CN212930184U - Graphite alkene hanging room heater - Google Patents

Graphite alkene hanging room heater Download PDF

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Publication number
CN212930184U
CN212930184U CN202021350736.9U CN202021350736U CN212930184U CN 212930184 U CN212930184 U CN 212930184U CN 202021350736 U CN202021350736 U CN 202021350736U CN 212930184 U CN212930184 U CN 212930184U
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graphene
heating device
layer
frame
graphene heating
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储招李
潘智军
谭化兵
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Anhui Aerospace and PMA Health Technology Co Ltd
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Anhui Aerospace and PMA Health Technology Co Ltd
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Abstract

The utility model provides a graphene wall-mounted warmer, which comprises a frame, a back plate, a panel, a hook and a graphene heating device; the graphene heating device heats and warms in a power supply state; the frame is provided with a hook for mounting the graphene heating device on a wall; a clamping groove is formed in the frame, and the graphene heating device is fixed in the frame through the clamping groove; the back plate is fixed on one side of the graphene heating device through a clamping groove, and the panel is fixed on the other side of the graphene heating device through a clamping groove; the panel is a grid panel. The grid panel structure is different from the high temperature resistant printing layer of traditional electric heat picture, can strengthen the infrared radiation energy and shift indoor efficiency from the heat-generating body to improve the heating and the far infrared physiotherapy efficiency of graphite alkene room heater. The mode of couple installation makes things convenient for holistic installation of graphite alkene hanging room heater to get and puts, and the installation of frame draw-in groove can make things convenient for the change maintenance of inside functional unit.

Description

Graphite alkene hanging room heater
Technical Field
The utility model relates to a heating technical field relates to a graphite alkene hanging room heater field especially.
Background
At present, collective heating is not realized in south of China, the areas are cold and moist in winter, most areas are resident spontaneous heating modes, and the northern areas are also cold in weather around the heating, so the heating device becomes an indispensable part, wherein the more general mode has air-conditioning heating, electric heating and the like, the air-conditioning heating has low electric heat conversion efficiency, wastes energy, and can also make indoor air become dry, and the health of the body is influenced. In recent years, with the development of a material with a great strategy of graphene, the electric heating device has the remarkable advantages of good heat conduction and electric conductivity, and is gradually applied to various electronic products. The graphene heating stroke is to add a nearly transparent graphene heating film into the mural, and after the heating stroke is electrified, the temperature of the mural reaches 90 ℃ within a few seconds, so that the temperature of the space where the mural is located is high. The graphene heating film in the existing electric heating body gradually replaces the traditional carbon crystal heating body.
In common electric heating products, the graphene electric heating picture is more and more accepted and popular in the market because the graphene electric heating picture does not occupy indoor space, is relatively simple and quick to mount, and has good far infrared physical therapy characteristic and decorative effect.
However, in the application process, the graphene heating picture generally has the following problems:
1. the high-temperature-resistant decorative layer arranged on the outer surface of the electric heating picture reduces the heat radiation efficiency of the front side of the graphene heating film. Keep away from the electric heat and draw certain distance after, human body temperature of feeling is showing and is descending, has also blockked far-infrared light wave simultaneously and has been to the physiotherapy effect of human body, and this has led to the electric heat to draw experience nature not good in heating, physiotherapy application, has restricted the more large-scale application of graphite alkene wall-hanging heating installation.
2. When the graphene heating picture works, the temperature of the surface of the mural is too high, and a human body is easily scalded when touching.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a graphene wall-mounted warmer, which comprises a frame, a back plate, a panel, a hook and a graphene heating device; the graphene heating device heats in a power supply state and is used for heating; the frame is provided with a hook for mounting the graphene heating device on a wall; a plurality of clamping grooves are formed in the frame, and the graphene heating device is fixed in the frame through the clamping grooves; the back plate is fixed on one side of the graphene heating device through a clamping groove, and the panel is fixed on the other side of the graphene heating device through a clamping groove; the frame comprises three fixedly connected edges and one movably connected edge, and the backboard, the panel and the graphene heating device are installed in the frame from the movably connected edge; the panel is a grid panel.
Preferably, the graphene heating device comprises a far infrared enhancement layer, a far infrared heating film, a reflective insulation layer, a temperature sensor, a wire, a switch, a power line and a power plug, wherein the far infrared enhancement layer, the far infrared heating film and the reflective insulation layer are hot-pressed to form a graphene heating device main body; the power plug is connected to the graphene heating device main body through a power line and used for power supply control.
Preferably, the far infrared heating film is formed by hot-press molding of a circuit layer, a graphene conducting layer, a PI covering layer and a base material layer.
Preferably, the temperature sensor is connected to the surface of the far infrared heating film by a lead for temperature control monitoring.
Preferably, the grid panel is provided with a plurality of grid bars, and the grid bars comprise a far infrared refraction layer, a heat insulation layer and a decoration layer; the far infrared refraction layer is arranged on one side of the graphene heating device and used for enhancing far infrared radiation; the decorative layer is arranged on the outer side and used for decoration; the insulating layer sets up in the middle for the separation heat prevents the touch scald.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the heater adopts graphene for heating, the heating is rapid, the electric energy is saved, and compared with the traditional air conditioning heating and the like, the heater can ensure the indoor air humidity while heating, and avoid damaging the skin of a body and the like;
2. the warmer adopts a wall-mounted installation mode, and is installed by adopting a clamping groove structure, so that the installation and the replacement are convenient;
3. the warmer is provided with an infrared enhancement layer for increasing the far infrared radiation intensity, and a heat insulation and refraction function grating panel for preventing a user from being scalded by touch and enhancing the far infrared radiation transmission.
Drawings
FIG. 1 is a schematic structural diagram of a conventional graphene electrothermal picture;
fig. 2 is a schematic view of an overall structure of a graphene wall-mounted heater according to an embodiment of the present invention;
fig. 3 is a schematic view of a structure and an installation of a graphene heating device according to an embodiment of the present invention;
FIG. 4 is a schematic view of a far infrared heating film according to an embodiment of the present invention;
fig. 5 is a schematic view of a graphene wall-mounted heater hook according to an embodiment of the present invention;
fig. 6 is a schematic view of a grid structure of a grid panel according to an embodiment of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be specifically described below with reference to fig. 1 to 6 for complete description, and it is obvious that the described embodiments are only some embodiments of the present invention, but not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts all have the protection scope of the present invention.
Graphite alkene heating mode compares in traditional electric heating mode, has the power saving, the effect of accuse humidity, the electric heat that takes graphite alkene to generate heat the principle preparation draws especially because it has concurrently to decorate and the heating function receives family's heating consumer's love especially, but because traditional electric heat draws the structure as shown in figure 1, directly cover in graphite alkene layer 02 top and have high temperature resistant printing layer 01, lead to the heat radiation efficiency to discount greatly, and the electric heat in the work draws surface temperature very high, careless touch, cause the scald easily. In order to ensure the thermal radiation efficiency of graphene and avoid touch scald, the utility model provides a graphene wall-mounted warmer, which comprises a frame 101, a back plate 102, a panel 106, a hook 5 and a graphene heating device 1; the graphene heating device 1 heats in a power supply state and is used for heating; the frame 101 is provided with a hook 5 for mounting the graphene heating device 1 on a wall; a plurality of clamping grooves are formed in the frame 101, and the graphene heating device 1 is fixed in the frame 101 through the clamping grooves; the back plate 102 is fixed on one side of the graphene heating device 1 by a clamping groove, and the panel 106 is fixed on the other side of the graphene heating device 1 by the clamping groove; the frame 101 comprises three fixedly connected edges and one movably connected edge, and the back plate 102, the panel 106 and the graphene heating device 1 are mounted inside the frame 101 from the movably connected edge; the panel 106 is a grid panel. Grid panel structure is different from traditional electric heat and draws high temperature resistant printing layer 01, can strengthen the infrared radiation energy and shift indoor efficiency from the heat-generating body to improve the heating and the far infrared physiotherapy efficiency of graphite alkene room heater. The mode of couple 5 installation makes things convenient for holistic installation of graphite alkene hanging room heater to get and puts, and the installation of frame 101 draw-in groove can make things convenient for the change maintenance of internal function part, for conveniently hanging and balancing, preferably, sets up first couple 501 and second couple 502 at the top of frame.
In a specific embodiment of the present invention, the graphene heating device 1 includes a far infrared enhancement layer 105, a far infrared heating film 104, a reflective insulation layer 103, a temperature sensor 107, a wire, a switch 4, a power line 2 and a power plug 3, wherein the infrared enhancement layer, the far infrared heating film 104 and the reflective insulation layer 103 are formed by hot-pressing the graphene heating device 1 main body; the power plug 3 is connected to the graphene heating device 1 main body by the power cord 2 and is used for power supply control. The infrared enhancement layer is made of one or more of graphite, micro-nano carbon materials (diamond, diamond-like carbon, graphene, graphite alkyne, carbon black, carbon nano tube and the like), nano silicon powder, metal oxides (iron oxide, nickel oxide, chromium oxide, copper oxide, manganese oxide, cobalt oxide, aluminum oxide and the like), silicon oxide, silicon carbide, boron carbide, sodium silicate and aluminum silicate; the thickness of the infrared enhancement layer is 0.5-1500 microns.
In a specific embodiment of the present invention, the far infrared heating film 104 is formed by hot press molding of the circuit layer 1041, the graphene conductive layer 1042, the PI cover layer 1043, and the substrate layer 1044. The graphene conductive layer 1042 refers to a graphene-related material, such as a pure graphene (in the form of a thin film and/or a powder) heating element, or a mixed heating element containing graphene (such as a heating element made of a conductive material with a carbon nanotube, a graphene, carbon black, and a metal nanowire added thereto as a main body);
the circuit layer 1041 is patterned and manufactured by using PI copper clad foil through the processes of film, exposure, development, etching and the like; the thickness of PI is 10-1000 microns, and the thickness of copper foil is 15-1000 microns; the base material layer 1044 can be made of an epoxy resin plate, a polytetrafluoroethylene plate, a polyphenylene sulfide plate, or a metal material such as aluminum or copper; the thickness of the substrate layer 1044 is 2-5 mm.
In one embodiment of the present invention, the temperature sensor 107 is connected to the surface of the far infrared heating film 104 by a wire for temperature control monitoring. The temperature sensor 107 is connected to the switch 4 by a lead, the switch 4 is arranged on one side of the frame 101, and the switch 4 can be a button double-boat switch, a toggle switch, a button control switch or a rotary switch.
In a specific embodiment of the present invention, the grid panel is provided with a plurality of grid bars, and the grid bars include a far infrared refraction layer 1063, a thermal insulation layer 1062 and a decoration layer 1061; the far infrared refraction layer 1063 is arranged on one side of the graphene heating device 1 and is used for enhancing far infrared radiation; the decoration layer 1061 is provided on the outside for decoration; the thermal insulating layer 1062 is arranged in the middle and used for blocking heat and preventing touch scalding. Wherein far infrared refraction layer 1063 adopts the curved surface mirror surface, guarantees that thermal radiation refraction covers indoorly, and decorative layer 1061 adopts the faceted pebble structure for different angles watch the mural visual effect and differ, the decoration content of reinforcing graphite alkene hanging room heater.
Thus, it should be appreciated by those skilled in the art that while a number of exemplary embodiments of the invention have been shown and described in detail herein, many other variations and modifications can be made, consistent with the principles of the invention, which are directly determined or derived from the disclosure herein, without departing from the spirit and scope of the invention. Accordingly, the scope of the present invention should be understood and interpreted to cover all such other variations or modifications.

Claims (5)

1. A graphene wall-mounted warmer is characterized in that,
the device comprises a frame, a back plate, a panel, a hook and a graphene heating device;
the graphene heating device heats in a power supply state and is used for heating;
the hook is arranged on the frame and used for installing the graphene heating device on a wall;
a plurality of clamping grooves are formed in the frame, and the graphene heating device is fixed in the frame through the clamping grooves;
the back plate is fixed on one side of the graphene heating device through the clamping groove, and the panel is fixed on the other side of the graphene heating device through the clamping groove;
the frame comprises three fixedly connected edges and one movably connected edge, and the backboard, the panel and the graphene heating device are installed inside the frame through the movably connected edge;
the panel is a grille panel.
2. The graphene wall-mounted warmer of claim 1,
the graphene heating device comprises a far infrared enhancement layer, a far infrared heating film, a reflection heat preservation layer, a temperature sensor, a lead, a switch, a power line and a power plug,
the graphene heating device main body is formed by hot-pressing the infrared enhancement layer, the far infrared heating film and the reflection heat insulation layer;
the power plug is connected to the graphene heating device main body through the power line and used for power supply control.
3. The graphene wall-mounted warmer of claim 2, wherein,
the far infrared heating film is formed by hot pressing a circuit layer, a graphene conducting layer, a PI covering layer and a base material layer.
4. The graphene wall-mounted warmer of claim 3,
the temperature sensor is connected to the surface of the far infrared heating film through the lead and is used for temperature control monitoring.
5. The graphene wall-mounted warmer according to any one of claims 1-4, wherein the grid panel is provided with a plurality of grid bars, and the grid bars comprise a far infrared refraction layer, a heat insulation layer and a decoration layer;
the far infrared refraction layer is arranged on one side of the graphene heating device and used for enhancing far infrared radiation; the decorative layer is arranged on the outer side and used for decoration; the insulating layer sets up in the middle for the separation heat prevents the touch scald.
CN202021350736.9U 2020-07-10 2020-07-10 Graphite alkene hanging room heater Active CN212930184U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021350736.9U CN212930184U (en) 2020-07-10 2020-07-10 Graphite alkene hanging room heater

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021350736.9U CN212930184U (en) 2020-07-10 2020-07-10 Graphite alkene hanging room heater

Publications (1)

Publication Number Publication Date
CN212930184U true CN212930184U (en) 2021-04-09

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Application Number Title Priority Date Filing Date
CN202021350736.9U Active CN212930184U (en) 2020-07-10 2020-07-10 Graphite alkene hanging room heater

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114263967A (en) * 2021-12-31 2022-04-01 新华盛节能科技股份有限公司 Far infrared graphene electric heating floor heating system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114263967A (en) * 2021-12-31 2022-04-01 新华盛节能科技股份有限公司 Far infrared graphene electric heating floor heating system

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