CN214307289U - Graphene far infrared electric heater - Google Patents
Graphene far infrared electric heater Download PDFInfo
- Publication number
- CN214307289U CN214307289U CN202120302051.5U CN202120302051U CN214307289U CN 214307289 U CN214307289 U CN 214307289U CN 202120302051 U CN202120302051 U CN 202120302051U CN 214307289 U CN214307289 U CN 214307289U
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- multiunit
- rear end
- infrared electric
- electric heater
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Abstract
The utility model relates to the technical field of electric heaters, in particular to a graphene far infrared electric heater, which connects equipment and a power supply, converts electric energy into heat energy by a shell, diffuses the heat into the shell through a graphene coating on the surface of the heating plate, then opens a plurality of groups of exhaust fans to discharge hot air in the shell through a protective screen, simultaneously sucks air outside the equipment into the shell through an air inlet at the rear end of the rear shell, and repeatedly circulates to raise the surrounding temperature, thereby improving the heat dissipation effect of the equipment and reducing the weight of the equipment; including shell, heating board, multiunit mount, multiunit exhaust fan, protection network, backshell and multiunit screw, the side of heating board and the lateral wall fixed connection in the shell to the surface of heating board is provided with the graphite alkene coating, and the multiunit exhaust fan is connected with the front end fixed connection of heating board through the multiunit mount respectively, and the rear end of protection network is connected with the front end of shell.
Description
Technical Field
The utility model relates to an electric heater's technical field especially relates to a graphite alkene far infrared electric heater.
Background
The electric heater is a heating device which uses electricity as energy source to heat and heat, and can also be called as an electric heater, uses electric energy as main energy source, and uses modes of resistance heating, induction heating, electric arc heating, electron beam heating, infrared heating, medium heating and the like to heat human body through direct contact, warm air convection, far infrared radiation and other ways. However, the existing electric heater is relatively simple in structure, generally uses metal materials to transfer heat, and causes poor heat dissipation effect of equipment and is relatively heavy, so that a graphene far infrared electric heater is needed.
SUMMERY OF THE UTILITY MODEL
For solving the technical problem, the utility model provides a with equipment and switch-on, make the shell with electric energy conversion for heat energy, and make the heat diffusion to the inside of shell through the graphite alkene coating on heating plate surface, later open the steam of multiunit exhaust fan in with the shell and pass through the protection network and discharge, the air inlet through the backshell rear end inhales the inside to the shell with the outer air of equipment simultaneously, the circulation is repeated, make temperature on every side rise, thereby improve the radiating effect of equipment, and reduce a graphite alkene far infrared electric heater of the weight of equipment.
The utility model discloses a far-infrared electric heater of graphite alkene, which comprises an outer shell, the heating board, the multiunit mount, the multiunit exhaust fan, the protection network, backshell and multiunit screw, lateral wall fixed connection in the side of heating board and the shell, and the surface of heating board is provided with the graphite alkene coating, the multiunit exhaust fan is respectively through the multiunit mount and the front end fixed connection of heating board, the rear end of protection network is connected with the front end of shell, the backshell is connected with the rear end of shell through the multiunit screw, and the rear end of backshell is provided with the air inlet.
The utility model discloses a far-infrared electric room heater of graphite alkene still includes handle and base, and the bottom of handle is connected with the top of shell through the base.
The utility model discloses a far-infrared electric heater of graphite alkene still includes the shock transducer, and the front end of shock transducer is connected with the rear end of backshell.
The utility model discloses a far-infrared electric heater of graphite alkene still includes the support frame, first connecting axle, second connecting axle, fixed plate, first base and second base, and the both sides of support frame are connected with the one end of first connecting axle and second connecting axle respectively, and the other end of first connecting axle and second connecting axle rotates with the both sides of shell respectively to be connected, and the bottom of support frame is connected with the top of fixed plate, and the bottom of fixed plate is connected with the top of first base and second base.
The utility model discloses a far-infrared electric heater of graphite alkene, still including control board, display screen and thermodetector, control board and thermodetector's front end all is connected with the rear end of backshell to control board with heat the heating board and be connected with the multiunit exhaust fan, the front end of display screen is connected with the rear end of controlling the board.
The utility model discloses a far-infrared electric heater of graphite alkene still includes the filter screen, and the front end of filter screen is connected with the rear end of backshell to the filter screen blocks the air inlet of backshell.
Compared with the prior art, the beneficial effects of the utility model are that: with equipment and switch-on, make the shell with electric energy conversion for heat energy to make the heat diffusion to the inside of shell through the graphite alkene coating on heating panel surface, later open the steam of multiunit exhaust fan in with the shell and pass through the protection network and discharge, the air inlet through the backshell rear end inhales the inside to the shell with the air outside the equipment simultaneously, the recirculation makes the temperature on every side rise, thereby improve the radiating effect of equipment, and reduce the weight of equipment.
Drawings
Fig. 1 is a schematic front sectional view of the present invention;
fig. 2 is a schematic front view of the present invention;
fig. 3 is a rear view structure diagram of the present invention;
fig. 4 is a schematic diagram of the front view section of the present invention.
In the drawings, the reference numbers: 1. a housing; 2. heating the heating plate; 3. a fixed mount; 4. an exhaust fan; 5. a protective net; 6. a rear housing; 7. a screw; 8. a handle; 9. a base; 10. a shock sensor; 11. a support frame; 12. a first connecting shaft; 13. a second connecting shaft; 14. a fixing plate; 15. a first base; 16. a second base; 17. a control panel; 18. a display screen; 19. a temperature detector; 20. and (5) filtering by using a filter screen.
Detailed Description
The following detailed description of the embodiments of the present invention is provided with reference to the accompanying drawings and examples. The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention.
As shown in fig. 1 to 4, the utility model discloses a far-infrared electric graphene heater, including shell 1, heating board 2, multiunit mount 3, multiunit exhaust fan 4, protection network 5, backshell 6 and multiunit screw 7, the side of heating board 2 is fixedly connected with the lateral wall in shell 1, and the surface of heating board 2 is provided with the graphene coating, multiunit exhaust fan 4 is respectively through multiunit mount 3 and the front end fixed connection of heating board 2, the rear end of protection network 5 is connected with the front end of shell 1, backshell 6 is connected with the rear end of shell 1 through multiunit screw 7, and the rear end of backshell 6 is provided with the air inlet; with equipment and switch-on, make shell 1 with electric energy conversion heat energy, and make the heat diffusion to the inside of shell 1 through the graphite alkene coating on heating board 2 surfaces, later open multiunit exhaust fan 4 and pass through protection network 5 with the steam in the shell 1 and discharge, the air inlet through 6 rear ends of backshells inhales the inside to shell 1 with the outside air of equipment simultaneously, the recirculation makes temperature around rise, thereby improve the radiating effect of equipment, and reduce the weight of equipment.
The utility model discloses a graphene far infrared electric heater, which also comprises a handle 8 and a base 9, wherein the bottom end of the handle 8 is connected with the top end of the shell 1 through the base 9; through setting up handle 8 and base 9, make things convenient for people to remove equipment to improve equipment's convenience.
The utility model discloses a far-infrared electric heater of graphite alkene, still include the shock sensor 10, the front end of shock sensor 10 is connected with the rear end of backshell 6; after equipment falls down, heat the timber apron more easily, the conflagration breaks out, through setting up vibrations sensor 10, detects the vibrations of equipment, when the vibration range of equipment surpassed the limit value of vibrations sensor 10, makes equipment automatic shutdown operation to improve equipment's security.
The utility model discloses a graphite alkene far-infrared electric heater, still include support frame 11, first connecting axle 12, second connecting axle 13, fixed plate 14, first base 15 and second base 16, the both sides of support frame 11 are connected with the one end of first connecting axle 12 and second connecting axle 13 respectively, the other end of first connecting axle 12 and second connecting axle 13 rotates with the both sides of shell 1 respectively and is connected, the bottom of support frame 11 is connected with the top of fixed plate 14, the bottom of fixed plate 14 is connected with the top of first base 15 and second base 16; the shell 1 is supported by the support frame 11, and then the shell 1 is twisted backwards and forwards, so that the exhaust direction of the shell 1 is adjusted, and the practicability of the equipment is improved.
The utility model discloses a far-infrared electric heater of graphite alkene, still include control panel 17, display screen 18 and thermodetector 19, the front end of control panel 17 and thermodetector 19 is connected with the rear end of backshell 6, and control panel 17 with heating board 2 and multiunit exhaust fan 4 be connected, the front end of display screen 18 is connected with the rear end of control panel 17; through setting up control panel 17, make things convenient for people to control equipment to detect the temperature around equipment through setting up thermodetector 19, and show thermodetector 19's testing result through display screen 18, make things convenient for people to observe the temperature around, thereby improve equipment's convenience.
The utility model discloses a graphite alkene far-infrared electric heater, still include the filter screen 20, the front end of filter screen 20 is connected with the rear end of backshell 6, and the filter screen 20 blocks the air inlet of backshell 6; through setting up filter screen 20, filter the air that will enter into in the shell 1, reduce the dust that enters into in the shell 1 to improve equipment's dustproof effect.
The utility model discloses a far-infrared electric heater of graphite alkene, it is at the during operation, at first with equipment and switch-on, make shell 1 convert the electric energy into heat energy, and make heat diffusion to the inside of shell 1 through the graphite alkene coating on heating plate 2 surfaces, later open multiunit exhaust fan 4 and pass through protection network 5 with the steam in the shell 1 and discharge, filter the back through filter screen 20 simultaneously, the air inlet through 6 rear ends of backshell inhales the outside air of equipment to the inside of shell 1, the recirculation, make around the temperature rise can.
The installation mode, the connection mode or the setting mode of the graphene far infrared electric heater of the utility model are common mechanical modes, and the installation mode, the connection mode or the setting mode can be implemented as long as the beneficial effects can be achieved; the utility model discloses a multiunit exhaust fan 4 of graphite alkene far-infrared electric heater is purchase on the market, and this industry technical staff only need according to its subsidiary service instruction install and operate can.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and variations can be made without departing from the technical principle of the present invention, and these modifications and variations should also be regarded as the protection scope of the present invention.
Claims (6)
1. The utility model provides a graphite alkene far-infrared electric heater, a serial communication port, which comprises an outer shell (1), heating board (2), multiunit mount (3), multiunit exhaust fan (4), protection network (5), backshell (6) and multiunit screw (7), the side of heating board (2) and the lateral wall fixed connection in shell (1), and the surface of heating board (2) is provided with the graphite alkene coating, multiunit exhaust fan (4) are respectively through the front end fixed connection of multiunit mount (3) with heating board (2), the rear end of protection network (5) is connected with the front end of shell (1), backshell (6) are connected with the rear end of shell (1) through multiunit screw (7), and the rear end of backshell (6) is provided with the air inlet.
2. The graphene far-infrared electric heater according to claim 1, further comprising a handle (8) and a base (9), wherein the bottom end of the handle (8) is connected with the top end of the housing (1) through the base (9).
3. The graphene far-infrared electric warmer according to claim 1, further comprising a vibration sensor (10), wherein the front end of the vibration sensor (10) is connected with the rear end of the rear shell (6).
4. The graphene far-infrared electric heater according to claim 1, further comprising a support frame (11), a first connecting shaft (12), a second connecting shaft (13), a fixing plate (14), a first base (15) and a second base (16), wherein two sides of the support frame (11) are respectively connected with one ends of the first connecting shaft (12) and the second connecting shaft (13), the other ends of the first connecting shaft (12) and the second connecting shaft (13) are respectively rotatably connected with two sides of the housing (1), the bottom end of the support frame (11) is connected with the top end of the fixing plate (14), and the bottom end of the fixing plate (14) is connected with the top ends of the first base (15) and the second base (16).
5. The graphene far-infrared electric heater according to claim 4, further comprising a control board (17), a display screen (18) and a temperature detector (19), wherein the front ends of the control board (17) and the temperature detector (19) are connected with the rear end of the rear shell (6), the control board (17) is connected with the heating board (2) and the plurality of groups of exhaust fans (4), and the front end of the display screen (18) is connected with the rear end of the control board (17).
6. The graphene far-infrared electric warmer according to claim 1, further comprising a filter screen (20), wherein the front end of the filter screen (20) is connected with the rear end of the rear shell (6), and the filter screen (20) blocks the air inlet of the rear shell (6).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120302051.5U CN214307289U (en) | 2021-02-02 | 2021-02-02 | Graphene far infrared electric heater |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120302051.5U CN214307289U (en) | 2021-02-02 | 2021-02-02 | Graphene far infrared electric heater |
Publications (1)
Publication Number | Publication Date |
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CN214307289U true CN214307289U (en) | 2021-09-28 |
Family
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Family Applications (1)
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CN202120302051.5U Active CN214307289U (en) | 2021-02-02 | 2021-02-02 | Graphene far infrared electric heater |
Country Status (1)
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CN (1) | CN214307289U (en) |
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2021
- 2021-02-02 CN CN202120302051.5U patent/CN214307289U/en active Active
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