Energy-gathering radiation-proof stove and cooker device
By designing and placing a heating plate on the stove, combined with a microcrystalline glass heating element and aluminum alloy material, the problem of cookware tilting or sliding during heating is solved, achieving a stable connection and improved safety for the cookware. It is suitable for induction cookers and ceramic cooktops.
Patent Information
- Application Number
- CN202423159628.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing stoves and cookware are prone to tilting or sliding during heating, leading to uneven heat distribution and safety hazards, especially when using heavier or larger cookware under high-temperature conditions.
It features a heating plate design with a microcrystalline glass heating element and mounting ring at the bottom, which are fixed with adhesive. Supporting protrusions are provided on the top and inner side walls. Combined with aluminum alloy material, it ensures a stable connection of the cookware. The thermal conductivity and radiation protection properties of aluminum alloy material improve heating efficiency and safety.
It simplifies the production process, reduces labor costs, prevents cookware from tilting or sliding, and improves heating safety and heat uniformity. It is suitable for induction cookers and ceramic cooktops, especially stainless steel cookware.
Smart Images

Figure CN223709720U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of stove and pot device technology, and specifically relates to an energy-gathering radiation-preventing stove and pot device. BACKGROUND
[0002] With the continuous development of modern kitchen equipment and cooking methods, the use of stoves and pots gradually develops in the direction of high efficiency, convenience and safety. Especially the popularity of new kitchen equipment such as induction cookers and electric ceramic stoves promotes the demand for high-performance heating devices. However, the existing stoves and pots still have some technical problems and deficiencies in the use process.
[0003] Firstly, the pot is prone to tilting or sliding during the heating process, especially under high-temperature heating. The unstable contact between the bottom of the pot and the stove plate can lead to uneven heat conduction, thereby affecting the cooking effect and the heating quality of food. At the same time, the pot is prone to position movement due to thermal expansion or external force, especially when using heavy or large pots, this instability is particularly obvious. The sliding or tilting of the pot not only causes uneven distribution of heat, but also may cause safety hazards and increase the risk of accidents during cooking.
[0004] In view of this, overcoming the defects of the prior art is a problem to be solved in the technical field. CONTENT OF THE UTILITY MODEL
[0005] In view of the technical problems mentioned in the background art, the purpose of the utility model is to provide an energy-gathering radiation-preventing stove and pot device which simplifies the production process, reduces labor costs, is stable in use, prevents the pot from tilting or sliding during the heating process, and improves the safety of heating, so as to solve the technical problems mentioned in the background art.
[0006] To achieve the above-mentioned purpose, the utility model provides a technical scheme: an energy-gathering radiation-preventing stove and pot device, which comprises a placing stove plate, the bottom of the placing stove plate is provided with a mounting ring part, the bottom of the mounting ring part is provided with a microcrystalline glass heating body, the edge of the microcrystalline glass heating body is provided with a mounting and pasting surface, the mounting and pasting surface is fixedly pasted between the mounting ring part, the top inner side wall of the placing stove plate is provided with a plurality of first supporting protrusions, the inner side of the placing stove plate is provided with a mounting side wall, and the inner side wall of the mounting side wall is provided with a plurality of second supporting protrusions.
[0007] Further, the top edge of the placing stove plate is provided with a circular ring-shaped stove plate mounting ring, the inside of the stove plate mounting ring is uniformly provided with a plurality of mounting nuts, and the plurality of mounting nuts are connected with mounting studs.
[0008] Further, the placing stove plate is made of aluminum alloy material.
[0009] Further, a plurality of the first support protrusions are evenly spaced on the inner side wall of the placement furnace tray.
[0010] Further, a plurality of the second support protrusions are evenly spaced on the inner side wall of the installation side wall.
[0011] Further, the placement furnace tray is in a circular ring shape.
[0012] The utility model mainly has the following beneficial effects: the bottom of the placement furnace tray is equipped with a microcrystalline glass heating body, the bottom of the placement furnace tray is equipped with a circular ring-shaped installation ring part, the edge of the microcrystalline glass heating body is equipped with an installation sticking surface, the installation sticking surface is fixed with the installation ring part through glue sticking, the inner side wall of the top of the placement furnace tray is convex with a plurality of first support protrusions, the inner side of the placement furnace tray is equipped with an installation side wall, the inner side wall of the installation side wall is convex with a plurality of second support protrusions, the energy-gathering radiation-preventing furnace utensil pot utensil device of the utility model simplifies the production process, reduces artificial cost, is stable in use, prevents the pot utensil from inclining or sliding in the heating process, and improves the safety of heating. BRIEF DESCRIPTION OF DRAWINGS
[0013] Fig. 1 It is the whole three-dimensional structure schematic diagram of the utility model.
[0014] Fig. 2 It is the exploded structure schematic diagram of the utility model.
[0015] Fig. 3 It is the use state structure schematic diagram of the utility model.
[0016] The drawing sign: placement furnace tray 10;Microcrystalline glass heating body 20;Installation ring part 11;Installation sticking surface 21;First support protrusion 12;Installation side wall 13;Second support protrusion 131;Furnace tray installation ring 14;Installation nut 141;Installation stud 30. DETAILED DESCRIPTION
[0017] As Figs. 1 to 3As shown, a kind of energy-gathering radiation-preventing stove cooking utensil device, it includes the placement stove 10, the placement stove 10 is annular, the bottom of the placement stove 10 is equipped with microcrystalline glass heating body 20, in use, the placement stove 10 is adapted to electromagnetic oven, in use, the placement stove 10 is placed on electromagnetic oven, heat is generated by the magnetic field of electromagnetic oven, due to the high efficiency and thermal conductivity of the microcrystalline glass heating body 20, utensil can be quickly heated, save cooking time, electric ceramic stove is heated by the element of directly heating the bottom of utensil, the microcrystalline glass heating body 20 is then heated by uniformly transmitting heat, reduce heat loss, to improve heating efficiency, the placement stove 10 is also applicable to common utensil types such as concave pot and flat pot, especially for stainless steel utensil, can guarantee the rapid conduction of heat, and effectively prevent the situation that heat imbalance occurs at the bottom of pot.
[0018] In specific implementation, the bottom of the placement stove 10 is equipped with annular mounting ring part 11, the microcrystalline glass heating body 20 is arranged at the bottom of the mounting ring part 11, the edge of the microcrystalline glass heating body 20 is equipped with mounting and pasting surface 21, the mounting and pasting surface 21 is fixed by adhesive between the mounting ring part 11, so that the microcrystalline glass heating body 20 is pasted and fixed at the bottom of the placement stove 10, in use, the pasting and fixing mode is adopted, avoids cumbersome processes such as welding or screw fixing, simplifies production process, reduces labor cost, at the same time, the bonding strength of high-temperature adhesive is enough, can guarantee that the microcrystalline glass heating body 20 remains stable during heating process, and is not easy to fall off.
[0019] In specific implementation, the top inner side wall of the placement stove 10 is convexly provided with a plurality of first support protrusions 12, a plurality of the first support protrusions 12 are uniformly and spacedly distributed on the inner side wall of the placement stove 10, in use, the bottom of utensil is in contact with a plurality of the first support protrusions 12, through the support action of the first support protrusions 12, utensil can remain stable, especially in high-temperature heating process, the risk that utensil is displaced due to thermal expansion or external force can be effectively reduced.
[0020] In specific implementation, the inner side of the placement stove 10 is provided with mounting side wall 13, the inner side wall of the mounting side wall 13 is convexly provided with a plurality of second support protrusions 131, a plurality of the second support protrusions 131 are uniformly and spacedly distributed on the inner side wall of the mounting side wall 13, in use, a plurality of the second support protrusions 131 play the role of providing additional support at the edge of utensil, the second support protrusions 131 can effectively disperse the pressure received by utensil, prevent utensil from tilting or sliding during heating process, especially when larger or heavier utensil is used, the second support protrusions 131 can further enhance the stability of utensil and improve the safety of heating.
[0021] In the specific implementation, the placing furnace tray 10 is made of aluminum alloy material, which is widely used in various high-temperature equipment and electronic products due to its light weight, corrosion resistance, high temperature resistance and excellent heat conduction performance. The selection of aluminum alloy not only provides a solid structure, but also has good radiation resistance, which helps to improve the working efficiency and safety of the equipment.
[0022] In the specific implementation, the top edge of the placing furnace tray 10 is provided with a circular furnace tray mounting ring 14, and the inside of the furnace tray mounting ring 14 is uniformly provided with a plurality of mounting nuts 141, and a plurality of mounting studs 30 are connected to the mounting nuts 141. In use, the mounting studs 30 are used to connect and mount the furnace and the pot. Through the connection mode of the mounting studs 30, the stable connection between the furnace and the pot and the placing furnace tray 10 can be ensured, and displacement or tilting of the furnace tray during heating due to temperature change or improper operation can be avoided. No matter the material of the pot is iron, aluminum, copper or the like, the stud can be firmly connected with the bottom of the pot, and the stability during heating can be maintained.
[0023] In summary, the bottom of the placing furnace tray 10 is provided with a microcrystalline glass heating body 20, the bottom of the placing furnace tray 10 is provided with a circular mounting ring part 11, the edge of the microcrystalline glass heating body 20 is provided with a mounting and pasting surface 21, the mounting and pasting surface 21 is fixed by glue between the mounting ring part 11, the top inner side wall of the placing furnace tray 10 is provided with a plurality of first support protrusions 12, the inner side of the placing furnace tray 10 is provided with a mounting side wall 13, and the inner side wall of the mounting side wall 13 is provided with a plurality of second support protrusions 131. The energy-gathering radiation-preventing furnace and pot device of the utility model simplifies the production process, reduces labor cost, is stable in use, prevents the pot from tilting or sliding during heating, and improves the safety of heating.
Claims
1. A polyenergetic radiation shielded stove cookware device, characterized by, It includes the placement of furnace tray (10), the bottom of the placement of furnace tray (10) is provided with mounting ring part (11), the bottom of the mounting ring part (11) is provided with microcrystalline glass heating body (20), the edge of the microcrystalline glass heating body (20) is provided with mounting and pasting surface (21), and the mounting and pasting surface (21) is pasted and fixed between the mounting ring part (11), the top inner side wall of the placement of furnace tray (10) is provided with a plurality of first support convex points (12), and the inner side of the placement of furnace tray (10) is provided with mounting side wall (13), and the inner side wall of the mounting side wall (13) is provided with a plurality of second support convex points (131).
2. The focused radiation shielding stove cookstove device according to claim 1, characterized in that, The top edge of the placement of furnace tray (10) is provided with circular furnace tray mounting ring (14), and the inside of the furnace tray mounting ring (14) is uniformly provided with a plurality of mounting nuts (141), and a plurality of the mounting nuts (141) are connected with mounting studs (30).
3. The focused radiation shielding cookstove device of claim 1, wherein, The placement of furnace tray (10) is made of aluminum alloy material.
4. The focused radiation shielding cookstove device of claim 1, wherein, A plurality of the first support convex points (12) are uniformly distributed on the inner side wall of the placement of furnace tray (10).
5. The focused radiation shielding cookstove device of claim 1, wherein, A plurality of the second support convex points (131) are uniformly distributed on the inner side wall of the mounting side wall (13).
6. The focused radiation shielding cookstove device of claim 1, wherein, The placement of furnace tray (10) is circular in shape.