Assembled high-power ultrathin heating radiator
Through the design of assembled high-power ultra-thin radiator, the aluminum alloy thermal conduction plate and PVC insulation layer structure are used to solve the problems of large space occupied by traditional radiators, which are not beautiful and have serious heat loss, and achieve flexible installation, energy saving and efficient heat dissipation.
Patent Information
- Application Number
- CN202421258745.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-04
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-06-04
AI Technical Summary
Traditional radiators take up a large space, are not beautiful, have serious heat loss and are difficult to install, so they cannot flexibly adjust the size and improve energy-saving effects.
A assembled high-power ultra-thin radiator is designed, using aluminum alloy thermal conduction plates and PVC thermal insulation layer structure, the heating pipes are independently adjustable, fixed by arc-shaped grooves, supporting on-site cutting and assembly, combining aluminum alloy high-efficiency thermal conductivity and PVC thermal insulation materials to achieve efficient heat dissipation and energy saving.
It realizes beautiful, energy-saving, easy to install and flexible adjustment of the radiator, adapts to installation of multiple sites, and improves power per unit area and construction efficiency.
Smart Images

Figure CN223179338U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to heating equipment, specifically to a water radiator. Background Art
[0002] At present, traditional radiators are all finished products with fixed sizes when leaving the factory; traditional radiators are generally hung on the wall. In order to prevent heat from being absorbed and dissipated by the wall, a certain distance needs to be maintained from the wall. Coupled with their own thickness, they greatly occupy the home space, and they also affect the furniture arrangement and do not match the furniture decoration style, that is, they occupy space and are not beautiful; since a large amount of heat will be absorbed by the wall when installed against the wall, the heat loss is large, the effect is poor, and it is not energy-saving; therefore, choosing a radiator that is beautiful, does not occupy space, and is highly energy-saving has increasingly become people's needs; some manufacturers in the market have also designed radiators for wall-mounted installation, but the disadvantages are still obvious. Such products only solve the problem of not occupying space, but cannot flexibly change the size of the radiator according to the on-site situation, and cannot take into account heat preservation and energy conservation. Moreover, the installation is difficult, the construction period is long, and the cost is high, which is not suitable for market promotion; the products of the utility model can solve all the above-mentioned problems and can achieve the characteristics of being beautiful, not occupying space, having arbitrary sizes, being energy-saving, being easy to install and disassemble, having a short construction time, and having a high power value per unit area. Content of the Utility Model
[0003] The purpose of the utility model is to overcome the shortcomings of existing radiators, and provide an assembled high-power ultra-thin radiator; to achieve beauty, not occupying space, having arbitrary sizes, being energy-saving, being convenient to install and disassemble, and effectively eliminating potential safety hazards; to fill the domestic and foreign market gaps.
[0004] The utility model is applicable to users who "have not been decorated" or "are being decorated" and "have been decorated" for installing or replacing heating equipment; it has a wide range of applications and is suitable for installation and use in any complex site.
[0005] Technical Solution
[0006] The assembled high-power ultra-thin radiator of the utility model is assembled from seven independent parts. The equipment includes: a panel (1), a heat conduction plate (2), a pipe clamping seat (3), a base (4), a heating pipe (5), a side cover (6), and a connecting strip (7). The panel (1) is engaged with the pipe clamping seat (3) by a lower hanging structure (8) and an upper fin handle structure (9). Several heating pipes (5) and heat conduction plates (2) are clamped in the cavity between the panel (1) and the pipe clamping seat (3) to form a heat dissipation layer, which is assembled with the base (4) as a heat insulation layer into an integral body.
[0007] The technical principle of the assembled high-power ultra-thin radiator of the utility model is that the hot water transported by the heating pipe (5) in the product transfers the energy of the hot water through the heat conducting plate (2) to the surface of the panel (1), and radiates the heat into the room by utilizing the heat radiation principle, thereby playing the role of heating the room; since the heating pipe (5) is independent, the heating pipe (5) can be coiled in the circular pipe groove formed by the arc groove on the heat conducting plate (2) and the pipe holder (3) in the same way as a floor heating coil, so that the heating hot water flows in the entire radiator and dissipates heat externally; due to the difference from the traditional radiator wall-mounted installation method, the radiator can be fixedly installed against the wall, and the heat dissipation layer is made of the high-efficiency heat conductivity of aluminum alloy and the heat insulation layer is made of the low-efficiency heat conductivity of plastic, so that the radiator can not only dissipate heat efficiently, but also prevent heat from being lost through the wall, thereby achieving energy-saving effect.
[0008] The heating pipes (5) are fixed to the panel (1) through circular pipe grooves formed by the heat conducting plate (2) and the pipe holder (3). The panel (1) and the pipe holder (3) are fixed by engaging with each other through a lower hanging structure (8) and an upper fin handle structure (9). The pipe holder (3) and the base (4) are fixed by screws driven into the screw positions (12).
[0009] The heating pipe (5) is made of aluminum pipe, copper pipe or stainless steel pipe commonly used in the market.
[0010] The product is cut and assembled according to the required width and height of the on-site installation surface. After a single set of assembly is completed, the upper slot (10) and the lower slot (11) of the base (4) are spliced together over a large area through the connecting strips (7) to form radiators of different sizes.
[0011] The product has a large heating pipe (5) and a large amount of hot water passing through it, which can carry a large amount of heat. Moreover, the heat dissipation part is made entirely of aluminum alloy, so the operating power per unit area is large. In addition, the product has an ultra-thin design and is a high-power ultra-thin radiator.
[0012] The product increases or decreases the number of circular tube grooves formed by the arc grooves on the heat conducting plate (2) and the tube holder (3), and accordingly increases or decreases the number of heating pipes (5), that is, each time a circular tube groove formed by an arc groove is increased or decreased, the number of heating pipes (5) is increased or decreased accordingly.
[0013] The circular pipe grooves formed by the arc-shaped grooves provided in the product can be increased or decreased in number. As the number of circular pipe grooves formed by the arc-shaped grooves and the diameter of the heating pipe (5) are different, the thickness and width of the entire assembled high-power ultra-thin radiator vary. The diameter of the pipe groove is metric size (such as DN16) for domestic products and imperial size (such as 4") for export products.
[0014] The assembled high-power ultra-thin radiator has a panel (1), a heat conducting plate (2), a tube holder (3), and a side cover (6) made of aluminum alloy profiles for efficient heat dissipation, and the outer surface of the panel (1) is aesthetically pleasing.
[0015] The assembled high-power ultra-thin radiator has a built-in heat insulation layer for energy saving: the base (4) can be made of PVC or ABS plastic profiles, and the cavity of the base (4) is filled with polyurethane foam material. The entire base forms a heat insulation layer to prevent heat from being lost from the back of the product.
[0016] Compared with similar domestic and foreign products, the present invention has the following advantages: the power per unit area of the present invention is large, the product has its own insulation layer and can be installed against the wall, and can be used as a skirting radiator, floor heating, and three-constant system cooling, with the advantage of multi-function; because it can be used as a skirting heater, the length and height of the product are the same as those of ordinary skirtings; in order to facilitate installation and disassembly and adapt to the changing on-site environment, it is designed as an assembled structure, which can be freely cut and assembled according to the on-site conditions without being restricted by space; because the heating pipe (5) is independent and not integrated with the product, the heating pipe can be selected from common water pipes on the market, the size is designed according to national standards, other accessories are easy to obtain, and the cost is effectively controlled. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the overall cross-sectional structure of the utility model
[0018] Figure 2 Schematic diagram of the heat dissipation layer structure
[0019] Figure 3 Schematic diagram of the thermal insulation layer
[0020] Figure 4 This is the installation diagram of the radiator DETAILED DESCRIPTION
[0021] The following is a detailed description of the technical solution of the present invention with reference to the accompanying drawings, providing implementation methods and operating procedures, but the implementation examples are not intended to limit the present invention.
[0022] Please refer to Figures 1 to 5 at the same time. The utility model assembled high-power ultra-thin radiator includes seven parts: a panel (1), a heat conducting plate (2), a pipe holder (3), a base (4), a heating pipe (5), a side cover (6), and a connecting strip (7).
[0023] The heating pipe (5) is fixed to the panel (1) through a circular pipe groove formed by several arc-shaped grooves on the heat conducting plate (2) and the pipe holder (3); the panel (1) and the pipe holder (3) are fixed by engaging with each other through a lower hanging structure (8) and an upper fin handle structure (9).
[0024] The pipe clamping seat (3) and the base (4) are fastened and fixed on the mounting surface by screwing in screws at the screw positions (12).
[0025] After the pipe clamping seat (3) and the base (4) are installed, a heating pipe (5) is inserted into the pipe clamping seat (3).
[0026] After the heating pipe (5) is installed, the heat conduction plate (2) and the panel (1) are installed in place in sequence by the following method.
[0027] The heat dissipation layer composed of the panel (1), the heat conduction plate (2), the pipe clamping seat (3), and the heating pipe (5) and the heat insulation layer formed by the base (4) are fixed by the lower hanging structure (8) and the upper fin handle structure engaging (9). The heat insulation layer is fixed on the mounting surface with screws, so that the whole is fixed on the mounting surface.
[0028] The product is cut and assembled according to the width and height required by the on-site mounting surface. After a single group is assembled, the upper slot (10) and the lower slot (11) of the base (4) are used to splice a large area through the connecting strip (7) to form radiators of different sizes.
Claims
1. An assembled high-power ultra-thin radiator, characterized in that Including: A panel (1), a heat conducting plate (2), a pipe clamping seat (3), a base (4), a heating pipe (5), a side cover (6), and a connecting strip (7). The panel (1) is engaged with the pipe clamping seat (3) through a lower hanging structure (8) and an upper fin handle structure (9). A heating pipe (5) and a heat conducting plate (2) are sandwiched in the cavity between the panel (1) and the pipe clamping seat (3) and combined with the base (4) to form an integral body.
2. The assembled high-power ultra-thin radiator according to claim 1, characterized in that: The panel (1), the heat conducting plate (2), the pipe clamping seat (3), the base (4), the heating pipe (5), the side cover (6), and the connecting strip (7) are all independent and need to be assembled into a product.
3. The assembled high-power ultra-thin radiator according to claim 1, characterized in that: The heating pipe (5) is fixed to the panel (1) through a circular pipe groove formed by several arc-shaped grooves on the heat conducting plate (2) and the pipe clamping seat (3). The panel (1) and the pipe clamping seat (3) are fixedly engaged through the lower hanging structure (8) and the upper fin handle structure (9). The pipe clamping seat (3) and the base (4) are attached and fixed to the installation surface by screwing screws into the screw positions (12).
4. The assembled high-power ultra-thin radiator according to claim 1, characterized in that: The heating pipes of the product are dense and can pass hot water, making the product have the characteristic of high power per unit area.
5. The assembled high-power ultra-thin radiator according to claim 1, characterized in that: The product is composed of a heat dissipation layer and a heat insulation layer. The heat dissipation layer is composed of the panel (1), the heat conducting plate (2), the pipe clamping seat (3), and the heating pipe (5), and the base (4) is the heat insulation layer.
6. The assembled high-power ultra-thin radiator according to claim 1, wherein: The materials of the panel (1), the heat conducting plate (2), the pipe clamping seat (3), and the side cover (6) in the heat dissipation layer are aluminum alloy profiles.
7. The assembled high-power ultra-thin radiator according to claim 1, characterized in that: The base (4) of the heat insulation layer is processed from materials such as PVC and ABS plastics, and the cavity of the base (4) is filled with polyurethane foam material to prevent heat from dissipating from the back of the product.
8. The assembled high-power ultra-thin radiator according to claim 1, wherein: The heating pipe (5) is selected from aluminum pipes, copper pipes, or stainless steel pipes.
9. The assembled high-power ultra-thin radiator according to claim 1, wherein: Cut corresponding sizes according to the width and height of the on-site installation surface for on-site assembly. After assembly, the upper slot (10) and the lower slot (11) of the base (4) are spliced through the connecting strip (7) to form radiators of different sizes.