Commodity showing stand with high flexibility

Through modular design and quick-install connection, the flexibility and efficient installation of the product display stand is achieved, adapting to different exhibition and sales needs, reducing material waste and construction complexity, and meeting multi-function display and layout adjustments.

CN120443896APending Publication Date: 2025-08-08BAIHESHI (TIAN JIN) EXHIBITION CO LTD
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Patent Information

Application Number
CN202510897509.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

The existing product display racks are not flexible enough to dynamically adjust the display capacity, have great mobility limitations, low installation efficiency and low material reuse rate.

Method used

The product display rack adopts a modular design, including the main frame, grid frame, carrier components and hidden power system. It can be freely moved by the column installation auxiliary vehicle. The components can be installed at any position on the grid frame. It adopts a quick-install connection structure, and the hidden power system supports multi-functional access.

Benefits of technology

It improves the flexibility and reconfigurability of the display rack, reduces installation time and material waste, meets the needs of diversified scenarios, and is suitable for temporary or long-term use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a commodity showing stand with high flexibility, which comprises a main frame, and is characterized in that a grid frame, a bearing assembly, a partition assembly and a hidden power system are arranged on the main frame; the modular design is adopted, the bearing assemblies and the partition assemblies can be allowed to be installed at any position of the square frame, and all the assemblies and commodity supports can be repeatedly and rearranged; quick-assembly type connecting structures are adopted among the module assemblies, professional tools are not needed, the assembly process is clean and efficient, and the installation time is shortened; the dismantled materials can be reused, so that the hard assembly recovery cost is saved; the main frame can freely move through the stand column installation auxiliary vehicle, the ground does not need to be damaged, and the layout can be adjusted in real time according to exhibition and sales demands. Installation of the bearing assembly and the partition assembly does not depend on building structures such as walls and ceilings, stable supporting can be achieved only by connecting the bearing assembly and the partition assembly with the square frame, it is ensured that the commodity showing stand is completely independent, and the original building structure of a site is not damaged.
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Description

Technical Field

[0001] The present invention relates to the technical field of commodity display racks, in particular to a commodity display rack with high flexibility. Background Art

[0002] Product display racks are widely used in electronic products, household appliances, famous cigarettes, famous wines, supplies, automotive supplies, auto 4S stores, cosmetics stores and other product displays, and can also be used in large and medium-sized trade fairs.

[0003] The current product display racks have the following significant defects in practical applications:

[0004] 1. Lack of flexibility: The display capacity of existing display racks cannot be dynamically adjusted according to the type and quantity of goods, making it difficult to adapt to changes in different exhibition and sales needs;

[0005] 2. Limitations of mobility: Most display racks are attached to the wall or ceiling, and the display position cannot be freely changed, making it difficult to adjust the site layout;

[0006] 3. Low installation efficiency: The installation and disassembly process of traditional display stands is cumbersome, requiring a lot of manpower and time. In addition, the construction process is complicated and often requires the destruction of walls, floors and other building structures.

[0007] 4. Serious waste of materials: The reuse rate of materials after the existing display racks are dismantled is extremely low, and the original installation site needs to be restored through hard installation, resulting in high material and decoration costs.

[0008] For this purpose, a merchandise display stand with high flexibility is proposed. Summary of the Invention

[0009] The technical task of the present invention is to provide a commodity display stand with high flexibility to solve the above problems in view of the above shortcomings.

[0010] To achieve the above object, the present invention provides the following technical solutions:

[0011] A highly flexible merchandise display rack comprises a main frame, on which are provided a lattice frame, a load-bearing assembly, a partition assembly and a hidden power system. The main frame is used to bear the entire weight of the lattice frame, the load-bearing assembly, the partition assembly, the hidden power system and the exhibits, and can be freely moved by a column-mounted auxiliary vehicle. After moving to a designated position, the column-mounted auxiliary vehicle is disassembled to allow the main frame to be independently supported. The lattice frame is used to integrate the installation functions of the load-bearing assembly, the partition assembly and the hidden power system, and cooperates with the main frame to form a self-supporting structure independent of the wall and ceiling. The load-bearing assembly and the partition assembly are both connected to the lattice frame. The load-bearing assembly is used as a basic display platform, used alone or in combination to display different categories of merchandise. The partition assembly is used to achieve spatial separation and functional adjustment.

[0012] Preferably, the main frame includes four columns and four beams, each two beams form a group, the two groups of beams are arranged up and down, and the four beams are connected end to end to form a frame in a well-shaped structure, the columns are arranged at the intersection of two adjacent beams, and the beams are connected to the columns by connecting components, wherein:

[0013] The connecting assembly includes a lower connecting piece and an upper connecting piece arranged in sequence from bottom to top, the lower connecting piece is sleeved on the end of the beam surface located below, the top of the column passes through the inner cavity of the lower connecting piece, the hook of the lower connecting piece is hooked on the top of the column, and the upper connecting piece is sleeved on the end of the beam surface located above, the top of the column and the hook of the lower connecting piece both pass through the top of the upper connecting piece; a wiring channel for the hidden power system is reserved inside the column.

[0014] Preferably, the connecting assembly also includes a locator that can be inserted into the inner cavity at the top end of the column, and the locator and the upper connecting member are respectively provided with grooves that are compatible with the hook of the lower connecting member. The locator and the upper connecting member are detachably connected by screws, and the upper connecting member and the corresponding lower connecting member are detachably connected by screws and nuts.

[0015] Preferably, the lattice frame includes several profiles, and the several profiles are assembled into a lattice structure by connecting angle iron fasteners. Hangers A, hangers B and hangers C are installed on the profiles, and the hangers A, hangers B and hangers C are fixedly connected to corresponding beams by bolts respectively.

[0016] Preferably, the hangers A and B are symmetrically arranged in two groups, and the hangers C are symmetrically arranged in two groups front to back. The profile is fixedly connected to the middle part of a group of beams located below through the hanger A, the profile is fixedly connected to the end of a group of beams located below through the hanger B, and the profile is fixedly connected to a group of beams located above through the hanger C; the height dimensions of the hangers A, B and C increase in sequence, and the height dimensions of the hangers A, B and C are 25mm, 125mm and 172mm respectively.

[0017] Preferably, the supporting assembly includes a stand and a layer plate, the top of the stand is fixedly connected to any one of the profiles, the bottom of the stand is in contact with the ground, and the layer plate is detachably connected to the stand by screws to form a horizontal supporting surface.

[0018] Preferably, the partition assembly includes a track, a bracket and a partition curtain. The track and adjacent profiles are connected and fixed by a number of regularly distributed brackets to ensure that the track and the profiles are arranged in parallel. The partition curtain is installed on the track through a suspension member. The suspension member is a pulley or a hook. The suspension member is embedded in the slide groove of the track and can slide freely along the track to realize the opening and closing and position adjustment of the partition curtain.

[0019] Preferably, the partition assembly further comprises a facade partition, wherein:

[0020] The vertical partition comprises a hanger and a partition board, the top of the hanger is fixedly connected to any one of the profiles, the bottom of the hanger is fixedly connected to the partition board, and the bottom of the partition board is in contact with the ground.

[0021] Preferably, the partition plate is a flat plate or a hollow plate.

[0022] Preferably, the hidden power system includes a power system and power system lines. The power system is fixed in the beam and serves as the core hub of power distribution. The power system lines are embedded in the preset wire troughs of the profiles and distributed along the grid structure of the lattice frame to form a horizontal power transmission network, covering the plane space of the lattice frame, so as to facilitate the access of electrical equipment at any grid node. Preset nodes are provided on the columns, frames, shelves and partition boards, and the preset nodes are provided with conductive terminals, which are connected to the power system lines.

[0023] Compared with the prior art, the advantages and positive effects of the present invention are:

[0024] 1. The present invention, through the use of modular design, allows the load-bearing components and partition components to be installed at any position on the grid frame. The individual components and product supports can be repeatedly rearranged, which can not only create an independent display system, but also be quickly converted into an office area to meet temporary or long-term use needs, thereby improving the flexibility and reconfigurability of the product display stand.

[0025] 2. The present invention uses a quick-install connection structure between the various modular components, which does not require professional tools. The assembly process is clean and efficient, with extremely low noise, and reduces installation time compared to traditional display racks. The materials can be reused after dismantling, saving the cost of hard installation restoration, thereby improving the installation efficiency and cost advantage of the product display rack.

[0026] 3. The main frame of the present invention can be freely moved by installing an auxiliary vehicle on the column without damaging the ground. The layout can be adjusted in real time according to the needs of exhibitions and sales. It is particularly suitable for scenes such as exhibitions and pop-up stores, and improves the convenience of movement and layout of the product display stand.

[0027] 4. The present invention does not require the installation of the bearing components and partition components to rely on building structures such as walls and ceilings. Stable support can be achieved simply by connecting them to the grid frame, ensuring that the product display rack is completely independent and does not damage the original building structure of the site, in line with the design concept of the "room within a room" independent display rack system.

[0028] 5. The present invention has a hidden power system that supports rapid access to lighting, charging and other equipment. The combination of the carrying components and the partition components can flexibly divide functional spaces such as display areas and negotiation areas to meet the needs of diversified scenarios and has the advantage of multi-functional integration. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0030] Figure 1 Schematic diagram of the structure of an embodiment of the present invention;

[0031] Figure 2 This is a schematic diagram of the assembly structure of a column installation auxiliary vehicle, a column, and a single crossbeam according to an embodiment of the present invention;

[0032] Figure 3 This is a schematic diagram of the assembly structure of the column installation auxiliary vehicle, the columns and the beams according to an embodiment of the present invention;

[0033] Figure 4This is a schematic diagram of the assembly structure of the column installation auxiliary vehicle, columns, beams and connecting components according to an embodiment of the present invention;

[0034] Figure 5 This is a schematic diagram of the assembly structure of the lattice frame according to an embodiment of the present invention;

[0035] Figure 6 A schematic diagram of the assembly structure of a power system according to an embodiment of the present invention;

[0036] Figure 7 This is a schematic diagram of the assembly structure of a partition assembly according to an embodiment of the present invention;

[0037] Figure 8 This is a structural diagram of a load-bearing assembly according to an embodiment of the present invention;

[0038] Figure 9 This is a schematic structural diagram of a track, a bracket, and a partition curtain according to an embodiment of the present invention;

[0039] Figure 10 Schematic diagram of the structure of a facade partition according to an embodiment of the present invention.

[0040] In the figure: 1. Column installation auxiliary vehicle;

[0041] 100, main frame; 110, column; 120, beam; 130, connecting assembly; 131, lower connecting piece; 132, upper connecting piece; 133, positioner;

[0042] 200, lattice frame; 210, profile; 220, suspender A; 230, suspender B; 240, suspender C;

[0043] 300, load-bearing assembly; 310, stand; 320, shelf;

[0044] 400, partition assembly; 410, track; 420, bracket; 430, partition curtain; 440, facade partition piece; 441, hanger; 442, partition board. DETAILED DESCRIPTION

[0045] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described below in conjunction with the accompanying drawings and embodiments. It should be noted that, in the absence of conflict, the embodiments of the present application and the features therein can be combined with each other.

[0046] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0047] Example 1

[0048] like Figures 1-10As shown, a highly flexible merchandise display rack according to an embodiment of the present invention comprises a main frame 100, a lattice frame 200, a load-bearing assembly 300, a partition assembly 400 and a hidden power system. The lattice frame 200, the load-bearing assembly 300, the partition assembly 400 and the hidden power system are respectively arranged on the main frame 100. The main frame 100 is used to bear the entire weight of the lattice frame 200, the load-bearing assembly 300, the partition assembly 400, the hidden power system and the exhibits, and can be freely moved by means of a column-mounted auxiliary vehicle 1. After arriving at the designated position, the columns are removed and the auxiliary vehicle 1 is installed so that the main frame 100 is independently supported. The lattice frame 200 is used to integrate the bearing assembly 300, the partition assembly 400 and the installation function of the hidden power system, and cooperates with the main frame 100 to form a self-supporting structure independent of the wall and ceiling. The bearing assembly 300 and the partition assembly 400 are both connected to the lattice frame 200. The bearing assembly 300 is used as a basic display platform, which can be used alone or in combination to display different categories of goods. The partition assembly 400 is used to achieve space separation and function adjustment.

[0049] Example 2

[0050] like Figures 1-10 As shown, the highly flexible merchandise display rack provided in this embodiment is different from that in embodiment 1 in that:

[0051] The main frame 100 includes four columns 110 and four beams 120, with each two beams 120 forming a group. The two groups of beams 120 are arranged up and down, and the four beams 120 are connected end to end to form a frame in a crisscross structure. The columns 110 are arranged at the intersection of two adjacent beams 120, and the beams 120 and the columns 110 are connected by a connecting assembly 130; the connecting assembly 130 includes a lower connecting member 131 and an upper connecting member 132 arranged in sequence from bottom to top, the lower connecting member 131 is sleeved on the end of the surface of the beam 120 located below, the top of the column 110 passes through the inner cavity of the lower connecting member 131, the hook of the lower connecting member 131 is hung on the top of the column 110, and the upper connecting member 132 is sleeved on the surface of the beam 120 located above The ends of the columns 110 and the hooks of the lower connecting pieces 131 are all passed through to the top of the upper connecting pieces 132. The columns 110 serve as the vertical supporting body of the product display rack, bearing the entire weight of the beams 120, the lattice frame 200, the load-bearing components 300, the partition components 400, the hidden power system and the exhibits, which can meet the requirements of heavy-duty cargo display. By cooperating with the connecting components 130, the columns 110 are ensured to be perpendicular to the ground, ensuring the stability of the product display rack structure and avoiding tilting or deformation. The bottom of the columns 110 is connected to the column installation auxiliary vehicle 1, so that the main frame 100 can be moved freely during assembly. After positioning, the column installation auxiliary vehicle 1 is disassembled to achieve position adjustment and fixation of the display rack. The columns 110 pass through the lower The hook of the connector 131 can be quickly connected to the beam 120 by tightening the screws, without the need for complex tools, thereby improving installation efficiency; a hidden power system wiring channel is reserved inside or on the surface of the column 110, and additional lighting, sockets and other equipment can be quickly connected through the column 110 to achieve an integrated design of power supply; a hidden power system wiring channel is reserved inside the column 110. The column 110 serves as the vertical support structure of the product display rack, which not only bears the weight, but also serves as a channel for power transmission, guiding electricity from the beam 120 and the lattice frame 200 to the area where electricity is needed; the connecting component 130 also includes a positioner 133 that can be plugged into the inner cavity at the top of the column 110, and the positioner 133 is connected to the upper connector 132 Grooves are provided on the upper portion thereof to match the hooks of the lower connecting member 131. The locator 133 and the upper connecting member 132 are detachably connected by means of horizontally arranged screws. The upper connecting member 132 and the corresponding lower connecting member 131 are detachably connected by means of vertically arranged screws and nuts. When the top of the column 110 is inserted into the locator 133, the angle between the frames constituting the horizontal well-shaped structure can be forced to be precisely 90°, ensuring that the main frame 100 forms a standard rectangular or square structure. This design avoids the skewness of the main frame 100 caused by installation errors in traditional connection methods, and provides a benchmark for the standardized installation of the subsequent lattice frame 200, the bearing assembly 300, the partition assembly 400, and the hidden power system components.During the connection process between the crossbeam 120 and the column 110, the positioner 133 uses mechanical positioning to standardize the angle standard, preventing deformation of the main frame 100 caused by the accumulation of installation errors. This ensures the geometric accuracy of the product display structure, ensures that the modular components can be seamlessly connected in different layout scenarios, and enhances the overall compatibility of the product display stand.

[0052] The lattice frame 200 includes a plurality of profiles 210, which are assembled into a lattice structure by connecting angle iron fasteners. Hangers A220, hangers B230 and hangers C240 are installed on the profiles 210. Hangers A220, hangers B230 and hangers C240 are fixedly connected to corresponding crossbeams 120 by bolts respectively; hangers A220 and hangers B230 are arranged in two groups symmetrically on the left and right, and hangers C240 are arranged in two groups symmetrically front and back, and each group of hangers A220 and hangers B230 is fixedly connected to the corresponding crossbeams 120 by bolts. There are two in front and back, and each group of suspension rods C240 is provided with six on the left and right. The profile 210 is fixedly connected to the middle of a group of beams 120 located below through the suspension rod A220, the profile 210 is fixedly connected to the end of a group of beams 120 located below through the suspension rod B230, and the profile 210 is fixedly connected to a group of beams 120 located above through the suspension rod C240. The lattice frame 200 and the main frame 100 together form the three-dimensional skeleton of the "room in the room" independent display rack system, without relying on the wall. The lattice frame structure evenly distributes vertical loads, such as load-bearing components 300, partition components 400, hidden power systems, and exhibits, to columns 110 and beams 120, preventing local overloads. The optimized design of the profile's mechanical load-bearing parameters ensures that the merchandise display rack can carry heavy goods such as household appliances and automotive accessories. Profile 210 is quickly assembled using angle iron fasteners without the need for specialized tools, and connections to other components utilize standardized interfaces, significantly reducing assembly time and meeting the design goal of "quick and clean assembly." The lattice frame 200 can be disassembled and reassembled multiple times with minimal material loss, making it suitable for scenarios requiring frequent layout adjustments, such as temporary exhibitions and pop-up stores, thereby reducing operating costs. The height dimensions of the hangers A220, B230, and C240 increase in sequence: hangers A220, B230, and C240 are 25mm, 125mm, and 172mm, respectively.

[0053] The supporting assembly 300 includes a stand 310 and a layer 320. The top of the stand 310 is fixedly connected to any one of the profiles 210, and the bottom of the stand 310 is in contact with the ground. The layer 320 is detachably connected to the stand 310 by screws, forming a horizontal supporting surface, which can directly display various exhibits such as electronic products, household appliances, famous cigarettes and liquors. Since the supporting assembly 300 can be installed at any position on the grid frame 200 and the layer 320 can be installed at any position in the stand 310, the placement of the supporting assembly 300 can be freely adjusted according to the size of the exhibits, such as large household appliances or small accessories. The positions, the number of shelves 320 used and the distance between two adjacent shelves 320 form a multi-level display layout to improve space utilization; as a basic display platform, it can be used alone or in combination to display different categories of goods. Hooks can also be installed on the stand 310, and anti-slip mats can be installed on the surface of the shelf 320 to expand the display method, such as hanging small items for display; the stand 310 and the shelf 320 can be connected to a hidden power system, and lighting equipment (such as spotlights, light strips, etc.) can be installed on the surface of the stand 310, under the shelf 320 or on the side, and power is supplied through the power line to enhance the display effect of the exhibits.

[0054] The partition assembly 400 includes a track 410, a bracket 420 and a partition curtain 430. The track 410 and the adjacent profile 210 are connected and fixed by a number of regularly distributed brackets 420 to ensure that the track 410 and the profile 210 are arranged in parallel. The partition curtain 430 is installed on the track 410 through a hanging member. The hanging member is a pulley or a hook. The hanging member is embedded in the slide groove of the track 410 and can slide freely along the track 410 to realize the opening and closing and position adjustment of the partition curtain 430. By sliding or removing the partition curtain 430 on the track 410, the product can be quickly displayed. The internal space of the shelf is divided into different functional areas, or the display area is separated according to the product category to enhance the sense of order of the display; in scenes such as exhibitions and pop-up stores, the partition curtain 430 can be used as a temporary barrier to provide a certain amount of privacy for scenes such as product demonstrations and business negotiations, without affecting the openness of the product display shelf; the partition curtain 430 adopts a track hanging design, which is easy to install and disassemble, and can be reused many times as the scene changes, reducing material costs and installation time; the material of the partition curtain is usually lighter (such as fabric, lightweight board, etc.), which saves more space than traditional wall partitions and does not affect the display of the product The overall transparency of the shelf makes it easier for customers to browse exhibits; the pattern and color of the partition curtain 430 can be customized to strengthen the brand image or display theme, while guiding the customer's movement line and improving the display effect; the partition assembly 400 also includes a facade partition 440; the facade partition 440 includes a hanger 441 and a partition board 442, the top of the hanger 441 is fixedly connected to any one of the profiles 210, and the bottom of the hanger 441 is fixedly connected to the partition board 442, and the bottom of the partition board 442 is in contact with the ground. The facade partition 440 and the partition curtain 430 are combined through hard partition and soft partition to achieve The merchandise display stand has flexible space division and functional adaptation: the former provides stable structural separation, and the latter supplements dynamic privacy adjustment and lightweight layout. Both rely on profile 210 to achieve quick assembly and modular design, ensuring that the merchandise display stand meets the needs of multiple scenarios such as merchandise display and office area construction without relying on the building structure; the partition board 442 is a flat plate or a hollow plate. The hollow plate is used in the display area to guide customer flow, and the flat plate is used in the negotiation area to ensure privacy. The transition between transparent and private space is achieved through material matching. The material of the partition board 442 is metal, plastic or wood.

[0055] The hidden power system includes the power system and power system lines. The power system is fixed in the crossbeam 120. As the core hub of power distribution, it includes power access terminals, conductive modules and distribution devices. It is responsible for the access of external power and the centralized distribution of power. It connects with the power channel of the column 110 to form a main power circuit, providing basic power support for the electrical equipment in the exhibition area. The power system lines are embedded in the preset wire ducts of the profile 210 and distributed along the grid structure of the lattice frame 200 to form a horizontal power transmission network, covering the plane space of the lattice frame 200, so as to facilitate the access of electrical equipment at any grid node. Preset nodes are provided on the column 110, the frame 310, the layer 320 and the partition board 442. The preset nodes are provided with conductive terminals. It is connected to the power system line and serves as the terminal line of power transmission, transmitting the electric energy distributed by the power system to the area covered by the grid frame 200, providing wiring interfaces for lighting, sockets and other equipment, and realizing the terminal distribution of electricity; the supporting component 300 and the partition component 400 are used to divide the space and carry exhibits in the product display rack. They are connected to the power system so that lighting equipment, sockets and other electrical equipment can be easily connected in these areas to meet the needs of display and use; the power system and the power system line are connected to the structure of the supporting component 300 through the crossbeam 120 to form a whole. The power system is responsible for the centralized management and distribution of electricity, and the power line is responsible for the terminal transmission, jointly realizing the technical effects of "hidden power layout" and "quick wiring".

[0056] Working principle:

[0057] Build the main frame 100: Connect and fix the column 110 with the column installation auxiliary vehicle 1 to ensure that the column is vertical; first, sleeve the lower connecting piece 131 on the two cross beams 120 at the bottom, and then sleeve the upper connecting piece 132 on the two cross beams 120 at the top, so that the upper connecting piece 132 is aligned with the lower connecting piece 131, so that the hook of the lower connecting piece 131 passes through the inner cavity of the upper connecting piece 132, and use vertically arranged screws and nuts to connect and fix the lower connecting piece 131 and the upper connecting piece 132, and pass the top of the column 110 through the inner cavity of the lower connecting piece 131 and the upper connecting piece 132 from bottom to top in sequence, so that the hook of the lower connecting piece 131 is hung on the top of the column 110, insert the positioner 133 at the top of the column 110, and use horizontally arranged screws to fix the positioner 133 in the upper connecting piece 132 to form a well-shaped structure frame. At this time, the angle between each cross beam 120 is exactly 90°;

[0058] Moving and positioning the main frame 100: After the main frame 100 is assembled, it is pushed to the target position by the column installation auxiliary vehicle 1. After confirming the position, the column installation auxiliary vehicle 1 is disassembled so that the main frame 100 is independently supported on the ground;

[0059] Assemble the lattice frame 200: Use the connecting angle iron fasteners to assemble the profiles 210 into a lattice structure, press Figure 5 Install the suspenders A220, B230 and C240 at the marked positions shown, and connect and fix the suspenders A220, B230 and C240 to the beam 120 to construct the foundation load-bearing structure.

[0060] Install the power system: embed the power system lines into the preset wire ducts of the profile 210. The power system is fixed to the beam 120 through the casing and connected to the reserved interfaces of the column 110, the frame 310, the shelf 320, the partition board 442, etc. to ensure that lighting, sockets and other equipment can be quickly connected;

[0061] Install the bearing assembly 300 and the partition assembly 400:

[0062] The top of the stand 310 and the facade partition 440 are connected to any position of the profile 210 by means of buckles or bolts, and the spatial layout can be adjusted according to the display requirements;

[0063] A number of regularly distributed brackets 420 are fixed on the profile 210, and a track 410 is installed between the brackets 420. Then, partition curtains 430 are processed and hung on the track 410 to achieve space separation and functional adjustment.

[0064] Product display scenario: In a shopping mall, multi-layer display racks are built using the load-bearing components 300, and the facade partitions 440 are used to divide the display areas into different categories. A hidden power system provides lighting for the exhibits.

[0065] Temporary exhibition setup: Quickly assemble into an independent exhibition rack system. By cooperating with the column installation auxiliary vehicle 1, the mobile function can be realized, and the booth layout can be adjusted. After the exhibition, the dismantled materials can be reused for the next exhibition.

[0066] Office area division: Partition curtains 430 and facade partitions 440 are used to divide the office area and the negotiation area. The shelf 320 is used as a file storage rack, and the power system supports power supply for office equipment.

[0067] In summary, the present invention achieves significant improvements in the flexibility, installation efficiency, space utilization, etc. of the product display rack through its modular, quick-install, and movable innovative design.

[0068] The above specific embodiments will allow those skilled in the art to easily implement the present invention. However, it should be understood that the present invention is not limited to the above specific embodiments. Based on the disclosed embodiments, those skilled in the art can arbitrarily combine different technical features to implement different technical solutions.

Claims

1. A highly flexible merchandise display stand, characterized by: include: A main frame (100) is provided with a lattice frame (200), a bearing assembly (300), a partition assembly (400) and a hidden power system. The main frame (100) is used to bear the total weight of the lattice frame (200), the bearing assembly (300), the partition assembly (400), the hidden power system and the exhibits, and can be freely moved by a column installation auxiliary vehicle (1). After moving to a designated position, the column installation auxiliary vehicle (1) is disassembled to allow the main frame (100) to be independently supported. (200) is used to integrate the bearing assembly (300), the partition assembly (400) and the installation function of the hidden power system, and cooperates with the main frame (100) to form a self-supporting structure independent of the wall and the ceiling. The bearing assembly (300) and the partition assembly (400) are both connected to the grid frame (200). The bearing assembly (300) is used as a basic display platform and is used alone or in combination to display different categories of goods. The partition assembly (400) is used to achieve space separation and function adjustment.

2. The highly flexible merchandise display stand according to claim 1, characterized in that: The main frame (100) includes four columns (110) and four beams (120), with two beams (120) forming a group. The two groups of beams (120) are arranged vertically, and the four beams (120) are connected end to end to form a frame in a crisscross structure. The columns (110) are arranged at the intersection of two adjacent beams (120), and the beams (120) are connected to the columns (110) via a connecting assembly (130), wherein: The connection assembly (130) includes a lower connection piece (131) and an upper connection piece (132) arranged in sequence from bottom to top, the lower connection piece (131) is sleeved on the end of the surface of the beam (120) located below, the top of the column (110) passes through the inner cavity of the lower connection piece (131), the hook of the lower connection piece (131) is hooked on the top of the column (110), and the upper connection piece (132) is sleeved on the end of the surface of the beam (120) located above, the top of the column (110) and the hook of the lower connection piece (131) both pass through to the top of the upper connection piece (132); and a wiring channel for a hidden power system is reserved inside the column (110).

3. The highly flexible merchandise display stand according to claim 2, characterized in that: The connecting assembly (130) further comprises a locator (133) which can be plugged into the inner cavity of the top end of the column (110); the locator (133) and the upper connecting member (132) are respectively provided with grooves adapted to the hook of the lower connecting member (131); the locator (133) and the upper connecting member (132) are detachably connected by screws; and the upper connecting member (132) and the corresponding lower connecting member (131) are detachably connected by screws and nuts.

4. The highly flexible merchandise display stand according to claim 2, characterized in that: The lattice frame (200) comprises a plurality of profiles (210), wherein the plurality of profiles (210) are assembled into a lattice structure by connecting angle iron fasteners, and a suspension rod A (220), a suspension rod B (230) and a suspension rod C (240) are installed on the profiles (210), and the suspension rod A (220), the suspension rod B (230) and the suspension rod C (240) are respectively fixedly connected to the corresponding crossbeam (120) by bolts.

5. The highly flexible merchandise display stand according to claim 4, characterized in that: The suspension rods A (220) and suspension rods B (230) are both symmetrically arranged in two groups, and the suspension rods C (240) are symmetrically arranged in two groups. The profile (210) is fixedly connected to the middle part of a group of cross beams (120) located below through the suspension rod A (220), the profile (210) is fixedly connected to the end of the group of cross beams (120) located below through the suspension rod B (230), and the profile (210) is fixedly connected to the group of cross beams (120) located above through the suspension rod C (240); the height dimensions of the suspension rods A (220), suspension rods B (230) and suspension rods C (240) increase in sequence, and the height dimensions of the suspension rods A (220), suspension rods B (230) and suspension rods C (240) are 25 mm, 125 mm and 172 mm respectively.

6. The highly flexible merchandise display stand according to claim 4, characterized in that: The bearing assembly (300) includes a stand (310) and a layer plate (320), wherein the top of the stand (310) is fixedly connected to any one of the profiles (210), the bottom of the stand (310) is in contact with the ground, and the layer plate (320) is detachably connected to the stand (310) by screws to form a horizontal bearing surface.

7. The highly flexible merchandise display stand according to claim 4, characterized in that: The partition assembly (400) includes a track (410), a bracket (420) and a partition curtain (430). The track (410) is connected and fixed to the adjacent profile (210) through a plurality of regularly distributed brackets (420) to ensure that the track (410) and the profile (210) are arranged in parallel. The partition curtain (430) is installed on the track (410) through a hanging member. The hanging member is a pulley or a hook. The hanging member is embedded in the slide groove of the track (410) and can slide freely along the track (410) to realize the opening and closing and position adjustment of the partition curtain (430).

8. The highly flexible merchandise display stand according to claim 7, characterized in that: The partition assembly (400) further comprises a facade partition member (440), wherein: The vertical partition member (440) includes a hanger (441) and a partition board (442), wherein the top of the hanger (441) is fixedly connected to any one of the profiles (210), the bottom of the hanger (441) is fixedly connected to the partition board (442), and the bottom of the partition board (442) is in contact with the ground.

9. The highly flexible merchandise display stand according to claim 8, characterized in that: The partition plate (442) is a flat plate or a hollow plate.

10. The highly flexible merchandise display stand according to claim 1, characterized in that: The hidden power system includes a power system and power system lines. The power system is fixed in the crossbeam (120) and serves as a core hub for power distribution. The power system lines are embedded in the preset wire troughs of the profile (210) and distributed along the grid structure of the lattice frame (200) to form a horizontal power transmission network, covering the plane space of the lattice frame (200) and facilitating access to electrical equipment at any grid node. Preset nodes are provided on the columns (110), the frames (310), the layers (320), and the partition plates (442). The preset nodes are provided with conductive terminals, which are connected to the power system lines.