INNOVATION IN THE SOLID MATERIAL, PIPE-FREE CONNECTION GROUP FOR 8-INLET / OUTLET PANEL RADIATORS.
Patent Information
- Authority / Receiving Office
- TR · TR
- Patent Type
- Patents
- Current Assignee / Owner
- COMMİTAL ISI EKİPMANLARI KALIP SANAYİ & TİCARET LİMİTED ŞİRKETİ
- Filing Date
- 2023-02-13
- Publication Date
- 2026-06-22
Smart Images

Figure 00000011_0000 
Figure 00000012_0000 
Figure 00000013_0000
Abstract
Description
1 TARIFF SOLID MATERIAL FOR 8-INLET / OUTLET PANEL RADIATORS. INNOVATION IN THE FITTING GROUP THAT DOES NOT CONTAIN MANUFACTURED PIPES. Technical Area 5 The invention is used to manufacture heating panel radiators and to reduce production costs. It relates to reducing connectors. The subject of the invention is the tubing of heating panel radiators with 8 inlet and outlet features. used so that it can be produced without the need for both input and output It relates to the T-shaped connector group that provides this feature. 10 Previous Technique Today, the fittings used in the manufacture of heating panel radiators It is of considerable importance. 15 similar to the subject of the invention for the production of connected parts used in panel radiators. There are existing techniques. In the previous technique, developed in 1984, the heating panel was placed inside the radiator. Thanks to the connecting piece, the water inlet and outlet of the heater panel radiator is only on the side. It occurs through parts. However, the connection points are only on the side. Its positioning significantly reduces the usable space of the heating panel radiator. Water 20 inlet and outlet are only possible from the sides of the heater panel radiator. This created the need to place connecting pieces at different points on the panel. In response to this need, another technique was developed in 1984. This technique... thanks to this, another connection piece is attached to the bottom of the heater panel radiator. It has been positioned in such a way that water enters from below. Same 25 the connector piece located on the bottom panel and the connector on the side A pipe is used to provide water transmission between the parts. Heating panel Water inlet and outlet to the radiator are only from the side and bottom of the panel. This is happening. This situation is lacking in terms of developing the area of use. 30 remains. 2 In 1996, a new technical study was conducted based on existing techniques. This has been implemented. In the current technology, the heater radiator is placed at the bottom of the panel. The connecting piece was added to the middle of the panel using a new technique implemented in 1996. This design allows water inlet and outlet to be located in the middle of the heater radiator panel. This has been ensured. Connection 5 is located at the center of the lower panel. a new pipe between the part and the connecting piece located on the side It has used. Due to the placement of the connecting piece in the middle, the first pipe used... Its length has been extended. However, its dimensions have decreased due to the increasing number of pipes used. The changes have brought about a number of problems. The pipe sizes are very large. The variety and increasing number of items lead to storage problems. Therefore, 10 Production costs are increasing. The closest prior patent application, file number EP1249285B1, is listed above. It was developed in 2001 due to the problems mentioned. In technology, the heating panel There is a connector in the middle of the radiator's bottom panel. This connector The central part of the component is square-shaped and the solid material (wirerod) is cold-molded. 15 It is obtained by forging and drilling the inside. The connecting piece. An L-shaped channel has been opened in the center to direct the water flow. This allows the heating panel to function. The radiator is designed with 6 inlet and outlet connections. The panel is located on the top of the radiator. There is another fitting where the thermostatic valve is installed. This The central part of the connector is square-shaped and the solid material (wirerod – 20 It is obtained by cold forging and then drilling (solid-fil machine). Heater the connector located in the center of the lower panel of the panel radiator The flow of water inside the heater panel radiator is directed by the opened L-shaped channel. This was accomplished without the use of pipes. Thus, unlike previous techniques, There was no need to use different types and numbers of pipes. However, 25 The heating panel radiator with 6 inlet / outlet valves, as per patent file number EP1249285B1. Its availability has not been able to expand its usage area sufficiently. Only the lower middle and It offers the possibility of connecting from the sides. The square shape of the central areas of the fittings facilitates water inlet and outlet. The problem of welding the sleeves providing the connection to the central part brings with it 30 It has been brought about by welding the square-shaped central regions of the connecting parts. The sleeves caused changes in the welding settings during production. Welding Changing the settings of the system required for the production of heating panel radiators Compatible with the existing production lines of all panel radiator manufacturers worldwide. 3 This has also brought about problems such as its inability to be used as a production flow. This has caused disruptions and reduced efficiency. The problems mentioned above... This has made it necessary to conduct research and development studies on connecting parts. Purpose of the Invention 5 In its most general form, the invention is the connection necessary for the production of heating panel radiators. The parts are arranged in a T-shape to provide both water inlet and outlet. That is its purpose. The invention expands the application area of heating panel radiators and is suitable for all countries worldwide. compatible with the existing production lines of panel radiator manufacturers 10 The aim is to reduce production costs by using this method. The invention relates to the development of numerous types and kinds of heating panel radiators required for their manufacture. By eliminating pipes and preventing storage problems, lean manufacturing is achieved. Its purpose is to provide. The invention does not involve the use of pipes; instead, the preparation and welding of pipes are 15. shortening delivery time due to assembly using this method That is its purpose. Thanks to the invention, an 8-inlet / outlet panel can be created without using any pipes. By enabling the production of radiators, panel manufacturers will be able to assemble them. It eliminates the need to produce custom panels for specific spaces and installations, and a single 20 any size panel that can be attached at the bottom center, bottom side or side during the trip The aim is to create a usable set of connecting parts. Detailed Description of the Invention 25" tubeless pipe made of solid material for 8 inlet / outlet panel radiators. The diagrams below illustrate the innovations in the connector group. Figure 1 - Side View of Heater Panel Radiator Connection Fittings Figure 2 - Top View of Heater Panel Radiator Connection Fittings Figure – 3 Subject of the invention: Heating Panel Radiator T-shaped Connection Piece 30 Top View 4 Figure 4 - Top view of the upper right side connecting piece. Reference Numbers: 1. Upper Right Side Connector 2. Lower Right Side Connector 5 3. Middle Lower Connecting Piece 4. Lower Left Side Connector 5. Upper Left Side Connector 6. Ring 7. Sleeve 10 8. Side Bottom Entrance 9. Lower Side Exit 9.1. Lower Side Water Passage Hole 9.2. Bottom Side Water Outlet Hole 9.3. Side Entry Hole 15 10. Lower Middle Entrance 11. Lower Middle Exit 11.1. Lower Middle Water Passage Hole 11.2. Lower Center Water Outlet Hole 12. Thermostatic Valve 20 13. Water Crossing Channel 14. Side Upper Right Connection Center 15. Lower Right Side Entrance 16. Lower Right Entrance Connection Center 17. Lower Right Exit Connector Center 25 18. Middle Lower Entrance Connection Center 19. Center Lower Exit Connection Hub 20. Blind Pin B. Heating Panel Radiator The subject of the invention is heating panel radiators (B), which offer ease of production and efficiency. the side upper right connecting piece (1), the side lower right connecting piece (2) and the middle lower 5 The connecting piece (3) is shown in detail from the side in Figure – 1. As shown in Figure 1, the lower right side connecting piece (2) which is the subject of the invention is the lower right inlet connection center(16), lower right exit connection center(17), side lower inlet(8), It has lower side right inlet (15) and lower side outlet (9) connection areas. Lower side right The lower right outlet connection hub (17) located in the connecting piece (2) is cold forged 10 It is produced from solid material using the cold forging method and has a spherical shape. Two lower right outlet connection centers (17) made of filled material by the method By welding the sleeve(7), the lower side exit(9) and lower side right entry(15) pathways are obtained. Then, machining is performed on the lower right outlet connection center(17). by applying the mentioned lower right exit connection center(17) inside the T form 15 A channel and a lower side water outlet hole (9.2) are created. Two channels are formed in the T channel structure. There is one side inlet hole (9.3) and one bottom side water passage hole (9.1). T channel One of the side entry holes (9.3) in its structure is the lower side right entry (15) The water entering the heater panel radiator (B) to the lower right outlet connection center (17) It is the part where it is transferred. The other side inlet hole (9.3) in the T channel structure is the heater 20 Enter the panel radiator (B) from the lower side inlet (8) and connect to the lower right inlet. allowing water to pass from the center(16) to the lower right outlet connection center(17). This is the part. The hot water inlet to the heating panel radiator (B) is also connected to the lower side inlet (8). If provided, the lower side right entrance(15) and the side entrance in the T channel The connection is transferred to the lower right outlet connection center (17) via the hole (9.3). Lower right outlet 25 The water coming to the connection centre (17) is transferred to the front panel of the heater panel radiator (B). The passage is provided by the lower side water passage hole (9.1) in the T channel structure. In addition, another channel is created in the lower right exit junction centre(17) lower side used to remove water circulating in the heater panel radiator (B) It is the lower side water outlet hole (9.2) that opens to the outlet (9). (Figure – 3) 30 The lower right inlet connection, which is another semi-finished product of the lower right side connecting piece(2). The center(16) is made of pipe material and has a spherical form. Then the bottom The right inlet connection centre (16) is welded to the sleeve (7) to obtain the lower side inlet (8). 6 Finally, the two semi-finished products, the lower right inlet connection center(16) and lower right outlet connection centre(17) are welded together to the lower right side connection part(2) is formed. In the resulting lower right side connecting piece(2) this Thus, the hot water inlet is located at the lower side inlet (8) and the lower side right inlet (15). With two alternative water inlet ways and bottom side outlet(9) the water outlet 5 A water outlet has been created that can be used. Depending on the water connection method and According to the created flow path, the lower side exit(9), lower inlet(8) and lower side right inlet(15) Its use is provided. The channel structure with a T shape created in the lower right side connecting piece (2) is the heater. It can be used in all parts of the panel radiator (B). In addition, heater 10 All cold forged fittings used in panel radiator(B) are in spherical form. can be produced. Thanks to this, spherical-shaped fittings can be manufactured on all production lines. It can be used without disrupting the production flow. Production costs are reduced. Efficiency is achieved. The lower middle connection, which is another connection part of the heating panel radiator (B), is 15. The middle lower outlet connection center (19) located in part(3) is cold of the filled material. It is a spherical part formed by the forging method. Cold forging (19) The sleeve(7) is welded to obtain the lower middle outlet(11). Then machining The water flow direction to the middle lower outlet connection center(19) is 20 by the manufacturing method. For determination, through the lower middle water passage hole with L shape (11.1) It is formed. Located inside the lower middle outlet connection center(19) and L The lower middle water passage hole (11.1) in the channel structure in the form of water flow towards the front panel. It provides direction. By machining at the lower middle outlet connection center(19). Another channel created, which directs the bottom water towards the outlet from the rear panel, is 25 There is a central water outlet hole (11.2) with a flat shape. (Figure – 2) In this way, the bottom Hot water passes through the middle water passage hole (11.1) and exits through the lower middle water outlet hole (11.2). The mixing of the cold water is prevented. The lower inlet connection center (18) pipe located in the lower middle connection piece (3) It is made of material and has a spherical shape. Middle bottom inlet connection 30 The lower middle inlet (10) is formed by welding the sleeve (7) to the center (18). The lower middle inlet connection center (18) and lower middle outlet originating from the sleeves (7). connection centre(19) finally welded together to form the middle sub-connector part(3) is formed. Optionally, in the lower middle connecting part(3) 7 a central inlet (10) into which hot water enters which can be used and the water The lower middle outlet (11) from which the water exits is obtained. Depending on the connection method and According to the flow path created, the middle inlet (10) and the lower middle where the water exits The use of the outlet(11) is provided. The side bottom of the heater panel radiator(B) Thanks to the right connecting piece (2) and the middle lower connecting piece (3), three alternative 5 A hot water inlet and two alternative water outlets are thus obtained. Figure – 4 shows the upper right side fitting (1) where the thermostatic valve (12) is installed. is shown. The side upper right connecting piece (1) is located on the side upper right connecting piece. The central(14) material is produced by cold forging method and is spherical. It has a shape. Global shaped side upper right connection center(14) sleeve(7) 10 It originates from the upper right side connection center(14) sleeve(7) After welding, the upper right side connection center(14) was machined. A water passage channel (13) is created using the method. Water passage channel (13) Side upper right connection center (14) which is solid material (solid – wirerod – filmachine) It was created by drilling. The water passage channel (13) created is on the flow path 15 thanks to the thermostatic valve (12) connected to the sleeve (7) which is located and originates It adjusts the amount of water flow. When the thermostatic valve (12) is closed In this case, the thermostatic valve (12) sits on the water passage channel (13) and the water It does not allow passage. If the thermostatic valve (12) is open. It separates from the water passage channel(13) and allows water to pass through. 20 As seen in Figure 2, the heater panel is located on the upper right side of the radiator (B). connecting piece(1), lower right side connecting piece(2), lower middle connecting piece(3), side lower left connecting piece (4) and side upper left connecting piece(5) ring(6) It is connected. Water is supplied to the heater through the holes on the placed ring(6). The distribution between the connection parts is provided within the panel radiator (B). 25 To obtain the desired flow path in the heating panel radiator (B), turn the side top left connecting piece(5), lower left side connecting piece(4) and lower right side connecting piece Plugs are placed into the sleeves (7) on part(2). In this way water inlet and outlet route choice depending on the sleeves(7) where plugs are used three alternative hot water sources are obtained in the heating panel radiator (B) 30 Two alternative flow paths thanks to the inlet and two alternative water outlets. Two alternative flow paths are created in the heating panel radiator (B). These are explained in order below. 8 1. For the flow path, first the lower middle inlet (10) located in the lower middle connection piece (3) Thanks to this, hot water enters the water line and the hot water flows in the G1 direction. It is progressing. Hot water is progressing from the lower middle inlet (10) in the direction of G1, middle lower inlet. passing from the connection center(18) to the lower middle water passage hole(11.1) to the front panel It is transferred. 1. In the flow path, with the help of the lower right side connecting piece (2) plug, 5 lower side left connecting piece (4) and upper side left connecting piece (5) blind Because the pin(20) is welded and closed with the help of a plug, it goes to the front panel. Hot water passes through the upper right side connection piece (1). Upper right side connection piece The amount of water flowing to part(1) is controlled by thermostatic valve(12) It is adjusted. After the amount of water flow is determined in the thermostatic valve (12), 10 The hot water is transferred from the flow channel (13) to the ring (6) and the heating panel radiator (B) It circulates first on the front and then on the back. Water heating panel radiator (B) After completing its circulation in the G1 direction, it returns to the lower middle link. It reaches the lower middle outlet connection center(19) by turning to part(3). water flows from the lower middle water outlet hole (11.2) located at the lower middle outlet connection center (19) 15 It is transferred to the lower middle outlet (11) and exits through the heater panel radiator (B). Thus, the first flow path in the heating panel radiator (B) is completed. To obtain the 2nd flow path in the invention, the upper left side connecting piece(5) and the lower left side connecting piece (4) is closed with the plug, blanking pin (20) The source and the middle lower connecting piece (3) are attached to the sleeves (7) 20 Water flow has been prevented by installing plugs. This ensures that only the lower right side is affected. The connecting piece (2) has a side bottom inlet (8), bottom side right inlet (15) and bottom side The outlet(9) is in an open position for water to enter and exit. 2. Hot water in the flow path. There are two inlets for water to enter the heater panel radiator (B). one is the lower side entrance (8), and the other is the lower side right entrance (15). 25 When hot water enters the heater panel radiator (B) from the lower side inlet (8), it takes priority as the lower right inlet connector located in the lower right connecting piece(2) passing to the centre(16) and then to the lower right exit junction centre(17) It is transferred. The hot water is transferred to the T-shaped outlet located in the lower right outlet connection center(17). first into the side entrance hole (9.3) of the channel and then into the lower side 30 inside the same channel The hot water passes through the water passage hole (9.1). The hot water comes to the lower side water passage hole (9.1). Water is thus directed to the front panel, ensuring a flow of water in the G2 direction. If the hot water enters the panel radiator (B) from the lower side right inlet (15), it can enter directly. The other side entrance of the T-shaped channel located in the lower right exit junction centre(17) 9 It passes through the hole (9.3). Then, inside the channel which has the same T shape. The water is transferred to the front panel by passing through the lower side water passage hole (9.1) and G2 The water flow is ensured in that direction. 2. In the flow path, the hot water passing to the front panel comes to the upper right side connection piece (1) The flow rate of water is adjusted by means of a thermostatic valve (12). 5 After the amount of water flow is determined in the thermostatic valve (12), the hot water flow It is transferred from channel(13) to ring(6) and the heater panel radiator(B) first front then it circulates on the back side. The water is inside the heating panel radiator (B) G2 After completing its traverse in that direction, it returns to the lower right side connection. It rotates in part(2) and reaches the lower right exit connection center(17). Lower right 10 water returning to the outlet connection center(17) from the lower side water outlet hole(9.2) By passing through its outlet (9), it is provided to the heater panel radiator (B). Thus The second flow path in the heating panel radiator (B) is now complete.
Claims
REQUESTS 1. The subject of the invention is a pipe-free connection used in 8-inlet / outlet radiators. It is an innovation within its component group, and its defining characteristic is; - obtained by cold forging solid material, 5 of the hot water entering the panel and machining to prevent the cold water coming out from mixing with each other. The lower middle water passage hole (11.1) is L-shaped and straight in form, created by the method. The lower middle water outlet hole (11.2) has a lower middle outlet connection center (19) lower middle outlet (11) formed by welding sleeve(7) and pipe material manufactured spherical form middle lower entry connection center(18) sleeve(7) 10 The lower middle connection piece with a lower middle inlet (10) formed by welding. (3), - obtained by cold forging of solid material, machining method two side inlet holes (9.3) and one side water passage hole (9.1) were created It has a T-shaped channel that directs the flow of hot water and a 15-inch outlet for cold water. lower right outlet connection centre (17) with lower side water outlet hole (9.2) Lower side right entry (15) formed by welding two sleeves (7) outlet(9) and lower right inlet connection with spherical form made of pipe material. The lower side inlet (8) is formed by welding a central(16) sleeve(7). located lower right connecting piece (2) and 20 - obtained by cold forging a solid material into a spherical form side upper right connection center(14), the mentioned side upper right connection center(14) After welding of the sleeve(7), the aforementioned side was machined using the machining method. The upper right connection centre (14) has an L shape from the water inlet to the water outlet. By connecting the water passage channel (13) created by drilling and the mentioned sleeve (7) 25 thermostatic that adjusts the amount of water flow through the mentioned water passage channel(13) It includes the upper right side fitting (1) with valve (12).