A smart art hanging device for art design
By improving the suspension and load-bearing structures, the problems of inconvenient fixing and cumbersome disassembly of existing suspension devices have been solved, enabling convenient height adjustment and stable suspension of artworks, avoiding deformation and automatic slippage, and improving ease of use and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 闽南科技学院
- Filing Date
- 2026-02-27
- Publication Date
- 2026-05-26
AI Technical Summary
Existing suspension devices, which lock artworks with bolts, are inconvenient to fix, cumbersome to disassemble, and prone to deformation. They are also difficult to adapt to other devices, resulting in inconvenience and poor performance.
After the suspension structure was improved, the balance bar can be manually adjusted up and down by means of two sets of adjusting parts that pass through the slide rails of the support column and are fixed to the locking slots at both ends of the balance bar. Furthermore, the height of the suspension body can be adjusted manually by means of the locking slot at the lower end of the welding plate of the suspension hand, which improves the convenience of adjusting the height of the artwork. In addition, the force-bearing structure at the lower end of the welding plate of the suspension body allows the artwork to be directly embedded in the suspension, replacing the original insertion bolt locking process. This avoids the deformation of the artwork caused by continuous pressure on the suspension position, thus effectively improving the actual use effect of the suspension device.
It enables convenient height adjustment of artworks, avoids deformation due to pressure on the hanging position, improves the usability and ease of disassembly of the suspension device, and ensures stable suspension.
Smart Images

Figure CN122074783A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of art hanging technology, and more specifically to an intelligent art hanging device for art design. Background Technology
[0002] Artworks designed with artistic intent are complex entities that integrate artistic intention, manufacturing process, function, and aesthetics. They are presented in the form of physical objects and visual systems. When displaying them as physical objects, they can be positioned and suspended in the space using specialized hanging devices. This ensures absolute safety and allows the artworks to be integrated into the space in the most appropriate and effective way, enabling viewers to appreciate them from the best angle and distance. The use of hanging devices effectively improves the safe positioning of the artworks and the stability of viewing them from the appropriate angle. In summary, the inventors have found that existing suspension devices have the following main drawbacks: When the current suspension device positions the artwork using a simple hanging rod, the artwork still needs to be locked at the connection point with multiple bolts after being embedded in the device. This results in inconvenience during suspension and cumbersome disassembly. At the same time, the tightening of the bolts can cause the artwork to be deformed by the force of the suspension position, making it difficult to adapt to other devices. Therefore, it reduces the actual convenience and effectiveness of the current suspension device. Summary of the Invention
[0003] The technical solution adopted by the present invention to achieve the technical objective is: an intelligent art hanging device for art design, the structure of which includes: a parallel plate, a partition screen, a support column, a slide rail, and a hanging structure. The partition screen on the upper edge of the parallel plate is spaced to the support column. The support column determines the position of the hanging structure through the slide rail. The hanging structure is set above the parallel plate through the slide rail of the support column.
[0004] As a further improvement of the present invention, the suspension structure is provided with an adjusting member, one end of which is connected to a locking groove and fixedly connected to a slider, and one end of the slider is connected to a balance bar, with the suspension body connected in the balance bar.
[0005] As a further improvement of the present invention, the suspension body is also provided with a positioning block, a locking bolt is connected to the center of the positioning block, a locking sleeve is mounted below the locking bolt, a welding plate is connected to the lower end of the locking sleeve, a calibration block is connected to the edge of the surface of the welding plate, and a force-bearing structure is connected to the lower end of the welding plate.
[0006] As a further improvement of the present invention, the height of the suspension structure is adjusted by the slide rail of the support column, and the adjustment component of the Xuang structure passes through the surface of the support column and is fixed to the slider. At the same time, it drives the suspension body of the balance bar to adjust up and down. Then, the welding plate of the suspension body is precisely connected to the lower end of the positioning block in conjunction with the upper calibration block. Then, the force-bearing structure at the lower end of the welding plate allows the artwork to be directly fitted into the suspension position.
[0007] As a further improvement of the present invention, the lower layer of the parallel plate is provided with an anti-slip pad, the partition screen is an LED display screen and is internally connected with multiple light tubes that are changed in color by a light controller provided on the side, and two support columns are provided symmetrically on the upper layer of the parallel plate, the slide rails of the support columns are set in a vertical direction and limit the two ends of the suspension structure.
[0008] As a further improvement of the present invention, the center point of the locking groove of the adjusting member and the slider coincides with each other, and the adjusting member passes through the slide rail of the support column. The slider is provided at each of the left and right ends of the balance bar, and the suspension body of the balance bar is set in a vertical position.
[0009] As a further improvement of the present invention, the center of the positioning block and the locking bolt intersect each other, the locking sleeve is perpendicular to the center of the welding plate surface and is connected to the locking bolt by a center thread through the calibration block, and the force structure at the lower end of the welding plate is set in a vertical orientation so that the hanging position of the artwork is fitted in.
[0010] As a further improvement of the present invention, the force-bearing structure is provided with a connecting block, and a solid rod is connected to the lower end of the connecting block. The lower end of the solid rod is fixedly connected to the friction plate through a contact layer, and a rotating rod is also connected to the contact layer of the friction plate.
[0011] As a further improvement of the present invention, the connecting block is perpendicular to the upper end of the solid rod, the solid rod is fixed vertically to the upper edge of the friction plate, and three rotating rods are provided on the friction plate, with an assembly gap between the rotating rods.
[0012] As a further improvement of the present invention, the rotating rod is also provided with a lever block, the lower end of the lever block is connected to a blocking rod and an auxiliary groove is provided at the connection position, the lower side of the blocking rod is connected to a locking block and a rotating rod is provided at the edge.
[0013] As a further improvement of the present invention, the lower end of the prying block is on the same vertical line as the blocking rod and forms an "L" shape with the locking block, and the center of the locking block rotates in the friction plate through the rotating rod.
[0014] As a further improvement of the present invention, the adjusting member is provided with a splicing rod, one end of which is connected to an adjusting block, and the side of the adjusting block is equipped with a restraining structure.
[0015] As a further improvement of the present invention, one end of the splicing rod is welded to the adjusting block, the restraining structure on the side of the adjusting block is set in a lateral protrusion manner, and the splicing rod of the adjusting block is threadedly fixed to the slide rail of the support column and the locking groove of the slider.
[0016] As a further improvement of the present invention, the restraining structure is also provided with a protrusion, a connecting block is provided at one end of the protrusion, a push-pull block is mounted at the center of the surface of the connecting block, a push rod provided at one end of the push-pull block passes through the center of the connecting block, and a magnetic suction plate is connected to one end of the push rod.
[0017] As a further improvement of the present invention, the protrusion is in the form of solid metal and is fixed to the center of the side of the connecting block. The push-pull block and the push rod of the connecting block form a "T" shape, which passes through the center of the connecting block and pushes the magnetic suction plate for push-pull control.
[0018] Compared with the prior art, the present invention has the following beneficial effects: 1. This invention improves the suspension structure by using two sets of adjusting components to fix the balance bar at both ends through the slide rails of the support column. This allows for direct manual adjustment of the height of the suspension body by manually driving the balance bar, thus improving the convenience of adjusting the height of the artwork. Furthermore, the lower force-bearing structure of the welded plate of the suspension body allows the artwork to be directly embedded in the suspension, replacing the original bolt locking process. This avoids deformation of the artwork caused by continuous pressure on the suspension position, thereby effectively improving the actual use effect of the suspension device.
[0019] 2. With the improved force-bearing structure, the connecting block at the upper end of the solid rod can effectively complete the welding with the positioning block. At the same time, the bottom friction plate and rotating rod can stably embed the artwork. Combined with the blocking rod of the rotating rod, the hanging end of the artwork can be effectively restrained to achieve a stable hanging effect. Then, the angle of the rotating rod of the locking block can be adjusted on the friction plate by using the prying block to drive the rotating rod of the locking block. Therefore, it is convenient to disassemble the artwork and improve the convenience of hanging and disassembling the artwork.
[0020] 3. With the improvement of the adjustment component, the splicing rod of the adjustment block can effectively connect with the slider through the slide rail of the support column. Then, the manual adjustment of the adjustment block can facilitate the vertical adjustment of the suspended body. After adjustment, the restraining structure on the side of the adjustment block can control the push-pull block in the center of the connecting block to make the magnetic plate adhere to the support column, thus achieving suspension positioning. This avoids automatic sliding due to the weight of the artwork and ensures a stable suspension effect at a specific height. Attached Figure Description
[0021] Figure 1 This is a structural diagram of a smart art hanging device for art design.
[0022] Figure 2 This is a three-dimensional structural diagram of an improved suspension structure.
[0023] Figure 3 This is a schematic diagram of a three-dimensional structure of an improved suspension body.
[0024] Figure 4 This is a three-dimensional structural diagram of an improved load-bearing structure.
[0025] Figure 5 This is a three-dimensional structural diagram of an improved rotating rod.
[0026] Figure 6 This is a three-dimensional structural diagram of an improved adjustment component.
[0027] Figure 7 This is a three-dimensional structural diagram of an improved restraint structure.
[0028] In the diagram: Parallel plate-1, partition screen-2, support column-3, slide rail-4, suspension structure-5; Adjustment component-51, locking groove-52, slider-53, balance bar-54, suspension body-55; Positioning block-551, locking bolt-552, locking sleeve-553, welding plate-554, calibration block-555, load-bearing structure-556; Connecting block-5561, solid rod-5562, contact layer-5563, friction plate-5564, rotating rod-5565; Prying block-5651, auxiliary groove-5652, blocking rod-5653, locking block-5654, rotating rod-5655; Splicing rod-511, adjusting block-512, restraining structure-513; 5131, 5132, 5133, 5134, 5135. Detailed Implementation
[0029] The present invention will be further described below with reference to the accompanying drawings: Example 1: Figures 1 to 5 As shown: This invention provides an intelligent art hanging device for art design. Its structure includes: a parallel plate 1, a partition screen 2, a support column 3, a slide rail 4, and a suspension structure 5. The partition screen 2 on the upper edge of the parallel plate 1 is spaced to the support column 3. The support column 3 determines the position of the suspension structure 5 through the slide rail 4. The suspension structure 5 is set above the parallel plate 1 through the slide rail 4 of the support column 3.
[0030] The suspension structure 5 is provided with an adjusting member 51. One end of the adjusting member 51 is connected to the locking groove 52 and fixedly connected to the slider 53. One end of the slider 53 is connected to a balance bar 54, and the suspension body 55 is connected to the balance bar 54.
[0031] The suspension body 55 is also provided with a positioning block 551. A locking bolt 552 is connected to the center of the positioning block 551. A locking sleeve 553 is mounted below the locking bolt 552. A welding plate 554 is connected to the lower end of the locking sleeve 553. A calibration block 555 is connected to the edge of the surface of the welding plate 554. A force-bearing structure 556 is connected to the lower end of the welding plate 554.
[0032] In this process, the height of the suspension structure 5 is adjusted by the slide rail 4 of the support column 3. The adjustment component 51 of the suspension structure 5 passes through the surface of the support column 3 and is fixed to the slider 53. At the same time, it drives the suspension body 55 of the balance bar 54 to adjust up and down. Then, the welding plate 554 of the suspension body 55 is precisely connected to the lower end of the positioning block 551 in conjunction with the upper calibration block 555. Then, the force-bearing structure 556 at the lower end of the welding plate 554 allows the artwork to be directly inserted into the suspension position.
[0033] The lower layer of the parallel plate 1 is provided with an anti-slip pad, the partition screen 2 is an LED display screen and is internally connected with multiple light tubes that are changed in color by a light controller set on the side, and two support columns 3 are set in a symmetrical position on the upper layer of the parallel plate 1. The slide rail 4 of the support column 3 is set in a vertical position and limits the two ends of the suspension structure 5.
[0034] The center points of the locking groove 52 of the adjusting member 51 and the slider 53 coincide, and the adjusting member 51 passes through the slide rail 4 of the support column 3. The slider 53 is provided at both ends of the balance bar 54, and the suspension body 55 of the balance bar 54 is set in a vertical position.
[0035] The center of the positioning block 551 intersects with the locking bolt 552. The locking sleeve 553 is perpendicular to the center of the surface of the welding plate 554 and is connected to the locking bolt 552 by a center thread through the calibration block 555. The force-bearing structure 556 at the lower end of the welding plate 554 is set in a vertical orientation and is fitted into the hanging position of the artwork.
[0036] The force-bearing structure 556 is provided with a connecting block 5561. A solid rod 5562 is connected to the lower end of the connecting block 5561. The lower end of the solid rod 5562 is fixedly connected to the friction plate 5564 through a contact layer 5563. A rotating rod 5565 is also connected to the contact layer 5563 of the friction plate 5564.
[0037] The connecting block 5561 is perpendicular to the upper end of the solid rod 5562. The solid rod 5562 is fixed vertically to the upper edge of the friction plate 5564. Three rotating rods 5565 are provided on the friction plate 5564, and there is an assembly gap between the rotating rods 5565.
[0038] The rotating rod 5565 is also provided with a lever 5651. The lower end of the lever 5651 is connected to a blocking rod 5653 and an auxiliary groove 5652 is provided at the connection position. The lower side of the blocking rod 5653 is connected to a locking block 5654 and a rotating rod 5655 is provided at the edge.
[0039] The lower end of the prying block 5651 is on the same vertical line as the blocking rod 5653 and forms an "L" shape with the locking block 5654. The center of the locking block 5654 rotates in the friction plate 5564 through the rotating rod 5655.
[0040] The specific functions and operation procedures of this embodiment are as follows: In this invention, the intelligent artwork hanging device for art design can determine the position of the partition screen 2 using the parallel plate 1, and then determine the position of the hanging structure 5 using the support column 3 and the slide rail 4. After the hanging structure 5 positions the intelligent artwork, it can be displayed through the partition screen 2 and the wall. Simultaneously, the partition screen 2 can change colors using LED light strips, enhancing the aesthetics of the hanging artwork. Furthermore, the balance bar 54 of the hanging structure 5 can be embedded into the slide rail 4 via the sliders 53 at both ends, and then fixed to the external adjustment component 51 using the locking groove 52. This is achieved through the manual adjustment of the adjustment component 51. The adjustment mechanism allows the balance bar 54 to be adjusted up and down, setting the height of the suspension body 55. This ensures the artwork can be suspended at a suitable height for viewing. When connecting the artwork to the suspension body 55, it can be directly fitted into the load-bearing structure 556, replacing the original process of embedding and locking with multiple bolts. This avoids deformation caused by continuous stress on the suspension end, improving the practicality of the suspension device and the protection of the artwork. Then, the welding plate 554 at the upper end of the load-bearing structure 556 can be embedded into the lower position of the positioning block 551 via the calibration block 555. The locking bolt 552 is passed through and embedded into the locking sleeve 553, completing the fixed connection and ensuring a firm connection with the balance bar 54. Then, the solid rod 5562 of the load-bearing structure 556 is spliced to the lower end of the welding plate 554 via the upper connecting block 5561. The lower end of the solid rod 5562 then connects to the friction plate 5564 via the contact layer 5563, allowing the friction plate 5564 to be set in a parallel orientation. Finally, the rotating rod 5565 on the edge allows the hanging end of the artwork to be fitted in, thus achieving the desired effect through rotation. The blocking rod 5653 of rod 5565 provides stable suspension of the artwork, replacing the original bolt locking. Subsequently, the blocking rod 5653 of rotating rod 5565, in conjunction with the auxiliary groove 5652 and the lever 5651, allows for manual control of the locking block 5654 and the rotating rod 5655, achieving a convenient operation effect. The angle of the blocking rod 5653 at the edge of the friction plate 5564 can be adjusted, allowing the suspended end of the artwork inside to be removed parallel, thus achieving a convenient disassembly effect and effectively improving the actual use effect of the suspension device.
[0041] Example 2: Figures 6 to 7 As shown: This invention provides an intelligent art hanging device for art design. Its structure includes an adjustment member 51 with a splicing rod 511, one end of which is connected to an adjustment block 512, and a restraining structure 513 is mounted on the side of the adjustment block 512.
[0042] The splicing rod 511 is welded to the adjusting block 512 at one end. The restraining structure 513 on the side of the adjusting block 512 is set in a horizontal protrusion manner. The splicing rod 511 of the adjusting block 512 passes through the slide rail 4 of the support column 3 and is threadedly fixed to the locking groove 52 of the slider 53.
[0043] The restraining structure 513 is further provided with a protrusion 5131. A connecting block 5132 is provided at one end of the protrusion 5131. A push-pull block 5133 is mounted at the center of the surface of the connecting block 5132. A push rod 5134 provided at one end of the push-pull block 5133 passes through the center of the connecting block 5132. A magnetic suction plate 5135 is connected to one end of the push rod 5134.
[0044] The protrusion 5131 is a solid metal and is fixed to the side center of the connecting block 5132. The push-pull block 5133 and the push rod 5134 of the connecting block 5132 form a "T" shape, which passes through the center of the connecting block 5132 and pushes the magnetic suction plate 5135 for push-pull control.
[0045] The specific functions and operation procedures of this embodiment are as follows: In this invention, after the splicing rod 511 of one end of the adjusting block 512 of the adjusting member 51 passes through the slide rail 4 of the support column 3, the splicing rod 511 is combined with the locking groove 52 to complete the splicing with the slider 53. Then, the adjusting block 512 is fixed to the support column 3 by the side restraint structure 513, ensuring that the balance bar 54 can be suspended and fixed in a stable state, preventing automatic slippage caused by the weight of the artwork, and improving the stability of the artwork when suspended. Then, the connecting block 5132 of the restraint structure 513 can be fixed with the side center of the adjusting block 512 by the cooperation of the side protrusion 5131, so that it can slide up and down with the adjusting block 512 by the cooperation of the connecting block 5132. After moving to the appropriate position, the push-pull block 5133 drives the push rod 5134 to push the magnetic plate 5135 towards the support column 3, so that the magnetic plate 5135 can be attracted to the inside of the slide rail 4 of the support column 3. This attraction and fixation can achieve a stable positioning effect, preventing automatic slippage caused by the weight and unstable suspension, and further improving the strength of the suspension device.
[0046] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solutions described in this invention, or by designing similar technical solutions by those skilled in the art under the inspiration of the technical solutions described in this invention, falls within the protection scope of this invention.
Claims
1. A smart art hanging device for art design, comprising the following structure: Parallel plate (1), partition screen (2), support column (3), slide rail (4), and suspension structure (5). The partition screen (2) on the upper edge of the parallel plate (1) is spaced to the support column (3). The support column (3) determines the position of the suspension structure (5) through the slide rail (4). The suspension structure (5) is set above the parallel plate (1) through the slide rail (4) of the support column (3). Its characteristic is that: The suspension structure (5) is provided with an adjustment component (51). One end of the adjustment component (51) is connected to the locking groove (52) and fixedly connected to the slider (53). One end of the slider (53) is connected to a balance bar (54), and the suspension body (55) is connected in the balance bar (54). The suspension body (55) is also provided with a positioning block (551), a locking bolt (552) is connected to the center of the positioning block (551), a locking sleeve (553) is mounted below the locking bolt (552), a welding plate (554) is connected to the lower end of the locking sleeve (553), and a calibration block (555) is connected to the edge of the surface of the welding plate (554). A force-bearing structure (556) is connected to the lower end of the welding plate (554). The height of the suspension structure (5) is adjusted by the slide rail (4) of the support column (3). The adjustment part (51) of the Xuang structure (5) passes through the surface of the support column (3) and is fixed to the slider (53). At the same time, the suspension body (55) of the balance bar (54) is adjusted up and down. Then, the welding plate (554) of the suspension body (55) is precisely connected to the lower end of the positioning block (551) in conjunction with the upper calibration block (555). Then, the force structure (556) at the lower end of the welding plate (554) allows the artwork to be directly inserted into the suspension position.
2. The intelligent art hanging device for art design according to claim 1, characterized in that: The lower layer of the parallel plate (1) is provided with an anti-slip pad. The partition screen (2) is an LED display screen and is connected to multiple light tubes. The light controller set on the side changes the color display. The support column (3) is provided with two symmetrically arranged on the upper layer of the parallel plate (1). The slide rail (4) of the support column (3) is set in a vertical position and limits the two ends of the suspension structure (5).
3. The intelligent artwork hanging device for art design according to claim 1, characterized in that: The center point of the locking groove (52) of the adjusting member (51) and the slider (53) coincides with each other, and the adjusting member (51) passes through the slide rail (4) of the support (3). The slider (53) is provided at both ends of the balance bar (54), and the suspension body (55) of the balance bar (54) is set in a vertical position.
4. The intelligent artwork hanging device for art design according to claim 1, characterized in that: The center of the positioning block (551) intersects with the locking bolt (552), the locking sleeve (553) is perpendicular to the center of the surface of the welding plate (554) and is connected to the locking bolt (552) by a center thread through the calibration block (555), and the force-bearing structure (556) at the lower end of the welding plate (554) is set in a vertical orientation and fitted into the hanging position of the artwork.
5. The intelligent art hanging device for art design according to claim 1, characterized in that: The force-bearing structure (556) is provided with a connecting block (5561), and a solid rod (5562) is connected to the lower end of the connecting block (5561). The lower end of the solid rod (5562) is fixedly connected to the friction plate (5564) through a contact layer (5563). A rotating rod (5565) is also connected to the contact layer (5563) of the friction plate (5564). The connecting block (5561) is perpendicular to the upper end of the solid rod (5562). The solid rod (5562) is fixed vertically to the upper edge of the friction plate (5564). Three rotating rods (5565) are provided on the friction plate (5564), and there is an assembly gap between the rotating rods (5565).
6. The intelligent art hanging device for art design according to claim 5, characterized in that: The rotating rod (5565) is also provided with a lever (5651). The lower end of the lever (5651) is connected to a blocking rod (5653) and an auxiliary groove (5652) is provided at the connection position. The lower side of the blocking rod (5653) is connected to a locking block (5654) and a rotating rod (5655) is provided at the edge. The lower end of the prying block (5651) is on the same vertical line as the blocking rod (5653) and forms an "L" shape with the locking block (5654). The center of the locking block (5654) rotates in the friction plate (5564) through the rotating rod (5655).
7. The intelligent art hanging device for art design according to claim 1, characterized in that: The adjusting component (51) is provided with a splicing rod (511), one end of which is connected to an adjusting block (512), and the adjusting block (512) is equipped with a restraining structure (513) on its side. One end of the splicing rod (511) is welded to the adjusting block (512). The restraining structure (513) on the side of the adjusting block (512) is set in a horizontal protrusion manner. The splicing rod (511) of the adjusting block (512) passes through the slide rail (4) of the support column (3) and is threadedly fixed to the locking groove (52) of the slider (53).
8. The intelligent art hanging device for art design according to claim 7, characterized in that: The restraining structure (513) is also provided with a protrusion (5131), a connecting block (5132) is provided at one end of the protrusion (5131), a push-pull block (5133) is mounted at the center of the surface of the connecting block (5132), a push rod (5134) is provided at one end of the push-pull block (5133) and passes through the center of the connecting block (5132), and a magnetic suction plate (5135) is connected at one end of the push rod (5134). The protrusion (5131) is a solid metal and is fixed to the side center of the connecting block (5132). The push-pull block (5133) and push rod (5134) of the connecting block (5132) form a "T" shape, which passes through the center of the connecting block (5132) and pushes the magnetic suction plate (5135) for push-pull control.