Display rack device for conventional exhibition construction of ancient buildings
By laying a protective layer and keel structure on the ancient building, combined with galvanized panels and a counterweight structure, the problem of damage to the ancient building caused by traditional display racks was solved, ensuring the smooth progress of the exhibition and the protection of the ancient building, and improving the flexibility and convenience of the exhibition.
Patent Information
- Application Number
- CN202423190778.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Existing conventional exhibition construction methods for ancient buildings involve directly altering the buildings through drilling, nailing, and other means, which damages the building itself and undermines its historical appearance and structural stability.
The system employs a combination of a protective layer, a wall keel structure, galvanized panels, and a counterweight structure, which are fixed together with expansion bolts to avoid direct contact with the original wall. The counterweight structure can be adjusted to meet the display needs of different exhibits.
The exhibition proceeded smoothly while protecting the integrity and safety of the ancient buildings, improving the flexibility and convenience of the exhibition, and facilitating disassembly and daily maintenance.
Smart Images

Figure CN223653592U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of exhibition design and construction technology, specifically a conventional exhibition stand device for ancient buildings. Background Technology
[0002] With the development of the cultural heritage protection and exhibition industry, more and more ancient buildings and historical sites are becoming the focus of exhibitions and displays. These ancient buildings not only have important historical and cultural value, but also require special care in their protection and display due to their unique structure, materials, and style.
[0003] Traditional exhibition methods often rely on directly modifying the original walls or floors of ancient buildings using methods such as drilling and nailing to display and arrange exhibits. While this approach may meet the basic requirements of exhibitions to some extent, it damages the building itself and undermines its historical appearance and structural stability.
[0004] Therefore, this application provides a conventional exhibition stand device for ancient buildings to solve the above problems. Utility Model Content
[0005] This application provides a conventional exhibition rack device for ancient buildings, aiming to solve the problems mentioned in the background art. The existing conventional exhibition rack devices for ancient buildings are directly modified for exhibiting by drilling and nailing on the original walls or floors of ancient buildings, which not only damages the building itself, but also destroys the historical features and structural stability.
[0006] To achieve the above objectives, this application provides the following technical solution: a conventional exhibition rack device for ancient buildings, comprising a protective layer laid on the original ground surface, a wall keel structure laid on one side of the original wall and connected to the protective layer, a galvanized snap-on plate fastened to the outside of the wall keel structure for installing exhibits, and a counterweight structure set on the surface of the protective layer and connected to the galvanized snap-on plate. The protective layer and the wall keel structure, as well as the galvanized snap-on plate and the counterweight structure, are all fixedly connected by expansion bolts. The wall keel structure does not contact the original wall.
[0007] The counterweight structure includes a fixing component installed on the surface of the protective layer and fixedly connected to the galvanized ceiling plate by expansion bolts, a receiving cavity opened in the fixing component, and an adjusting component installed in the receiving cavity for adjusting the size of the counterweight. By laying a protective layer on the original ground and connecting the wall keel structure, galvanized ceiling plate, and counterweight structure on the protective layer, not only is the smooth progress of the exhibition guaranteed, but the integrity and safety of the ancient building are maintained without damaging the original building, achieving both aesthetics and practicality. At the same time, the protective layer and the wall keel structure, as well as the galvanized ceiling plate and the counterweight structure, are all fixedly connected by expansion bolts, which not only facilitates disassembly but also facilitates daily maintenance and repair. Furthermore, by setting up a counterweight structure composed of fixing components, receiving cavities, and adjusting components, the weight of the counterweight can be easily adjusted, thereby ensuring that the device remains stable when displaying different exhibits. This flexibility makes the device suitable for a wider variety of exhibits, improving the flexibility and convenience of the exhibition.
[0008] Preferably, to protect the original ground surface, the protective layer includes a plastic flooring laid on the original ground surface, a ground joist structure laid on the side of the plastic flooring away from the original ground surface and fixedly connected to the wall joist structure by expansion bolts, a fire-resistant magnesium oxide board laid on the side of the ground joist structure away from the plastic flooring for leveling, and a corrosion-resistant wood flooring laid on the side of the fire-resistant magnesium oxide board away from the ground joist structure. The fasteners are laid on the side of the corrosion-resistant wood flooring away from the fire-resistant magnesium oxide board. By laying a multi-layer structure including plastic flooring, ground joist structure, fire-resistant magnesium oxide board, and corrosion-resistant wood flooring, a robust and multi-functional protective layer is formed. This multi-layer design not only enhances the load-bearing capacity of the ground but also improves the flatness and aesthetics of the ground.
[0009] Preferably, to facilitate the adjustment of the counterweight size, the adjusting component includes counterweight blocks that are slidably disposed in the receiving cavity and distributed in a linear array, and a locking component that passes through the fixing component and the receiving cavity and is connected to the counterweight blocks for moving and locking the position of the counterweight blocks; by moving the counterweight blocks, the number of counterweight blocks can be increased or decreased, making the adjustment of the counterweight size more intuitive and convenient, thereby adapting to the exhibition load-bearing of different exhibits and improving the flexibility and convenience of the exhibition.
[0010] Preferably, in order to facilitate the use of multiple counterweights, the fixing member has openings at both ends of the receiving cavity for the counterweights to be moved out or in; the design of the openings facilitates the counterweights to be moved out or in the receiving cavity, improving the efficiency and convenience of counterweight adjustment.
[0011] Preferably, in order to facilitate the connection and use of the locking component and the counterweight, the fixing component has a through groove at the position corresponding to the locking component that communicates with the receiving cavity; the design of the through groove allows the locking component to pass smoothly through the fixing component and the receiving cavity, and achieve a stable connection with the counterweight.
[0012] Preferably, to facilitate the movement and locking of the counterweight, the locking component includes a fastening bolt that passes through the through groove and the counterweight sequentially and abuts against the inner side of the receiving cavity, and a knob located at the end of the fastening bolt away from the counterweight and outside the fixing component. The fastening bolt is screwed to the counterweight. With this design, the counterweight can be moved by loosening the knob's contact with the receiving cavity and then moving the knob to increase or decrease the counterweight. By tightening the knob's contact with the receiving cavity, the counterweight can be fixed in the receiving cavity.
[0013] Preferably, in order to prevent the locking element from excessively entering the receiving cavity, the diameter of the knob is greater than the width of the through groove; the larger diameter of the knob than the width of the through groove effectively prevents the locking element from excessively entering the receiving cavity during rotation, thus affecting subsequent use.
[0014] The conventional exhibition rack installation for ancient buildings involves laying a protective layer on the original ground and then connecting the wall keel structure, galvanized panels, and counterweight structure on the protective layer. This not only ensures the smooth progress of the exhibition but also maintains the integrity and safety of the ancient building without damaging it, achieving both aesthetics and practicality. Furthermore, the protective layer, wall keel structure, galvanized panels, and counterweight structure are all fixedly connected with expansion bolts, which not only facilitates disassembly but also makes daily maintenance and repair easy.
[0015] The conventional exhibition stand installation for ancient buildings uses a counterweight structure composed of fixing components, a receiving cavity, and adjusting components. This allows for easy adjustment of the counterweight's weight, ensuring the device remains stable when displaying different exhibits. This makes it suitable for a wider variety of exhibits, improving the flexibility and convenience of exhibitions. Attached Figure Description
[0016] Figure 1 This is a structural diagram of a conventional exhibition stand device for ancient architecture.
[0017] Figure 2 A cross-sectional view of a typical exhibition stand installation for ancient architecture.
[0018] Figure 3 This is a structural diagram of the ground keel structure and the wall keel structure in a conventional exhibition frame device for ancient buildings.
[0019] Figure 4This is a structural diagram of galvanized panels and counterweight structure in a conventional exhibition frame device for ancient buildings.
[0020] Figure 5 This is a structural diagram of a locking component in a conventional exhibition frame device for ancient buildings.
[0021] In the picture:
[0022] 1. Original ground surface;
[0023] 2. Original wall structure;
[0024] 3. Protective layer; 31. Plastic flooring; 32. Ground joist structure; 33. Fire-resistant magnesium oxide board; 34. Anti-corrosion wood flooring;
[0025] 4. Wall frame structure;
[0026] 5. Galvanized steel ceiling panels;
[0027] 6. Counterweight structure; 61. Fixing component; 611. Through groove; 612. Opening; 62. Receiving cavity; 63. Adjusting component; 631. Counterweight block; 632. Locking component; 6321. Fastening bolt; 6322. Knob. Detailed Implementation
[0028] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0029] This embodiment provides a conventional exhibition stand device for ancient buildings, such as... Figures 1-5 As shown, the exhibition construction display stand device includes a protective layer 3 laid on the surface of the original ground 1, a wall keel structure 4 laid on one side of the original wall 2 and connected to the protective layer 3, a galvanized buckle plate 5 fastened to the outside of the wall keel structure 4 for installing exhibits, and a counterweight structure 6 set on the surface of the protective layer 3 and connected to the galvanized buckle plate 5. The protective layer 3 and the wall keel structure 4, as well as the galvanized buckle plate 5 and the counterweight structure 6, are all fixedly connected by expansion bolts. The wall keel structure 4 does not contact the original wall 2. The counterweight structure 6 includes a fixing member 61 set on the surface of the protective layer 3 and fixedly connected to the galvanized buckle plate 5 by expansion bolts, a receiving cavity 62 opened in the fixing member 61, and an adjusting member 63 set in the receiving cavity 62 for adjusting the size of the counterweight.
[0030] The protective layer 3 includes a plastic flooring 31 laid on the surface of the original ground 1, a ground keel structure 32 laid on the side of the plastic flooring 31 away from the original ground 1 and fixedly connected to the wall keel structure 4 by expansion bolts, a fireproof magnesium oxide board 33 laid on the side of the ground keel structure 32 away from the plastic flooring 31 for leveling, and a preservative-treated wood flooring 34 laid on the side of the fireproof magnesium oxide board 33 away from the ground keel structure 32. The fastener 61 is laid on the side of the preservative-treated wood flooring 34 away from the fireproof magnesium oxide board 33.
[0031] It should be added that both the ground keel structure 32 and the wall keel structure 4 are composed of multiple galvanized square tubes laid in a crisscross pattern, and at the connection between the wall keel structure 4 and the ground keel structure 32, the fireproof magnesium oxide board 33 and the anti-corrosion wood flooring 34 are laid around the connection.
[0032] In use, firstly, lay plastic flooring 31 on the original ground surface 1 as the base layer directly in contact with the ground. Then, fix the ground joist structure 32 to the plastic flooring 31 with expansion bolts to form a stable support frame. Next, lay fire-resistant magnesium oxide board 33 on the ground joist structure 32 for leveling and enhancing fire resistance. Then, lay anti-corrosion wood flooring 34 on the fire-resistant magnesium oxide board 33 as the direct load-bearing surface for displaying exhibits. However, before laying the fire-resistant magnesium oxide board 33 and the anti-corrosion wood flooring 34, fix the wall joist structure 4 to the ground joist structure 32 with expansion bolts, ensuring that the wall joist structure 4 does not contact the original wall 2 to avoid damage to the original wall 2. After laying the fire-resistant magnesium oxide board 33 and the anti-corrosion wood flooring 34... After connecting the wooden floor 34 and the wall joist structure 4 to the ground joist structure 32, fasteners 61 are laid on the surface of the anti-corrosion wooden floor 34, and galvanized buckle plates 5 are fastened to the wall joist structure 4. The bottom of the galvanized buckle plate 5 is fixedly connected to the surface of the fasteners 61 by expansion bolts, thus obtaining a stable display rack for exhibiting exhibits. Before installing exhibits, the overall weight of the counterweight structure 6 can be adjusted according to the size of the exhibits using the adjustment piece 63, so that the display rack can meet the exhibition of different exhibits. In daily operation, the interior of the ancient building or the device can be maintained by disassembling the expansion bolts at the connection between the ground joist structure 32 and the wall joist structure 4 and the connection between the galvanized buckle plate 5 and the fasteners 61.
[0033] Specifically, the adjusting member 63 includes a counterweight 631 that is slidably disposed in the receiving cavity 62 and arranged in a linear array, and a locking member 632 that passes through the fixing member 61 and the receiving cavity 62 and is connected to the counterweight 631 for moving and locking the position of the counterweight 631. The locking member 632 includes a fastening bolt 6321 that passes through the through groove 611 and the counterweight 631 in sequence and abuts against the inner side of the receiving cavity 62, and a knob 6322 disposed at the end of the fastening bolt 6321 away from the counterweight 631 and located outside the fixing member 61. The fastening bolt 6321 is screwed to the counterweight 631.
[0034] To facilitate adjustment of the counterweight size, the fixing member 61 has openings 612 at both ends of the corresponding receiving cavity 62 for moving the counterweight 631 in or out. This design allows for intuitive adjustment of the counterweight size simply by moving the counterweight 631, eliminating the need for other complex operations and improving the flexibility and convenience of the exhibition.
[0035] In addition, to facilitate the connection between the locking member 632 and the counterweight 631, the fixing member 61 is provided with a through groove 611 that communicates with the receiving cavity 62 at the position corresponding to the locking member 632. The design of the through groove 611 allows the locking member 632 to pass smoothly through the fixing member 61 and the receiving cavity 62, and to achieve a stable connection with the counterweight 631. Furthermore, when the locking member 632 is moved, the counterweight 631 can be moved simultaneously.
[0036] Understandably, in order to prevent the locking element 632 from excessively entering the receiving cavity 62, the diameter of the knob 6322 is larger than the width of the through groove 611. The larger diameter of the knob 6322 than the width of the through groove 611 ensures that when the knob 6322 is rotated, it can be located outside the through groove 611 and will not enter the receiving cavity 62 together with the fastening bolt 6321, thus affecting subsequent use.
[0037] After the connection between the fastener 61 and the galvanized buckle plate 5 is completed, and the overall counterweight of the counterweight structure 6 needs to be adjusted according to the size of the exhibit, the knob 6322 can be rotated to loosen the contact between the fastening bolt 6321 and the receiving cavity 62, so that the fastening bolt 6321 is located inside the counterweight block 631. Then, by holding the knob 6322, move the knob 6322 towards the end closer to the opening 612. At this time, the fastening bolt 6321 will move in the through groove 611. As the fastening bolt 6321 moves, the counterweight block 631 connected to it will also move towards the position of the opening 612. Finally, it can be directly removed from the receiving cavity 62, thereby reducing the number of counterweight blocks 631, and thus reducing the counterweight of the counterweight structure 6, making it suitable for bearing the weight of smaller exhibits. When the counterweight block 631 is... Move the fastening bolt 6321 from the opening 612 into the receiving cavity 62, and thread the fastening bolt 6321 through the through groove 611 and screw it onto the counterweight 631. At this time, the fastening bolt 6321 does not abut against the receiving cavity 62. Similarly, hold the knob 6322 and move it away from the opening 612 to move the fastening bolt 6321 in the through groove 611. As the fastening bolt 6321 moves, the counterweight 631 connected to it will move into the receiving cavity 62 simultaneously. After it moves to the appropriate position, continue to tighten the fastening bolt 6321 so that the fastening bolt 6321 abuts against the inside of the receiving cavity 62, thus fixing the position of the counterweight 631. This increases the number of counterweights 631, thereby increasing the counterweight of the counterweight structure 6 to be suitable for bearing larger exhibits.
[0038] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this application, based on the technical solution and concept of this application, should be included within the scope of protection of this application.
Claims
1. A conventional exhibition stand device for ancient buildings, characterized in that: The structure includes a protective layer (3) laid on the surface of the original ground (1), a wall keel structure (4) laid on one side of the original wall (2) and connected to the protective layer (3), a galvanized buckle plate (5) fastened to the outside of the wall keel structure (4) for installing exhibits, and a counterweight structure (6) set on the surface of the protective layer (3) and connected to the galvanized buckle plate (5). The protective layer (3) and the wall keel structure (4), as well as the galvanized buckle plate (5) and the counterweight structure (6), are all fixedly connected by expansion bolts. The wall keel structure (4) does not contact the original wall (2). The counterweight structure (6) includes a fastener (61) disposed on the surface of the protective layer (3) and fixedly connected to the galvanized buckle plate (5) by expansion bolts, a receiving cavity (62) opened in the fastener (61), and an adjusting component (63) disposed in the receiving cavity (62) for adjusting the size of the counterweight.
2. The ancient building conventional exhibition construction display stand device according to claim 1, characterized in that: The protective layer (3) includes a plastic floor (31) laid on the surface of the original ground (1), a ground keel structure (32) laid on the side of the plastic floor (31) away from the original ground (1) and fixedly connected to the wall keel structure (4) by expansion bolts, a fireproof magnesium oxide board (33) laid on the side of the ground keel structure (32) away from the plastic floor (31) for leveling, and a corrosion-resistant wood floor (34) laid on the side of the fireproof magnesium oxide board (33) away from the ground keel structure (32). The fastener (61) is laid on the side of the corrosion-resistant wood floor (34) away from the fireproof magnesium oxide board (33).
3. The ancient building conventional exhibition construction display stand device according to claim 1, characterized in that: The adjusting member (63) includes a counterweight (631) that is slidably disposed in the receiving cavity (62) and arranged in a linear array, and a locking member (632) that passes through the fixing member (61) and the receiving cavity (62) and is connected to the counterweight (631) for moving and locking the position of the counterweight (631).
4. The ancient building conventional exhibition construction display stand device according to claim 3, characterized in that: The fixing member (61) has openings (612) at both ends of the receiving cavity (62) for the counterweight (631) to move out or in.
5. The ancient building conventional exhibition construction display stand device according to claim 3, characterized in that: The fixing member (61) has a through groove (611) at the position corresponding to the locking member (632) that communicates with the receiving cavity (62).
6. The ancient building conventional exhibition construction display stand device according to claim 5, characterized in that: The locking member (632) includes a fastening bolt (6321) that passes through the through groove (611) and the counterweight (631) in sequence and abuts against the inside of the receiving cavity (62), and a knob (6322) located at the end of the fastening bolt (6321) away from the counterweight (631) and outside the fixing member (61). The fastening bolt (6321) is screwed to the counterweight (631).
7. The ancient building conventional exhibition construction display stand device according to claim 6, characterized in that: The diameter of the knob (6322) is greater than the width of the through slot (611).