Middle-layer heating and warming table with superlattice semiconductor microcrystalline glass heating body

By setting up a nano-electric heating film microcrystalline glass heating module under the table body of the heating table, the existing heating table has solved the problems of high energy consumption and safety hazards, and achieved low energy consumption and safe far-infrared heating effect.

CN222840666UActive Publication Date: 2025-05-09GUIZHOU XINGYUAN YILIFA VENDING MASCH CO LTD
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Patent Information

Application Number
CN202421205924.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-30
Publication Date
2025-05-09
Estimated Expiration
2034-05-30

AI Technical Summary

Technical Problem

The existing heating table uses halogen tube heaters, which are high in power and energy consumption, are prone to scalding and have fire safety hazards.

Method used

The nano-electrically heated film microcrystalline glass heating module is used. By setting a heating module under the table, the nano-electrically heated film microcrystalline glass produces violent collision and movement after power-on, generating far-infrared radiation that the human body is most suitable for absorption.

Benefits of technology

It achieves low energy consumption and safe heating effect, does not dry skin, improves safety, and avoids fire risks.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222840666U_ABST
Patent Text Reader

Abstract

The utility model provides a superlattice semiconductor glass ceramic heating body middle-layer heating table, which relates to the field of household electric heating, and comprises a table body, the table body comprises a table top plate and supporting legs for supporting the table top plate, and at least one heating module for heating is arranged in a cavity formed by the table top plate and the supporting legs. Each heating module comprises a placing frame and nanometer electrothermal film microcrystalline glass arranged on the placing frame, and the nanometer electrothermal film microcrystalline glass is connected with the control mainboard. Compared with the prior art, according to the middle-layer heating and warming table with the superlattice semiconductor microcrystalline glass heating body, the heating module is installed below the table top plate through the hanging bracket, the nanometer electrothermal film microcrystalline glass is adopted by the heating module for heating, and the nanometer electrothermal film microcrystalline glass violently collides and moves under the action of an electrified electric field, so that the heating effect is greatly improved. The generated radiation wave band is far infrared most suitable for human body to absorb, the skin is not dry after long-time heating, energy is saved, environment is protected, and safety is improved.
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Description

Technical Field

[0001] The utility model relates to the field of household electric heating, in particular to a super lattice semiconductor microcrystalline glass heating element middle layer heating heating table. Background Art

[0002] In winter, there are many ways to keep warm, including air conditioning, radiators, oil heaters, floor heating, etc. However, they have disadvantages such as high cost and poor comfort of some products. In order to save energy and balance study and entertainment, heating tables have become one of the heating options for many families.

[0003] At present, the most common heating tables are stainless steel or wooden fire tables with external insulation table covers and built-in fire basins. The fire basins are generally halogen tube heaters (commonly known as small suns). Although they can also effectively provide heating, their main problem is that the halogen tube heaters have a power of up to 500-1200 watts, which not only have high energy consumption, but also have high surface temperatures, which can easily scald users. At the same time, they cannot automatically control the temperature, and over time they can easily cause safety accidents such as fires. Utility Model Content

[0004] In view of the above problems, the utility model provides a middle-layer heating table with a superlattice semiconductor microcrystalline glass heating element. A heating module is arranged under the table body. The heating module adopts nano-electrothermal film microcrystalline glass to generate heat. Under the action of the energized electric field, the nano-electrothermal film microcrystalline glass collides and moves violently, and the radiation band generated is far infrared that is most suitable for human body to absorb. The skin will not dry out if heated for a long time, the table is energy-saving and environmentally friendly, and the safety is improved.

[0005] The technical solution adopted by the utility model is:

[0006] A super lattice semiconductor microcrystalline glass heating element middle layer heating heating table, comprising a table body, the table body comprising a table top and supporting legs for supporting the table top, at least one heating module for heating is arranged in a cavity formed by the table top and the supporting legs, each heating module comprises a mounting frame and a nano-electrothermal film microcrystalline glass arranged on the mounting frame, and the nano-electrothermal film microcrystalline glass is connected to a control mainboard.

[0007] Preferably, the placement frame includes a frame body for supporting the nano-electrothermal film micro-ceramic glass and two clamping plates clamped at both ends of the frame body for clamping the nano-electrothermal film micro-ceramic glass in the frame body.

[0008] More preferably, fireproof cotton is also provided around the nano-electric heating film glass-ceramic.

[0009] Preferably, the heating module is installed on the back of the desktop panel through a hanger, the hanger includes a hanger plate, at least two hangers are installed on the hanger plate, the hanger plate is installed on the back of the desktop panel through the hangers, and the heating module is installed on the back of the hanger plate.

[0010] More preferably, the hanging plate is further provided with a protective cover for covering the outside of the heating module, and the protective cover is provided with heat dissipation holes.

[0011] More preferably, at least two mounting seats are provided on the back side of the hanging plate, and the frame body of each heating module is installed between the two mounting seats.

[0012] More preferably, two heating modules are arranged in the hanger, and the mounting frames of the two heating modules are mounted between the two mounting seats.

[0013] More preferably, the mounting frame is installed obliquely between two mounting seats.

[0014] More preferably, the table body is a coffee table, a dining table, a desk or a mahjong table.

[0015] Compared with the prior art, the beneficial effects of the utility model are: the utility model provides a middle-layer heating table with a superlattice semiconductor microcrystalline glass heating element. A heating module is installed under the table top through a hanger. The heating module adopts nano-electrothermal film microcrystalline glass for heating. Under the action of the energized electric field, the nano-electrothermal film microcrystalline glass collides and moves violently, and the radiation band generated is the far infrared that is most suitable for human body to absorb. The skin will not dry out after long-term heating, energy saving and environmental protection are achieved, and safety is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 , which is a schematic diagram of a middle-layer heating heating table with a superlattice semiconductor glass-ceramic heating element provided by the utility model;

[0017] Figure 2 , which is an exploded view of a middle-layer heating heating table with a superlattice semiconductor glass-ceramic heating element provided by the utility model;

[0018] Figure 3 , which is an exploded view of a hanger in a middle layer heating heating table of a super lattice semiconductor microcrystalline glass heating element provided by the utility model;

[0019] Figure 4 , which is an exploded diagram of the heating module in the middle layer heating heating table of a superlattice semiconductor microcrystalline glass heating element provided by the utility model. DETAILED DESCRIPTION

[0020] The preferred implementation modes provided by the utility model are described in detail according to the accompanying drawings.

[0021] Figures 1 to 4 , which is a preferred embodiment of a superlattice semiconductor microcrystalline glass heating element middle layer heating heating table provided by the utility model. Figures 1 to 4As shown, the superlattice semiconductor microcrystalline glass heating element middle layer heating heating table includes a table body 10, and the table body 10 includes a table top 11 and support legs 12 for supporting the table top. The cavity formed by the table top 11 and the support legs 12 is provided with at least one heating module 20 for heating. Each heating module 20 includes a mounting frame 21 and a nano-electric heating film microcrystalline glass 22 arranged on the mounting frame. The nano-electric heating film microcrystalline glass 22 is connected to the control main board. In this way, the heating module 20 is arranged in the cavity formed by the table top 11 and the support legs 12, that is, the heating module 20 is at the bottom of the table top 11, so as to facilitate heating for users around the table body 10. A bottom plate is provided on the bottom end of the support legs 12, and the heating module 20 is located between the bottom plate and the table top 11. The table body 10 can be a coffee table, a dining table, a desk, a mahjong table, etc. Figure 1 As shown, the table body 10 is preferably a coffee table.

[0022] The nano-electric heating film microcrystalline glass 22 is based on high-temperature resistant, insulating, high-strength microcrystalline glass, quartz glass, and ceramics. It is coated with a superlattice semiconductor nano-electric heating film in a high-temperature environment by chemical vapor deposition. Under the action of the electric field, electrons are in an excited state and collide violently, generating heat energy mainly in the form of far-infrared radiation and transmitting it outward. This radiation band is the far-infrared that is most suitable for human body to absorb. The heat energy mainly in the form of far-infrared radiation is transmitted to the human body, which promotes blood circulation and increases metabolism. Therefore, it eliminates erythema irritum (commonly known as fire spot flower) caused by long-term heating, and can also improve original skin diseases.

[0023] The placing frame 21 includes a frame body 211 for supporting nano-electric heating film micro-ceramic glass and two clamping plates 212 clamped at both ends of the frame body for clamping the nano-electric heating film micro-ceramic glass in the frame body. The clamping plates 212 are installed on the frame body 211 by bolts. When installing, the nano-electric heating film micro-ceramic glass 22 is first clamped on the frame body 211 by the clamping plates 212, and then the frame body 211 is installed at the bottom of the desktop board 11. Fireproof cotton is also provided around the nano-electric heating film micro-ceramic glass.

[0024] The heating module 20 is installed on the back of the desktop panel 11 through a hanger 30. The hanger 30 includes a hanging plate 31. At least two hanging arms 32 are installed on the hanging plate 31. The hanging plate 31 is installed on the back of the desktop panel 11 by using the hanging arms 32. The heating module 20 is installed on the back of the hanging plate 31. In this way, the hanging plate 30 is installed on the back of the desktop panel 11, which can reduce the height of the heating module 20 and form a height that is convenient for users to heat up. At the same time, the hanging plate 31 on the hanger 30 and the back of the desktop panel 11 form a storage space for convenient storage. The hanging plate 31 is square, and four hanging arms are arranged around the hanging plate 31. The four hanging arms are installed on the back of the desktop panel 11 by bolts. As a preferred embodiment, the length of the hanging arm 32 can be set to be movable and adjustable, so that the height of the hanging plate 31 can be adjusted according to needs, thereby adjusting the height of the heating module 20.

[0025] The hanging plate 31 is also provided with a protective cover 33 for covering the outside of the heating module. The protective cover 33 is provided with heat dissipation holes 331 to facilitate the heat generated by the heating module 20 to be transferred out, and at the same time play a safety protection role to prevent any touching of the heating module 20.

[0026] At least two mounting seats 311 are provided on the back of the hanging plate 31, and the mounting frame 21 of each heating module 20 is installed between the two mounting seats 311, so that it is convenient to install the heating module 20, and at the same time, a gap is left between the heating module 20 and the hanging plate 31 to prevent the hanging plate 31 from being damaged by heat. The mounting frame 21 can be installed on the mounting seat 311 by bolts.

[0027] As a preferred embodiment, two heating modules 20 are arranged in the hanger 30, and the mounting frames 21 of the two heating modules 20 are installed between the two mounting seats 311. To facilitate heating for users, the mounting frame 21 of the heating module 20 can be installed obliquely between the two mounting seats 311, so that the nano-electric heating film micro-ceramic glass 22 on the mounting frame 21 faces the user.

[0028] In summary, the technical solution of the utility model can fully and effectively achieve the above-mentioned utility model purpose, and the structure and functional principle of the utility model have been fully verified in the embodiments, and can achieve the expected effect and purpose. Without departing from the principle and essence of the utility model, various changes or modifications can be made to the embodiments of the utility model. Therefore, the utility model includes all replacement contents within the scope mentioned in the scope of the patent application, and any equivalent changes made within the scope of the patent application of the utility model are within the scope of the patent application of this case.

Claims

1. A superlattice semiconductor microcrystalline glass heating element middle layer heating heating table, comprising a table body, the table body comprising a table top and supporting legs for supporting the table top, characterized in that: At least one heating module for generating heat is arranged in the cavity formed by the desktop panel and the supporting legs. Each heating module comprises a mounting frame and nano-electrothermal film micro-ceramic glass arranged on the mounting frame. The nano-electrothermal film micro-ceramic glass is connected to the control mainboard.

2. The superlattice semiconductor glass-ceramic heating element middle layer heating heating table according to claim 1, characterized in that: The placing frame comprises a frame body for supporting the nano-electric heating film micro-ceramic glass and two clamping plates clamped at two ends of the frame body for clamping the nano-electric heating film micro-ceramic glass in the frame body.

3. The middle layer heating heating table with superlattice semiconductor glass-ceramic heating element according to claim 2 is characterized in that: Fireproof cotton is also arranged around the nano-electric heating film micro-ceramic glass.

4. The superlattice semiconductor glass-ceramic heating element middle layer heating heating table according to claim 1, characterized in that: The heating module is installed on the back of the desktop panel through a hanger, the hanger includes a hanger plate, at least two hangers are installed on the hanger plate, the hanger plate is installed on the back of the desktop panel through the hangers, and the heating module is installed on the back of the hanger plate.

5. The middle-layer heating table with superlattice semiconductor glass-ceramic heating element according to claim 4 is characterized in that: The hanging plate is also provided with a protective cover for covering the outside of the heating module, and the protective cover is provided with heat dissipation holes.

6. The middle-layer heating table with superlattice semiconductor glass-ceramic heating element according to claim 4 is characterized in that: At least two mounting seats are arranged on the back of the hanging plate, and the frame body of each heating module is installed between the two mounting seats.

7. The superlattice semiconductor glass-ceramic heating element middle layer heating heating table according to claim 6, characterized in that: Two heating modules are arranged in the hanger, and the mounting frames of the two heating modules are mounted between the two mounting seats.

8. The superlattice semiconductor glass-ceramic heating element middle-layer heating heating table according to claim 7, characterized in that: The installation frame is installed obliquely between two installation seats.

9. The superlattice semiconductor glass-ceramic heating element middle layer heating heating table according to claim 1, characterized in that: The table body is a coffee table, a dining table, a desk or a mahjong table.