Novel heating device

By using a Y-shaped or I-shaped arrangement and plug-in riveting connection of the convective radiative heating elements, the problems of small heat dissipation area and low heating efficiency of existing aluminum alloy heating elements are solved, achieving efficient heat dissipation and heating effects.

CN223928462UActive Publication Date: 2026-02-17ZHONGSHAN SHUONENG ELECTROTHERMAL TECH CO LTD +1
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Patent Information

Application Number
CN202520169759.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-02-17
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

Existing aluminum alloy heating elements have small heat dissipation area and low heating efficiency, making it difficult to meet the requirements for efficient heat dissipation and heating.

Method used

The structure of the convective and radiative heating element is adopted, including convection plates and radiating plates arranged in a Y-shape or I-shape, combined with plug-in parts and riveting connections, to increase the heat dissipation area and improve the heat coverage space. Infrared coating is used to improve heat transfer efficiency.

Benefits of technology

It increases the heat dissipation area, improves heating efficiency and heat coverage uniformity, enhances air convection, and achieves efficient heat transfer and uniform heating.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223928462U_ABST
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Abstract

A novel heating device comprises at least one heating body, the at least one heating body is a convection radiation heating body, the convection radiation heating body comprises a convection plate, a first radiation plate and a first heating element, the first heating element is arranged between the convection plate and the first radiation plate, and the convection plate and the first radiation plate form a Y shape. The novel heating device comprises at least one heating body, the at least one heating body is a convection radiation heating body, the convection radiation heating body comprises a convection plate, a first radiation plate and a first heating element, the convection plate and the first radiation plate form a Y shape, the convection plate comprises a first convection plate piece and a second convection plate piece, and the first convection plate piece and the second convection plate piece form a Y shape. The first convection plate and the second convection plate are provided with first heat dissipation holes which are transversely arranged, and the Y-shaped heating body can increase the heat dissipation area of the heating body, so that the space area covered by heat is increased, and the heating efficiency of the heating device is improved; and the first convection plate and the second convection plate form a V shape, so that the air convection effect can be improved.
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Description

Technical Field

[0001] This utility model relates to a heating device, and more particularly to a novel heating device. Background Technology

[0002] Chinese Patent Document No. CN201557267U, published on October 18, 2010, discloses an aluminum alloy heating element, comprising a heating tube made of aluminum alloy and heat dissipation fins disposed on the heating tube. The key feature is that the outer surfaces of the heating tube and the heat dissipation fins are coated with an infrared coating. The heat dissipation fins have a corrugated surface. The heating tube includes an aluminum alloy shell, a heating wire installed inside the shell, and an insulating and thermally conductive material filling the space between the heating wire and the shell. The heat dissipation fins have louvers; there are one or more heat dissipation fins. This aluminum alloy heating element has a small heat dissipation area and low heating efficiency.

[0003] Therefore, further improvements are necessary. Utility Model Content

[0004] The purpose of this invention is to provide a novel heating device with a simple structure, large heat dissipation area, high heating efficiency, good convection effect, and strong practicality, so as to overcome the shortcomings of the prior art.

[0005] A novel heating device designed for this purpose is characterized by comprising at least one heating element, wherein the at least one heating element is a convective-radiative heating element, the convective-radiative heating element comprising a convection plate, a first radiative plate and a first heating element, the first heating element being disposed between the convection plate and the first radiative plate, the convection plate and the first radiative plate forming a Y-shape.

[0006] When there are three or more heating elements, at least one of them is a radiant heating element. The radiant heating element is I-shaped and includes a second radiant plate and a second heating element. The second heating element is disposed on the second radiant plate.

[0007] When there are two or more heating elements, the heating elements are arranged vertically, and adjacent heating elements are either inserted into each other or formed as one piece.

[0008] A plug-in part is provided between two adjacent heating elements. The plug-in part includes a plug connector and a plug interface, which are connected to each other by riveting.

[0009] The convection plate includes a first convection plate component and a second convection plate component, which are arranged in a mirror image symmetrically and form a V-shape.

[0010] The first convection plate and the second convection plate are provided with first heat dissipation holes arranged horizontally, and a first guide plate is provided on one side of the first heat dissipation hole.

[0011] The first radiation plate and the second radiation plate are at least one of rectangular, arc-shaped or special-shaped, and two sides of the first radiation plate and the second radiation plate are respectively provided with vertically arranged corrugated grooves.

[0012] The first radiation plate and / or the second radiation plate is provided with second heat dissipation holes arranged in a transverse direction, and one side of the second heat dissipation holes is provided with second flow guide plates arranged in an inclined manner.

[0013] The first radiation plate is provided with a first mounting hole, and the first heat generating element is mounted on the first mounting hole.

[0014] The second radiation plate is provided with a second mounting hole, and the second heat generating element is mounted on the second mounting hole.

[0015] The novel heating device comprises at least one heating body, and the at least one heating body is a convection radiation heating body. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole structure schematic view of the heating device in the first application example of the utility model.

[0017] Figure 2 It is a whole structure schematic view of the heating device in the second application example of the utility model.

[0018] Figure 3 It is a whole structure schematic view of the heating device in the third application example of the utility model.

[0019] Figure 4 It is a whole structure schematic view of the heating device in the fourth application example of the utility model.

[0020] Figure 5 It is a whole structure schematic view of the heating device in the fifth application example of the utility model.

[0021] Figure 6 It is a partial structure schematic view of the heating device in the first application example of the utility model.

[0022] Figure 7 It is the front view of the heating device in the first application example of the embodiment of the utility model.

[0023] Figure 8 It is the exploded structural front view of the heating device in the sixth application example of the embodiment of the utility model.

[0024] Figure 9 It is the front view of the heating device in the sixth application example of the embodiment of the utility model.

[0025] Figure 10 It is the overall structural schematic view of the heating device in the seventh application example of the embodiment of the utility model. DETAILED DESCRIPTION

[0026] The utility model will be further described in connection with the drawings and examples.

[0027] Referring to Figures 1-10 The utility model discloses a heating device applied to a radiation type warmer, which comprises at least one heating body, and the number of the heating bodies is not limited. The at least one heating body is a convection radiation heating body 1. The convection radiation heating body 1 comprises a convection plate 2, a first radiation plate 3 and a first heating element 4. The first heating element 4 is arranged between the convection plate 2 and the first radiation plate 3. The convection plate 2 and the first radiation plate 3 form a Y-shaped structure. The first heating element 4 is a heating tube.

[0028] When the number of the heating bodies is more than three, at least one of the heating bodies is a radiation heating body 5. The radiation heating body 5 is in an I-shaped structure. The radiation heating body 5 comprises a second radiation plate 6 and a second heating element 7. The second heating element 7 is arranged on the second radiation plate 6. The second heating element 7 is a heating tube. In addition, when the number of the heating bodies is more than three, the heating bodies can be arranged in the form of one convection radiation heating body 1 plus more than two radiation heating bodies 5. In this case, the convection radiation heating body 1 is arranged at one end of the heating device. Alternatively, the heating bodies can be arranged in the form of two convection radiation heating bodies 1 plus more than one radiation heating body 5. In this case, the convection radiation heating bodies 1 are arranged at two ends of the heating device, and the radiation heating body 5 is arranged at the middle of the heating device.

[0029] When the number of the heating bodies is more than two, the heating bodies are arranged vertically. Adjacent two heating bodies are connected to each other or integrally formed. Figures 1-5 As shown in the figure, two heating bodies are arranged, which are the convection radiation heating body 1 and the radiation heating body 5, and the two bodies are integrally formed. Figures 8-9 As shown in the figure, two heating bodies are arranged, which are the convection radiation heating body 1 and the radiation heating body 5, and the two bodies are integrally formed.

[0030] The two adjacent heat generating bodies are provided with a plug-in part, which comprises a plug-in head 8 and a plug-in port 9. The plug-in head 8 and the plug-in port 9 are plugged into each other by riveting (i.e. spliced and formed by riveting), so as to realize the mutual plugging of the two adjacent heat generating bodies. Figures 8-9 As shown in the figure, the plug-in port 9 is arranged on the first radiation plate 3 of the convection radiation heat generating body 1, and the plug-in head 8 is arranged on the second radiation plate 6 of the radiation heat generating body 5.

[0031] The convection plate 2 comprises a first convection plate member 10 and a second convection plate member 11. The first convection plate member 10 and the second convection plate member 11 are arranged in mirror symmetry, and form a V-shaped structure, which can improve the air convection effect. By arranging two convection plate members, the heat dissipation area of the heat generating body can be increased, and the output heat is more uniform, thereby improving the heating efficiency of the heating device.

[0032] The convection plate 2 has a certain guiding effect, which can guide the heat radiated by the first heat generating element 4 to the outside, thereby increasing the space area covered by the heat and facilitating the air flow between the first heat generating element 4 and the convection plate 2 to form a heat convection effect. The first heat generating element 4 generates heat, the first radiation plate 3 reflects the heat to the front, the second heat generating element 7 generates heat, and the second radiation plate 6 reflects the heat to the front, thereby radiating heat to the front environment and rapidly heating the front environment.

[0033] The first convection plate member 10 and the second convection plate member 11 are provided with first heat dissipation holes 12 arranged in a transverse direction. The first heat dissipation holes 12 are provided with first flow guide plates 13 arranged in an inclined manner on one side. The heat radiated by the first heat generating element 4 is guided by the first flow guide plates 13 and discharged through the first heat dissipation holes 12.

[0034] The first radiation plate 3 and the second radiation plate 6 are at least one of a rectangular shape, an arc shape or a special shape. The first radiation plate 3 and the second radiation plate 6 are respectively provided with vertical corrugated grooves 14 arranged on both sides. The corrugated grooves 14 can greatly improve the heat dissipation area of the radiation plate.

[0035] The first radiation plate 3 and / or the second radiation plate 6 are provided with second heat dissipation holes 15 arranged in a transverse direction. The second heat dissipation holes 15 are provided with second flow guide plates 16 arranged in an inclined manner on one side. Alternatively, the first radiation plate 3 and the second radiation plate 6 are not provided with the second heat dissipation holes 15. The second heat dissipation holes 15 and the second flow guide plates 16 play a flow guiding role, which is conducive to the reflection of heat to the front by the first radiation plate 3 and the second radiation plate 6.

[0036] The first radiation plate 3 is provided with a first mounting hole 17, and the first heating element 4 is mounted on the first mounting hole 17, the first mounting hole 17 is arranged between the convection plate 2 and the first radiation plate 3, and the first heating element 4 is an electric heating pipe; or the first heating element 4 is integrally formed with the first radiation plate 3, the first heating element 4 comprises an aluminum pipe and a heating wire mounted in the aluminum pipe, and magnesium oxide powder is filled between the aluminum pipe and the heating wire, and the above structure is prior art, which will not be described in detail here.

[0037] The second radiation plate 6 is provided with a second mounting hole 18, and the second heating element 7 is mounted on the second mounting hole 18, and the second heating element 7 is an electric heating pipe; or the second heating element 7 is integrally formed with the second radiation plate 6, and the second heating element 7 comprises an aluminum pipe and a heating wire mounted in the aluminum pipe, and magnesium oxide powder is filled between the aluminum pipe and the heating wire.

[0038] The outer surfaces of the first convection plate member 10 and the second convection plate member 11 are respectively sprayed with far-infrared radiation oil, so that the first convection plate member 10 and the second convection plate member 11 generate infrared and far-infrared rays during heat transfer, and can perform physiotherapy on the human body while warming the human body, and have the dual functions of warm air heating and physiotherapy.

[0039] The above is the preferred scheme of the utility model, and the basic principle, main features and advantages of the utility model are displayed and described. Those skilled in the art should understand that the utility model is not limited by the above examples, and the above examples and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed. The protection scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A novel heat generating device characterized by: The heating body comprises at least one heating body, and the at least one heating body is a convection radiation heating body (1). The convection radiation heating body (1) comprises a convection plate (2), a first radiation plate (3) and a first heating element (4). The first heating element (4) is arranged between the convection plate (2) and the first radiation plate (3). The convection plate (2) and the first radiation plate (3) form a Y-shaped structure.

2. The novel heat generating device according to claim 1, characterized in that: When the number of the heating bodies is more than three, at least one of the heating bodies is a radiation heating body (5). The radiation heating body (5) has an I-shaped structure. The radiation heating body (5) comprises a second radiation plate (6) and a second heating element (7). The second heating element (7) is arranged on the second radiation plate (6).

3. The novel heat generating device according to claim 2, characterized in that: When the number of the heating bodies is more than two, the heating bodies are arranged in a vertical direction. Adjacent two heating bodies are inserted into each other or are integrally formed.

4. The novel heat generating device according to claim 3, characterized in that: An insertion part is arranged between the adjacent two heating bodies. The insertion part comprises an insertion head (8) and an insertion port (9). The insertion head (8) and the insertion port (9) are inserted into each other by riveting.

5. The novel heat generating device according to claim 2, characterized in that: The convection plate (2) comprises a first convection plate member (10) and a second convection plate member (11). The first convection plate member (10) and the second convection plate member (11) are arranged in a mirror image symmetry. The first convection plate member (10) and the second convection plate member (11) form a V-shaped structure.

6. The novel heat generating device according to claim 5, characterized in that: First heat dissipation holes (12) are arranged on the first convection plate member (10) and the second convection plate member (11) in a horizontal direction. The first heat dissipation holes (12) are provided with first flow guide plates (13) arranged in an inclined manner on one side.

7. The novel heat generating device according to claim 6, characterized in that: The first radiation plate (3) and the second radiation plate (6) have at least one of a rectangular shape, an arc shape or a special shape. The first radiation plate (3) and the second radiation plate (6) are respectively provided with vertical corrugated grooves (14) on two opposite sides.

8. The novel heat generating device according to claim 7, characterized in that: Second heat dissipation holes (15) are arranged on the first radiation plate (3) and / or the second radiation plate (6) in a horizontal direction. The second heat dissipation holes (15) are provided with second flow guide plates (16) arranged in an inclined manner on one side. Alternatively, the first radiation plate (3) and the second radiation plate (6) are not provided with the second heat dissipation holes (15).

9. The novel heat generating device according to claim 1, characterized in that: The first radiation plate (3) is provided with a first mounting hole (17). The first heating element (4) is mounted on the first mounting hole (17). Alternatively, the first heating element (4) is integrally formed with the first radiation plate (3).

10. The novel heat generating device according to claim 2, characterized in that: The second radiation plate (6) is provided with a second mounting hole (18). The second heating element (7) is mounted on the second mounting hole (18). Alternatively, the second heating element (7) is integrally formed with the second radiation plate (6).

Citation Information

Patent Citations

  • Aluminum alloy heating element

    CN201557267U