GRAPHENE HEATING ELEMENT
20200370762 ยท 2020-11-26
Inventors
Cpc classification
Y02B30/00
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H05B3/20
ELECTRICITY
H05B2203/025
ELECTRICITY
F24D13/024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F24D13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B3/20
ELECTRICITY
Abstract
Disclosed is a graphene heating element including a box body, a cover body provided on the box body, and a graphene heating chip provided in the box body; wherein a thermal insulation material is injected into the box body and foams so that the graphene heating chip is bonded to the cover body and the box body as a whole. The thermal insulation material foams around and below the graphene heating chip so that the graphene heating chip is adhered to the cover body and the bottom of the box body.
Claims
1. A graphene heating element, comprising a box body (5), a cover body (1) provided on the box body (5), and a graphene heating chip (2) provided in the box body (5); wherein a thermal insulation material (4) is injected into the box body (5) and foams so that the graphene heating chip (2) is bonded to the cover body (1) and the box body (5) as a whole.
2. The graphene heating element according to claim 1, wherein the thermal insulation material (4) is injected into the box body (5) and foams around and below the graphene heating chip (2).
3. The graphene heating element according to claim 1, wherein a support body for supporting the graphene heating chip (2) is provided in the box body (5), so as to press the graphene heating chip (2) against the cover body (1).
4. The graphene heating element according to claim 1, wherein an injection port (6) for the thermal insulation material (4) is provided on the box body (5).
5. The graphene heating element according to claim 1, wherein a positive electrode and a negative electrode are provided on the graphene heating chip (2), a first connection line (9) and a second connection line (10) are provided in the box body (5), the first connection line (9) and the second connection line (10) are respectively connected at one end to the positive electrode and the negative electrode, and respectively extend out of the box body (5) at the other end.
6. The graphene heating element according to claim 5, wherein a first connector (11) and a second connector (12) are respectively mounted at extending-out ends of the first connection line (9) and the second connection line (10), and the first connector (11) can be inserted into the second connector (12).
7. The graphene heating element according to claim 1, wherein grooves (8) are provided on both sides of the box body (5).
8. The graphene heating element according to claim 5, wherein projections for placing and fixing the first connection line (9) and the second connection line (10) are respectively provided on the inner surface of the box body (5).
9. The graphene heating element according to claim 1, wherein a positive electrode and a negative electrode are provided on the graphene heating chip (2), and a socket (3) is welded to the positive electrode and the negative electrode.
10. The graphene heating element according to claim 9, wherein a socket opening (7) for the socket (3) is preset on the box body (5).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
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[0026]
[0027]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] The technical solutions of the present invention will be further described below in conjunction with the drawings and specific embodiments.
[0029] As shown in
[0030] As shown in
[0031] In order to facilitate the injection of the thermal insulation foam material into the box body 5, two injection ports 6 are respectively provided on the two sides of the box body 5. The thermal insulation material 4 in this embodiment is a polyurethane foam material, whereas the thermal insulation foam material 4 may also be polystyrene, phenolic, rubber and plastic, inorganic foam material or a combination thereof. The thermal insulation foam material 4 is injected into the box 5 through the injection port 6 and foams in the box 5 on site. Since the graphene heating chip 2 is pressed against the cover body 1 and there is a gap between the graphene heating chip and the bottom of the box body 5, the injected thermal insulation foam material 4 foams around and below the graphene heating chip 2, and the graphene heating chip 2 is bonded to the cover body 1 and the box body 5 as a whole by the thermal insulation foam material on the side of and below the graphene heating chip. The foaming of the thermal insulation foam material 4 inside the entire box body 5 also causes the thermal insulation foam material 4 to be filled at the welding portions of the graphene heating chip 2, which has the effect of insulation and does not require any other insulation protection. The welding portions may also be sealed with a glue first, and then filled with the foam material. In this embodiment, since there is no thermal insulation foam material between the graphene heating chip 2 and the cover body 1, the graphene heating chip 2 can transfer heat to the outside through the cover body 1 in a better way, while the rest of the space is filled with the thermal insulation foam material to form a thermal insulation layer. As shown in
[0032] As shown in
[0033] As shown in
[0034] As shown in