Display stand with cardboard base
A cardboard display stand with a pivotable crease and metal strip allows easy conversion from a flat to a three-dimensional shape, addressing manufacturing and appearance needs while preventing material deformation.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2023-03-31
- Publication Date
- 2026-04-07
AI Technical Summary
Existing display stands used as signs or advertising media lack a simple and cost-effective manufacturing process that maintains an attractive appearance while allowing easy conversion from a flat shape for storage and transportation to a three-dimensional shape for use.
A display stand made of cardboard with a base body and cover bodies connected by a pivotable setup crease, utilizing a metal strip straddling a fold without adhesive connection to maintain an angled configuration through plastic deformation.
Enables easy conversion from a flat to a three-dimensional shape without material deformation, facilitating storage, transportation, and providing a visually appealing advertising medium.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a display stand, a setup method of a display stand, and a manufacturing method of a display stand. In particular, the present invention relates to a display stand provided with a flat (planar) base body made of cardboard.
Background Art
[0002] A display stand is understood to be a structure or body designed to be lifted on a flat mounting surface, that is, the display stand stands up from the flat mounting surface. The display stand can have, for example, one or more stand surfaces and / or edges for standing or placing on the mounting surface. Such a display stand can be used, for example, as a sign (billboard), an advertising medium, or other prominent signs. In particular, the display stand can be provided with an inscription and / or an image that can be clearly visible depending on its position.
[0003] WO2009 / 052240A1 describes a support element made of a bendable material that can hold the bent position without further influence of bending force. The element can be removably attached to the surface of a card, paper, etc. by a pressure-sensitive adhesive surface to support them.
[0004] KR1020180122833A describes an information display material having a main body manufactured by attaching printing paper to a sheet formed of plastic, foam, or wood. The main body has a first and a second support body bent with respect to the main body so that a fold line is formed. A metal plate is attached to the fold line.
[0005] US20210 / 0319607A1 discloses a collapsible cone having first and second side panels that taper upward. Each side panel has an outer surface, an inner surface, a lower end, a upper end, and an opposite side end. The cone also includes a base panel having a fold that extends along its central portion in a direction substantially parallel to the lower end of the side panel, and the base panel folds along the fold. The first and second side panels are attached to each other in place and form concave first and second side panels when the base panel is unfolded. [Prior art documents] [Patent Documents]
[0006] [Patent Document 1] WO2009 / 052240A1 [Patent Document 2] KR1020180122833A [Patent Document 3] US20210 / 0319607A1 [Overview of the project] [Problems that the invention aims to solve]
[0007] The object of the present invention is to propose a display stand that has an attractive appearance and can be suitably used as a sign or advertising medium, a display stand that can be realized in a particularly simple and cost-effective manner, a method for setting up the display stand, and a method for manufacturing the display stand. [Means for solving the problem]
[0008] This objective is achieved by the display stand described in claim 1 and by the methods described in claims 11 and 12. Dependent claims relate to advantageous embodiments of the present invention.
[0009] The inventors started from the recognition that for display stands used as signs and advertising media, it is important that they initially have a flat shape, especially in terms of manufacturing, printing, storage, and transportation (delivery). However, when used as a display stand, it is necessary to manufacture a three-dimensional shape as easily as possible.
[0010] The display stand according to the present invention includes at least one flat Na It comprises a base body, a first flat cover body, and a second flat cover body, each of which is made of cardboard in whole or in part. The term "cardboard" here specifically refers to at least 150 g / m² 2 This term is understood to mean flat, rigid paper products having a certain basis weight. This term specifically includes pasteboard and thicker papers. This term can also refer to single-layer and multi-layer products, including structural products such as corrugated cardboard.
[0011] The flat base comprises at least a first flat portion and a second flat portion, which are connected to each other by a setup crease so as to be pivotable. The setup crease is preferably manufactured by embossing or other means so that the flat portions can pivot relative to each other by bending or folding the material along the setup crease. The predetermined setup crease predetermines the path of the pivot edge when the base is bent. This ensures, for example, a straight bend at a desired position.
[0012] 1 flat The inner surface of the cover body rests on the inner surface of the first flat portion of the base body and is partially bonded thereto. flat The inner surface of the cover body lies on the inner surface of the second flat portion and is partially adhered thereto. It may also be partially covered, but the inside of the first flat portion and / or the second flat portion is preferably mostly (i.e., 50% or more of the surface), and especially preferably at least almost completely (i.e., at least 90% of the surface) of each First and second flatsIt is covered by a cover body. flat Cover body and 2 flat The cover body may be made of separate cardboard elements, but can also be formed together and / or together with the base body from continuous pieces of cardboard separated, for example, by folds. Bonding can be formed by various types of adhesives and various application methods. For example, the bond can be formed by chemically or physically coagulating an adhesive, i.e., solvent-based adhesives, hot-melt adhesives, polymerization adhesives, etc. Pressure-sensitive adhesives can also be used. The adhesive can be applied by spraying, printing, or other methods. Particularly preferably, the adhesive bond can be formed by one or more adhesive tapes, preferably double-sided adhesive tapes, i.e., carriers with adhesive surfaces on both sides, preferably pressure-sensitive adhesives. Preferably, to form a two-dimensional adhesive area, First and second flats One or more strips of double-sided adhesive tape are placed between the cover body and the inner surface.
[0013] No adhesive first Pocket area and Second without adhesive The pocket region is the first flat Between the inside of the cover body and the inside of the first flat portion, and the second Flat cover It is formed between the inside of the first part and the inside of the second flat part. First and second In all cases, the pocket area is First and second flat cover bodies inside and First and second The inner surfaces of the flat areas overlap each other but are not connected by adhesive, suggesting they are continuous surface regions. First and second The pocket areas are adjacent to the setup folds, and preferably directly opposite each other at the setup folds.
[0014] According to the present invention, a flat metal strip is positioned to straddle (bridge) a setup fold, preferably with a first portion including its first end located within a first pocket area and preferably a second portion including its second end located within a second pocket area. In this case, the metal strip is First and second flats Cover body and First and secondThe metal strip is held in at least one pocket area without being connected to the flat portion using material, and is therefore at least slightly displaceable, i.e., held without bonding (adhesion). Preferably, the metal strip is displaceable at least in the longitudinal direction, i.e., in the direction across the path of the setup fold. As will be described in more detail below, a minimum displacement of, for example, 1 mm or less is sufficient. For example, the metal strip only needs to have each end housed within the pocket area, but it is preferable that it is housed within the pocket area at least essentially along its entire length (i.e., 90% or more of its length), except for the short free area of the setup fold.
[0015] According to the present invention, starting with a planar arrangement in which the first flat portion and the second flat portion are aligned in a straight line with respect to each other in a single plane, such a display stand can be arranged in an angled configuration by pivoting (folding) the first flat portion and the second flat portion relative to each other at a setup fold, so that the first flat portion and the second flat portion are arranged relative to each other at a setup angle. The setup angle can be, for example, 120° or less, preferably 100° or less. The metal strip deforms plastically during pivoting (rotation, bending) to hold the first flat portion and the second flat portion relative to each other at a setup angle in the angled configuration.
[0016] The manufacturing method of the present invention provides a flat base body made of cardboard, comprising a first flat portion and a second flat portion, and a setup fold that pivotably connects them to each other. The inner surfaces of the first flat cover body and the second flat cover body made of cardboard are applied to the first flat portion and the second flat portion and partially bonded to them. 1 The pocket region is the first flat A layer formed between the inner surface of the cover body and the inner surface of the first flat portion, adjacent to the setup fold, 2nd The pocket area is the second flatIt is formed between the inner surface of the cover body and the inner surface of the second flat portion and is adjacent to the setup fold. The flat metal strip has a first portion disposed in the first pocket region and a second portion disposed in the second pocket region, straddling the setup fold. The metal strip is First and second flats the cover body and First and second without being connected to the flat portion using a material, First and second is movably held in at least one of the pocket regions. The sequence of process steps (manufacturing process procedures) is not necessarily fixed. For example, the metal strip may already be disposed in one or both of the pocket regions when the pocket regions are formed, or may be introduced later.
[0017] To be able to hold the setup angle in a predetermined position, as the metal strip, for example, a steel plate with a thickness of 0.1 - 0.15 mm has been proven to be suitable. Generally, the material, thickness, and width of the metal strip need to be selected so that on the one hand, good bendability is obtained, and on the other hand, sufficient holding force is obtained.
[0018] The metal strip can be completely on one or both sides of the setup fold, that is, its entire surface is First and second disposed within the pocket region. As a result, the metal strip is held on at least one side over its entire surface by only the boundary of the pocket region without making a connection using a material, that is, not particularly by an adhesive. However, alternatively, on at least one side, the metal strip has most of its surface (that is, 50% or more, preferably 75% or more, particularly preferably 90% or more) on each side of the fold de po in the ket region, but still, at one or more points, for example First and second at one or more edges of the pocket region, it can also be fixed by an adhesive. In particular, when using a partially flexible adhesive and only a small portion of the surface area, the metal strip can move by a minimum amount required during bending despite a proportionally small amount of adhesive.
[0019] Therefore, the spatial shape of the display stand can be manufactured in a particularly simple manner by the display stand and the method according to the present invention. The desired setup angle generated by pivoting (rotation, bending) can be maintained by the plastic deformation of the metal strip.
[0020] The display stand according to the present invention is particularly suitable for visually appealing presentations, such as as an advertising medium. For this purpose, printing can be applied to one or both of the inner surface and the opposite outer surface of the first and / or second flat portion. Setup folds can be used to create precisely localized straight edges. Because the metal strip is movable, compression of the material of the metal strip and / or base body is prevented during pivoting, and cracks, bulges, and other undesirable deformations do not occur, especially on the outer surface. First and second flat cover bodies By simply partially joining the inner surface of the base body to the metal strip, a pocket area suitable for holding the metal strip is formed in a particularly simple manner.
[0021] The metal strip may be held movably in only one of the pocket areas, or fixed in the other pocket areas. Preferably, the metal strip is attached to the base body and First and second flats The cover body is held in both pocket areas so that it can move without material connections. This has proven particularly preferable when setting up the display stand, that is, when pivoting the flat parts relative to each other to form an angled arrangement, in order to avoid or reduce deformation of the base body.
[0022] Preferably, the first flat The inner surface of the cover body is bonded to the inner surface of the first flat portion in the first bonding region, and the first bonding region is 1 It surrounds three sides (three flanks) of the pocket region. Therefore, 1The pocket region is surrounded by a continuous adhesive region, and the fourth side is preferably formed by a setup fold. Similarly, the second adhesive region is preferably the second flat Formed between the cover body and the second flat portion, 2nd It surrounds the pocket area.
[0023] According to further developmental forms, the first flat Cover body and / or second flat The cover body may be formed integrally with the base body. For this purpose, First and second flats The cover body, for example, has a first and / or second fold at the edge. flat It can be pivotably connected to the part. And, First and second flats The cover body is folded at the edge fold, The first and second flats, respectively. The base body may be placed on the inner surface of the part. First and second flats It is particularly preferable that the edge folds be formed integrally with the cover body. Preferably, the edge folds extend parallel to the setup folds.
[0024] The inside of the base body is, for example, two That is, the first and second flats It can be completely covered by the cover body. However, the setup folds on the inner surface of the base body are First and second flats An arrangement in which the component is not covered or not completely covered by a cover is preferred.
[0025] According to a preferred embodiment, the first flat Cover body and 2 flat The cover pieces are positioned spaced apart from each other along the setup folds. This makes it particularly easy to pivot the parts relative to each other around the setup folds to form an angled arrangement. First and second flats The spacing between the cover bodies and the resulting free area eliminates or reduces the need to move material during pivoting or bending. This allows for, First and second Undesirable deformation of flat sections and setup folds is reduced or completely avoided. flat Cover body and second flat The spacing (distance) between the cover bodies can be, for example, 0.3 to 5 mm, preferably 0.5 to 3 mm, and particularly preferably 1 to 2 mm.
[0026] For this purpose, preferably, for example, the first and / or second flat portions of the base body are related First and second flats It has a length greater than the length of each part of the cover (measured perpendicular to the setup fold). First and second flats By shortening the cover body, a gap or free area is secured inside the setup fold, making it easier to fold along the setup fold and avoiding or reducing undesirable deformation.
[0027] For example, the first and / or second of the base body flat The length of the part is the first flat Cover body and / or second flat It can be made 0.2 to 2 mm longer than the length of the cover body.
[0028] The overall dimensions of the display stand, particularly the dimensions of the pocket area, can be selected to vary according to various requirements. According to a preferred embodiment, the first pocket area and / or the second pocket area are measured perpendicular to the setup fold, respectively, and the first and / or second pocket areas are... flat The length may be less than 80% of the length of the portion. Each pocket area (and preferably the metal strip housed therein) extends only to a portion of the length of each portion of the base body. The preferred dimensions of the length of each pocket area and / or the length of each portion of the metal strip housed therein can be, for example, at least 10%, preferably at least 20%, of the length of each portion.
[0029] According to a preferred embodiment, at least one slot is formed in the first flat portion and / or the second flat portion and / or the first flat cover or the second flat cover, which The first and / or second Flat portion or First and / or second flatThe slot penetrates the cover body. The slot can be positioned and dimensioned so that a metal strip can be inserted into the first pocket area and / or the second pocket area. Preferably, only one slot is formed in one of the pocket areas, particularly preferably in the area of its end facing away from the setup fold. The slot is preferably positioned so that the metal strip can be pushed through it in its longitudinal direction.
[0030] Embodiments of the present invention will be described in more detail below with reference to the drawings. [Brief explanation of the drawing]
[0031] [Figure 1] A perspective view of the first embodiment showing the setup of the display stand in a spatial configuration is shown. [Figure 2] Figure 1 is a top view of the display stand in its unfolded state. [Figure 3a] Starting from the unfolded configuration shown in Figure 2, the manufacturing procedure (steps) for setting up the display stand shown in Figures 1 and 2 is shown. [Figure 3b] Starting from the unfolded configuration shown in Figure 2, the manufacturing procedure (steps) for setting up the display stand shown in Figures 1 and 2 is shown. [Figure 3c] Starting from the unfolded configuration shown in Figure 2, the manufacturing procedure (steps) for setting up the display stand shown in Figures 1 and 2 is shown. [Figure 4] In the planar arrangement shown in Figure 3c, a partial cross-sectional view of the display stand in Figures 1-3c is shown. [Figure 5] A perspective view of a second embodiment showing the display stand set up in its spatial configuration is shown. [Figure 6] A perspective view of a second embodiment showing the display stand set up in its spatial configuration is shown. [Figure 7] Figures 5 and 6 show partial cross-sectional views of the planar arrangement of the display stand. [Modes for carrying out the invention]
[0032] Figure 1 This shows a first embodiment of the display stand 10, which consists of two cardboard base bodies 12. That is, the first and second The flat portions 14a and 14b form an angled arrangement, positioned relative to each other at a setup angle α. Such a display stand 10 can function, for example, as a sign or advertising medium, and the outer surface of the base body 12 shown in Figure 1 can be printed. The display stand is positioned as shown in Figure 1, or in particular at a setup angle α of less than 90°, of the base body 12 First and second The flat portions 14a and 14b can be set up (raised) at their edges, and also at one of the outer surfaces, as shown below with reference to the second embodiment (Figures 5 and 6).
[0033] In either case, the prerequisite is that the setup angle α is maintained, but this is not guaranteed by the cardboard material of the base body 12 alone. As shown in Figure 1 and described in more detail below, the display stand 10 is made of the base body 12 First and second The flat portions 14a and 14b have a hidden metal strip 20 that is plastically deformable when pivoting relative to the setup fold 16, thereby maintaining the setup angle α in the angled position shown in Figure 1.
[0034] Figure 2 shows the display stand 10 in its unfolded form. First and second The base body 12, having flat portions 14a, 14b and a setup fold 16 formed between them, is integrally formed from cardboard material with a first flat cover body 18a and a second flat cover body 18b, which are connected to the base body 12 in a foldable, i.e., pivotable manner via end folds 28a, 28b. When measured perpendicular to the setup fold 16, in the illustrated embodiment, First and second The flat sections 14a and 14b each have the same length B1, and adjacent to them First and second flatsCover bodies 18a and 18b also have the same length B2 (however, the length may differ depending on the embodiment). First and second flats The length B2 of the cover bodies 18a and 18b is the length of the adjacent base body 12. First and second The length B1 of the flat sections 14a and 14b is shorter by a predetermined amount, for example, 1 to 2 millimeters.
[0035] First and second Adhesive regions 24a and 24b are formed on the inner surface of the base body 12, and each of them is a non-adhesive region that is not bonded from three directions. First and second pocket areas as It surrounds 22a and 22b. First and second pockets Regions 22a and 22b are located opposite each other (facing each other) via the setup fold 16.
[0036] The sequence in Figures 3a and 3c shows the steps in the manufacturing of the display stand 10 in one possible order. By interposing the setup fold 16 and the end folds 28a and 28b, First and second Flat sections 14a, 14b and First and second flats Starting with flat pieces of cardboard material divided into cover bodies 18a and 18b, First and second After adhesive is applied to the bonding areas 24a and 24b (not shown in Figures 3a and 3c), the end folds 28a and 28b are used to fold the material. First and second Inside the flat portions 14a and 14b First and second flats The insides of the cover bodies 18a and 18b are folded together. Prior to this, the metal strip 20 is placed in the center First and second pockets It can be placed in regions 22a, 22b (not shown in Figures 3a-3c). Alternatively, a metal strip 20 You can also insert it later.
[0037] First and second flats When the cover bodies 18a and 18b are folded, the inside of them and First and second The inside of the flat parts 14a and 14b First and second The adhesive regions 24a and 24b are bonded to each other. First and second pocketsRegions 22a and 22b form a pocket between them, into which the metal strip 20 is housed. This is shown in a cross-sectional view in Figure 4. The metal strip 20 spans (bridges) the setup fold 16 on both sides. First and second It is received in pocket areas 22a and 22b. Therefore, the metal strip 20 is First and second The inner surfaces of the flat portions 14a and 14b First and second flats It is held in place by being sandwiched between the inner surfaces of the cover bodies 18a and 18b, but there is no connection using material, i.e., no bonding (adhesion).
[0038] First and second Since the pocket areas 22a and 22b are slightly larger than the metal strip 20, the metal strip 20 is accommodated in the pocket areas with some play, that is, it can move at least a little parallel to the inner surface.
[0039] Furthermore, as shown in Figure 4, First and second flats When the cover bodies 18a and 18b are folded together, a free area 26 is formed between their edges in the area of the setup fold 16, that is, they form a gap (spacing) of, for example, several millimeters.
[0040] The structure thus formed, as shown in Figure 4, is folded around the setup fold 16, i.e., First and second It is particularly suitable for pivoting (rotating) the flat sections 14a and 14b toward each other to form a setup angle α. The setup fold 16 embossed on the material predetermines its position and straight path. During bending, the metal strip 20 undergoes plastic deformation, First and second Because it can move within pocket regions 22a and 22b, the cardboard material is not stretched or compressed, which would otherwise cause undesirable deformation or even tearing of the material. Because there is a free region 26, First and second flats The edges of the cover bodies 18a and 18b do not collide with each other (or at least not to a significant degree), thereby avoiding or at least mitigating compression of the material.
[0041] Therefore, the illustrated structure of the display stand 10 allows the angled configuration of the display stand 10 (Figure 1) to be achieved particularly easily and stably, starting from the initial planar configuration (see, for example, Figure 3c). This allows the display stand 10 to be processed (e.g., printed), stored, and / or transported or shipped in, for example, the planar configuration, and only converted to the angled configuration (Figure 1) when in use.
[0042] Various modifications of the illustrated embodiment are possible. For example, First and second The adhesive regions 24a and 24b are of the base body 12 First and second Although shown inside the flat portions 14a and 14b, alternatively or additionally, during manufacturing, First and second flats Adhesive can also be applied to the inside of one or both of the cover bodies 18a and 18b. First and second Although the bonding regions 24a and 24b are assumed to be continuous, the adhesive can also be applied intermittently to these regions, for example, in the form of dots or lines. First and second Flat portions 14a, 14b and First and second pockets The dimensions and relative dimensions of regions 22a, 22b and the metal strip 20 are illustrative and may vary depending on the embodiment, in particular, the base body 12 does not need to be divided symmetrically as shown. First and second One of the flat portions 14a and 14b may differ in dimensions and / or shape from the other portion.
[0043] Figures 5 to 7 show the display stand 110 according to the second embodiment. The display stand 110 according to the second embodiment is substantially equivalent to the display stand 10 according to the first embodiment. The same parts and elements are given the same reference numerals. Only the differences will be described in detail below.
[0044] The display stand 110 according to the second embodiment has surfaces of different lengths, namely, a first flat portion 14a and a first flatThe cover body 18a is measured from the setup fold 16 and consists of a second flat portion 14b and a second flat It has a length significantly greater than the cover body 18b. Its length is, for example, the second flat portion 14b and 2nd flat The length of the cover body 18b may be at least twice the length of the cover body 18b. The angle α is less than 90°. Therefore, the display stand 110 is particularly suitable for setting up (installing) with the short second flat section 14b as the base, and the first flat section 14a stands upright as a shield, for example, as shown in Figure 5.
[0045] A slot 30 is formed in the second flat portion 14b, i.e., on the underside of the leg portion (see Figure 6), for inserting the metal strip 20, which penetrates the second flat portion 14b and the second flat portion 14b. flat Formed between the cover body 18b 2nd Pocket region 22b becomes accessible (reachable). This is shown in a cross-sectional view in Figure 7. Slot 30 allows the metal strip 20 to pass through slot 30. First and second So that it can be inserted into pocket regions 22a and 22b, 2nd It is located at the longitudinal end of pocket region 22b. [Explanation of Symbols]
[0046] 10 Display Stands 12 base units 14a 1st flat part 14b 2nd flat part 16 Setup folds 18a First flat cover 18b Second flat cover 20 metal strips 22a First pocket area 22b Second pocket area 24a 1st adhesive area 28a, 28b Edge fold 30 slots
Claims
1. A flat cardboard base body (12) including at least a first flat portion (14a) and a second flat portion (14b) that are pivotally connected to each other by setup folds (16), The present invention comprises a first flat cover body (18a) made of cardboard whose inner surface rests on the inner surface of the first flat portion (14a) and is partially bonded thereto, and a second flat cover body (18b) made of cardboard whose inner surface rests on the inner surface of the second flat portion (14b) and is partially bonded thereto, A first pocket area (22a) without adhesive is formed between the inside of the first flat cover body (18a) and the inside of the first flat portion (14a) adjacent to the setup fold (16), and a second pocket area (22b) without adhesive is formed between the inside of the second flat cover body (18b) and the inside of the second flat portion (14b) adjacent to the setup fold (16). A flat metal strip (20) spanning the setup fold (16) is positioned such that a first portion is located within the first pocket region (22a) and a second portion is located within the second pocket region (22b), and the metal strip (20) is movably held in at least one of the first and second pocket regions (22a, 22b) with respect to the respective first and second flat cover bodies (18a, 18b) and the first and second flat portions (14a, 14b) without any connection using material. A display stand (10) characterized by the following features.
2. The metal strip (20) is displaceable in the first and second pocket regions (22a, 22b) between the base body (12) and the first and second flat cover bodies (18a, 18b), without any connection using material. The display stand according to feature 1.
3. The inner surface of the first flat cover body (18a) is bonded to the inner surface of the first flat portion (14a) in the first bonding region (24a). The first adhesive region (24a) surrounds the first pocket region (22a) on three sides. The display stand according to feature 1 or 2.
4. The first flat cover body (18a) and / or the second flat cover body (18b) are integrally formed with the base body (12) throughout and are pivotally connected to the first flat portion (14a) and the second flat portion (14b) of the base body (12) by end folds (28a, 28b). The display stand according to feature 1 or 2.
5. The end folds (28a, 28b) extend parallel to the setup fold (16). The display stand according to feature 4.
6. The first flat cover body (18a) and the second flat cover body (18b) are arranged with a gap (26) between them along the setup fold (16). The display stand according to feature 1 or 2.
7. The first flat portion (14a) and / or the second flat portion (14b) have a length (B1) measured perpendicular to the setup fold (16), The first flat cover body (18a) and / or the second flat cover body (18b) have a length (B2) measured perpendicular to the setup fold (16), The length (B1) of the first flat portion (14a) and / or the second flat portion (14b) is longer than the length (B2) of the first flat cover body (18a) and / or the second flat cover body (18b). The display stand according to feature 1 or 2.
8. The length (B1) of the first flat portion (14a) and / or the second flat portion (14b) is 0.2 to 2 mm longer than the length (B2) of the first flat cover body (18a) and / or the second flat cover body (18b). The display stand according to feature 7.
9. The first pocket area (22a) and / or the second pocket area (22b) have a length shorter than 80% of the length of the first flat portion (14a) and / or the second flat portion (14b) measured perpendicular to the setup fold (16), The display stand according to feature 1 or 2.
10. The first flat portion (14a) and / or the second flat portion (14b), and / or the first flat cover body (18a) or the second flat cover body (18b), are provided with slots (30) that allow the metal strip (20) to be inserted into the first pocket area (22a) and / or the second pocket area (22b). The display stand according to feature 1 or 2.
11. A method for setting up a display stand (10) according to claim 1 or 2, Starting from a planar arrangement in which the first flat portion (14a) and the second flat portion (14b) are aligned in a straight line with respect to each other, the first flat portion (14a) and the second flat portion (14b) are pivoted relative to each other around the setup fold (16) to create an angled arrangement in which the first flat portion (14a) and the second flat portion (14b) are arranged relative to each other at a setup angle (α), The metal strip (20) undergoes plastic deformation during pivoting, and in the angled arrangement, the metal strip (20) holds the first flat portion (14a) and the second flat portion (14b) relative to each other at a setup angle (α). A method for setting up a display stand characterized by the following features.
12. A method for manufacturing a display stand (10) according to claim 1 or 2, A flat base body (12) made of cardboard is provided, comprising the first flat portion (14a) and the second flat portion (14b), and the setup fold (16) that pivotably connects them to each other. The inner surfaces of the first flat cover body (18a) and the second flat cover body (18b), made of cardboard, are applied to and partially bonded to the first flat portion (14a) and the second flat portion (14b), and a first pocket region (22a) adjacent to the setup fold (16) is formed between the inner surface of the first flat cover body (18a) and the inner surface of the first flat portion (14a), and a second pocket region (22b) adjacent to the setup fold (16) is formed between the inner surface of the second flat cover body (18b) and the inner surface of the second flat portion (14b). The metal strip (20) is positioned to straddle the setup fold (16) with a first portion located in the first pocket region (22a) and a second portion located in the second pocket region (22b), and the metal strip (20) is movably held in at least one of the first and second pocket regions (22a, 22b) without being connected to the respective first and second flat cover bodies (18a, 18b) and the first and second flat portions (14a, 14b) using material. A method for manufacturing a display stand characterized by the following features.
13. The metal strip (20) is already positioned within the first and second pocket regions (22a, 22b) when the first and second pocket regions (22a, 22b) are formed. A method for manufacturing a display stand according to the feature described in 12.
14. The metal strip (20) is inserted into the first and second pocket regions (22a, 22b) through the slot (30) after the first and second pocket regions (22a, 22b) have been formed. A method for manufacturing a display stand according to the feature described in 12.
Citation Information
Patent Citations
JP1976131198U
Display
JP1992128663U
Metal plate sticking and folding self-standing pop
JP2000187444A
Advertisement board
KR1020180107520A
Information deliverer, the information including advertisement or promotion, made of foamed plastic plate functioning and method for the same
KR1020180122833A