CN211093322U - Graphene composite semiconductor energy-saving electric marmite - Google Patents
Graphene composite semiconductor energy-saving electric marmite Download PDFInfo
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- CN211093322U CN211093322U CN201921695179.1U CN201921695179U CN211093322U CN 211093322 U CN211093322 U CN 211093322U CN 201921695179 U CN201921695179 U CN 201921695179U CN 211093322 U CN211093322 U CN 211093322U
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Abstract
The embodiment of the application discloses energy-conserving electric marmite of graphite alkene compound semiconductor, including electric marmite shell, the outside fixed mounting of electric marmite shell has the removal handle, the inside movable mounting of electric marmite shell has the pottery jar body, the top of the pottery jar body is equipped with the outer edge of anti-overflow, the top movable cover on the outer edge of anti-overflow has electric marmite lid, the top fixed mounting of electric marmite lid has the pot cover handle, one deck heat conductor has been plated to the bottom of the pottery jar body. Plate a layer of graphite alkene through the bottom at the pottery jar body and accord with novel material electric heat coating as the heat conductor, through the setting of this heat conductor, can turn into heat energy with the electric energy efficient to the conversion rate can reach 98%, and the speed of generating heat is extremely fast, and traditional pottery jar body heat conduction efficiency is not high, thereby the rate of heating that leads to the jar body of generating heat is slow, and the energy consumption is extravagant serious, consequently compares traditional electric marmite, the utility model discloses the electric marmite that releases more has the superiority.
Description
Technical Field
The application relates to the field of energy-saving electric marmite, in particular to a graphene composite semiconductor energy-saving electric marmite.
Background
The electric marmite is generally provided with a ceramic inner container and a purple sand inner container, and the electric marmite can be used for stewing porridge and soup by adopting a slow fire stewing method, so that the nutritional ingredients of food can be fully locked, and the taste and nutrition of food materials and seasoning can be better diffused into the porridge soup.
The problem that heat energy conversion efficiency is not high can appear at the in-process that uses of current electric marmite, that is to say the heat conductor is not high at the efficiency of this in-process heat conduction of giving the heating inner bag with the heat conduction, thereby it is not enough to lead to heating inner bag received heat, it is not good to cause the heating effect, the problem of surface oxidation can appear after long-time use in addition to the heat conductor, lead to the outward appearance of heat conductor not pleasing to the eye on the one hand, on the other hand also can produce the phenomenon of naked light, and then probably cause the safety in utilization problem.
SUMMERY OF THE UTILITY MODEL
In view of the above problem, this application has provided energy-conserving electric marmite of graphite alkene compound semiconductor, it guarantees the high-efficient conversion of heat energy as the heat conductor to possess pottery jar body bottom to plate a layer graphite alkene, the heat conductor is difficult for the oxidation, no naked light, factor of safety is high, it is not high to have solved current electric marmite and can appear heat energy conversion efficiency at the in-process that uses, it is not high just that the heat conductor is giving the efficiency of this in-process heat conduction of heating inner bag with the heat conduction, thereby lead to heating inner bag received heat not enough, cause the not good problem of heating effect
The graphene composite semiconductor energy-saving electric marmite comprises an electric marmite shell, wherein a movable handle is fixedly installed on the outer side of the electric marmite shell, the interior of the electric marmite shell is movably provided with a ceramic tank body, the top of the ceramic tank body is provided with an anti-overflow outer edge, the top of the anti-overflow outer edge is movably covered with an electric earthenware pot cover, the top of the electric earthenware pot cover is fixedly provided with a pot cover handle, the bottom of the ceramic tank body is plated with a layer of heat conductor, the inner cavity of the shell of the electric marmite is fixedly provided with a fixed plate below the ceramic tank body, a heating block is fixedly arranged in the middle of the fixing plate, an overtemperature protection switch is fixedly arranged on the left side of the heating block, the right side fixed mounting of heating block has empting protection switch, overtemperature protection switch's left side fixed mounting has mainboard subassembly, the front fixed mounting of electric marmite shell has control panel.
Preferably, the bottom of the electric marmite shell is fixedly provided with three raised bases which are distributed in a triangular shape.
Preferably, the number of the movable handles is two, and the two movable handles are symmetrically distributed on two sides of the outer layer of the shell of the electric marmite.
Preferably, the ceramic tank is made of ceramic.
Preferably, the heat conductor is a graphene composite semiconductor material efficient heating layer.
Preferably, the circuit connection between the mainboard assembly and the heating block, the overtemperature protection switch and the dumping protection switch is electrically connected through silver paste electrodes.
The application provides an energy-conserving electric marmite of graphite alkene compound semiconductor.
1. Plate a layer of graphite alkene through the bottom at the pottery jar body and accord with novel material electric heat coating as the heat conductor, through the setting of this heat conductor, can turn into heat energy with the electric energy efficient to the conversion rate can reach 98%, and the speed of generating heat is extremely fast, and traditional pottery jar body heat conduction efficiency is not high, thereby the rate of heating that leads to the jar body of generating heat is slow, and the energy consumption is extravagant serious, consequently compares traditional electric marmite, the utility model discloses the electric marmite that releases more has the superiority.
2. Plating a layer of graphite alkene through the bottom at the pottery jar body and accord with novel material electric heat coating as the heat conductor, this heat conductor is difficult for oxidizing at the in-process that uses, consequently cover the heat conductor and still can guarantee its self wholeness after long-time use, can not produce the damage to the phenomenon that the heat conductor surface produced naked light has been stopped, the safe in utilization of electric marmite has been guaranteed, this electric marmite still is provided with overheat protection and emptys the protection in addition, uses safe and reliable.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a front sectional view of the present invention;
Fig. 2 is a schematic view of the front structure of the present invention.
In the figure: 1. an electric marmite shell; 2. moving the handle; 3. a ceramic tank body; 4. an anti-overflow outer edge; 5. electric cooker cover; 6. a pot cover handle; 7. a heat conductor; 8. a fixing plate; 9. a heating block; 10. an overtemperature protection switch; 11. a dump protection switch; 12. a motherboard assembly; 13. a control panel.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
Referring to fig. 1-2, the graphene composite semiconductor energy-saving electric marmite comprises an electric marmite shell 1, wherein three bases are fixedly arranged at the bottom of the electric marmite shell 1 and are distributed in a triangular shape, and the friction force between the bottom of the electric marmite shell 1 and a table top can be ensured to be larger by arranging the three bases which are fixedly arranged at the bottom of the electric marmite shell 1 and are in contact with each other, so that the stability of the electric marmite shell 1 can be ensured, in addition, the three bases are arranged in a triangular distribution because the triangular shape has a stable structure, so that the electric marmite shell is more stable during fixation and is safe to use, the movable handles 2 are fixedly arranged at the outer side of the electric marmite shell 1, the number of the movable handles 2 is two, the two movable handles 2 are symmetrically distributed at two outer sides of the electric marmite shell 1, and the number of the movable handles 2 is two, the movable handles 2 can be more convenient and safer when a user carries the electric marmite, the other two movable handles 2 are symmetrically distributed on the two outer sides of the electric marmite shell 1, on one hand, the movable handles are convenient to carry, on the other hand, the integral aesthetic property of the electric marmite can be ensured for the purpose of symmetrical distribution, a ceramic tank body 3 is movably arranged in the electric marmite shell 1, the ceramic tank body 3 is prepared by ceramics, the ceramic tank body 3 can be ensured to lock nutrition when soup is cooked, and the other benefit of ceramic materials is that the ceramic materials can play a role of heat preservation, thereby being more beneficial to saving heat energy, the top of the ceramic tank body 3 is provided with an anti-overflow outer edge 4, the top of the anti-overflow outer edge 4 is movably covered with the electric marmite cover 5, and the top of the electric marmite cover 5 is fixedly provided with a pot cover, the bottom of the ceramic tank body 3 is plated with a heat conductor 7, the heat conductor 7 is a graphene composite semiconductor material efficient heating layer, the arrangement of the heat conductor 7 which is a graphene composite semiconductor material efficient heating layer can ensure that the graphene composite semiconductor material efficient heating layer can well convert electric energy into heat energy, and ensure the conversion rate, so that the heating speed is faster and the efficiency is higher, a fixing plate 8 is fixedly arranged in the inner cavity of the electric marmite shell 1 and is positioned below the ceramic tank body 3, a heating block 9 is fixedly arranged in the middle of the fixing plate 8, an overtemperature protection switch 10 is fixedly arranged on the left side of the heating block 9, an overturning protection switch 11 is fixedly arranged on the right side of the heating block 9, a main board component 12 is fixedly arranged on the left side of the overtemperature protection switch 10, and the circuit connection between the main board component 12 and the heating block 9, the overtemperature protection switch 10 and the overturning protection switch 11 is electrically connected through, through mainboard subassembly 12 and heating piece 9, overtemperature prote switch 10 and empty the setting that line connection between the protect switch 11 all passes through silver thick liquid electrode electric connection, because silver thick liquid electrode has solidification temperature low, bonding strength is high, the electrical property is stable, be fit for characteristics such as screen printing, thereby can make this electric marmite safety and stability more at the in-process that uses, the condition of short circuit can not appear, also make the life of circuit more of a specified duration, thereby the whole life-span of this electric marmite has been guaranteed, the positive fixed mounting of electric marmite shell 1 has control panel 13.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit the same; although the present application has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not necessarily depart from the spirit and scope of the corresponding technical solutions in the embodiments of the present application.
Claims (6)
1. Energy-conserving electric marmite of compound semiconductor of graphite alkene, including electric marmite shell (1), its characterized in that, the outside fixed mounting of electric marmite shell (1) has removal handle (2), the inside movable mounting of electric marmite shell (1) has the jars body (3), the top of the jars body (3) is equipped with the anti-overflow and follows (4) outward, the anti-overflow is covered along the top movable mounting of (4) outward and is had electric marmite lid (5), the top fixed mounting of electric marmite lid (5) has pot cover handle (6), one deck heat conductor (7) have been plated to the bottom of the jars body (3), the below fixed mounting that electric marmite shell (1) inner chamber is located the jars body (3) has fixed plate (8), the middle part fixed mounting of fixed plate (8) has heating block (9), the left side fixed mounting of heating block (9) has overtemperature protection switch (10), the right side fixed mounting of heating block (9) has and emptys protection switch (11), the left side fixed mounting of overtemperature protection switch (10) has mainboard subassembly (12), the front fixed mounting of electric marmite shell (1) has control panel (13).
2. The graphene composite semiconductor energy-saving electric marmite according to claim 1, wherein three convex bases are fixedly arranged at the bottom of the electric marmite shell (1) and are distributed in a triangular shape.
3. The graphene composite semiconductor energy-saving electric marmite according to claim 1, wherein the number of the moving handles (2) is two, and the two moving handles (2) are symmetrically distributed on two sides of the outer layer of the electric marmite shell (1).
4. The graphene composite semiconductor energy-saving electric casserole according to claim 1, wherein the ceramic pot body (3) is made of ceramic.
5. The graphene composite semiconductor energy-saving electric casserole according to claim 1, wherein the heat conductor (7) is a layer of graphene composite semiconductor material high-efficiency heating layer.
6. The graphene composite semiconductor energy-saving electric casserole according to claim 1, wherein the circuit connections between the main board assembly (12) and the heating block (9), the overtemperature protection switch (10) and the dumping protection switch (11) are all electrically connected through silver paste electrodes.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921695179.1U CN211093322U (en) | 2019-10-11 | 2019-10-11 | Graphene composite semiconductor energy-saving electric marmite |
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CN201921695179.1U CN211093322U (en) | 2019-10-11 | 2019-10-11 | Graphene composite semiconductor energy-saving electric marmite |
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CN211093322U true CN211093322U (en) | 2020-07-28 |
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