Exhibition stand device and exhibition stand base thereof
The modular design of the booth base and connecting mechanism enables the booth equipment to be disassembled, assembled, and electrically connected, solving the problem of low reusability of the booth equipment, adapting to the display needs of different products, and reducing resource and cost waste.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-09-29
- Publication Date
- 2026-03-03
AI Technical Summary
The existing booth equipment has a low reuse rate and cannot meet the promotion and display needs of different products, resulting in a waste of resources and costs.
Design a modular exhibition stand base that enables detachable assembly and electrical connection of the base through first and second connecting mechanisms, supports the combination of various decorative parts, and adapts to the size and functional requirements of different scenarios.
It improves the reusability of exhibition booth equipment, reduces resource and cost waste, and meets the promotion and display needs of various products.
Smart Images

Figure CN115882296B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of display equipment technology, and in particular to a display stand device and its base. Background Technology
[0002] In shopping malls or specialty stores, there are often display stands for promoting and showcasing new products. These stands can display customized information and have brightness to attract users to come and experience them. They are also often used as display racks for new products to enhance the consumer experience of these products.
[0003] Existing booth installations are often customized and only suitable for assisting in the experience of a specific product model. Once a new product is introduced, the booth installation becomes unsuitable, cannot be reused, and must be discarded. Summary of the Invention
[0004] This application mainly provides a booth device and its base to solve the problem of low reusability of booth bases.
[0005] To solve the above-mentioned technical problems, this application adopts the following technical solution: providing a booth base. The booth base includes: a box body, comprising a first sidewall and a second sidewall spaced apart, the first sidewall having a first opening and the second sidewall having a second opening; a first connecting mechanism, comprising a first connecting seat and a first connecting component rotatably connected to the first connecting seat, the first connecting seat being disposed within the box body; when the first connecting component is in a first state, the first connecting component covers the first opening; when the first connecting component is in a second state, the first connecting component opens the first opening and can be inserted into a second opening of another booth base, connecting to a second connecting seat of that other booth base; a second connecting mechanism, comprising a second connecting seat and a second connecting component rotatably connected to the second connecting seat, the second connecting seat being disposed within the box body; when the second connecting component is in a first state, the second connecting component covers the second opening; when the second connecting component is in a second state, the second connecting component opens the second opening and can be inserted into a first opening of another booth base, connecting to the first connecting seat of that other booth base.
[0006] In some embodiments, the first connecting assembly includes a first door panel and a first connector disposed on the first door panel, the first door panel being rotatably connected to the first connecting seat, the second connecting seat being provided with a second connector, the first connector being matched with the second connector, and the first connector being used to connect to the second connector of another of the booth bases.
[0007] In some embodiments, the second connecting component includes a second door panel and a first connector disposed on the second door panel. The second door panel is rotatably connected to the second connecting seat. The first connecting seat is provided with a second connector. The first connector matches the second connector. The first connector is used to connect to the second connector of another of the booth bases.
[0008] In some embodiments, the booth base further includes a first guide and a second guide. The first guide is disposed corresponding to the first connecting seat and is used to guide the second door panel so that the first connecting member is connected to the second connecting member. The second guide is disposed corresponding to the second connecting seat and is used to guide the first door panel so that the first connector is connected to the second connector.
[0009] In some embodiments, the booth base further includes a first activator and a second activator;
[0010] The first actuating element is connected to the first connecting seat, and the first actuating element is used to drive the first connecting component to rotate and extend relative to the first connecting seat to open the first opening;
[0011] The second actuating element is connected to the second connecting seat, and the second actuating element is used to drive the second connecting component to rotate and extend relative to the second connecting seat to open the second opening.
[0012] In some embodiments, the first sidewall is provided with a plurality of first openings, a plurality of first connecting mechanisms are provided in one-to-one correspondence with the plurality of first openings, and the first activator is simultaneously connected to a plurality of first connecting seats, thereby the first activator is used to open the plurality of first openings with one button.
[0013] The second sidewall is provided with a plurality of second openings, and a plurality of second connecting mechanisms are provided in a one-to-one correspondence with the plurality of second openings. The second starter is simultaneously connected to a plurality of second connecting seats, and thus the second starter is used to open the plurality of second openings with one button.
[0014] In some embodiments, the booth base further includes a plug-in assembly, which includes a fixing seat and a plug-in connector disposed on the fixing seat, the fixing seat being disposed on the top wall of the box body.
[0015] In some embodiments, the top wall has an installation opening, the fixing seat covers the installation opening and forms a connecting cavity with the top wall, and the plug-in connector extends into the connecting cavity.
[0016] In some embodiments, there are multiple plug-in components and multiple mounting ports opened on the top wall, with each mounting port corresponding to one of the multiple plug-in components.
[0017] In some embodiments, the extension directions of two of the plurality of mounting ports intersect, and the plug connector is located in the extension direction of the corresponding mounting port. To solve the above technical problem, another technical solution adopted in this application is: to provide a display stand device. The display stand device includes one or more decorative elements and one or more display stand bases as described above. The plurality of display stand bases are arranged in a row and spliced together by the first connecting mechanism and the second connecting mechanism. The decorative elements are detachably installed on the display stand bases.
[0018] The beneficial effects of this application are as follows: Unlike existing technologies, this application discloses a display stand device and its base. By providing a first connecting structure and a second connecting mechanism on the housing, and by allowing the first connecting structure to connect with a second connecting structure on an adjacent display stand base, and the second connecting structure to connect with a first connecting structure on an adjacent display stand base, the display stand base is modularly designed. By increasing or decreasing the number of connected display stand bases, the size of the display stand base can be adaptively expanded to better meet the needs of promoting and displaying various products, thereby improving the reusability of the display stand base. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort, wherein:
[0020] Figure 1 This is a schematic diagram of the structure of an embodiment of the exhibition stand device provided in this application;
[0021] Figure 2 yes Figure 1 A schematic diagram of the booth base in one state in the booth assembly shown;
[0022] Figure 3 yes Figure 1 A schematic diagram of the booth installation in which the booth base is in another state.
[0023] Figure 4 yes Figure 1 A schematic diagram of the connection between two adjacent booth bases in the booth assembly shown.
[0024] Figure 5 yes Figure 1 A cross-sectional view of the connection point between the bases of the two booths shown.
[0025] Figure 6 yes Figure 2 A schematic diagram of the first and second connecting mechanisms in the base of the exhibition stand shown.
[0026] Figure 7 yes Figure 6 A cross-sectional view of the first connecting mechanism in the base of the booth shown.
[0027] Figure 8 yes Figure 6 An exploded view of the second connecting mechanism in the base of the booth shown.
[0028] Figure 9 yes Figure 2 A schematic diagram of the structure of the booth device on the other axial side.
[0029] Figure 10 yes Figure 1 A schematic diagram of the structure of the decorative components in the booth installation shown;
[0030] Figure 11 yes Figure 10 A schematic diagram of the structure of the mounting components in the decorative part shown;
[0031] Figure 12 yes Figure 11 The diagram shows a side view of the mounting components. Detailed Implementation
[0032] 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 a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0033] The terms "first," "second," and "third" used in the embodiments of this application are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first," "second," or "third" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or devices.
[0034] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0035] This application provides a booth device 300, see reference. Figure 1 , Figure 1 This is a structural schematic diagram of an embodiment of the exhibition stand device provided in this application.
[0036] The booth device 300 can be used in exhibition halls or electronic equipment sales halls and other places to promote product highlights or slogans, and can replace existing promotional devices.
[0037] For example, by powering the display stand device 300, the graphic decorations on it can be illuminated, thus displaying product promotional slogans. It can also serve as a product display rack, for example, if the product is a bone conduction headphone, the bone conduction headphone can be placed on the display stand device 300 for users to use and experience. The display stand device 300 can also charge electronic devices and communicate with them for data interaction. For example, if the electronic device is a bone conduction headphone, the display stand device 300 can wirelessly connect with the bone conduction headphone to transmit audio data to it. It can also be equipped with function buttons to control the volume adjustment, play, and pause functions of the bone conduction headphone.
[0038] The booth assembly 300 may include one or more booth bases 100 and one or more decorative elements 200. The multiple booth bases 100 can be spliced together and arranged in a row, and the multiple booth bases 100 are electrically connected to each other. Each booth base 100 has at least one decorative element 200. The decorative element 200 can be detachably installed on the booth base 100. The decorative element 200 can be used for advertising, as a product display stand, and / or to assist in the functional experience of the product.
[0039] It is understood that in some other embodiments of this application, the multiple booth bases 100 may also be arranged in multiple rows. The multiple booth bases 100 may also be at least partially electrically connected to each other.
[0040] The decorative element 200 includes a decorative body 210, which can be in the form of promotional text, numbers, or letters. For example, the decorative body 210 may be shaped like the number 100. The decorative body 210 may also have built-in LED beads or other lighting elements, which will make the decorative body 210 glow as a whole to attract the user's attention.
[0041] At least one of the multiple decorative pieces 200 can also be used as a display stand, for example, for an electronic device such as a bone conduction headphone. The bone conduction headphone can be placed on the decorative body 210, which has a placement station for placing the bone conduction headphone. The placement station can be defined by a groove structure, or it can be defined by a boss structure or multiple protrusions, which can be used to support the bone conduction headphone.
[0042] The decorative component 200 used as a display stand may also be equipped with function buttons and a communication module. Specifically, the decorative body 210 of the decorative component 200 is equipped with function buttons (not shown) and a communication module (not shown). The communication module is used to communicate with electronic devices, and the function buttons are used to input commands to control the information transmitted through the communication module.
[0043] For example, the communication module can communicate with electronic devices wirelessly or via wired means. For instance, if the electronic device is a bone conduction headset, the communication module can communicate wirelessly with the bone conduction headset. There can be multiple function buttons, which are labeled with functions such as volume up / down, audio playback, and pause.
[0044] In some other embodiments, the decorative part 200 used for advertising and / or auxiliary products may also be provided with functional modules such as function buttons and communication modules, so as to control the use of electronic devices through the functional modules on the decorative part 200.
[0045] The decorative body 210 may also be equipped with a charging module for charging electronic devices to keep them in a continuously powered state.
[0046] At least one of the multiple booth bases 100 serves as the host of the booth device 300, and is equipped with a controller and a memory. The memory can store program data and audio data, etc. The controller is used to control the booth base 100 to supply power to the decorative body 210 and / or control the booth base 100 to interact with the decorative body 210.
[0047] The controller is used to control the communication module to communicate with electronic devices and to receive input commands from function keys. For example, the controller receives commands issued by function keys to communicate with electronic devices through the communication module and can transmit data to electronic devices, such as command data and audio data. The command data can be Bluetooth connection, play or pause, etc.
[0048] In some embodiments, at least one booth base 100 also includes a power source that can store electrical energy to power each booth base 100 and each decorative element 200. The power source can also be connected to an external power source to power each booth base 100 and each decorative element 200.
[0049] Alternatively, in some embodiments, at least one booth base 100 may also include a power cord, one end of which is provided with a plug for connection to an external power source, and the other end of which is connected to a power management chip. The power management chip is electrically connected to the functional modules of each booth base 100 and each decorative element 200 to supply power to each booth base 100 and each decorative element 200.
[0050] In some implementations, apart from the booth base 100 which serves as the host, the other booth bases 100 may not need to contain controllers, memory, power supplies, etc., and can be used for information transmission and current transmission.
[0051] The booth base 100 and decorative parts 200 are detachably connected, so that different decorative parts 200 can be matched with the booth base 100 in different promotional scenarios to adapt to the needs of the scenario, thereby improving the utilization and practicality of the booth device 300.
[0052] Specifically, in existing showroom settings, the display equipment is often customized for specific products. Once the product has passed its sales period or been removed from the shelves, the display equipment is often discarded and cannot be used as a promotional tool for other products because the product model and promotional language it represents belong to a specific product.
[0053] Furthermore, due to the varying lengths of promotional materials and the different functions required by the display equipment, the sizes and specifications of each display device also differ, making it impossible for the devices to be shared, resulting in a significant waste of resources and costs.
[0054] In this application, the booth bases 100 can be spliced together, and the decorative parts 200 can be adjusted adaptively on them to combine various functions and promotional slogans. That is, by simply replacing some of the decorative parts 200, the required size and functional requirements in different scenarios can be met. Moreover, both the booth bases 100 and the decorative parts 200 can be reused in different scenarios, thereby effectively reducing the waste of resources and costs.
[0055] See also Figures 2 to 5 , Figure 2 yes Figure 1 The diagram shows the structure of the booth assembly with the booth base in one state. Figure 3 yes Figure 1 The diagram shows the structure of the exhibition stand assembly with the base in another state. Figure 4 yes Figure 1 The diagram shows the structural connection between adjacent booth bases in the booth assembly. Figure 5 yes Figure 1 The diagram shows a cross-sectional view of the connection point between the bases of the two booths.
[0056] like Figure 2 and Figure 3 As shown, the booth base 100 includes a box body 10, a first connecting mechanism 20, and a second connecting mechanism 30.
[0057] The box body 10 includes a first side wall 11 and a second side wall 12 spaced apart. The first side wall 11 has a first opening 110 and the second side wall 12 has a second opening 120.
[0058] The box 10 can be rectangular, pentagonal, or hexagonal, etc., and this application does not make any specific limitation in this regard.
[0059] In this embodiment, the first sidewall 11 and the second sidewall 12 are arranged in parallel, so that multiple booth bases 100 can be spliced together in a row.
[0060] In other embodiments, the first sidewall 11 and the second sidewall 12 may also be set at acute angles, right angles or obtuse angles, so that multiple booth bases 100 can be spliced into an L-shape or other shapes to adapt to the needs of different scenarios.
[0061] The first opening 110 and the second opening 120 are openings of the same size and can both be strip-shaped or rectangular openings, etc.
[0062] The first connecting mechanism 20 includes a first connecting seat 21 and a first connecting component 22 rotatably connected to the first connecting seat 21. The first connecting seat 21 is disposed inside the housing 10. When the first connecting component 22 is in the first state, the first connecting component 22 covers the first opening 110. When the first connecting component 22 is in the second state, the first connecting component 22 opens the first opening 110 and can be inserted into the second opening 120 of another booth base 100 and connected to the second connecting seat 31 of the other booth base 100.
[0063] In other words, the first connecting component 22 can rotate relative to the first connecting seat 21 to either cover or open the first opening 110. Opening the first opening 110 means that the first connecting component 22 can also rotate relative to the first connecting seat 21 in one direction, thereby releasing the cover from the first opening 110. With the first connecting component 22 in the open position, it can also rotate relative to the first connecting seat 21 in another direction to cover the first opening 110.
[0064] The first connecting component 22 is used to connect to another box 10 to enable power supply and information data transmission between the two boxes 10 and to strengthen the connection stability between the two adjacent boxes 10.
[0065] The second connecting mechanism 30 includes a second connecting seat 31 and a second connecting component 32 rotatably connected to the second connecting seat 31. The second connecting seat 31 is disposed inside the housing 10. When the second connecting component 32 is in the first state, the second connecting component 32 covers the second opening 110. When the second connecting component 32 is in the second state, the second connecting component 32 opens the second opening 120 and can be inserted into the first opening 110 of another booth base 100 and connected to the first connecting seat 21 of the other booth base 100.
[0066] In other words, the second connecting component 32 can rotate relative to the second connecting seat 31 to either cover or open the second opening 120. Opening the second opening 120 means that the second connecting component 32 can also rotate relative to the second connecting seat 31 in one direction to release the cover on the second opening 120; while the second connecting component 32 is in the open state, it can also rotate relative to the second connecting seat 31 in another direction to cover the second opening 120.
[0067] The second connection component 32 is used to connect to another box 10 to enable power supply and information data transmission between the two boxes 10 and to strengthen the connection stability between the two adjacent boxes 10.
[0068] Specifically, in some embodiments of this application, when the first connecting component 22 rotates relative to the first connecting seat 21 to a second state with the first opening 110 open, the end of the first connecting component 22 away from the first connecting seat 21 protrudes from the surface of the box body 10. The portion protruding from the surface of the box body 10 can be inserted into the second opening 120 of another display stand base 100 and connected to the second connecting seat 31. When the second connecting component 32 rotates relative to the second connecting seat 31 to a second state with the second opening 120 open, the end of the second connecting component 32 away from the second connecting seat 31 protrudes from the surface of the box body 10. The portion protruding from the surface of the box body 10 can be inserted into the first opening 110 of another display stand base 100 and connected to the first connecting seat 21.
[0069] Specifically, such as Figure 2 As shown, Figure 2 In the first connecting component 22 and the second connecting component 32, both are in the first state, with the first connecting component 22 covering the first opening 110 and the second connecting component 32 covering the second opening 120; as Figure 3 As shown, Figure 3 Both the first connecting component 22 and the second connecting component 32 are in the second state. The first connecting component 22 rotates and extends relative to the first connecting seat 21 to open the first opening 110, and the second connecting component 32 rotates and extends relative to the second connecting seat 31 to open the second opening 120.
[0070] like Figure 3 As shown, the unfolded first connecting component 22 and the corresponding second connecting component 32 are misaligned to avoid interference between the corresponding first connecting component 22 and second connecting component 32 when two adjacent booth bases 100 are spliced together, thus achieving foolproof assembly.
[0071] like Figure 3 As shown, Figure 3 The central booth base 100 includes two first connecting components 22 and two second connecting components 32. The distance between the two unfolded first connecting components 22 is greater than the distance between the two unfolded second connecting components 32; that is, each set of first connecting components 22 and second connecting components 32 is staggered. (See also...) Figure 3 and Figure 4When two adjacent booth bases 100 are joined together, one booth base 100 unfolds its first connecting component 22 to release the cover of the first opening 110, and the end of the first connecting component 22 away from the first connecting seat 21 protrudes from the surface of the first side wall 11 of the box body 10; the other booth base 100 unfolds its second connecting component 32 to release the cover of the second opening 120, and the end of the second connecting component 32 away from the second connecting seat 31 protrudes from the surface of the second side wall 12 of the box body 10; the two booth bases 100 are close to each other, that is, the first side wall 11 of one booth base 100 and the second side wall 12 of the other booth base 100 are close together. The first connecting component 22 protrudes from the surface of the box body 10 and is inserted into the box body 10 through the second opening 120 of the adjacent booth base 100 and connected to the second connecting seat 31. At the same time, the second connecting component 32 protrudes from the surface of the box body 10 and is inserted into the box body 10 through the first opening 110 of the adjacent booth base 100 and connected to the first connecting seat 21. After the two booth bases 100 are spliced together, the first side wall 11 is close to the second side wall 12, the first opening 110 and the second opening 120 overlap, and the first connecting component 22 and the second connecting component 32 at the same connection point both pass through the first opening 110 and the second opening 120.
[0072] The number of first openings 110 is the same as the number of first connecting mechanisms 20, and the first connecting mechanisms 20 are arranged in a one-to-one correspondence with the first openings 110. The number of first openings 110 and the number of first connecting mechanisms 20 can both be one, or two, three, or more.
[0073] The number of second openings 120 is the same as the number of second connecting mechanisms 30, and the second connecting mechanisms 30 are arranged in a one-to-one correspondence with the second openings 120. The number of second openings 120 and the number of second connecting mechanisms 30 can both be one, or two, three, or more.
[0074] In this embodiment, there are two first openings 110 and two first connecting mechanisms 20. There are also two second openings 120 and two second connecting mechanisms 30. When the two booth bases 100 are spliced together, the two first connecting mechanisms 20 are connected to the corresponding second connecting mechanisms 30. By establishing multiple connection relationships, the connection stability and effectiveness of the two adjacent booth bases 100 can be effectively increased, and the risk of the two adjacent booth bases 100 detaching on their own can be reduced.
[0075] In this embodiment, the box body 10 also includes a third side wall 14 and a fourth side wall 15 spaced apart. The third side wall 14 and the fourth side wall 15 are connected between the first side wall 11 and the second side wall 12. The side where the third side wall 14 and the fourth side wall 15 are located is not provided with the first connecting mechanism 20 and the second connecting mechanism 30 as described above.
[0076] Optionally, a third opening may be provided on the third side wall 13, and a fourth opening may be provided on the fourth side wall 15. A first connecting mechanism 20 or a second connecting mechanism 30 as described above may be provided at the third opening, and a first connecting mechanism 20 or a second connecting mechanism 30 as described above may be provided at the fourth opening. Furthermore, multiple booth bases 100 may be spliced into an L-shape or other bent shape, which will not be elaborated further.
[0077] In some embodiments, a plug-in structure may also be provided on the third sidewall 14 or the fourth sidewall 15. This plug-in structure can connect to external devices to achieve electrical connection and / or signal communication between the booth base 100 and external devices. For example, in some embodiments, the plug-in structure can be a plug cable or a cable connector, which connects to an external plug to charge the base module 100. In some embodiments, the plug-in structure can be a signal transmission port, which connects to external devices to achieve signal connection between the signal booth base 100 and external devices. In this embodiment, one of the multiple first connecting components 22 in one booth base 100 is connected to a second connecting seat 31 in another booth base 100 to establish an electrical connection, which can then transmit electrical energy and data information. The remaining first connecting components 22 serve as physical connections; each second connecting component 32 is connected to a first connecting seat 21, and all are physical connections.
[0078] In other embodiments, power supply and data transmission can be set as two routes, with two first connecting components 22 in a booth base 100 respectively used to establish a power supply path and a data interaction path, or the same first connecting component 22 can be equipped with both a power supply connector and a data transmission connector.
[0079] Optionally, the first connecting mechanism 20 in one booth base 100 is connected to the second connecting mechanism 30 in another booth base 100, or it can be a physical connection only, with each booth base 100 having its own independent power supply.
[0080] See also Figures 3 to 5The first connecting assembly 22 includes a first door panel 221 and a first connector 223 disposed on the first door panel 221. The first door panel 221 is rotatably connected to the first connecting seat 21. The first door panel 221 is used to cover the first opening 110 and can rotate relative to the first connecting seat 21 to open the first opening 110. The second connecting seat 31 is provided with a second connector 313, and the first connector 223 matches the second connector 313. The first connector 223 in one booth base 100 is used to connect with the second connector 313 in another booth base 100 to establish a power supply path and a data interaction path. When the first door panel 221 is inserted into an adjacent box 10, the first connector 223 and the second connector 313 are connected.
[0081] The first connector 223 is connected to the first door panel 221. After the first connecting assembly 22 is unfolded, the first connector 223 is located on the outside of the box body 10. The second connector 313 is connected to the second connecting seat 31, that is, the second connector 313 is located inside the box body 10. Therefore, when two adjacent booth bases 100 are spliced together, the first connector 223 enters into the box body 10 through the second opening 120 of the other booth base 100 and connects with its second connector 313.
[0082] In this embodiment, the first connector 223 is a Type C connector and the second connector 313 is a Type C interface. Therefore, the connection between the first connector 223 and the second connector 313 can provide both power supply and data transmission.
[0083] Optionally, the first connector 223 can be a USB connector, and the second connector 313 can be a USB interface.
[0084] Some of the first connecting components 22 may also include only the first door panel 221, wherein the first door panel 221 may be engaged with the second connecting seat 31, or the first door panel 221 may be inserted into another box 10.
[0085] Continue to refer to Figures 3 to 5 The second connecting assembly 32 includes a second door panel 321 and a first connector 323 disposed on the second door panel 321. The second door panel 321 is rotatably connected to the second connecting seat 31. The second door panel 321 is used to cover the second opening 120 and can be rotated relative to the second connecting seat 31 to open the second opening 120. The first connecting seat 21 is provided with a second connector 212. The first connector 323 matches the second connector 212. The first connector 323 in one booth base 100 is used to connect with the second connector 212 in another booth base 100. That is, when the second door panel 321 is inserted into the adjacent box 10, the first connector 323 and the second connector 212 are physically connected.
[0086] The first connector 323 is connected to the second door panel 321. After the second connecting assembly 32 is unfolded, the first connector 323 is located on the outside of the box 10. The second connector 212 is connected to the first connecting seat 21, that is, the second connector 212 is located inside the box 10. Therefore, when two adjacent booth bases 100 are spliced together, the first connector 323 enters into the box 10 of the other booth base 10 through the first opening 110 and connects with its second connector 212.
[0087] In this embodiment, the first connector 323 is a first magnetic connector, and the second connector 212 is a first magnetic connector. The first magnetic connector is used to magnetically connect with the second magnetic connector.
[0088] Optionally, the first magnetic attractor and the second magnetic attractor are respectively a magnet and a ferromagnetic block, or both the first magnetic attractor and the second magnetic attractor are magnets.
[0089] like Figure 4 As shown, the first connecting mechanism 20 and the second connecting mechanism 30 are connected, wherein the first door panel 221 is inserted into the other box 10 through the second opening 120 of the adjacent box 10, and the first connector 223 is inserted into the second connector 313. The second door panel 321 is inserted into the other box 10 through the first opening 110 of the adjacent box 10, and the first connector 323 and the second connector 212 are magnetically connected.
[0090] like Figure 3 As shown, after the first connecting assembly 22 is unfolded, the first connector 223 is positioned relative to the first door panel 221 on the first side of the first connecting seat 21, and the second connector 212 is positioned relative to the second side of the first connecting seat 21; after the second connecting assembly 32 is unfolded, the first connector 323 is positioned relative to the second door panel 321 on the second side of the second connecting seat 31, and the second connector 313 is positioned relative to the first side of the second connecting seat 31; wherein, the first side of the first connecting seat 21 and the second connecting seat 31 is the side that is relatively closer to the third side wall 14 or the fourth side wall 15, and the second side of the first connecting seat 21 and the second connecting seat 31 is the side that is relatively farther away from the third side wall 14 or the fourth side wall 15.
[0091] On the same booth base 100, in a set of first connecting mechanisms 20 and second connecting mechanisms 30, the first connecting seat 21 and the second connecting seat 31 are aligned. The unfolded first connecting component 22 and the unfolded second connecting component 32 are offset and aligned with the second connector 313. The second connecting component 32 is aligned with the second connecting piece 212. Therefore, when two adjacent booth bases 100 are spliced together, the first connector 223 and the second connector 313 on the first side are aligned, and the first connecting piece 323 and the second connecting piece 212 on the second side are aligned.
[0092] See again Figure 3 The booth base 100 also includes a first guide 23 and a second guide 33. The first guide 23 is provided corresponding to the first connecting seat 21 and is used to guide the second door panel 321 of the other booth base 100 to be inserted into the first guide 23, so that the first connecting member 323 is connected to the second connecting member 212 of the other booth base 100. The second guide 33 is provided corresponding to the second connecting seat 31 and is used to guide the first door panel 221 of the other booth base 100 to be inserted into the second guide 33, so that the first connector 223 is connected to the second connector 313 of the other booth base 100.
[0093] The first guide member 23 and the second guide member 33 both include a first guide plate 230 and a second guide plate 232 spaced apart. The first guide plate 230 and the second guide plate 232 are sandwiched to form a guide channel. The first door panel 221 or the second door panel 321 moves along the guide channel, which can make the first connector 223 dock with the second connector 313, or make the first connector 323 dock with the second connector 212.
[0094] The first guide plate 230 includes an arc-shaped guide portion 231. The arc-shaped guide portion 231 and the end of the second guide plate 232 form a trumpet-shaped opening so that the first door panel 221 or the second door panel 321 can enter the guide channel through the trumpet-shaped opening. The arc-shaped guide portion 231 can guide the first door panel 221 or the second door panel 321 into the guide channel, thereby reducing the difficulty of docking two adjacent booth bases 100 and making it easier to assemble and splice the booth bases 100.
[0095] See also Figure 3 and Figure 6 ,in Figure 6 yes Figure 2 The diagram shows the structure of the first and second connecting mechanisms in the base of the booth.
[0096] The booth base 100 also includes a first activator 41 and a second activator 42. The first activator 41 is connected to the first connecting seat 21 and is used to drive the first connecting component 22 to rotate and extend relative to the first connecting seat 21 to open the first opening 110. The second activator 42 is connected to the second connecting seat 31 and is used to drive the second connecting component 32 to rotate and extend relative to the second connecting seat 31 to open the second opening 120.
[0097] By pressing the first actuating element 41, the user can cause the first connecting component 22 to rotate and extend relative to the first connecting seat 21, thereby opening the first opening 110 that was closed thereto; by pressing the second actuating element 42, the user can cause the second connecting component 32 to rotate and extend relative to the second connecting seat 31, thereby opening the second opening 120 that was closed thereto.
[0098] The first actuating element 41 can correspondingly drive a set of first connecting mechanisms 20, so that the first connecting component 22 of the first connecting mechanism 20 rotates and extends relative to the first connecting seat 21, thereby opening the first opening 110 that is closed by it. The first actuating element 41 can also correspondingly drive two, three, or four sets of first connecting mechanisms 20.
[0099] The second actuating element 42 can correspondingly drive a set of second connecting mechanisms 30, so that the second connecting component 32 of the second connecting mechanism 30 rotates and extends relative to the second connecting seat 31, thereby opening the second opening 120 that is closed thereby. The second actuating element 42 can also correspondingly drive two, three, or four sets of second connecting mechanisms 30.
[0100] The first sidewall 11 is provided with a plurality of first openings 110, and a plurality of first connecting mechanisms 20 are provided one-to-one with the plurality of first openings 110. The first activator 41 is simultaneously connected to a plurality of first connecting seats 21 corresponding to the plurality of first openings 110. The first activator 41 is used to open the plurality of first openings 110 with one key, so that the plurality of first connecting components 22 rotate simultaneously to extend outward from the box 10. The second sidewall 12 is provided with a plurality of second openings 120, and a plurality of second connecting mechanisms 30 are provided one-to-one with the plurality of second openings 120. The second activator 42 is simultaneously connected to a plurality of second connecting seats 31 corresponding to the plurality of second openings 120. The second activator 42 is used to open the plurality of second openings 120 with one key, so that the plurality of second connecting components 32 rotate simultaneously to extend outward from the box 10.
[0101] In this embodiment, the first activator 41 is connected to two first connectors 21 at the same time, so that the first activator 41 can open two first openings 110 with one click; the second activator 42 is connected to two second connectors 31 at the same time, so that the second activator 42 can open two second openings 120 with one click.
[0102] See also Figures 6 to 8 ,in Figure 7 yes Figure 6 A cross-sectional view of the second connecting mechanism in the base of the booth shown. Figure 8 yes Figure 6 An exploded view of the second connecting mechanism in the base of the booth shown.
[0103] Specifically, the first starter 41 and the second starter 42 have the same structure, both including a button 411 and a connecting rod 412. The connecting rod 412 includes a rod portion 413 and a plurality of push portions 414 disposed on the rod portion 413. The button 411 and the rod portion 413 are connected.
[0104] The button 411 of the first starter 41 is exposed from the first side wall 11, and the plurality of push parts 414 of the first starter 41 are respectively connected to the corresponding first connecting seat 21. The button 411 of the second starter 42 is exposed from the second side wall 12, and the plurality of push parts 414 of the second starter 42 are respectively connected to the corresponding second connecting seat 31.
[0105] By pressing the button 411 of the first actuating member 41, the lever 413 drives multiple pushing parts 414 to move, thereby driving the first connecting component 22 to rotate and extend relative to the first connecting seat 21 to open the first opening 110.
[0106] By pressing the button 411 of the second actuating member 42, the lever 413 drives multiple pushing parts 414 to move, thereby driving the second connecting assembly 32 to rotate and extend relative to the second connecting seat 31 to open the second opening 120.
[0107] See also Figure 6 and Figure 7 The first connecting mechanism 20 also includes a first elastic member 23 and a sliding member 24. The sliding member 24 is slidably disposed on the first connecting seat 21. The first elastic member 23 is elastically compressed between the first connecting seat 21 and the sliding member 24. The pushing part 414 passes through the first connecting seat 21 and is connected to the sliding member 23. The pushing part 414 is used to drive the sliding member 23 to slide on the first connecting seat 21.
[0108] Among them, such as Figure 7 As shown, when the first door panel 221 covers the first opening 110, the first elastic member 23 drives the sliding member 24 to engage with the first door panel 221, thereby locking the first door panel 221; the pushing part 414 is used to push the sliding member 24 to compress the first elastic member 23, so that the sliding member 24 releases the locking of the first door panel 221, thereby allowing the first door panel 221 to be rotated to open the first opening 110.
[0109] When the first door panel 221 is locked, it cannot rotate relative to the first connecting seat 21, but can keep the first opening 110 closed; when the first door panel 221 is unlocked, it can rotate relative to the first connecting seat 21 to open the first opening 110.
[0110] The first elastic element 23 can be a compression spring or an elastic sleeve, etc. The sliding element 24 is provided with a insertion cavity 240, and the first connecting seat 21 is provided with a clearance opening. The pushing part 414 is inserted into the insertion cavity 240 through the clearance opening to connect with the sliding element 24. The first elastic element 23 is used to provide a pre-tightening force to push the sliding element 24 to engage with the first door panel 221, thereby locking the first door panel 221.
[0111] like Figure 8As shown, a rotating plate 224 is provided on one side of the first door panel 221. A first locking part 225 is provided at the end of the rotating plate 224 facing away from the first door panel 221. A shaft hole is provided on the rotating plate 224. The rotating plate 224 is rotatably connected to the first connecting seat 21 through a rotating shaft 226. A second locking part 242 is provided on the side of the sliding member 24 facing the first door panel 221. The second locking part 242 can be locked with the first locking part 225.
[0112] In this embodiment of the application, when the first door panel 221 covers the first opening 110, the second latching part 242 latches with the first latching part 225, thereby locking the first door panel 221 and enabling the first door panel 221 to maintain the state of covering the first opening 110.
[0113] Specifically, the first door panel 221 has two spaced-apart rotating plates 224 on one side, and a rotating shaft 226 passes through the rotating plates 224 and the first connecting seat 21, so that the first door panel 221 can rotate relative to the first connecting seat 21 around the rotating shaft.
[0114] If the first latching part 225 can be a latching protrusion, then the second latching part 242 can be a latching groove; if the first latching part 225 can be a latching groove, then the second latching part 242 can be a latching protrusion; and then the first door panel 221 is locked by the latching limit of the first latching part 225 and the second latching part 242.
[0115] The pushing part 414 drives the sliding member 24 to compress the first elastic member 23, thereby releasing the locking limit of the first locking part 225 and the second locking part 242. This releases the locking state of the sliding member 24 on the first door panel 221, allowing the first door panel 221 to rotate and open the first opening 110. After the first door panel 221 closes the first opening 110, the first locking part 225 and the second locking part 242 can return to their locking limit state under the elastic pre-tightening force provided by the first elastic member 23.
[0116] Furthermore, such as Figures 6 to 8 As shown, the first connecting mechanism 20 also includes a second elastic member 25, which is disposed between the first door panel 221 and the sliding member 24. When the sliding member 24 unlocks the first door panel 221, the second elastic member 25 provides elastic force to drive the first door panel 221 to rotate, thereby opening the first opening 110 and enabling the first door panel 221 to automatically pop open.
[0117] The second elastic element 25 can be a torsion spring or an elastic clip, so that after the first door panel 221 is unlocked, the second elastic element 25 can provide a driving force to drive the first door panel 221 to rotate. The elastic clip can be composed of two elastic arms arranged at an angle. When the first door panel 221 is locked, the two elastic arms are compressed and move closer to each other. After the first door panel 221 is unlocked, the two elastic arms move away from each other under the force of the elasticity, thereby driving the first door panel 221 to rotate.
[0118] In this embodiment, the first elastic element 23 is a compression spring, the second elastic element 25 is a torsion spring, the torsion spring passes through the rotating shaft 226, and one end of the torsion spring elastically abuts against the first door panel 221, while the other end of the torsion spring can be disposed in the insertion cavity 240 of the sliding element 24.
[0119] like Figure 8 As shown, the second connecting mechanism 30 also includes the first elastic member 23, the sliding member 24 and the second elastic member 25 as described above, and the structure of the second connecting seat 31 is the same as the structure of the first connecting seat 21. The structure of the second door panel 321 is also the same as the structure of the first door panel 221. They also have the same connection relationship, which will not be described again.
[0120] See also Figures 1 to 3 and Figure 9 , Figure 10 ,in Figure 9 yes Figure 2 A schematic diagram of the structure of the display stand device from another axial direction. Figure 10 yes Figure 1 A schematic diagram of the structure of the decorative components in the booth installation shown.
[0121] Furthermore, the booth base 100 also includes a plug-in component 50, which is disposed on the top wall 13 of the box body 10; the decorative component 200 includes a decorative body 210 and a mounting component 201 disposed on the decorative body 210, the mounting component 201 and the plug-in component 50 being detachably connected and electrically connected; wherein the booth base 100 is used to supply power to the decorative body 210 and / or to interact with the decorative body via data.
[0122] The mounting component 201 and the plug-in component 50 are electrically connected, which allows the function buttons and communication module on the decorative piece 200 to be electrically connected to the controller on the stand base 100. In this way, users can control the electronic devices placed on the decorative piece 200 to perform data interaction through the function buttons, so as to provide a better user experience.
[0123] The plug-in component 50 can be an electrical socket installed on the top wall 13 of the box body 10, and the mounting component 201 can be an electrical plug installed on the decorative body 210. The plug-in component 50 can also be an electrical plug, and the mounting component 201 can be an electrical socket. The electrical socket can be a Type C interface or a USB interface, and the electrical plug can be a Type C connector or a USB connector, so that the booth base 100 can supply power and communicate with the decorative component 200 for data interaction.
[0124] By configuring the booth device 300 as a detachable connection between the booth base 100 and the decorative parts 200, the corresponding decorative parts 200 can be selectively replaced for different usage scenarios, thereby increasing the reusability of the booth base 100 and the decorative parts 200 and effectively reducing the cost of the booth device 300.
[0125] In this embodiment, as Figure 3 As shown, the plug-in assembly 50 includes a fixed base 52 and a plug-in connector 54 disposed on the fixed base 52. The fixed base 52 is disposed on the top wall of the housing 10.
[0126] See Figure 11 and Figure 12 ,in Figure 11 yes Figure 10 The diagram shows the structure of the mounting components in the decorative part. Figure 12 yes Figure 11 The diagram shows a side view of the mounting components.
[0127] Mounting assembly 201 includes mounting base 202 and mounting connector 204 disposed on mounting base 202, wherein mounting base 202 is used to assemble with fixed base 52 and mounting connector 204 is used to electrically connect with plug connector 54.
[0128] The plug-in connector 54 can be electrically connected to the main board inside the booth base 100 via a circuit board or wiring. The mounting connector 204 can be electrically connected to each functional module of the decorative component 200 via a circuit board or wiring. When the mounting connector 204 is electrically connected to the plug-in connector 54, data exchange can be achieved between the booth base 100 and the decorative component 200. Compared to connecting the main board of the booth base 100 and each functional module of the decorative component 200 one by one through multiple interfaces, in this embodiment, the signal lines of the main board of the booth base 100 can all be connected to the plug-in connector 54, and the signal lines from each functional module of the decorative component 200 can all be connected to the mounting connector 204. Then, by electrically connecting the mounting connector 204 and the plug-in connector 54, multiple signal exchanges between the booth base 100 and the decorative component 200 can be realized. This reduces the number of wiring and connectors required, ensuring stable signal exchange between the booth base 100 and the decorative component 200, and simplifying the structure of the booth base 100 and the decorative component 200.
[0129] Furthermore, the mounting base 202 is detachably connected to the fixed base 52, and the mounting connector 204 is also detachably connected to the plug connector 54, thereby providing a dual connection to increase the stability of the connection. This reduces the risk of connection failure caused by external environmental interference to the mounting connector 204 and the plug connector 54, thus enhancing the anti-interference capability and improving the effectiveness of the connection.
[0130] In this embodiment, the plug connector 54 is a Type C interface, and the mounting connector 204 is a Type C connector.
[0131] Optionally, the plug connector 54 can be a USB interface, and the mounting connector 204 can be a USB connector.
[0132] like Figure 3 and Figure 9 As shown, the top wall 13 has an installation opening 130, and the fixing seat 52 is located on the side of the top wall 13 facing the inside of the box 10. The fixing seat 52 covers the installation opening 130 and forms a connecting cavity 132. The fixing seat 52 has a connecting hole 101 that connects the connecting cavity 132 and the inside of the box 10. The connecting hole 101 is formed by the edges of the top wall 13 and the fixing seat 52.
[0133] The connecting hole 101 is located in the extending direction of the mounting port 130, and the plug-in connector 54 is located on one side of the connecting hole 101 and faces the connecting hole 101. In some embodiments, the plug-in connector 54 may also extend to the connecting cavity 132. In this embodiment, the mounting base 202 is assembled into the connecting cavity 132 through the mounting port 130, and the mounting connector 204 is inserted into the box 10 through the connecting hole 101 and connected to the plug-in connector 54, thereby concealing the connection structure between the booth base 100 and the decorative piece 200, making the booth device 300 more aesthetically pleasing overall, and reducing the risk of visitors and users disassembling the booth device 300.
[0134] In other embodiments, the plug connector 54 may extend into the connection cavity 132, and the mounting base 52 covers the plug connector 54, thus eliminating the need for a communication hole.
[0135] In some embodiments, the number of mounting openings 130 is one, and thus only one decorative piece 200 can be installed on the booth base 100. The extension direction of the mounting opening 130 can be the extension direction of the third side wall 14, or the extension direction of the first side wall 11, or the extension direction of the mounting opening 130 can be set at an angle to the extension direction of the first side wall 11.
[0136] The extension direction of the mounting port 130 is the mating direction of the mounting connector 204 and the plug connector 54.
[0137] For example, if the extension direction of the mounting port 130 is the same as the extension direction of the third side wall 14, then the decorative piece 200 is connected to the booth base 100 along the extension direction of the third side wall 14, wherein the mounting connector 204 is mated with the plug connector 54 along the extension direction of the third side wall 14. In other embodiments, the number of mounting ports 130 can be two or three, etc., and the number of plug components 50 is the same as the number of mounting ports 130, and the plug components 50 are arranged in a one-to-one correspondence with the mounting ports 130, so that multiple decorative pieces 200 can be installed on one booth base 100.
[0138] The extension direction of each mounting port 130 can be set to be the same or different. For example, the extension direction of each mounting port 130 can be the extension direction of the first side wall 11, or the extension direction of each mounting port 130 can be the extension direction of the third side wall 14, or some of the mounting ports 130 can be the extension direction of the first side wall 11, and the extension direction of other mounting ports 130 can be the extension direction of the third side wall. The extension direction of each mounting port 130 can also be set at different angles with the first side wall 11.
[0139] Optionally, at least two of the mounting ports 130 may have intersecting extension directions, and the extension directions of the at least two mounting ports 130 may be set at acute angles, right angles or obtuse angles, with the plug connector 54 located in the extension direction of the corresponding mounting port 130.
[0140] like Figure 2 As shown, the booth base 100 includes two plug-in components 50, which extend in perpendicular directions. One plug-in component 50 extends in the direction of the first side wall 11 and is located in the middle of the top wall 13, meaning that the extension direction of its corresponding mounting port 130 is the extension direction of the first side wall 11. The other plug-in component 50 extends in the direction of the third side wall 14 and is located near the fourth side wall 15, meaning that the extension direction of its corresponding mounting port 130 is the extension direction of the third side wall 14. Thus, it can provide two different installation postures.
[0141] like Figure 2 After the multiple booth bases 100 shown are arranged in a row, a smaller decorative piece 200 can be installed corresponding to the plug-in component 50 in the middle of each booth base 100, and a larger decorative piece 200 can be installed using the plug-in component 50 provided on each booth base 100 near the fourth side wall 15, so as to serve as the background board for each smaller decorative piece 200.
[0142] Therefore, by providing multiple mounting ports 130, the installation postures of the booth base 100 and the decorative element 200 can be enriched to better adapt to various display scenarios, and the reusability of the booth base 100 can be further improved. In some embodiments, multiple mounting connectors 204 can be installed on the same decorative element 200, and the multiple mounting connectors 204 on the same decorative element 200 can be connected to the plug-in connectors 54 corresponding to the multiple mounting ports 130 of the same booth base 100, so as to transmit signals to the decorative element 200 through the plug-in connectors 54 corresponding to the multiple mounting ports 130 of the same booth base 100.
[0143] In some embodiments, multiple mounting connectors 204 on the same decorative element 200 may also be mated with plug connectors 54 corresponding to the mounting ports 130 of multiple booth bases 100 to transmit signals to the decorative element 200 through the plug connectors 54 corresponding to the mounting ports 130 of multiple booth bases 100.
[0144] For example, in some embodiments, the decorative element 200 is relatively large, requiring multiple booth bases 100 to be spliced together to form a larger structure to support the decorative element 200. Multiple mounting joints 204 on the decorative element 200 can mate with the corresponding plug-in joints 54 at the mounting ports 130 of the multiple booth bases 100, allowing signal transmission to the decorative element 200 through the plug-in joints 54 at the mounting ports 130 of the multiple booth bases 100, and enabling a more stable connection between the decorative element 200 and the multiple booth bases 100.
[0145] like Figure 10 and Figure 11 As shown, the mounting base 202 is also provided with a protective wall 203. The protective wall 203 is used to protect the mounting connector 204 and prevent damage to the mounting connector 204 during the disassembly or handling of the decorative part 200. Furthermore, when the mounting component 201 is installed into the connecting cavity 132 from the mounting port 130, the protective wall 203 can be inserted into the interior of the box body 10 through the connecting hole 101. The protective wall 203 can abut against the top wall of the box body 10, preventing the mounting component 201 from shaking when installed in the connecting cavity 132, thereby improving the stability of the mounting component 201 within the connecting cavity 132, and thus ensuring the stability of the connection between the decorative part 200 and the display base 100. The protective wall 203 can be a shell surrounding the mounting connector 204, or it can be a plate provided on both sides of the mounting connector 204.
[0146] In this embodiment, the protective wall 203 is plate-shaped, and there are two protective walls 203. The two protective walls 203 are disposed on both sides of the mounting joint 204 to clamp the mounting joint 204 between the two protective walls 203. The protective walls 203 protrude from the mounting joint 204 in the extending direction of the mounting joint 204. During the assembly of the decorative part 200, since the mounting component 201 and the display stand base 100 inevitably collide occasionally, the protective walls 203 can block the mounting joint 204 from colliding with the display stand base 100 from both sides of the mounting joint 204, thereby protecting the mounting joint 204.
[0147] Furthermore, a guide 205 is provided on one side of the protective wall 203, which enables the mounting base 202 to be easily assembled into the connecting cavity 132.
[0148] The guide section 205 is a guide slope of the protective wall 203 facing the top wall 13, and the guide slope gradually rises from the end away from the mounting base 202 to the end closer to the mounting base 202. During the assembly of the decorative part 200 and the display stand base 100, the guide slope slides against the edge of the top wall 13 located at the mounting opening, so that the protective wall 203 can be easily inserted into the interior of the box 10 through the connecting hole 101. Furthermore, the top wall 13 is provided with two opposing guide members 133 on the edge of the mounting port 130. The two guide members 133 are protruding ridges on the inner wall surface of the top wall 13. The extension direction of the ridges is the moving direction of the mounting seat 202 during the assembly of the mounting seat 202 into the connecting cavity 132. During the assembly of the mounting seat 202 into the connecting cavity 132, the two protective walls 203 are located between the two guide members 133 and each contacts one of the guide members 133, and can slide relative to the guide members 133. This guides the mounting connector 204 and the plug connector 54 to align and connect during the assembly process, improving the convenience of connecting the mounting connector 204 and the plug connector 54.
[0149] One side of the protective wall 203 is also provided with a snap-fit groove 206. The top wall 12 has a protruding ridge (not shown) at the edge of the mounting opening 130 protruding into the housing 10. This ridge is engaged in the snap-fit groove 206, thereby further increasing the connection stability between the booth base 100 and the decorative piece 200. Furthermore, since the ridge is engaged in the snap-fit groove 206, it can prevent the decorative piece 200 from moving relative to the booth base 100 due to accidental contact, which would cause the plug-in connector 54 to separate from the mounting connector 204 and affect the signal transmission between the decorative piece 200 and the booth base 100.
[0150] A foolproof part 207 is also provided on the side of the protective wall 203 facing away from the guide part 205. The foolproof part 207 is used to prevent mistakenly engaging with the fixing seat 52. The foolproof part 207 is an angled part of the protective wall 203 facing the fixing seat 52. During installation, the side of the protective wall 203 with the angled part faces the inside of the box 10 to prevent incorrect installation of the decorative part 200.
[0151] Unlike existing technologies, this application discloses a display stand device and its base. By providing a first connecting structure and a second connecting mechanism on the housing, with the first connecting structure capable of connecting to a second connecting structure on an adjacent display stand base, and the second connecting structure capable of connecting to a first connecting structure on an adjacent display stand base, the display stand base is modularly designed. By increasing or decreasing the number of connected display stand bases, the size of the display stand base can be adaptively expanded to better suit the needs of various product promotion and display, thereby improving the reusability of the display stand base. Furthermore, multiple identical or different types of decorative parts, or decorative parts of different sizes, can be detachably installed on the adaptively expandable display stand base according to actual usage needs, thus better meeting practical requirements. Moreover, when new products need to be displayed, different decorative parts can be updated, allowing the display stand base to be reused and avoiding resource waste.
[0152] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.
Claims
1. A display stand base, characterized in that, The booth base includes: The box body includes a first sidewall and a second sidewall spaced apart, the first sidewall having a first opening and the second sidewall having a second opening; The first connecting mechanism includes a first connecting seat and a first connecting component rotatably connected to the first connecting seat. The first connecting seat is disposed inside the box. When the first connecting component is in a first state, the first connecting component covers the first opening. When the first connecting component is in a second state, the first connecting component opens the first opening and can be inserted into the second opening of another booth base and connected to the second connecting seat of another booth base. The second connecting mechanism includes a second connecting seat and a second connecting component rotatably connected to the second connecting seat. The second connecting seat is disposed inside the box. When the second connecting component is in a first state, the second connecting component covers the second opening. When the second connecting component is in a second state, the second connecting component opens the second opening and can be inserted into the first opening of another booth base and connected to the first connecting seat of the other booth base. In this configuration, the unfolded first connecting component is offset from the corresponding second connecting component; The first connecting assembly includes a first door panel and a first connector disposed on the first door panel. The first door panel is rotatably connected to the first connecting seat. The second connecting seat is provided with a second connector. The first connector matches the second connector. The first connector is used to connect to the second connector of another of the booth bases. The second connecting assembly includes a second door panel and a first connector disposed on the second door panel. The second door panel is rotatably connected to the second connecting seat. The first connecting seat is provided with a second connector. The first connector matches the second connector. The first connector is used to connect to the second connector of another of the aforementioned booth bases.
2. The exhibition stand base according to claim 1, characterized in that, The booth base also includes a first guide and a second guide. The first guide is disposed corresponding to the first connecting seat and is used to guide the second door panel so that the first connecting member is connected to the second connecting member. The second guide is disposed corresponding to the second connecting seat and is used to guide the first door panel so that the first connector is connected to the second connector.
3. The exhibition stand base according to claim 1, characterized in that, The booth base also includes a first activator and a second activator; The first actuating element is connected to the first connecting seat, and the first actuating element is used to drive the first connecting component to rotate and extend relative to the first connecting seat to open the first opening; The second actuating element is connected to the second connecting seat, and the second actuating element is used to drive the second connecting component to rotate and extend relative to the second connecting seat to open the second opening.
4. The exhibition stand base according to claim 3, characterized in that, The first sidewall is provided with a plurality of first openings, and a plurality of first connecting mechanisms are provided in one-to-one correspondence with the plurality of first openings. The first activator is connected to a plurality of first connecting seats at the same time, and the first activator is used to open the plurality of first openings with one key. The second sidewall is provided with a plurality of second openings, and a plurality of second connecting mechanisms are provided in a one-to-one correspondence with the plurality of second openings. The second starter is simultaneously connected to a plurality of second connecting seats, and the second starter is used to open the plurality of second openings with one button.
5. The exhibition stand base according to claim 1, characterized in that, The booth base also includes a plug-in assembly, which includes a fixing seat and a plug-in connector disposed on the fixing seat. The fixing seat is disposed on the top wall of the box body.
6. The exhibition stand base according to claim 5, characterized in that, The top wall has an installation opening, the fixing seat covers the installation opening and forms a connecting cavity with the top wall, and the plug-in connector extends into the connecting cavity.
7. The exhibition stand base according to claim 6, characterized in that, There are multiple plug-in components, and there are also multiple mounting ports opened on the top wall. Each of the multiple mounting ports corresponds to one of the multiple plug-in components.
8. The exhibition stand base according to claim 7, characterized in that, Two of the plurality of mounting ports have intersecting extension directions, and the plug connector is located in the extension direction of the corresponding mounting port.
9. A display stand device, characterized in that, The booth assembly includes one or more decorative elements and one or more booth bases as described in any one of claims 1 to 8, wherein the plurality of booth bases are connected in a row via the first connecting mechanism and the second connecting mechanism, and the decorative elements are detachably installed on the booth bases.
Citation Information
Patent Citations
Exhibition stand device and exhibition stand base thereof
CN216436328U