TBWT microcrystalline glass carbon fiber warmer
The problem of screw fixing in microcrystalline glass heater is solved by combining plug-in and clamping, and the problem of easy corrosion and rust by screw fixing is realized, which can achieve rapid disassembly and assembly and maintenance, and convenient combination and fixing, which improves the practicality of the heater.
Patent Information
- Application Number
- CN202422429061.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The existing microcrystalline glass heater is fixed by screws, which is prone to corrosion and rust, resulting in inconvenience in disassembly and assembly, affecting later maintenance.
The plug-in and clamping combination is adopted, and the structures such as base, panel fixing frame, anti-heat plate, side base and plug-in column are used to achieve rapid installation and disassembly of microcrystalline glass panels to avoid corrosion and rust of screws.
It improves the practicality of the heater, facilitates post-maintenance, avoids the problem of screw corrosion and rust, and ensures the combined fixing effect.
Smart Images

Figure CN223191698U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of heaters, and in particular relates to a TBWT microcrystalline glass carbon fiber heater. Background Art
[0002] A heater refers to a device used for heating. There are many types of heaters, and the most common electric heater is a heating device that uses electricity as energy for heating. It can be widely used in various civil and public buildings such as residential buildings, offices, hotels, shopping malls, hospitals, schools, train carriages, mobile heating, simple mobile homes, etc. The existing heating device usually adopts a shell with a concave cavity to set a resistance wire, and then encapsulates a layer of mesh cover on the shell so that the heat generated by the resistance wire is directly dissipated through the holes of the mesh cover. This heating method has the following defects: the resistance wire is a heating element, and the temperature rises and falls slowly, and the way the heat is dissipated through the holes of the mesh cover makes the heating of the existing heating device very uneven, the heat that the user can obtain is small, and the effective heat utilization rate is low; in addition, there are redness and hot phenomena, which pose certain safety hazards.
[0003] To this end, a glass-ceramic heater with the announcement number "CN213746973U" includes: at least one bottom shell, the bottom shell has a concave cavity; at least one heat insulation cover, the heat insulation cover is fitted in the concave cavity of the bottom shell; a glass-ceramic plate, the glass-ceramic plate covers the bottom shell; at least one graphene coating, the graphene coating is located in the heat insulation cover and is evenly applied to the glass-ceramic plate; at least one reflective plate, the reflective plate is arranged in the heat insulation cover and is located below the graphene coating. This application achieves uniform heating by evenly applying the graphene coating as a heating element on the glass-ceramic plate, and uniformly transmitting the heat through the glass-ceramic plate; at the same time, at least one reflective plate is arranged below the graphene coating, and the far-infrared rays generated by the graphene coating can be reflected by the reflective plate to the glass-ceramic plate, and the glass-ceramic plate then evenly transmits the heat of the far-infrared rays, further improving the effective heat utilization rate.
[0004] However, for the above-mentioned microcrystalline glass heater, although the microcrystalline glass plate is covered on the bottom shell and is tightened and fixed with screws to facilitate the later disassembly of the heater, the following more obvious defects still exist during use: the microcrystalline glass plate in the above-mentioned heater is covered on the outside of the bottom shell and fixed with screws. This fixing method will cause corrosion and rust during the later use of the heater due to the influence of the external environment, and it will be impossible to disassemble it, and it will make disassembly and assembly more troublesome. Utility Model Content
[0005] The purpose of the present invention is to provide a TBWT glass-ceramic carbon fiber heater to solve the problems raised in the above background technology.
[0006] To achieve the above objectives, the present invention provides the following technical solutions: a TBWT glass-ceramic carbon fiber heater, comprising:
[0007] The base has carbon fiber heating tubes installed on both sides of the base through heating tube brackets for generating heat output from the heater. The front and rear ends of the inner side of the heating tube bracket are provided with panel fixing brackets for sliding the outer panel of the heater into the base. The panel fixing bracket is clamped with a heat-reflecting plate for conducting the heat generated by the carbon fiber heating tubes in one direction. Side bases for pressing the carbon fiber heating tubes are installed at both ends of the base. A micro-ceramic glass panel for blocking light radiation is slid into the bottom end of the inner side of the panel fixing bracket.
[0008] Preferably, both sides of the bottom end of the base are laterally provided with snap-in grooves, and the snap-in grooves are snap-fitted to the overlapping positions of the ends of the heating tube bracket and the heat-reflecting plate, so as to facilitate the later disassembly and assembly of the internal structural parts of the heater.
[0009] Preferably, a window glass is slid into the bottom end of the side base on one side of the base and is docked with one end of the microcrystalline glass panel. The window glass is located on one side of the side base and is provided with a display panel, which allows the heater to display the current temperature in real time.
[0010] Preferably, the front and rear ends of the inner bottom of the panel fixing frame are provided with sliding positioning grooves, and the microcrystalline glass panel slides into the panel fixing frame from one side of the sliding positioning groove for positioning and is tightly fixed by the side base, so that the microcrystalline glass panel is fixed in a limited position by sliding installation and is easy to disassemble.
[0011] Preferably, a plug-in column is provided at each corner of one side of the side base, and a fixed plug-in slot is provided at a position on the inner side of the end of the base corresponding to the plug-in column, so that the microcrystalline glass panel can be disassembled and assembled to repair the heater.
[0012] Preferably, the side base is connected with side baffles through a combination of plug-in columns, and the side baffles are docked and installed on both sides of the base to prevent the emitted heat from diffusing outwards.
[0013] Compared with the prior art, the technical effects and advantages of the present invention are as follows: the TBWT microcrystalline glass carbon fiber heater is connected to the overlapping part of the heat-reflecting plate and the panel fixing frame through the base clamp, and the bottom side of the panel fixing frame slides into the positioning groove to slide the microcrystalline glass panel into the installation, and the side base is inserted into the plug-in on both sides of the base to tightly fix the two ends of the microcrystalline glass surface, and the microcrystalline glass panel can be slid into the positioning groove and installed on the inner bottom surface of the panel fixing frame by sliding the side base to tighten the side baffle, so that the microcrystalline glass panel can be tightly fixed. The structure of the glass panel installation does not require the heater to be fixed by screws, and the heater can be fixed by a combination of plug-in and clip-on methods, and the phenomenon of screws corroding and rusting and being unable to be disassembled is avoided. By simply pulling out the side bases at both ends of the base 1 to both sides, the microcrystalline glass panel can be pulled out and removed from the panel fixing frame, making the later maintenance of the heater more convenient and time-saving, thereby further improving the practicality of the heater. The heater is instant heating with carbon fiber tubes, and the microcrystalline glass blocks the light radiation of the heating tube, has good thermal efficiency, and the light is not dazzling, and can be used indoors and outdoors. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the explosion structure of the utility model heater;
[0015] Figure 2 This is a schematic diagram of the three-dimensional structure of the heater of the present invention.
[0016] In the figure: 1. Base; 2. Heating tube bracket; 3. Carbon fiber heating tube; 4. Panel fixing frame; 5. Heat reflection plate; 6. Side base; 7. Side baffle; 8. Microcrystalline glass panel; 9. Snap-in slot; 10. Window glass; 11. Display panel; 12. Slide-in positioning slot; 13. Plug-in column; 14. Plug-in slot. DETAILED DESCRIPTION
[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0018] See also Figure 1-2 The utility model provides a technical solution: a TBWT glass-ceramic carbon fiber heater, comprising:
[0019] The base 1 has a symmetrical, horizontal installation on one side of the outside of the base 1, which is symmetrically locked with a convenient installation piece for sliding and locking for installation and fixation. Carbon fiber heating tubes 3 for generating heat output from the heater are installed on both sides of the base 1 through heating tube brackets 2. The carbon fiber material has good thermal conductivity, which enables the carbon fiber heating tubes 3 to heat up quickly and release heat. Compared with traditional heating elements, the carbon fiber heating tubes 3 can reach the required temperature in a shorter time, thereby improving heating efficiency. The front and rear ends of the inner side of the heating tube bracket 2 are provided with a panel fixing frame 4 for sliding the external panel of the heater into the base 1. The panel fixing frame 4 is snap-fitted with a heat-reflecting plate 5 for conducting the heat generated by the carbon fiber heating tube 3 in one direction. Side bases 6 for pressing the carbon fiber heating tube 3 are plugged into both ends of the base 1 to achieve the installation, combination and fixation of the heater and the protection of the internal components.
[0020] The bottom end of the inner side of the panel fixing frame 4 is slid into a microcrystalline glass panel 8 for blocking light radiation. The microcrystalline glass panel 8 can evenly dissipate the heat generated by the graphite coating, thereby achieving uniform heating. The microcrystalline glass panel 8 is made of a base glass of a specific composition with a crystal nucleating agent added thereto. It is subjected to a crystallization heat treatment under a certain temperature regime, and a large number of tiny crystals are evenly precipitated in the glass, forming a dense multiphase complex of microcrystalline phase and glass phase. The microcrystalline glass panel 8 has the characteristics of high mechanical strength, excellent insulation performance, low dielectric loss, stable dielectric constant, thermal expansion coefficient that can be adjusted over a wide range, good thermal stability, and high operating temperature. Therefore, it can be applied to high-power heaters, so that the heating range of the heater of the embodiment of the present application is relatively large.
[0021] Both sides of the inner bottom end of the base 1 are laterally provided with a snap-in groove 9, so that the heat-reflecting plate 5 is snapped into the inner side of the base 1, and the panel fixing frame 4 can be combined with the heat-reflecting plate 5, and the snap-in groove 9 is snapped into the position where the end of the heating tube bracket 2 and the heat-reflecting plate 5 are snapped and overlapped. The inner bottom end of the side base 6 on one side of the base 1 slides into a window glass 10 that is combined with one end of the microcrystalline glass panel 8, so that the display panel 11 displays the temperature through the window glass 10. The window glass 10 is located on one side of the inner side of the side base 6 and is provided with a display panel 11, which displays the temperature of the heat emitted by the heater in real time. The front and rear edges of the inner bottom of the panel fixing frame 4 are provided with a sliding positioning groove 12, and the microcrystalline glass panel 8 slides into the panel fixing frame 4 from one side of the sliding positioning groove 12 for positioning and is tightly fixed by the side base 6.
[0022] A plug-in column 13 is provided at each corner of one side of the side base 6, which is convenient for the side base 6 to be plugged in and installed on both sides of the base 1, and the plug-in column 13 is provided at the position on the inner side of the end of the base 1 so that the plug-in column 13 can be inserted into a fixed plug-in groove 14, thereby realizing the combined installation of the side base 6 to tighten and fix the microcrystalline glass panel 8. The side base 6 is connected with the side baffle member 7 through the plug-in column 13 combination, and the side baffle member 7 is docked and installed on both sides of the base 1.
[0023] Specifically, when in use, first make the heating tube bracket 2 cover and snap-fit on the panel fixing frame 4, and cover and snap-fit the base 1 on the outside of the heat-reflecting plate 5. At this time, the carbon fiber heating tube 3 is installed on the inner side of the heat-reflecting plate 5 and arranged horizontally. When the micro-ceramic panel 8 is slid from one side into the sliding positioning groove 12, the micro-ceramic panel 8 can be quickly installed on the inner bottom end of the panel fixing frame 4. Then, the side baffle 7 is plugged and assembled on the side base 6 using the plug-in column 13. Then, the side base 6 is inserted into the plug-in groove 14 using the plug-in column 13. The combination of the side base 6 and the side baffle 7 can be installed on both sides of the base 1, so that the two ends of the micro-ceramic panel 8 can be tightened. Finally Insert the window glass 10 into the side base 6 at one end and fix the window glass 10 with the side baffle 7. Finally, install the display panel 11 on the inside of the window glass 10 to display the temperature. The structure of the above-mentioned microcrystalline glass panel 8 does not require the heater to be fixed by screws, and the heater can be fixed by a combination of plug-in and snap-in, and avoids the phenomenon that the screws cannot be disassembled due to corrosion and rust. By pulling out the side bases 6 at both ends of the base 1 to both sides, the microcrystalline glass panel 8 can be pulled out and removed from the panel fixing frame 4, which makes the later maintenance of the heater more convenient and saves time, thereby further improving the practicality of the heater.
[0024] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A TBWT glass-ceramic carbon fiber heater, characterized in that: include: A base (1) is provided, wherein carbon fiber heating tubes (3) for generating heat output by the heater are installed on both sides of the base (1) through heating tube brackets (2), and the front and rear ends of the inner side of the heating tube bracket (2) are provided with panel fixing frames (4) for sliding the outer panel of the heater into the base (1), and a heat-reflecting plate (5) for conducting heat generated by the carbon fiber heating tubes (3) in one direction is mounted on the panel fixing frame (4), and side bases (6) for tightening the carbon fiber heating tubes (3) are installed at both ends of the base (1), and a microcrystalline glass panel (8) for blocking light radiation is slidably mounted on the inner bottom end of the panel fixing frame (4).
2. The TBWT glass-ceramic carbon fiber heater according to claim 1, characterized in that: Both sides of the bottom end of the base (1) are laterally provided with snap-fit grooves (9), and the snap-fit grooves (9) are snap-fitted to the overlapping position of the end of the heating pipe bracket (2) and the heat-reflecting plate (5).
3. The TBWT glass-ceramic carbon fiber heater according to claim 1, characterized in that: A window glass (10) is slid into the bottom end of the inner side base (6) on one side of the base (1) and is connected to one end of the microcrystalline glass panel (8). The window glass (10) is provided with a display panel (11) on one side of the inner side base (6).
4. The TBWT glass-ceramic carbon fiber heater according to claim 1, characterized in that: The front and rear edges of the inner bottom of the panel fixing frame (4) are provided with sliding positioning grooves (12), and the microcrystalline glass panel (8) slides into the panel fixing frame (4) from one side of the sliding positioning groove (12) for positioning and is tightened and fixed by the side base (6).
5. The TBWT glass-ceramic carbon fiber heater according to claim 1, characterized in that: A plug-in column (13) is provided at each corner of one side of the side base (6), and a plug-in slot (14) for inserting the plug-in column (13) into a fixed position is provided at a position on the inner side of the end of the base (1) corresponding to the plug-in column (13).
6. The TBWT glass-ceramic carbon fiber heater according to claim 1, characterized in that: The side base (6) is connected to the side baffle member (7) through the plug-in column (13), and the side baffle member (7) is docked and installed on both sides of the base (1).
Citation Information
Patent Citations
Glass ceramic warmer
CN213746973U