Heating radiator structure with reinforcing ribs
By setting intermediate guide ribs and vertical reinforcing ribs on the horizontal plate in the middle of the radiator, and adding horizontal air guide strips, the problem of low heat exchange efficiency of the radiator was solved, turbulent airflow was achieved, and heat exchange efficiency was improved.
Patent Information
- Application Number
- CN202420154722.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-23
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-01-23
AI Technical Summary
Existing radiators have limited heat exchange efficiency and a single airflow pattern, resulting in low heat exchange efficiency.
Intermediate guide ribs and vertical reinforcing ribs are formed on the left and right walls of the middle horizontal plate of the radiator, and horizontal air guide strips are added to enhance the turbulence effect of airflow.
By enhancing airflow turbulence, the heat exchange efficiency of the radiators is improved.
Smart Images

Figure CN223484969U_ABST
Abstract
Description
Technical fields:
[0001] This utility model relates to the field of radiator technology, and more specifically to a radiator structure with reinforcing ribs. Background technology:
[0002] The existing radiator heat exchanger is composed of multiple welded radiators. One end of the whole unit has a liquid inlet and the other end has a liquid outlet. It is connected to the domestic boiler through a connecting pipe, so that the water can circulate. The hot water in the boiler flows into the radiator heat exchanger, and the heat is dissipated through the heat exchanger fins and exchanged with the outside air, thereby increasing the outside temperature. The water after heat exchange flows back into the boiler to increase its temperature, and then it is recycled again, and the cycle continues to increase its temperature.
[0003] Existing radiators typically consist of an upper tube, a lower tube, and a vertical tube in the middle. To improve heat exchange efficiency, heat exchange plates are fixed to the wall. However, existing heat exchange plates generally fix the upper tube, lower tube, and vertical tube to a middle plate, with vertical baffles formed at both ends of the middle plate. This allows air to enter from the bottom between the two vertical baffles and exit from the top (cold air enters from the bottom, expands after heating, and automatically exits from the top, achieving circulation). However, this method has limited heat exchange efficiency. Utility Model Content:
[0004] The purpose of this utility model is to overcome the shortcomings of the prior art and provide a radiator structure with reinforced ribs. It has intermediate guide ribs and vertical reinforcing ribs formed on the left and right walls of the middle horizontal plate. At the same time, horizontal air guide strips are added to increase the turbulence effect of air flowing through the radiator and improve the heat exchange effect.
[0005] The solution of this utility model to the aforementioned technical problem is:
[0006] A radiator structure with reinforcing ribs includes a radiator body. The radiator body includes an upper connecting pipe and a lower connecting pipe extending forward and backward. The upper end of the vertical pipe is welded and fixed to the middle of the bottom surface of the upper connecting pipe and communicates with the upper connecting pipe. The lower end of the vertical pipe is welded and fixed to the middle of the top surface of the lower connecting pipe and communicates with the lower connecting pipe. The radiator body is located in the middle of a middle horizontal plate. The radiator body is symmetrical about the middle horizontal plate. Front baffles extending vertically to the left and right are formed on the left and right sides of the front end of the middle horizontal plate. Rear baffles extending vertically to the left and right are formed on the left and right sides of the rear end of the middle horizontal plate. An air outlet is provided between the front baffle and the top of the middle horizontal plate, and an air inlet is provided between the rear baffle and the bottom of the middle horizontal plate.
[0007] Vertically extending intermediate guide reinforcing ribs are formed on the left and right walls of the intermediate transverse plates at the front and rear sides of the vertical tube. Vertically extending vertical reinforcing rib plates are formed on the intermediate transverse plates between the intermediate guide reinforcing ribs and the corresponding front or rear baffles.
[0008] The top of the intermediate guide rib is formed with a guide rib plate that extends forward in an arc shape, and the upper end of the guide rib plate faces the air outlet.
[0009] At least one horizontal air guide strip extending forward and backward is formed on the front wall surface of the rear baffle, the rear wall surface of the front baffle, and the front and rear walls of the vertical reinforcing ribs. The horizontal air guide strips on the front wall surface of the rear baffle intersect with those on the rear wall surface of the rear vertical reinforcing ribs. The horizontal air guide strips on the front wall surface of the rear vertical reinforcing ribs intersect with those on the rear wall surface of the rear intermediate guide ribs. The horizontal air guide strips on the front wall surface of the front intermediate guide ribs intersect with those on the rear wall surface of the front vertical reinforcing ribs. The horizontal air guide strips on the front wall surface of the front vertical reinforcing ribs intersect with those on the rear wall surface of the front baffle.
[0010] The upper part of the rear baffle covers the rear of the air outlet.
[0011] The outstanding effect of this utility model is:
[0012] It features central guide ribs and vertical reinforcing ribs formed on the left and right walls of the central horizontal plate. At the same time, it adds horizontal air guide strips to increase the turbulence effect of air flowing through the radiator and improve the heat exchange effect. Attached image description:
[0013] Figure 1 This is a partial structural schematic diagram of the present invention;
[0014] Figure 2 This is a partial structural diagram of the angle-changing part of this utility model. Detailed implementation method:
[0015] For example, see below. Figures 1 to 2As shown, a radiator structure with reinforcing ribs includes a radiator body 10. The radiator body 10 includes an upper connecting pipe 11 and a lower connecting pipe 12 extending forward and backward. The upper end of a vertical pipe 13 is welded and fixed to the middle of the bottom surface of the upper connecting pipe 11 and communicates with the upper connecting pipe 11. The lower end of the vertical pipe 13 is welded and fixed to the middle of the top surface of the lower connecting pipe 12 and communicates with the lower connecting pipe 12. The radiator body 10 is located in the middle of the intermediate horizontal plate 20. Specifically, the outer wall of each of the two halves of the intermediate horizontal plate is formed with a semi-arc vertical pipe and two connecting pipe protrusion sleeves. The radiator body 10 is positioned between the two halves of the intermediate horizontal plate, so that the semi-arc vertical pipe is fitted onto the outer wall of the vertical pipe 13, and the connecting pipe protrusion sleeves are fitted onto the upper connecting pipe 11 or the lower connecting pipe 12, thereby fixing the radiator body 10 to the intermediate horizontal plate 20. The fixing is achieved by pressing or edge welding.
[0016] Furthermore, the radiator body 10 is symmetrical about the center vertical plane of the middle horizontal plate 20. The front and left sides of the middle horizontal plate 20 are formed with front baffles 21 extending vertically to the left and right, respectively. The rear and left sides of the middle horizontal plate 20 are formed with rear baffles 22 extending vertically to the left and right, respectively. There is an air outlet 1 between the front baffle 21 and the top of the middle horizontal plate 20, and an air inlet 2 between the rear baffle 22 and the bottom of the middle horizontal plate 20.
[0017] Vertically extending intermediate guide reinforcing ribs 23 are formed on the left and right walls of the intermediate transverse plate 20 at the front and rear sides of the vertical tube 13. The intermediate guide reinforcing ribs 23 are close to the vertical tube 13. Vertically extending vertical reinforcing rib plates 24 are formed on the intermediate transverse plate 20 between the intermediate guide reinforcing ribs 23 and the corresponding front baffle 21 or rear baffle 22.
[0018] The top of the intermediate guide reinforcing rib 23 is formed with a guide rib plate portion 231 that extends forward in an arc shape, and the upper end of the guide rib plate portion 231 faces the air outlet 1.
[0019] With the above structure, after the air enters the left and right sides of the middle horizontal plate 20 from the air inlet 2, it will flow upward along the guide channel formed by the front baffle 21, the middle guide reinforcing rib 23, the vertical reinforcing rib plate 24 and the rear baffle 22. Meanwhile, the radiator body 10 is filled with hot air, which transfers heat to the middle horizontal plate 20 and its various components. At this time, the air expands after heat exchange and is discharged from the air outlet 1, thus achieving circulation.
[0020] The top of the intermediate guide rib 23 is formed with a forward arc-shaped guide rib plate 231. The upper end of the guide rib plate 231 faces the air outlet 1, which can guide the exhaust air.
[0021] Furthermore, at least one horizontally extending air guide strip 3 is formed on the front wall surface of the rear baffle 22, the rear wall surface of the front baffle 21, the front and rear walls of the vertical reinforcing rib plate 24, the rear wall surface of the rear intermediate guide reinforcing rib 23, and the front wall surface of the front intermediate guide reinforcing rib 23. The horizontally extending air guide strip 3 on the front wall surface of the rear baffle 22 intersects with the horizontally extending air guide strip 3 on the rear wall surface of the rear vertical reinforcing rib plate 24. The horizontally extending air guide strip 3 on the front wall surface of the rear vertical reinforcing rib plate 24 intersects with the horizontally extending air guide strip 3 on the rear wall surface of the rear intermediate guide reinforcing rib 23. The horizontally extending air guide strip 3 on the front wall surface of the front intermediate guide reinforcing rib 23 intersects with the horizontally extending air guide strip 3 on the rear wall surface of the front vertical reinforcing rib plate 24. The horizontally extending air guide strip 3 on the front wall surface of the front vertical reinforcing rib plate 24 intersects with the horizontally extending air guide strip 3 on the rear wall surface of the front baffle 21.
[0022] The horizontal air guide strip 3 causes the gas to flow upward along the guide channel composed of the front baffle 21, the middle guide rib 23, the vertical rib plate 24 and the rear baffle 22, creating turbulence, increasing the air flow time in the guide channel and improving the heat exchange effect.
[0023] Furthermore, the upper part of the rear baffle 22 covers the rear of the air outlet 1.
[0024] Furthermore, triangular guide portions 4 are fixed on the left and right walls of the top surface of the front part of the intermediate transverse plate 20 corresponding to the upper connecting pipe 11. The bottom surface of the triangular guide portion 4 is an inclined wall surface, and the bottom surface of the triangular guide portion 4 cooperates with the top surface of the adjacent guide rib plate portion 231. The bottom surface of the triangular guide portion 4 faces the air outlet 1. The triangular guide portion 4 also has a guiding effect, ensuring that air can be discharged through the air outlet 1.
Claims
1. A radiator structure with reinforcing ribs, comprising a radiator body (10), the radiator body (10) comprising an upper connecting pipe (11) extending forward and backward and a lower connecting pipe (12), the upper end of a vertical pipe (13) being welded and fixed to the middle of the bottom surface of the upper connecting pipe (11) and communicating with the upper connecting pipe (11), the lower end of the vertical pipe (13) being welded and fixed to the middle of the top surface of the lower connecting pipe (12) and communicating with the lower connecting pipe (12), characterized in that: The radiator body (10) is located in the middle of the middle horizontal plate (20). The radiator body (10) is symmetrical about the middle horizontal plate (20) as the center. The front and left sides of the middle horizontal plate (20) are formed with front baffles (21) extending to the left and right vertically. The rear and left sides of the middle horizontal plate (20) are formed with rear baffles (22) extending to the left and right vertically. There is an air outlet (1) between the front baffle (21) and the top of the middle horizontal plate (20). There is an air inlet (2) between the rear baffle (22) and the bottom of the middle horizontal plate (20). Vertically extending intermediate guide reinforcing ribs (23) are formed on the left and right walls of the intermediate transverse plate (20) at the front and rear sides of the vertical tube (13). Vertically extending vertical reinforcing rib plates (24) are formed on the intermediate transverse plate (20) between the intermediate guide reinforcing ribs (23) and the corresponding front baffle (21) or rear baffle (22). The top of the intermediate guide reinforcing rib (23) is formed with a guide rib plate portion (231) extending forward in an arc shape, and the upper end of the guide rib plate portion (231) faces the air outlet (1).
2. The radiator structure with reinforcing ribs according to claim 1, characterized in that: At least one horizontal air guide strip (3) extending forward and backward is formed on the front wall surface of the rear baffle (22), the rear wall surface of the front baffle (21), the front and rear walls of the vertical reinforcing rib plate (24), the rear wall surface of the rear intermediate guide reinforcing rib (23), and the front wall surface of the front intermediate guide reinforcing rib (23). The horizontal air guide strip (3) on the front wall surface of the rear baffle (22) intersects with the horizontal air guide strip (3) on the rear wall surface of the rear vertical reinforcing rib plate (24). The transverse air guide strips (3) on the front wall of the reinforcing rib (24) intersect with the transverse air guide strips (3) on the rear wall of the intermediate guide reinforcing rib (23). The transverse air guide strips (3) on the front wall of the intermediate guide reinforcing rib (23) intersect with the transverse air guide strips (3) on the rear wall of the vertical reinforcing rib (24). The front wall of the vertical reinforcing rib (24) intersects with the transverse air guide strips (3) on the rear wall of the front baffle (21).
3. A radiator structure with reinforcing ribs according to claim 1, characterized in that: The upper part of the rear baffle (22) covers the rear of the air outlet (1).
4. A radiator structure with reinforcing ribs according to claim 1, characterized in that: Triangular guide parts (4) are fixed on the left and right walls of the top surface of the upper connecting pipe (11) corresponding to the middle transverse plate (20). The bottom surface of the triangular guide part (4) is an inclined wall surface. The bottom surface of the triangular guide part (4) matches the top surface of the adjacent guide rib plate part (231). The bottom surface of the triangular guide part (4) faces the air outlet (1).
5. A radiator structure with reinforcing ribs according to claim 1, characterized in that: The intermediate guide reinforcing rib (23) is close to the vertical tube (13).