Double-sliding-door shower room with buffer structure
By setting buffers and buffer hooks opposite to each other on the upper guide rail of the sliding door, the buffering of the double door panel is achieved, which solves the problem of increasing the overall thickness of the sliding door in the prior art, and improves the utilization of installation space and water barrier effect.
Patent Information
- Application Number
- CN202421777097.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-07-25
AI Technical Summary
When the existing sliding door shower room realizes double-door panel buffering, it is difficult to effectively reduce the thickness requirements of the upper guide rail, resulting in an increase in the overall thickness of the sliding door, affecting the installation space and water barrier effect.
By setting the first buffer and the second buffer opposite to each other on the upper guide rail and installing a buffer hook on the door panel, the buffering of the double door panel is realized, simplifying the upper guide rail structure and reducing the requirements for the thickness of the upper guide rail.
It effectively reduces the overall thickness of the sliding door, reduces the requirements for installation space, reduces the gap between the door panels, and improves the water barrier effect.
Smart Images

Figure CN223018445U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of household bathroom, and particularly relates to a double-sliding-door shower room with a buffer structure. Background Art
[0002] The sliding door is a common product in the field of household bathroom, which has the advantages of small occupied space and convenient use. It usually includes a door panel, rollers and a guide rail. The rollers are usually connected to the door panel and roll along the guide rail to realize the opening and closing operations of the door.
[0003] With the popularization of household bathroom products, the requirements for the use performance of sliding doors are also getting higher and higher. Among them, the use of a buffer in the sliding door can play a good role in buffering and decelerating when the door panel slides to near the limit position, effectively avoiding violent collisions between the sliding door and other supporting accessories such as walls, and improving the user experience.
[0004] The Chinese utility model patent with the authorization announcement number of CN 211818859U discloses a sliding door and a shower room, including an upper guide beam, a lower guide beam, and a door panel arranged between the upper guide beam and the lower guide beam. The lower guide beam includes a guide rail, and a limiting convex edge is arranged on one side of the guide rail. At least two groups of rollers corresponding to the lower guide beam are connected to the door panel, and a guide groove matching the guide rail is formed on the circumferential surface of the rollers. An installation groove is arranged on the upper guide beam. An upper guide component corresponding to the upper guide beam is also connected to the door panel, and the upper guide component includes a guide block inserted into the installation groove. A buffer corresponding to the guide block is also arranged in the installation groove. The above-mentioned sliding door is convenient for cleaning, can effectively prevent the door panel from jumping, and avoids the collision of the door panel by setting a buffer. However, the above-mentioned sliding door only has a single door panel, and the flexibility of use is insufficient.
[0005] The Chinese utility model patent with the authorization announcement number of CN 216476867U discloses an anti-jumping-off roller structure, a sliding door and a shower room, and the sliding door among them includes two door panels. However, the rollers corresponding to the two door panels in the above-mentioned sliding door are distributed in an up-and-down form. Although the guide rail structure is more compact, no buffer is provided, and due to the guide rail structure, the arrangement of the buffer is difficult. Summary of the Invention
[0006] The technical problem to be solved by the utility model is to provide a double-sliding-door shower room with a buffer structure, which sets a first buffer and a second buffer to realize the buffering of the double door panels, and the first buffer and the second buffer are arranged opposite to each other up and down, which can effectively reduce the thickness requirement of the upper guide rail and reduce the overall thickness of the sliding door.
[0007] To solve the above technical problems, the technical solution provided by the present utility model is as follows: A double-sliding-door shower room with a buffer structure, including a front chamber, the front chamber includes a sliding door, the sliding door includes an upper guide rail, a first door panel and a second door panel, rollers are respectively provided on the first door panel and the second door panel, the upper guide rail is arranged between the first door panel and the second door panel, and the rollers are rotatably arranged on the upper guide rail;
[0008] A first buffer is provided on the upper side of the upper guide rail, and a second buffer is provided on the lower side. A first buffer hook corresponding to the first buffer is provided on the first door panel, and a second buffer hook corresponding to the second buffer is provided on the second door panel.
[0009] The rollers of the first door panel and the second door panel are both arranged on the upper side of the upper guide rail, which can realize the same height distribution of the rollers, with better aesthetics, and at the same time simplify the structure of the upper guide rail. Compared with a single-sliding-door shower room, a double-sliding-door shower room needs to leave enough space for the rollers of the two door panels, and the inherent thickness will be greater. In this application, the two buffers are arranged opposite to each other above and below the upper guide rail, which can effectively reduce the thickness requirement for the upper guide rail and reduce the overall thickness of the sliding door on the basis of cleverly realizing the buffering of the double sliding doors. The reduction of the overall thickness of the sliding door can not only reduce the requirement for the installation space, but also reduce the gap between the two door panels to a certain extent and improve the water blocking effect.
[0010] Preferably, the upper guide rail is provided with a first track and a second track arranged in parallel. The first door panel is arranged close to the first track, and the corresponding roller is rotatably arranged on the first track. The second door panel is arranged close to the second track, and the corresponding roller is rotatably arranged on the second track; the first buffer is arranged between the first track and the second track.
[0011] The first track and the second track guide and limit the two rollers, avoiding interference between the two rollers and ensuring the normal operation of the double door panels.
[0012] Preferably, the roller includes a rolling body and a central shaft. The first buffer hook is fixedly connected to the central shaft of the roller on the first door panel, and the corresponding rolling body is located between the first buffer hook and the first door panel.
[0013] Preferably, the roller further includes an adjusting seat and an adjusting screw. The adjusting seat is fixedly connected to the corresponding first door panel or second door panel; an adjusting hole is provided on the adjusting seat, the adjusting hole is oblong, the central shaft passes through the adjusting hole; the adjusting screw is arranged along the length direction of the adjusting hole and is threadedly connected to the central shaft, and the adjusting seat axially limits the adjusting screw.
[0014] By rotating the adjusting screw, the up-and-down adjustment of the roller relative to the door panel can be achieved, so as to adjust the installation height of the corresponding door panel relative to the upper guide rail.
[0015] Preferably, an anti-jump member is further provided on the first door panel, and the anti-jump member and the roller are on the same side of the first door panel; in the height direction, the upper guide rail is located between the roller and the anti-jump member.
[0016] The anti-jump member and the roller jointly limit the first door panel relative to the upper guide rail, preventing the first door panel from disengaging from the upper guide rail during operation.
[0017] Preferably, the sliding door further includes a lower guide rail, and the lower guide rail includes a guide sliding seat. The guide sliding seat is provided with a first sliding groove and a second sliding groove. The lower end of the first door panel is slidably arranged in the first sliding groove, and the lower end of the second door panel is slidably arranged in the second sliding groove.
[0018] The guide sliding seat plays a role in restricting and guiding the lower ends of both the first door panel and the second door panel.
[0019] Preferably, the sliding door further includes two lateral support columns, and the upper guide rail and the lower guide rail are arranged between the two lateral support columns and are respectively fixedly connected to the two lateral support columns.
[0020] Preferably, the second buffer hook includes a hook body and a connecting seat. The hook body and the connecting seat are detachably connected, and the second door panel is located between the hook body and the connecting seat; the hook body is located below the upper guide rail, and a buffer block is provided on the hook body and arranged upward, and the buffer block corresponds to the second buffer.
[0021] The buffer block cooperates with the second buffer to achieve buffering of the operation of the second door panel.
[0022] Preferably, the second buffer hook further includes an intermediate locking member, and a locking bolt is provided between the intermediate locking member and the connecting seat;
[0023] The hook body is provided with a T-shaped sliding groove, and the extending direction of the sliding groove is parallel to the extending direction of the buffer block; the intermediate locking member is further provided with a locking slider matching the T-shaped sliding groove, and the locking slider is slidably arranged in the T-shaped sliding groove.
[0024] When the locking screw is rotated, the intermediate locking member approaches or moves away from the connecting seat, and the hook body also moves along with the intermediate locking member. When the hook body moves towards the second door panel to a specific distance, the hook body is pressed against the second door panel to complete the installation.
[0025] When the hook body is in an unlocked state, the hook body can slide up and down relative to the intermediate locking member, so as to adjust the position of the buffer block relative to the upper guide rail, so as to better cooperate with the second buffer, and the adjustment method is flexible. When the hook body needs to be replaced, the locking screw can be loosened and the hook body can be slid down to be removed for replacement, and the operation is convenient.
[0026] Preferably, two parallel limit ribs are provided on the lower side of the upper guide rail, and the second buffer is located between the two limit ribs.
[0027] The two limit ribs can limit and protect the second buffer. At the same time, the cooperation between the limit rib and the buffer block can also play an overall limiting role on the second door panel, avoiding the second door panel from detaching from the upper guide rail during operation. Description of the Drawings
[0028] Figure 1 is a schematic structural diagram of the double-sliding door shower room with a buffer structure in this embodiment;
[0029] Figure 2 is Figure 1 a partial enlarged view of A in
[0030] Figure 3 is a partial cross-sectional view of the double-sliding door shower room with a buffer structure in this embodiment;
[0031] Figure 4 is a cross-sectional view of the upper guide rail in the double-sliding door shower room with a buffer structure in this embodiment;
[0032] Figure 5 is a schematic structural diagram of the first buffer hook in the double-sliding door shower room with a buffer structure in this embodiment;
[0033] Figure 6 is a cross-sectional view of the first buffer hook in the double-sliding door shower room with a buffer structure in this embodiment;
[0034] Figure 7 is an exploded view of the first buffer hook in the double-sliding door shower room with a buffer structure in this embodiment;
[0035] Figure 8 is a schematic structural diagram of the cooperation between the connecting seat and the intermediate locking member in the double-sliding door shower room with a buffer structure in this embodiment. Detailed Implementation Modes
[0036] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention. Embodiment
[0037] As Figures 1-4 shown, a double-sliding-door shower room with a buffer structure includes a front chamber. The front chamber includes a sliding door. The sliding door includes an upper guide rail 2, a first door panel 3 and a second door panel 5. Rollers 1 are respectively provided on the first door panel 3 and the second door panel 5. The upper guide rail 2 is arranged between the first door panel 3 and the second door panel 5, and the rollers 1 are rollably arranged on the upper guide rail 2.
[0038] As Figure 3 and Figure 4 shown, specifically, the upper guide rail 2 is provided with a first track and a second track arranged in parallel. The first door panel 3 is arranged close to the first track, and the corresponding roller 1 is rollably arranged on the first track. The second door panel 5 is arranged close to the second track, and the corresponding roller 1 is rollably arranged on the second track. The first track 24 and the second track 23 guide and limit the two rollers 1 to prevent the two rollers 1 from interfering with each other and ensure the normal operation of the double door panels.
[0039] As Figure 3 and Figure 4 shown, a first buffer 22 is provided on the upper side of the upper guide rail 2, and a second buffer 21 is provided on the lower side. A first buffer hook 8 corresponding to the first buffer 22 is provided on the first door panel 3, and a second buffer hook 11 corresponding to the second buffer 21 is provided on the second door panel 5. Specifically, the first buffer 22 is arranged between the first track and the second track.
[0040] The rollers 1 of the first door panel 3 and the second door panel 5 are both arranged on the upper side of the upper guide rail 2, which can achieve the same height distribution of the rollers 1, with better aesthetics and at the same time simplify the structure of the upper guide rail 2. Compared with a single-sliding-door shower room, a double-sliding-door shower room needs to leave enough space for the rollers 1 of the two door panels, so the inherent thickness will be greater. In this application, the two buffers are arranged opposite to each other on the upper and lower sides of the upper guide rail 2, which can effectively reduce the thickness requirement for the upper guide rail 2 on the basis of cleverly realizing the buffering of the double sliding doors and reduce the overall thickness of the sliding door. The reduction of the overall thickness of the sliding door can not only reduce the requirement for the installation space, but also reduce the gap between the two door panels to a certain extent and improve the water blocking effect.
[0041] Specifically, the roller 1 includes a rolling body and a central shaft. The first buffer hook 8 is fixedly connected to the central shaft of the roller 1 on the first door panel 3, and the corresponding rolling body is located between the first buffer hook 8 and the first door panel 3.
[0042] The described roller 1 further includes an adjusting seat and an adjusting screw. The adjusting seat is fixedly connected to the corresponding first door panel 3 or second door panel 5. An adjusting hole is provided on the adjusting seat. The adjusting hole is elongated, and the central axis passes through the adjusting hole. The adjusting screw is arranged along the length direction of the adjusting hole and is threadedly connected to the central axis. The adjusting seat axially limits the adjusting screw.
[0043] By rotating the adjusting screw, the up-and-down adjustment of the roller 1 relative to the door panel can be achieved, thereby realizing the adjustment of the installation height of the corresponding door panel relative to the upper guide rail 2.
[0044] Such as Figure 3 and Figure 4 As shown, an anti-jump member 51 is further provided on the first door panel 3. The anti-jump member 51 and the roller 1 are on the same side of the first door panel 3. In the height direction, the upper guide rail 2 is located between the roller 1 and the anti-jump member 51. The anti-jump member 51 and the roller 1 jointly limit the first door panel 3 relative to the upper guide rail 2 to prevent the first door panel 3 from disengaging from the upper guide rail 2 during operation.
[0045] Such as Figure 1 and Figure 2 As shown, further, the sliding door further includes a lower guide rail 6. The lower guide rail 6 includes a guide sliding seat 61. The guide sliding seat 61 is provided with a first sliding groove and a second sliding groove. The lower end of the first door panel 3 is slidably arranged in the first sliding groove, and the lower end of the second door panel 5 is slidably arranged in the second sliding groove. The guide sliding seat 61 plays a role in restricting and guiding the lower ends of both the first door panel 3 and the second door panel 5.
[0046] Such as Figure 1 As shown, the sliding door further includes two lateral support columns 4. The upper guide rail 2 and the lower guide rail 6 are arranged between the two lateral support columns 4 and are respectively fixedly connected to the two lateral support columns 4.
[0047] Such as Figures 5-8 As shown, specifically, the second buffer hook 11 includes a hook body 81 and a connecting seat 82. The hook body 81 is detachably connected to the connecting seat 82, and the second door panel 5 is located between the hook body 81 and the connecting seat 82. The hook body 81 is located below the upper guide rail 2, and an upwardly provided buffer block 811 is provided on the hook body 81. The buffer block 811 corresponds to the second buffer 21. The buffer block 811 cooperates with the second buffer 21 to achieve the buffering of the operation of the second door panel 5.
[0048] Such as Figures 5-8As shown, the second buffer hook 11 further includes an intermediate locking member 84, and a locking bolt 83 is provided between the intermediate locking member 84 and the connecting seat 82. A T-shaped sliding groove 812 is provided on the hook body 81, and the extending direction of the sliding groove is parallel to the extending direction of the buffer block 811. A locking slider 841 matching the T-shaped sliding groove 812 is further provided on the intermediate locking member 84, and the locking slider 841 is slidably arranged in the T-shaped sliding groove 812.
[0049] When the locking screw is rotated, the intermediate locking member 84 approaches or moves away from the connecting seat 82, and the hook body 81 also moves along with the intermediate locking member 84. When the hook body 81 moves towards the second door panel 5 to a specific distance, the hook body 81 is pressed against the second door panel 5 to complete the installation.
[0050] When the hook body 81 is in an unlocked state, the hook body 81 can slide up and down relative to the intermediate locking member 84, so as to adjust the position of the buffer block 811 relative to the upper guide rail 2 to better cooperate with the second buffer 21, and the adjustment method is flexible. When the hook body 81 needs to be replaced, the locking screw can be loosened, and the hook body 81 can be slid down to be removed for replacement, and the operation is convenient.
[0051] As Figures 5-8 shown, a guiding groove 822 is provided on the connecting seat 82 along the axial direction of the locking screw. A part of the intermediate locking member 84 extends into the guiding groove 822 and is slidably arranged along the guiding groove 822. The guiding groove 822 can guide and limit the intermediate locking member 84 when the locking screw is rotated to ensure that the intermediate locking member 84 slides relatively along the guiding groove 822.
[0052] As Figure 3 and Figure 4 shown, two parallel limiting edges 25 are provided on the lower side surface of the upper guide rail 2, and the second buffer 21 is located between the two limiting edges 25. The two limiting edges 25 can play a role in limiting and protecting the second buffer 21. At the same time, the cooperation between the limiting edges 25 and the buffer block 811 can also play an overall limiting role on the second door panel 5 to prevent the second door panel 5 from separating from the upper guide rail 2 during operation.
[0053] In conclusion, the above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A double sliding door shower room with a buffer structure, comprising a front room, wherein the front room comprises a sliding door, and is characterized in that: The sliding door comprises an upper guide rail, a first door panel and a second door panel, the first door panel and the second door panel are respectively provided with rollers, the upper guide rail is arranged between the first door panel and the second door panel, and the rollers are rotatably arranged on the upper guide rail; The upper side of the upper guide rail is provided with a first buffer, the lower side is provided with a second buffer, the first door panel is provided with a first buffer hook corresponding to the first buffer, and the second door panel is provided with a second buffer hook corresponding to the second buffer; The second buffer hook comprises a hook body and a connecting seat, the hook body and the connecting seat are detachably connected, and the second door panel is located between the hook body and the connecting seat; the hook body is located below the upper guide rail, and a buffer block arranged upward is provided on the hook body, and the buffer block corresponds to the second buffer; The lower side surface of the upper guide rail is provided with two parallel limit ribs, and the second buffer is located between the two limit ribs.
2. The double sliding door shower room according to claim 1, characterized in that: The upper guide rail is provided with a first track and a second track arranged in parallel, wherein the first door panel is arranged close to the first track, and the corresponding roller is arranged rollingly on the first track, and the second door panel is arranged close to the second track, and the corresponding roller is arranged rollingly on the second track; the first buffer is arranged between the first track and the second track.
3. The double sliding door shower room according to claim 2, characterized in that: The roller comprises a rolling body and a central axis. The first buffer hook is fixedly connected to the central axis of the roller on the first door panel, and the corresponding rolling body is located between the first buffer hook and the first door panel.
4. The double sliding door shower room according to claim 3, characterized in that: The roller also includes an adjustment seat and an adjustment screw, the adjustment seat is fixedly connected to the corresponding first door panel or the second door panel; the adjustment seat is provided with an adjustment hole, the adjustment hole is in a long strip shape, and the center axis is arranged through the adjustment hole; the adjustment screw is arranged along the length direction of the adjustment hole and is threadedly connected to the center axis, and the adjustment seat limits the axial position of the adjustment screw.
5. The double sliding door shower room according to claim 1, characterized in that: The first door panel is also provided with an anti-jumping piece, and the anti-jumping piece and the roller are located on the same side of the first door panel; in the height direction, the upper guide rail is located between the roller and the anti-jumping piece.
6. The double sliding door shower room according to claim 1, characterized in that: The sliding door also includes a lower guide rail, which includes a guide slide seat. The guide slide seat is provided with a first slide groove and a second slide groove. The lower end of the first door panel is slidably set in the first slide groove, and the lower end of the second door panel is slidably set in the second slide groove.
7. The double sliding door shower room according to claim 6, characterized in that: The sliding door further comprises two lateral support columns, and the upper guide rail and the lower guide rail are arranged between the two lateral support columns and are fixedly connected to the two lateral support columns respectively.
8. The double sliding door shower room according to any one of claims 1 to 7, characterized in that: The second buffer hook further comprises an intermediate locking member, and a locking bolt is provided between the intermediate locking member and the connecting seat; The hook body is provided with a T-shaped slide groove, and the extension direction of the slide groove is parallel to the extension direction of the buffer block; the intermediate locking member is also provided with a locking slider matching the T-shaped slide groove, and the locking slider is slidably arranged in the T-shaped slide groove.
Citation Information
Patent Citations
Sliding door and shower room
CN211818859U
Anti-tripping roller structure, sliding door and shower room
CN216476867U