CN212339373U - Graphite alkene removes room heater - Google Patents
Graphite alkene removes room heater Download PDFInfo
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- CN212339373U CN212339373U CN201922224559.3U CN201922224559U CN212339373U CN 212339373 U CN212339373 U CN 212339373U CN 201922224559 U CN201922224559 U CN 201922224559U CN 212339373 U CN212339373 U CN 212339373U
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Abstract
The application discloses graphite alkene removes room heater. Graphite alkene removes room heater includes shell, graphite alkene heating element and removes the subassembly, graphite alkene heating element includes transparent graphite alkene electric heat membrane (3). The graphene mobile heater takes a transparent graphene electric heating film as a main heating component, and the heating is uniform; the transparent graphene electrothermal film has high electrothermal radiation conversion efficiency, low power consumption and quick heating; in addition, transparent graphite alkene electric heat membrane can radiate far infrared, has physiotherapy health care function.
Description
Technical Field
The utility model relates to an electric heating field, concretely relates to graphite alkene removes room heater.
Background
Most of the northern part has collective heating in winter, but the southern part basically has no heating supply, so most of the northern part is heated by a portable mobile heater. The mobile heater has small size, light weight and convenient movement, and basically one heater can be used for heating 3-4 people, so the mobile heater is popular in the south and has huge market capacity. However, most of mobile heaters in the market at present still rely on resistance wire tubes and infrared heating tubes to heat, the electric power required by the heaters is large, the power consumption is high, meanwhile, strong light is usually emitted, and eyes can be damaged by the direct-view heaters for a long time. And the skin feels dry when the warmer is used for a long time. In addition, most of the heating devices used in the mobile warmer usually generate heat linearly, and usually work at high temperature and high voltage, and are easily blown or damaged, so that the warmer has short service life, and serious safety accidents can even be caused.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the present disclosure is that, on one hand, the existing warmer emits strong light which may damage eyes; on the other hand, the heating part of the existing warmer is a linear heating part and is easy to damage.
The embodiment of the disclosure provides a graphite alkene removes room heater, uses transparent graphite alkene electric heat membrane as the part that generates heat. The transparent graphene electrothermal film can uniformly heat in a planar mode, has the characteristics of high electrothermal radiation conversion efficiency and low power consumption, can heat quickly, and cannot emit light which is harmful to a human body. Meanwhile, far infrared rays which are very close to human body life light waves can be radiated when the graphene is heated, resonance can be well achieved with a human body, and a physical therapy health-care function is achieved. The movable warmer can not cause skin dryness after being used for a long time, and can well promote the absorption of human bodies to maintenance products.
Specifically, the present disclosure proposes the following technical solutions:
the utility model provides a graphite alkene removes room heater, includes shell, graphite alkene heating element and removes the subassembly, preferably, the shell includes preceding shell and backshell.
In some embodiments, the graphene heating component is located within the housing, the graphene heating component comprising a graphene electrothermal film; optionally, the graphene electrothermal film is a transparent graphene electrothermal film.
In some embodiments, the transparent graphene electrothermal film comprises an insulating protective layer, a graphene heating layer and an electrode arranged on the surface of the graphene heating layer, wherein the graphene heating layer is graphene, and the graphene heating layer and the electrode are positioned in the insulating protective layer; optionally, the graphene heating layer is 1-10 layers of graphene; optionally, the graphene heating layer is 1-5 layers of graphene; optionally, the graphene heating layer is 1-2 graphene layers.
In some embodiments, the graphene heating assembly comprises a transparent graphene electrothermal film and a heat dissipation plate; optionally, the transparent graphene electrothermal films are electrically connected in parallel or in series; optionally, the transparent graphene electrothermal film is arranged on the surface of the heat dissipation plate; optionally, the transparent graphene electrothermal film is located between the front shell and the heat dissipation plate; optionally, the heat dissipation plate is a heat dissipation aluminum plate.
In some embodiments, the graphene heating component further comprises a temperature sensor; optionally, the temperature sensor is disposed on the transparent graphene electrothermal film.
In some embodiments, a heat outlet is provided in the middle of the front shell; optionally, the heat outlet is selected from louvers.
In some embodiments, the mobile assembly is located at the bottom of the graphene mobile warmer; optionally, the moving assembly comprises a support member and a roller; optionally, the support member comprises a support bar; optionally, the support rod is rotatably disposed above the roller.
In some embodiments, the graphene mobile warmer further comprises a control component electrically connected to the graphene heating component and/or the mobile component; optionally, the control assembly comprises a control circuit board and a control panel; optionally, the control panel is disposed on an outer surface of the graphene mobile heater, and optionally, the control panel is disposed on an outer surface of the front shell; optionally, the control circuit board is disposed inside the front case.
In some embodiments, the graphene mobile warmer further comprises a fan; optionally, the fan is disposed on the rear case; optionally, the fan is disposed at a diagonal position of the rear case.
The beneficial effect of this application includes:
1. the graphene mobile warmer in the embodiment of the disclosure takes the transparent graphene electric heating film as a heating component, and is uniform in heating and free of strong light; the electric heating radiation conversion efficiency is high, the power consumption is low, and the heating is rapid; in addition, the graphene electrothermal film can radiate far infrared rays and has a physical therapy health-care function.
2. The graphene movable heater in the embodiment of the disclosure adopts shutter blades, so that the heat direction is convenient to adjust.
3. The graphite alkene in the embodiment of this disclosure removes the room heater and has the removal subassembly, and graphite alkene removes the room heater and can freely remove.
Drawings
Fig. 1 is an exploded structural schematic view of a main body portion of a graphene mobile warmer according to an embodiment of the present disclosure.
In the figure, 1-front shell; 2-a control panel; 3-transparent graphene electrothermal film; 4-a heat dissipation aluminum plate; 5-a fan; 6-rear shell; 7-a shutter; 8-supporting rods and 9-rollers.
Detailed Description
The technical scheme of the disclosure is clearly and completely described in the following with reference to the accompanying drawings. Obviously, all other embodiments obtained by a person of ordinary skill in the art without making creative efforts based on the specific embodiments in the present disclosure belong to the protection scope of the present disclosure.
It is noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments according to the present disclosure.
In the description herein, unless expressly stated or limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning a fixed connection, a removable connection, or an integral connection; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present disclosure can be understood in specific instances by those of ordinary skill in the art.
Unless otherwise specified, terms such as "intermediate," "upper," "lower," "lateral," "inner," "outer," and the like refer to an orientation or positional relationship as shown in the drawings or as conventionally understood by one of ordinary skill in the art. This is merely for convenience in describing the invention and for simplicity in description, and is not intended to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and is therefore not to be considered limiting of the present disclosure.
The term "graphene" is an assembly of carbon atoms in sp2The hybrid tracks form a hexagonal honeycomb lattice two-dimensional carbon nanomaterial.
Some embodiments of the present disclosure provide a graphene mobile warmer, including a front shell, a graphene heating component, a rear shell, and a mobile component.
Optionally, the graphene heating component comprises a graphene electrothermal film. Optionally, the graphene electrothermal film is a transparent graphene electrothermal film and is made based on a transparent graphene heating layer.
The transparent graphene electrothermal film takes large-size graphene as a heating layer. Generally, only graphene with larger size (e.g. 2cm × 2cm, 10cm × 20cm) is used as a heat generating material to produce a transparent graphene electrothermal film, while graphene micro-sheets with small size (e.g. millimeter or micron size) formed by stacking have low light transmittance, and generally can only be used as a black film. Through adjusting the number of graphene layers in the graphene electrothermal film, the resistance of the graphene electrothermal film can be changed, and therefore the heating power can be adjusted.
Alternatively, the large-size graphene can be prepared by a chemical vapor deposition method, and the transparent graphene electrothermal film can be prepared by a method of CN 105517215B.
Optionally, the transparent graphene electrothermal film comprises an insulating protection layer, a graphene heating layer and an electrode arranged on the surface of the graphene heating layer, wherein the graphene heating layer is graphene, and the graphene heating layer and the electrode are located in the insulating protection layer. Optionally, the graphene heating layer is 1-10 layers of graphene. Optionally, the graphene heating layer is 1-5 layers of graphene. Optionally, the graphene heating layer is 1-2 graphene layers.
In some embodiments of the present disclosure, the graphene heating assembly includes a graphene electrothermal film and a heat dissipation plate. Optionally, the graphene electrothermal film is disposed on the surface of the heat dissipation plate. Optionally, the heat dissipation plate is a heat dissipation aluminum plate, and the aluminum plate is low in cost and easy to machine.
In some embodiments of the present disclosure, the graphene heating assembly includes a graphene electrothermal film, a heat dissipation plate, and a temperature sensor. Optionally, the temperature sensor is arranged on the graphene electrothermal film, so that the temperature of the graphene electrothermal film can be detected, and the temperature of the graphene electrothermal film can be accurately adjusted conveniently.
In some embodiments of the present disclosure, a louver-type fan is disposed in the middle of the front housing, and the louver-type front housing can adjust the upward or downward direction of heat transfer as needed.
In some embodiments of the present disclosure, the movement assembly includes a rotatable support bar and a rollable stand roller. The rotatable supporting rod can adjust the heater to automatically rotate by 180 degrees or continuously rotate according to the requirement; the rolling type movement of the warmer can be realized by the rolling support roller, and the rolling type moving warmer is light and fast.
In some embodiments of the present disclosure, the graphene mobile warmer is provided with a control assembly. Optionally, the control assembly includes a control circuit board and a control panel, and at least one of the following functions is realized through circuit design: temperature regulation, shutter regulation from top to bottom, the horizontal 180 degrees rotation settings of room heater, intelligent bluetooth control, WIFI control. Optionally, the control panel is disposed on an outer surface of the front case. Optionally, the control panel is disposed at a position above the outer surface of the front case. Optionally, the control circuit board is disposed inside the front case. Optionally, the control circuit board is disposed at an upper position inside the front case.
In some embodiments of the present disclosure, the graphene mobile warmer includes a fan. Optionally, a supporting fan is disposed at a diagonal position inside the rear case so as to intensively dissipate heat of the heat generating component through the front case.
In some embodiments of this disclosure, graphite alkene removes room heater heating element is adjustable, the angle of generating heat is adjustable, the gear that generates heat is adjustable, is portable room heater. Through intelligent control, adjust according to individual's needs.
Examples
One embodiment of the present disclosure is shown in fig. 1. The graphite alkene removes room heater includes preceding shell 1, graphite alkene heating element, backshell 6, rotatable support pole 8 and can roll support gyro wheel 9. Wherein, the front shell 1 is arranged into an integral fixed shell at the periphery, the middle part is provided with a shutter 7, and the upper part is provided with a control panel 2. The louvered front case 1 can adjust the heat transfer upward or downward direction as desired. The middle of the warmer is provided with a graphene heating component which comprises a transparent graphene electric heating film 3 and a heat dissipation aluminum plate 4. The transparent graphene electrothermal film 3 contains a heating layer formed by 2 layers of graphene, parallel electrodes are printed on the heating layer, and the heating layer and the electrodes are protected by a temperature-resistant insulating protective layer. Two transparent graphite alkene electric heat membrane 3 paste heat dissipation aluminum plate 4 one side through parallelly connected back, and the back of transparent graphite alkene electric heat membrane 3 is evenly pasted on heat dissipation aluminum plate 4 through high heat conduction glue, and transparent graphite alkene electric heat membrane 3 openly just to shutter 7 on the preceding shell 1, is provided with the temperature sensor of many places on the transparent graphite alkene electric heat membrane 3. The inside opposite angle of room heater backshell 6 sets up fan 5 to the heat with graphite alkene heating element distributes away through preceding shell 1 is concentrated. The bottom of the warmer is provided with a rotatable supporting rod 8 and a rolling support roller 9. The rotatable supporting rod 8 can adjust the heater to rotate by 180 degrees according to the requirement; the rolling type movement of the warmer can be realized by arranging the rolling support idler wheel 9, and the warmer is light and rapid.
Claims (9)
1. The utility model provides a graphite alkene removes room heater, a serial communication port, includes shell, graphite alkene heating element and removal subassembly, graphite alkene heating element includes transparent graphite alkene electric heat membrane (3), transparent graphite alkene electric heat membrane (3) generate heat the layer and set up the electrode on graphite alkene heating layer surface including insulating protective layer, graphite alkene generates heat the layer and the electrode is located in the insulating protective layer.
2. The graphene mobile warmer according to claim 1, wherein the graphene heating layer is 1-5 layers of graphene.
3. The graphene mobile warmer according to claim 2, wherein the graphene heating assembly comprises a transparent graphene electrothermal film (3) and a heat dissipation plate (4), and the transparent graphene electrothermal film (3) is arranged on the surface of the heat dissipation plate (4).
4. The graphene mobile warmer according to claim 3, wherein the housing comprises a front shell (1) and a rear shell (6), and the transparent graphene electrothermal film (3) is located between the front shell (1) and the heat dissipation plate (4).
5. The graphene mobile warmer according to claim 4, wherein the two or more transparent graphene electrothermal films (3) are electrically connected in parallel or in series.
6. The graphene mobile warmer according to claim 5, wherein the graphene heating assembly further comprises a temperature sensor, and the temperature sensor is arranged on the transparent graphene electrothermal film (3).
7. The graphene mobile warmer according to claim 6, characterized in that a louver (7) is arranged in the middle of the front shell (1).
8. The graphene mobile warmer according to any one of claims 1-7, wherein the mobile assembly is located at the bottom of the graphene mobile warmer, and the mobile assembly comprises a support member (8) and a roller (9).
9. The graphene mobile warmer according to any one of claims 4-7, further comprising a fan (5), wherein the fan (5) is disposed at a diagonal position of the rear housing (6).
Priority Applications (1)
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CN201922224559.3U CN212339373U (en) | 2019-12-12 | 2019-12-12 | Graphite alkene removes room heater |
Applications Claiming Priority (1)
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CN201922224559.3U CN212339373U (en) | 2019-12-12 | 2019-12-12 | Graphite alkene removes room heater |
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CN212339373U true CN212339373U (en) | 2021-01-12 |
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