CN216143784U - Microcrystal electroceramic stove - Google Patents
Microcrystal electroceramic stove Download PDFInfo
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- CN216143784U CN216143784U CN202121623775.6U CN202121623775U CN216143784U CN 216143784 U CN216143784 U CN 216143784U CN 202121623775 U CN202121623775 U CN 202121623775U CN 216143784 U CN216143784 U CN 216143784U
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Abstract
The utility model discloses a microcrystal electric ceramic furnace, which comprises a bottom plate and a shell fixed with the bottom plate through a screw, wherein a circuit board is fixed on the bottom plate, a circular through hole is formed in the top surface of the shell, an operating panel is arranged on the side surface of the shell, a supporting seat with an open top surface is arranged in the circular through hole, at least three Z-shaped supports are fixed on the side part of the supporting seat through screws, the bottoms of the Z-shaped supports are fixed on the side wall of the shell through screws, a ceramic heating seat is arranged in the supporting seat, a spherical crown-shaped sunken area is formed in the top surface of the ceramic heating seat, an infrared heating body is spirally fixed on the top surface of the spherical crown-shaped sunken area, a transparent microcrystal heat-conducting glass plate with a spherical crown-shaped concave surface is arranged in the circular through hole, the infrared heating body is connected with the circuit board, and the operating panel is connected with the circuit board. The utility model has reasonable structure arrangement, increases heat conducting area, is beneficial to improving the utilization efficiency of heat energy, has good energy-saving effect, is beneficial to avoiding electromagnetic wave radiation, improves the impact resistance, and has strong applicability and good practicability.
Description
Technical Field
The utility model belongs to the technical field of household appliances, and particularly relates to a microcrystalline electric ceramic furnace.
Background
The electric ceramic stove is a common household appliance, which is generally composed of a base, a circuit board fixed in the base, a through hole is formed in the top surface of the base, a support is fixed in the base, a ceramic flat plate is arranged in the support, a heating wire is fixed on the top surface of the ceramic flat plate, a panel is fixed on the top surface of the through hole, the heating wire is beneficial to the heating matching of the heating wire, the heat is transmitted out of the panel, the structure of the top surface of the electric ceramic stove is heated, the heating operation such as cooking and baking is completed, the use requirements of general conditions can be met at any time, but the heating effect is limited, the use stability is poor, and the applicability and the practicability are limited.
Disclosure of Invention
The utility model aims to provide a microcrystal electric ceramic furnace which is reasonable in structure arrangement and strong in applicability.
The technical scheme for realizing the aim of the utility model is that the microcrystal electric ceramic furnace comprises a bottom plate and a shell fixed with the bottom plate through a screw rod, a circuit board is fixed on the bottom plate, a circular through hole is arranged on the top surface of the shell, an operation panel is arranged on the side surface of the shell, a supporting seat with an opening on the top surface is arranged in the circular through hole, at least three Z-shaped brackets are fixed on the side part of the supporting seat through a screw rod, the bottom of the Z-shaped bracket is fixed on the side wall of the shell through a screw, a ceramic heating seat is arranged in the supporting seat, the top surface of the ceramic heating seat is provided with a spherical crown depressed area, the top surface of the spherical crown depressed area is spirally fixed with an infrared heating body, the round through hole is internally provided with a transparent microcrystal heat-conducting glass plate with a spherical-crown-shaped concave surface, the infrared heating body is connected with the circuit board, and the operation panel is connected with the circuit board.
The ceramic heating seat is characterized in that a positioning convex column is fixed at the center of the top surface of the supporting seat and at the edge of the top surface, a positioning hole is formed in the ceramic heating seat, and when the ceramic heating seat is installed in the ceramic heating seat, the positioning convex column is clamped into the positioning hole for positioning.
The bottom surface of the bottom plate is fixed with support legs through screws, the bottom surface of the bottom plate is fixed with a heat dissipation window, the top surface of the bottom plate is fixed with a heat dissipation fan, and the heat dissipation fan is connected with the circuit board.
The thickness of the transparent microcrystalline heat-conducting glass plate is 2-10mm, and the supporting seat, the Z-shaped support and the shell are all stainless steel structures.
The utility model has the positive effects that: the ceramic heating seat is reasonable in structure arrangement, the top surface of the ceramic heating seat is provided with the spherical crown-shaped sunken area, the top surface of the ceramic heating seat is provided with the infrared heating body, and the transparent microcrystal heat-conducting glass plate with the spherical crown-shaped concave surface is also arranged on the top surface of the ceramic heating seat, so that the heat-conducting area can be increased when the ceramic heating seat is used, the heat utilization efficiency can be improved due to the reflection of the spherical crown-shaped sunken area, the energy-saving effect is good, meanwhile, the infrared heating body is adopted, the electromagnetic wave radiation can be avoided, the use safety is improved, meanwhile, the transparent microcrystal heat-conducting glass plate improves the high-temperature resistance effect, is suitable for the situations of rapid cooling and rapid heating and the like, the impact resistance is greatly improved, the use is stable and reliable, and the applicability is strong, and the practicability is good.
Drawings
In order that the present disclosure may be more readily and clearly understood, reference is now made to the following detailed description of the present disclosure taken in conjunction with the accompanying drawings, in which:
FIG. 1 is a schematic structural diagram of the present invention.
Detailed Description
(example 1)
Fig. 1 shows an embodiment of the present invention, wherein fig. 1 is a schematic structural diagram of the present invention.
Referring to fig. 1, a microcrystal electric ceramic furnace includes a bottom plate 1, in this embodiment, the bottom plate is a flat plate, which may be a metal structure or an insulating plastic structure, and a housing 2 fixed to the bottom plate through a screw rod, which may be a metal structure or a high temperature resistant plastic structure, in this embodiment, the housing is a stainless steel body, which facilitates connection and fixation with the bottom plate and also ensures stability and reliability of use, and a circuit board 3 is fixed to the bottom plate, in this embodiment, the circuit board is a conventional circuit board in the prior art, which is not described in detail in this embodiment, but does not affect understanding and implementation of technical personnel, and a circular through hole 4 is formed in a top surface of the housing, in this embodiment, the diameter of the circular through hole is larger than that of a supporting seat, so that after installation, a certain gap is formed between the supporting seat and an edge of the circular through hole, which is beneficial to view of a structure inside the housing from a transparent microcrystal heat conducting glass plate and an internal heating mode is infrared heating;
the side of the shell is provided with an operating panel 5, the operating panel is an insulating plastic plate and is fixed with the shell through screws or glue, an operating button switch is fixed on the operating panel and comprises a start-stop switch, an adjusting knob, a function selecting knob and the like, and the operating panel is a conventional structure in the prior art, and a supporting seat 6 with an open top surface is arranged in the circular through hole;
the lateral part of the supporting seat is fixed with at least three Z-shaped supports 7 through screws, in the embodiment, the Z-shaped supports are mainly used for fixing the supporting seat and the shell, and the situation of looseness or deviation is prevented;
the round through hole is internally provided with a transparent microcrystal heat-conducting glass plate 11 with a spherical-crown-shaped concave surface, in the embodiment, the thickness of the transparent microcrystal heat-conducting glass plate is 2-10mm, the size of the transparent microcrystal heat-conducting glass plate is the same as that of the round through hole, the edge of the transparent microcrystal heat-conducting glass plate is fixed with the inner wall of the round through hole through high-temperature-resistant glue and the like, and the bottom surface of the transparent microcrystal heat-conducting glass plate is close to the top surface of the spherical-crown-shaped concave area, so that the heat of an infrared heating body can be reflected from the transparent microcrystal heat-conducting glass plate to heat an appliance on the top surface of the transparent microcrystal heat-conducting glass plate, the infrared heating body is connected with the circuit board, and the operation panel is connected with the circuit board.
The top surface center and the top surface limit portion of supporting seat are fixed with location projection 12, set up locating hole 13 on the ceramic heating seat, the ceramic heating seat is installed when in the ceramic heating seat, location projection card is gone into fix a position in the locating hole. The positioning convex column is a plastic or metal structure body, can be integrally formed with the supporting seat and can also be fixed through glue or screws and the like, and the positioning convex column is mainly used for supporting and limiting the ceramic heating seat and preventing the ceramic heating seat from deviating or rotating.
The bottom surface of the bottom plate is fixed with support legs 14 through screws, the support legs are insulating plastic support legs, and the height of the support legs is 3-5cm, so that airflow of the cooling fan can flow from the bottom surface of the bottom plate, the cooling effect is improved, the stable operation environment of an internal circuit board is guaranteed, a cooling window 15 is fixed on the bottom surface of the bottom plate, a cooling fan 16 is fixed on the top surface of the bottom plate, and the cooling fan is connected with the circuit board.
The ceramic heating seat is reasonable in structure arrangement, the top surface of the ceramic heating seat is provided with the spherical crown-shaped sunken area, the top surface of the ceramic heating seat is provided with the infrared heating body, and the transparent microcrystal heat-conducting glass plate with the spherical crown-shaped concave surface is also arranged on the top surface of the ceramic heating seat, so that the heat-conducting area can be increased when the ceramic heating seat is used, the heat utilization efficiency can be improved due to the reflection of the spherical crown-shaped sunken area, the energy-saving effect is good, meanwhile, the infrared heating body is adopted, the electromagnetic wave radiation can be avoided, the use safety is improved, meanwhile, the transparent microcrystal heat-conducting glass plate improves the high-temperature resistance effect, is suitable for the situations of rapid cooling and rapid heating and the like, the impact resistance is greatly improved, the use is stable and reliable, and the applicability is strong, and the practicability is good.
The standard parts used in the present embodiment can be purchased directly from the market, and the non-standard structural parts described in the specification can also be obtained directly by processing according to the common general knowledge of the prior art without any doubt, and the connection mode of the parts adopts the conventional means matured in the prior art, and the machines, parts and equipment adopt the conventional models in the prior art, so that the detailed description is not given here.
It should be understood that the above-described embodiments of the present invention are merely examples for clearly illustrating the present invention, and are not intended to limit the embodiments of the present invention. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. And such obvious changes and modifications which fall within the spirit of the utility model are deemed to be covered by the present invention.
Claims (4)
1. The utility model provides a micrite electric ceramic stove, includes the bottom plate, with the bottom plate passes through the fixed casing of screw rod, be fixed with the circuit board on the bottom plate, circular through-hole has been seted up to the top surface of casing, the side of casing is equipped with operating panel, its characterized in that: the ceramic heating device is characterized in that a supporting seat with an open top surface is arranged in the circular through hole, at least three Z-shaped supports are fixed on the side portion of the supporting seat through screws, the bottoms of the Z-shaped supports are fixed on the side wall of the shell through screws, a ceramic heating seat is arranged in the supporting seat, a spherical crown-shaped depressed area is formed in the top surface of the ceramic heating seat, an infrared heating body is spirally fixed on the top surface of the spherical crown-shaped depressed area, a transparent microcrystal heat conduction glass plate with a spherical crown-shaped concave surface is arranged in the circular through hole, the infrared heating body is connected with the circuit board, and the operating panel is connected with the circuit board.
2. The microcrystalline electroceramic furnace of claim 1, wherein: the ceramic heating seat is characterized in that a positioning convex column is fixed at the center of the top surface of the supporting seat and at the edge of the top surface, a positioning hole is formed in the ceramic heating seat, and when the ceramic heating seat is installed in the ceramic heating seat, the positioning convex column is clamped into the positioning hole for positioning.
3. A microcrystalline electroceramic stove according to claim 2, wherein: the bottom surface of the bottom plate is fixed with support legs through screws, the bottom surface of the bottom plate is fixed with a heat dissipation window, the top surface of the bottom plate is fixed with a heat dissipation fan, and the heat dissipation fan is connected with the circuit board.
4. A microcrystalline electroceramic stove according to claim 3, wherein: the thickness of the transparent microcrystalline heat-conducting glass plate is 2-10mm, and the supporting seat, the Z-shaped support and the shell are all stainless steel structures.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121623775.6U CN216143784U (en) | 2021-07-16 | 2021-07-16 | Microcrystal electroceramic stove |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121623775.6U CN216143784U (en) | 2021-07-16 | 2021-07-16 | Microcrystal electroceramic stove |
Publications (1)
Publication Number | Publication Date |
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CN216143784U true CN216143784U (en) | 2022-03-29 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202121623775.6U Active CN216143784U (en) | 2021-07-16 | 2021-07-16 | Microcrystal electroceramic stove |
Country Status (1)
Country | Link |
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CN (1) | CN216143784U (en) |
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2021
- 2021-07-16 CN CN202121623775.6U patent/CN216143784U/en active Active
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