CN213640312U - Agate-pasted graphene electric heating pad - Google Patents

Agate-pasted graphene electric heating pad Download PDF

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Publication number
CN213640312U
CN213640312U CN202021432027.5U CN202021432027U CN213640312U CN 213640312 U CN213640312 U CN 213640312U CN 202021432027 U CN202021432027 U CN 202021432027U CN 213640312 U CN213640312 U CN 213640312U
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layer
agate
wrapping
electric heating
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唐爱东
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Abstract

The utility model relates to the technical field of electric heating cushions, in particular to a graphene electric heating cushion pasted with agate, which comprises an electric heating cushion main body and a power supply connecting wire, wherein a six-pin jack is arranged at one corner of the upper end of the electric heating cushion main body, the power supply connecting wire is connected in the six-pin jack, one end of the power supply connecting wire, which is far away from the six-pin jack, is provided with a three-plug, a controller is arranged at the middle of the power supply connecting wire, the electric heating cushion main body consists of an edge covering, an agate layer, a wrapping layer, a low-temperature graphene film layer and a composite anti-slip layer, the lower end of the agate layer is provided with the wrapping layer, an inner cavity is arranged in the wrapping layer, the inner cavity is internally provided with the low-temperature graphene film layer, the lower end of the wrapping layer is provided with the composite anti-slip layer, one side of the upper end of the, the lower end of the agate wrapping layer is provided with an adhesion layer close to the adhered layer, so that the integral effect is good.

Description

Agate-pasted graphene electric heating pad
Technical Field
The utility model relates to an electric heat pad technical field specifically is a graphite alkene electric heat pad pasted with agate stone.
Background
With the technical progress and the improvement of living standard, people put forward higher requirements on health and heat preservation, and various heat preservation and hot compress articles appear on the market. The heating mat which is sold in the market and is made of materials such as heating wires and the like as heating elements generally has the problems of slow temperature rise, low heating power, easy breakage of the heating elements and the like, and particularly has great technical defects in the aspects of energy accumulation and heat conduction effects, so that the problems are improved by a graphene electric heating mat pasted with agate.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a graphite alkene electric heat pad pasted with agate stone to solve the problem that provides among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
the utility model provides a graphite alkene electric pad that has pasted agate stone, includes electric pad main part and power connecting wire, electric pad main part upper end one angle department is equipped with six-pin jack, six-pin jack in-connection have the power connecting wire, the power connecting wire is kept away from the one end of six-pin jack and is equipped with three plugs, the department is equipped with the controller in the middle of the power connecting wire, electric pad main part comprises bordure, agate layer, parcel layer, low temperature graphite alkene thin layer and compound skid resistant layer, and the agate layer lower extreme is equipped with the parcel layer, the inside inner chamber that is equipped with of parcel layer, the inside low temperature graphite alkene thin layer that is equipped with of inner chamber, the parcel layer lower extreme is equipped with compound skid resistant layer, parcel layer upper end one side is equipped with temperature sensor, be equipped with in the middle of the agate layer by the adhesion layer, be equipped with agate stone parcel layer on the adhesion layer upper end, agate stone layer lower extreme is, and a plurality of groups of wrapping grooves are formed in the middle of the agate wrapping layer at equal intervals, and agate stones are arranged in the wrapping grooves.
Preferably, the agate is connected with the wrapping grooves of the agate wrapping layers in a clamping mode, and the agate is formed by arranging agate seeds with the thickness of 0.5 cm and the inner diameter of 2 cm according to the arrangement of 3-7.
Preferably, the far infrared rays emitted by the low-temperature graphene film layer are far infrared light waves of 2-25 micrometers.
Preferably, the low-temperature graphene film layer is a low-temperature graphene electrothermal film with the thickness of 1 mm.
Preferably, the wrapping layer is made of tinfoil, and the low-temperature graphene film layer and the wrapping layer are connected in a sleeved mode through the inner cavity.
Preferably, the agate wrapping layer and the agate layer are bonded and connected through an adhesion layer and an adhered layer, the adhesion layer and the adhered layer are made of magic tapes, and the agate wrapping layer are made of pearl cotton.
Preferably, the composite anti-skid layer is made of foamed silicon rubber, anti-skid lines are arranged at the bottom of the composite anti-skid layer, and the agate layer, the wrapping layer and the composite anti-skid layer are sequentially arranged from top to bottom and then integrally sewn and formed by edge covering.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses in, through the agate layer that sets up, through adhesion layer and by adhesion layer bonding connection between agate parcel layer and the agate layer, and adhesion layer and by the adhesion layer for magic subsides material, make things convenient for dismouting and washing in agate parcel layer later stage, agate parcel layer and agate parcel layer are the cotton material of pearl, the compliance is good, and the silence is fire-retardant, the parcel groove joint on agate and agate parcel layer is connected, agate is by thickness 0.5 centimetre, 2 centimetres agate seed of internal diameter forms according to 3 arrangements of taking advantage of 7, after agate absorbs the heat energy, the convergence can heat up, after contacting with the human body, can keep warm the health, can play splendid hot compress effect to the body position of body cold and strain again.
2. In the utility model, the wrapping layer is made of tin foil material through the wrapping layer and the low-temperature graphene film layer, the low-temperature graphene film layer and the wrapping layer are connected through the inner cavity in a sleeved mode to form a wrapping outside the low-temperature graphene film layer and reduce heat dissipation, the low-temperature graphene film layer is a low-temperature graphene electric heating film with the thickness of 1mm, the low-temperature graphene electric heating film has uniform heating temperature, the graphene has unique performance, can release far infrared light waves suitable for a human body and has stable temperature, the far infrared light waves emitted by the low-temperature graphene film layer are 2-25 micrometers far infrared light waves which are close to the far infrared light waves of the human body, thermal reaction can be formed, tissue cells are activated, blood circulation is accelerated, moisture absorption and conduction are rapid, and the characteristics of antibiosis, mite suppression and static prevention are achieved, and the electric heating conversion efficiency of the graphene is higher, the energy consumption is lower.
3. The utility model discloses in, through the compound skid resistant course that sets up, compound skid resistant course is foam silicone rubber material, and foam silicone rubber is owing to have higher heat stability, good thermal insulation, insulating nature, humidity resistance, shock resistance, and compound skid resistant course bottom is equipped with anti-skidding line for the electric pad is placed more stably.
Drawings
FIG. 1 is an overall structure diagram of the present invention;
FIG. 2 is a structural diagram of the temperature sensor of the present invention;
FIG. 3 is a view of the split structure of the present invention;
fig. 4 is a connection structure diagram of the agate wrapping layer of the utility model.
In the figure: the electric heating cushion comprises a main body of the electric heating cushion, 2 power connecting wires, 3 controllers, 4 plugs, 5 temperature sensors, 6 jacks, 7 wrapping edges, 8 agate layers, 9 wrapping layers, 10 inner cavities, 11 low-temperature graphene film layers, 12 composite anti-skidding layers, 13 agate wrapping layers, 14 agate stones, 15 wrapping grooves, 16 adhesion layers and 17 adhesion layers.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, rather than all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the protection scope of the present invention based on the embodiments of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution:
a graphene electric heating pad pasted with agate comprises an electric heating pad main body 1 and a power supply connecting wire 2, wherein a six-pin jack 6 is arranged at one corner of the upper end of the electric heating pad main body 1, the power supply connecting wire 2 is connected in the six-pin jack 6, a three-plug 4 is arranged at one end, away from the six-pin jack 6, of the power supply connecting wire 2, a controller 3 is arranged in the middle of the power supply connecting wire 2, the electric heating pad main body 1 consists of an edge 7, an agate layer 8, a wrapping layer 9, a low-temperature graphene film layer 11 and a composite anti-slip layer 12, the lower end of the agate layer 8 is provided with the wrapping layer 9, an inner cavity 10 is arranged in the wrapping layer 9, the inner cavity 10 is internally provided with the low-temperature graphene film layer 11, the low-temperature graphene film layer 11 is a low-temperature graphene electric heating film with the thickness of 1mm, far infrared rays emitted, the low-temperature graphene film layer 11 and the wrapping layer 9 are connected through the inner cavity 10 in a sleeved mode, the lower end of the wrapping layer 9 is provided with a composite anti-slip layer 12, the composite anti-slip layer 12 is made of foamed silicon rubber, anti-slip grains are arranged at the bottom of the composite anti-slip layer 12, the agate layer 8, the wrapping layer 9 and the composite anti-slip layer 12 are arranged from top to bottom and then integrally sewn and formed through a wrapping edge 7, a temperature sensor 5 is arranged on one side of the upper end of the wrapping layer 9, an adhered layer 17 is arranged in the middle of the agate layer 8, an agate wrapping layer 13 is arranged at the upper end of the adhered layer 17, an adhesive layer 16 is arranged at the lower end of the agate wrapping layer 13 close to the adhered layer 17, the agate wrapping layer 13 and the agate layer 8 are connected through the adhesive layer 16 and the adhered layer 17 in an adhered mode, the adhesive layer 16 and the adhered layer 17 are made of magic tapes, and the agate wrapping layer 13 and the, a plurality of groups of wrapping grooves 15 are arranged at equal intervals in the middle of the agate wrapping layer 13, agate stones 14 are arranged in the wrapping grooves 15, the agate stones 14 are connected with the wrapping grooves 15 of the agate wrapping layer 13 in a clamping mode, and the agate stones 14 are formed by arranging agate stone seeds with the thickness of 0.5 cm and the inner diameter of 2 cm according to the arrangement of 3-7.
The utility model discloses work flow: firstly, the agate layer 8, the wrapping layer 9 and the composite anti-slip layer 12 are sequentially arranged from top to bottom and then integrally sewn and formed by the wrapping edge 7, when the electric heating mat is used, the power supply connecting wire 2 is inserted into the six-pin jack 6, then the three-plug 4 is connected, the required temperature is adjusted through the controller 3, the temperature displayed on the controller 3 is from the temperature sensor 5, the temperature sensor 5 is matched with the controller 3 for use, the temperature of the electric heating mat can be more intuitively known, so that the temperature can be more conveniently adjusted, the agate wrapping layer 13 and the agate layer 8 are bonded and connected through the adhesion layer 16 and the adhered layer 17 through the arranged agate layer 8, the adhesion layer 16 and the adhered layer 17 are magic tape materials, the later-stage disassembly and cleaning of the agate wrapping layer 13 are convenient, the agate wrapping layer 13 and the agate wrapping layer 13 are both made of pearl cotton materials, the flexibility is good, and the flame retardance is achieved, the agate stone 14 is connected with the wrapping groove 15 of the agate wrapping layer 13 in a clamping manner, the agate stone 14 is formed by arranging agate stone seeds with the thickness of 0.5 cm and the inner diameter of 2 cm according to the arrangement of 3-by-7, the agate stone 14 absorbs heat energy, converges the energy and heats up, and can warm the body after contacting with the human body, and can play a very good hot compress effect on the body part with cold and strain, the wrapping layer 9 is made of tin foil materials through the wrapping layer 9 and the low-temperature graphene film layer 11, the low-temperature graphene film layer 11 and the wrapping layer 9 are connected in a sleeved manner through the inner cavity 10 to form an electrothermal film outside the low-temperature graphene film layer 11, so that the heat loss is reduced, the low-temperature graphene film layer 11 is low-temperature graphene with the thickness of 1mm, the heating temperature of the low-temperature graphene is uniform, the performance of the graphene is unique, the far infrared light wave suitable for the human body can be, far infrared that low temperature graphite alkene thin layer 11 sent is 2-25 microns far infrared light wave, it is close with human far infrared, can form thermal reaction, activated histiocyte, blood circulation accelerates, the moisture absorption leads wet fast, still from taking antibiotic, suppress the mite, prevent the characteristic of static, graphite alkene's electrothermal conversion efficiency is higher than traditional heating material's electrothermal conversion efficiency, the power consumption is lower, compound skid resistant course 12 through setting up, compound skid resistant course 12 is foam silicon rubber material, foam silicon rubber is owing to have higher heat stability, good thermal insulation, insulating nature, the humidity resistance, the shock resistance, and compound skid resistant course 12 bottom is equipped with anti-skidding line, make the electric heat pad place more stably, overall structure is simple, and is effectual, and stability and practicality are higher.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a graphite alkene electric heat pad of subsides agate stone, includes electric heat pad main part (1) and power connecting wire (2), its characterized in that: the electric heating pad is characterized in that six-pin jacks (6) are arranged at one corner of the upper end of the electric heating pad main body (1), a power supply connecting wire (2) is connected in the six-pin jacks (6), one end, far away from the six-pin jacks (6), of the power supply connecting wire (2) is provided with three plugs (4), a controller (3) is arranged in the middle of the power supply connecting wire (2), the electric heating pad main body (1) consists of a wrapping edge (7), an agate layer (8), a wrapping layer (9), a low-temperature graphene film layer (11) and a composite anti-slip layer (12), the lower end of the agate layer (8) is provided with the wrapping layer (9), an inner cavity (10) is arranged inside the wrapping layer (9), the low-temperature graphene film layer (11) is arranged inside the inner cavity (10), the lower end of the wrapping layer (9) is provided with the composite anti-slip layer (12, be equipped with in the middle of agate layer (8) by adhesion layer (17), be equipped with agate stone parcel layer (13) on adhesion layer (17), agate stone parcel layer (13) lower extreme is close to by adhesion layer (17) department and is equipped with adhesion layer (16), department equidistant is equipped with multiunit parcel groove (15) in the middle of agate stone parcel layer (13), be equipped with agate stone (14) in parcel groove (15).
2. The agate-pasted graphene electric heating mat according to claim 1, characterized in that: the agate (14) is connected with the wrapping groove (15) of the agate wrapping layer (13) in a clamping mode, and the agate (14) is formed by arranging agate seeds with the thickness of 0.5 cm and the inner diameter of 2 cm according to the ratio of 3 to 7.
3. The agate-pasted graphene electric heating mat according to claim 1, characterized in that: the far infrared ray emitted by the low-temperature graphene film layer (11) is a far infrared light wave of 2-25 micrometers.
4. The agate-pasted graphene electric heating mat according to claim 1, characterized in that: the low-temperature graphene film layer (11) is a low-temperature graphene electrothermal film with the thickness of 1 mm.
5. The agate-pasted graphene electric heating mat according to claim 1, characterized in that: the wrapping layer (9) is made of tin foil, and the low-temperature graphene film layer (11) and the wrapping layer (9) are connected in a sleeved mode through the inner cavity (10).
6. The agate-pasted graphene electric heating mat according to claim 1, characterized in that: the agate wrapping layer (13) and the agate layer (8) are bonded and connected through an adhesion layer (16) and an adhered layer (17), the adhesion layer (16) and the adhered layer (17) are made of hook and loop fasteners, and the agate wrapping layer (13) are made of pearl cotton.
7. The agate-pasted graphene electric heating mat according to claim 1, characterized in that: composite anti-skid layer (12) are the foam silicone rubber material, just composite anti-skid layer (12) bottom is equipped with anti-skidding line, behind agate layer (8), parcel layer (9) and composite anti-skid layer (12) arrange according to from the top down in proper order by borduring (7) integrative sewing up shaping.
CN202021432027.5U 2020-07-20 2020-07-20 Agate-pasted graphene electric heating pad Active CN213640312U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021432027.5U CN213640312U (en) 2020-07-20 2020-07-20 Agate-pasted graphene electric heating pad

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021432027.5U CN213640312U (en) 2020-07-20 2020-07-20 Agate-pasted graphene electric heating pad

Publications (1)

Publication Number Publication Date
CN213640312U true CN213640312U (en) 2021-07-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021432027.5U Active CN213640312U (en) 2020-07-20 2020-07-20 Agate-pasted graphene electric heating pad

Country Status (1)

Country Link
CN (1) CN213640312U (en)

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