Eco-friendly prefabricated display stand
Patent Information
- Application Number
- KR1020260049987
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2026-03-19
- Publication Date
- 2026-08-14
- Estimated Expiration
- 2046-03-19
Smart Images

Figure 112026033818465-PAT00002_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to an eco-friendly modular monitor stand, and more specifically, to an eco-friendly modular monitor stand developed to be manufactured from an eco-friendly paper honeycomb board and manufactured in a simple modular form, allowing for easy assembly and installation in exhibition halls or event venues, and enabling the display of monitors in a stand-type manner. Background Technology
[0003] In general, various exhibition structures such as exhibition booths, backdrop walls, information boards, promotional panels, and display stands are used in exhibition halls, trade fairs, promotional halls, event venues, and various experience spaces to effectively provide products, services, or promotional content to visitors.
[0005] In particular, there has recently been an increasing demand for eco-friendly exhibition structures that are easy to install and dismantle, highly transportable, and cost-effective, while also reducing the environmental burden during disposal. Accordingly, exhibition structures implemented in a modular fashion by cutting and folding panels made of paper, corrugated cardboard, or honeycomb board are being widely utilized.
[0007] Meanwhile, conventional paper exhibition structures were often used primarily as panels for attaching printed graphics, promotional signboards, or simple booth walls, and had the problem of being insufficient as structures for stably mounting electronic devices, particularly monitors which are relatively heavy and thick.
[0009] In exhibition halls and event venues, it is necessary to install monitors at the front of booths or on freestanding stands to enhance the delivery of video content. However, using metal frames or commercially available monitor stands results in a heavy structure, makes transportation and installation inconvenient, increases production costs, and fails to meet the objective of an eco-friendly exhibition structure. Conversely, constructing a system to directly support monitors using only paper panels can lead to issues such as insufficient structural strength, reduced assembly precision, and the possibility of deformation during prolonged display. Therefore, there is a need for a mounting structure that can stably display monitors while utilizing paper-based panels. Prior art literature
[0011] 1) Republic of Korea Registered Patent No. 10-1613645 (Registration Date: April 12, 2016), Title of Invention: "Prefabricated Exhibition Structure" 2) Republic of Korea Registered Patent No. 10-1829744 (Registration Date: February 9, 2018), Title of Invention: "Vertical Support for Prefabricated Exhibition Booth" 3) Republic of Korea Registered Patent No. 10-2896029 (Registration Date: December 1, 2025), Title of Invention: "Prefabricated Eco-friendly Paper Booth" 4) Republic of Korea Registered Patent No. 10-2255026 (Registration Date: May 17, 2021), Title of Invention: "Eco-friendly Paper Booth" The problem to be solved
[0012] The present invention is proposed to improve upon the aforementioned problems, and its purpose is to provide an eco-friendly modular monitor stand manufactured from eco-friendly paper material used in exhibition halls or event venues, having a structure that allows for easy assembly and disassembly, excellent transportability, and stable mounting of a monitor.
[0014] In addition, the present invention provides an eco-friendly modular monitor stand that improves safety during display by preventing the monitor from moving forward and backward, and maintains a neat appearance on the front of the stand by utilizing a semi-perforated fitting groove. means of solving the problem
[0016] The above-mentioned purpose is to provide an eco-friendly modular monitor stand installed in an exhibition hall or event hall, which is installed by cutting and folding a board made of paper, corrugated cardboard, or honeycomb board material, comprising: a base plate (110) having a monitor exposure hole (140) formed in the front, folded plate sections (120) formed on both sides of the base plate (110), and a V-cutting section (130) formed in the boundary area between the base plate (110) and the folded plate sections (120); and a monitor support member (300) is positioned at the rear of the monitor exposure hole (140) and forms a monitor mounting space into which a monitor is inserted by means of an upper support plate (310), a lower support plate (320), and a pair of side support plates (330); wherein the bending plate member (120) is formed so that the stand (100) can be erected by being bent backward by V-cutting members (130) on both sides of the base plate member (110); the upper support plate (310), the lower support plate (320), and the side support plates (330) are each assembled by means of a formed fitting projection (B) and a semi-perforated fitting groove (H1) or fitting hole (H2) formed in the stand (100); a monitor catch member (142) is formed around the perimeter of the monitor exposure hole (140) to support the front edge of the monitor and prevent the monitor from moving forward; and the monitor support member (300) This is achieved by an eco-friendly modular monitor stand characterized by having a catch (340) that catches on the rear edge of the monitor to prevent the monitor from moving backward.
[0018] In addition, the above-mentioned semi-perforated insertion groove (H1) is formed so as not to completely penetrate the base plate portion (110) and is characterized in that it is not exposed on the front of the mounting bracket (100).
[0020] And the upper support plate (310) and the lower support plate (320) are spaced apart vertically to support the upper and lower ends of the monitor, and the pair of side support plates (330) are coupled to both sides of the upper support plate (310) and the lower support plate (320) to regulate the left and right positions of the monitor, and the locking piece (340) is coupled to the upper support plate (310) and / or the lower support plate (320) to prevent the monitor from moving backward, and the upper support plate (310) is coupled by inserting a plurality of fitting protrusions (B) formed on the front surface into a plurality of semi-perforated fitting grooves (H1) formed above the monitor exposure hole (140) of the base plate part (110), and the lower support plate (320) is coupled by inserting a plurality of fitting protrusions (B) formed on the front surface into a plurality of semi-perforated fitting grooves (H1) formed below the monitor exposure hole (140) of the base plate part (110). The above side support plate (330) is characterized by being configured such that a plurality of fitting protrusions (B) formed on the front are inserted into and coupled with a plurality of semi-perforated fitting grooves (H1) formed on both sides of the monitor exposure hole (140) of the base plate (110), and at the same time, fitting protrusions (B) formed at both ends of the upper support plate (310) and lower support plate (320) are inserted through fitting holes (H2) formed on the upper and lower parts of the side support plate (330) to be coupled and bound together.
[0022] In addition, the rear surface of the mounting bracket (100) is further provided with one or more horizontal support plates (200) extending in the left-right direction and one or more vertical support plates (210) extending in the up-down direction, wherein the horizontal support plate (200) is coupled to a semi-perforated fitting groove (H1) formed in the mounting bracket (100) and a fitting hole (H2) formed in the bent plate portion (120) through fitting protrusions (B) formed on the front and both sides, and the vertical support plate (210) is coupled to a fitting hole (H2) formed in the lower support plate (320) through a fitting protrusion (B) formed on the upper side and is inserted and coupled to a fitting slit (S) formed on the rear surface of the horizontal support plate (200) through a fitting slit (S) formed on the front surface, thereby reinforcing and supporting the mounting bracket (100) from the rear.
[0024] The above-described stand (100) has a structure divided into left and right sides according to the size of the monitor, and is characterized in that the stand (100) is divided into a left stand (100-1) and a right stand (100-2) and combined with each other to form a single monitor exposure hole (140), or the stand (100) is divided into a left stand (100-1), a right stand (100-2), and a connecting stand (100-3) placed between them and combined with each other to form a single monitor exposure hole (140). Effects of the invention
[0026] The eco-friendly modular monitor stand according to the present invention is formed by cutting and folding a sheet made of paper, corrugated cardboard, or honeycomb board, thereby enabling lightweight design, easy transportation and installation, and easy disposal after use, thus providing the effect of simultaneously securing eco-friendliness and economic efficiency.
[0028] In addition, the monitor is prevented from moving forward by a monitor catch formed around the perimeter of the monitor exposure hole, and the monitor is prevented from moving backward by a catch attached to the upper support plate and / or lower support plate, thereby stably supporting the monitor from both the front and rear sides and improving safety during display.
[0030] In addition, since the upper support plate, lower support plate, and side support plate are assembled using semi-perforated grooves and fitting holes, the monitor's vertical and horizontal positions are stably maintained, and the monitor can be securely mounted without the need for a separate metal frame.
[0032] In addition, since the semi-perforated groove is formed so as not to completely penetrate the base plate and is not exposed from the front of the stand, it is possible to maintain a neat front appearance while securing the assembly structure, thereby enhancing the aesthetic appeal of the display.
[0034] In addition, since horizontal and vertical support plates are combined on the rear of the stand to provide reinforcement support from the rear, it is possible to improve structural rigidity and suppress twisting or deformation caused by the monitor load, thereby enabling a more stable self-standing structure.
[0036] In addition, since the stand can be configured with a split structure consisting of a left stand, a right stand, and a connecting stand, it can flexibly adapt to monitor sizes or installation environments, thereby enhancing applicability and usability. Brief explanation of the drawing
[0038] FIG. 1 is a rear view showing all parts separated and laid out to explain the configuration of an eco-friendly modular monitor stand according to the present invention. FIG. 2 is an exploded perspective view of FIG. 1, FIG. 3 is a rear perspective view showing the assembled state of an eco-friendly modular monitor stand according to the present invention. FIG. 4 is a front view schematically showing the assembled state of an eco-friendly modular monitor stand according to the present invention. FIGS. 5 and 6 are a rear view showing all parts separated and laid out to explain another embodiment of an eco-friendly modular monitor stand according to the present invention, and a front view schematically showing the assembled state of the eco-friendly modular monitor stand from the front. FIGS. 7 and FIGS. 8 are a rear view showing all parts separated and laid out to explain another embodiment of an eco-friendly modular monitor stand according to the present invention, and a front view schematically showing the assembled state of the eco-friendly modular monitor stand from the front. Specific details for implementing the invention
[0039] Preferred embodiments of the present invention will be described in detail below with reference to the attached drawings. However, the present invention is not limited to the embodiments described below and may be implemented with various modifications within the scope of the technical concept described in the claims.
[0041] Referring to FIGS. 1 to 4, the eco-friendly modular monitor stand according to the present invention is configured to display a monitor in an independent stand manner in an exhibition hall, event hall, fairground, promotional hall, or various experience spaces, and comprises a stand (100), a monitor support (300), a horizontal support plate (200), and a vertical support plate (210). The stand (100) is a plate-shaped structure formed by cutting and folding a plate made of paper, corrugated cardboard, or honeycomb board, and is configured to be eco-friendly, lightweight, and easy to transport and install.
[0043] In particular, in this embodiment, the mounting bracket (100) includes a base plate portion (110) positioned at the front and a folded plate portion (120) extended and formed on both sides of the base plate portion (110).
[0045] The base plate (110) serves as the main front plate, having a monitor exposure hole (140) formed therein through which the monitor is exposed to the outside. The monitor exposure hole (140) can generally be formed in a rectangular shape, but is not limited thereto and can be formed in various shapes depending on the shape of the monitor being installed and the purpose of display. Additionally, a monitor catch (142) is formed around the monitor exposure hole (140) to support the front edge of the monitor. The monitor catch (142) serves to prevent the monitor from moving forward by catching on the rear side of the front edge or front bezel when the monitor attempts to move forward. Accordingly, the monitor can be stably supported in the front direction of the stand (100).
[0047] The above-mentioned bending plate section (120) is formed on both the left and right sides of the base plate section (110) and is bent backward to form a basic frame that allows the stand (100) to stand on its own. A V-cutting section (130) is formed at the boundary area between the base plate section (110) and the bending plate section (120). The above-mentioned V-cutting section (130) is a part in which a portion of the plate thickness is cut or trimmed to facilitate bending, and the user can easily set up the stand (100) without any separate complex tools by bending the bending plate section (120) backward along the above-mentioned V-cutting section (130). At this time, the bending plate section (120) functions as the left and right side walls or support walls of the stand (100) to maintain the state in which the front base plate section (110) is stably set up.
[0049] A plurality of semi-perforated insertion grooves (H1) are formed in the base plate (110) for assembling the monitor support part (300) described later. The semi-perforated insertion grooves (H1) are formed so as not to completely penetrate the base plate (110), and are configured so that the insertion protrusions (B) of each support plate can be inserted from the rear side while not being exposed to the outside from the front. Accordingly, the front appearance of the stand (100) can be kept neat and various pictures and text can be printed, thereby maximizing the advertising effect while ensuring the assembly stability of each component. In addition, an insertion hole (H2) and an insertion slit (S) may be formed in the folded plate (120) so that a reinforcing member, such as a horizontal support plate (200), can be attached.
[0051] The monitor support member (300) is configured to be positioned on the rear side of the monitor exposure hole (140) to actually accommodate and support the monitor, and includes an upper support plate (310), a lower support plate (320), and a pair of side support plates (330). The upper support plate (310) and the lower support plate (320) each support the top and bottom of the monitor, and the side support plates (330) regulate the left and right position of the monitor so that the monitor is stably inserted into a predetermined position. By these, a monitor mounting space into which the monitor is inserted is formed, and the user can install the monitor by inserting it into the monitor mounting space from the rear to the front.
[0053] More specifically, the upper support plate (310) is provided with a plurality of fitting protrusions (B) along the longitudinal direction, and these fitting protrusions (B) are inserted into and coupled with a plurality of semi-perforated fitting grooves (H1) formed on the upper side of the monitor exposure hole (140) of the base plate (110). The lower support plate (320) is also provided with a plurality of fitting protrusions (B) along the longitudinal direction, and these fitting protrusions (B) are inserted into and coupled with a plurality of semi-perforated fitting grooves (H1) formed on the lower side of the monitor exposure hole (140) of the base plate (110). In this way, the upper support plate (310) and the lower support plate (320) are respectively spaced apart vertically on the rear surface of the base plate (110), thereby firmly supporting the upper and lower sides of the monitor.
[0055] A pair of side support plates (330) are positioned at locations corresponding to both sides of the monitor exposure hole (140). Each side support plate (330) is provided with a plurality of fitting protrusions (B) on the front side, that is, the side facing the base plate (110), and these fitting protrusions (B) are inserted into and coupled with semi-perforated fitting grooves (H1) formed on both sides of the monitor exposure hole (140) of the base plate (110). Additionally, fitting holes (H2) are formed on the upper and lower sides of the side support plates (330), and by inserting the fitting protrusions (B) formed at both ends of the upper support plate (310) and the lower support plate (320) into the fitting holes (H2), the upper support plate (310), the lower support plate (320), and the side support plates (330) form a square frame structure that is connected to each other. Accordingly, the shape of the monitor mounting space is maintained, and the inserted monitor is prevented from shaking left or right or shifting position.
[0057] The monitor support member (300) is further provided with a catch piece (340). The catch piece (340) is configured to be coupled to the upper support plate (310) and / or the lower support plate (320). That is, a fitting projection (B) is formed protruding from the catch piece (340), and fitting holes (H2) are formed at corresponding positions on the upper support plate (310) and the lower support plate (320) so that they are coupled to each other and fixed. Of course, although not illustrated, the catch piece (340) can also be installed on the side support plate (330). The catch piece (340) is positioned to catch on the rear edge or rear side of the monitor when the monitor is inserted into the monitor mounting space, thereby preventing the monitor from slipping out backward. Therefore, the monitor is caught on the monitor catch piece (142) on the front side and on the catch piece (340) on the rear side, preventing it from coming off in both the front and rear directions. With this configuration, the monitor can be mounted easily and stably without the need for separate metal brackets or screw fastenings.
[0059] A reinforcing structure is further provided on the rear side of the mounting bracket (100) to improve the rigidity of the entire structure. In this embodiment, the reinforcing structure includes one or more horizontal support plates (200) extending in the left-right direction and one or more vertical support plates (210) extending in the up-down direction. The horizontal support plate (200) can be positioned on the upper or lower side of the monitor support part (300) at the rear side of the mounting bracket (100), and is coupled to the semi-perforated fitting groove (H1) formed in the mounting bracket (100) and the fitting hole (H2) formed in the bent plate part (120) using fitting protrusions (B) formed on the front and both sides. Accordingly, the horizontal support plate (200) functions as a left-right reinforcing member to suppress bending of the mounting bracket (100) and increase rear rigidity.
[0061] The vertical support plate (210) is a plate-shaped member extending in the vertical direction and can be coupled to a fitting hole (H2) formed in the lower support plate (320) through a fitting projection (B) formed on the upper side. Additionally, a fitting slit (S) is formed on the front or corresponding position of the vertical support plate (210), and this fitting slit (S) is configured to intersect with a fitting slit (S) formed in the horizontal support plate (200). Accordingly, the horizontal support plate (200) and the vertical support plate (210) are intersected in directions perpendicular to each other to form a grid-shaped rear reinforcement structure. Such a reinforcement structure alleviates the concentration of the monitor load on the front plate and suppresses twisting or rear bending of the stand (100), thereby maintaining a more stable self-standing state.
[0063] The assembly and usage state of the present invention will be described below.
[0065] First, the user prepares a flat stand (100) and then folds the folded plate sections (120) on both sides of the base plate section (110) backward along the V-cutting section (130). Next, the fitting protrusions (B) of the upper support plate (310) and the lower support plate (320) are inserted into the upper and lower semi-perforated fitting grooves (H1) of the base plate section (110), respectively, and fixed. Afterward, the left and right side support plates (330) are inserted into the semi-perforated fitting grooves (H1) on both sides of the base plate section (110), and the fitting protrusions (B) at both ends of the upper support plate (310) and the lower support plate (320) are inserted into the fitting holes (H2) of the side support plates (330) to complete the square frame-shaped monitor support section (300). Next, a horizontal support plate (200) and a vertical support plate (210) are assembled on the rear to form a reinforcing structure, and then the monitor is inserted into the monitor mounting space from the rear side to install the monitor. Subsequently, a catch piece (340) is attached to the corresponding position of the upper support plate (310) and / or the lower support plate (320) to prevent the monitor from coming off. Thus, the front edge of the monitor is caught on the monitor catch piece (142), and the rear edge is caught on the catch piece (340), so the monitor is not dislodged forward or backward.
[0067] FIGS. 5 and 6 illustrate another embodiment of the present invention. In this embodiment, the stand (100) has a structure divided into a left stand (100-1) and a right stand (100-2). The left stand (100-1) and the right stand (100-2) are joined at corresponding positions to form a single stand (100) overall, and upon completion of assembly, form a single monitor exposure hole (140). This divided structure is advantageous for improving handling by reducing the size of each component when manufacturing or transporting a relatively large stand. Additionally, since the total width can be secured by joining the left and right components during on-site assembly, a structure corresponding to a large monitor can be implemented more efficiently. In this embodiment, a connecting piece (400) may be further used as needed, and the connecting piece (400) may be joined to a connecting slit (S2) to increase the stability of the connection between the divided components.
[0069] FIGS. 7 and 8 illustrate another embodiment of the present invention. In this embodiment, the stand (100) is composed of a three-part structure consisting of a left stand (100-1), a right stand (100-2), and a connecting stand (100-3) positioned between them. By adding the connecting stand (100-3) between the left stand (100-1) and the right stand (100-2), the width of the entire stand (100) can be further expanded, thereby accommodating larger monitors or various screen sizes suitable for display purposes. In this case as well, each divided member is joined to form a single monitor exposure hole (140), and the connection strength can be increased using a connecting piece (400) as needed. Therefore, the present invention can be implemented not only as a basic single structure but also as a two-part structure and a three-part structure, and can be applied in various ways depending on the display environment or the specifications of the monitor being installed.
[0071] Meanwhile, this eco-friendly modular monitor stand can be used independently or connected to a separate paper booth.
[0073] Meanwhile, in the present invention, the shape, size, thickness, number and arrangement of insertion protrusions (B), the position of the semi-perforated insertion groove (H1) and insertion hole (H2), and the arrangement of the insertion slit (S) of the mounting bracket (100), upper support plate (310), lower support plate (320), side support plate (330), horizontal support plate (200), and vertical support plate (210) can be appropriately changed according to the size, weight, and display environment of the monitor to be installed. In addition, the plate material used in the present invention may be replaced with corrugated cardboard or other eco-friendly plate materials in addition to honeycomb board, and the method of forming the V-cutting section (130) and the width or angle of the folded plate section (120) can also be changed according to design conditions. However, all such variations are included within the scope of the technical concept of the present invention.
[0075] As described above, although the present invention has been illustrated and explained in relation to specific embodiments, it will be readily apparent to those skilled in the art that various modifications and changes are possible without departing from the spirit and scope of the invention as defined by the claims. Explanation of the symbols
[0077] 100: Stand 100-1: Left stand 100-2: Right stand 100-3: Connecting stand 110: Base plate section 120: Bending plate section 130: V-cut section 140: Monitor exposure hole 142: Monitor hanger 200: Horizontal support plate 210: Vertical support plate 300: Monitor support 310: Upper support plate 320: Lower support plate 330: Side support plate 340: Locking piece 400: Binding piece B: Insertion projection H1: Semi-perforated insertion groove H2: Insertion hole S: Insert slit S2: Binding slit
Claims
Claim 1 An eco-friendly modular monitor stand installed in an exhibition hall or event hall, made by cutting and folding a board made of paper, corrugated cardboard, or honeycomb board, comprising: a base plate (110) having a monitor exposure hole (140) formed in the front; folded plate sections (120) formed on both sides of the base plate (110); and a V-cutting section (130) formed in the boundary area between the base plate (110) and the folded plate sections (120); and a monitor support member (300) is positioned at the rear of the monitor exposure hole (140) and forms a monitor mounting space into which a monitor is inserted by means of an upper support plate (310), a lower support plate (320), and a pair of side support plates (330); wherein the bending plate member (120) is formed so that the stand (100) can be erected by being bent backward by V-cutting members (130) on both sides of the base plate member (110); the upper support plate (310), the lower support plate (320), and the side support plates (330) are each assembled by means of a formed fitting projection (B) and a semi-perforated fitting groove (H1) or fitting hole (H2) formed in the stand (100); a monitor catch member (142) is formed around the perimeter of the monitor exposure hole (140) to support the front edge of the monitor and prevent the monitor from moving forward; and the monitor support member (300) An eco-friendly modular monitor stand characterized by being provided with a catch (340) that catches on the rear edge of the monitor to prevent the monitor from moving backward, and the stand (100) having a structure divided into left and right sides according to the size of the monitor, wherein the stand (100) is divided into a left stand (100-1) and a right stand (100-2) and combined with each other to form a single monitor exposure hole (140), or wherein the stand (100) is divided into a left stand (100-1), a right stand (100-2), and a connecting stand (100-3) placed between them and combined with each other to form a single monitor exposure hole (140). Claim 2 An eco-friendly modular monitor stand according to claim 1, characterized in that the semi-perforated insertion groove (H1) is formed so as not to completely penetrate the base plate portion (110) and is not exposed on the front of the stand (100). Claim 3 In claim 1, the upper support plate (310) and the lower support plate (320) are spaced apart vertically to support the upper and lower ends of the monitor, and the pair of side support plates (330) are coupled to both sides of the upper support plate (310) and the lower support plate (320) to regulate the left and right positions of the monitor, and the locking piece (340) is coupled to the upper support plate (310) and / or the lower support plate (320) to prevent the monitor from moving backward, and the upper support plate (310) has a plurality of fitting protrusions (B) formed on its front surface that are inserted into and coupled to a plurality of semi-perforated fitting grooves (H1) formed above the monitor exposure hole (140) of the base plate portion (110), and the lower support plate (320) has a plurality of fitting protrusions (B) formed on its front surface that are inserted into a plurality of semi-perforated fitting grooves (H1) formed below the monitor exposure hole (140) of the base plate portion (110). An eco-friendly modular monitor stand characterized by being inserted and joined, wherein the side support plate (330) is joined by inserting a plurality of fitting protrusions (B) formed on the front side into a plurality of semi-perforated fitting grooves (H1) formed on both sides of the monitor exposure hole (140) of the base plate (110), and at the same time, the fitting protrusions (B) formed at both ends of the upper support plate (310) and lower support plate (320) are joined by inserting them through fitting holes (H2) formed on the upper and lower sides of the side support plate (330), thereby binding them together. Claim 4 An eco-friendly modular monitor stand according to claim 1, wherein the rear surface of the stand (100) is further provided with one or more horizontal support plates (200) extending in the left-right direction and one or more vertical support plates (210) extending in the up-down direction, wherein the horizontal support plates (200) are coupled to a semi-perforated fitting groove (H1) formed in the stand (100) and a fitting hole (H2) formed in the folded plate portion (120) through fitting protrusions (B) formed on the front and both sides, and the vertical support plates (210) are coupled to a fitting hole (H2) formed in the lower support plate (320) through fitting protrusions (B) formed on the upper side and inserted and coupled to a fitting slit (S) formed on the rear surface of the horizontal support plates (200) through a fitting slit (S) formed on the front surface to reinforce and support the stand (100) from the rear. Claim 5 delete
Citation Information
Patent Citations
Multi-panel display device, blank, and method of forming the device
US20140061288A1