Shower room glass door reinforcing structure and shower room using same

By installing an upper hinge, a lower hinge, and a fixing block on the shower room glass door, the problem of the glass door easily falling off is solved, and the stability and aesthetics of the glass door are improved.

CN223577789UActive Publication Date: 2025-11-21GUANGDONG ROYALKING INTELLIGENT SANITARY WARE CO
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Patent Information

Application Number
CN202423192541.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-21
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The existing installation structure of shower room glass doors is prone to problems such as glass doors falling off and causing damage.

Method used

The glass door adopts a connection structure consisting of an upper pivot, a lower pivot, a fixing block, and a fixing sleeve. The design of the upper mounting notch, the lower mounting notch, and the fixing block mounting groove enhances the stability of the glass door, and the locking mechanism enables a detachable connection.

Benefits of technology

It effectively prevents the glass door from falling, enhances the stability of the shower room glass door, has a simple and reliable structure, is easy to install, and is both beautiful and durable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a shower room glass door reinforcing structure and a shower room using the same. The shower room glass door reinforcing structure comprises an upper rotating shaft, a fixing sleeve, a lower rotating shaft, a glass door plate and two or more fixing blocks. An upper mounting notch is formed in the upper end of one side of the glass door plate; a lower mounting notch is formed in the lower end of one side of the glass door plate; the upper mounting notch and the lower mounting notch are arranged on the same side, and fixing block mounting grooves are formed between the upper mounting notch and the lower mounting notch at intervals. The upper rotating shaft is embedded in the upper mounting notch, the lower rotating shaft is embedded in the lower mounting notch, and the fixing block is embedded in the fixing block mounting groove; the fixing sleeve sleeves the glass door plate and is connected with the upper rotating shaft, the lower rotating shaft and the fixing block. By arranging the upper mounting notch, the lower mounting notch and the fixing block mounting groove, the weight of the glass door plate is distributed to the fixing sleeve through the upper rotating shaft, the fixing block and the lower rotating shaft, the stability of the glass door of the shower room is enhanced, and the glass door can be effectively prevented from falling.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a shower room field especially relates to a shower room glass door reinforcing structure and use its shower room. BACKGROUND

[0002] The shower room is a kind of independent space specially designed for shower, usually installed in bathroom, for providing more private, clean and comfortable bathing environment.The requirement of modern home to sanitary facility is higher and higher, in order to enhance the durability of shower room glass door and improve the beauty of overall bathroom, the glass door of shower room on the market is generally realized the opening or closing of glass door by the way of installing upper and lower pivot.

[0003] When installing glass door, the upper and lower ends of pivot side of glass door are installed pivot, then outer package section is sleeved on pivot side of glass door, then glass cement is filled between outer package section and glass door to fix outer package section and glass door;

[0004] But the above structure requires higher filling glass cement method of staff, if filling glass cement is not good, or glass cement quality is not good, glass door is prone to falling off, leading to the problem of glass door damage. INVENTION CONTENTS

[0005] The utility model aims at providing a shower room glass door reinforcing structure and use its shower room to solve the problem that the installation structure of existing shower room glass door is prone to glass door falling off, leading to glass door damage.

[0006] To achieve this purpose, the utility model adopts the following technical scheme:

[0007] The utility model provides a shower room glass door reinforcing structure, including upper pivot, fixed sleeve, lower pivot, glass door panel and two or more fixed blocks;

[0008] One side upper end of glass door panel is equipped with upper installation gap, and one side lower end of glass door panel is equipped with lower installation gap;Upper installation gap and lower installation gap are arranged on the same side, and fixed block installation groove is arranged between upper installation gap and lower installation gap;The number and shape of fixed block installation groove are adapted to the number and shape of fixed block;

[0009] Upper pivot is embedded in upper installation gap, lower pivot is embedded in lower installation gap, and fixed block is embedded in fixed block installation groove;Upper pivot and lower pivot are coaxially arranged;Fixed sleeve is sleeved on one side of glass door panel, and fixed sleeve is detachably connected with upper pivot, lower pivot and fixed block respectively;Upper end of upper pivot extends from fixed sleeve and is rotationally assembled on external shower room upper door frame;Lower end of lower pivot extends from fixed sleeve and is rotationally assembled on external shower room lower door frame.

[0010] The fixed sleeve includes a fixed sleeve body, a lower rotating shaft fixing seat and a plurality of locking members, the fixed sleeve body is provided with a mounting groove along the Z-axis direction, and one side of the glass door panel is embedded into the mounting groove;

[0011] The upper end of the fixed sleeve body is provided with an upper shaft mounting hole, and the lower end of the fixed sleeve body is provided with a lower shaft mounting hole; the fixed sleeve body is provided with a plurality of fixed block mounting holes between the upper shaft mounting hole and the lower shaft mounting hole, and the number of the fixed block mounting holes is matched with the number of the fixed blocks;

[0012] The upper rotating shaft, the lower rotating shaft and the fixed block are all provided with fixing holes along the Y-axis direction, the upper rotating shaft is detachably connected with the fixed sleeve body through the cooperation of the locking members, the fixing holes and the upper shaft mounting hole, the lower rotating shaft is detachably connected with the fixed sleeve body through the cooperation of the locking members, the fixing holes and the lower shaft mounting hole, and the fixed block is detachably connected with the fixed sleeve body through the cooperation of the locking members, the fixing holes and the fixed block mounting holes;

[0013] The lower rotating shaft is mounted on the lower rotating shaft fixing seat, and the lower end of the lower rotating shaft extends out of the lower rotating shaft fixing seat.

[0014] In the shower room glass door reinforcing structure, the fixed sleeve further includes a protective sleeve, and the protective sleeve is sleeved outside the upper rotating shaft, the fixed sleeve body and the lower rotating shaft.

[0015] In the shower room glass door reinforcing structure, the lower rotating shaft includes a lower shaft sleeve, a lower shaft, a lower rotating shaft base and a lower embedded block, the lower shaft is arranged at the bottom of the lower rotating shaft base, the lower shaft sleeve is sleeved outside the lower shaft, the lower embedded block is arranged at the top of the lower rotating shaft base, the top of the lower embedded block is provided with a lower inclined surface, and the lower inclined surface faces one side of the fixed sleeve.

[0016] The top surface of the lower rotating shaft fixing seat is provided with an avoiding hole, the outer periphery of the avoiding hole is provided with a fixed convex strip, the bottom of the lower rotating shaft base is provided with a plug hole matched with the shape of the fixed convex strip, the lower rotating shaft base is arranged on the lower rotating shaft fixing seat, the fixed convex strip is inserted into the plug hole, and the lower shaft penetrates out of the avoiding hole.

[0017] In the shower room glass door reinforcing structure, the upper rotating shaft includes an upper shaft sleeve, an upper shaft, an upper rotating shaft base and an upper embedded block.

[0018] The upper shaft is arranged at the top of the upper rotating shaft base, the upper shaft sleeve is sleeved outside the upper shaft, the upper embedded block is arranged at the bottom of the upper rotating shaft base, the bottom of the upper embedded block is provided with an upper inclined surface, and the upper inclined surface faces one side of the fixed sleeve.

[0019] The first chamfer is arranged between the side wall of the upper embedding block and the upper inclined surface on the side of the upper embedding block, and the second chamfer is arranged between the side wall of the lower embedding block and the lower inclined surface on the side of the lower embedding block.

[0020] The shower room glass door reinforcing structure further comprises a limiting assembly, the limiting assembly comprises a connecting seat and a limiting bolt, the connecting seat is installed on an outer shower room upper door frame, the connecting seat is provided with a rotating hole in the Z-axis direction, and the upper shaft sleeve is arranged in the rotating hole.

[0021] One side of the connecting seat is provided with a bolt hole in the Y-axis direction, and the bolt hole is in communication with the rotating hole, a side wall of the upper shaft sleeve is provided with a through hole, and a side wall of the upper shaft is provided with a limiting groove.

[0022] The limiting bolt is screw-assembled in the bolt hole, and one end of the limiting bolt passes through the through hole and enters the limiting groove.

[0023] When the upper shaft and the glass door plate are rotated to the maximum rotation range in the clockwise direction, the limiting bolt abuts against the inner wall of one side of the limiting groove, and when the upper shaft and the glass door plate are rotated to the maximum rotation range in the counterclockwise direction, the limiting bolt abuts against the inner wall of the other side of the limiting groove.

[0024] In the shower room glass door reinforcing structure, the fixing block mounting groove is a dovetail groove, and the shape of the fixing block is matched with the fixing block mounting groove.

[0025] In the shower room glass door reinforcing structure, the upper mounting gap and the upper rotating shaft, and the lower mounting gap and the lower rotating shaft are all provided with rotating shaft gaskets.

[0026] The utility model provides a kind of shower room, and the shower room adopts above-mentioned shower room glass door reinforcing structure.

[0027] One technical scheme in the utility model can have the following beneficial effects:

[0028] In the shower room glass door reinforcing structure, upper mounting gap, lower mounting gap and fixing block mounting groove are arranged on glass door plate, the weight of glass door plate is distributed to fixing sleeve by upper rotating shaft, fixing block, lower rotating shaft connection, the stability of shower room glass door is enhanced, glass door can be effectively prevented from falling down, and the structure is simple and reliable, easy to install. BRIEF DESCRIPTION OF DRAWINGS

[0029] Fig. 1 It is the structure schematic diagram of one embodiment of the utility model;

[0030] Fig. 2is the explosion structure schematic view of one of the embodiments of the utility model;

[0031] Fig. 3 is the connection schematic view of upper pivot, glass door panel and fixed sleeve in one of the embodiments of the utility model;

[0032] Fig. 4 is the connection schematic view of lower pivot, glass door panel and fixed sleeve in one of the embodiments of the utility model;

[0033] Fig. 5 is the structure schematic view of upper pivot in one of the embodiments of the utility model;

[0034] Fig. 6 is the structure schematic view of lower pivot in one of the embodiments of the utility model;

[0035] Fig. 7 is the position relation diagram of limiting bolt and limiting groove in one of the embodiments of the utility model;

[0036] In the drawing: upper pivot 1, fixed sleeve 2, lower pivot 3, glass door panel 4, fixed block 5;Limiting assembly 6;Pivot gasket 7;

[0037] Fixed hole 10;Upper shaft sleeve 11, upper shaft 12, upper pivot base 13, upper embedded block 14;Upper inclined surface 15;Fixed sleeve body 21, lower pivot fixed base 22, locking piece 23;Protective sleeve 24;Lower shaft sleeve 31, lower shaft 32, lower pivot base 33, lower embedded block 34;Lower inclined surface 35;Upper installation notch 41, lower installation notch 42;Fixed block installation groove 43;Connecting seat 61, limiting bolt 62;

[0038] Through hole 110;Limiting groove 121;Upper shaft mounting hole 211;Lower shaft mounting hole 212;Fixed block mounting hole 213;Fixed convex strip 221;Insert hole 330. DETAILED DESCRIPTION

[0039] The embodiments of the utility model are described in detail below, the examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the utility model, and can not be understood as the limitation of the utility model.

[0040] In the description of this utility model, it should be understood that the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and 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 be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, features defined with "first" and "second" may explicitly or implicitly include one or more of these features, used to distinguish descriptive features, without any order or emphasis.

[0041] In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0042] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0043] Please refer to Figs. 1-7 This utility model provides a reinforcement structure for a shower room glass door, including an upper pivot 1, a fixing sleeve 2, a lower pivot 3, a glass door panel 4, and two or more fixing blocks 5;

[0044] The upper end of one side of the glass door panel 4 is provided with an upper mounting notch 41, and the lower end of one side of the glass door panel 4 is provided with a lower mounting notch 42; the upper mounting notch 41 and the lower mounting notch 42 are provided on the same side, and a fixing block mounting groove 43 is provided between the upper mounting notch 41 and the lower mounting notch 42; the number and shape of the fixing block mounting groove 43 are adapted to the number and shape of the fixing block 5.

[0045] The upper rotating shaft 1 is embedded in the upper mounting notch 41, the lower rotating shaft 3 is embedded in the lower mounting notch 42, and the fixing block 5 is embedded in the fixing block mounting groove 43; the upper rotating shaft 1 and the lower rotating shaft 3 are coaxially arranged; the fixing sleeve 2 is fitted onto one side of the glass door panel 4, and the fixing sleeve 2 is detachably connected to the upper rotating shaft 1, the lower rotating shaft 3, and the fixing block 5 respectively; the upper end of the upper rotating shaft 1 extends out from the fixing sleeve 2 and is rotatably assembled to the upper door frame of the shower room; the lower end of the lower rotating shaft 3 extends out from the fixing sleeve 2 and is rotatably assembled to the lower door frame of the shower room.

[0046] The reinforcing structure of the shower room glass door is characterized in that: the glass door plate 4 is provided with an upper mounting notch 41, a lower mounting notch 42 and a fixing block mounting groove 43, the upper rotating shaft 1, the fixing block 5, the lower rotating shaft 3 and the fixing sleeve 2 are connected, the weight of the glass door plate 4 is distributed to the fixing sleeve 2 through the upper rotating shaft 1, the fixing block 5 and the lower rotating shaft 3, the stability of the shower room glass door is enhanced, the glass door can be effectively prevented from falling down, and the structure is simple and reliable, and the installation is convenient.

[0047] Specifically, the fixing sleeve 2 comprises a fixing sleeve body 21, a lower rotating shaft fixing seat 22 and a plurality of locking members 23, the fixing sleeve body 21 is provided with a mounting groove along the Z-axis direction, and one side of the glass door plate 4 is embedded into the mounting groove.

[0048] The upper end of the fixing sleeve body 21 is provided with an upper shaft mounting hole 211, and the lower end of the fixing sleeve body 21 is provided with a lower shaft mounting hole 212; and the fixing sleeve body 21 is provided with a plurality of fixing block mounting holes 213 between the upper shaft mounting hole 211 and the lower shaft mounting hole 212, and the number of the fixing block mounting holes 213 is matched with the fixing block 5.

[0049] The upper rotating shaft 1, the lower rotating shaft 3 and the fixing block 5 are all provided with fixing holes 10 along the Y-axis direction, the upper rotating shaft 1 is detachably connected with the fixing sleeve body 21 through the cooperation of the locking member 23, the fixing hole 10 and the upper shaft mounting hole 211, the lower rotating shaft 3 is detachably connected with the fixing sleeve body 21 through the cooperation of the locking member 23, the fixing hole 10 and the lower shaft mounting hole 212, and the fixing block 5 is detachably connected with the fixing sleeve body 21 through the cooperation of the locking member 23, the fixing hole 10 and the fixing block mounting hole 213.

[0050] The lower rotating shaft 3 is mounted on the lower rotating shaft fixing seat 22, and the lower end of the lower rotating shaft 3 extends from the lower rotating shaft fixing seat 22.

[0051] The lower rotating shaft fixing seat 22 is used for fixing the lower rotating shaft 3, and the upper rotating shaft 1 is located at the top end of the fixing sleeve body 21. The upper rotating shaft 1, the lower rotating shaft 3 and the fixing block 5 are all provided with fixing holes 10. In an embodiment of the utility model, the fixing holes 10 are provided with threads, the locking member 23 is a bolt, and the upper rotating shaft 1, the lower rotating shaft 3 and the fixing block 5 can be respectively fixed to the fixing sleeve body 21 through the cooperation of the locking member 23 and the fixing hole 10.

[0052] In an embodiment of the utility model, the upper shaft mounting hole 211, the lower shaft mounting hole 212 and the fixing block mounting hole 213 are arranged on both sides of the fixing sleeve body 21, the locking member 23 is inserted into the fixing hole 10 from one side of the fixing sleeve body 21 after installation, and the locking member 23 is pulled out from the other side of the fixing sleeve body 21.

[0053] The structure is simple, stable, firm, and convenient to install and maintain.

[0054] Specifically, the fixing sleeve 2 further comprises a protective sleeve 24, which is sleeved on the outer side of the upper shaft 1, the fixing sleeve body 21 and the lower shaft 3.

[0055] With the above structure, the protective sleeve 24 can hide the upper shaft mounting hole 211, the lower shaft mounting hole 212, the fixing block mounting hole 213 and the locking piece 23 on the fixing sleeve body 21, avoiding exposure of the screws and screw holes, making the shower room glass door more simple and exquisite, and improving the overall aesthetic feeling. Moreover, the contact between the locking piece 23 and water vapor is reduced, the possibility of oxidation and corrosion is reduced, and the service life of the product can be prolonged.

[0056] Specifically, the lower shaft 3 comprises a lower shaft sleeve 31, a lower shaft 32, a lower shaft base 33 and a lower fitting block 34; the lower shaft 32 is arranged at the bottom of the lower shaft base 33, the lower shaft sleeve 31 is sleeved on the outer periphery of the lower shaft 32, the lower fitting block 34 is arranged at the top of the lower shaft base 33, and the top of the lower fitting block 34 is provided with a lower inclined surface 35, which is directed to one side of the fixing sleeve 2.

[0057] The top surface of the lower shaft fixing base 22 is provided with an avoiding hole, the outer periphery of the avoiding hole is provided with a fixing convex strip 221, the bottom of the lower shaft base 33 is provided with a plug hole 330 matched with the shape of the fixing convex strip 221, the lower shaft base 33 is arranged on the lower shaft fixing base 22, and the fixing convex strip 221 is inserted into the plug hole 330; the lower shaft 32 passes out of the avoiding hole.

[0058] The lower shaft sleeve 31 is sleeved on the outer periphery of the lower shaft 32, so that the lower shaft 32 can rotate along its own axis. The lower shaft base 33 is provided with the plug hole 330, and the lower shaft fixing base 22 is provided with the fixing convex strip 221, which is inserted into the plug hole 330, so as to fix the lower shaft base 33 on the lower shaft fixing base 22. The lower shaft base 33 is used to connect the lower shaft 32 and the lower fitting block 34. The lower fitting block 34 is used to fit in the lower mounting gap 42, and part of the weight of the glass door plate 4 is transmitted to the whole lower shaft 3.

[0059] The lower inclined surface 35 increases the contact area between the lower fitting block 34 and the glass door plate 4, can share a larger load, so that the lower shaft 3 can withstand a larger force, enhances the stability of the connection, and reduces the loosening of the lower shaft sleeve 31 during use.

[0060] Further, the upper shaft 1 comprises an upper shaft sleeve 11, an upper shaft 12, an upper shaft base 13 and an upper fitting block 14.

[0061] The upper shaft 12 is arranged on the top of the upper rotating shaft base 13, the upper shaft sleeve 11 is sleeved on the outer periphery of the upper shaft 12, the upper embedded block 14 is arranged on the bottom of the upper rotating shaft base 13, the bottom of the upper embedded block 14 is provided with an upper inclined surface 15, and the upper inclined surface 15 is towards one side of the fixed sleeve 2.

[0062] The upper shaft sleeve 11 is sleeved on the outer periphery of the upper shaft 12, so that the upper shaft 12 can rotate along the axis thereof. The upper rotating shaft base 13 is used for connecting the upper shaft 12 and the upper embedded block 14. The upper embedded block 14 is used for being embedded in the upper installation gap 41, and part of the weight of the glass door plate 4 is transmitted to the whole upper rotating shaft 1.

[0063] The upper inclined surface 15 has the same effect as the lower inclined surface 35, that is, the contact area between the upper embedded block 14 and the glass door plate 4 is increased, the larger load can be shared, the stability of the connection is enhanced, and the loosening of the upper shaft sleeve 11 during use is reduced.

[0064] Further, a first chamfer is arranged between the side wall of the side of the upper embedded block 14 towards the upper installation gap 41 and the upper inclined surface 15, and a second chamfer is arranged between the side wall of the side of the lower embedded block 34 towards the lower installation gap 42 and the lower inclined surface 35.

[0065] The first chamfer and the second chamfer can effectively remove the sharp angle, so that the edges of the upper embedded block 14 and the lower embedded block 34 are no longer sharp, and the risk of scratching and cutting during installation or disassembly is reduced. Moreover, the first chamfer and the second chamfer can effectively disperse stress, avoid stress concentration, and reduce the possibility of rupture of the upper embedded block 14 or the lower embedded block 34.

[0066] Specifically, the limiting assembly 6 is further included, the limiting assembly 6 includes a connecting seat 61 and a limiting bolt 62; the connecting seat 61 is installed on the outer shower room upper door frame; the connecting seat 61 is provided with a rotating hole in the Z-axis direction, and the upper shaft sleeve 11 is arranged in the rotating hole;

[0067] One side of the connecting seat 61 is provided with a bolt hole in the Y-axis direction, and the bolt hole is in communication with the rotating hole; a side wall of the upper shaft sleeve 11 is provided with a through hole 110, and a side wall of the upper shaft 12 is provided with a limiting groove 121;

[0068] The limiting bolt 62 is threadedly assembled in the bolt hole, and one end of the limiting bolt 62 penetrates through the through hole 110 and enters the limiting groove 121;

[0069] When the upper shaft 12 and the glass door plate 4 rotate to the maximum rotation range in the clockwise direction, the limiting bolt 62 abuts against the inner wall of one side of the limiting groove 121; when the upper shaft 12 and the glass door plate 4 rotate to the maximum rotation range in the counterclockwise direction, the limiting bolt 62 abuts against the inner wall of the other side of the limiting groove 121.

[0070] The upper shaft 12 can rotate along its own axis, the lower shaft 32 can rotate along its own axis, and the upper rotating shaft 1 and the lower rotating shaft 3 are coaxially arranged, so that the glass door plate 4 can be rotated by being pushed, with the axis of the upper shaft 12 and the lower shaft 32 as the rotating axis. The limiting bolt 62 passes through the through hole 110 and enters the limiting groove 121, and when the glass door plate 4 rotates, the upper shaft 12 rotates synchronously, so that the positional relationship between the limiting bolt 62 and the limiting groove 121 changes; when the glass door plate 4 rotates to the maximum rotating range in the clockwise direction, the limiting bolt 62 abuts against the inner wall of one side of the limiting groove 121, thereby limiting the glass door plate 4 from continuing to rotate in the clockwise direction; similarly, when the glass door plate 4 rotates to the maximum rotating range in the counterclockwise direction, the limiting bolt 62 abuts against the inner wall of the other side of the limiting groove 121, thereby limiting the glass door plate 4 from continuing to rotate in the counterclockwise direction.

[0071] By adopting the above structure, the maximum rotating range of the glass door can be limited through the cooperation of the limiting bolt 62 and the limiting groove 121, so that the glass door can be prevented from colliding with surrounding walls, furniture or other objects when being opened or closed, the damage risk of the door body, the wall surface or the glass is reduced, and the door body structure is protected.

[0072] Specifically, the fixing block mounting groove 43 is a dovetail groove, and the shape of the fixing block 5 is matched with the fixing block mounting groove 43.

[0073] By adopting the above structure, the fixing block 5 can share a large load, so that the fixing block 5 can bear a large force, the stability of the connection is enhanced, and the fixing block 5 still remains stable in long-term use and is not prone to loosening due to factors such as vibration and thermal expansion. Moreover, the fixing block 5 can be conveniently disassembled for maintenance or replacement.

[0074] Preferably, the rotating shaft gaskets 7 are arranged between the upper mounting notch 41 and the upper rotating shaft 1 and between the lower mounting notch 42 and the lower rotating shaft 3.

[0075] In one specific embodiment of the utility model, the upper embedded block 14 and the lower embedded block 34 are of the same structure. The shape of the rotating shaft gasket 7 is matched with the upper embedded block 14 and the lower embedded block 34. By adopting the above structure, the upper rotating shaft 1 or the lower rotating shaft 3 can be prevented from loosening during use, and the stability of the connection is enhanced. Moreover, the rotating shaft gasket 7 can play a buffering role, can effectively reduce the mechanical impact and vibration between the upper mounting notch 41 and the upper rotating shaft 1 or between the lower mounting notch 42 and the lower rotating shaft 3, and can help to uniformly distribute the pressure between the contact surfaces, reduce the local pressure concentration phenomenon, and avoid damage or deformation of the contact surfaces due to uneven stress.

[0076] The utility model provides a shower room, shower room glass door reinforcing structure adopts above.

[0077] The technical principles of the present application are described above in combination with specific embodiments. These descriptions are only for explaining the principles of the present application, and cannot be interpreted as limiting the protection scope of the present application in any way. Based on the explanations herein, other specific embodiments of the present application can be conceived by those skilled in the art without creative efforts, and these equivalent variations or replacements are all included in the scope defined by the claims of the present application.

Claims

1. A reinforcement structure for a shower room glass door, characterized in that, The glass door plate is provided with an upper mounting gap at one side upper end and a lower mounting gap at one side lower end. The upper mounting gap and the lower mounting gap are provided at the same side, and a fixing block mounting groove is provided between the upper mounting gap and the lower mounting gap. The upper pivot is embedded in the upper mounting gap, the lower pivot is embedded in the lower mounting gap, and the fixing block is embedded in the fixing block mounting groove.

2. The reinforcing structure for a glass door of a shower room according to claim 1, wherein The upper pivot and the lower pivot are coaxially arranged. The fixing sleeve is detachably connected with the upper pivot, the lower pivot and the fixing block. The fixing sleeve further comprises a protection sleeve. The lower pivot comprises a lower shaft sleeve, a lower shaft, a lower pivot base and a lower embedded block.

3. The reinforcing structure for a glass door of a shower room according to claim 2, wherein The lower shaft is arranged at the bottom of the lower pivot base.

4. The reinforcing structure for a glass door of a shower room according to claim 2, wherein The lower shaft sleeve is arranged at the outer periphery of the lower shaft. The lower embedded block is arranged at the top of the lower pivot base.

5. The reinforcing structure for a glass door of a shower room according to claim 4, wherein The top of the lower embedded block is provided with a lower inclined surface. The top surface of the lower pivot base is provided with an avoiding hole. The outer periphery of the avoiding hole is provided with a fixing convex strip. The bottom of the lower pivot base is provided with a plug hole matched with the shape of the fixing convex strip. The lower pivot base is arranged in the lower pivot base. The lower shaft passes through the avoiding hole. The upper pivot comprises an upper shaft sleeve, an upper shaft, an upper pivot base and an upper embedded block. The upper shaft is arranged at the top of the upper pivot base. The upper shaft sleeve is arranged at the outer periphery of the upper shaft. The bottom of the upper embedded block is provided with an upper inclined surface.

6. The reinforcing structure for a glass door of a shower room according to claim 5, wherein The upper embedding block is provided with a first chamfer between the side wall of the upper installation gap and the upper inclined surface, and the lower embedding block is provided with a second chamfer between the side wall of the lower installation gap and the lower inclined surface.

7. The reinforcing structure of a shower room glass door according to claim 5, wherein The limiting assembly comprises a connecting seat and a limiting bolt; the connecting seat is installed on the outer shower room door frame; the connecting seat is provided with a rotating hole along the Z-axis direction, and the upper shaft sleeve is arranged in the rotating hole; One side of the connecting seat is provided with a bolt hole along the Y-axis direction, and the bolt hole is in communication with the rotating hole; the side wall of the upper shaft sleeve is provided with a through hole, and the side wall of the upper shaft is provided with a limiting groove; The limiting bolt is screwed into the bolt hole, and one end of the limiting bolt passes through the through hole and enters the limiting groove; When the upper shaft and the glass door plate are rotated to the maximum rotation range in the clockwise direction, the limiting bolt abuts against the inner wall of one side of the limiting groove; when the upper shaft and the glass door plate are rotated to the maximum rotation range in the counterclockwise direction, the limiting bolt abuts against the inner wall of the other side of the limiting groove.

8. The reinforcing structure for a glass door of a shower room according to claim 1, wherein The fixing block mounting groove is a dovetail groove, and the shape of the fixing block is matched with the fixing block mounting groove.

9. The reinforcing structure for a glass door of a shower room according to claim 1, wherein The upper installation gap and the upper rotating shaft, and the lower installation gap and the lower rotating shaft are both provided with rotating shaft gaskets.

10. A shower cubicle, characterised in that The shower room adopts the shower room glass door reinforcing structure according to any one of claims 1-9.