Modular structure for installing decorative elements

The modular structure addresses the challenges of constructing outdoor movie sets by enabling rapid assembly and disassembly of decorative elements, reducing costs and environmental impact.

JP2026528857APending Publication Date: 2026-08-25コウニッキージリ
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Patent Information

Application Number
JP2026511978
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-08-21
Filing Date
2024-08-21
Publication Date
2026-08-25

AI Technical Summary

Technical Problem

Existing methods for constructing outdoor movie sets require large-scale structures that are costly, difficult to disassemble, and environmentally unfriendly, and relocating crews is impractical due to time and labor constraints.

Method used

A modular structure for installing decorative elements that includes a support structure with fastening and support elements, allowing frames with decorative members to be easily attached and detached, enabling rapid assembly and disassembly at different locations.

Benefits of technology

Enables efficient and cost-effective installation of decorations without relocating equipment or crews, allowing for quick setup and teardown, and reducing environmental impact.

✦ Generated by Eureka AI based on patent content.

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  • Figure 2026528857000001_ABST
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Abstract

The object of the present invention is a modular structure for installing ornaments, in particular outdoor ornaments for movies that simulate real buildings. The modular structure comprises a support structure (15), the support structure (15) comprising at least one fastening element for fastening the support structure (15) to an object (11), and / or at least one support element for supporting the support structure (15) against a solid base material. The modular structure further comprises at least one frame (1) for carrying decorative members (3) that are removablely attachable to the support structure (15), the support structure (15) comprising at least one guide profile (17). Each frame (1) comprises at least one running mechanism (4) that is slidable on the guide profile (17), and the frame (1) is slidable relative to the support structure (15) via the running mechanism (4) and the guide profile (17).
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Description

Technical Field

[0001] The present invention relates to a modular structure for installing ornaments, particularly outdoor ornaments for movies that simulate real buildings. More particularly, the present invention relates to the installation of ornaments on, for example, buildings or mobile containers.

Background Art

[0002] When shooting an outdoor scene of a movie, usually, large-scale structures such as entire buildings or streets and other buildings are constructed once. For example, various outdoors are simulated, such as Chinatown in Manhattan, New York State for shooting in a European studio, or buildings from the scenery of London or Europe for shooting in a US studio. The ornaments constructed in this way are usually stored in the constructed state for as long as possible in order to make their manufacture financially valuable. The costs associated with such construction are enormous, and their disassembly or disposal is difficult in every respect and not environmentally friendly. In the case of a large-budget project, the entire crew is relocated to the actual location where the plot of the movie or series takes place, but this is a strategy that has not been used recently because of the lack of capacity in both time and labor. As the world's population increases rapidly and mainly heads towards the major cities of each country, the possibility of closing major streets and traffic becomes complicated, and it becomes impossible to shoot a movie project in such places.

[0003] The following documents are available in the patent literature: Chinese Utility Model No. 208097419 describes a base with a latch that allows for easy insertion of a vertical TV backdrop and easy folding for re-transportation. U.S. Patent No. 2246960 describes a flat wooden base with a stop, effectively a stop and catch, for (indoor) backdrops. Korean Published Patent No. 101263111 describes a removable modular structure for constructing a TV studio (for indoor filming). The elevator in Chinese Utility Model No. 208097419 can be used for theater-related items, namely lifts and backdrops. U.S. Patents 7810792(B2) and 8033528(B2) describe applications relating to the handling of theater backdrops. U.S. Patent No. 6271629(B1) describes a modular lighting set for movies that can be switched and changed in various ways. Scenes need to be reconstructed several times for one film and other films, rather than being built only once. U.S. Patent No. 11085183(B2) describes one large display connected from several modular and adaptable smaller displays. [Overview of the project] [Problems that the invention aims to solve]

[0004] The above drawbacks can be mitigated to some extent by modular structures for installing ornaments, particularly outdoor ornaments for movies that simulate real buildings. The essence of the modular structure of the present invention is that it comprises a support structure, the support structure comprising at least one fastening element for fixing the support structure to an object, and / or at least one support element for supporting the support structure against a solid base material, and the modular structure further comprises at least one frame for supporting decorative members that are removablely attached to the support structure. The support structure comprises at least one guide profile, each frame comprising at least one running mechanism that is slidable on the guide profile, and the frame is slidable relative to the support structure via the running mechanism and the guide profile.

[0005] The main advantage of the modular structure of the present invention is that the decorations can be installed essentially anywhere, and therefore there is no need to move equipment, actors, or crew to a specific location where the film plot takes place. This saves considerable time and financial costs. Modular structures with decorations can also be constructed in a relatively short time and can be disassembled just as efficiently after filming and reused to construct the same or different decorations in different locations. Therefore, the decorations do not remain at the previous filming location and do not need to be disposed of later in a complicated or environmentally unfriendly manner. The resulting decorations are created by attaching frames with individual decorative members to a support structure, and these decorative members are used to fill the required areas, for example, the area needed to film a scene.

[0006] To ensure that a support structure reliably performs its function, that is, to form a statically load-bearing frame and allow individual frames having individual decorative members to be detachably attached to that frame, it is necessary to ensure its stability. For this purpose, the support structure comprises at least one fastening element for fastening the support structure to an object, and / or at least one support element for supporting the support structure against a solid substrate. Thus, the support structure may be fastened only to an object, in which case it does not need to be supported by a solid substrate, typically a solid substrate adjacent to the object. Alternatively, the support structure may be fastened to an object and further supported by a solid substrate. Or, the support structure may not be fastened to an object, but in this case it must still be supported by at least a solid substrate. Therefore, the support structure comprises at least one of the fastening element and the support element. Preferably, it comprises both of these elements.

[0007] The above-mentioned objects may be, for example, walls, buildings, or other building structures, or other objects including movable objects such as mobile containers. The objects may be outdoor objects or indoor objects (e.g., structures usable within an atelier). Most often, the above-mentioned objects are buildings or mobile containers. Furthermore, individual objects (e.g., mobile containers, typically shipping containers) may be connected to each other behind, next to, or on top of each other to create objects for the installation of large-area decorative objects. Fastening elements for fastening the support structure to the objects may be, for example, fixing screws, which may be positioned, for example, on longitudinal profiles that the support structure may have. Alternatively, the fastening elements may be positioned on another part of the support structure, for example, on offset means described below.

[0008] Support elements for supporting a support structure against a solid substrate can be guide profiles. Therefore, guide profiles can be used not only to allow the frame to slide relative to the structure, but also to further support the structure against a solid substrate (e.g., a solid substrate adjacent to the object). Alternatively, the support elements can be other parts of the support structure, e.g., support profiles described below. A support structure may have more support elements to provide better stability and increase its load-bearing capacity. A support structure may be supported, for example, by at least two guide profiles and at least one support profile. Alternatively, these support elements may be legs, which can be advantageously used, for example, when installing ornaments on a mobile container. Support elements may be fixed to a solid substrate (floor or ground), especially if the support structure does not include fastening elements for fastening the support structure to the object.

[0009] In principle, it is sufficient if the support structure is equipped with at least one guide profile and at the same time ensures the stability of the support structure; that is, if the support structure is fastened to at least the object or supported to at least a solid base material.

[0010] Removable attachment of a frame to a support structure means that the frame is attached to and can be removed from at least one guide profile by at least one running mechanism. By removing the frame, the formed ornament can be easily disassembled, then stored, transported, and constructed in different locations or in different forms obtained. The frame can be stored and transported with the ornamental members fastened together, or the ornamental members can be disassembled from the frame and stored and transported separately. Attachment of the frame to the guide profile can be done from the end of the guide profile (e.g., from above) or, preferably, through at least one access opening that can be formed in the guide profile at specific locations between the ends of the guide profile, if the guide profile is oriented vertically.

[0011] The frame may have, for example, a rectangular shape and may be equipped with two parallel longitudinal rails, these longitudinal rails connected by three transverse transverse rails. The frame may further be equipped with braces for reinforcement. Two outermost transverse rails may, together with the longitudinal rails, form the outer perimeter of the frame, and a central transverse rail may be positioned, for example, at the halfway point along the width of the frame. Preferably, two running mechanisms are positioned on each of the outermost transverse rails to provide sliding movement of the frame on the guide profiles, i.e., providing sliding movement of the frame relative to the support structure as a whole. However, alternatively, the frame may have a different shape (e.g., a square or other geometric shape) and may be equipped with a different number or position of running mechanisms. For example, if at least one guide profile is oriented horizontally, the running mechanisms may be positioned on the longitudinal rails of the frame, specifically, for example, on both longitudinal rails of the frame.

[0012] The sliding movement of at least one running mechanism on at least one guide profile can be achieved in different ways, for example, the guide profile may have a groove into which the running mechanism is slidably housed; or the guide profile may have a rail to which the running mechanism is slidably mounted. All of these alternatives follow the more general formulation that at least one running mechanism is slidably movable on the guide profile.

[0013] The support structure preferably comprises at least two guide profiles that are offset from each other and parallel to each other, and each frame comprises at least two running mechanisms that are slidable on different guide profiles. As a result, each frame is mounted on two different guide profiles, for example, on opposite sides of the frame, for example, on the upper and lower sides for horizontal mounting of the frame when the guide profiles are oriented horizontally, or for example, on the left and right sides of the frame when the guide profiles are oriented vertically. The mutual offset of these parallel guide profiles is preferably selected according to the dimensions of the frame or the dimensions of the decorative member to be installed. For example, when the guide profiles are oriented vertically, their mutual offset preferably corresponds to the width of the frame, and when the guide profiles are oriented horizontally, their mutual offset preferably corresponds to the height of the frame. Alternatively, the support structure may comprise a different number of guide profiles, and as a whole, the number or dimensions of the components of the support structure may vary as needed to enable the creation of the desired area of ​​the decorative member to be obtained.

[0014] The guide profile preferably includes a lock for securing the frame in a fixed position relative to the guide profile. In other words, the lock allows the frame to be fixed in a fixed position relative to the support structure. The lock allows the frame to be fixed to the support structure in a suitable location, for example, at a given height (a given floor), without the need to install the ornaments sequentially from the bottom floor, i.e., without a frame with installed ornaments having to be placed on top of another frame with an ornament on the bottom floor. This generally improves the modularity of the structure and provides more different procedures for installing ornaments. The position of the lock relative to the guide profile may be selectable and adjustable as needed. This adjustability can be ensured, for example, by forming a series of openings in the guide profile, and the lock can be fastened to one of these openings before the frame is secured to the lock.

[0015] The lock preferably comprises a latch, which is rotatably fastened within the guide profile. Thus, the frame is secured within the guide profile by simply moving the latch downward, and the latch is stopped by a running mechanism mounted on the guide profile. The running mechanism preferably includes a chamfered area for stopping the downward-moved latch. Alternatively, the lock may be implemented such that the downward-moved latch is stopped by another part of the running mechanism (e.g., the housing of the running mechanism). Alternatively, the lock may be implemented in other ways to securely fasten the frame to the guide profile, for example, by fixing screws or pins positioned in pre-drilled openings in the guide profile. Alternatively, the lock may be implemented as an electromagnetic lock.

[0016] The support structure preferably includes offset means for horizontally offsetting guide profiles away from the object. Preferably, the offset means extends perpendicularly from the object wall and is preferably fastened to at least one guide profile by fastening profiles. To fasten the support structure to the object, the support structure may also include at least one longitudinal profile, which can be fastened to the object, for example, by fixing screws or other fastening elements. Fastening of the support structure to the object may be achieved via the offset means itself, provided that the corresponding fastening elements are fitted into the offset means. The offset means may preferably be fastened to the object by being extendable or inclined from the object. Thanks to the offset means, a space is formed between the guide profiles and the object, which can be used for the movement of an operator or actor, for example, when filming a scene inside a window, which may be part of a decorative object.

[0017] The modular structure preferably includes catwalks, which are arranged on offset means. The catwalks may simply rest on the offset means or may be fastened to the offset means, for example, by being bolted to the upper side of the offset means. The support structure may include multiple rows of offset means arranged vertically, and the catwalks may be arranged on each row of offset means. This allows actors or operators to move comfortably across different floors of the modular building.

[0018] Preferably, the offset means accommodates an extension so as to slide, and the extension is used to support a decorative member having a visual layer in which a characteristic spatial relief protrudes from the object. These are, for example, members having a visual layer that simulates an American-style fire escape or balcony, which can be supported using the extension. By accommodating the extension so as to slide within the offset means, the extension can be extended to the desired distance required, depending on the specific shape of the visual layer of the decorative member.

[0019] Preferably, the frame comprises at least one slide rail, and the running mechanism comprises at least one running element, with a specified space between the running element and the slide rail for clamping a portion of the guide profile. The running element may be, for example, a wheel. The slide rail may be made of, for example, nylon, or other material that sufficiently reduces friction between the guide profile and the frame. Preferably, the guide profile has a shape resembling the letter H or the serif letter I, defining two guide grooves. In particular, the guide profile may comprise two flanges interconnected by a guide profile partition. The first flange forms the front of the guide profile, and the second flange forms the back of the guide profile, with the front of the guide profile facing the frame and closer to the frame than the back of the guide profile. Thus, each guide groove is defined by the guide profile partition, a portion of the front of the guide profile, and a portion of the back of the guide profile. Each guide groove of a single guide profile is used for mounting and sliding movement of different frames. Therefore, the running element is slidable along the inside of the front surface of the guide profile after being mounted in the guide groove, and the outside of the front surface of the guide profile is slidable along at least one slide rail. The number or position of slide rails on the frame can generally vary. Slide rails may be located, for example, on the outermost short-direction rail of the frame and on the central short-direction rail of the frame.

[0020] Alternatively, the guide profile may have a different shape, and the running mechanism may be implemented in a different way. For example, the running mechanism may include a wheel having a recess that abuts against the front surface of the guide profile, or a recess that abuts against another part of the guide profile via this recess. Alternatively, the running mechanism may include at least two running elements (e.g., two wheels) that abut against the individual flanges of the guide profile when the running mechanism slides along the guide profile. In other words, the two running elements are housed in a guide groove, with the first running element abutting against the front surface of the guide profile and the second running element abutting against the back surface of the guide profile. This allows the frame to slide along the guide profile without the use of slide rails.

[0021] The modular structure preferably includes a traction system for sliding the running mechanism along guide profiles, the traction system comprising a traction element and a mounting element for connecting the traction element to the frame. Thanks to the traction system, the ornaments can be installed more quickly, and in particular, they can be installed at higher heights, for example, when the scene is filmed in a taller, multi-story building. The traction element may be, for example, a rope or chain. The traction system preferably further comprises a winch equipped with a motor for applying traction force. Alternatively, the traction force source may be, for example, a person who can pull the traction element and pull the frame using a pulley or pulley assembly. Thus, it is necessary to connect the traction element to the frame, which can be achieved, for example, by a hook or other mounting element. The frame itself may be adapted to receive the mounting element, for example, by having an opening for hooking the hook.

[0022] The frame, mounted in this manner, can be efficiently moved to the desired position along the guide profile using a traction system. This traction system can be used not only to move the frame up and down along the guide profile, but also when the guide profile is oriented horizontally and is suitable for horizontal frame mounting.

[0023] The support structure preferably comprises at least one support profile, which is at least one support element for supporting the support structure relative to a solid substrate. The support profiles are preferably oriented vertically. Guide profiles can also be fastened horizontally to the support profiles, thereby allowing a frame with decorative members to be mounted horizontally. To ensure sufficient load-bearing capacity of the support structure and to create decorative elements over a larger area, the support structure may comprise more support profiles, for example, by always having one guide profile between two adjacent support profiles.

[0024] Preferably, the support structure comprises at least one support profile, the support profile being at least one support element for supporting the support structure against a solid substrate, and the traction element is housed within the support profile. Housed within the support profile is advantageous because the traction element never restricts the sliding movement of the frame and does not interfere with the installation of ornaments or even actual shooting. Thus, the support profile not only functions as a support element for supporting the support structure against a solid substrate, but is also endowed with this additional function. If the traction system includes a winch, this winch may be fastened to the upper end of the support profile, for example, by a cover that is attached to and fastened to the upper end of the support profile. After the frame is attached to the support structure, and after the traction element is attached to the frame by a mounting element, it is possible to move the frame relative to the support structure. If the guide profile is oriented horizontally, the frame can be moved to a desired height or distance by winding up or unwinding the traction element.

[0025] Preferably, all guide profiles are oriented vertically or horizontally. Thus, modular structures can be assembled so that frames can be mounted vertically or horizontally. Therefore, it is preferable that the guide profiles and frames (and thus the decorative members to be installed) are oriented parallel to the walls of the object. However, alternatively, the guide profiles may be inclined with respect to a horizontal or vertical plane, thereby making it possible to create inclined / angled ornaments. Thus, ornaments may be inclined with respect to the walls of the object, for example, and not parallel to the walls of the object.

[0026] The object is preferably a mobile container. That is, the support structure comprises at least one fastening element for fastening the support structure to the mobile container and / or at least a support element for supporting the support structure against a solid substrate adjacent to the mobile container. The mobile container can preferably be used instead of a structural object such as a building or a wall. This is because the mobile container can be transported substantially anywhere, without the need to search for a suitable building or even construct a suitable building. This makes it possible to construct an entire ornament or complex of ornaments in a so-called green space, i.e., a completely new location. The term mobile container refers to a container (e.g., a transport container or a container house) that can be relocated to a specific location.

[0027] The support structure preferably comprises at least one connecting element, and at least one connecting element and at least one guide profile slide into each other. The connecting element can be fastened, for example, to an offset means or a leg, which function as support elements for supporting the support structure against a solid substrate. These connecting elements can be, for example, spikes that slide into the guide profile. Alternatively, the connecting element can be a trough into which the guide profile slides. Due to the mutual sliding insertion of the guide profile and the connecting element, the support structure is easy to assemble and disassemble and can be easily reconstructed.

[0028] The modular structure comprises at least one decorative member, preferably fastened to a frame and comprising a visual layer, the visual layer covering the entire frame when viewed from the front. Preferably, the decorative member can be detachably or removablely fastened to the frame, for example, by screws. Here, the visual layer means a layer that simulates, for example, a real object (typically a real building) or a real environment (e.g., a natural landscape). Thus, the visual layer could be, for example, a physically modeled ornament, for example, an ornament that simulates the appearance of a building or other object, for example, an ornament for an amusement park attraction. Alternatively, the visual layer may be, for example, a screen or board from which images or videos (e.g., animations) can be projected, or a screen or board adapted to green screen or blue screen technology, from which the resulting ornament is simulated using later computer technology. The visual layer can also simulate, for example, the surface of the sea or other natural scenery. Alternatively, the visual layer may be, for example, an LED panel, or any other layer that simulates a real object or a real environment using, for example, other modern technology. Alternatively, the visual layer can be interactive, for example, using LED technology, video, or VR content. Decorations created in this way can be used for educational purposes in various historical townscapes, open-air museums, nature trails, etc. The visual layer can also simulate the background of a town or urban district, which can be used, for example, for military training. For example, it can also simulate the realistic background of a military shooting range.

[0029] The decorative member preferably includes a base member, which is fastened to the frame and on which the visual layer is located. The base member can be realized in the form of other structures that can be fastened, for example, to a board, a frame, a grid, or a frame attached to a guide profile. Preferably, the base member is removably or detachably fastened to the frame by screws. Alternatively, the base member can be firmly connected to the frame and may be stored or transported together with this base member. The visual layer is located on the base member, that is, when the visual layer is realized as a decoration, a screen (for example, a green screen, a blue screen), or an LED panel physically modeled, the visual layer can be fastened (for example, screwed or glued) on the base member. However, the visual layer can only be arranged on the base member, that is, for example, it can be realized as a coating on the base member, for example, a green coating providing green screen technology. Therefore, the visual layer can be part of the base member.

[0030] The general concept of the present invention is further clarified by using exemplary embodiments of the present invention described while referring to the accompanying drawings.

Brief Description of the Drawings

[0031] <000010​​​​​​​​​​​​​​​​​​​​​This is a top view of the frame. [Figure 7] This is a side view of a detail of the travel mechanism of a first exemplary embodiment of the present invention. [Figure 8] This is a detailed diagram of the travel mechanism housed within the guide profile. [Figure 9a] This diagram shows the attachment of a frame onto a guide profile through an entry opening in the guide profile. [Figure 9b] This figure shows the displacement of the frame within the guide profile towards the lock. [Figure 9c] This diagram shows the frame being secured within the guide profile by a lock. [Figure 10a] This figure shows a traction system according to a first exemplary embodiment of the present invention. [Figure 10b] This is a diagram showing a traction system housed in a support profile. [Figure 11] This is a detailed diagram showing the cross-section of the support profile and the attachment of the traction system to the frame using mounting elements. [Figure 12] This is a detailed diagram of a running mechanism for sliding a frame on a horizontal guide profile according to a second exemplary embodiment of the present invention. [Figure 13a] This is a rear view of the frame to which the base members have been fastened. [Figure 13b] This is a side view of the frame to which the base members have been fastened. [Figure 14a] This is a front view of the frame, in which the base member and the visual layer are fastened together. [Figure 14b] This is a side view of the frame, in which the base member and the visual layer are fastened together. [Figure 15a] This figure shows a first modified example of a corner frame to which the base members are fastened. [Figure 15b] This figure shows a second modified example of a corner frame with a base member fastened to it. [Figure 16a] This diagram shows a modular structure in which decorative elements are installed along a portion of one wall of a building. [Figure 16b]This diagram shows a modular structure in which decorative elements are installed along two walls of a building. [Figure 17a] This figure shows a mobile container having legs and connecting elements according to a third exemplary embodiment. [Figure 17b] This figure shows a mobile container with a support structure constructed after the guide profiles and support profiles have been attached to the connecting elements. [Figure 17c] This diagram shows a mobile container with a multi-story support structure. [Figure 17d] This diagram shows a modular structure in which decorative elements are installed along one wall of a mobile container. [Modes for carrying out the invention]

[0032] The present invention will be further clarified using exemplary embodiments with reference to the respective drawings. Example 1

[0033] In the first exemplary embodiment, the modular structure for installing the ornament is a support structure 15 and decorative components 3 At least one frame to support 1 The support structure in this first embodiment comprises 15 As is most clearly shown in Figure 1, at least two guide profiles 17 and at least one support profile 34 It is equipped with a support profile. 34 and guide profiles 17 In addition, the support structure in this exemplary embodiment 15 Furthermore, other components, namely supporting structures 15 The object 11 At least one longitudinal profile that serves the function of fastening 16 Guide profiles 17 The object 11 Several offset means for offsetting horizontally from 13 , and offset means 13Catwalk located above 2 , or guide profile 17 and support profiles 34 and each catwalk 2 A handrail that connects at a specific height above it. 20 It is equipped with.

[0034] In this exemplary embodiment, guide profile 17 and at least one support profile 34 They are oriented vertically and parallel to each other, with their bottom ends touching the ground, i.e., the object 11 It is placed on an adjacent solid substrate or fixed to this solid substrate (e.g., concrete fixing). Therefore, guide profile 17 and support profiles 34 Both are support structures for a solid substrate. 15 Supporting, supporting structure 15 This represents a support element to ensure at least partially the stability of the structure. In addition, the support structure 15 Furthermore, for example, horizontally, and guide profile 17 and support profiles 34 Longitudinal profiles extending perpendicularly to the 16 by 11 It will be concluded.

[0035] As also shown in the top view of Figure 2, in this first exemplary embodiment, longitudinal profile 16 This is an offset means 13 by 11 Guide material positioned horizontally toward 17 It is offset from. That is, offset means 13 is a guide profile 17 The object in the horizontal direction 11 It can be said that it performs the function of offsetting away from the target. Offset means 13 is a longitudinal profile 16 Parallel to, and therefore horizontal and guide profile 17 and support profiles 34 A fastening profile extending perpendicularly to it. 14 Guide profile 17The agreement is concluded. Guide profile 17 , support shape 34 fastening profiles 14 Longitudinal profiles 16 , and offset means 13 These are connected to each other, for example, by screw connections. Support structure 15 The object 11 Longitudinal profiles are used to fasten (i.e., to the walls of a building or other structural objects) to a building wall or other structural object. 16 It can be fastened, for example, by fixing screws or other fastening elements. Support structure 15 Object 11 The fastening is performed by offsetting the corresponding fastening element. 13 Offset means, provided that it is fitted into 13 It may also be implemented through itself.

[0036] From Figure 1, the guide profile that is provided 17 The longer (i.e., the higher) the supporting structure 15 The number of individual floors increases, and decorative elements 3 It can be seen that the number of floors of the ornaments made from this can be greater. Specifically, Figure 1 shows a four-story support structure. 15 This shows that each floor is an offset means 13 And, placed on top of that (i.e., offset means, for example) 13 Screwed to the upper side, or offset means 13 Catwalk (simply placed on top) 2 It includes an assembly.

[0037] support structure 15 The specific dimensions of each individual component (and by extension, the dimensions of frame 1) are, for example, two adjacent guide profiles. 17 Offset means placed in between 13 The number or spacing between decorative members 3 Selected according to the dimensions. For example, in the first exemplary embodiment shown in Figures 1 to 5, the guide profile 17 is, frame 1 Width or installed decorative member 3Located at a mutual distance of 5m corresponding to the width, with 6 offset means 13 The row is an individual guide profile 17 There is a 1m distance between them. For example, the first floor is located at a height of 0.5m, and the distance between each floor is the distance between each individual catwalk. 2 The height distance between them is, for example, 3m, and this is the frame 1 Height or installed decorative member 3 It corresponds to the height.

[0038] As shown in Figures 3 to 5, the support structure 15 can be variable not only in height (i.e., number of floors) but also in length, i.e., three or more vertically oriented guide profiles. 17 and two or more vertically oriented support profiles 34 This may include two guide profiles. In this first exemplary embodiment, each of the two guide profiles 17 One support profile in between 34 The guide profile is positioned as a result 17 is the object 11 Support profile in the direction along 34 They are arranged alternately, which allows the decorations to cover a wider area, that is, typically larger objects. 11 It can be attached adjacent to. An exception to this is the object, which is most clearly shown in Figure 5. 11 Support at the corner Holding structure 15 This involves arranging, for example, two guide profiles. 17 However, there are support profiles between them. 34 These corner guide profiles are used side-by-side without needing to be positioned. 17 In this case, the specific corner frame shown in the two different variations in Figures 15a and 15b 1 This is used.

[0039] Object 11 and guide profiles 17 Formation of space between, i.e., offset means 13 Guide profiles 17The horizontal offset is also clearly shown in Figures 3 and 5. This space could be, for example, part of a decorative element (specifically, a decorative component). 3 It can be used for the movement of the operator or actor when filming a scene inside a window (such as an opening). The actor can move on a catwalk, as shown in Figure 3, for example. 2 It allows for comfortable movement along the path. This space can also be used by crew members with cameras, grips, or other equipment.

[0040] As shown in Figure 3, the offset means 13 is the extension 21 It is housed so as to slide. Extension 21 This is an offset means 13 It comprises an elongated portion slidably housed inside, and a vertical rod extending perpendicularly from the elongated portion. The vertical rod is mainly an extension 21 These extensions are useful for handling the elongated parts, for example, which are detachably fastened to them. 21 The distinctive spatial relief is the object 11 A visual layer that protrudes away from the surroundings. 6 Decorative member comprising 3 These are used to support visual layers that simulate, for example, fire escapes (more specifically, American-style fire escapes) or balconies. 6 This is the extension 21 It can be supported using offset means. 13 extension inside 21 By housing it so that it slides, the decorative member 3 Visual layer 6 Depending on the specific shape, the extension part can be extended to the required distance. 21 It can be extended. As mentioned above, the vertical rod is removable and does not need to be used to actually support the ornament.

[0041] Decorative components 3 At least one frame 1 for supporting the guide profile 17 Further mounted inside, each frame1 It has at least two running mechanisms 4 It comprises. An exemplary embodiment of frame 1 is shown in rear view, side view, and top view in Figures 6a to 6c. In this embodiment, frame 1 It has a rectangular shape and is equipped with two parallel longitudinal rails, which are connected by three transverse rails. The frame further includes braces that interconnect the longitudinal and transverse rails. 8 It comprises: The two outermost short-direction rails, together with the longitudinal rails, form the outer circumference of frame 1, and the central short-direction rail is, for example, the frame 1 It is positioned at the halfway point along the width. This central, short-direction rail is part of the traction system, which will be explained in more detail below. 33 Mounting element which is part of the 35 opening for 32 It further includes the following: As shown in Figure 6a, the two outermost short rails and the central short rail are frame 1 On the back, that is, the frame 1 Support structure 15 Frame used for mounting 1 Slide rails located on the side 7 It is equipped with.

[0042] Two driving mechanisms 4 However, guide profiles are placed on each of the outermost short-direction rails. 17 Frame above 1 This results in sliding movement, that is, the support structure as a whole. 15 Frame for 1 This results in sliding movement of the frame in this embodiment. 1 As shown in Figure 6a, there are a total of four driving mechanisms. 4 It is equipped with three sliding rails on the short side rail at each end. 7 It is equipped with one of the first (upper) running mechanisms 4 Located above it, one is the second (lower) running mechanism 4 It is located below, and the third is the first running mechanism 4and the second running mechanism 4 It lies between. In the first exemplary embodiment shown in the illustration, at least one further slide rail 7 They are also positioned on the central, shorter rail.

[0043] Driving mechanism 4 The detailed configuration is shown in Figure 7, for example, and the guide profile 17 This is also shown in Figure 8. (Driving mechanism) 4 The running mechanism 4 Housing 9 and the driving mechanism 4 This housing 9 The running element housed within 10 (For example, a wheel) and a running mechanism. 4 Housing 9 The running mechanism 4 at least one chamfered area 28 The frame is equipped with a connecting part. 1 It is fastened to the. As shown in Figure 7, this connection in this exemplary embodiment is substantially trapezoidal in shape, and therefore the travel mechanism 4 Two chamfered areas 28 It is equipped with one of the running mechanisms 4 Housing 9 It is located above, and one of them is the running mechanism 4 Housing 9 It is located below. (Driving mechanism) 4 chamfered area 28 As will be explained in more detail below, lock 12 It is used to collaborate with [the other party].

[0044] As shown in Figure 8, in this illustrated first exemplary embodiment, the guide profile 17 When viewed from above, it has a shape resembling a rotated letter H, or more appropriately, a shape resembling a serif letter I, and has two guide grooves. 23 Defines, in particular, guide profiles 17 is a guide profile 17 bulkhead 24 It comprises two flanges interconnected by a guide profile. The first flange is a guide profile17 front 22 The second flange forms a guide profile 17 back 25 Forms guide profiles 17 front 22 is frame 1 Facing the guide profile 17 back 25 Closer to the frame. Guide profile 17 bulkhead 24 is a guide profile 17 It is divided into two virtual parts, each of which is a guide groove 23 It is equipped with each guide groove. 23 is a guide profile 17 bulkhead 24 Guide profiles 17 front 22 Part of the guide profile 17 back 25 It is defined by a part of it. Then one guide profile 17 Each guide groove 23 These are different frames 1 It is used for mounting and sliding movement.

[0045] Guide groove 23 Frame within 1 The sliding movement of the guide profile 17 To clamp a part of it, more specifically a guide profile 17 front 22 To clamp the running element 10 and slide rails 7 This is guaranteed by providing a specified space between them. Therefore, the driving element 10 The guide groove 23 Guide profile after installation 17 front 22 It is slidable along the inside and guide profile 17 front 22 The outside has at least one slide rail 7 It can slide along a rail. For example, a slide rail. 7 is nylon, or guide profile 17 and frame 1It is made of other materials that sufficiently reduce friction between them.

[0046] frame 1 Guide profile 17 Attachment to, more specifically, two different guide profiles 17 Guide groove 23 For example, the mounting to a guide profile 17 This can be done from the upper end of the frame. However, more preferably, the frame 1 The installation is as shown in a series of Figures 9a to 9c, for example, using guide profiles. 17 front 22 at least one entry opening formed therein 18 This is achieved through the frame. 1 guide profile 17 To attach it to the frame 1 This is a pair of guide profiles 17 It is mounted in close proximity, thereby fastening mechanism 4 This is the entrance opening 18 Guide groove 23 It slides inward. This movement is indicated by the arrow in Figure 9a. As can be seen from Figure 1, in this exemplary embodiment, each guide profile 17 It has two entry openings. 18 These entrance openings are provided. 18 is, frame 1 The running mechanism on the corresponding side, i.e., the corresponding outermost short-direction rail. 4 They are positioned at the same mutual distance (height) as the mutual distance between them. Therefore, the frame 1 The four entry openings are accessed by four travel mechanisms 4. 18 It can be attached.

[0047] Subsequently, as already explained with reference to Figure 8, the guide profile 17 A frame mounted on top in that manner. 1 This allows for sliding movement of the frame. 1 It can be moved vertically. Frame 1 (and frame 1 Since it is supported by, it is a decorative member3 (Also) Guide profiles 17 To fix it in a fixed position, guide shape 17 is at least one lock 12 It is equipped with, and exemplary embodiments thereof are shown in Figures 9a to 9c. In this embodiment, lock 12 is a guide profile 17 back 25 The agreement was concluded, and the guide profile 17 It features a rotating latch that is rotatably and movably fastened inside, and locks 12 By selecting the location (height) where the fasteners are fastened, it is possible to select the position (height) where the frame is fixed. Furthermore, the lock 12 The position is, for example, that of a guide profile. 17 But, rock 12 It may be adjustable, for example, by having several openings arranged vertically that can be fastened together by fixing pins or screws. 12 Frame using 1 The fixing is the travel mechanism 4 guide profile 17 After sliding inward (Figure 9a), the frame 1 Rock 12 It is displaced upward above (Figure 9b), and then locks 12 However, it is typically rotated / moved downward by manual operation, and the travel mechanism 4 chamfered area 28 Locked by 12 This is achieved to stop the latch. The downward movement of the latch is indicated by the arrow in Figure 9c. Each guide profile, for example, as shown in Figure 1. 12 Some rock 12 (One lock per floor) 12 ) is equipped with.

[0048] Guide profiles 17 Driving mechanism above 4 To ensure smooth sliding movement, the modular structure in the first exemplary embodiment is a traction system 33 This towing system is further equipped with... 33The traction element is as shown in Figure 10a or Figure 10b. 36 , mounting elements 35 , and winch 37 It is equipped with a traction element. 36 This includes, for example, a tow rope or tow chain, and the towing element. 36 It has a winch at one end. 37 It is connected to the mounting element at the other end. 35 It connects to the towing system. 33 is a support profile 34 Housed inside, winch 37 is a support profile 34 It is fastened to a cover that can be attached and fastened to the upper end of the mounting element.In this embodiment the mounting element 35 is, frame 1 The hook is implemented as a member to which the support profile is rotatably fastened for connection. This hook is implemented as a member to which the support profile is rotatably fastened, as shown in Figure 10b. 34 Protruding from, mounting element 35 The frame from above 1 When approached, the hook is supported by the support profile 34 It pivots toward the frame. However, the hook is frame 1 Mounting elements 35 opening for 32 After reaching the same height, the hook will support the support profile (for example, by spring force). 34 Tilt backward from the mounting element of frame 1 35 This opening for 32 It is captured. This is best illustrated in Figure 11. The frame is then attached. 1 guide profile 17 It is possible to effectively move it to the desired position along the frame 1 The upward movement is due to the traction element 36 This is achieved by towing or winding up the frame 1 The downward movement of the traction element 36 This is achieved by lowering or rewinding the value.

[0049] To form an ornament, decorative member 3 is frame 1Removably fastened to the decorative member 3 As is most clearly shown in Figure 14b, the base member 5 and the visual layer 6 The first exemplary embodiment in Figures 13a to 14b includes the base member 5 This can be implemented, for example, as a baseboard made of wood, plywood, plastic, or other materials. Base member in the form of a baseboard. 5 When viewed from the front, the frame 1 It covers the entire thing. As shown in Figure 13a, when viewed from the back, the frame 1 You can see the frame. 1 base member 5 The connection is, for example, by a removable connection, for example, a base member 5 frame 1 This is achieved by screws that attach to the short-axis and long-axis rails.

[0050] For example, this base member can be secured by screws or adhesive. 5 The visual layer is attached to it. 6 and visual layer 6 In the embodiment shown in Figure 14a, this is realized as a modeled physical ornament and a visual layer. 6 When viewed from the front, it simulates a real object, namely, the wall of a building in this embodiment. In Figure 14a, the visible layer 6 When viewed from the front, the base member 5 It can be seen that it covers and further includes windows or various decorative elements. In Figure 14b, this visual layer 6 It can be seen that it has a 3D relief when viewed from the side. Decorative member 3 In reality, the corresponding frame 1 guide profile 17 Before being attached to and slid to the desired position, the frame 1 It can be concluded. Frame 1 Decorative member 3 The conclusion of the agreement may be carried out at a different location before the installation of the ornaments, and the corresponding ornamental members 3Frame with 1 It is installed on a properly fitted transport trolley at the installation location (e.g., a building, a mobile container, or other object). 11 It can be transported to ).

[0051] Individual decorative components 3 Individual frames 1 Then, guide profile 17 It is mounted on top and, by the sliding movement principle described above, locks 12 Therefore, it slides to the corresponding fixed position. In this way, the decorative member 3 These are arranged vertically (on different floors) and horizontally (within a given floor), as shown in Figures 16a and 16b. In this way, the resulting ornaments can be fabricated in a desired area or object 11 Not only on one side, but also on, for example, two or more sides, the object 11 It is possible to cover the entire structure with this ornament. As shown in Figure 16b, special frames are used to form the corners of the ornament, as shown in the two alternative examples in Figures 15a and 15b. 1 and base member 5 These frames are designed. 1 The frames described above are shown in Figures 6a to 6c. 1 These frames differ only in shape, but 1 Furthermore, the corresponding running mechanism 4 and slide rails 7 It is equipped with.

[0052] The resulting ornaments are made from different decorative components. 3 , in other words, particularly different visual layers 6 Decorative member having 3 By combining these elements, it can be formed as desired. The first floor of the left portion of Figure 16b is a visual layer realized, for example, as a green screen. 6 Decorative member having 3 This green screen is used to simulate, for example, the exterior of a building or another part of a real building using computer technology that will be implemented later. Example 2

[0053] In the second exemplary embodiment, all guide profiles 17 It is oriented horizontally, in contrast to the first exemplary embodiment, fastening profile 14 It is not oriented horizontally, but vertically. Therefore, the supporting structure 15 is at least one vertical support profile 34 and at least one vertical fastening profile 14 Equipped with vertical fastening profiles 14 is a support profile 34 Support structure for a solid substrate 15 It can also serve the function of supporting. To install ornaments over a wider area, a support structure 15 is a support profile 34 and fastening profiles 14 These alternate, that is, two adjacent support profiles 34 One fastening profile in between 14 There exists, and conversely, two adjacent fastening profiles 14 One support profile in between 34 It is assembled so that it exists. Support structure 15 Furthermore, as already described in more detail in the first exemplary embodiment, the object 11 and catwalk 2 Offset means for offsetting horizontally from 13 It includes an offset means. 13 is a guide profile 17 Perpendicular to, and fastening profiles 14 and support profiles 34 They are also oriented perpendicularly to the direction. For example, longitudinal profiles. 16 As described in the first exemplary embodiment, the offset means 13 The object 11 It is used to conclude an agreement.

[0054] In comparison with the first exemplary embodiment, the second exemplary embodiment shown in Figure 12 has a driving mechanism 4 The locking mechanism has been changed. 4 guide profile 17The specific way in which it moves along is also modified. In this illustrated embodiment, the travel element of the locking mechanism 10 is a guide profile 17 front 22 Move along, specifically the driving element 10 This is realized as a wheel having a recess. This recess allows the wheel to be used as a guide profile for the rail. 17 front 22 It contacts the guide profile, and one side of the wheel is the guide profile. 17 Located on the outside, the other side of the wheel is the guide profile. 17 The inside, i.e., the guide groove 23 It is located inside.

[0055] As shown in Figure 12, guide profile 17 It has the shape of a letter H or a rotated serif letter I, similar to the first exemplary embodiment. In particular, guide profile 17 These are three walls, namely guide profiles. 17 front 22 And, guide profile 17 back 25 And, guide profile 17 front 22 and guide profiles 17 back 25 A guide profile that is perpendicular to and connects these two parts. 17 bulkhead 24 It includes the following frame 1 Driving mechanism 4 is a guide profile 17 front 22 It can move along the second part, that is, the downward-facing part. In this way, decorative members can be arranged vertically on multiple levels. 3 It is possible to install this. At the same time, in this embodiment, each frame 1 These are perpendicular to each other (specifically, only 3m in this case, which is the frame in this embodiment). 1 Two different offset horizontal guide profiles (also accommodate heights) 17 It can be attached to the frame. 1 is, frame 1 The upper side (i.e., frame)1 At least one running mechanism of the upper longitudinal rail 4 via and at least one running mechanism on the underside of frame 1 (i.e., the lower longitudinal rail of frame 1) 4 via guide profile 17 It can be attached.

[0056] Similar to the first exemplary embodiment, the modular structure is a towing system 33 It is equipped with guide profiles 17 Because it is oriented horizontally, the traction system 33 is, frame 1 Used to move horizontally, frame 1 It is not used to pull the frame vertically up and down. 1 (and by extension, decorative components) 3 Frame with 1 Also, at the desired position, here is the guide profile 17 To fix it in the desired horizontal position above, guide profile 17 is at least one lock 12 It includes, for example, a frame 1 The guide profile is positioned at the desired location by a screw. 17 It will be concluded. Example 3

[0057] In a third exemplary embodiment, the modular structure is described in relation to the installation of ornaments on a mobile container and the support structure 15 Assembly and subsequent decorative components 3 The individual stages of the installation are shown in Figures 17a to 17d.

[0058] As shown in Figure 17a, the leg 19 First, the object 11 (Specifically, it is attached to the mobile container, and the object 11 Used to make it horizontal. In addition, other legs 19 Also, the object 11 Offset means extending in a direction perpendicular to the direction from 13 by object11 The connection is fastened to the following: In the illustrated embodiment (a 12m long container is used), the individual offset means 13 They are placed at intervals of 2.5m, and are catwalks. 2 However, it is placed on top of it. The offset means of this first column is shown in Figure 17a. 13 Offset means 13 is the object 11 Therefore, it is particularly extendable or tiltable from its base. Legs 19 This is an offset means 13 It is fastened to the end of and therefore the object 11 It is supported by a solid substrate at a certain horizontal distance from it, and therefore the support structure is relative to the solid substrate. 15 It constitutes a support element to provide support.

[0059] In the opposite direction, i.e., upward, the connecting element is realized as a spike in the illustrated embodiment. 27 However, offset means 13 These connecting elements extend from the ends. 27 Above, vertical guide profiles 17 and vertical support profiles 34 The shape and dimensions of the spikes are attached to the guide profile. 17 and support profiles 34 It is adapted to be mounted internally. As shown in Figure 17b, in this exemplary embodiment, the guide profile 17 These are the two outermost connecting elements 27 (i.e., the first and fifth connecting elements) 27 ), as well as the central third connecting element 27 It is attached to the second and fourth connecting elements. 27 Supporting profiles 34 It is attached.

[0060] As shown in Figure 17c, the support structure of this embodiment 15 There are two more offset means. 13 It has a row of , i.e., a total of 3 levels. The second row is an offset means. 13 is the object 11The third row of offset means is fastened to the ceiling. 13 is the object 11 Support structure built above 15 These offset means are fastened to a portion of the structure. 13 Upstairs, there's a catwalk. 2 Support structure will be placed. 15 The legs 19 , offset means 1 3 Guide profiles 17 , and support profiles 34 In addition, supporting structures 15 It is equipped with bracing profiles that contribute to better stability and strength. These bracing profiles are, for example, support profiles. 34 and the adjacent guide profile 17 It is fastened diagonally between them.

[0061] Guide profile in this exemplary embodiment 17 and support profiles 34 The embodiment is the same as that already described in detail in the first exemplary embodiment. Therefore, the guide profile 17 is, frame 1 Access opening for installation 18 And, frame 1 A lock to fix it in the desired position, i.e., the desired height. 12 It is further equipped with individual support profiles. 34 As explained in more detail above, guide profiles 17 Frame along 1 The above towing system for raising or lowering 33 Further accommodates the guide profile, as already described in the first exemplary embodiment. 17 Frame above 1 The sliding movement of the frame 1 The driving mechanism located on top 4 This is achieved by the following. The frame is further, in the embodiments shown in Figures 17a to 17d, the frame 1 Height (and the decorative member to be installed) 3 It is implemented in the same manner as the first embodiment, except that the height is 2.5m.

[0062] The final step in forming the resulting ornament is the decorative component. 3 Frame with 1 Support structure 15 The object is to be installed on top. In Figure 17d, the resulting ornament consists of six decorative members. 3 It is formed by and its visual layer simulates the exterior of a house with windows. This ornament was made, for example, as follows: First frame 1 towing system 33 Support structure 15 Pull it up to the upper floor and lock it there. 12 It was fixed by the second frame. 1 towing system 33 By raising it, then, lock 12 by the first frame one floor below 1 It was fixed under. Next, the third frame 1 guide profile 17 Installed from the top down to the bottom floor, with three decorative elements at the top and bottom. 3 A step was formed. Next to this step, in the same manner, three decorative members were added above and below. 3 It formed another step.

[0063] As shown in Figures 17a to 17d, the supporting structure 15 At least a portion of the object 11 It is also constructed on the other side, supporting structure 15 This part here refers to the object 11 It is used to place weights to prevent it from tipping over. However, at the same time, decorative member 3 This support structure 15 Can be installed on top. Corner frame 1 When using this, for example, as shown in Figure 15a or Figure 15b, the ornament is the object 11 It may be manufactured along all sides.

[0064] The above exemplary embodiments of modular structures for attaching decorative elements can be modified or combined in various ways. For example, the modular structure of the third embodiment can be used to fasten to buildings or to objects other than mobile containers in general. Various alternative forms may have individual elements of the modular structure, for example, guide profiles. 17 Frame for 1 The sliding movement is due to different running mechanisms. 4 Therefore, a different guide profile than that described in the examples 17 This is possible depending on the shape. Alternatively, modular structures can be made with a single guide profile. 17 It may only have the following: decorative members. 3 Visual layer 6 This does not need to be implemented as a physically modeled ornament; it may be implemented as, for example, a green screen, a blue screen, or an LED panel. [Industrial applicability]

[0065] The modular structures described above can be used not only for installing outdoor decorations for films that simulate real buildings, but also for installing indoor decorations, or decorations that simulate real environments, such as seascapes or other natural landscapes. In addition to the film industry, the modular structures may also be used in the entertainment industry, for example, as decorations for amusement park attractions or various other events.

[0066] In addition to physically formed decorative elements, modular structures may be used to install decorations based on modern technologies, such as green screens, blue screens, or LED technology, or technologies not yet developed. Modular structures may also be used to create interactive decorations (sometimes linked to LED technology, video, or VR content) for educational purposes, for example. This could be used, for example, along historic townscapes, open-air museums, or nature trails.

[0067] Another application of modular structures can be found in creating decorations for simulating military training grounds (for example, simulating the real environment of a city or urban area, or simulating the actual environment of a shooting range). [Explanation of Symbols]

[0068] 1 frame 2 Catwalk 3. Decorative components 4. Driving mechanism 5 Base member 6. Visual Layer 7 Slide rails 8 braces 9 Housing of the running mechanism 10 Driving Elements 11. Object 12 Rock 13 Offset means 14 Fastening profiles 15 Support structures 16 Longitudinal profiles 17 Guide profiles 18 Entry opening 19 Legs 20 Handrails 21 Extension 22 Front view of the guide profile 23 Guide groove 24 Guide profile partition 25 Back of the guide profile 27 Connection Elements 28 Chamfered area of ​​the travel mechanism 32 Openings for mounting elements 33 Towing System 34 Support profiles 35 Mounting elements 36 Traction elements 37 Winch

Claims

1. A modular structure for installing decorative objects, particularly outdoor decorations for movies that simulate real buildings, wherein the modular structure comprises a support structure (15) having at least one fastening element for fastening to an object (11) and / or at least one support element for supporting against a solid base material, the modular structure further comprises at least one frame (1) for supporting decorative members (3) that are removablely attached to the support structure (15), the support structure (15) comprises at least one guide profile (17), each frame (1) comprises at least one running mechanism (4) that is slidable on the guide profile (17), and the frame (1) is slidable relative to the support structure (15) via the running mechanism (4) and the guide profile (17).

2. The modular structure according to claim 1, characterized in that the support structure (15) comprises at least two guide profiles (17) that are offset from each other and parallel to each other, and each frame (1) comprises at least two running mechanisms (4) that are slidable on different guide profiles (17).

3. The modular structure according to any one of claims 1 to 2, characterized in that the guide member (17) is provided with a lock (12) for fixing the frame (1) to the guide member (17) at a fixed position.

4. The modular structure according to claim 3, characterized in that the lock (12) comprises a latch that is rotatably fastened within the guide profile (17).

5. The modular structure according to any one of claims 1 to 4, characterized in that the support structure (15) comprises an offset means (13) for horizontally offsetting the guide profile (17) from the object (11).

6. The modular structure according to claim 5, characterized by comprising a catwalk (2) arranged on the offset means.

7. The modular structure according to any one of claims 1 to 6, characterized in that the frame (1) comprises at least one slide rail (7), the running mechanism (4) comprises at least one running element (10), and a space for clamping a part of the guide profile (17) is defined between the running element (10) and the slide rail (7).

8. A modular structure according to any one of claims 1 to 7, comprising a traction system (33) for sliding the traveling mechanism (4) on the guide profile (17), the traction system (33) comprising a traction element (36) and a mounting element (35) for connecting the traction element (36) to the frame (1).

9. The modular structure according to any one of claims 1 to 8, characterized in that the support structure (15) comprises at least one support profile (34) which is at least one support element for supporting the support structure (15) with respect to a solid substrate.

10. The modular structure according to claim 8, characterized in that the support structure (15) comprises at least one support profile (34) which is at least one support element for supporting the support structure (15) with respect to a solid substrate, and the traction element (36) is housed within the support profile (34).

11. A modular structure according to any one of claims 1 to 10, characterized in that all guide profiles (17) are oriented vertically, or all guide profiles (17) are oriented horizontally.

12. The modular structure according to any one of claims 1 to 11, characterized in that the object (11) is a mobile container.

13. The modular structure according to claim 12, wherein the support structure (15) comprises at least one connecting element (27), and the at least one connecting element (27) and the at least one guide profile (17) slide into each other.

14. A modular structure according to any one of claims 1 to 13, comprising at least one decorative member (3) fastened to the frame (1) and having a visual layer (6), wherein the visual layer (6) covers the entire frame (1) when viewed from the front.

15. The modular structure according to claim 14, characterized in that the decorative member (3) comprises a base member (5), the base member (5) is fastened to the frame (1), and the visual layer (6) is located on the base member (5).