Multi-sided rotating display

The multi-faceted rotating display rack solves the problems of low space utilization and insufficient stability of display racks through a rotating mechanism and bending connection design, achieving more efficient display and stability, providing automatic rotation and power supply, and facilitating transportation and disassembly.

CN117502866BActive Publication Date: 2026-03-27厦门欣泰货架有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-28
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing display racks have low space utilization, poor display effect, insufficient stability, and are prone to tipping over or goods falling off.

Method used

The multi-faceted rotating display rack design utilizes the base as a fulcrum and forms a closed loop through the rotation mechanism and the bending connection of the display components. The display components suspend goods through the hanging holes, the top cover is securely connected, the mounting components are detachable to rotate the display surface, and it is equipped with a drive component and a sensor component for automatic rotation. The elastic component adjusts the rotation speed, and the power socket is suspended on the mounting pipe for unified power connection.

Benefits of technology

It improves space utilization, makes the display more intuitive, enhances stability, prevents tipping or tilting, facilitates transportation and disassembly, and provides convenient automatic rotation and power supply.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of supporting structures, and provides a multi-surface rotating display stand, which comprises a base, a display mechanism and a rotating mechanism; the rotating mechanism is installed on the top of the base; the display mechanism is movably connected with the rotating mechanism; wherein the display mechanism comprises a plurality of display pieces and a top cover; the two sides of each display piece are respectively provided with a first bending part and a second bending part; the first bending part of each display piece is connected with the second bending part of an adjacent display piece; after all the adjacent display pieces are connected with each other, a closed loop is formed; the top cover is consistent with the style of the closed loop formed by the display pieces, the top cover is provided with a vertical folding edge, the top of all the display pieces is wrapped by the vertical folding edge, and all the display pieces are connected with the top cover; a plurality of hanging holes are formed in the display pieces. The application has the effect of improving the stability of the display stand.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of supporting structures, in particular to a multi-surface rotating display stand. BACKGROUND

[0002] Currently, the display stands used in places such as shopping malls or exhibition halls are generally flat display stands, which are placed in fixed positions and largely waste display space, and at the same time, the products that can be displayed on the display stand are less and the number is limited.

[0003] Secondly, when different products are displayed on both sides of the flat display stand, a person needs to walk around the display stand for a week to complete the browsing of all the goods on the display stand, which is inconvenient for the person to browse, reduces the display effect of the display stand, and at the same time, the contact area of the excessive display boards with the supporting pieces is small, so there is a problem of insufficient stability, especially when there are more goods hung on the single-side display board, the stress of each display board is unbalanced, which easily makes the entire display stand fall or the goods fall off, affecting the normal use of the display board. SUMMARY

[0004] In order to improve the above problems, the present application provides a multi-surface rotating display stand.

[0005] The multi-surface rotating display stand provided by the present application adopts the following technical solution:

[0006] A multi-surface rotating display stand, comprising a base, a display mechanism and a rotating mechanism; the rotating mechanism is installed on the top of the base; the display mechanism is movably connected with the rotating mechanism; wherein the display mechanism comprises a plurality of display pieces and a top cover; the two sides of the display piece are respectively provided with a first bend and a second bend, the first bend of the display piece is connected with the second bend of the adjacent display piece, and after all the adjacent display pieces are connected with each other, a closed loop is formed; the top cover is consistent with the style of the closed loop formed by the display pieces, and the top cover is provided with a vertical fold edge, and all the top parts of the display pieces are wrapped by the vertical fold edge and connected with all the display pieces; a plurality of hanging holes are formed on the display piece.

[0007] By adopting the above technical scheme, the display mechanism rotates along the base by using the rotating mechanism, and the adjacent display pieces are connected to each other by using the first bending and the second bending of the display piece, so that the last display piece forms a closed loop, thereby enabling the display mechanism to switch the positions of different display pieces when rotating by the rotating mechanism, and enabling the observers to more intuitively obtain the display information on each display piece in the process of rotating and switching the display pieces, and enabling the display pieces to be connected to each other by the first bending and the second bending, so that even if a single display piece is subjected to excessive force, the force can be dispersed through the connection relationship of the first bending and the second bending, thereby avoiding the overturning or tilting of the entire display stand.

[0008] Optionally, the rotating mechanism comprises a rotating piece and a mounting piece; the display mechanism is detachably connected with the mounting piece; and the mounting piece is movably connected with the rotating piece.

[0009] By adopting the above technical scheme, the entire display mechanism is mounted by using the mounting piece, so that the force acting on the entire display mechanism is borne by the mounting piece, and the mounting piece can rotate along the rotating piece, so that the mounting piece rotates to drive the entire display mechanism to rotate, so as to switch the display surface of the display mechanism, and when the display mechanism needs to be assembled or disassembled, the detachable connection between the mounting piece and the display mechanism can facilitate the separation or mounting of the display mechanism and the mounting piece, thereby facilitating separate transportation or storage.

[0010] Optionally, the rotating mechanism further comprises a driving piece; the driving piece is located in the base, and a driving end of the driving piece is connected with the mounting piece.

[0011] By adopting the above technical scheme, the driving piece can drive the mounting piece to rotate along the rotating piece by using the driving end, without the need for manual rotation of the display mechanism, thereby improving the convenience and flexibility of the display.

[0012] Optionally, the mounting piece is provided with an electrifying piece at one end connected with the display mechanism; the electrifying piece is located in the closed loop and extends to the top cover.

[0013] By adopting the above technical scheme, when the display stand needs to display electronic equipment, the electronic equipment needs to be electrified, so that the mounting piece is provided with the electrifying piece, so that the electronic equipment can be connected with the electrifying piece to provide power supply.

[0014] Optionally, the power supply part comprises a power supply socket, a mounting pipe and a hanging part; the mounting pipe is mounted on the mounting part and extends into the base through the mounting part; the hanging part is provided with a plurality of parts arranged along the vertical direction of the mounting pipe; the power supply socket is detachably connected with the mounting pipe through any of the hanging parts, and the power supply socket is connected with a power supply line extending through the mounting pipe into the base and connected with an external power supply.

[0015] By using the above technical scheme, the power supply socket can be hung at any height of the mounting pipe by using the hanging parts to adapt to the length or position of the power supply line of the electronic device hung on the display part, and the power supply line is extended into the base through the mounting pipe, and the power supply line is uniformly connected with the power supply in the base.

[0016] Optionally, the display part is provided with a connecting port; the connecting port is movably connected with a turnover part at one end and provided with a buckle groove at the other end; the turnover part is movably connected with a buckle part at one end near the buckle groove, and the turnover part is clamped with the buckle groove through the buckle part; the turnover part is provided with a wire slot.

[0017] By using the above technical scheme, the connecting port can be opened by using the turnover part, and the power supply line of the electronic device can be easily extended into the closed loop and connected with the power supply socket after the connecting port is opened, and the turnover part is fixed by the buckle part and the buckle groove when the connecting port is closed, and the power supply line is extended into or out of the closed loop through the wire slot.

[0018] Optionally, the turnover part is further provided with a winding part near the side of the closed loop of the turnover part.

[0019] By using the above technical scheme, the winding part can be used to wind the power supply line of the electronic device, so as to avoid the power supply line of the electronic device being too long and hanging in the closed loop, and the power supply lines of multiple electronic devices are too many to cause the power supply lines to be wound with each other.

[0020] Optionally, the rotating mechanism further comprises an elastic part and a sensing part; the sensing part is mounted on the rotating part and electrically connected with the driving part; one end of the elastic part is mounted on the end of the mounting part away from the display mechanism, and the other end is connected with the sensing part.

[0021] By adopting the technical scheme, the mounting member is driven to rotate along the rotating member by the driving member, the elastic member rotates along with the rotating process, the elastic member is pulled by the rotating effect of the mounting member, so that the elastic force is generated, the elastic force is applied to the inductive member, when the inductive member senses that the elastic force reaches a specified threshold or reaches a yield strength limit, the inductive member controls the driving member to reverse, so that the display mechanism reverses along with the mounting member rotating along the rotating member, and the elastic member is loosened, until the mounting member reverses to pull the elastic member in another direction, and reaches the specified threshold or reaches the yield strength limit, the inductive member controls the driving member to rotate, and the power line is prevented from being damaged by following the rotation.

[0022] Optionally, the mounting member is provided with an inner groove at one end close to the base, and the inner wall of the inner groove is provided with a first linkage part; the driving end of the driving member is provided with a second linkage part, the first linkage part and the second linkage part are connected with each other, and the inner diameter of the first linkage part is greater than the outer diameter of the second linkage part.

[0023] By adopting the technical scheme, the driving force provided by the driving member is transmitted to the first linkage part through the second linkage part, so that the first linkage part drives the mounting member to rotate, and the inner diameter of the first linkage part is greater than the outer diameter of the second linkage part, so that the number of revolutions of the first linkage part is different from the number of revolutions of the second linkage part, so as to achieve the effect of speed regulation, so that the mounting member can rotate slowly when driving the display mechanism to rotate, and sufficient display time is provided.

[0024] Optionally, the rotating mechanism is further provided with a locking member; the locking member is connected with the base.

[0025] By adopting the technical scheme, the rotating mechanism can be locked by the locking member, so that the rotating mechanism cannot rotate, and when the rotating effect is not needed during the display process, the rotating mechanism is locked to make the display mechanism no longer follow the rotation.

[0026] In summary, the present application includes at least one of the following beneficial technical effects:

[0027] 1. The base as a fulcrum, the display mechanism rotates along the base by using the rotating mechanism, and the adjacent display pieces are connected by using the first and second bends of the display pieces, so that the last display piece forms a closed loop, so that the display mechanism switches the position of different display pieces when rotating through the rotating mechanism. The display pieces can hang the goods or articles to be displayed through the hanging holes. In the process of rotating and switching the display pieces, observers can more intuitively obtain the display information on each display piece. At the same time, the display pieces are connected by using the first and second bends, so that even if a single display piece is subjected to excessive force, the force will be dispersed through the connection relationship of the first and second bends, thereby avoiding the overturning or tilting of the entire display stand. The top cover covers the top of all display pieces by using the vertical folding edge and connects them together, so that the mutual connection of all display pieces is more stable and the stress is more dispersed.

[0028] 2. The entire display mechanism is installed by using the mounting piece, so that the stress of the entire display mechanism is borne by the mounting piece, and the mounting piece can rotate along the rotating piece, so that when the mounting piece rotates, the entire display mechanism is driven to rotate to switch the display surface of the display mechanism. When the display mechanism needs to be assembled or disassembled, the mounting piece and the display mechanism can be detachably connected to facilitate separation or installation of the display mechanism and the mounting piece for convenient separate transportation or storage.

[0029] 3. The power socket can be hung at any height of the mounting pipe by using a plurality of hanging pieces to adapt to the length or power connection position of the electronic equipment suspended on the display piece. The power cord is inserted into the base through the mounting pipe, and the base uniformly connects the power cord.

[0030] 4. The mounting piece is driven to rotate along the rotating piece by using the driving piece, and the elastic piece follows the rotation during the rotation. The elastic piece is pulled by the rotating effect of the mounting piece, so that an elastic force is generated. The elastic force is applied to the sensing piece. When the elastic force reaches a specified threshold or reaches a yield strength limit, the sensing piece controls the driving piece to reverse, so that the display mechanism rotates along the mounting piece along the rotating piece in the opposite direction, and the elastic piece is loosened. Until the mounting piece is reversed to the other direction and reaches the specified threshold or reaches the yield strength limit, the sensing piece controls the driving piece to rotate in the positive direction. In this way, the power cord is prevented from being damaged by following the rotation. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 is a perspective structural schematic diagram of a display stand in an embodiment of the present application;

[0032] Figure 2 is an exploded structural schematic diagram of a display stand in some embodiments of the present application;

[0033] Figure 3 is a first exploded structural schematic diagram of a base and a rotating mechanism in some embodiments of the present application;

[0034] Figure 4 is an exploded structural schematic diagram of the rotating mechanism and the display mechanism in some embodiments of the present application;

[0035] Figure 5 is a three-dimensional structural schematic diagram of the display piece in some embodiments of the present application;

[0036] Figure 6 is a first cross-sectional structural schematic diagram of the rotating mechanism in some embodiments of the present application;

[0037] Figure 7 is a second cross-sectional structural schematic diagram of the rotating mechanism in some embodiments of the present application;

[0038] Figure 8 is a bottom structural schematic diagram of the mounting piece in some embodiments of the present application;

[0039] Figure 9 is a three-dimensional structural schematic diagram of the driving piece in some embodiments of the present application;

[0040] Figure 10 is a cross-sectional structural schematic diagram of the driving piece in some embodiments of the present application;

[0041] Figure 11 is a second exploded structural schematic diagram of the base and the rotating mechanism in some embodiments of the present application;

[0042] The marks in the drawings are: 1, base, 11, threaded hole, 2, display mechanism, 21, display piece, 211, first bend, 212, second bend, 213, hanging hole, 214, horizontal bend, 215, connecting port, 216, buckle groove, 22, top cover, 221, vertical flange, 23, turnover piece, 231, buckle, 232, winding part, 233, wire slot, 3, rotating mechanism, 31, rotating piece, 32, mounting piece, 321, first linkage part, 33, driving piece, 331, second linkage part, 332, threaded slot, 34, power supply piece, 341, power supply socket, 342, mounting tube, 343, hanging piece, 35, elastic piece, 36, sensing piece, 37, locking piece, 38, fastening piece, 39, rolling piece. DETAILED DESCRIPTION

[0043] The embodiments of the present application will be described in detail by specific, concrete examples. Those skilled in the art can easily understand other advantages and effects of the present application from the disclosed information. The present application can also be implemented or applied in different specific embodiments or systems, and the details in the present application can be modified or changed according to different views and application systems without departing from the spirit of the present application. It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.

[0044] The embodiments of the present application will be described in detail with reference to the drawings, so as to be easily carried out by those skilled in the art to which the present application pertains. The present application can be embodied in various ways, and is not limited to the embodiments described herein.

[0045] In the description of the present application, the expressions of “one embodiment”, “some embodiments”, “an example”, “a specific example” or “some examples” etc. mean that the specific features, structures, materials or characteristics represented in connection with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials or characteristics represented can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the different embodiments or examples represented in the present application and the features of the different embodiments or examples can be combined and integrated by those skilled in the art without contradiction, if necessary.

[0046] In addition, the terms “first”, “second” are only used to represent the objects, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with “first”, “second” can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of “a plurality of” is two or more, unless otherwise specifically limited.

[0047] Throughout the specification, when it is said that a device is “connected” to another device, it not only includes the case of “direct connection”, but also includes the case of “indirect connection” in which other elements are placed therebetween. In addition, when it is said that a device “includes” a certain constituent element, other constituent elements are not excluded unless specifically stated to the contrary, but it means that other constituent elements can also be included.

[0048] The embodiments of the present application will be described in detail with reference to the drawings, so as to be easily carried out by those skilled in the art to which the present application pertains. The present application can be embodied in various ways, and is not limited to the embodiments described herein. Figure 1 - The drawings Figure 11 The present application will be described in further detail.

[0049] The embodiments of the present application disclose a multi-face rotating display stand.

[0050] A multi-face rotating display stand, referring to Figure 1 , comprising a base 1, a rotating mechanism 3 and a display mechanism 2; the rotating mechanism 3 is installed on the top of the base 1, the display mechanism 2 is movably connected with the rotating mechanism 3, the display mechanism 2 is used to provide the display and display of exhibits or goods, the rotating mechanism 3 and the base 1 can be fixedly connected in one body, and the movable connection between the display mechanism 2 and the rotating mechanism 3 can be a pivotal connection, so that the display mechanism 2 can be rotated through the rotating mechanism 3.

[0051] The base 1 can be provided with a counterweight, which can be a metal counterweight, to provide a stable center of gravity of the base 1 and avoid the display stand from falling over. The base 1 can be provided with movable wheels at the bottom to facilitate the movement and transportation of the display stand.

[0052] As shown in the reference Figure 2 The display mechanism 2 includes a plurality of display pieces 21 and a top cover 22. The display pieces 21 can be hole boards, metal plates, wooden plates, etc. The display pieces 21 are provided with first bends and second bends on both sides, respectively. The first bends of the display pieces 21 are connected to the second bends of adjacent display pieces 21. After all adjacent display pieces 21 are connected, a closed loop is formed, and the space in the middle is a closed loop space. When the first bends are connected to the adjacent second bends, they overlap each other. The connection mode of adjacent display pieces 21 can be bolted. Holes are provided on the first bends and the second bends. When the first bends and the second bends overlap each other, the holes overlap each other, so that the bolts can pass through the first bends and the second bends through the holes. Then, a nut with an outer diameter larger than the hole is screwed on the bolt to lock it. Each first bend and second bend can be provided with at least three bolts for locking, which are located at the top, middle and bottom of the display piece 21. The number of holes is not fixed.

[0053] In addition to the bolted mode, a slot clamping mode can also be used. For example, the first bend is provided with a plug on the side away from the closed loop, and the second bend is provided with a slot on the side close to the closed loop. When adjacent display pieces 21 need to be installed, the plug on the first bend is aligned with the slot and inserted into it, so that the two are connected to each other. Compared with the bolted mode, this mode is faster to disassemble and assemble. (In the figure, the bolted mode is shown)

[0054] The bending angles of the first bends and the second bends are determined according to the number of display pieces 21. In this embodiment, three display pieces 21 are used, so the bending angles of the first bends and the second bends can be 30 degrees. When adjacent display pieces 21 are connected, the closed loop formed has an inner angle of 360 degrees, regardless of the number of display pieces 21.

[0055] The lengths of the first bends and the second bends can be different. For example, the length of the first bend is one fourth of the length of the second bend. The specific length is determined according to the requirements. As long as there is enough space to provide holes on the first bend and the connection can be stable after locking, it is acceptable.

[0056] The top cover 22 is consistent with the closed loop formed by the display pieces 21, and the top cover 22 is provided with a vertical folding edge 221, and all the display pieces 21 are wrapped with the vertical folding edge 221, and are connected with all the display pieces 21. The top cover 22 has two functions, one is to cover the top of the closed loop, which can prevent sundries from falling into the closed loop space, and the other is to use the vertical folding edge 221 to clamp the outer surface of each display piece 21. The top cover 22 can be fixed on the top of each display piece 21 by bolt locking or slot clamping, so that all the display pieces 21 are connected with each other by the top cover 22.

[0057] A plurality of hanging holes 213 are formed in the display pieces 21, and the hanging holes 213 are used for hanging goods or exhibits for display. For example, hooks or other tools can be used to hang goods through the hanging holes 213.

[0058] Specifically, the display mechanism 2 rotates along the base 1 by using the rotating mechanism 3 with the base 1 as the fulcrum, and the adjacent display pieces 21 are connected with each other by using the first bending and the second bending of the display pieces 21, so that the last display piece 21 forms a closed loop, thereby enabling the display mechanism 2 to switch the positions of different display pieces 21 when rotating by the rotating mechanism 3. The display pieces 21 can hang the goods or articles to be displayed through the hanging holes 213, so that the observers can more intuitively obtain the display information on each display piece 21 during the rotation and switching of the display pieces 21. At the same time, the display pieces 21 are connected with each other by the first bending and the second bending, so that even if a single display piece 21 is subjected to excessive force, the force can be dispersed through the connection relationship of the first bending and the second bending, thereby avoiding the overturning or tilting of the entire display stand. The top cover 22 covers the top of all the display pieces 21 by using the vertical folding edge 221 and connects them together, so that the mutual connection of all the display pieces 21 is more stable and the force is more dispersed.

[0059] Further, referring to Figure 2 The rotating mechanism 3 includes a rotating piece 31 and a mounting piece 32; the display mechanism 2 is detachably connected with the mounting piece 32; the mounting piece 32 is movably connected with the rotating piece 31. The rotating piece 31 can be a rotating disc, and the mounting piece 32 can be a mounting disc. The mounting disc can be provided with a pivoting groove, and the rotating disc is provided with an annular protrusion located in the pivoting groove. The mounting disc can rotate along the rotating disc, and the annular protrusion limits the pivoting groove, so that the rotating disc cannot be separated from the pivoting groove, thereby ensuring the stability of the mutual connection.

[0060] Specifically, the entire display mechanism 2 is installed by the mounting piece 32, so that the force of the entire display mechanism 2 is borne by the mounting piece 32, and the mounting piece 32 can rotate along the rotating piece 31, so that when the mounting piece 32 rotates, the entire display mechanism 2 is driven to rotate to switch the display surface of the display mechanism 2, and when the display mechanism 2 needs to be assembled or disassembled, the mounting piece 32 and the display mechanism 2 can be detachably connected, so that the display mechanism 2 and the mounting piece 32 can be separated or installed conveniently for separate transportation or storage.

[0061] The detachable connection between the display mechanism 2 and the mounting piece 32 can be bolted, such as providing a hole on the surface of the mounting piece 32, and the bottom of the display mechanism 2 is provided with a horizontal bend 214, and the horizontal bend 214 is also provided with a hole. After the bolt is inserted through the two holes, the nut is screwed, the display mechanism 2 can be installed on the mounting piece 32, and after the nut and the bolt are removed, the display mechanism 2 can be separated from the mounting piece 32.

[0062] Further, the horizontal bend 214 of the single display piece 21 is provided with at least two holes, and the position and number of the holes on the mounting piece 32 correspond to the position of the holes on the horizontal bend 214.

[0063] In some embodiments, referring to Figure 3 The rotating mechanism 3 is also provided with a driving piece 33, the driving piece 33 is located in the base 1, and the driving end is connected with the mounting piece 32. The driving piece 33 can be a driving motor, and the driving end of the driving motor is a driving shaft, which is connected with the bottom of the mounting piece 32. Therefore, when the driving motor provides driving force, it can drive the mounting piece 32 to rotate along the rotating piece 31, thereby driving the entire display mechanism 2 and the display or goods on the display mechanism 2 to rotate.

[0064] Specifically, the driving piece 33 can drive the mounting piece 32 to rotate along the rotating piece 31 by the driving end, without the need for manual rotation of the display mechanism 2, and the automatic rotation of the display mechanism 2 improves the convenience and flexibility of the display.

[0065] Further, referring to Figure 4 The mounting piece 32 is provided with a power supply piece 34 at one end connected with the display mechanism 2. The power supply piece 34 is located in the closed loop and extends to the top cover 22. When the display rack needs to display electronic equipment, the electronic equipment needs to be powered. Therefore, the power supply piece 34 is provided on the mounting piece 32, so that the electronic equipment can be connected with the power supply piece 34 for power supply. It can also provide power supply for some fill-in light or atmosphere light when displaying goods or exhibits. The fill-in light or atmosphere light can be hung in the hanging hole 213.

[0066] The power supply piece 34 can be connected with the top cover 22 in a detachable manner.

[0067] Further, the power supply part 34 comprises a power supply socket 341, a mounting pipe 342 and a hanging part 343; the mounting pipe 342 is mounted on the mounting part 32, and the bottom of the mounting pipe 342 extends into the base 1 through the mounting part 32, and the top of the mounting pipe 342 extends through the closed loop space and can be connected with the top cover 22, and the connection mode can be screwing, a threaded groove 332 is formed at the bottom of the top cover 22, and external threads are formed at the end of the mounting pipe 342 away from the base 1, so that the top cover 22 and the mounting pipe 342 are detachably connected by the external threads and the threaded groove 332, and the mounting pipe 342 is used to further stabilize the mounting position of the top cover 22, and when the weight of the hanging goods on the display part 21 close to the top cover 22 is too heavy, the mounting pipe 342 and the top cover 22 are used to stabilize the column display part 21, so as to reduce the situation that the overall display stand is overturned or inclined due to excessive load, and the goods fall or are damaged.

[0068] The hanging part 343 is provided with a plurality of hanging parts 343 arranged along the vertical direction of the mounting pipe 342, the hanging part 343 can be a hook, the hooks are sequentially hung along the vertical direction of the mounting pipe 342, and the positions are uniformly distributed, for example, when the display part 21 is provided with three, the mounting pipes 342 of the display part 21 in opposite directions are each provided with a hanging part 343, and the number of the hanging parts 343 in the vertical direction and the interval distance between adjacent hanging parts 343 are not limited here, and are determined according to the height of the display part 21 and the mounting pipe 342.

[0069] The power supply socket 341 is detachably connected with the mounting pipe 342 through any hanging part 343, and the power supply socket 341 is connected with a power line, the power line extends to the base 1 through the mounting pipe 342, and is connected with an external power supply, and a threading hole is formed in the mounting pipe 342 for the power line to extend through.

[0070] Two-hole jacks, three-hole jacks, USB jacks and the like can be formed in the power supply socket 341, and the number and arrangement mode of the jacks are not limited here, the power line connected with the power supply socket 341 extends to the base 1 through the mounting pipe 342, and a unified power distribution socket can be further arranged on the base 1, and the power distribution socket is provided with a connecting line and a plug and is connected with an external power supply.

[0071] The power supply socket 341 is provided with a plurality of power supply sockets 341, so that each display part 21 can be allocated to a power supply socket 341 for power distribution, when the number of the power supply sockets 341 is too large, the power lines will be messy, so the power lines are routed through the mounting pipe 342, so that the power lines can be uniformly routed and the power lines are prevented from being loosely and entangled with each other due to different positions.

[0072] Specifically, the power socket 341 can be hung at any height of the mounting pipe 342 by using a plurality of hanging pieces 343 to adapt to the length or position of the power line of the electronic device hung on the display piece 21, and the power line is extended into the base 1 by using the mounting pipe 342, and the base 1 uniformly connects the power line.

[0073] If the mounting pipe 342 interferes with the driving end of the driving piece 33, a clamping gear can be arranged on the outer surface of the mounting pipe 342, and a driving gear is arranged on the driving end, and the clamping gear and the driving gear are meshed with each other, so that the driving end is installed in a staggered manner with the mounting pipe 342. (not shown in the figure)

[0074] In some embodiments, a connection port 215 is arranged on the display piece 21, which is mainly used to extend the power line of the electronic device hung on the display piece 21 into the closed loop space and connect with the power socket 341.

[0075] One end of the connection port 215 is movably connected with a turnover piece 23, and the other end is provided with a buckle groove 216. The turnover piece 23 is movably connected with a buckle 231 near one end of the buckle groove 216. The turnover piece 23 is clamped with the buckle groove 216 through the buckle 231. The turnover piece 23 can adopt a turnover plate. The turnover plate is provided with a hanging hole 213 and a wire slot 233 at the same time. The wire slot 233 is in communication with the connection port 215 when the turnover plate closes the connection port 215, so as to facilitate the power line to extend out of the wire slot 233.

[0076] The turnover piece 23 and the connection port 215 are movably connected, and the turnover piece 23 and the turnover piece 23 are movably connected in a hinged manner. The turnover piece 23 and the connection port 215 are hinged by using a hinge frame, so that the turnover piece 23 can be turned along the hinge frame to open or close the connection port 215. The connection port 215 can avoid irrelevant personnel from randomly extending into the connection port 215 to pull out the power line. After the turnover piece 23 closes the connection port 215, the buckle 231 is hinged with the turnover piece 23, and the buckle 231 is turned to the buckle groove 216 and buckled into the buckle groove 216, so as to fix the turnover piece 23 and make the turnover piece 23 unable to rotate.

[0077] Specifically, the turnover piece 23 can open the connection port 215. After the connection port 215 is opened, the power line of the electronic device can be extended into the closed loop and connected with the power socket 341. When the turnover piece 23 closes the connection port 215, the turnover piece 23 is fixed by the buckle 231 and the buckle groove 216, and the power line extends into or out of the closed loop from the wire slot 233.

[0078] Further, the turning piece 23 is provided with a winding part 232 near the closed side of the turning piece 23. The winding part 232 can be a winding frame, which is an L-shaped winding frame. After the turning piece 23 is opened by the hinged frame to connect the opening 215, the excess power connection wire is wound on the winding part 232 to the appropriate position. Then, the plug of the power connection wire is inserted into the power socket 341. Finally, the turning piece 23 is turned to close the opening 215, and the power connection wire is extended from the wire slot 233.

[0079] Specifically, the winding part 232 can be used to wind the power connection wire of the electronic device, so as to avoid the power connection wire of the electronic device hanging in the closed loop due to being too long. When the number of power connection wires of the electronic devices is too large, the power connection wires may be entangled with each other.

[0080] In some embodiments, referring to Figure 6 As shown, the rotating mechanism 3 further includes an elastic member 35 and a sensing member 36. The sensing member 36 is installed on the rotating member 31 and is electrically connected with the driving member 33. The sensing member 36 can be a pressure sensor and a small controller. The pressure sensor can be connected with the small controller, which is used to adjust the pressure sensing threshold of the pressure sensor and control the opening and closing of the driving member 33 and the rotating speed.

[0081] One end of the elastic member 35 is installed on the end of the mounting member 32 away from the display mechanism 2, and the other end is connected with the sensing member 36. The elastic member 35 can be a rubber rope or a torsion bar spring. In this embodiment, the rubber rope is taken as an example.

[0082] The mounting member 32 can be provided with a connecting column at the bottom, and the connecting column is provided with an anti-falling ring at the bottom. The rubber rope is bound on the connecting column. The rotating member 31 can be provided with a mounting column, and the sensing member 36 is located on the mounting column. The other end of the rubber rope is bound on the sensing end of the sensing member 36. The sensing threshold of the sensing member 36 can be consistent with the rotating limit of the rubber rope, or can be less than the rotating limit of the rubber rope, so as to prolong the service life of the rubber rope.

[0083] In this embodiment, the mounting tube 342 can be used as the connecting column.

[0084] When the driving component 33 drives the mounting component 32 to rotate along the rotating component 31, the connecting column rotates synchronously, and the rubber rope continuously wraps around the connecting column. When the number of rotations of the mounting component 32 reaches the rotation limit of the rubber rope or the sensing threshold set by the sensing component 36, the sensing threshold of the sensing component 36 is triggered, causing the sensing component 36 to control the driving component 33 to rotate in the opposite direction. This causes the display mechanism 2 to rotate in the opposite direction along the rotating component 31 with the mounting component 32, and the rubber rope to loosen. This continues until the mounting component 32 rotates in the opposite direction to make the rubber rope wrap around the connecting column in the other direction. When the number of rotations of the mounting component 32 in the opposite direction reaches the rotation limit of the rubber rope or the sensing threshold set by the sensing component 36, the sensing threshold of the sensing component 36 is triggered again, causing the sensing component 36 to control the driving component 33 to rotate forward, and so on.

[0085] The main function of using the elastic element 35 and the sensing element 36 to make the drive element 33 rotate in both directions is that when the drive element 33 drives the mounting part 32 to rotate the display mechanism 2, it will drive the power cord on the power socket 341 to rotate synchronously. When the power cord rotates too many times, it will cause the power cord to be pulled and damage the power socket 341, or even cause the circuit of the electronic equipment exhibit or goods to be disconnected and short-circuited. Therefore, the elastic element 35 and the sensing element 36 are used to drive the drive element 33 to switch the mounting part 32 in both directions within a certain number of rotations to avoid the power cord being damaged due to excessive rotation.

[0086] Further reference Figure 7 and Figure 8 As shown, the mounting component 32 has an inner groove at one end near the base 1, and the inner wall of the inner groove has a first linkage part 321; the driving end of the driving component 33 has a second linkage part 331, the first linkage part 321 and the second linkage part 331 are connected to each other, and the diameter of the first linkage part 321 is larger than that of the second linkage part 331.

[0087] The second linkage 331 is used to transmit the driving force provided by the drive member 33 to the first linkage 321, so that the first linkage 321 drives the mounting member 32 to rotate. The first linkage 321 can be an internal gear ring, and the second linkage 331 can be a gear. The internal gear ring meshes with the gear, and the inner diameter of the internal gear ring is larger than the outer diameter of the gear. For example, the ratio of the inner diameter of the internal gear ring to the outer diameter of the gear is 3:1. This allows the drive member 33 to drive the gear to rotate a certain number of times before the internal gear ring is driven to rotate one revolution. This method can be used to change the rotation speed of the internal gear ring and the gear to achieve speed regulation, so that the mounting member 32 can rotate slowly when driving the display mechanism 2 to provide sufficient display time.

[0088] Furthermore, refer to Figure 9 and Figure 10As shown, the second linkage part 331 and the driving end are provided with a fastener 38 and a rolling element 39; the rolling element 39 is movably connected with the fastener 38, and the fastener 38 penetrates the second linkage part 331 and is connected with the driving end, while the rolling element 39 abuts against the second linkage part 331.

[0089] The fastener 38 can be a bolt, and the bolt is a bolt with a part of external threads at one end; the driving end is provided with a threaded groove 332, and the bolt with the part of external threads can be screwed into the threaded groove 332; the rolling element 39 can be a plurality of balls, which are embedded at the bottom of the bolt and can roll along the bolt; the second linkage part 331 is not directly connected with the driving end, and after the bolt penetrates the second linkage part 331, the second linkage part 331 is connected with the position of the bolt where no external threads are provided, while the balls abut against the top surface of the second linkage part 331, so that the second linkage part 331 is clamped between the driving end and the balls by the bolt.

[0090] Specifically, after the fastener 38 penetrates the second linkage part 331 and is screwed into the driving end, the second linkage part 331 abuts against the rolling element 39, and with the fastening degree of the fastener 38, the second linkage part 331 is clamped between the driving end and the rolling element 39; when the driving end drives the second linkage part 331 to rotate, due to the clamping effect of the fastener 38, the driving end drives the second linkage part 331 to rotate, and the second linkage part 331 drives the first linkage part 321 to rotate, so as to drive the mounting part 32 and the display mechanism 2 to rotate.

[0091] During the display process, some viewers such as customers and children may want to watch the display surfaces at other positions of the display stand more quickly, and may hold the display mechanism 2 with their hands and push the display mechanism 2 clockwise or counterclockwise, so as to accelerate the rotation of the display mechanism 2, which may cause the display mechanism 2 to be unbalanced under force and the display stand to be overturned, and the behavior is relatively dangerous.

[0092] Therefore, when the display mechanism 2 is subjected to external pushing and pulling forces and the like, the mounting part 32 and the first linkage part 321 will be affected by the external force and rotate away from the driving effect of the second linkage part 331; if the engagement state of the second linkage part 331 and the first linkage part 321 is too stable, the external force will be transmitted to the entire display stand, causing the display stand to be overturned under the influence of the external force. Therefore, when the external force is greater than the clamping force of the fastener 38 and the driving end, the rolling element 39 reduces the friction between the second linkage part 331 and the fastener 38, and the second linkage part 331 is affected by the external force and will be separated from the clamping effect of the fastener 38, so that the second linkage part 331 rotates along the driving end by itself, thereby preventing the external force from being transmitted to the driving end, so as to stabilize the entire display stand.

[0093] Wherein, when the fastener 38 is a bolt, the depth of the fastener 38 screwed into the threaded groove 332 adjusts the force of the fastener 38 clamping the second linkage part 331 of the driving end, and at the same time, the clamping force needs to meet the requirement of ensuring the second linkage part 331 to drive the first linkage part 321 to rotate, avoiding the situation that the clamping force is insufficient, the first linkage part 321 is difficult to drive, the second linkage part 331 is stuck on the first linkage part 321, and the driving end self-rotates.

[0094] Wherein, as shown in Figure 9 The surface of the second linkage part 331 is also provided with annular anti-skid lines, and the rolling member 39 is in contact with the anti-skid lines. The anti-skid lines can increase the friction between the rolling member 39 and the second linkage part 331, so that when the fastener 38 is pressed against the second linkage part 331, the stability of the second linkage part 331 is ensured, the situation of the driving end self-rotating is further avoided, the second linkage part 331 is prevented from slipping, and the power transmission process is more stable.

[0095] In some embodiments, as shown in Figure 11 The rotating mechanism 3 is also provided with a locking member 37. The locking member 37 is connected with the base 1. The locking member 37 can be a fixed bolt. The mounting member 32 of the rotating mechanism 3 is provided with a insertion hole. At least one threaded hole 11 is arranged on the surface of the base 1. The number of the threaded holes 11 can be determined according to the number of the display members 21. For example, if the display members 21 are provided with three, the number of the threaded holes 11 is also three. When the insertion hole on the mounting member 32 is rotated to the threaded hole 11, the fixed bolt is inserted into the insertion hole and penetrates the insertion hole and is screwed with the threaded hole 11, so that the position of the mounting member 32 is fixed by the fixed bolt, and the mounting member 32 cannot continue to rotate.

[0096] Wherein, the insertion hole can also be provided with an internal thread, so as to facilitate the placement of the fixed bolt, avoiding the situation that after the fixed bolt is inserted into the insertion hole, the fixed bolt is in contact with the base 1 during the rotating process, causing scratches on the base 1.

[0097] The embodiments of the specific implementation are the preferred embodiments of the present application, and are not limited to the protection scope of the present application. The same parts are indicated by the same reference numerals. Therefore, equivalent changes made according to the structure, shape, principle of the present application should be covered by the protection scope of the present application.

Claims

1. A multi-faceted rotary display stand comprising a base (1), a display mechanism (2) and a rotating mechanism (3); the rotating mechanism (3) is installed on the top of the base (1); the display mechanism (2) is movably connected with the rotating mechanism (3), characterized in that, Wherein, The display mechanism (2) comprises a plurality of display pieces (21) and a top cover (22); the first and second bends are respectively arranged on both sides of the display piece (21), the first bend of the display piece (21) is connected with the second bend of the adjacent display piece (21), and after all the adjacent display pieces (21) are connected with each other, a closed loop is formed; the top cover (22) is consistent with the pattern of the closed loop formed by the display pieces (21), the top cover (22) is provided with a vertical folding edge (221), all the display pieces (21) are wrapped at the top by the vertical folding edge (221), and the top cover (22) is connected with all the display pieces (21); a plurality of hanging holes (213) are formed in the display piece (21); the rotating mechanism (3) comprises a rotating piece (31), a mounting piece (32) and a driving piece (33); the display mechanism (2) is detachably connected with the mounting piece (32); the mounting piece (32) is movably connected with the rotating piece (31); the driving piece (33) is located in the base (1), and the driving end is connected with the mounting piece (32); the mounting piece (32) is provided with an electrified piece (34) at the connected end of the display mechanism (2); the electrified piece (34) is located in the closed loop and extends to the top cover (22); the rotating mechanism (3) further comprises an elastic piece (35) and a sensing piece (36); the sensing piece (36) is mounted on the rotating piece (31) and is electrically connected with the driving piece (33); the mounting piece (32) is provided with a connecting column at the bottom, the connecting column is provided with an anti-falling ring at the bottom, one end of the elastic piece (35) is bound to the connecting column, and the other end is connected with the sensing piece (36); the sensing piece (36) is provided with a sensing threshold; when the driving piece (33) drives the mounting piece (32) to rotate along the rotating piece (31), the connecting column rotates synchronously, the elastic piece (35) is continuously wound on the connecting column, and when the number of rotations of the mounting piece (32) reaches the rotation limit of the elastic piece (35) or the sensing threshold set by the sensing piece (36), the sensing piece (36) controls the driving piece (33) to reversely rotate in the other direction.

2. A multi-faceted rotating display stand according to claim 1, wherein, The electrified piece (34) comprises an electrified socket (341), a mounting pipe (342) and a hanging piece (343); the mounting pipe (342) is mounted on the mounting piece (32), and the mounting pipe (342) extends into the base (1) through the mounting piece (32); a plurality of hanging pieces (343) are arranged along the vertical direction of the mounting pipe (342); the electrified socket (341) is detachably connected with the mounting pipe (342) through any hanging piece (343), and the electrified socket (341) is connected with a power line, the power line extends into the base (1) through the mounting pipe (342) and is connected with an external power supply.

3. A multi-faceted rotating display stand according to claim 1, wherein, The display piece (21) is provided with a connecting port (215); one end of the connecting port (215) is movably connected with a turnover piece (23), and the other end is provided with a buckling groove (216); the turnover piece (23) is movably connected with a buckle (231) near one end of the buckling groove (216), and the turnover piece (23) is clamped with the buckling groove (216) through the buckle (231); the turnover piece (23) is provided with a wiring groove (233).

4. A multi-faceted rotating display according to claim 3, wherein, The turnover piece (23) is further provided with a winding part (232) near one side of the closed loop of the turnover piece (23).

5. The multi-faceted rotating display of claim 1, wherein, The mounting piece (32) is provided with an inner groove near one end of the base (1), and the inner wall of the inner groove is provided with a first linkage part (321); the driving end of the driving piece (33) is provided with a second linkage part (331), the first linkage part (321) and the second linkage part (331) are connected with each other, and the inner diameter of the first linkage part (321) is greater than the outer diameter of the second linkage part (331).

6. A multi-faced rotating display stand according to claim 1, wherein, The rotating mechanism (3) is further provided with a locking piece (37); the locking piece (37) is connected with the base (1).

Citation Information

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