered design ensures that the contact surfaces of the two mounting members transition at an angle rather than a right-angle collision, evenly distributing external forces (such as the impact force when the movable glass 12 is closed) across the entire mounting component, preventing stress concentration at the contact edge and thus avoiding breakage or deformation of the mounting component. The two mounting members are perpendicular to each other, forming a "right-angle support" structure together with the movable glass 12 and the second fixed glass 2: the first mounting member 13 extends along the side of the movable glass 12, and the second mounting member 14 extends along the side of the second fixed glass 2. This vertical arrangement ensures that the force directions of the two mounting members are perpendicular to each other, resisting both lateral forces along the glass plane and longitudinal forces perpendicular to the glass, further enhancing the impact resistance of the glass connection and ensuring that the mounting components maintain structural integrity after long-term use.

[0027] exist Figure 2 In the preferred embodiment shown, the arrangement of the magnetic strip 17 and the layout of the handle mounting hole solve the failure problem of traditional elastic hinge structures and improve ease of use. A second mounting groove 16 is provided on the mating edge of the first mounting member 13 and the second mounting member 14. The magnetic strip 17 embedded in the groove can attract each other. When the movable glass 12 is closed, the attraction of the magnetic strip 17 allows the movable glass 12 to fit tightly against the second fixed glass 2, preventing glass wobbling caused by water flow impact or slight collisions. Compared with the traditional closure method that relies on hinge elasticity, the attraction of the magnetic strip 17 is more stable and durable, and will not fail due to elastic fatigue after long-term use, significantly extending the service life of the shower enclosure. The movable glass 12 has a mounting hole near the first mounting member 13 for fixing the handle. The handle position is ergonomically designed so that when the operator opens and closes the door, the point of force applied by the hand is close to the center of gravity of the glass, making it easy to push the movable glass 12 to rotate. At the same time, the mounting hole is located near the first mounting member 13, making it easier to open the movable glass 12.

[0028] exist Figure 3In the preferred embodiment shown, the barb 5 structure within the mounting groove 4 of the frame profile 3 provides additional anti-displacement protection for the fixed glass. Several barbs 5 are evenly distributed on the sidewalls of the mounting groove 4 on the left and right sides of the frame profile 3. When the first fixed glass 1 and the second fixed glass 2 are respectively inserted into the mounting groove 4, the barbs 5 will make tight contact with the glass surface, forming a physical clamp. The barbs 5 are inclined inwards towards the mounting groove 4, allowing the glass to be smoothly pushed in during insertion. After insertion, the barbs 5 will prevent the glass from sliding outwards or shifting up and down. Traditional mounting grooves rely solely on the friction between the glass and the groove wall for fixation. With prolonged use, the glass is prone to loosening due to vibration or temperature changes. The barb 5 structure, however, uses mechanical clamping to firmly lock the glass within the mounting groove 4. Even in humid environments where moisture lubricates the glass surface, the fixation effect is maintained, ensuring the fixed glass remains in the correct position and does not shift or tip over, thereby enhancing the overall structural reliability of the shower enclosure.

[0029] In actual installation and use, the structural advantages of this shower enclosure are particularly evident: During installation, the frame profile 3 is first fixed to the wall and floor, and the first fixed glass 1 and the second fixed glass 2 are inserted into the mounting groove 4, where the barbs 5 automatically clamp the glass. Next, the fixing component 7 is installed, and the two glass panels are fixed by the first fixing claw 10 and the second fixing claw 11 respectively. Then, the top of the component is fixed to the top wall to complete the triangular support. Finally, the first mounting piece 13, the second mounting piece 14, and the magnetic strip 17 are installed, and the handle is fixed for immediate use. No complicated tools are required throughout the process, significantly reducing the difficulty of installation. During use, when the movable glass 12 is closed, the magnetic strip 17 is tightly attracted without shaking or abnormal noise. When water flows or there is an accidental collision, the barbs 5 and the fixing component 7 work together to resist external forces, keeping both the glass and the mounting pieces stable, completely solving the problems of loosening and leakage in traditional shower enclosures.

[0030] exist Figure 1 , Figure 4 and Figure 5In the preferred embodiment shown, the design of the first fixing claw 10 and the first crossbar provides precise and stable fixation for the top of the first fixed glass 1. One end of the first fixing claw 10 is firmly fixed to the first crossbar 9 of the fixing assembly 7, while the other end is clamped onto the top edge of the first fixed glass 1. This "one-end fixed, one-end clamping" structure can restrict the displacement of the first fixed glass 1 from the top and bottom, preventing the glass from coming off upwards and avoiding the glass from sliding downwards due to gravity. The first crossbar 9 is kept parallel to the first fixed glass 1, ensuring that the clamping force of the first fixing claw 10 on the glass is evenly distributed at the top of the glass, without local stress concentration, avoiding the risk of breakage due to uneven force. At the same time, the first fixing claw 10 is specifically fixed to the side of the first fixed glass 1 close to the movable glass 12. This position can specifically enhance the stability of the connection between the two glass panes: the impact force generated when the movable glass 12 is opened and closed is easily transmitted to the side of the first fixed glass 1, and the fixation of the first fixing claw 10 at this location can effectively resist the impact force and prevent the first fixed glass 1 from tilting or loosening. The frame profiles 3 on the left and right sides are fixed to the wall sidewalls respectively, further limiting the fixed glass from the horizontal direction. Together with the vertical fixing of the first fixing claw 10, a "two-way fixing" is formed, so that the first fixed glass 1 always maintains a stable posture during use.

[0031] exist Figure 3 In the preferred embodiment shown, the retaining edge 6 structure inside the mounting groove 4 is a crucial supplement to prevent horizontal displacement of the glass. The retaining edge 6 protrudes from the side wall of the mounting groove 4. When the first fixed glass 1 and the second fixed glass 2 are inserted into the mounting groove 4, the retaining edge 6 will tightly abut against the side of the glass, restricting its movement from the left and right directions. Traditional mounting grooves rely solely on the gap between the glass and the groove wall for fixation. The glass is prone to horizontal sliding due to water flow impact or slight collisions, leading to friction damage between the glass edges and the groove wall. The retaining edge 6 completely solves this problem: it directly blocks lateral displacement of the glass. Even under external impact, the glass will only wobble slightly within the range defined by the retaining edge 6, without significant displacement. Simultaneously, the retaining edge 6 prevents direct collision between the glass and the groove wall of the mounting groove 4 during installation. During installation, the glass can be slowly inserted into the mounting groove 4 guided by the retaining edge 6, reducing edge damage and providing additional protection for the glass, thus extending its service life.

[0032] exist Figure 1In the preferred embodiment shown, the design of the second fixing claw 11 and the fixing block 8 further strengthens the top fixation of the second fixed glass 2 and the overall support of the fixing component 7. The second fixing claw 11 also adopts a clamping structure and is sleeved on the top of the second fixed glass 2 to ensure that the second fixed glass 2 and the first fixed glass 1 maintain the same top fixation strength, avoiding overall structural imbalance caused by loosening of one side of the glass. One end of the first crossbar 9 is provided with a fixing block 8, which is tightly fixed to the top wall by expansion screws and other connecting parts. This "crossbar-fixing block 8-top wall" connection method directly transmits the force of the fixing component 7 to the wall, rather than relying on the glass or frame profile 3 for load bearing, greatly improving the support capacity of the fixing component 7. Especially when the movable glass 12 vibrates due to frequent opening and closing, the fixing block 8 can stably absorb the vibration energy, prevent the fixing component 7 from shifting, and thus ensure the positional stability of the two fixed glass panes. In addition, a small gap is reserved between the first crossbar 9 and the first fixed glass 1. This gap design can prevent the glass from being squeezed by the first crossbar 9 when the glass expands and contracts due to temperature changes, thus preventing the glass from breaking. At the same time, it provides space for fine-tuning the position during installation, reduces the installation accuracy requirements, and simplifies the operation process.

[0033] exist Figure 1 In the preferred embodiment shown, the non-contact design between the bottom of the movable glass 12 and the second crossbar 18 effectively reduces the risk of glass wear and collision. The second crossbar 18 is horizontally positioned at the bottom of the shower enclosure to connect the two side fixing members 19, but the movable glass 12 does not contact the second crossbar 18. When the movable glass 12 rotates around the hinge point, its bottom will not rub against the second crossbar 18, avoiding long-term friction that could cause wear or scratches on the glass edges, while also eliminating noise generated by friction and improving the user experience. The first mounting member 13 also maintains a distance from the second crossbar 18, further preventing interference between components: when the first mounting member 13 moves with the movable glass 12, it will not collide with the second crossbar 18, ensuring smooth and unobstructed opening and closing of the movable glass 12 and reducing the probability of mechanical failure. This non-contact design protects the structural integrity of the glass and components, extends the service life of the shower enclosure, and avoids frequent maintenance problems caused by component collisions in traditional structures.

[0034] exist Figure 1In the preferred embodiment shown, the fixing members 19 at both ends of the second crossbar 18 are vertically arranged to construct a stable support frame for the bottom of the shower enclosure. The fixing members 19 are respectively fixed to both ends of the second crossbar 18, and the length directions of the two fixing members 19 are perpendicular to each other. Simultaneously, the high-strength material of the fixing members 19 ensures that they can withstand the weight of the fixed glass and the movable glass 12, providing reliable bottom support for the entire shower enclosure and further enhancing the overall structural stability. The bottom ends of the first fixed glass 1 and the second fixed glass 2 are directly fixed to the fixing members 19. This design completely simplifies the door frame structure of traditional shower enclosures. Traditional shower enclosures require independent columns or door frames to fix the glass, which is not only complex to install but also increases material costs. This invention, however, directly fixes the bottom ends of the glass using the fixing members 19, utilizing the rigidity of the glass itself to achieve the support function, eliminating the need for additional columns. The first fixed glass 1 and the second fixed glass 2 form a complete vertical support from the top fixing component 7 to the bottom fixing member 19, ensuring structural stability while reducing the number of components. The second mounting bracket 14 is also fixed to the fixing bracket 19, making the connection between the second fixed glass 2 and the fixing bracket 19 tighter and further strengthening the bottom fixing effect. This design not only saves material costs, but also makes the shower room look simpler, without extra pillars to block the view, making it more transparent. At the same time, it reduces the difficulty of installation: there is no need to align the complicated door frame and glass positions. You only need to insert the bottom end of the glass into the slot 15 of the fixing bracket 19 to complete the fixing, which greatly shortens the installation time.

[0035] During actual installation, the synergistic effect of each component demonstrates significant convenience and stability: First, the left and right frame profiles 3 are fixed to the wall sidewalls, and the first fixed glass 1 and the second fixed glass 2 are inserted, with the retaining edge 6 automatically abutting against the glass to limit lateral displacement; next, the top fixing component 7 is installed, clamping the top of the glass with the first fixing claw 10 and the second fixing claw 11, and the fixing block 8 is fixed to the top wall; then, the bottom second crossbar 18 and the fixing piece 19 are installed, fixing the bottom of the glass to the fixing piece 19; finally, the movable glass 12 and the first and second mounting pieces 14 are installed, ensuring that the movable glass 12 does not contact the second crossbar 18 and the first mounting piece 13. The entire process requires no complicated tools, only simple bolt fixing, requiring low skill from installers and greatly improving installation efficiency. In use, the movable glass 12 opens and closes smoothly without friction, and all fixing points are firm and reliable, ensuring that it will not loosen or shift even after long-term use, fully meeting users' needs for the stability and safety of the shower room.

[0036] In summary, this utility model, through the bidirectional clamping of the top fixing component 7, the vertical support of the bottom fixing component 19, and the lateral limiting design of the edge 6, constructs a structurally stable and easily installed swing-door shower enclosure. This design simplifies the installation process, reduces costs, ensures long-term stability and safety, and also maintains a simple and aesthetically pleasing appearance. It solves many pain points of traditional shower enclosures and provides an efficient and reliable shower space solution.

Claims

1. A hinged shower enclosure, characterized in that, It includes several frame profiles located on the left and right sides respectively. The mounting groove of the left frame profile is provided with a first fixed glass, and the mounting groove of the right frame profile is provided with a second fixed glass. A movable glass is hinged to the right side of the first fixed glass. A fixing component is provided on the inner side of the top of the first fixed glass. The fixing component is provided with a first fixing claw and a first fixed glass fixing, a second fixing claw and a second fixed glass fixing at one end, and the other end is fixed to the top wall.

2. The hinged door shower enclosure according to claim 1, characterized in that, The mounting groove of the frame profile has several barbs on its side wall, and the first fixed glass and the second fixed glass are in contact with the barbs respectively.

3. A hinged shower enclosure according to claim 2, characterized in that, The mounting groove has a retaining edge on its side wall, which abuts against the first fixed glass and the second fixed glass respectively.

4. A hinged shower enclosure according to claim 1, characterized in that, The movable glass is fixedly installed in the slot of the first mounting component on the side closest to the second fixed glass, and the second fixed glass is fixedly installed in the slot of the second mounting component on the side closest to the movable glass.

5. A hinged shower enclosure according to claim 4, characterized in that, Both the first and second mounting parts have chamfers on opposite sides and fit together. The first and second mounting parts have a second mounting groove on the fitting edge, and a magnetic strip is provided in the second mounting groove.

6. A hinged shower enclosure according to claim 1, characterized in that, One end of the first fixing claw is sleeved and fixed on the first crossbar of the fixing assembly, and the other end is clamped and fixed on the top of the first fixed glass. There is a gap between the movable glass and the first crossbar, and they are arranged in parallel.

7. A hinged shower enclosure according to claim 1 or 6, characterized in that, The first fixing claw has a rectangular claw with an open bottom surface and a fixing hole through its inner side. The clamping end is located near the hinge of the movable glass.

8. A hinged shower enclosure according to claim 6, characterized in that, The second fixing claw is clamped at the top of the second fixed glass, and a fixing block is provided at one end of the first crossbar, which is fixed to the top wall.

9. A hinged shower enclosure according to claim 1 or 4, characterized in that, The bottom of the movable glass is equipped with a second crossbar, and the movable glass and the second crossbar do not contact each other.

10. A hinged shower enclosure according to claim 9, characterized in that, The second crossbar is provided with fixing parts at both ends. The length directions of the two fixing parts are perpendicular to each other. The bottom ends of the first fixed glass and the second fixed glass are fixed to the fixing parts respectively.

Citation Information

Patent Citations

  • Sagging prevention structure of inward-outward opening hinge door

    CN211974681U