Anti-shaking structure for shower room door

By setting a guide groove and a limiting boss in the shower door, and using the flange to press against and eliminate friction gaps, the problem of shower door shaking is solved, and safety and user experience are improved.

CN223634558UActive Publication Date: 2025-12-05ZHONGSHAN TIANLE SANITARY WARE CO LTD
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Patent Information

Application Number
CN202422868015.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-12-05
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing sliding shower doors are prone to wobbling during use, posing a safety hazard. They may generate noise and, in extreme cases, detach from the guide track, causing injury.

Method used

A guide mechanism and an anti-shaking mechanism are set between the door frame and the door body. By using the cooperation of the guide groove and the limiting boss, the friction gap is eliminated by the pressure between the first flange and the second flange, thus limiting the shaking of the door.

Benefits of technology

It effectively reduces the shaking of the shower door, improves safety and user experience, and avoids safety hazards caused by shaking.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223634558U_ABST
    Figure CN223634558U_ABST
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Abstract

The utility model discloses an anti-shaking structure for a shower room door, which comprises a fixedly arranged room door frame, a room door main body arranged on the room door frame in a translation manner, and a guide mechanism and an anti-shaking mechanism which are arranged between the room door frame and the room door main body, the guiding effect of the door body during translation is achieved through cooperation of a limiting boss on the guiding piece and a guiding groove, then the anti-shaking mechanism comprises a first flange and a second flange which are arranged between the limiting boss and the guiding groove, and when the limiting boss and the guiding groove move relatively, the continuous abutting effect of the first flange and the second flange is adopted, so that the door body is prevented from shaking. According to the shower room door, friction gaps between the limiting bosses and the guide grooves are eliminated, lateral movement of the limiting bosses in the friction gaps is limited, therefore, shaking of the room door body relative to the room door frame is avoided, potential safety hazards during use of the shower room door are reduced, and the use experience of a user is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a shower room door structure technical field, especially a kind of anti-shaking structure for shower room door. BACKGROUND

[0002] In modern home decoration, the application of translation type shower room door is more widely, and the operation of its opening and closing usually depends on the track system installed on wall or door frame, and the whole door is connected with track through pulley and other components, so that the function of opening or closing the door on the wall or door frame can be realized. The existing translation type shower room door usually sets pulley assembly on one side of the door along the opening and closing direction, and the opposite side is matched with the corresponding guide rail. The limiting effect of the guide rail can prevent the door from deviating during translation. However, there is usually a gap between the door and the guide rail. Although this gap does not significantly affect the movement of the door during normal use, it makes the door prone to shaking when subjected to external force. The shaking of the door poses a safety hazard to the use of the shower room door. On the one hand, the shaking door may produce noise, which may interfere with the normal use of the user. On the other hand, in extreme cases, the door may be shaken out of the guide rail due to excessive shaking, which may cause harm to the user. Therefore, there is an urgent need for an anti-shaking structure suitable for translation type shower room door to reduce the safety hazard of shower room door during use and improve the user experience. SUMMARY

[0003] The utility model aims at providing an anti-shaking structure for shower room door to solve the problem of safety hazard caused by easy shaking of the existing shower room door.

[0004] The utility model provides technical scheme as follows: an anti-shaking structure for shower room door, comprising a fixedly arranged door frame, a door body translationally arranged in the door frame, and a guide mechanism and an anti-shaking mechanism arranged between the door frame and the door body. The guide mechanism comprises a guide groove and a guide piece arranged correspondingly. The guide groove is arranged along the translation direction of the door body. The guide piece has a limiting boss protruding therefrom for extending into the guide groove. The anti-shaking mechanism comprises a first flange and a second flange arranged between the guide groove and the limiting boss. When the door body translates, the limiting boss moves relative to the guide groove along the extension direction of the guide groove. The first flange continuously presses against the second flange to eliminate the friction gap between the guide groove and the limiting boss.

[0005] As described above, in an anti-shaking structure for a shower door, the first flange is disposed opposite to each other on the groove walls on both sides of the guide groove along the length direction of the guide groove, and the second flange is disposed opposite to each other on the side walls on both sides of the limiting boss along the height direction of the limiting boss. When the limiting boss extends into the guide groove, the opposing first flange abuts against the opposing second flange.

[0006] As described above, the anti-shake structure for a shower door includes a guide beam arranged along the translational direction of the door body. The guide beam includes an outer beam and an inner beam, and the guide groove is formed in the inner beam along the length of the guide beam.

[0007] As described above, in an anti-shake structure for a shower door, the outer beam is made of a rigid material, and the rigidity of the inner beam is less than that of the outer beam.

[0008] As described above, in an anti-shaking structure for a shower door, the guide beam has a fitting groove on the side facing away from the guide groove, which is arranged along the length of the guide beam, so that the cross section of the guide beam is "I" shaped.

[0009] As described above, an anti-shake structure for a shower door includes a door body comprising at least a door panel, the edge of which is embedded in the fitting groove. The guide is fixedly installed so that the translation of the door body causes the translation of the guide beam, thereby causing the guide groove to move, thus moving the first flange and maintaining its contact with the second flange.

[0010] As described above, an anti-shake structure for a shower door includes a door frame with a fixed base beam fixed to the ground, and a guide member fixedly installed on the fixed base beam, such that the guide beam is located on the underside of the door panel.

[0011] The anti-shake structure for a shower door as described above further includes a pulley mechanism installed on the upper side of the door panel. The door frame includes a fixed top beam parallel to the fixed base beam, and the pulley mechanism includes a plurality of pulleys movably mounted on the fixed top beam.

[0012] As described above, an anti-shake structure for a shower door has a movable cavity inside the fixed top beam that extends along the translational direction of the door body. When the door body translates, the pulley rolls and translates within the movable cavity.

[0013] Compared with the prior art, the present invention has the following advantages:

[0014] The utility model discloses a prevent shaking structure for shower room door, set up guiding mechanism and prevent shaking mechanism between room door frame and room door main body, wherein guiding mechanism includes guiding groove and guiding piece that can move relative, utilize the cooperation of limiting boss on guiding piece and guiding groove to realize the guiding effect when the room door main body translation, then prevent shaking mechanism includes the first flange and second flange between limiting boss and guiding groove, when limiting boss and guiding groove move relative, adopt the continuous pressing effect of first flange and second flange, eliminate the friction gap between limiting boss and guiding groove, limit the lateral movement of limiting boss in these friction gap, thereby avoid the shaking of room door main body relative to room door frame, reduce the security risk of shower room door when using, improve the user's use experience. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the three-dimensional explosion schematic view of the prevent shaking structure of the utility model.

[0016] Figure 2 It is the local partial exploded perspective schematic view of the shower room door of the utility model.

[0017] Figure 3 It is Figure 2 The enlarged view of middle A part.

[0018] The drawing reference explanation: 1, room door frame;2, room door main body;3, guiding mechanism;4, prevent shaking mechanism;5, pulley mechanism;11, fixed base beam;12, fixed top beam;21, door panel;31, guiding groove;32, guiding piece;33, guiding crossbeam;41, first flange;42, second flange;51, pulley;121, movable cavity;321, limiting boss;331, outer beam body;332, inner beam body;333, inlay groove. DETAILED DESCRIPTION

[0019] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the protection scope of the utility model.

[0020] Embodiment 1: please refer to the drawings of the utility model Figure 1 to the drawings of the utility model Figure 3The embodiment provides a shaking-preventing structure for a shower room door, which comprises a fixed door frame 1, a door body 2 which is horizontally arranged on the door frame 1, and a guide mechanism 3 and a shaking-preventing mechanism 4 which are arranged between the door frame 1 and the door body 2, the guide mechanism 3 comprises correspondingly arranged guide grooves 31 and guide pieces 32, the guide grooves 31 are arranged along the horizontal arrangement direction of the door body 2, the guide pieces 32 are provided with limiting protrusions 321 which are arranged on the guide pieces 32 and are used for extending into the guide grooves 31, the shaking-preventing mechanism 4 comprises first flanges 41 and second flanges 42 which are arranged between the guide grooves 31 and the limiting protrusions 321, when the door body 2 is horizontally arranged, the limiting protrusions 321 are relatively moved along the extension direction of the guide grooves 31 and the guide grooves 31, the first flanges 41 are continuously pressed on the second flanges 42, so that the friction gap between the guide grooves 31 and the limiting protrusions 321 is eliminated. The shaking-preventing structure for the shower room door of the embodiment is provided with the guide mechanism 3 and the shaking-preventing mechanism 4 between the door frame 1 and the door body 2, the guide mechanism 3 comprises the guide grooves 31 and the guide pieces 32 which can be relatively moved, the guide effect of the door body 2 during horizontal arrangement is realized by the cooperation of the limiting protrusions 321 on the guide pieces 32 and the guide grooves 31, then the shaking-preventing mechanism 4 comprises the first flanges 41 and the second flanges 42 which are arranged between the limiting protrusions 321 and the guide grooves 31, when the limiting protrusions 321 and the guide grooves 31 are relatively moved, the continuous pressing effect of the first flanges 41 and the second flanges 42 is adopted, the friction gap between the limiting protrusions 321 and the guide grooves 31 is eliminated, the lateral movement of the limiting protrusions 321 in the friction gap is limited, so that the shaking of the door body 2 relative to the door frame 1 is avoided, the security risk of the shower room door during use is reduced, and the use experience of the user is improved.

[0021] The first flanges 41 are arranged on the groove walls on both sides of the guide grooves 31 along the length direction of the guide grooves 31, the second flanges 42 are arranged on the side walls on both sides of the limiting protrusions 321 along the height direction of the limiting protrusions 321, when the limiting protrusions 321 extend into the guide grooves 31, the opposite first flanges 41 are pressed on the opposite second flanges 42, the setting makes the first flanges 41 be able to reduce the contact area of the mutual pressing of the two flanges when the first flanges 41 are pressed on the second flanges 42 and moved relative to the second flanges 42 on the premise that the limiting effect of the limiting protrusions 321 is kept, so that the friction force between the two flanges is reduced, and the horizontal arrangement of the door body 2 is more smooth.

[0022] The guiding mechanism 3 also includes a guide beam 33 arranged along the translational direction of the door body 2. The guide beam 33 includes an outer beam 331 and an inner beam 332, and a guide groove 31 is formed in the inner beam 332 along the length of the guide beam 33. Preferably, the outer beam 331 is made of rigid material, and the rigidity of the inner beam 332 is less than that of the outer beam 331. This arrangement provides a certain degree of cushioning when the first flange 41 presses against the second flange 42, thus providing a certain degree of protection for the operation of the guiding mechanism.

[0023] The guide beam 33 has a fitting groove 333 on the side facing away from the guide groove 31, which is arranged along the length of the guide beam 33, making the cross-section of the guide beam 33 "I". Then, the door body 2 includes at least a door panel 21, the edge of the door panel 21 is embedded in the fitting groove 333, and the guide member 32 is fixedly set. The translation of the door body 2 drives the translation of the guide beam 33, thereby driving the movement of the guide groove 31, so that the first flange 41 moves and maintains its pressure against the second flange 42. The cooperation method of fixing the guide member 32 and movably setting the guide beam 33 facilitates the translation of the door body 2.

[0024] The door frame 1 includes a fixed base beam 11 fixed to the ground, and a guide member 32 is fixedly installed on the fixed base beam 11, so that the guide beam 33 is located on the lower side of the door panel 21. At this time, the guide groove 31 is located on the upper side of the limiting boss 321, which makes it difficult for foreign objects to accumulate in the guide groove 31, which is conducive to the opening and closing of the door body 2.

[0025] The anti-sway structure for the shower door also includes a pulley mechanism 5 installed on the upper side of the door panel 21. The door frame 1 includes a fixed top beam 12 parallel to the fixed base beam 11. The pulley mechanism 5 includes multiple pulleys 51 movably mounted on the fixed top beam 12. Furthermore, the fixed top beam 12 has a movable cavity 121 extending along the translational direction of the door body 2. When the door body 2 translates, the pulleys 51 roll and translate within the movable cavity 121. The pulley mechanism 5 is located on the upper side of the door body 2, and the guide mechanism 3 and the anti-sway mechanism 2 are located on the lower side of the door body 2. Meanwhile, the material of the door panel 21 can be glass. This design is the optimal choice for the shower door structure design.

[0026] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A shake-prevention structure for a shower door, characterized by: The system includes a fixed door frame (1), a door body (2) that is translatably mounted on the door frame (1), and a guide mechanism (3) and an anti-shaking mechanism (4) disposed between the door frame (1) and the door body (2). The guide mechanism (3) includes a guide groove (31) and a guide member (32) respectively. The guide groove (31) extends along the translational direction of the door body (2), and the guide member (32) has a limiting boss (32) protruding for extending into the guide groove (31). 21) The anti-sway mechanism (4) includes a first flange (41) and a second flange (42) disposed between the guide groove (31) and the limiting boss (321). When the door body (2) moves horizontally, the limiting boss (321) moves relative to the guide groove (31) along the extension direction of the guide groove (31). The first flange (41) continuously presses against the second flange (42) to eliminate the friction gap between the guide groove (31) and the limiting boss (321).

2. The anti-shaking structure for a shower door according to claim 1, characterized in that: The first flange (41) is disposed opposite to each other on the groove wall on both sides of the guide groove (31) along the length direction of the guide groove (31), and the second flange (42) is disposed opposite to each other on the side wall on both sides of the limiting boss (321) along the height direction of the limiting boss (321). When the limiting boss (321) extends into the guide groove (31), the opposite first flange (41) abuts against the opposite second flange (42).

3. The anti-shaking structure for a shower door according to claim 1, characterized in that: The guiding mechanism (3) further includes a guide beam (33) arranged along the translation direction of the door body (2). The guide beam (33) includes an outer beam (331) and an inner beam (332). The guide groove (31) is opened in the inner beam (332) along the length direction of the guide beam (33).

4. The anti-shaking structure for a shower door according to claim 3, characterized in that: The outer beam (331) is made of rigid material, and the rigidity of the inner beam (332) is less than that of the outer beam (331).

5. The anti-shaking structure for a shower door according to claim 3, characterized in that: The guide beam (33) has a fitting groove (333) on the side facing away from the guide groove (31) along the length direction of the guide beam (33), so that the cross section of the guide beam (33) is "I" shaped.

6. The anti-shaking structure for a shower door according to claim 5, characterized in that: The door body (2) includes at least a door panel (21), the edge of which is embedded in the fitting groove (333). The guide (32) is fixedly installed so that the translation of the door body (2) drives the translation of the guide beam (33), thereby driving the movement of the guide groove (31), so that the first flange (41) moves and remains pressed against the second flange (42).

7. The anti-shaking structure for a shower door according to claim 6, characterized in that: The door frame (1) includes a fixed base beam (11) fixed to the ground, and the guide (32) is fixedly installed on the fixed base beam (11) so that the guide beam (33) is located on the lower side of the door panel (21).

8. The anti-shaking structure for a shower door according to claim 7, characterized in that: The door frame (1) further comprises a pulley mechanism (5) mounted on the upper side of the door panel (21), and the door frame (1) comprises a fixed top beam (12) parallel to the fixed base beam (11), and the pulley mechanism (5) comprises a plurality of pulleys (51) movably mounted on the fixed top beam (12).

9. The anti-shaking structure for a shower door according to claim 8, characterized in that: The fixed top beam (12) is internally provided with a movable cavity (121) extending along the translation direction of the door body (2), and the pulleys (51) roll and translate in the movable cavity (121) when the door body (2) translates.