Aluminum cone core composite board with graphene heating module
By fixing a graphene heating module onto an aluminum cone core composite plate, the lack of functionality in existing aluminum cone core composite plates is solved, achieving both heating function and safety, and enhancing application value.
Patent Information
- Application Number
- CN202520597579.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-31
AI Technical Summary
Existing aluminum cone core composite plates lack functional modules, failing to meet a wider range of user needs, particularly the heating function, which limits their application areas.
A groove is formed on an aluminum cone core substrate to fix a graphene heating module, including a shielding shell, a graphene heating layer, a flame retardant layer and a reflective layer. Heat is dissipated through the aluminum cone core composite plate, and safety and stability are ensured by an ABS plastic shell and a capacitor shielding layer.
This invention enables the aluminum cone core composite plate to have a heating function, improving the product's usability, preventing leakage, and enhancing heating efficiency and installation stability.
Smart Images

Figure CN223948758U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a composite novel material, in particular to an aluminum cone core composite board with a graphene heating module. BACKGROUND
[0002] The existing aluminum cone core composite board, see Chinese utility model patent CN214927750U, name: composite metal plate, authorized announcement day: November 30, 2021, including aluminum core layer, its characterized in that: the lower surface of the aluminum core layer is provided with a first polymer film, the lower surface of the first polymer film is provided with a bottom aluminum layer, the upper surface of the aluminum core layer is provided with a second polymer film, the upper surface of the second polymer film is sequentially provided with a second aluminum layer, an upper polymer film and a first aluminum layer from bottom to top, to constitute a composite plate body, the composite plate body is provided with a bending part, the first aluminum layer, the upper polymer film and the second aluminum layer of the bending part are tightly attached to each other;The composite metal plate of the utility model adds one more aluminum layer on the surface of the aluminum core layer, the two-layer aluminum layer design improves the overall strength of the composite metal plate, more importantly, the bending strength of the two added aluminum layers is significantly enhanced, and the service life of the product is improved.
[0003] However, the composite plate of the above structure still has the following deficiencies: (1) the above composite plate is composed of multiple aluminum layers, and no other functional module is arranged thereon, so that the composite plate only has its basic function and does not have other functions (such as heating function), which limits the application field of the composite plate and cannot meet the more use requirements of users. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the deficiencies of the prior art and provides an aluminum cone core composite plate with a graphene heating module, which has a heating function and can meet more use requirements of users.
[0005] The utility model is characterized in that:
[0006] The application discloses an aluminum cone core composite board with a graphene heating module, which comprises an aluminum cone core base plate, and an upper enclosing wall is formed by turning up the aluminum cone core base plate around; a groove is formed in the upper enclosing wall; the graphene heating module is fixed in the groove; the graphene heating module comprises, from bottom to top, a shielding shell, a graphene heating layer, a fireproof layer and a reflecting layer which are sequentially attached; the aluminum cone core composite board with the graphene heating module is characterized in that the groove is formed in the aluminum cone core base plate, and the graphene heating module is fixed in the groove; the heat generated by the graphene heating module can be dissipated through the aluminum cone core composite board, so that the aluminum cone core composite board has a heating function and can meet more use requirements of users; meanwhile, the shielding shell can play a good insulation role and avoid the occurrence of electric leakage when the graphene heating layer generates heat; and the reflecting layer can play a good heat reflecting role, so that the heat generated by the graphene heating layer is dissipated to the aluminum cone core base plate, and the overall heating efficiency of the product is improved.
[0007] The purpose of the utility model can also be solved by the following technical measures:
[0008] Further, the shielding shell comprises an ABS plastic shell and a capacitor shielding layer attached to the upper surface of the ABS plastic shell; the graphene heating layer is attached to the capacitor shielding layer; and a high-temperature-resistant adhesive is arranged between the lower surface of the ABS plastic shell and the bottom surface of the groove; the ABS plastic shell provides a good mounting carrier for the graphene heating layer, the fireproof layer and the reflecting layer, so that the graphene heating module is stably mounted on the groove; meanwhile, the capacitor shielding layer can prevent the occurrence of magnetic field and electric current due to potential difference generated by the graphene heating layer during operation, that is, prevent the occurrence of electric leakage.
[0009] Further, the graphene heating layer is a graphene heating plate, electric leads are extended from both ends of the graphene heating plate, the upper enclosing wall is provided with a through portion corresponding to the position of the electric leads, and one end of the electric leads is extended out of the through portion; so that the upper enclosing wall does not affect the electrical connection between the graphene heating plate and the outside, and the normal operation of the graphene heating plate is ensured.
[0010] Further, the fireproof layer is a fireproof and moisture-proof foaming layer made of PU material, and the reflecting layer is a reflecting film; the reflecting film can play a good heat reflecting role, and the fireproof layer can play a good fireproof role, so that the stable operation of the reflecting film is ensured.
[0011] Further, a plurality of L-shaped fixing angle codes are arranged, and the two ends of each fixing angle code are connected to the inner sides of two adjacent upper enclosing walls; the fixing angle codes are used to connect the two adjacent upper enclosing walls, so that the formation of the groove in the aluminum cone core base plate is facilitated.
[0012] Specific further, it also includes the connecting piece, first through hole is arranged at two ends of the fixed angle code respectively, the second through hole is opened in the upper wall corresponding to the first through hole position, the connecting piece one end is closely combined with the outside of the upper wall, the connecting piece other end is sequentially passed through the second through hole and the first through hole and is closely combined with the inside of the fixed angle code, so that the fixed connection of different upper walls and the fixed angle code is realized, and then different upper walls are connected together through the fixed angle code, and the operation of this mode is relatively simple and the fixing effect is good.
[0013] Specific further, the other end of the connecting piece is in abutment with the outside of the shielding shell placed in the groove, so that a limiting space is formed between the other end of the plurality of connecting pieces on the upper wall, which facilitates the installation and positioning of the graphene heating module on the groove and also improves the installation firmness of the graphene heating module on the groove.
[0014] Specific further, the adjacent two upper walls are bonded together through the structural adhesive, and this mode can also realize the stable connection between the adjacent upper walls and is conducive to the formation of the groove.
[0015] The beneficial effects of the utility model are as follows:
[0016] (1) The aluminum cone core composite board with the graphene heating module, through forming the groove on the aluminum cone core substrate, then fixing the graphene heating module in the groove, the heat generated by the graphene heating module can be dissipated through the aluminum cone core composite board, so that the aluminum cone core composite board also has the heating function, can meet more use requirements of users, at the same time, the shielding shell can play a good insulation role, avoids the leakage situation when the graphene heating layer heats, the reflecting layer can play a good reflecting heat role, so that the heat generated by the graphene heating layer is dissipated to the aluminum cone core substrate direction, improves the overall heating efficiency of the product.
[0017] (2) The ABS plastic shell provides a good installation carrier role for the graphene heating layer, the flame retardant layer and the reflecting layer, so that the graphene heating module is stably installed on the groove as a whole, at the same time, the capacitor shielding layer can well avoid the situation that the magnetic field is formed and then electricity is generated due to the potential difference generated by the graphene heating layer when working, that is, prevent the leakage situation from occurring.
[0018] (3) The limiting space is formed between the other end of the plurality of connecting pieces on the upper wall, which facilitates the installation and positioning of the graphene heating module on the groove and also improves the installation firmness of the graphene heating module on the groove. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a schematic view of the aluminum cone core composite board with the graphene heating module.
[0020] Figure 2 It is the A enlarged view of Figure 1 .
[0021] Figure 3 The exploded view of the graphene heating module of the utility model.
[0022] Figure 4 The schematic view of the aluminum cone core substrate of the utility model. DETAILED DESCRIPTION
[0023] The utility model will be further described in connection with the drawings and embodiments:
[0024] Embodiment, in connection with Figures 1 to 4 As shown in the figure, a kind of aluminum cone core composite board with graphene heating module, including aluminum cone core substrate 1, the aluminum cone core substrate 1 is formed in the shape of enclosure around upward and forms upper enclosing wall 2, recess 3 is formed in upper enclosing wall 2, it is characterized by, still including graphene heating module 4, the graphene heating module 4 is fixed in recess 3, the graphene heating module 4 includes shielding shell 41, graphene heating layer 42, fire-retardant layer 43 and reflection layer 44 in turn by lower from top, which are pasted.
[0025] As a specific scheme, the shielding shell 41 includes ABS plastic shell 411 and the capacitance shielding layer 412 pasted on the upper surface of ABS plastic shell 411, the graphene heating layer 42 is pasted on the capacitance shielding layer 412, and the high-temperature-resistant adhesive 5 is arranged between the lower surface of the ABS plastic shell 411 and the bottom surface in the recess 3.
[0026] In the embodiment, the graphene heating layer 42 is a graphene heating plate, and the electric lead 421 extends out from both ends of the graphene heating plate, the upper enclosing wall 2 is provided with the through portion 21 corresponding to the position of the electric lead 421, and one end of the electric lead 421 extends out of the through portion 21; the through portion 21 is a common through hole.
[0027] In the embodiment, the fire-retardant layer 43 is a fire-retardant and moisture-retaining foaming layer made of PU material, and the reflection layer 44 is a reflection film.
[0028] As a more specific scheme, a plurality of L-shaped fixing angle codes 6 are further included, and the two ends of the fixing angle code 6 are respectively connected to the inner sides of two adjacent upper enclosing walls 2.
[0029] In the embodiment, a connecting piece 7 is further included, the two ends of the fixing angle code 6 are respectively provided with the first through hole 61, the upper enclosing wall 2 is provided with the second through hole 22 corresponding to the position of the first through hole 61, one end of the connecting piece 7 is closely pasted to the outer side of the upper enclosing wall 2, the other end of the connecting piece 7 passes through the second through hole 22 and the first through hole 61 in sequence and is closely pasted to the inner side of the fixing angle code 6; the connecting piece 7 is a common rivet.
[0030] As a further preferred embodiment, the other end of the connecting member 7 abuts against the outside of the shield housing 41 placed in the recess 3.
[0031] As a further embodiment of the connection of adjacent upper walls, the two adjacent upper walls 2 are connected by means of a structural adhesive (not shown).
Claims
1. A graphene heating module-equipped aluminum cone core composite panel, comprising an aluminum cone core base plate (1), the aluminum cone core base plate (1) being turned up around the periphery to form an upper enclosing wall (2), a recess (3) being formed in the upper enclosing wall (2), characterized in that, It also includes a graphene heating module (4) fixed in the groove (3), the graphene heating module (4) includes a shielding shell (41), a graphene heating layer (42), a flame-retardant layer (43) and a reflection layer (44) in turn from bottom to top.
2. The aluminum cone core composite panel with graphene heating module according to claim 1, characterized in that, The shielding shell (41) includes an ABS plastic shell (411) and a capacitor shielding layer (412) attached to the upper surface of the ABS plastic shell (411), the graphene heating layer (42) is attached to the capacitor shielding layer (412), and the lower surface of the ABS plastic shell (411) is provided with a high-temperature resistant adhesive (5) between the lower surface and the bottom surface of the groove (3).
3. The aluminum cone core composite panel with graphene heating module according to claim 2, characterized in that, The graphene heating layer (42) is a graphene heating plate, and the graphene heating plate extends out of the electric lead (421) at both ends, the upper wall (2) is provided with a through portion (21) corresponding to the position of the electric lead (421), and one end of the electric lead (421) extends out of the through portion (21).
4. The aluminum cone core composite panel with graphene heating module according to claim 3, characterized in that, The flame-retardant layer (43) is a flame-retardant and moisture-proof foaming layer made of PU material, and the reflection layer (44) is a reflection film.
5. The graphene heating module-equipped aluminum cone core composite panel according to claim 1, characterized by, It also includes a plurality of L-shaped fixed angle codes (6), and the two ends of the fixed angle code (6) are respectively connected with the inner sides of the adjacent two upper walls (2).
6. The aluminum cone core composite panel with graphene heating module according to claim 5, characterized in that, It also includes a connecting piece (7), the two ends of the fixed angle code (6) are respectively provided with a first through hole (61), the upper wall (2) is provided with a second through hole (22) corresponding to the position of the first through hole (61), one end of the connecting piece (7) is tightly attached to the outer side of the upper wall (2), and the other end of the connecting piece (7) is tightly attached to the inner side of the fixed angle code (6) after passing through the second through hole (22) and the first through hole (61) in turn.
7. The graphene heating module-equipped aluminum cone-core composite panel according to claim 6, characterized in that, The other end of the connecting piece (7) abuts against the outer side of the shielding shell (41) placed in the groove (3).
8. The aluminum cone core composite panel with graphene heating module according to claim 1, characterized in that, The adjacent two upper walls (2) are adhered together by structural adhesive.
Citation Information
Patent Citations
Composite metal plate
CN214927750U