Ceiling warmer with heat insulation protection function

By introducing a heat insulation cover and heat sink structure into the ceiling heater, the problems of heat loss and high temperature damage to control components are solved, the effective utilization of heat and the protection of components are achieved, and the stability and safety of the equipment are improved.

CN223271334UActive Publication Date: 2025-08-26CIXI XINLUN ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202422425264.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-08-26
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing ceiling heater has severe heat loss, low heating efficiency, and high temperatures may damage control components and increase safety risks.

Method used

A heat-insulating and protective ceiling heater is designed, adopting a heat-insulating cover and a heat-dissipation slot structure. The heat-insulating cover is set by a heat-insulating plate surrounding the control component. The heat-dissipation slot discharges excess heat, and combines the reflector to focus heat to ensure uniform heat distribution and prevent loss.

Benefits of technology

Effectively prevent heat loss, protect control components, avoid high temperatures affecting normal operation, improve equipment stability and safety, and reduce vibration and displacement risks.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223271334U_ABST
    Figure CN223271334U_ABST
Patent Text Reader

Abstract

The utility model discloses a heat insulation protection ceiling warmer which comprises a back plate, a control assembly is arranged in the center of the back plate, a lampshade shell is arranged on the back plate, a heating assembly is arranged between the lampshade shell and the back plate, a heat insulation cover is arranged between the control assembly and the heating assembly, the heat insulation cover comprises a heat insulation plate, and the heat insulation plate is arranged on the back plate. The heat insulation plate is arranged around the control assembly, the upper end of the heat insulation plate is provided with an upper heat insulation edge extending outwards, the upper heat insulation edge abuts against the back plate, the lampshade shell is provided with an annular connecting piece, and the lower end of the heat insulation plate abuts against the annular connecting piece. Heat loss is effectively prevented, the control assembly can be protected, and normal work of the control assembly is prevented from being affected by high temperature.
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Description

Technical Field

[0001] The utility model relates to the technical field of heaters, in particular to a ceiling heater with heat insulation protection. Background Art

[0002] A ceiling heater is a heating device installed at the top of a room. It heats the room by radiating heat and is commonly used in homes, offices and commercial places. Compared with traditional floor heaters, ceiling heaters can distribute heat more evenly and save floor space.

[0003] In existing ceiling heaters, heat will be lost to the surrounding environment, resulting in low heating efficiency and increased energy consumption. The high temperature generated by the heating components will damage the control components, affecting the normal operation of the equipment. In severe cases, it may cause the equipment to overheat, increasing the risk of fire or other safety accidents. Utility Model Content

[0004] The technical problem to be solved by the utility model is to provide a ceiling heater with heat insulation protection, which not only effectively prevents heat loss, but also protects the control components and avoids affecting their normal operation due to high temperature.

[0005] In order to solve the above technical problems, the utility model provides a heat-insulating ceiling heater, comprising a back panel, a control component is provided in the center of the back panel, a lampshade shell is provided on the back panel, a heating component is provided between the lampshade shell and the back panel, a heat insulation cover is provided between the control component and the heating component, the heat insulation cover comprises a heat insulation board, the heat insulation board is arranged around the control component, the upper end of the heat insulation board is provided with an upper heat insulation edge extending outward, the upper heat insulation edge abuts on the back panel, an annular connector is provided on the lampshade shell, and the lower end of the heat insulation board abuts on the annular connector.

[0006] The heating assembly includes a heating lamp tube and a reflector, the heating lamp tube is a ring structure, the reflector includes an arc portion, the heating lamp tube is arranged below the arc portion, and the inner side of the arc portion is provided with a lower insulation edge extending inward, and the lower insulation edge abuts against the insulation board.

[0007] The lower end of the heat insulation board is provided with a mounting groove, the lower heat insulation edge is provided with a first mounting ear, and the annular connecting piece is provided with a corresponding second mounting ear. The first mounting ear and the second mounting ear are inserted into the mounting groove, and the first mounting ear is installed above the second mounting ear.

[0008] The annular connecting member includes a bottom edge, an outer edge bent upward is provided on the outer side of the bottom edge, an inner edge bent upward is provided on the inner side of the bottom edge, a U-shaped groove is formed between the inner edge, the outer edge and the bottom edge, the lower end of the heat insulation board is arranged in the U-shaped groove, the upper end of the inner edge is provided with a supporting edge extending inward, and the second mounting ear is arranged on the supporting edge.

[0009] The back plate is provided with a first heat dissipation slot and a second heat dissipation slot. The lower portion of the first heat dissipation slot corresponds to the outer side of the heat insulation cover, and the lower portion of the second heat dissipation slot corresponds to the inner side of the heat insulation cover.

[0010] A plurality of positioning ears are provided on the upper heat-insulating edge, and positioning holes are provided on the positioning ears.

[0011] The control assembly includes an upper shell and a lower shell connected to the upper shell, a cover is provided below the lower shell, a partition is provided on the lower shell, a control circuit board is provided above the partition, and a light bar is provided between the partition and the cover.

[0012] The cover body is provided with a plurality of convex rings, and the lower shell body is provided with a plurality of slots, and the convex rings are inserted into the slots.

[0013] The upper shell is cross-shaped.

[0014] To use this device, the user first adjusts the control assembly via the remote control to set the desired heating temperature. Upon receiving the command, the control circuit board activates the heating assembly, causing the circular heating lamp to begin operating and generating heat. The reflector effectively focuses the heat and evenly distributes it to the area requiring heating. Simultaneously, the first and second heat dissipation slots help dissipate excess heat, ensuring the device does not overheat. The heat shield not only effectively prevents heat loss but also protects the control assembly from being affected by high temperatures. Furthermore, a light bar provides illumination between the partition and the cover, enhancing the user experience.

[0015] The beneficial effects brought by the utility model are:

[0016] The heat insulation cover of the utility model not only effectively prevents heat loss, but also protects the control components to prevent the normal operation of the components from being affected by high temperature.

[0017] The heat dissipation slots can effectively discharge excess heat inside and outside the heat shield, ensuring that the equipment operates within a safe range.

[0018] The utility model has a stable structure, ensures the close combination of various components, reduces the risk of vibration and displacement, and thus improves the durability and safety of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a structural diagram of the present utility model.

[0020] Figure 2 It is a structural schematic diagram of the utility model from another angle.

[0021] Figure 3 It is a cross-sectional view of the present utility model.

[0022] Figure 4 It is a structural schematic diagram of the heat insulation cover of the utility model.

[0023] Figure 5 It is a structural schematic diagram of the annular connector of the utility model.

[0024] Figure 6 It is a structural schematic diagram of the lampshade shell of the present utility model.

[0025] In the figure: 1. back panel; 2. control component; 3. lampshade shell; 4. heating component; 5. heat insulation cover; 6. heat insulation board; 7. upper heat insulation edge; 8. annular connector; 9. heating lamp tube; 10. reflector; 11. arc portion; 12. lower heat insulation edge; 13. mounting groove; 14. first mounting ear; 15. second mounting ear; 16. bottom edge; 17. outer edge; 18. inner edge; 19. U-shaped groove; 20. supporting edge; 21. first heat dissipation groove; 22. second heat dissipation groove; 23. positioning ear; 24. positioning hole; 25. upper shell; 26. lower shell; 27. cover; 28. partition; 29. ​​control circuit board; 30. light bar; 31. convex ring; 32. slot. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0027] according to Figures 1 to 4 As shown, the utility model is a ceiling heater with heat insulation protection, including a back panel 1, a control component 2 is provided in the center of the back panel 1, a lampshade shell 3 is installed below the back panel 1, and a heating component 4 is provided between the back panel 1 and the lampshade shell 3. The component can quickly generate heat to meet the user's various heating needs. In order to further improve safety and energy-saving effects, a heat insulation cover 5 is provided between the control component 2 and the heating component 4. The heat insulation cover 5 is composed of a heat insulation board 6. The heat insulation board 6 is arranged around the control component 2 as the center, and an upper heat insulation edge 7 extending outward is provided at its upper end to ensure that it is parallel to and firmly in contact with the back panel 1, so as to protect the control component 2 and prevent its normal operation from being affected by high temperature. In addition, the annular connector 8 below the lampshade shell 3 provides a stable support for the lower end of the heat insulation board 6 to ensure the stability of the overall structure.

[0028] according to Figure 6As shown, the heating component 4 is composed of a heating lamp tube 9 and a reflector 10, wherein the heating lamp tube 9 adopts an annular structure, and the arc-shaped portion 11 of the reflector 10 semi-surrounds the heating lamp tube, making full use of the reflection effect to effectively guide the generated heat to the area that needs heating. In order to further improve the thermal insulation performance of the heater, an inwardly extending lower insulation edge 12 is provided on the inner side of the arc-shaped portion 11. The lower insulation edge 12 is firmly abutted against the insulation board 6, effectively reducing the heat transfer to the control component 2. The lower end of the insulation board 6 is provided with a mounting groove 13 to facilitate installation and fixation with the lower insulation edge 12. A first mounting ear 14 is provided on the lower insulation edge 12, and a corresponding second mounting ear 15 is provided on the annular connector 8. The two are firmly connected by plugging to ensure the overall stability of the structure. During assembly, the first mounting ear 14 is installed above the second mounting ear 15.

[0029] according to Figure 5 As shown, the annular connector 8 includes a bottom edge 16 and an outer edge 17 and an inner edge 18 connected to both sides of the bottom edge 16. The outer edge 17 is bent upward, and the inner edge 18 is also bent upward to form a U-shaped groove 19 structure. The U-shaped groove 19 provides a stable support for the lower end of the heat insulation board 6, ensuring that it will not move during operation, thereby enhancing the overall stability of the heater. The upper end of the inner edge 18 extends out a support edge 20, providing additional support for the entire structure, further improving the reliability of the equipment. At the same time, the second mounting ear 15 is positioned on the support edge 20, so that it can form a good match with the first mounting ear 14 during installation, achieving a stable connection and ensuring the safety and durability of the heater when in use.

[0030] The back panel 1 is provided with a first heat dissipation groove 21 and a second heat dissipation groove 22 to optimize the heat dissipation effect of the heater. The first heat dissipation groove 21 is located below the outer side of the heat insulation cover 5 and can effectively discharge the heat outside the heat insulation cover 5. The second heat dissipation groove 22 is located below the inner side of the heat insulation cover 5 and can effectively discharge the heat inside the heat insulation cover 5 to prevent the equipment from overheating, thereby enhancing safety and stability.

[0031] The upper insulation edge 7 is provided with a plurality of positioning ears 23 to facilitate precise connection and fixation with other components. Each positioning ear 23 is provided with a positioning hole 24 to ensure accurate docking during the assembly process, providing stable support and positioning, which not only enhances the stability of the overall structure and reduces the risk of vibration and displacement during use, but also facilitates the installation and maintenance of the equipment and improves the user experience.

[0032] The control component 2 consists of an upper shell 25 and a lower shell 26 connected thereto. A cover 27 is provided below the lower shell 26, and a partition 28 is provided inside the lower shell 26. A control circuit board 29 is placed above the partition 28 to ensure stable operation of the circuit and good heat dissipation. A light strip 30 is provided between the partition 28 and the cover 27 to provide the necessary lighting function for the heater and enhance the overall user experience. A plurality of convex rings 31 are designed on the cover 27 to cooperate with a plurality of slots 32 on the lower shell 26. The convex rings 31 are firmly fixed in the slots 32 by plugging to ensure the stability and safety of the component. The upper shell 25 adopts a cross-shaped structure, which is not only beautiful, but also prevents its displacement and improves structural stability.

[0033] When using this utility model, the user first adjusts the control assembly 2 via the remote control to set the desired heating temperature. Upon receiving the command, the control circuit board 29 activates the heating assembly 4, causing the annular heating lamp 9 to begin operating and generate heat. The reflector 10 effectively focuses the heat and evenly distributes it to the area requiring heating. Simultaneously, the first and second heat dissipation slots 21 and 22 help dissipate excess heat, ensuring the device does not overheat. The heat shield 5 not only effectively prevents heat loss but also protects the control assembly 2 from being affected by high temperatures. Furthermore, the light bar 30 provides illumination between the partition 28 and the cover 27, enhancing the user experience.

[0034] The beneficial effects brought by the utility model are:

[0035] The heat insulation cover of the utility model not only effectively prevents heat loss, but also protects the control components to prevent the normal operation of the components from being affected by high temperature.

[0036] The heat dissipation slots can effectively discharge excess heat inside and outside the heat shield, ensuring that the equipment operates within a safe range.

[0037] The utility model has a stable structure, ensures the close combination of various components, reduces the risk of vibration and displacement, and thus improves the durability and safety of the equipment.

[0038] The above description is only a preferred embodiment of the present invention. Therefore, any equivalent changes or modifications made according to the structure, features and principles described in the scope of the present invention patent application are included in the scope of the present invention patent application.

Claims

1. A heat-insulating ceiling heater comprising a back panel, a control assembly disposed at the center of the back panel, a lamp housing disposed on the back panel, and a heating assembly disposed between the lamp housing and the back panel, characterized in that: A heat insulation cover is provided between the control component and the heating component, and the heat insulation cover includes a heat insulation plate, which is arranged around the control component. The upper end of the heat insulation plate is provided with an upper heat insulation edge extending outward, and the upper heat insulation edge abuts on the back plate. An annular connector is provided on the lampshade shell, and the lower end of the heat insulation plate abuts on the annular connector.

2. The heat-insulating ceiling heater according to claim 1, characterized in that: The heating assembly includes a heating lamp tube and a reflector, the heating lamp tube is a ring structure, the reflector includes an arc portion, the heating lamp tube is arranged below the arc portion, and the inner side of the arc portion is provided with a lower insulation edge extending inward, and the lower insulation edge abuts against the insulation board.

3. The heat-insulating ceiling heater according to claim 2, characterized in that: The lower end of the heat insulation board is provided with a mounting groove, the lower heat insulation edge is provided with a first mounting ear, and the annular connecting piece is provided with a corresponding second mounting ear. The first mounting ear and the second mounting ear are inserted into the mounting groove, and the first mounting ear is installed above the second mounting ear.

4. The heat-insulating ceiling heater according to claim 3, characterized in that: The annular connecting member includes a bottom edge, an outer edge bent upward is provided on the outer side of the bottom edge, an inner edge bent upward is provided on the inner side of the bottom edge, a U-shaped groove is formed between the inner edge, the outer edge and the bottom edge, the lower end of the heat insulation board is arranged in the U-shaped groove, the upper end of the inner edge is provided with a supporting edge extending inward, and the second mounting ear is arranged on the supporting edge.

5. The heat-insulating ceiling heater according to claim 1, characterized in that: The back plate is provided with a first heat dissipation slot and a second heat dissipation slot. The lower portion of the first heat dissipation slot corresponds to the outer side of the heat insulation cover, and the lower portion of the second heat dissipation slot corresponds to the inner side of the heat insulation cover.

6. The heat-insulating ceiling heater according to claim 1, characterized in that: A plurality of positioning ears are provided on the upper heat-insulating edge, and positioning holes are provided on the positioning ears.

7. The heat-insulating ceiling heater according to claim 1, characterized in that: The control assembly comprises an upper shell and a lower shell connected to the upper shell, and a cover is provided below the lower shell.

8. The heat-insulating ceiling heater according to claim 7, characterized in that: A partition is provided on the lower shell body, a control circuit board is provided above the partition, and a light bar is provided between the partition and the cover body.

9. The heat-insulating ceiling heater according to claim 7, characterized in that: The cover body is provided with a plurality of convex rings, and the lower shell body is provided with a plurality of slots, and the convex rings are inserted into the slots.

10. The heat-insulating ceiling heater according to claim 7, characterized in that: The upper shell is cross-shaped.