Dynamic show window

By introducing quick-installation and fixing mechanisms and auxiliary stabilization mechanisms into the dynamic display window, the problem of low modularity is solved, enabling rapid disassembly and installation of modular panels, thereby improving maintenance efficiency and the reliability of the display window.

CN224261538UActive Publication Date: 2026-05-19DOBIN DISPLAY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DOBIN DISPLAY CO LTD
Filing Date
2025-05-28
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing dynamic display windows have an unreasonable structural design and low modularity, which means that the entire window needs to be disassembled on a large scale during maintenance, increasing maintenance costs and time, and reducing reliability and practicality.

Method used

The system employs a quick-installation fixing mechanism and an auxiliary stabilization mechanism. Through the design of support blocks, plug-in blocks, snap-fit ​​components, and limit blocks, it enables the rapid disassembly and installation of the module board, reducing the hassle of overall disassembly.

Benefits of technology

It enables rapid disassembly and installation of modular panels, improving maintenance efficiency, reducing maintenance costs, and enhancing the reliability and practicality of the display window.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dynamic display showcase, and relates to the field of display showcases, the dynamic display showcase comprises a showcase frame, a plurality of module boards are arranged on the showcase frame, a plurality of uniformly distributed driving motors are fixed on the module boards, and reflectors are fixed at the output ends of the driving motors; a quick mounting and fixing mechanism is arranged between the module plates and the show window frame, and two auxiliary stabilizing mechanisms are arranged between the adjacent module plates. The corresponding module plates are directly detached from the show window frame through the quick mounting and fixing mechanisms, then the corresponding driving motors or reflectors are maintained and replaced, and then the module plates are fixed in the show window frame again through the quick mounting and fixing mechanisms. And meanwhile, the adjacent auxiliary stabilizing mechanisms further reinforce the adjacent module plates, so that the single module plate can be conveniently disassembled and assembled, and the trouble that the whole show window frame needs to be disassembled during maintenance is reduced.
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Description

Technical Field

[0001] This application relates to the field of display windows, and in particular to a dynamic display window. Background Technology

[0002] Currently, most commercial display windows adopt static display methods, using fixed lights and reflectors to achieve basic lighting and simple reflection effects. With the increasing demand for commercial displays, dynamic display windows are gradually becoming a trend.

[0003] Some dynamic display windows are equipped with spotlights and reflectors to enhance the display effect. A drive motor is fixed in the dynamic display frame, and then the drive motor drives the reflector. The reflector continuously adjusts its angle and position, so that the direction and intensity of light reflection change, forming a dynamic visual effect to meet different display needs and the visual experience of the audience.

[0004] In practical use, the existing dynamic display windows typically have the drive motor for the reflectors mounted on the entire back of the window. Over time, the drive motor and reflectors may malfunction and require maintenance. However, due to the unreasonable structural design and low modularity, once a component is damaged, the entire window needs to be disassembled on a large scale, increasing maintenance costs and time, and reducing the reliability and practicality of the display window. Utility Model Content

[0005] The purpose of this application is to address the problem mentioned in the background art that, due to unreasonable structural design and low modularity, once a component is damaged, the entire display window needs to be disassembled on a large scale, which increases maintenance costs and time and reduces the reliability and practicality of the display window. This application provides a dynamic display window.

[0006] To achieve the above objectives, this application specifically adopts the following technical solution:

[0007] A dynamic display window includes a window frame, on which several modular panels are mounted. Several evenly distributed drive motors are fixed on the modular panels. Reflectors are fixed to the output ends of the drive motors and are inclined. Several evenly distributed spotlights are installed inside the window frame. A quick-installation and fixing mechanism is provided between the modular panels and the window frame. Two auxiliary stabilizing mechanisms are provided between adjacent modular panels. A display frame is installed in the middle of the window frame.

[0008] By adopting the above technical solution, the corresponding module panel can be directly removed from the window frame using the quick installation and fixing mechanism. Then, the corresponding drive motor or reflector can be repaired or replaced. The module panel can then be re-fixed to the window frame using the quick installation and fixing mechanism. At the same time, the adjacent auxiliary stabilizing mechanism further reinforces the adjacent module panels. This makes it easy to disassemble and install a single module panel, reducing the trouble of having to remove the entire window frame during maintenance.

[0009] Furthermore, the quick installation and fixing mechanism includes two support blocks symmetrically fixed at both ends of the module plate, with plug-in blocks fixed on the support blocks, and plug-in slots corresponding to the plug-in blocks provided on the window frame, with snap-fit ​​components provided on the plug-in blocks.

[0010] By adopting the above technical solution, the support block on the module board drives the plug-in block to be inserted into the plug-in slot on the window frame, and then the snap-fit ​​component is used for fixation, so that the module board can be easily fixed to the window frame.

[0011] Furthermore, the snap-fit ​​assembly includes two snap-fit ​​blocks symmetrically slidably connected to the plug-in block, the inner wall of the plug-in slot is provided with a snap-fit ​​groove corresponding to the snap-fit ​​block, and two symmetrical support springs are provided between the snap-fit ​​block and the plug-in block, the two ends of the support springs being fixedly connected to both the snap-fit ​​block and the plug-in block.

[0012] By adopting the above technical solution, when the plug block is inserted into the plug slot, the snap-fit ​​block is locked in the snap-fit ​​slot under the support of the support spring, thereby making it easy to fix the plug block and the module board together.

[0013] Furthermore, the snap-fit ​​block has an inclined surface on the side away from the support block, and the inclined surface corresponds to the insertion slot.

[0014] By adopting the above technical solution, when the plug block is inserted into the plug slot, the edge of the plug slot presses against the inclined surface of the snap block, thereby making it easier for the snap block to be retracted into the plug block.

[0015] Furthermore, a sliding rod is fixed on the snap-fit ​​block, and sliding grooves are provided on the plug-in block and the support block. The sliding grooves pass through the plug-in block and the support block, and the sliding rod is located in the sliding grooves and is slidably connected to the support block.

[0016] By adopting the above technical solution, the sliding rod moves in the sliding groove, and the sliding rod drives the locking block to move, so that the locking block can be easily put into the plug-in block and the plug-in block can be easily pulled out from the plug-in groove.

[0017] Furthermore, a connecting rod is fixed between the corresponding sliding rods at both ends of the module plate.

[0018] By adopting the above technical solution, the connecting rod drives the sliding rods at both ends of the module board, thereby facilitating the retraction of the snap-fit ​​blocks at both ends of the module board into the plug-in blocks.

[0019] Furthermore, the auxiliary stabilizing mechanism includes two symmetrically arranged support semi-rings on adjacent module plates, the two support semi-rings forming a circle, the two support semi-rings being fixed to adjacent module plates respectively, and each of the two support semi-rings being rotatably connected to a limit block, both of the limit blocks being semi-circular, one of the limit blocks being fixed with a toggle rod, and the support semi-rings having a toggle groove corresponding to the toggle rod.

[0020] By adopting the above technical solution, the limiting blocks on adjacent module boards rotate in two corresponding support semi-rings, and the two limiting blocks are misaligned with the two support semi-rings, thereby further improving the stability between adjacent module boards.

[0021] Furthermore, both the actuating rod and the supporting half-ring are fixed with a fixed magnet, and the fixed magnet on the supporting half-ring is located in the actuating groove.

[0022] By adopting the above technical solution, the fixed magnet on the toggle lever is attracted to the fixed magnet on the support half ring, thereby enabling the limiting block to maintain a stable misaligned state in the support half ring.

[0023] In summary, this application includes at least one of the following beneficial effects;

[0024] 1. This application achieves the goal of facilitating the removal and installation of the corresponding module panel from the window frame by directly squeezing two adjacent connecting rods when it is necessary to remove the corresponding module panel from the window frame. This causes the snap-fit ​​block to retract into the plug-in block, allowing the module panel to move the support block, which in turn moves the plug-in block out of the window frame. During installation, the module panel is directly pushed to insert the plug-in block into the plug-in slot. At the same time, the edge of the plug-in slot abuts against the bevel of the snap-fit ​​block, causing the snap-fit ​​block to retract into the plug-in block and squeezing the support spring. After the plug-in block is fully inserted into the plug-in slot, the snap-fit ​​block extends out of the plug-in block under the push of the support spring and locks into the plug-in slot. This reduces the inconvenience of removing the entire window frame during maintenance.

[0025] 2. In this application, after the module board is re-fixed to the window frame, the corresponding toggle lever is rotated to drive the limit block, so that the two limit blocks rotate on the two support half rings, causing the two limit blocks to be misaligned with the two support half rings. At the same time, the fixed magnet on the toggle lever is attracted to the fixed magnet in the toggle groove, thus limiting the toggle lever and achieving the purpose of further improving the stability of the module board installation and fixing. Attached Figure Description

[0026] Figure 1This is a first three-dimensional structural diagram of the dynamic display window in this application;

[0027] Figure 2 This is a schematic diagram of the first cross-sectional structure of the dynamic display window in this application;

[0028] Figure 3 This is a schematic diagram of the second cross-sectional structure of the dynamic display window in this application;

[0029] Figure 4 This application Figure 3 Enlarged view of point A in the middle;

[0030] Figure 5 This is a schematic diagram of the split structure of the auxiliary stabilization mechanism in this application.

[0031] Explanation of reference numerals in the attached figures:

[0032] 1. Display window frame; 2. Modular board; 3. Drive motor; 4. Reflector; 5. Spotlight; 6. Quick installation and fixing mechanism; 61. Support block; 62. Insertion block; 63. Insertion slot; 64. Snap-fit ​​assembly; 641. Snap-fit ​​block; 642. Support spring; 643. Sliding rod; 644. Sliding groove; 645. Connecting rod; 7. Auxiliary stabilizing mechanism; 71. Support semi-ring; 72. Limit block; 73. Actuating rod; 74. Actuating groove; 75. Fixing magnet; 8. Display frame. Detailed Implementation

[0033] The following is in conjunction with the appendix Figure 1 —5 provides further details regarding this application.

[0034] This application discloses a dynamic display window.

[0035] Reference Figure 1 , Figure 2 and Figure 3 A dynamic display window includes a window frame 1, several module panels 2 on the window frame 1, several evenly distributed drive motors 3 fixed on the module panels 2, reflectors 4 fixed to the output ends of the drive motors 3, the reflectors 4 being inclined, several evenly distributed spotlights 5 installed inside the window frame 1, a quick-installation fixing mechanism 6 between the module panels 2 and the window frame 1, two auxiliary stabilizing mechanisms 7 between adjacent module panels 2, and a display frame 8 installed in the middle of the window frame 1.

[0036] When using this display window, the content to be displayed is installed and fixed on the display frame 8. Two control cards are fixed to the back of the module board 2. These control cards control the drive motor 3, turning on the spotlights 5 on the display window frame 1 so that they illuminate the display frame 8. Simultaneously, the control cards control the drive motor 3 to rotate, causing the output of the drive motor 3 to rotate the tilted reflectors 4. The reflectors 4 reflect the light from the spotlights 5. Meanwhile, the edge of the display frame 8 uses a ring-shaped light-blocking plate to reduce direct light from the spotlights 5 into the display frame 8. With the rotation of several reflectors 4, the direction of light reflection by the reflectors 4 continuously changes, creating a dynamic visual effect within the display window frame 1. When the drive motor 3 or reflector 4 malfunctions, the corresponding module 2 can be removed from the window frame 1 using the quick-installation fixing mechanism 6. Then, the corresponding drive motor 3 or reflector 4 can be repaired or replaced. After that, the module 2 can be re-fixed in the window frame 1 using the quick-installation fixing mechanism 6. At the same time, the adjacent auxiliary stabilizing mechanism 7 further reinforces the adjacent module 2, improving the stability of the module 2 in the window frame 1. By using the quick-installation fixing mechanism 6 to fix the module 2 to the window frame 1, it is possible to easily disassemble and install a single module 2, reducing the trouble of removing the entire window frame 1 during maintenance.

[0037] Reference Figure 2 and Figure 3 The quick installation and fixing mechanism 6 includes two support blocks 61 symmetrically fixed at both ends of the module plate 2. A plug-in block 62 is fixed on the support block 61. A plug-in slot 63 corresponding to the plug-in block 62 is opened on the window frame 1. A snap-fit ​​component 64 is provided on the plug-in block 62.

[0038] In addition, the snap-fit ​​assembly 64 includes two snap-fit ​​blocks 641 that are symmetrically slidably connected to the plug-in block 62. The inner wall of the plug-in groove 63 is provided with snap-fit ​​grooves corresponding to the snap-fit ​​blocks 641. Two symmetrical support springs 642 are provided between the snap-fit ​​blocks 641 and the plug-in block 62. Both ends of the support springs 642 are fixedly connected to the snap-fit ​​blocks 641 and the plug-in block 62.

[0039] Furthermore, the snap-fit ​​block 641 has an inclined surface on the side away from the support block 61, and the inclined surface corresponds to the insertion groove 63.

[0040] Furthermore, a sliding rod 643 is fixed on the snap-fit ​​block 641, and a sliding groove 644 is provided on the plug-in block 62 and the support block 61. The sliding groove 644 passes through the plug-in block 62 and the support block 61, and the sliding rod 643 is located in the sliding groove 644 and is slidably connected to the support block 61.

[0041] Furthermore, a connecting rod 645 is fixed between the sliding rods 643 at both ends of the module plate 2.

[0042] When it is necessary to remove the corresponding module 2 from the display window frame 1, directly squeeze the two adjacent connecting rods 645 to bring them closer together. The connecting rod 645 drives the sliding rod 643, which in turn drives the locking block 641, causing it to retract into the insertion block 62. After the locking block 641 is fully retracted into the insertion block 62, pull the connecting rod 645 directly. The connecting rod 645 drives the sliding rod 643, which in turn drives the locking block 641. Then, the locking block 641 drives the insertion block 62, which in turn drives the support block 61. The support block 61 then removes the module 2 from the display window frame 1. After maintenance, align the insertion blocks 62 fixed on the two support blocks 61 on the module 2 with the display window frame 1. The module plate 2 is then pushed directly into the insertion slot 63, allowing the insertion block 62 to be inserted into the insertion slot 63. At the same time, the edge of the insertion slot 63 abuts against the inclined surface of the snap-fit ​​block 641, causing the snap-fit ​​block 641 to retract into the insertion block 62 and compress the support spring 642. After the insertion block 62 is fully inserted into the insertion slot 63, the snap-fit ​​block 641 extends out from the insertion block 62 under the push of the support spring 642, and snaps into the insertion slot 63, thus completing the fixation of the module plate 2. By fixing the support blocks 61 at both ends of the module plate 2, the insertion blocks 62 on the support blocks 61 are inserted into the insertion slots 63 on the window frame 1 and fixed using the snap-fit ​​block 641, thereby facilitating the removal and installation of the corresponding module plate 2 from the window frame 1.

[0043] Reference Figure 3 and Figure 5 The auxiliary stabilizing mechanism 7 includes two symmetrically arranged support semi-rings 71 on adjacent module plates 2. The two support semi-rings 71 form a circle and are respectively fixed on adjacent module plates 2. Limiting blocks 72 are rotatably connected to both support semi-rings 71. Both limiting blocks 72 are semi-circular. A toggle rod 73 is fixed on one of the limiting blocks 72. A toggle groove 74 corresponding to the toggle rod 73 is opened on the support semi-rings 71.

[0044] In addition, both the toggle lever 73 and the support half-ring 71 are fixed with a fixed magnet 75, and the fixed magnet 75 on the support half-ring 71 is located in the toggle groove 74.

[0045] When module 2 needs to be removed, first rotate the lever 73 to release it from the constraint of the fixed magnet 75. This allows the lever 73 to move the limiting blocks 72, causing them to rotate on the two supporting semi-rings 71. The two semi-circular limiting blocks 72 then align with the two supporting semi-rings 71, allowing module 2 to move. After re-fixing module 2 to the window frame 1, rotate the corresponding lever 73 again to move the limiting blocks 72, allowing them to rotate on the two supporting semi-rings 71. 72 rotates on the two supporting half-rings 71, causing the two limiting blocks 72 to be misaligned with the two supporting half-rings 71. At the same time, the fixed magnet 75 on the actuating rod 73 is attracted to the fixed magnet 75 in the actuating groove 74, limiting the actuating rod 73. By fixing the supporting half-rings 71 on the adjacent actuating plates, the limiting blocks 72 in the supporting half-rings 71 rotate, causing the two limiting blocks 72 to be misaligned with the two supporting half-rings 71, thereby further improving the stability of the module board 2 installation and fixation.

[0046] Working principle: When using this display window, the control card controls the drive motor 3 to turn on the spotlights 5 on the window frame 1, illuminating the display frame 8. At the same time, the control card controls the drive motor 3 to rotate, causing the output of the drive motor 3 to drive the tilted reflector 4 to rotate. The reflector 4 reflects the light from the spotlights 5. Meanwhile, the edge of the display frame 8 uses a ring-shaped light-blocking plate to reduce the direct illumination of the spotlights 5 into the display frame 8. With the rotation of several reflectors 4, the direction of light reflection by the reflectors 4 can be continuously changed, forming a dynamic visual effect.

[0047] When maintenance or repair is required on the drive motor 3 or reflector 4 on module board 2, first rotate the actuating lever 73 to disengage it from the fixed magnet 75. This allows the lever 73 to move the limiting blocks 72, causing them to rotate on the two supporting semi-rings 71 until they align. Then, directly press the two adjacent connecting rods 645 together, bringing them closer. The connecting rods 645 move the sliding rod 643, which in turn moves the locking block 641, causing it to retract into the insertion block 62. After the locking block 641 is fully retracted into the insertion block 62, pull the connecting rod 645. This moves the sliding rod 643, which in turn moves the locking block 641. The locking block 641 then moves the insertion block 62, which in turn moves the support block 61. The support block 61 drives the module plate 2 to be removed from the window frame 1. After maintenance, the plug-in blocks 62 fixed on the two support blocks 61 on the module plate 2 are aligned with the plug-in slots 63 on the window frame 1. Then, the module plate 2 is pushed directly so that the plug-in blocks 62 are inserted into the plug-in slots 63. At the same time, the edge of the plug-in slot 63 abuts against the inclined surface of the snap-fit ​​block 641, causing the snap-fit ​​block 641 to retract into the plug-in block 62 and compress the support spring 642. After the plug-in block 62 is fully inserted into the plug-in slot 63, the snap-fit ​​block 641 extends out from the plug-in block 62 under the push of the support spring 642, so that the snap-fit ​​block 641 is locked in the plug-in slot 63. Finally, the corresponding toggle lever 73 is rotated so that the toggle lever 73 drives the limit block 72, so that the two limit blocks 72 rotate on the two support half rings 71, so that the two limit blocks 72 are misaligned with the two support half rings 71, thus completing the fixing of the module plate 2.

Claims

1. A dynamic display window comprising a window frame (1), characterized in that: The window frame (1) is provided with several module plates (2), and several evenly distributed drive motors (3) are fixed on the module plates (2). A reflector (4) is fixed at the output end of the drive motor (3). The reflector (4) is set at an angle. Several evenly distributed spotlights (5) are installed inside the window frame (1). A quick installation and fixing mechanism (6) is provided between the module plates (2) and the window frame (1). Two auxiliary stabilizing mechanisms (7) are provided between adjacent module plates (2). A display frame (8) is installed in the middle of the window frame (1).

2. A dynamic display window according to claim 1, wherein: The quick installation and fixing mechanism (6) includes two support blocks (61) symmetrically fixed at both ends of the module plate (2). A plug-in block (62) is fixed on the support block (61). A plug-in slot (63) corresponding to the plug-in block (62) is opened on the window frame (1). A snap-fit ​​component (64) is provided on the plug-in block (62).

3. A dynamic display window according to claim 2, wherein: The snap-fit ​​assembly (64) includes two snap-fit ​​blocks (641) symmetrically slidably connected to the plug-in block (62). The inner wall of the plug-in groove (63) is provided with snap-fit ​​grooves corresponding to the snap-fit ​​blocks (641). Two symmetrical support springs (642) are provided between the snap-fit ​​blocks (641) and the plug-in block (62). Both ends of the support springs (642) are fixedly connected to the snap-fit ​​blocks (641) and the plug-in blocks (62).

4. A dynamic display window according to claim 3, wherein: The snap-fit ​​block (641) has an inclined surface on the side away from the support block (61), and the inclined surface corresponds to the insertion slot (63).

5. A dynamic display window according to claim 3, wherein: A sliding rod (643) is fixed on the snap-fit ​​block (641). Sliding grooves (644) are provided on the plug-in block (62) and the support block (61). The sliding grooves (644) pass through the plug-in block (62) and the support block (61). The sliding rod (643) is located in the sliding groove (644) and is slidably connected to the support block (61).

6. A dynamic display window according to claim 5, wherein: A connecting rod (645) is fixed between the sliding rods (643) at both ends of the module plate (2).

7. A dynamic display window according to claim 1, wherein: The auxiliary stabilizing mechanism (7) includes two symmetrically arranged support semi-rings (71) on adjacent module plates (2). The two support semi-rings (71) form a circle. The two support semi-rings (71) are respectively fixed on adjacent module plates (2). Limiting blocks (72) are rotatably connected to both support semi-rings (71). Both limiting blocks (72) are semi-circular. A toggle rod (73) is fixed on one of the limiting blocks (72). A toggle groove (74) corresponding to the toggle rod (73) is opened on the support semi-rings (71).

8. A dynamic display window according to claim 7, wherein: Both the actuating rod (73) and the supporting half ring (71) are fixed with a fixed magnet (75), and the fixed magnet (75) on the supporting half ring (71) is located in the actuating groove (74).