Aluminum Frame Connecting Beam System for Floors

TR202421822BActive Publication Date: 2026-09-21ARMADA GRP İNŞAAT TURİZM GIDA SANAYİ TİCARET ANONİM ŞİRKETİ
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Patent Information

Application Number
TR202421822
Authority / Receiving Office
TR · TR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-09-21
Estimated Expiration
2044-12-31

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Abstract

The invention relates to a connecting beam (30) system that enables the fixing of frames (20) with C-shaped side channels (21) placed on raised floor feet (10) and placed on the ground or directly on the ground in long lines, without the need for screwing them together at certain intervals, used on the ground in areas such as terraces, balconies, walkways, etc. and in outdoor spaces.
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Description

1 TARIFF Aluminum Frame Connecting Beam System for Floors Technical Area The invention is a C-shaped side panel that can be placed on the ground in outdoor spaces such as terraces, balconies, and walkways. Aluminum frames with channels are covered with wood, WPC composite decking or 5 A connecting beam system used in the installation of coverings such as tile and ceramic. It is related to. The invention specifically applies to aluminum frames with C-channels on the side, rotary locks, and equal sides without the need for screws to each other via a fixing arm. with a double-sided fastening system that allows for connection and securing at intervals of 10 It is related. State of the Art Karotaş ceramic and deck coverings are used as floor coverings in both indoor and outdoor spaces. are preferred. Karotaş ceramic and deck coverings are briefly described as coverings in the specification. These will be referred to as cladding panels and will be used indoors and outdoors on terraces, 15 It is commonly preferred in areas such as balconies and walkways. In framed flooring applications, the first step in installing the cladding panels is to prepare the floor. It needs to be leveled. Leveling and floor height. In its adjustment, raised flooring as described in Turkish Standards TS 13776. The legs are frequently used. There are also 20 on the aforementioned floor legs. Aluminum frames are placed in long lines at specific intervals. And the aluminum frames are attached to the floor pedestals in such a way that they cannot be separated. Then the aluminum frames (beams) are placed parallel to each other in an equal manner. They are secured at intervals to prevent them from shifting. In current deck or tile applications using technology, wood, composite or metal 25 The frames are placed on the floor joists as long lines. Two-story frame. If used, the subframes are connected to the floor or floor pedestals and It is used as a support beam; the upper frames are also attached to the lower frames at a 90-degree angle. It is installed at intervals appropriate to the floor span and is used as a floor beam. Top Thanks to the connection of the carcasses to the sub-carcasses by screwing or nailing, the carcasses are 30 2 They are locked in place. Or the strength of the carcass and the top final coating. Carcass spacing is determined according to the values. Carcasses of equal size are obtained within the selected spacing measurement. The pieces are cut and prepared, and both ends will form a 90-degree angle to the main carcasses. It is attached by screwing it in with L-shaped connecting fittings on the right and left sides. Single In applications using multi-layered frame, this type of system has a limited height compared to other double-layered frame systems. It is more suitable for the type of flooring required. There is also an advantage in terms of the amount of material used. creates. In the current technique, the carcasses for the intermediate connections are cut to size, each one 4 L-shaped brackets for securing the connection, and at least 2 brackets for each bracket. A minimum of 8 screws are required, including 10. In practice, there were errors in the cutting process and partial misalignments in the screwing of the corner brackets. This is possible. In situations requiring disassembly, the screws must be removed before disassembly. Due to breakage and the inability to use the same holes and old screws, the screws and Some carcasses may require reprocessing. In all of the above-mentioned and similar situations, additional materials and application time are 15 days. and costs such as labor are involved. Therefore, in the known state of the art... The frames of wood, WPC composite decking, tile and similar coverings They need a system that allows them to be assembled with screwless connections. It has been heard. As a result of the research conducted on this subject, it was determined that the system with the number CN106661891A and the "System for 20 An application titled "securing slats for forming a raised floor or deck" was found. The application includes a deck flooring apparatus with C-channels on an aluminum frame. It is locked into the S-channel by means of its claws. A similar locking mechanism is also used from above on the deck. It is done via a coating under-channel. Significantly in situations requiring disassembly. This creates a labor requirement and it takes almost 25 hours to remove the assembly parts without breaking them. This is not possible. This also results in labor, time, and materials required for assembly / disassembly. It is a situation that leads to loss. Another application that was encountered as a result of the research conducted on this subject is: This is application number CN202509721U titled “Decoration wallboard system”. In the system mentioned in the application, locking is achieved with L-shaped connectors and screws. 30 and material deformation occurs during disassembly. In conclusion, the existence of the above problems and the inadequacy of the current solutions, This has made it necessary to make improvements in the technical field. 3 Purpose of the Invention The present invention eliminates the aforementioned disadvantages and contributes to the relevant technical field. This relates to aluminum beam connection systems for flooring, which offer new advantages. The main purpose of the invention is to connect a C-type device via a rotary locking fastening clip and connecting arm. Aluminum frames with side channels have 5 channels between them without the need for screws. The goal is to create a fastening system that ensures precise fixation. Another aim of the invention is to speed up the disassembly process and the reuse of materials. to enable its use. Another purpose of the invention is to create different carcasses, either without cutting or by cutting, by design. A rotating locking fixing beam made of plastic, capable of providing and using various spacing measurements. 10 via aluminum with C-shaped channels on the side, without the need for screws. The goal is to create a fastening system that allows the carcasses to be secured to each other. Another purpose of the invention is to rotate and fit into a C-type side channel with a rotary locking system. Clip-on extension secured to the frame from the side so that it cannot come out of the channel. The goal is to create a connecting system with its arms. 15 Another purpose of the invention is to secure the C-type frames on the side surfaces of the carcass with a rotary locking system. by turning 90 degrees to the channels and then turning it in the opposite direction without rotating it again from the channel The distance between the frame is determined by means of hanging locks that are not easily removed. A linkage system is created that enables the connecting arms to hold and lock. to put. 20 Another purpose of the invention is to cut the connecting arm at its marked points and attach it to different fixed points. The goal is to ensure the carcass connections are made to the specified dimensions. Another purpose of the invention is to attach the hanger locks to the U-shaped hanger arms from above via the walls. The connecting arm, which is positioned by being seated, and the hanging locks can be disassembled again from the top. The aim is to prevent them from leaving without being questioned. 25 Another purpose of the invention is to allow for convenient and quick disassembly of the flooring. A connection with removable, reusable locks and a connecting beam. The goal is to establish the system. Another purpose of the invention is to provide the same coverings for wood deck or WPC composite deck. The carcasses produced from this material will also have C-type side channels. 4 a connector that, if produced, could also be used in these carcass types The goal is to establish the system. To fulfill all the purposes mentioned above and those that can be derived from the detailed explanation. The invention is suitable for use on floors in indoor and outdoor areas such as terraces, balconies, walkways, etc. 5 used on and placed on the ground on raised floor pedestals or C-shaped lateral channels placed directly into the ground in long lines the frames being fixed to each other at specific intervals without the need for screws It is a connecting beam system that provides; • the compression plate that fits into the side channel, 10 that U-shaped suspension channel, that connecting piece that links the hanger channel and the compression plate, a swivel locking hook that rotates 90 degrees and is secured to the side channel, • consisting of empty boxes, the hanger that forms the short side of the hollow box and is U-shaped 15 walls placed on top of the canal, the outer walls forming the long side of that hollow box, those cut channels located opposite each other on the outer walls connecting arm It includes. 20 The structural and characteristic features and all the advantages of the invention are given in the figures below. And thanks to the detailed explanation written with references to these figures, it becomes clearer. This will be understood as such. Therefore, the evaluation should also include these forms and detailed explanations. This should be done taking that into consideration. Figures to Help Understand the Invention 25 Figure 1 shows the aluminum frame fixing beam system for the floor slabs that is the subject of the invention. It is the appearance within the system as a whole. Figure 2 shows the aluminum frame fixing beam system for the floor slabs that are the subject of the invention. It is a disassembled view from a perspective. Figure 3 shows the 30-inch aluminum frame fixing beam system for the floor slabs that are the subject of the invention. This is a top-mounted view. Figure 4 shows the aluminum frame fixing beam system for the floor slabs that is the subject of the invention. This is a perspective view of the lock mechanism as it is assembled. Figure 5 shows the aluminum frame fixing beam system for the floor slabs that is the subject of the invention. This is a side perspective view of the lock mechanism detail. Figure 6 shows the aluminum frame fixing beam system for the floor slabs that are the subject of the invention. Side section views (a) and (b). Figure 7 shows the front perspective (a), side (b), top (c) and rear view of the rotary locking hanger. perspective (d) views. Figure 8 shows the front view of the swivel lock hook. Figure 9 shows a front view of the rotary locking hanger clamping plate. 10 Explanation of Part References 10. Floor support 20. Carcass 21. Side channel 211. Entrance wall 15 2112. First inner side wall. 2113. Inner hilltop wall. 2114. First inner floor wall 30. Connecting beam 31. Rotating locking hanger 20 311. Compression plate 3111. Vertical longitudinal side walls 3112. Perpendicular short side walls 3113. Opposite side walls 6 3114. Base surface 312. Connecting piece 313. Suspension channel 3131. interior side walls 3132. inner floor wall 5 32. Connecting arm Box 321 322. Interior wall 323. Exterior wall 324. Cutting channels 10 40. Cladding plate Detailed Description of the Invention This detailed description describes an aluminum frame connecting beam for flooring, which is the subject of the invention. (30) The preferred alternatives to the system only lead to a better understanding of the subject. It is explained in a way that is directed towards and does not create any limiting effect. 15 Figure 1 shows the aluminum frame (20) fixing beam for the floors that are the subject of the invention. The system's appearance within a systemic whole is given. This larger system; • raised floor feet (10) placed on the floor, • placed at certain intervals in long lines on the floor feet (10), Frames made of aluminum with C-type channels on the sides (20), 20 • connecting beams (30) that connect the carcasses (20) with fixed dimensions, • Covering plates (40) placed on the C-type carcass (20), • Connector that enables the cladding plates (40) to be connected to the carcasses (20). from the beams (30) It consists of 25. 7 Figure 2 shows a disassembled view from a perspective perspective, suitable for outdoor spaces such as terraces and balconies. used and placed on the ground in walkway areas on raised floor feet (10) or in long lines directly on the floor screwing together carcasses (20) with C-shaped side channels (21) placed together The connecting beam (30) system which enables it to be fixed at certain intervals without needing to be fixed; 5 • The compression plate (311) that enters the side channel (21), o U-shaped suspension channel (313), the coupling that connects the hanger channel (313) with the compression plate (311) part (312), 10 Rotating lock hanger (31) which includes and is fixed to the side channel (21) by rotating 90 degrees, • connecting arm (32) consisting of a combination of hollow boxes (321), the hanger which forms the short side of the hollow box (321) and is in the shape of a U inner walls (322) placed on top of the canal (313), the outer walls (323) forming the long side of that hollow box (321), 15 the cutting channels located opposite each other on the outer walls (323) (324) connecting arm (32) It includes. Flooring that adjusts the height of the covering and ensures the floor is level. 20 C made of aluminum, with legs (10) laid in long lines at certain intervals. It is fixed from below to the carcasses (20) which have side channels (21) of type. C-type side channels (21) on both sides of the aluminum frame (20) shown in Figure 2 It is located in the side channels (21) of the carcasses (20) and rotates 90 degrees. Rotary locking hangers (31) and 25 that lock the carcasses (20) together at fixed intervals. The connecting arm (32) is placed at a 90-degree angle between the carcasses (20) at a fixed distance. They form and lock the carcasses (20) to which they are attached. Side channel (21); entrance opening from the wall (211), the first one adjacent to this entrance opening wall (211) from the inner side wall (2112), the inner top wall (2113) and the first inner base wall (2114) It consists of 30. Connecting beam (30); measuring determinant between rotary locking hanger (31) and frames (20) It consists of a connecting arm (32). 8 The rotary locking sling (31) consists of three parts: a gripping and clamping plate. (311), a U-type hanger channel (313), hanger channel (313) and compression plate (311) connecting cylindrical section connecting piece (312). The connecting arm (32) is in the form of a combination of hollow boxes (321) on the short side short inner walls (322), long outer walls (323) located on the long sides 5 and the cutting channels (324) located opposite each other on the outer walls (323) has. The compression plate (311) located at one end of the rotary locking hanger (31) has one diagonal rectangular prism cut into equal lengths at right angles to the diagonal It is in the form of. The long side walls (3111) of the compression plate (311) are short side 10 walls (3112) and cut into equal amounts at a right angle to one diagonal and to the other sides rounded cross opposite edge walls at the junction lines (3113) specific dimensions It has limitations: • Rotary locking hanger (31) compression plate (311) vertical long side walls (3111) The measurement between the side channel (21) and the inlet walls (211) is 15 Less than or equal to. • Swivel lock hanger (31) compression plate (311) vertical short side walls (3112) the measurement between the side channel (21) and the first inner side walls (2112) Less than or equal to the measure. • Swivel locking hanger (31) clamping plate (311) opposite edge walls (3113) 20 Measurement between the side channel (21) first inner side walls (2112) walls The measure between them is less than or equal to. • Compression plate (311) cross-sectional thickness, inner top walls (2113) inside side channel (21) is less than or equal to the measurement between the first interior floor walls (2114). • Diameter of the cylinder of the rotary locking hanger (31) connecting piece (312), side channel (21) 25 less than or equal to the measurement between the inlet opening walls (211) and joining The thickness of the cylinder of part (312) is less than the thickness of the inlet opening walls (211). Less than or equal to. The assembly of the frame (20) connecting beam (30) is two-stage. First, 2 rotary locking hangers are attached. (31) compression into the side channels (20) of aluminum carcasses (21) 30 by means of plate (311) the gap measurement of the inlet opening walls (211) of the side channel (21) It enters from the equal cross-section. The compression plate (311) entering the side channel (21) is opposite edge By placing the side channel (21) from the wall (3113) to the first inner floor wall (2114), both the surface 9 It will be. The rotary locking hanger (31) is attached to the opposite side wall (3113) and the side channel (21) inside the first. It is rotated 90 degrees in the positive direction perpendicular to the base wall (2114). Opposite edge The wall (3113) allows this rotation in a positive direction (clockwise) within the side channel (21). and the end of the turn is limited to 90 degrees. The compression plate (311) is in this position, perpendicular short The edge walls (3112) and the first inner side walls (2112) of the side channel (21) are flush. 5 The compression plate (311) is in a position where it cannot come out of the side channel (21) otherwise It becomes unable to exit the side canal (21) without being rotated in that direction. When the rotary locking hanger (31) is placed in the side channel (21), the direction of the hanger channel (313), It is selected so that it faces upwards after the locking process. The inner walls (322) located at both ends of the connecting arm (32) are U-type upward hangers 10 The carcasses (20) are fitted into the channel (313) from above. In this way, the carcasses are in equal dimensions. They are connected and locked together in parallel. Connecting aluminum frames (20) with C type side channels (21) to each other and connecting beam (30) to ensure that they lock together in fixed dimensions is used. The connecting beam (30) in question is preferably made of plastic material 15 It can also be manufactured from metal. The connecting beam (30), an independent connecting arm (32) and rotary locking hangers (31) formed and rotating locking hangers (31) to the side channels (21) of the frame (20) opposite each other They are inserted and brought into the locked position. During assembly, the rotary lock is in the locked position. The U-shaped hanger channel (313) on the outside of the hanger (31) will be in the upward direction 20 It is positioned. The inner walls (322) that form the short sides of the connecting arm (32) Each one is of a type and size that can fit completely and without gaps into the suspension channel (313). The hollow boxes (321) located in the body of the connecting arm (32) are selected for the length It can be reduced by cutting along the line. In this way, different length connecting arms (32) It becomes possible to obtain it. 25 External wall (323) providing the selected fixed dimension on the connecting arm (32) There are cutting channels (324) located opposite each box (321) on it. The connecting arm (32) together with the cutting channels (324) located on the outer wall (323). By cutting, the length can be reduced to shorter, fixed-gap intervals. Cutting Afterwards, the inner walls at both ends of the connecting arm (32) (322), the rotary locking hangers 30 (31) It is installed by attaching it to the upward U-shaped suspension channels (313) and the distance is fixed. If disassembly is required, the same operations can be quickly performed in reverse, thus allowing Swivel locking hooks (31) and connecting arms (32) are reusable. Rotary locking hanger (31) rotates in one direction into the C-type side channels (21) of the carcasses (20). It is locked. This direction is clockwise, the positive direction, for ease of application. The opposite sides of the two carcasses (20) that are to be placed parallel have been selected. placed in channels (21) and then clockwise 90 in side channels (21). The rotary locking hangers (31) which are locked by rotating them one degree, are locked into the side channels (21) then, after the connecting arm (32) is placed in the suspension channels (313) the connection The arm (32) rotates without being disassembled again, the locking hangers (31) inside the side channel (21) It remains in a state where it cannot turn back. 10 The rotating locking hangers (31) are placed opposite each other in the side channel (21) and clockwise in the same direction. turning in that direction and holding on so that it does not come out of the side channel (21) Afterwards, the connecting arm (32) which is placed on top of the suspension channel (313) is in its final locked position. It fixes one of the rotating locking straps (31) with the connecting arm (32) to the clock. While the other rotary locking hanger (31) 15 can be turned and removed in the opposite direction, in the negative direction The clamping plate (311) prevents rotation by working in reverse. Positive locking. Thanks to its restriction, the rotating locking hangers (31) located opposite each other with the connecting arm (32) When attempting to rotate, the disassembled direction for a selected rotary locking hanger (31) is negative. While the direction is positive, the other rotating locking hanger (31) opposite it becomes the positive direction. It comes. In this way, the connecting arm (32) and the rotary locking hanger 20 inside the side channel (21). (31) The assembled state makes rotation impossible in either direction.

Claims

11 REQUESTS 1. On the ground in outdoor areas, terraces, balconies and walkways. raised floor feet used and placed on the floor (10) C-shaped, placed on or directly on the ground in the form of long lines 5 Carcasses (20) with side channels (21) without the need to screw them together It is a connecting beam (30) system that enables it to be fixed at certain intervals, feature; • The compression plate (311) that enters the side channel (21), o U-shaped suspension channel (313), 10 the coupling that connects the hanger channel (313) with the compression plate (311) part (312), a rotary locking hanger which includes and is fixed to the side channel (21) by rotating 90 degrees (31), • consisting of empty boxes (321), 15 the hanger which forms the short side of the hollow box (321) and is in the shape of a U inner walls (322) placed on top of the canal (313), the outer walls (323) forming the long side of that hollow box (321) connecting arm (32) It includes. 20 2. The connecting beam (30) system is in accordance with Claim 1, and its feature is; external walls (323) A connecting arm containing opposite cutting channels (324) (32) is included.

3. The connecting beam (30) system conforming to Claim 1, its characteristic being; the long vertical side Measurement between the walls (3111), side channel (21) entrance mouth walls (211) 25 It contains a compression plate (311) which is less than or equal to the measurement between them.

4. The connecting beam (30) system is in accordance with Claim 1, and its feature is; rotary locking hanger (31) After entering the lateral canal (21), the lateral canal is rotated 90 degrees. (21) the first inner side walls (2112) and the vertical short side walls that face each other It contains a compression plate (311) which includes (3112). 30 5. The connecting beam (30) system conforming to claim 4, its feature is; the perpendicular short side Measurement between the walls (3112), side channel (21) first inner side walls (2112) compression plate (311) which is less than or equal to the measurement between the walls It includes. 35 12 6. The connecting beam (30) system conforming to Claim 1, its feature is; opposite side walls Measurement between (3113), side channel (21) first inner side walls (2112) walls It contains a compression plate (311) which is less than or equal to the measurement between them.

7. The connecting beam (30) system is in accordance with Claim 1 and its characteristic is that it is made of plastic material. It is a manufactured product. 5