Storage roll-up banner

By integrating a winding mechanism and a shelf connector into the roll-up banner base, the problem of the roll-up banner base being large and inconvenient to transport is solved, thereby improving the aesthetics and functionality of the roll-up banner and enhancing the three-dimensional display effect.

WO2026119315A1PCT designated stage Publication Date: 2026-06-11EXPOMAX (CHANGZHOU) ADVERTISING DISPLAY CO LTD

Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
EXPOMAX (CHANGZHOU) ADVERTISING DISPLAY CO LTD
Filing Date
2025-12-25
Publication Date
2026-06-11

AI Technical Summary

Technical Problem

Existing roll-up banners have complex base structures, large volumes, are inconvenient to transport, affect aesthetics, and have limited functionality.

Method used

By integrating a winding mechanism and a shelf connector inside the base, the structure is rationally laid out, reducing the base's volume while increasing its storage function. A shelf is also placed in front of the display panel to enhance the display effect.

🎯Benefits of technology

It achieves the goals of easy transport and overall aesthetics for roll-up banners, while also adding a three-dimensional dynamic display effect, enhancing the realism and functionality of the display.

✦ Generated by Eureka AI based on patent content.
Patent Text Reader

Abstract

A storage roll-up banner, comprising a base and a rectangular frame structure, wherein the rectangular frame structure is arranged on the base and comprises a top plate, a left side plate and a right side plate. Display surfaces are provided on the rectangular frame structure. A cavity is formed in the base, and two roll-up mechanisms for rolling up a banner on the display surfaces are provided in the cavity. In the storage roll-up banner, by means of a rational layout, the two roll-up mechanisms are integrated into the cavity in the base, such that the size of the base is reduced, thereby facilitating transportation and improving the aesthetics. In addition, by means of providing shelf connectors on side surfaces of the roll-up banner and then mounting shelves on the shelf connectors, not only does the front of each display surface of the roll-up banner have a storage function, but three-dimensional objects can also be placed on the shelves and can cooperate with the display surfaces, thereby improving the three-dimensional dynamic display effect, and improving the realism of the display effect.
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Description

Roll-up banner for storage Technical Field

[0001] This utility model relates to the field of display equipment technology, specifically to advertising or poster display equipment, and more particularly to a roll-up banner for storing items. Background Technology

[0002] A roll-up banner, also known as a poster stand or display stand, is a vertical advertising poster. Commonly found in high-traffic street areas, it assists individual vendors with roadshows and promotions, or serves as a temporary stall. The main materials for roll-up banner stands are plastic or aluminum alloy. The poster itself is made of photo paper. Alternatives to roll-up banners include street banners, roadside flags, posters, and stickers.

[0003] Roll-up banners are suitable for meetings, exhibitions, sales promotions, and other occasions, and are one of the most frequently used and common portable display tools. A typical roll-up banner consists of a floor-standing scroll with a telescopic column extending upwards. A buckle at the top of the column allows for the display of a vertical poster by pulling up the scroll, attracting the attention of passersby.

[0004] Existing roll-up banners have complex base structures, are bulky, inconvenient to transport, and affect their overall aesthetics, as exemplified by the utility model patent for a luminous roll-up banner with application number 202323270419.2. Furthermore, current roll-up banners primarily function as display screens, which is relatively limited in functionality and results in monotonous visual effects. (Utility Model Content)

[0005] The technical problem to be solved by this utility model is that the existing roll-up banner base has a complex structure, large size, is inconvenient to transport, and affects the overall appearance. This utility model provides a storage roll-up banner, which integrates the internal space of the base and has a reasonable structural layout, thereby reducing the size of the base and unifying it with the size of the display surface. This makes the overall appearance more beautiful, facilitates transportation, and also has a storage function.

[0006] The technical solution adopted by this utility model to solve its technical problem is: a roll-up banner for display, including a base, with the length direction of the base defined as the X direction, the width direction as the Y direction, and the height direction as the Z direction. The surface formed by the X and Z directions is the front surface of the base. A rectangular frame structure for display is set on the base. The rectangular frame structure includes a top plate, a left side plate, and a right side plate. The top plate, left side plate, right side plate, and base together form the rectangular frame structure. The rectangular frame structure has a display surface, which is parallel to the XZ plane. A cavity is formed inside the base, and two winding mechanisms for winding a banner on the display surface are arranged inside the cavity. The rotation axes of the two winding mechanisms are both parallel to the X direction. The roll-up banner provided by this utility model, through a reasonable layout, integrates the two winding mechanisms into a cavity in the base, thereby reducing the size of the base, facilitating transportation, and improving aesthetics.

[0007] To further enhance aesthetics, the base and the display surface above it form a single, flat surface. There are two display surfaces: a first display surface and a second display surface. These are positioned opposite each other, with the first display surface flush with the front surface of the base and the second display surface flush with the rear surface. This integrated design eliminates the protrusion of the base from the display surface, facilitating transportation and resulting in a cleaner, more aesthetically pleasing overall appearance.

[0008] To enhance the functionality of the roll-up banner, a shelf connector is movably provided on the left side panel and / or right side panel, or both the left side panel and right side panel are movably provided with shelf connectors.

[0009] More specifically, the shelf connector extends in the Y direction and supports a shelf. The shelf is movably mounted on the shelf connector. When the shelf is in front of the display surface, three-dimensional objects can be placed on it to complement the display and enhance the display effect.

[0010] Furthermore, for ease of installation, the left and / or right side panels are provided with a slot structure, and one side of the shelf connector is provided with a protrusion that mates with the slot structure. The shelf connector is snapped onto the side of the rectangular frame structure after the protrusion and the slot structure mate.

[0011] Furthermore, to improve installation stability, the slot structure includes at least one dovetail groove and an arc-shaped closing groove arranged along the Z direction.

[0012] Furthermore, to prevent the banner on the display surface from tilting outwards and to prevent light leakage from the light source within the rectangular frame, the left and right sides of the panel are also provided with baffles that bend towards the display surface.

[0013] Furthermore, in order to facilitate the fixing of the banner after display, the upper surface of the top plate is provided with a hook groove in the X direction, and one end of the banner on the winding mechanism is provided with a hook. The hook can be snapped into the matching hook groove so that the banner is laid flat on the display surface.

[0014] Furthermore, to facilitate disassembly, assembly, and transportation, the left end of the top plate and the top of the left side plate are connected by a left upper corner clip, the right end of the top plate and the top of the right side plate are connected by a right upper corner clip, the bottom end of the left side plate and the left end of the base are connected by a left lower corner clip, and the bottom end of the right side plate and the right end of the base are connected by a right lower corner clip.

[0015] Furthermore, to facilitate disassembly, assembly, and transportation, the left side panel includes multiple left side panel segments, which are connected to each other via a left-side intermediate connector. The right side panel includes multiple right side panel segments, which are connected to each other via a right-side intermediate connector.

[0016] Furthermore, to increase the stability of the base, a support plate is provided at the bottom of the base, and the length direction of the support plate is set along the Y direction.

[0017] Furthermore, specifically, a light source mechanism is also provided within the rectangular frame structure, and the light source mechanism is connected to a power source.

[0018] The beneficial effect of this utility model is that the easy-to-use roll-up banner of this utility model...

[0019] 1) By integrating the internal space of the base and making the structure more reasonable, the volume of the base is reduced and the volume of the display surface is unified, making the roll-up banner more beautiful and easier to transport.

[0020] 2) By setting up a shelf connector on the side of the roll-up banner and then installing a shelf on the shelf connector, not only does the front of the roll-up banner have a shelf function, but three-dimensional objects can also be placed on the shelf, which, in conjunction with the display surface, increases the three-dimensional dynamic display effect and enhances the realism and authenticity of the display effect. Attached Figure Description

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Figure 1 is a three-dimensional structural diagram of the roll-up banner with storage in the preferred embodiment of this utility model.

[0023] Figure 2 is an exploded view of the structure in Figure 1.

[0024] Figure 3 is a side view of the roll-up banner of the preferred embodiment of this utility model.

[0025] Figure 4 is a schematic diagram of the top plate structure of the pull-up banner with storage in the preferred embodiment of this utility model.

[0026] Figure 5 is an enlarged view of point A in Figure 2.

[0027] Figure 6 is an enlarged view of point B in Figure 2.

[0028] Figure 7 is a diagram showing the usage state of the pull-up banner shelf connector of the preferred embodiment of this utility model.

[0029] Figure 8 is a scene diagram of the side-by-side use of the storage roll-up banners according to Embodiment 7 of this utility model.

[0030] In the diagram: 1. Base; 2. Rectangular frame structure; 21. Top plate; 211. Hook groove; 22. Left side plate; 23. Right side plate; 24. Groove structure; 241. Dovetail groove; 242. Arc-shaped closing groove; 25. Display surface; 251. First display surface; 252. Second display surface; 26. Upper left corner piece; 27. Upper right corner piece; 28. Lower left corner piece; 29. ​​Lower right corner piece; 20. Edge guard; 3. Winding mechanism; 4. Shelf connector; 41. Protrusion; 42. Ear clip; 5. Shelf; 6. Hook; 7. Support plate; 8. Middle connector; 9. Banner. Detailed Implementation

[0031] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.

[0032] Figures 1-7 show the preferred embodiment of this utility model: a roll-up banner for storing items, including a base 1. The length direction of the base 1 is defined as the X-direction, the width direction as the Y-direction, and the height direction as the Z-direction. The surface formed by the X and Z directions is the front surface of the base 1.

[0033] A rectangular frame structure 2 for display is mounted on a base 1. The rectangular frame structure 2 includes a top plate 21, a left side plate 22, and a right side plate 23. These three plates, along with the base 1, form the rectangular frame structure 2. All three plates are interconnected via connectors. The rectangular frame structure 2 has two display surfaces 25, parallel to the XZ plane: a first display surface 251 and a second display surface 252. These surfaces are positioned opposite each other, with the first display surface 251 flush with the front surface of the base 1 and the second display surface 252 flush with the rear surface of the base 1. This design ensures the base no longer protrudes from the display surfaces, facilitating transportation and resulting in a more streamlined and aesthetically pleasing overall appearance. Openable banners are mounted on both the first and second display surfaces 251 and 252.

[0034] A cavity 11 is formed inside the base 1. Two winding mechanisms 3 for winding the banner on the display surface 25 are provided inside the cavity 1. The rotation axes of the two winding mechanisms 3 are parallel to the X direction. The winding mechanism 3 can adopt a structure in which the roller and the rotation axis cooperate. A torsion spring is provided inside the roller.

[0035] The top plate 21 has a hook groove 211 along the X direction on its upper surface. One end of the banner on the winding mechanism 3 is provided with a hook 6. The hook 6 can be snapped into the matching hook groove 211. The other end of the banner is connected to the corresponding winding mechanism. The banner can be wound onto the corresponding roller or stretched out from the roller. By snapping the hook 6 into the matching hook groove 211, the banner is laid flat on the display surface 25.

[0036] A shelf connector 4 is movably provided on the outer side of both the left side panel 22 and the right side panel 23. That is, the shelf connector 4 is snapped onto the left side panel 22 and the right side panel 23. The shelf connectors 4 are arranged in pairs at the same height. Each pair of shelf connectors 4 is symmetrically arranged on the left side panel 22 and the right side panel 23 respectively. Each pair of shelf connectors 4 extends in the Y direction, that is, it can extend in front of the rectangular frame or in back of the rectangular frame. A shelf 5 is snapped onto the upper edge of each pair of shelf connectors 4. The shelf 5 is located on the outer side of the first display surface 251, or the outer side of the second display surface 252, or both the outer sides of the first display surface 251 and the second display surface 252 have shelf 5. The shelf 5 can be staggered from top to bottom.

[0037] The left side plate 22 and the right side plate 23 are provided with slot structures 24 for engaging the shelf connector 4. One side of the shelf connector 4 is provided with a protrusion 41 that cooperates with the slot structure 24. After the shelf connector 4 engages with the slot structure 24 through the protrusion 41, it is engaged on the left and right sides of the rectangular frame structure 2.

[0038] The slot structure 24 includes at least one dovetail slot 241 and an arc-shaped closing slot 242. Specifically, the left side plate 22 has one dovetail slot 241 and two arc-shaped closing slots 242 opened along the Z direction. The dovetail slot 241 is located at the center of the outer side of the left side plate 22, and the two arc-shaped closing slots 242 are symmetrically located on both sides of the dovetail slot 241. Two protrusions 41 are provided on one side of the shelf connector 4. One protrusion matches the dovetail slot 241, and the other matches the arc-shaped closing slot 242. The other side of the shelf connector 4 may also be provided with an ear clip 42.

[0039] Example 2:

[0040] As shown in Figure 7, based on Embodiment 1, the following is added: the left side panel 22 and the right side panel 23 are also provided with side guards 20 that bend towards the display surface. When the banner is pulled out, the side guards 20 can block the left and right sides of the banner, play a guiding role, and also prevent light from leaking from the left and right sides of the banner.

[0041] Example 3:

[0042] Based on Embodiment 1, the following additional features are added: the left end of the top plate 21 and the top end of the left side plate 22 are connected by a snap fastener with an upper left corner piece 26; the right end of the top plate 21 and the top end of the right side plate 23 are connected by a snap fastener with an upper right corner piece 27; the bottom end of the left side plate 22 and the left end of the base 1 are connected by a snap fastener with a lower left corner piece 28; and the bottom end of the right side plate 23 and the right end of the base 1 are connected by a snap fastener with a lower right corner piece 29.

[0043] The left side panel 22 includes multiple left side panel segments, and each left side panel segment is connected to the other side by a left middle connector 8. The right side panel 23 includes multiple right side panel segments, and each right side panel segment is connected to the other side by a right middle connector 8.

[0044] Setting the left side panel 22 and the right side panel 23 as a multi-section structure can further facilitate the disassembly, assembly, and transportation of the side panels.

[0045] Example 4:

[0046] Based on Embodiment 1, the following addition is made: a support plate 7 is also provided at the bottom of the base 1, the length direction of the support plate 7 is set along the Y direction, and the support plate 7 is snapped into the bottom of the base.

[0047] Example 5:

[0048] Based on Embodiment 1, the following addition is made: a light source mechanism (such as a light strip or light box) is also provided inside the rectangular frame structure 2, and the light source mechanism is connected to a power source.

[0049] Example 6:

[0050] The difference from Embodiment 1 is that only the outer side of the left side plate 22 is movably provided with a shelf connector 4, that is, the shelf connector 4 is snapped onto the left side plate 22, and a shelf 5 is snapped onto the upper edge of each shelf connector 4. The slot structure 24 and the shelf 5 on the left side plate 22 are the same as those in Embodiment 1.

[0051] Similarly, the shelf connector 4 can also be movably installed only on the outer side of the right side panel 22.

[0052] Example 7:

[0053] Figure 8 shows a scenario where multiple roll-up banners are used side by side in Example 1. This integrated structural design makes the base no longer protrude from the display surface, which not only facilitates transportation but also makes the overall design more concise and aesthetically pleasing.

[0054] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A roll-up banner for storing items, comprising: The base (1) is defined as follows: the length direction of the base (1) is the X direction, the width direction of the base (1) is the Y direction, and the height direction of the base (1) is the Z direction. The surface formed by the X and Z directions is the front surface of the base (1). A rectangular frame structure (2) for display is provided on a base (1). The rectangular frame structure (2) includes a top plate (21), a left side plate (22), and a right side plate (23). The top plate (21), left side plate (22), right side plate (23), and base (1) together form the rectangular frame structure (2). The rectangular frame structure (2) has a display surface (25) that is parallel to the XZ plane. Its features are: A cavity (11) is formed inside the base (1), and two winding mechanisms (3) for winding the banner on the display surface (25) are provided inside the cavity (11). The rotation axes of the two winding mechanisms (3) are parallel to the X direction.

2. The roll-up banner as described in claim 1, characterized in that: The display surface (25) consists of two parts, namely a first display surface (251) and a second display surface (252). The first display surface (251) and the second display surface (252) are arranged opposite each other. The first display surface (251) is flush with the front surface of the base (1), and the second display surface (252) is flush with the rear surface of the base (1).

3. The roll-up banner as described in claim 1, characterized in that: A shelf connector (4) is movably provided on the left side panel (22) and / or the right side panel (23).

4. The roll-up banner as described in claim 3, characterized in that: The shelf connector (4) extends in the Y direction and a shelf (5) is supported on the shelf connector (4).

5. The roll-up banner as described in claim 3, characterized in that: The left side plate (22) and / or the right side plate (23) are provided with a slot structure (24), and the shelf connector (4) is provided with a protrusion (41) on one side that cooperates with the slot structure (24). The shelf connector (4) is snapped onto the side of the rectangular frame structure (2) after the protrusion (41) and the slot structure (24) cooperate.

6. The roll-up banner as described in claim 5, characterized in that: The slot structure (24) includes at least one dovetail slot (241) and an arc-shaped closing slot (242) arranged along the Z direction.

7. The roll-up banner as described in claim 1, characterized in that: The left side panel (22) and the right side panel (23) are also provided with side guards (20) that bend toward the display surface.

8. The roll-up banner as described in claim 1, characterized in that: The top plate (21) has a hook groove (211) in the X direction on its upper surface. The banner on the winding mechanism (3) has a hook (6) on one end. The hook (6) can be snapped into the matching hook groove (211) so that the banner is laid flat on the display surface (25).

9. The roll-up banner as described in claim 1, characterized in that: The left end of the top plate (21) and the top end of the left side plate (22) are connected by a left upper corner piece (26). The right end of the top plate (21) and the top end of the right side plate (23) are connected by a right upper corner piece (27). The bottom end of the left side plate (22) and the left end of the base (1) are connected by a left lower corner piece (28). The bottom end of the right side plate (23) and the right end of the base (1) are connected by a right lower corner piece (29).

10. The roll-up banner as described in claim 9, characterized in that: The left side plate (22) includes multiple left side plate segments, and each left side plate segment is connected to the other through a left middle connector. The right side plate (23) includes multiple right side plate segments, and each right side plate segment is connected to the other through a right middle connector.

11. The roll-up banner as described in claim 1, characterized in that: The base (1) is also provided with a support plate (7) at its bottom, and the length direction of the support plate (7) is set along the Y direction.

12. The roll-up banner as described in claim 1, characterized in that: The rectangular frame structure (2) is also equipped with a light source mechanism, which is connected to a power source.