SOLAR PANEL MOUNTING BRACKET FOR SANDWICH PANEL.

TR202505081YActive Publication Date: 2026-06-22ROOFSAN ENDÜSTRİYEL ÜRÜNLER SANAYİ TİCARET ANONİM ŞİRKETİ
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Patent Information

Application Number
TR202505081U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2026-06-22
Estimated Expiration
2035-04-25

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Abstract

This invention relates to a solar panel mounting bracket (1) with an angle-adjustable central connection point, which enables the safe, fast, and damage-free mounting of solar panels to be mounted on sandwich panel roof surfaces at different slopes and angles. The solar panel mounting bracket (1) of the invention, thanks to its angle-adjustable central connection point (10), enables mounting on sandwich panel roofs (C) and trapezoidal roofs with any slope. The most striking feature of the invention is the easy adjustment of the position of the solar panels (A) thanks to the central connection point (10) that adapts to any angle. In this way, the optimum angle is achieved according to the slope of the roof (C), increasing the efficiency of the panel (A). This connection point (10) also allows the system to be fixed while maintaining its rigidity.
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Description

1 TARIFF SOLAR PANEL MOUNTING BRACKET FOR SANDWICH PANEL. Technical Area This invention is a solar 5 that will be mounted on sandwich panel and trapezoidal form roof surfaces. panels and other parts to be attached to the roof at different slopes and angles especially for installation that is safe, fast and does not damage the roof surface. with a solar panel mounting bracket that has an adjustable central mounting point. This is related to the technical capabilities of this invention, which significantly shortens assembly time. Among the benefits. 10 The invention concerns a solar panel mounting bracket, particularly a central bracket with angle adjustment. Thanks to its connection point, it can be used on sandwich panel roofs and trapezoidal roofs with any type of slope. The form makes it possible to mount it on roofs. The most remarkable feature of the invention is that it can be mounted at any angle. Thanks to this adaptable central connection point, 15 solar panels Its position can be easily adjusted. This allows it to adapt to the slope of the roof. Panel efficiency is increased by providing the optimum angle. This connection point... It allows the system to be secured by interlocking while maintaining its rigidity. Furthermore, the product... Its design allows for the mounting of solar panels in any direction, on the roof. It eliminates the limitations associated with its form. 20 State of the art Today, in rooftop solar energy systems, metal is particularly used. fasteners used in panel installations on substantial sandwich panel roofs. The systems are generally fixed-angle welded or top-down bolted. 25 They are based on connection methods using aluminum systems. These systems are mostly It is applied to the panel sheet metal by direct screwing or riveting. and, over time, come loose from their screws due to wind power, and such interventions Over time, corrosion, loss of sealing, and structural damage can occur on the roof surface. This can lead to undesirable consequences. 30 2 Sandwich panels typically have inner and outer surfaces made of galvanized sheet metal or aluminum. made of panels, with insulation materials such as polyurethane or rock wool filling in between. It has a composite structure. This structure provides insulation against processes such as drilling and welding. and it tends to lose its carrier properties. However, most current systems offer the possibility of mounting at a fixed angle. and does not allow for any angular adjustment other than the natural slope of the roof. This also This prevents solar panels from operating at optimum efficiency throughout the year, increasing energy costs. This leads to losses in production and does not provide adequate ventilation. These systems also offer customized solutions for different roof slopes and orientations. instead, because they have a uniform fixed connection approach, during assembly It must be supported by various spacers, tilting devices, or additional adapters. This situation increases both the labor time and the assembly process. This increases the margin of error. Although some advanced mounting systems offer angle-adjustable structures, this These systems typically have many parts, complex assembly processes, and high-performance capabilities. It is costly. At the same time, the adjustment mechanisms in these systems are easy to use in the field. not feasible; generally angles determined in a factory setting It is limited or requires special mounting hardware. 20 On the other hand, among the existing connectivity systems, this includes a central connection point. the angular tilt of the panel can be adjusted from this point, and at the same time the system Structures that maintain their rigidity and stability are quite limited. The natural slope of the roof... capable of panel alignment according to the system, providing this from a single center, for both 25 The lack of structures that offer both mechanical strength and ease of assembly. This creates a significant technical gap in the market. Therefore, with current techniques; Ability to assemble sandwich panels and trapezoidal sheet metal while preserving their delicate structure. 3 The panel can be easily adjusted according to the angle of the roof, The ability to create angled connections to accommodate all slopes and orientations, It offers easy on-site assembly, Simultaneously addressing needs such as not damaging the roof's watertightness. There is no assembly method that can provide this. The solar panel mounting bracket, the subject of this invention, overcomes all the technical shortcomings listed above. It has been developed to offer an innovative, holistic and practical solution. This The invention, especially the panel thanks to its central connection point that is adaptable to any angle. This makes it easier to adjust the position of the sandwich according to the desired slope in the field. It offers the possibility of installation without damaging the structural integrity of the panel. Thus, 15 This both increases panel efficiency and simplifies the assembly process. Detailed description of the invention The parts of the assembly base that were created to achieve the purposes of this invention. This is shown in the attached figures; Figure 1 shows a perspective view of the solar panel mounting bracket, which is the subject of this invention. Figure 2 shows a front perspective of the solar panel mounting bracket, which is the subject of the invention. It is the appearance. Figure 3 shows a 30° side perspective of the solar panel mounting bracket, which is the subject of the invention. It is the appearance. 4 Figure 4 shows the mounting bracket, the subject of the invention, mounted on the solar panel. It is the appearance. Figure 5. The subject of the invention is a mounting bracket attached to the edge profile of the solar panel. This is a detailed view of the situation. 5 The parts that allow for the description of the mounting bracket, which is the subject of the invention, are shown in the attached figures. They are numbered as follows: A: Solar Panel 10 B: Solar Panel Edge Profile C: Sandwich Panel Roof 1. Solar Panel Mounting Bracket 2. L carrier 3. Center Clamp 15 4. Edge Clamp 5. Spring 6. Screw 7. Nut 8. Sandwich Panel Clip 20 9. EPDM Tape 10. Central Connection Point 10.1 Allen Bolt The subject of the invention is a solar panel mounting bracket (1); 25 - Sandwich Panel Clip (8) is positioned on and the mounting system forming the substructure for fixing the other parts of the solar panel (A) assembly by ensuring alignment with the slope of the roof (C) An L-carrier (2), which is a carrier element that offers the possibility of adjusting its height, 30 - Placed on the L-carrier (2) and the edge of two adjacent solar panels (A) positioned to make contact with profile (B); the spring located underneath (5) thanks to flexible and balanced printing on both panel frames (B). by applying, thermal expansion, vibration or external forces a central clamp (3) which prevents loosening and maintains the alignment of the panels, 5 - Mounted on the end points of the L-carrier (2), the outer edge of the solar panel (A) fitted into its frame (B); ensuring the position of the panel is fixed, an edge clamp (4) that prevents displacement due to external factors. - Solar panel frame (B) with center clamp (3) and edge clamp (4) components positioned between them, and these components are continuous and flexible on the panel. and ensures equal pressure application; prevents the system from relaxing in the face of external influences. a spring (5) which is a metal elastic part in the form of a preventive spiral. - The middle clamp (3) and edge clamp (4) elements are attached to the panel frame (B) to ensure it is secured from above with manual or electric tools applying downward pressure by squeezing; pre-tensioning the spring (5) system and contributes to keeping all assembly components securely together at least two screws (6), 20 - Working together with the screw (6), clamp (3, 4) elements to the panel frame (B) ensures that it is securely fixed; reduces the applied force. by transmitting the spring (5) system balances the stress and the entire assembly structure at least two nuts (7) that complete the assembly, 25 - The sandwich panel is mechanically clamped to the outer surface (C) of the roof from below. It allows for installation without damaging the roof surface. It is tightened by screwing (6) from the side surface and through the nut (7) L- fixing the lower end of the carrier (2) and thus creating the vertical connection 30 at least two that ensure the system is securely attached to the carrier surface Sandwich Panel Clips (8) 6 - Placed between the outer surface of the sandwich panel roof (C) and the clip (8); water by preventing leakage, it provides a complete seal, and also in the long term. an EPDM tape that maintains insulation performance (9), - Positioned on the central connection point (10), angle 5 during assembly enabling precise adjustment of the system's settings. Clamping and fastening that allows it to be rigidly fixed in position. L- which has at least two Allen bolts (10.1) used as its element. in the lower region of the carrier (2) and with the sandwich panel clip (8). positioned at the connection point; the solar panel is 10 inches from the roof slope. It can be adjusted in this way, and can be rotated and locked at specific angles. and pitch adjustment, allowing the system to operate safely in every aspect. a central connection point (10) It includes. 15 This invention describes the mounting of solar panels (A) on sandwich panel roofs (C), securely and angularly adjustable fastening on different roof slopes The invention relates to a solar panel mounting bracket (1) that provides a solar panel mounting bracket on the roof. It enables installation quickly, rigidly, and without causing structural damage. This enables the establishment of highly efficient and sustainable energy systems. It provides. The subject of the invention is the assembly leg (1), with Sandwich Panel as the supporting substructure element. There is an L-carrier (2) positioned on the clip (8), and this part is 25 The task is to adjust the mounting height and secure other mounting components. It undertakes the L-carrier (2) on the edge profile of two adjacent solar panels (A). (B) with a central clamp (3) that applies pressure, securing the outer edge profile (B) of the panel. An edge clamp (4) is mounted. This clamp (4) makes the elements flexible and balanced. In order to maintain the pressure, a spiral-shaped spring (5) is placed between them. Spring 30 (5), the connection against external effects such as thermal expansion, wind load and vibration It ensures that it remains relaxed. 7 Secure the clamp elements (3 and 4) to the solar panel frame (B). For securing, at least two pieces tightened from above using manual or electric tools. screw (6) and the screw (6) working with these screws (6) transmitting the assembly force downwards. At least two nuts (7) are used. The entire system is sandwich panel roof (C) 5 The clip (8) that enables mounting without damaging the surface, with lower mechanical clamping. is fixed and the lower end of the L-carrier (2) with screw (6) – nut (7) combination It integrates thanks to this. It prevents water penetration and provides long-term insulation. For this purpose, an EPDM tape (9) is placed between the clip (8) and the sandwich panel surface. It is placed. 10 The most remarkable and innovative aspect of the invention is the central connection point (10), L-carrier providing the connection between clip (2) and clip (8) and the angular position of the system It is the key component that determines. This connection point (10) allows for precise angular adjustments. It ensures that the process is carried out and that the system is securely fixed at the specified angle. Middle 15 At least two Allen bolts (10.1) located on connection point (10), assembly During this process, the user can manually adjust the angle and maintain this position rigidly. It offers the possibility of locking the solar panel (A) to the slope or orientation of the roof (C). It can be positioned to provide optimum efficiency. Advantages and Reasons for Preferring the Invention Secure Installation: Thanks to the Sandwich Panel Clip (8), the sandwich panel roof (C) Installation is carried out without damaging the surface and without welding. This also applies to the roof. (C) It protects the insulation and structural integrity. Adapts to Every Angle: Suitable for all roof slopes thanks to the central connection point (10). It allows for angle adjustment. High Rigidity: Thanks to the locking with Allen bolt (10.1), the system can withstand over time It does not loosen, it maintains its stability. 30 8 Easy and Quick Assembly: The system can be quickly assembled with the combination of screw (6) and nut (7). They are combined, saving on labor costs in the field. Leakproof Guarantee: Water penetration is prevented thanks to EPDM tape (9), panel(A) Six areas remain dry. 5 Flexible and Modular Design: Thermal expansion and external effects with spring (5) support. It is absorbed; it can be easily adapted to different panel sizes and roof structures. Long-lasting use: Corrosion-resistant parts and leak-proof construction. 10 Thanks to this, the system requires no maintenance and operates smoothly for years.

Claims

9 REQUESTS 1) - Sandwich Panel Clip (8) positioned on and mounting system forming the substructure for fixing the other parts of the solar panel (A) Assembly 5 by ensuring that it is aligned with the slope of the roof (C). An L-carrier (2), which is a carrier element that offers the possibility of adjusting its height, - Placed on the L-carrier (2) and the edge of two adjacent solar panels (A) positioned to make contact with profile (B); the spring located underneath (5) thanks to flexible and balanced printing on both panel frames (B) 10 by applying, thermal expansion, vibration or external forces a central clamp (3) which prevents loosening and maintains the alignment of the panels, - Mounted on the end points of the L-carrier (2), the outer edge of the solar panel (A) fitted into its frame (B); ensuring the panel's position is fixed, 15 an edge clamp (4) that prevents displacement due to external factors. - Solar panel frame (B) with center clamp (3) and edge clamp (4) components positioned between them, and these components are continuous and flexible on the panel. and ensures equal pressure application; prevents the system from relaxing in the face of external influences. 20 a spring (5) which is a metal elastic part in the form of a preventive spiral. - The middle clamp (3) and edge clamp (4) elements are attached to the panel frame (B) to ensure it is secured from above with manual or electric tools Applying downward pressure by squeezing; pre-tensioning 25 to the spring (5) system and contributes to keeping all assembly components securely together at least two screws (6) that provide - Working together with the screw (6), clamp (3, 4) elements to the panel frame (B) ensures secure fastening; applies force downwards 30 by transmitting the spring (5) system balances the stress and the entire assembly structure at least two nuts (7) that complete the assembly, - The sandwich panel is mechanically clamped to the outer surface (C) of the roof from below. It allows for installation without damaging the roof surface. It is tightened by screwing (6) from the side surface and through the nut (7) L- fixing the lower end of the carrier (2) and thus creating the vertical connection 5 at least two that ensure the system is securely attached to the carrier surface sandwich panel clips (8), - Placed between the outer surface of the sandwich panel roof (C) and the clip (8); water by preventing leakage, it provides a complete seal, and also offers 10 in the long term. an EPDM tape that maintains insulation performance (9) Containing and - Positioned on the central connection point (10), angle 15 during assembly enabling precise adjustment of the system's settings. Clamping and fastening that allows it to be rigidly fixed in position. L- which has at least two Allen bolts (10.1) used as its element. in the lower region of the carrier (2) and connection with the sandwich panel clip (8). positioned at this point; the solar panel is adjusted to the slope of the roof at 20 It allows for adjustment, and can be locked in place by rotating it at specific angles. Pivot adjustment allows the system to operate safely in every aspect. characterized by having a central connection point (10) that can do so. solar panel mounting bracket (1). 30