Shower room structure

By using the connection method of limiting protrusions and limiting holes, arc grooves and screw holes, and multi-angle internal interlocking connection, the problem of precise positioning and reliable fixing of shower room frame components is solved, improving the stability and convenience of the shower room, and realizing flexible opening and closing of the door panel and reasonable structural layout.

CN223824695UActive Publication Date: 2026-01-23FOSHAN JINZEZHISHENG HIGH-TECH CO LTD
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Patent Information

Application Number
CN202522607457.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-09
Publication Date
2026-01-23
Estimated Expiration
2035-12-09

AI Technical Summary

Technical Problem

Existing shower enclosure frame components are inadequate in terms of precise positioning and reliable fixing, affecting the overall structural stability and ease of assembly.

Method used

By employing the combination of limiting protrusions and limiting holes, and the connection method of arc grooves and screw holes, combined with a multi-angle internal snap-fit ​​connection structure, the frame components can be quickly positioned and stably connected. Furthermore, the flexible opening and closing of the door panel is ensured through the movable connection between the door clamp components and the frame components.

Benefits of technology

It improves the ease of installation of frame components and the overall structural strength, enhances the stability and durability of the shower room, and ensures the flexibility of the door panel and the coordination of the overall structure, meeting the usage needs of the bathroom space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shower rooms, and discloses a shower room structure which comprises a wall plate assembly, a door plate assembly, a frame assembly and a door clamp assembly. In the frame assembly, the limiting protrusion of the corner connecting piece is matched with the limiting hole of the first frame piece, accurate positioning of the corner connecting piece and the first frame piece can be rapidly achieved in the assembling process, the assembling process of the frame assembly is effectively simplified, and installation convenience is improved; the first screw holes corresponding to the first arc-shaped grooves are used for installing screws, so that the corner connecting pieces and the first frame pieces form stable and reliable fixed connection, the overall structural strength of the frame assembly is further enhanced, a firm installation foundation is provided for the wallboard assembly, and the stability and durability of the main body structure of the shower room are guaranteed. The door plate assembly is movably connected with the frame assembly through the door clamp assembly, and in cooperation with the closed-loop structural design of the frame assembly, the opening and closing flexibility of the door plate is ensured, the structural layout of the whole shower room is more reasonable, and the use convenience and the coordination of the whole structure are both considered.
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Description

Technical Field

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

[0002] As a common bathroom facility, shower rooms typically require the combination of multiple components to form an independent bathing space. Structural stability and ease of assembly are important aspects to consider during the design process. Generally, the main structure of a shower room is formed by wall panels, the upper and lower ends of which are often fixed by frame components to ensure the overall structural stability. Simultaneously, to meet entry and exit requirements, movable door panels are also needed, which are usually connected to the frame components to achieve opening and closing functionality.

[0003] As a crucial component for connecting and securing wall panels, the frame assembly's structural design directly impacts the overall stability and assembly efficiency of the shower enclosure. Common frame assemblies consist of multiple frame pieces and corner connectors, forming a closed-loop structure that provides a stable foundation for the wall panels. Achieving precise positioning and reliable fixation between the frame pieces and corner connectors is vital for ensuring the frame assembly's structural stability and ease of assembly; different connection methods will affect the overall performance of the frame assembly.

[0004] It is evident that existing technologies still need improvement and enhancement. Utility Model Content

[0005] In view of the shortcomings of the prior art, the purpose of this utility model is to provide a shower room structure that aims to solve the technical problem of how to accurately position and reliably fix the frame components in the prior art.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A shower enclosure structure includes several wall panel assemblies, at least one door panel assembly, and two frame assemblies. The upper and lower ends of the several wall panel assemblies are respectively fixedly connected by the two frame assemblies to form the main body of the shower enclosure. At least one door panel assembly is movably connected to the frame assembly through a door clamp assembly.

[0008] The frame assembly includes several first frame members and corner connectors. The two ends of the corner connectors are fixedly connected to two first frame members respectively to form a closed-loop frame assembly.

[0009] The first frame member is provided with a limiting hole along the length direction thereof, and a first arc-shaped slot is arranged on the inner wall of one side of the limiting hole along the length direction of the first frame member; the two ends of the corner connecting member are provided with a limiting protrusion and a first screw hole, the limiting protrusion is matched with the limiting hole and is arranged in the limiting hole, and the first screw hole corresponds to the first arc-shaped slot and is used for mounting a screw to realize the fixed connection of the corner connecting member and the first frame member.

[0010] The wallboard assembly comprises a wallboard body and a frame assembly surrounding the wallboard body, the frame assembly comprises a second frame member fixedly connected to the upper and lower ends of the wallboard body, and a third frame member and a fourth frame member fixedly connected to the left and right ends of the wallboard body; the third frame member of one wallboard assembly is assembled with the fourth frame member of an adjacent wallboard assembly through the multi-angle inscribed clamping connection structure.

[0011] The shower room structure, wherein the second frame member is provided with a second arc-shaped slot along the length direction thereof; the end of the third frame member is provided with a second screw hole perpendicular to the length direction thereof; the end of the fourth frame member is provided with a third screw hole perpendicular to the length direction thereof; the second screw hole and the third screw hole are fixedly connected with the two ends of the second arc-shaped slot through a screw, so as to realize the fixed connection of the second frame member with the third frame member and the fourth frame member and the surrounding of the wallboard body.

[0012] The shower room structure, wherein the first frame member is provided with a first step, the corner connecting member is provided with a second step, the first step is flush with the second step, the "L" shaped surface of the first step abuts against the adjacent two side surfaces of the second frame member, and the "L" shaped surface of the second step abuts against the ends of the third frame member and the fourth frame member.

[0013] The shower room structure, wherein the second frame member is provided with a plurality of fourth screw holes, and the plurality of fourth screw holes are equidistantly arranged along the length direction of the second frame member; the first frame member is provided with a first recess along the length direction thereof, and the first recess is located on the vertical surface of the first step; the fourth screw holes and the first recess are fixedly connected through a screw, so as to realize the fixed connection of the wallboard assembly and the frame assembly.

[0014] The shower room structure, wherein the multi-angle inscribed clamping connection structure comprises an inscribed matching part arranged on the third frame member, and an inscribed matching section and an inscribed bearing section arranged on the fourth frame member and matched with the inscribed matching part;

[0015] The inscribed matching part is arranged on the inner side of the third frame member in the installed state.

[0016] The inner cutting fitting section and the inner cutting bearing section are arranged along the length direction of the fourth frame member and are located at the inner side in the installed state of the fourth frame member, and the inner cutting fitting section and the inner cutting bearing section are oppositely arranged and are in inner cutting type clamping connection on both sides of the inner cutting fitting part, so as to realize the multi-angle inner cutting type clamping connection of the adjacent two wall plate assemblies.

[0017] The shower room structure, wherein the third frame member is further provided with a first stable surface, and the first stable surface is located at the outer side in the installed state of the third frame member; the fourth frame member is further provided with a second stable surface, and the second stable surface is located at the outer side in the installed state of the fourth frame member, and the inner side of the first stable surface and the outer side of the second stable surface are in inner cutting type clamping connection.

[0018] The shower room structure, wherein the door plate assembly comprises a door plate body, a first water blocking rubber strip and a second water blocking rubber strip, and the upper and lower ends of the door plate body are connected to the first frame member through the door clamp assembly respectively, and the first water blocking rubber strip and the second water blocking rubber strip are wrapped on the left and right side edges of the door plate body respectively.

[0019] The shower room structure, wherein the door clamp assembly comprises a clamp body and a mounting seat, one end of the clamp body is movably connected with the mounting seat and can be adjusted along the up-down direction of the door plate body, and the other end of the clamp body is fixedly clamped on the two surfaces of the door plate body through a screw.

[0020] The shower room structure, wherein the mounting seat is provided with a pulley at the end away from the clamp body; the first frame member for connecting the door plate assembly is provided with a sliding groove, and the sliding groove is arranged along the length direction of the first frame member and is used for slidingly accommodating the pulley, so as to realize the opening and closing of the door plate assembly.

[0021] Beneficial effects:

[0022] The utility model provides a kind of shower room structure, including wall plate assembly, door plate assembly, frame assembly and door clamp assembly.In frame assembly, the limiting protrusion of corner connecting piece is matched with the limiting hole of first frame member, the accurate positioning of both can be realized quickly when assembling, effectively simplify the assembly process of frame assembly, improve installation convenience;Meanwhile, using first screw hole corresponding with first arc slot installs screw, so that corner connecting piece and first frame member form stable and reliable fixed connection, and then enhance the overall structural strength of frame assembly, provide solid installation foundation for wall plate assembly, guarantee the stability and durability of shower room main structure.In addition, door plate assembly is movably connected with frame assembly by door clamp assembly, cooperate with the closed loop structure design of frame assembly, both ensure the flexibility of door plate opening and closing, and make the structure layout of entire shower room more reasonable, give consideration to use convenience and overall structure coordination, can better meet the use demand of bathroom space. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1The utility model provides a three-dimensional structure schematic diagram of shower room;

[0024] Figure 2 The utility model provides a three-dimensional structure schematic diagram of frame assembly;

[0025] Figure 3 The utility model provides a three-dimensional structure schematic diagram of wallboard assembly;

[0026] Figure 4 The utility model provides a three-dimensional structure schematic diagram of second frame member;

[0027] Figure 5 The utility model provides a cut structure schematic diagram of first frame member and second frame member assembly state;

[0028] Figure 6 The utility model provides a three-dimensional structure schematic diagram of third frame member and fourth frame member one kind assembly state;

[0029] Figure 7 The utility model provides a three-dimensional structure schematic diagram of third frame member and fourth frame member another assembly state;

[0030] Figure 8 The utility model provides a three-dimensional structure schematic diagram of door plate assembly and door clamp assembly assembly structure;

[0031] Figure 9 The utility model provides an exploded structure schematic diagram of upper end door clamp assembly;

[0032] Figure 10 The utility model provides an exploded structure schematic diagram of lower end door clamp assembly.

[0033] Reference signs:

[0034] 1 - wallboard assembly, 2 - door plate assembly, 3 - frame assembly,

[0035] 4 - door clamp assembly, 11 - wallboard main body, 12 - second frame member,

[0036] 13 - third frame member, 14 - fourth frame member, 21 - door plate main body,

[0037] 22 - first water stop rubber strip, 23 - second water stop rubber strip, 24 - magnetic strip,

[0038] 31 - first frame member, 32 - corner connecting piece, 41 - clamp body,

[0039] 42 - mounting seat, 43 - adjusting bolt, 121 - second arc slot,

[0040] 122—Fourth screw hole, 123—First clamping groove, 131—Second screw hole

[0041] 132—Internal mating part, 133—First stabilizing surface, 134—Second clamping groove,

[0042] 135—Connecting section, 141—Third threaded hole, 142—Internal mating section

[0043] 143—Inner tangential bearing section, 144—Second stabilizing surface, 145—Third clamping groove.

[0044] 146—Reserved gap section, 311—Limiting hole, 312—First arc-shaped groove,

[0045] 313—First step, 314—First groove, 315—Slide groove

[0046] 321—Limiting protrusion, 322—First screw hole, 323—Second step.

[0047] 411—Clearing groove, 412—Fifth threaded hole, 413—Shaft hole

[0048] 421—Pulley, 422—Mounting part, 423—Sixth screw hole

[0049] 424—Shaft. Detailed Implementation

[0050] This utility model provides a shower room structure. To make the purpose, technical solution, and effects of this utility model clearer and more explicit, the following describes this utility model in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0051] In the description of this utility model, it should be understood that the terms "upper," "lower," "left," and "right," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or a specific orientational structure and operation. Therefore, they should not be construed as limitations on this utility model. Furthermore, "first" and "second" are only for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "multiple" means two or more.

[0052] Please see Figure 1As shown, this utility model provides a shower room structure, which includes several wall panel assemblies 1, at least one door panel assembly 2, and two frame assemblies 3. The upper and lower ends of the several wall panel assemblies 1 are respectively fixedly connected by the two frame assemblies 3 to form the main body of the shower room. At least one door panel assembly 2 is movably connected to the frame assembly 3 through a door clamp assembly 4. The door panel assembly 2 is movably connected to the frame assembly 3 through the door clamp assembly 4. With the closed-loop structure design of the frame assembly 3, the flexibility of opening and closing the door panel is ensured, and the overall structural layout of the shower room is more reasonable. It takes into account both the convenience of use and the coordination of the overall structure, and can better meet the usage needs of the bathroom space.

[0053] Please see Figures 1-2 As shown, the frame assembly 3 includes several first frame members 31 and corner connectors 32. The two ends of the corner connector 32 are fixedly connected to two first frame members 31 respectively to form a closed-loop frame assembly 3. The first frame members 31 are provided with limiting holes 311 along their length direction. A first arc-shaped groove 312 is provided on one side inner wall of the limiting hole 311 along the length direction of the first frame member 31. Both ends of the corner connector 32 are provided with limiting protrusions 321 and first screw holes 322. The limiting protrusions 321 are adapted to the limiting holes 311 and accommodated in the limiting holes 311. The first screw holes 322 correspond to the first arc-shaped grooves 312 and are used to install screws to realize the fixed connection between the corner connector 32 and the first frame members 31.

[0054] The limiting protrusion 321 of the corner connector 32 is adapted to the limiting hole 311 of the first frame member 31, which can quickly achieve precise positioning of the two during assembly, effectively simplifying the assembly process of the frame component 3 and improving the ease of installation. At the same time, the screw is installed by using the first screw hole 322 corresponding to the first arc groove 312 to form a stable and reliable fixed connection between the corner connector 32 and the first frame member 31, thereby enhancing the overall structural strength of the frame component 3, providing a solid installation foundation for the wall panel component 1, and ensuring the stability and durability of the main structure of the shower room.

[0055] Please see Figure 1 , Figure 3As shown, the wall panel assembly 1 includes a wall panel body 11 and a frame assembly surrounding it. The frame assembly includes a second frame piece 12 fixedly connected to the upper and lower ends of the wall panel body 11, and a third frame piece 13 and a fourth frame piece 14 fixedly connected to the left and right ends of the wall panel body 11. The third frame piece 13 of one wall panel assembly 1 is assembled with the fourth frame piece 14 of an adjacent wall panel assembly 1 through a multi-angle inward interlocking connection structure. By surrounding the wall panel body with the frame assembly, a stable protection is provided for the wall panel body. Furthermore, the multi-angle inward interlocking structure between the third frame piece and the adjacent fourth frame piece allows for flexible and convenient assembly of adjacent wall panel assemblies, adapting to different bathroom space layout requirements. Simultaneously, the interlocking connection is reliable, effectively improving the connection stability and overall structural coordination between wall panel assemblies.

[0056] In this embodiment, the first frame member 31 can be made of aluminum alloy through extrusion molding, and the corner connector 32 can be made of zinc alloy through die casting. Since their coefficients of thermal expansion are similar, this reduces connection loosening caused by temperature changes and ensures the stability of the closed-loop frame structure. The included angle α formed by the first frame member 31 connected to both ends of the corner connector 32 is preferably 90°≤α<180°, allowing the frame shape formed by the first frame member 31 and the corner connector 32 to include, but is not limited to, rectangles, squares, etc., and can be adapted to specific conditions. The limiting protrusion 321 protrudes outward from the end face of the corner connector 32 and is offset from the first screw hole 322 to prevent interference between the limiting protrusion 321 and the first arc-shaped groove 312 when the corner connector 32 is connected and installed with the first frame member 31. The wall panel body 11 can be made of tempered glass, and the second frame member 12, the third frame member 13 and the fourth frame member 14 can all be made of extruded aluminum alloy. The number of wall panel components 1 and the connection angle between two adjacent wall panel components 1 can be adapted to the actual situation.

[0057] Please see Figure 1 , Figure 3 , Figure 4 , Figure 5As shown, the second frame member 12 has a second arc-shaped groove 121 along its length direction; the end of the third frame member 13 has a second screw hole 131 perpendicular to its length direction; the end of the fourth frame member 14 has a third screw hole 141 perpendicular to its length direction; the second screw hole 131 and the third screw hole 141 are fixedly connected to the two ends of the second arc-shaped groove 121 by screws, so that the second frame member 12 is fixedly connected to the third frame member 13 and the fourth frame member 14 and surrounds the wall panel body 11. In this embodiment, the second screw hole 131, the third screw hole 141 and the second arc-shaped groove 121 are coaxially arranged, the third frame member 13 has a second screw hole 131 at both ends along its length direction, and the fourth frame member 14 has a third screw hole 141 at both ends along its length direction, so that the two second frame members 12 are simultaneously fixedly connected to the third frame member 13 and the fourth frame member 14, thereby covering the wall panel body 11. The second frame member 12 has a first clamping groove 123 along its length, which is used to accommodate the upper or lower edge of the wall panel body 11. The two side walls of the first clamping groove 123 are respectively provided with protrusions for abutting against the two sides of the wall panel body 11. The protrusions extend along the length of the first clamping groove 123. The third frame member 13 has a second clamping groove 134 along its length, which is used to accommodate the left edge of the wall panel body 11. The fourth frame member 14 has a third clamping groove 145 along its length, which is used to accommodate the right edge of the wall panel body 11. The side walls of the second clamping groove 134 and the third clamping groove 145 that contact the two sides of the wall panel body 11 are both made into wavy surfaces to increase the friction between them and the wall panel body 11.

[0058] Please see Figure 2 and Figure 5As shown, the first frame member 31 is provided with a first step 313, and the corner connector 32 is provided with a second step 323. The first step 313 and the second step 323 are flush. The "L"-shaped surface of the first step 313 abuts against the two adjacent sides of the second frame member 12, and the "L"-shaped surface of the second step 323 abuts against the ends of the third frame member 13 and the fourth frame member 14. In this embodiment, the first step 313 is located inside the first frame member 31 in the installed state and extends along the length direction of the first frame member 31. The width of the first step 313 is equal to the width of the second frame member 12. Its "L"-shaped surface contacts the bottom surface and outer surface of the second frame member 12 respectively, so that after the wall panel assembly 1 is installed on the frame assembly 3, the inner surface of the second frame member 12 is flush with the inner surface of the first frame member 31, which improves the aesthetics and reduces water stains and dirt residue on the first step 313. The second step 323 is located inside the corner connector 32 in the installed state and extends along the length direction of the corner connector 32. The second step 323 limits the snap-fit ​​angle between the third frame member 13 and the fourth frame member 14, making the connection between two adjacent wall panel assemblies 1 more precise and reliable. The first step 313 and the second step 323 not only provide precise positioning for the wall panel assembly 1, but also bear load, which can reduce the shear stress of the screws that lock the wall panel assembly 1 and the frame assembly 3, and improve the reliability of the shower room body.

[0059] Please see Figures 4-5 As shown, the second frame member 12 is provided with a plurality of fourth screw holes 122, which are equidistantly arranged along the length direction of the second frame member 12. The first frame member 31 is provided with a first groove 314 along its length direction. The first groove 314 is located on the vertical surface of the first step 313. The fourth screw holes 122 are fixedly connected to the first groove 314 by screws, thereby realizing the fixed connection between the wall panel assembly 1 and the frame assembly 3. In this embodiment, the axial direction of the fourth screw holes 122 is set along the width direction of the second frame member 12, avoiding the first clamping groove 123. The fourth screw holes 122 near both ends of the second frame member 12 are positioned at a distance from the end face of the second frame member 12 that is greater than the length of the screw installed in the second arc-shaped groove 121, so as to avoid the two screws interfering with each other and affecting the installation. The width between the upper and lower groove walls of the first groove 314 is less than the diameter of the screw accommodated in the fourth screw hole 122. The screw is clamped by the upper and lower groove walls of the first groove 314, thereby fixing the second frame member 12 to the first frame member 31 and realizing the fixed installation of the wall panel assembly 1.

[0060] Please see Figures 6-7As shown, the multi-angle inward-cut interlocking connection structure includes an inward-cut mating part 132 disposed on the third frame member 13, and an inward-cut mating section 142 and an inward-cut bearing section 143 disposed on the fourth frame member 14 and adapted to the inward-cut mating part 132. The inward-cut mating part 132 extends along the length direction of the third frame member 13 and is located on the inner side of the third frame member 13 in the installed state. In this embodiment, the inward-cut mating part 132 is a long tube with an elliptical cross-section. The inward-cut mating part 132 is fixedly connected to the inner side of the third frame member 13 through a connecting section 135. The inward-cut mating part 132, the connecting section 135 and the third frame member 13 are an integral structure. When the assembly angle between the third frame member 13 and the fourth frame member 14 is 90°, the connecting section 135 of the selected third frame member 13 is a sheet-like structure; when the assembly angle between the third frame member 13 and the fourth frame member 14 is greater than 90°, the connecting section 135 of the selected third frame member 13 and the third frame member 13 together form a triangular tubular structure.

[0061] Please see Figure 6 As shown, the inner-cut mating section 142 and the inner-cut bearing section 143 both extend along the length direction of the fourth frame member 14 and are located on the inner side of the fourth frame member 14 in the installed state. The inner-cut mating section 142 and the inner-cut bearing section 143 are arranged opposite to each other and are internally engaged with the two sides of the inner-cut mating part 132 to realize that the two adjacent wall panel components 1 are internally engaged with each other at multiple angles. In this embodiment, the inner tangent mating section 142 is fixedly connected to the inner side of the fourth frame member 14 via a reserved gap section 146. The inner tangent mating section 142 and the reserved gap section 146 are located at one corner of the bottom of the third clamping groove 145. The inner tangent bearing section 143 extends outward from one side wall of the third clamping groove 145 and is located in the middle of the depth direction of the third clamping groove 145. The inner tangent mating section 142, the inner tangent bearing section 143, and the reserved gap section 146 are all integral with the fourth frame member 14. The inner tangent mating section 142 and the inner tangent bearing section 143 are both arc-shaped structures adapted to the outer side of the inner tangent mating part 132. The reserved gap section 146 protrudes from the arc surface of the inner tangent mating section 142. The reserved gap section 146 provides rotation space for the inner tangent mating part 132 to rotate within the arc surface jointly formed by the inner tangent mating section 142 and the inner tangent bearing section 143, realizing the engagement and disengagement of the parts. When using it, the operator first aligns the minimum angle arc section of the inner tangent fitting part 132 with the reserved gap section 146, and then can freely adjust the rotation angle of the inner tangent fitting part 132 until it is in-cut and fixed with the inner tangent fitting section 142 and the inner tangent bearing section 143.

[0062] Please see Figures 6-7As shown, the third frame member 13 is also provided with a first stabilizing surface 133, which is located on the outside of the third frame member 13 in the installed state; the fourth frame member 14 is also provided with a second stabilizing surface 144, which is located on the outside of the fourth frame member 14 in the installed state, and the inner side of the first stabilizing surface 133 and the outer side of the second stabilizing surface 144 are in an in-cut engagement connection. In this embodiment, the first stabilizing surface 133 is an arc-shaped surface extending outward from the side of the third frame member 13 away from the second clamping groove 134, and a damping protrusion protruding inward is provided at the end away from the second clamping groove 134; the second stabilizing surface 144 is formed by bending outward from the outer side of the bottom of the third clamping groove 145, and a damping groove is provided on the outer side of the connection between the second stabilizing surface 144 and the fourth frame member 14. The damping groove is used to accommodate the damping protrusion. The inner side of the first stabilizing surface 133 and the outer side of the second stabilizing surface 144 are interlocked, which further enhances the connection stability between the third frame member 13 and the fourth frame member 14, that is, between two adjacent wall panel components 1, and makes the appearance of the parts more beautiful. Moreover, the closed area enclosed by the inner side of the first stabilizing surface 133 and the second stabilizing surface 144 is actually a hollow area. This setting reduces the weight of the overall structure, makes it easy to install and operate, and saves decoration materials.

[0063] Please see Figures 6-7 As shown, when the assembly angle between the third frame member 13 and the fourth frame member 14 is 90°, the curvature of the first stabilizing surface 133 is large, which will block the second screw hole 131 and affect the connection of the mounting screw to the second frame member 12. Therefore, notches need to be provided at both ends of the first stabilizing surface 133 to avoid blocking the second screw hole 131 and thus affecting the mounting screw. The two wall panel assemblies 1 of this mounting structure are further fixedly connected to the two first frame members 31 through a corner connector 32. When the assembly angle between the third frame member 13 and the fourth frame member 14 is greater than 90°, the curvature of the first stabilizing surface 133 is small and will not block the second screw hole 131. Therefore, it is not necessary to open a notch in the first stabilizing surface 133. The two wall panel assemblies 1 of this mounting structure are further fixedly connected to a corner connector with a large length and a bend angle greater than 90° at both ends through a first frame member 31.

[0064] Please see Figure 8As shown, the door panel assembly 2 includes a door panel body 21, a first water-blocking strip 22, and a second water-blocking strip 23. The upper and lower ends of the door panel body 21 are respectively connected to the first frame member 31 via door clamp assemblies 4. The first water-blocking strip 22 and the second water-blocking strip 23 respectively cover the left and right edges of the door panel body 21. In this embodiment, there are two door panel assemblies 2, which are arranged side by side on the same side of the frame assembly 3. The first water-blocking strip 22 covers the edge of the door panel body 21 away from the other door panel body 21 to seal and block the gap between the door panel body 21 and the wall panel assembly 1; the second water-blocking strip 23 covers the edge of the door panel body 21 near the other door panel body 21 to seal and block the gap between the two door panel bodies 21, and a magnetic strip 24 is embedded on the side of the second water-blocking strip 23 away from the door panel body 21. The magnetic strips 24 on the two door panel bodies 21 have opposite polarities, so that when the door is closed, the two magnetic strips 24 attract each other to limit the closed state of the two door panel bodies 21.

[0065] Please see Figures 8-9 As shown, the door clamp assembly 4 includes a clamp body 41 and a mounting base 42. One end of the clamp body 41 is movably connected to the mounting base 42 and can be adjusted along the vertical direction of the door panel body 21. The other end of the clamp body 41 is fixedly clamped to both sides of the door panel body 21 by screws. In this embodiment, each door panel body 21 is provided with four door clamp assemblies 4, which are located in pairs at the upper and lower ends of the door panel body 21 to improve the installation reliability of the door panel assembly 2. The door clamp assembly 4 located at the upper end of the door panel body 21 and the door clamp assembly 4 located at the lower end of the door panel body 21 have structural differences: in the upper door clamp assembly 4, the clamp body 41 is provided with a relief groove 411 on the side near the first frame member 31, and the upper and lower sides of the relief groove 411 are coaxially provided with fifth screw holes 412. The mounting base 42 is provided with a mounting part 422 at the end connected to the clamp body 41. The mounting part 422 is provided with a sixth screw hole 423 corresponding to the fifth screw hole 412. The mounting part 422 is accommodated in the relief groove 411 and can be adjusted by bolt 4. 3. The fifth screw hole 412 and the sixth screw hole 423 are threaded through to achieve adjustable installation between the mounting base 42 and the clamp 41; In the lower door clamp assembly 4, the clamp 41 is provided with a shaft hole 413 on the side near the first frame member 31, which is axially the same as the fifth screw hole 412. The mounting base 42 is provided with a shaft 424 on the end near the clamp 41. The shaft 424 is axially the same as the shaft hole 413 and is movably accommodated in the shaft hole 413. By turning the adjusting bolt 43, the mounting part 422 can be positioned at different heights in the relief groove 411, which can adjust the installation height of the door panel body 21. The insertion length of the shaft 424 in the shaft hole 413 also changes accordingly. The adjustable structure makes the installation of the door panel body 21 more precise, and the sealing and reliability are guaranteed.

[0066] Please see Figure 2 ,Figures 8-9 As shown, a pulley 421 is provided at the end of the mounting base 42 away from the clamp 41; a sliding groove 315 is provided on the first frame member 31 for connecting the door panel assembly 2. The sliding groove 315 is provided along the length direction of the first frame member 31 and is used to slide and accommodate the pulley 421 to realize the opening and closing of the door panel assembly 2. In this embodiment, each mounting base 42 is equipped with two pulleys 421. The two pulleys 421 are rotatably disposed at the end of the mounting base 42 away from the clamp 41. The two pulleys 421 are arranged side by side along the width direction of the door panel body 21; the groove walls on the opposite side of the upper and lower sliding grooves 315 are recessed to form a "V" shaped cross section to limit the pulley 421 and prevent the pulley 421 from disengaging from the sliding groove 315, thereby affecting the normal use of the door panel assembly 2.

[0067] It is understood that those skilled in the art can make equivalent substitutions or changes based on the technical solution and inventive concept of this utility model, and all such substitutions or changes should fall within the protection scope of the appended claims of this utility model.

Claims

1. A shower room structure, characterized in that, It includes several wall panel components (1), at least one door panel component (2) and two frame components (3). The upper and lower ends of the several wall panel components (1) are fixedly connected by the two frame components (3) to form the main body of the shower room. At least one door panel component (2) is movably connected to the frame component (3) through a door clamp component (4). The frame assembly (3) includes several first frame members (31) and corner connectors (32). The two ends of the corner connectors (32) are fixedly connected to two first frame members (31) respectively to form a closed-loop frame assembly (3). The first frame member (31) is provided with a limiting hole (311) along its length direction. A first arc-shaped groove (312) is provided on the inner wall of one side of the limiting hole (311) along the length direction of the first frame member (31). Both ends of the corner connector (32) are provided with limiting protrusions (321) and first screw holes (322). The limiting protrusions (321) are adapted to the limiting holes (311) and are accommodated in the limiting holes (311). The first screw holes (322) correspond to the first arc-shaped grooves (312) and are used to install screws to achieve a fixed connection between the corner connector (32) and the first frame member (31). The wall panel assembly (1) includes a wall panel body (11) and a frame assembly surrounding it. The frame assembly includes a second frame piece (12) fixedly connected to the upper and lower ends of the wall panel body (11), and a third frame piece (13) and a fourth frame piece (14) fixedly connected to the left and right ends of the wall panel body (11). The third frame piece (13) of one wall panel assembly (1) is assembled with the fourth frame piece (14) of an adjacent wall panel assembly (1) through a multi-angle in-cut snap-fit ​​connection structure.

2. The shower room structure according to claim 1, characterized in that, The second frame member (12) has a second arc-shaped groove (121) along its length direction; the end of the third frame member (13) has a second screw hole (131) perpendicular to its length direction; the end of the fourth frame member (14) has a third screw hole (141) perpendicular to its length direction; the second screw hole (131) and the third screw hole (141) are fixedly connected to the two ends of the second arc-shaped groove (121) by screws, so that the second frame member (12) is fixedly connected to the third frame member (13) and the fourth frame member (14) and surrounds the wall panel body (11).

3. The shower room structure according to claim 2, characterized in that, The first frame member (31) is provided with a first step (313), and the corner connector (32) is provided with a second step (323). The first step (313) and the second step (323) are flush. The "L"-shaped surface of the first step (313) abuts against the two adjacent sides of the second frame member (12), and the "L"-shaped surface of the second step (323) abuts against the ends of the third frame member (13) and the fourth frame member (14).

4. The shower room structure according to claim 3, characterized in that, The second frame member (12) is provided with a number of fourth screw holes (122), which are arranged at equal intervals along the length of the second frame member (12); the first frame member (31) is provided with a first groove (314) along its length, which is located on the vertical surface of the first step (313). The fourth screw holes (122) are fixedly connected to the first groove (314) by screws, so as to realize the fixed connection between the wall panel assembly (1) and the frame assembly (3).

5. The shower room structure according to claim 2, characterized in that, The multi-angle in-line snap-fit ​​connection structure includes an in-line mating part (132) disposed on the third frame member (13) and an in-line mating section (142) and an in-line bearing section (143) disposed on the fourth frame member (14) and adapted to the in-line mating part (132). The inner tangent part (132) extends along the length direction of the third frame member (13) and is located on the inner side of the third frame member (13) in the installed state; Both the inner-cut mating section (142) and the inner-cut bearing section (143) extend along the length direction of the fourth frame member (14) and are located on the inner side of the fourth frame member (14) in the installed state. The inner-cut mating section (142) and the inner-cut bearing section (143) are arranged opposite to each other and are connected in an inner-cutting snap-fit ​​connection on both sides of the inner-cut mating part (132) so as to realize that the two adjacent wall panel components (1) are connected in an inner-cutting snap-fit ​​connection at multiple angles.

6. The shower room structure according to claim 5, characterized in that, The third frame member (13) is also provided with a first stabilizing surface (133), which is located on the outside of the third frame member (13) in the installed state; the fourth frame member (14) is also provided with a second stabilizing surface (144), which is located on the outside of the fourth frame member (14) in the installed state, and the inner side of the first stabilizing surface (133) and the outer side of the second stabilizing surface (144) are in an in-cut engagement connection.

7. The shower room structure according to claim 1, characterized in that, The door panel assembly (2) includes a door panel body (21), a first water-blocking strip (22) and a second water-blocking strip (23). The upper and lower ends of the door panel body (21) are connected to the first frame piece (31) through the door clamp assembly (4). The first water-blocking strip (22) and the second water-blocking strip (23) cover the left and right edges of the door panel body (21) respectively.

8. The shower room structure according to claim 7, characterized in that, The door clamp assembly (4) includes a clamp body (41) and a mounting base (42). One end of the clamp body (41) is movably connected to the mounting base (42) and can be adjusted along the up and down direction of the door panel body (21). The other end of the clamp body (41) is fixedly clamped to both sides of the door panel body (21) by screws.

9. The shower room structure according to claim 8, characterized in that, The mounting base (42) is provided with a pulley (421) at the end away from the clamp (41); the first frame piece (31) for connecting the door panel assembly (2) is provided with a sliding groove (315), the sliding groove (315) is provided along the length direction of the first frame piece (31) and is used to slide and accommodate the pulley (421) so as to realize the opening and closing of the door panel assembly (2).