MULTILAYERED LOCK STRUCTURE

TR202614711U5Pending Publication Date: 2026-09-21STARBOND METAL PANEL KIREMIT INS ITH IHR SANAYI VE TICARET LTD SIRKETI
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Patent Information

Application Number
TR202614711U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-08-28
Publication Date
2026-09-21
Estimated Expiration
2036-08-28
Patent Text Reader

Abstract

The invention relates to a multi-layered standing seam structure developed for use on the roof and / or facade surfaces of buildings. The invention consists of a standing seam layer forming the outer cladding surface and providing the standing seam connection, an insulation layer positioned on the back surface of the standing seam layer providing thermal and / or sound insulation, a polyurethane-based adhesive layer integrating the standing seam and insulation layers, and a metal sheet layer on the opposite surface of the insulation layer. The insulation layer can be made of rock wool, EPS, or polyurethane-based insulation material. The invention aims to reduce assembly stages and labor requirements in roof and facade applications by combining the functions of metal standing seam cladding and insulation in a single, factory-integrated structural element.
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Description

MULTILAYERED LOCK STRUCTURE TECHNICAL FIELD The invention is for roofing and facade cladding systems used in the building and construction industry. It relates to the field, and specifically to heat and / or sound insulation using metal interlocking cladding elements. enabling the insulation layer to be formed as an integrated structural element. It is related to multi-layered interlocking structures. More specifically, the invention involves a first layer of standard or high-ply ribbed material. insulation with a interlocking structure, the second layer providing heat and / or sound insulation. from the first layer, the third layer is the insulation layer in question, with a locking structure. an integrating polyurethane-based adhesive layer and a fourth layer a sheet of metal positioned on the opposite surface of the insulation layer It relates to a multi-layered structural element. Within the scope of the invention, the insulation layer in question is subject to the conditions of use and requirements. Depending on the required technical performance, rock wool or EPS (expanded polystyrene) or may contain polyurethane-based insulation material, thus allowing for different temperatures. insulation, sound insulation, fire performance and suitable for usage requirements It enables the creation of layered interlocking structures. The invention is particularly suitable for residential buildings, commercial buildings, industrial buildings, factories, and Covering the roofs and / or facades of structures such as warehouses, and thermal insulation for these structures. and / or sound insulation applications. Multilayer structure Thanks to its integrated design, the cladding and insulation are separate structures. reducing the need for its application in the form of elements in the construction site environment and the ability to apply cladding and insulation together in a controlled manner. is the goal. 2 STATE OF THE ART In the building and construction industry, the external environment, especially the roof and facade surfaces of buildings... protection against adverse conditions, reduction of heat loss within the building and meeting needs Various coatings and insulation materials are used to provide sound insulation in case the sound is heard. These systems are utilized. In this context, metal interlocking cladding systems are used. Thermal insulation materials and insulated panel systems are widely used in construction. It is among the solutions. In metal interlocking cladding systems, metal sheet or profiled metal Cladding elements are applied to the building surface, and these elements... a continuous roof and / or by joining them together through interlocking zones A facade cladding surface is being created. Metal cladding elements are used in the structure. It forms the part of the surface that comes into contact with the external environment and is protected from rain, snow, wind, and This helps protect the structure against similar external influences. However, the use of the metal interlocking cladding element alone does not affect the structure. in terms of ensuring the necessary heat and / or sound insulation performance inside This is insufficient. Therefore, metal interlocking coating is used in known applications. An additional insulation layer is created under or behind the system. The insulation layer in question depends on the intended use and the desired performance. EPS, polyurethane-based materials, rock wool, or similar insulation materials. It can be manufactured from various materials. Traditional metal interlocking cladding. In these systems, such insulation materials are separate from the metal cladding element. It is applied in layers. In these types of known applications, the insulation layer is formed by a metal interlocking cladding element. Although they are used together within the same structure, in terms of production and assembly... They are considered as independent structural elements. In other words, The metal interlocking cladding element and insulation material are pre-integrated in one product. It is not presented in this form; the placement of the insulation material on the building surface and the metal clamp cladding element on top of the insulation layer or Separate application stages are needed, such as applying it beforehand. 3 This situation requires various techniques, especially in large-surface roof and facade applications. This leads to problems related to the application. Firstly, the coating and insulation... Due to its application as separate structural elements, the number of assembly steps is increasing. Transportation of insulation material, its positioning on the building surface, holding or fixing in the required position and then metal plating The elements need to be applied. Therefore, a single coating element Unlike the mounting of multiple consecutive units on the same structural surface, Many application processes are carried out. The coating and insulation are separate structures. the assembly stages and labor requirements of its implementation as elements It increases. The insulation layer must be positioned and maintained at the desired location on the building surface. Its creation becomes dependent on the application conditions and the quality of workmanship. The separately applied insulation material should be evenly distributed on the surface. not being positioned, variations in insulation thickness in different regions, or insulation The formation of gaps between the layers results in reduced insulation performance. implementation problems that may prevent it from being implemented at the level It can create a smooth and continuous layer on the surface of the insulation layer. The quality of how it is created depends on the implementation quality. The fact that the metal cladding and the insulation layer are applied independently of each other, creating an integrated and controlled structure between two structural elements This makes it difficult. The insulation material is part of the metal cladding element. Because it was not prepared in advance, two different structural elements may come into contact with each other during assembly. It needs to be positioned in a compatible way. Especially metal cladding. In systems where the elements interlock to form a continuous surface, this interlocking geometry of the insulation layer and the back surface of the cladding element Proper positioning is also a matter that needs to be considered. It is coming. The fact that the insulation is independent of the cladding system means that it can be used on-site. This leads to an increase in operations and materials management. Metal Separate transportation of cladding elements and insulation materials, 4 It needs to be stored, prepared, and applied. This is especially true in this situation. In applications where roof and facade surfaces are extensive, the organization of the installation This can lead to increased complexity and a longer implementation process. The separate transportation, preparation, and handling of cladding and insulation materials. The need for implementation complicates construction site operations. In current systems, the insulation layer is prefabricated onto the cladding element. not integrated into the environment, controlled in the production environment some of the processes that can be carried out will be transferred to the field of application. This is the case. However, the insulation layer is pre-fabricated together with the cladding element. If it is created, the location of the insulation and its relationship with the cladding element are important in production. This integration can be checked at this stage. In known applications, this integration... The absence of insulation necessitates its creation and coating separately during application. It requires being associated with the element. Furthermore, in known insulated sandwich panel systems, the insulation core is metal. They can be found integrated between surfaces as a factory process. However These systems consist of a panel made up of an outer metal surface, an insulation core, and an inner metal surface. Due to its structure, it has a different construction and assembly than metal clamp cladding systems. It has this characteristic. Therefore, in known sandwich panel systems, insulation... its integrated nature, the fact that the integrated structure in question is made of interlocking metal cladding the problem of its implementation along with its system-specific structural and assembly features It does not solve the problem directly. Sandwich panels are a traditional metal interlocking cladding. It has a different product and assembly structure than other systems. Accordingly, the fundamental technical problem in the known state of the art is the metal clamp. metal clamps that perform the function of external coating in cladding systems The insulation layer, which provides heat and / or sound insulation, is in a separate structure from the element. Because they are implemented as elements, these two elements are part of a single controlled system. The inability to present it as an integrated structural element. Due to this fundamental problem, separate assembly is required for metal cladding and insulation. The necessity of these stages, the insulation material must also be applied to the building surface in 5 stages. Positioning and fixing, insulation continuity depends on application conditions and The quality of workmanship depends on achieving the desired integrity between the cladding and the insulation. also provided during assembly, different structural elements can be transported separately. and the preparation and consequently the implementation time and labor requirements increase. Technical problems are emerging. Therefore, the metal interlocking cladding element and the insulation layer, the insulation an intermediate layer that enables controlled integration of the cladding element with a metal plate located on top and opposite the insulation layer a system aimed at creating a multi-layered, integrated structural element together A solution is needed. In conclusion, due to the drawbacks described above and the current usage Due to its shortcomings, it has become necessary to make improvements in the relevant technical field. Therefore, an invention is needed to overcome these problems. DEFINITION OF INVENTION The invention is for roofing and facade cladding systems used in the building and construction industry. It relates to the field, and specifically to heat and / or sound insulation using metal interlocking cladding elements. enabling the insulation layer to be formed as an integrated structural element. It is related to multi-layered interlocking structures. The invention is designed for use on the roof and / or facade surfaces of buildings. It relates to a multi-layered interlocking structure, with a metal interlocking cladding element and heat and / or sound insulation combined within a single integrated structural element. It brings. The invention involves a multi-layered interlocking structure; its outer surface and interlocking connection. a clamping layer as the first layer forming its geometry, the clamp in question a layer positioned on the back surface of the material that provides heat and / or sound insulation. As a second layer, an insulation layer, connecting the insulation layer to the bonding layer. A third layer connects these two layers, enabling them to integrate with each other. as a bonding layer and an insulation layer relative to the interlocking layer 6 a fourth layer positioned on the side and covering the insulation layer It contains a sheet of metal. The interlocking layer, which forms the first layer, is applied to the exterior of the roof and / or facade surface. It consists of a metal material that forms the coating surface. and a clamp that enables them to be connected to each other through adjacent clamp structures. It includes geometry. The interlocking layer, application area and structural Depending on the nature of the requirements, a standard pitch or high pitch It can have a profile geometry. Thus, the same basic multilayer Structures with different interlocking profile geometries while preserving the structural principle. It is possible to create its elements. The insulation layer, which forms the second layer, is located on the back surface of the interlocking layer. and provides the required heat and / or sound insulation on the building surface It contributes to ensuring this. The insulation layer depends on the area of ​​use and Depending on the desired technical performance, rock wool, EPS or polyurethane based. It can be made from insulation material. Thus, different thermal conductivity and sound different insulation requirements according to insulation and usage conditions Structures can be created. EPS, rock wool and polyurethane can also be used in BBFs. Essential materials are materials that can be used for the insulation layer. It has been stated. The third layer consists of the adhesive layer, the interlocking layer, and the insulation layer. positioned between them and fixing the two layers together. and ensures its integration. The adhesive layer is polyurethane-based. It is made of adhesive. Thus, the interlocking layer of the insulation layer its position on the back surface is maintained and the interlocking layer and the insulation layer are separate. Instead of being applied as structural elements, they are combined during the production phase. It is able to form an integrated structure. The fourth layer, a sheet metal layer, is the interlocking layer of the insulation layer. It is positioned on the opposite side according to the layer and the insulation layer is on the outside. by covering the remaining surface, the insulation layer is protected and the multi-layered 7 It contributes to ensuring the integrity of the organization. Thus, cohesion layer, insulation layer, polyurethane bonding layer and metal sheet layer They form an integrated structural element that works together. By integrating these layers, previously separate structures were possible. metal cladding and insulation applied in the form of structural elements beforehand It is possible to prepare it as a combined and controlled structural element. This allows the insulation layer to be applied separately to the roof or facade surface. placement and subsequent installation of the metal clamp cladding element and this insulation The need for a multi-stage application process is reduced. The invention involves a polyurethane bonding layer between the interlocking layer and the insulation layer. integration via the insulation layer relative to the interlocking layer This allows its location to be determined and protected during the production phase. This ensures that the insulation layer is also available in the application area. application that may result from positioning and fixing minimizing differences and applying insulation together with the cladding element. This is ensured by integrating the insulation into the metal cladding element during the production phase. This reduces assembly stages and labor requirements, and shortens application time. abbreviation and ensures the controlled and integrated application of insulation. that is intended. The invention's multi-layered structure allows the insulation layer to be composed of different materials and different types of components. It can be implemented in a way that allows it to be created in various thicknesses, and Thus, it can be adapted to different building types and different insulation requirements. Similarly, the interlocking layer can be standard ribbed or high ribbed. created to produce roof and facade cladding with different profile geometries. It can be used in various applications. The multi-layered interlocking structure created within the scope of the invention is applied to the building surface. during implementation, adjacent structures are connected to each other through their interlocking geometries. By joining them together, a continuous roof and / or facade surface can be created. Thus, the insulation is achieved with a cladding layer that performs the coating function. 8 The insulation layer that performs its function is located together within the same structural element. when implemented, numerous structures are connected to each other via a clamp connection. It is possible to cover the entire surface of the building with this. In conclusion, the invention involves a tack layer, an insulation layer, and polyurethane bonding. The layer, thanks to its layer arrangement in the form of metal sheet layers, is a metal coating. and combines insulation functions in a single integrated structural element; assembly resulting from the separate application of cladding and insulation reducing the number of stages, shortening the implementation time, and reducing labor requirements. reduced and controlled application of the insulation layer together with the cladding element. It enables its implementation. The invention concerns a multi-layered interlocking structure for larger and smaller, different They can be produced in various sizes and dimensions. DETAILED EXPLANATION OF THE INVENTION This detailed explanation describes the invention's multi-layered interlocking structure. The preferred alternatives to this structure only lead to a better understanding of the subject. This is explained in a way that is geared towards and does not create any limiting effects. The invention concerns a multi-layered interlocking structure for the roofs and / or facades of buildings. a single integrated structural element that combines coating and insulation functions on its surfaces It was developed to enable this to be carried out through. The invention involves a multi-layered interlocking structure, with functional and structural components interconnected. It consists of four fundamental layers that are related as follows: layers, a docking layer located on the external side, the back of the docking layer an insulation layer on its surface, a seam layer and an insulation layer a bonding layer and an insulation layer located between them to the interlocking layer It is arranged in the form of a sheet of metal on the opposite side. The interlocking layer forms the outer surface of a multilayered interlocking structure and is part of the structure. It is the metal cladding element located on the side of the surface that is in contact with the external environment. 9 The interlocking layer will provide covering for the roof and / or facade surface. It has an extending metal body, and on that metal body there are many adjacent A clamp that enables connection with layered clamp structures. It has a specific geometry. The interlocking layer is suitable for different building types, roofs and facades. different profiles to be adapted to their geometries and usage conditions They can be created in their geometries. In this context, the interlocking layer is a standard It can have a ribbed or high-ribbed profile geometry. Standard The geometric difference between ribbed and high-ribbed constructions is the interlocking mechanism. geometry of the rib region in the profile section of the layer and the resulting profile It can be created based on its height and / or cross-sectional form. Seam layer The interlocking geometry found on it allows adjacent structural elements to connect with each other. It is designed to allow for the combination of multiple elements. Thus, multiple elements can be combined. by combining layered interlocking structures side-by-side and / or sequentially A continuous roof and / or facade cladding surface can be created. (Seam) layer, metal-based sheet or profiled metal material It can be created, and the metal material used is used in the construction industry. possessing mechanical and environmental resistance properties suitable for the conditions. It can be selected in such a way as to whether it will be the surface of the interlocking layer or the external environment. It has a suitable surface coating to increase its resistance to the conditions. It is possible. The back surface of the interlocking layer contains an insulation layer. Insulation layer, heat and / or sound insulation required within the structure and / or on the building surface. It is the layer that contributes to providing insulation. The insulation layer is a clamping layer. It will move together with the layer and interlock when applied to the structural surface. It is positioned to be part of the same structural element as the layer. The insulation layer depends on its intended use and the desired technical performance. It can be made from different insulation materials. In this context, insulation layer, rock wool, EPS or polyurethane-based insulation material It may include. Which of these materials will be used depends on the structure. intended use, required level of thermal insulation, sound insulation needs, fire safety. depending on technical requirements such as performance and application conditions It can be determined. The insulation layer consists of only one layer of material. 10 as may occur, depending on the required technical performance, more than one It can also be created by using insulation materials together. Accordingly insulation layer, insulation materials with different properties layered on top of or next to each other By positioning them sideways, they can be formed into a multi-component insulation structure. The thickness of the insulation layer also depends on the insulation requirements of the building application. It can be modified depending on its performance. Thus, the same basic multi-layered Interlocking structures utilize different insulation thicknesses to create technical variations in construction. It can be adapted to their needs. An adhesive layer is located between the interlocking layer and the insulation layer. The adhesive layer is a bonding intermediate between the interlocking layer and the insulation layer. forming a layer and the insulation layer is determined according to the interlocking layer. It ensures that it is kept in position. The bonding layer consists of a polyurethane-based adhesive. Polyurethane adhesive provides adhesion between the core layer and the insulation layer. by creating a connection, we can prevent these two layers from separating and much contributing to the layered interlocking structure acting as an integrated structure. It is located. The adhesive layer covers the entire back surface of the clamping layer. as applicable, depending on the required adhesive strength and the insulation used Depending on the material and application geometry, the specific back surface It can also be applied to these areas. Accordingly, the adhesive layer is a continuous layer. in the form of an adhesive layer or adhesive areas created in specific regions. It can be implemented in this way. The thickness and quantity of the adhesive layer applied, the insulation used the structure of the material, the surface properties of the locking layer and the desired adhesion This can be determined depending on its strength. Thanks to the adhesive layer. the insulation layer, the back surface of the interlocking layer predetermined This ensures that the insulation layer is held in place on the building surface. It is also positioned during application and is independent of the clamping layer. This reduces the need for fixing it in place. 11 Bonding of the insulation layer to the locking layer and the adhesive layer. As a result, the interlocking layer and the insulation layer are two independent structures. not as individual elements, but as elements that can be carried together, implemented together, and acted upon together. It can be created as an integrated structural element capable of handling various functions. A metal sheet layer on the opposite side of the insulation layer relative to the interlocking layer. is positioned. The metal sheet layer covers the back surface of the insulation layer. a metal that covers and helps protect the insulation layer from external influences It is a basic layer. The metal sheet layer forms the back surface of the insulation layer. It can be formed to cover completely or partially. Metal sheet layer, preserving the physical integrity of the insulation layer, installation of the insulation layer and to reduce its exposure to external influences during use and to create a multi-layered structure. a smooth and controlled surface on the back of the interlocking structure It contributes to its creation. In this type of multi-layered interlocking structure, the interlocking layer is on the external side, The metal sheet layer is located on the opposite side of the interlocking layer; insulation. The interlocking layer is positioned between these two metal layers. The bond between the outer layer and the insulation layer is provided by polyurethane-based adhesive. It is provided by the layer. Therefore, the relationship between the layers will be from the external environment inwards. in this way: Interlocking layer → Adhesive layer → Insulation layer → Metal sheet layer It can be arranged in this way. However, the positioning of the insulation layer relative to the interlocking layer. The main technical structure in terms of; the insulation layer on the back of the interlocking layer and these two layers are connected to each other via an adhesive layer. It is a bonding process. The metal sheet layer is on the opposite surface of the insulation layer. by finding the multi-layered structure surrounding the insulation layer in question It forms the complementary metal layer. 12 Within the scope of the invention, the four layers in question are brought together during the production phase. by introducing it, a fabricated, integrated multi-layered interlocking structural element. can be created. In this production approach, the desired interlocking layer is first desired. depending on the profile geometry, for example, standard ribbed or high ribbed profile. It can be shaped; then polyurethane is applied to the back surface of the interlocking layer. An adhesive layer can be created by applying adhesive, and an insulation layer can also be formed. It can be placed on the adhesive layer in question. Through the insulation layer, between the interlocking layer and the adhesive layer After being joined, a metal sheet layer is placed on the opposite surface of the insulation layer. By placing them in position, the multi-layered structure can be completed. As a result of these processes... interlocking layer, bonding layer, insulation layer and metal sheet layer together become a single structural element that can be transported and applied together to the building surface. It can be brought. The production process is carried out in a factory or controlled production environment. Thanks to this, the position of the insulation layer on the interlocking layer, insulation The thickness of the layer and the method of applying the adhesive layer are determined in advance. It can be controlled under specified production conditions. Thus, insulation may result from the additional application of the layer on the building surface It is possible to reduce differences in positioning and implementation. Multiple multi-layered clamping during the application of the invention to the structural surface The structures are brought together side by side. The interlocking layers of adjacent structures, A continuous outer cladding surface is formed by interlocking geometries. It creates a connection. A clamp connection is the adjacent area of ​​a structure's clamping zone. by mechanically relating the structure to its corresponding interlocking region It can be accomplished. In this way, only the outer metal cladding surface is created on the building surface. not only that, but the insulation layer continues on the back side of the outer coating surface as well They progress together within the same structural elements. Thus, more than one 13 As a result of combining the layered interlocking structure, the cladding and insulation A roof and / or facade system can be created that shows continuity together. The invention covers an application using a standard ribbed interlocking layer, The interlocking layer has a standard rib geometry, and the interlocking layer in question Its geometry allows adjacent structures to be joined together. This In the structure, the insulation layer is standardized via a polyurethane bonding layer. The corrugated interlocking layer is bonded to the back surface of the metal sheet. It is located on the opposite surface of the insulation layer. The invention includes an alternative design using a high-ply interlocking layer. In practice, however, the interlocking layer is different compared to the standard ribbed application. It is manufactured to have a rib / profile geometry. High rib a polyurethane adhesive layer on the back surface of the interlocking layer This insulation layer is created from the selected insulation material during application. It bonds to the interlocking layer via the adhesive layer and provides insulation. A metal sheet layer is located on the opposite surface of this layer. The use of rock wool in different application methods in terms of insulation layer. In this case, a polyurethane layer is applied to the back surface of the interlocking layer of the rock wool layer. It is integrated into the interlocking layer via the adhesive layer. Stone wool. Its use as an insulation layer, especially for combining heat and sound insulation. It can be preferred in applications where this is desired. Alternatively, the insulation layer can be made of EPS material. the back of the clamping layer via a polyurethane bonding layer bonding to the surface and the opposite surface of the metal sheet EPS layer It seals the insulation core formed by EPS with a seam layer. It is held in a protected position between layers of metal sheet. In another application, the insulation layer is made of polyurethane-based insulation material. This can be done using polyurethane-based insulation material, interlocking. It is positioned between the metal sheet layer and the interlocking layer, and 14 The bond between the insulation materials in question is a polyurethane-based adhesive. This is done through the layer. In each of these alternatives, the basic technical structure remains the same; only the clamping mechanism... profile geometry of the layer and / or material type of the insulation layer It is changing. Thus, different product configurations are interlocked with the same multi-layered interlocking. It can be implemented under the principle of its structure. The insulation layer is bonded to the back surface of the interlocking layer with a single continuous bond. as well as through the layer, especially the insulation material depending on its properties or the profile geometry of the interlocking layer, multiple It can also be bonded using the adhesive region. The adhesive layer the areas where it will be applied, the fixing of the insulation layer according to the interlocking layer It can be determined in a way that will provide this. Within the scope of this invention, the insulation layer can be produced in different thicknesses. The thickness of the insulation layer determines the thermal and / or sound insulation requirements of the building. Its performance can be determined accordingly. This allows for the same interlocking layer. Products with different insulation performances using geometry can be created. Similarly, sheet metal comes in different thicknesses, widths, and surface characteristics. It can be formed. A metal sheet layer forms the back surface of the insulation layer. It can be sized to provide protection, as well as having a multi-layered interlocking structure. a structural surface on the back to facilitate assembly and transport It can also be arranged in such a way as to create... One of the main advantages of the invention is that the coating and insulation are separate structural elements. instead of being implemented independently of each other in the construction site environment, It can be prepared as a pre-integrated structural element. Thus, the structure the insulation must also be laid and positioned on the surface, and then secured with metal clamps. It is possible to reduce the number of steps involved in applying the coating element. is happening. 15 The invention also enables the insulation layer to be carried together with the interlocking layer, and This allows for the application of insulation material as a separate product. This reduces the need for transportation and further preparation on the building surface. This situation, especially on large roof and facade surfaces, makes material management and installation challenging. It provides convenience in terms of organization. Another technical effect of the invention is that the insulation layer works together with the interlocking layer, and By keeping it in the position determined during the production phase, the continuity of the insulation is ensured. The advantage is that it can be created in a more controlled manner. Numerous structures side by side. With this application, insulation layers are also applied sequentially across the building surface. It can be positioned so that the insulation progresses together with the cladding system. It is possible to create an integrated structure. This structure also allows the insulation layer to function independently under construction site conditions. to reduce application differences that may arise from its positioning It contributes. In particular, the insulation thickness determined during the production phase, the position of the insulation relative to the interlocking layer and the bonding layer formed The connection is a predetermined layer when the structural element arrives at the site. It ensures that it has the necessary structure. Thanks to the structure formed by the four layers of the invention working together, the interlocking layer is external. cladding and interlocking function, insulation layer for heat and / or sound insulation. its function is to integrate layers by layer, bonding layers its function and the protection of the insulation layer of the metal sheet and much more It fulfills the function of completing the layered structure. By combining these functions into a single structural element, the existing Coating and insulation processes, which are carried out separately in different applications, are performed using the same product. This can be done via the surface of the building. The number of elements to be applied and the assembly stages can be reduced, and the insulation can be improved. It can be applied together with the coating, and the application can be more controlled. This contributes to its realization in this way. 16 The scope of the invention is not limited to the applications described above, but includes the following: The basic structure consists of a locking layer, an insulation layer, and polyurethane adhesive. different provided that the technical relationship between the layer and the metal sheet layer is preserved profile dimensions, different clamping geometries, different insulation thicknesses, and different metal sheets. The dimensions are applicable.

Claims

1- The invention describes a multi-layered material for use on roof and / or facade surfaces. It is a clamping structure, characterized by being positioned on the exterior side and the roof and / or create a cladding surface on the facade surface and adjacent interlocking a clamp shaped to form a locking connection with its structures layer; on the back surface of the interlocking layer facing the interior of the structure positioned and designed to provide heat and / or sound insulation on the building surface. a formed insulation layer; between the interlocking layer and the insulation layer positioned and connecting the interlocking layer to the insulation layer to hold the insulation layer in a specific position relative to the bonding layer a polyurethane-based adhesive layer formed; and the insulation layer positioned on the opposite side relative to the interlocking layer and the insulation layer to protect the insulation layer by covering the interior surface of the structure It consists of a formed metal sheet layer. 2- According to Claim 1, it is a multi-layered interlocking structure, and its characteristic is; interlocking the layer, the profile height in the region where the clamping connection is created, and a standard pitched clamp or a high pitched clamp that specifies the clamp geometry It includes a clamping profile. 3- It is a multi-layered interlocking structure according to claim 1 or 2, and its characteristic is; interlocking heat transfer and / or between the metal sheet layer and the structural surface Stone wool, EPS, or other materials structured to limit sound transmission. It contains an insulation layer made of polyurethane material. 35