Disk body assembly and micro steaming and baking integrated equipment
By incorporating a metal plate and silicone edging into the pan assembly of the microwave-steam-grill combo, the flexibility of the pan assembly under different cooking methods is solved, achieving multi-functional adaptability and improved safety, extending service life, and enhancing heating efficiency and air-frying effect.
Patent Information
- Application Number
- CN202423119459.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-17
AI Technical Summary
The existing microwave-steam-grill combination equipment has poor flexibility in its plate components between different cooking methods, making it difficult to adapt to the needs of multiple functions such as steam heating, microwave heating, baking, and air frying.
A plate assembly was designed, including a metal plate and a silicone edging piece. The metal plate has pores that extend through the thickness direction to accommodate different cooking methods. The silicone edging piece contacts the side wall of the microwave-steam-grill combination appliance to reduce arcing and wear.
It achieves flexibility and safety of the plate assembly under different cooking methods, improves user experience, extends service life, and enhances heating efficiency and air frying effect.
Smart Images

Figure CN223667773U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliances, in particular to a disc assembly and a micro-steaming and baking integrated device. BACKGROUND
[0002] The disc assembly in the micro-steaming and baking integrated device is used to provide a placement position for food materials so as to facilitate cooking. In the related art, when the micro-steaming and baking integrated device is used to steam, bake or air-fry food materials, corresponding different discs need to be used, and the flexibility is poor. CONTENT OF THE UTILITY MODEL
[0003] Therefore, the embodiments of the present application aim to provide a disc assembly and a micro-steaming and baking integrated device, which can adapt to different cooking modes and have good flexibility.
[0004] In order to achieve the above-mentioned purpose, the technical scheme of the embodiments of the present application is as follows:
[0005] The embodiments of the present application disclose a disc assembly applied to a micro-steaming and baking integrated device, which comprises:
[0006] A metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof;
[0007] A silica gel edge covering member is connected to the side of the metal disc body along a first direction, which is perpendicular to the thickness direction of the metal disc body, and is used to be in contact with the cavity side wall of the micro-steaming and baking integrated device.
[0008] In an embodiment, the material of the metal disc body is an aluminum-plated steel plate.
[0009] In an embodiment, the micro-steaming and baking integrated device is internally formed with a microwave feed inlet, which is arranged towards the side of the metal disc body where food materials are placed, and the projection shape of the air holes along the thickness direction is circular.
[0010] In an embodiment, the aperture of all the air holes is between 6 mm and 10 mm.
[0011] In an embodiment, the aperture ratio of the air holes is between 1 and 2.
[0012] In an embodiment, the surface of the metal disc body is coated with a Teflon coating.
[0013] In an embodiment, the metal disc body is formed with a cooking groove, and the groove bottom surface of the cooking groove is formed with the air holes.
[0014] In an embodiment, the ratio between the sum of the areas of all the air holes and the area of the groove bottom surface of the cooking groove is greater than 50%.
[0015] In an embodiment, the bottom surface of the cooking groove is formed with a reinforcing rib.
[0016] Another aspect of the embodiments of the present application discloses a micro-steaming and baking integrated device, comprising the disc assembly in any of the above embodiments.
[0017] The embodiments of the present application disclose a disc assembly and a micro-steaming and baking integrated device, the metal disc is formed with air holes, when the steam heating function is used, the steam can pass through the air holes to heat the food; when the microwave heating or baking function is used, the microwave can pass through the air holes or directly act on the moisture in the food to achieve the heating or baking effect; when the air frying function is used, the heated air can circulate through the air holes to evaporate the moisture on the surface of the food, thereby achieving the effect similar to oil frying; in this way, the metal disc can adapt to different cooking methods to achieve the effect of one disc for multiple purposes, good flexibility, and convenient for users to store and use, good user experience. By connecting the silica gel wrapping member on the side of the metal disc along the first direction, on the one hand, when the microwave heating or baking function is used, the silica gel material can reduce the occurrence of sparking caused by the contact between the metal disc and the side wall of the cavity of the micro-steaming and baking integrated device, good safety; on the other hand, the silica gel wrapping member can also reduce the abrasion and scratching of the metal disc during the process of placing and pulling out the micro-steaming and baking integrated device, thereby improving the service life of the metal disc. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 An explosion schematic view of a disc assembly provided by the embodiments of the present application is provided.
[0019] BRIEF DESCRIPTION OF DRAWINGS
[0020] 100, disc assembly; 1, metal disc; 1a, air hole; 11, outer wrapping area; 11a, handle; 12, middle area; 12a, cooking groove; 12b, reinforcing rib; 2, silica gel wrapping member. DETAILED DESCRIPTION
[0021] It should be noted that the embodiments and technical features in the present application can be combined with each other without conflict, and the detailed description in the specific embodiments should be understood as the explanation and description of the purpose of the present application, and should not be regarded as improper limitation of the present application.
[0022] The present application will be further described in detail below in combination with the drawings and specific embodiments. The "first", "second" and the like in the embodiments of the present application are only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly including at least one feature. In the description of the embodiments of the present application, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise specifically limited.
[0023] In order to better understand the disc assembly provided in the present application, a micro-steaming and baking integrated device is first described.
[0024] The micro-steaming and baking integrated device provided in the present application has the advantages of good flexibility and strong versatility.
[0025] The micro-steaming and baking integrated device can be an integrated device having the functions of microwave heating, microwave baking, steam heating and air frying.
[0026] For example, a cooking cavity can be formed in the micro-steaming and baking integrated device, the cavity wall of the cooking cavity is formed with a convex rib, and the disc assembly 100 can be placed on the convex rib.
[0027] The disc assembly 100 provided in the present application has the advantages of good flexibility and strong versatility. Figure 1 The disc assembly 100 comprises a metal disc body 1 and a silica gel edge covering member 2. The metal disc body 1 is formed with a plurality of air holes 1a penetrating through the thickness direction thereof. The silica gel edge covering member 2 is connected to the side surface of the metal disc body 1 along a first direction, for contact connection with the cavity side wall of the micro-steaming and baking integrated device, wherein the first direction is perpendicular to the thickness direction of the metal disc body 1.
[0028] The disc assembly 100 provided in the present application has the advantages of good flexibility and strong versatility.
[0029] The micro-steaming and baking integrated device provided in the present application has the advantages of good flexibility and strong versatility.
[0030] Exemplarily, the thickness direction of the metal disc body 1 can be the up-down direction of the micro-steaming and baking integrated device, the first direction can be the length direction of the metal disc body 1, that is, the left-right direction of the micro-steaming and baking integrated device, and the second direction can be the width direction of the metal disc body 1, that is, the front-rear direction of the micro-steaming and baking integrated device.
[0031] It should be noted that up refers to the direction towards the ceiling, and down is opposite to up. The up-down direction, the front-rear direction and the left-right direction are perpendicular to each other, and together form a three-dimensional perpendicular coordinate system.
[0032] Exemplarily, in an embodiment, R1 in the figure can be the thickness direction, R2 can be the first direction, and R3 can be the second direction.
[0033] Exemplarily, in an embodiment, the material of the silica gel edge covering member 2 can be high-temperature-resistant silica gel, so as to better withstand the temperature in the micro-steaming and baking integrated device and improve the working stability.
[0034] In an embodiment, the material of the metal disc body 1 is an aluminum-plated steel plate.
[0035] Here, the aluminum-plated steel plate is used as the material of the metal disc body 1. On the one hand, the aluminum-plated steel plate has excellent heat resistance, and its physical and chemical properties are relatively stable at high temperatures. In addition, the aluminum-plated steel plate has a low coefficient of thermal expansion, which means that its size changes less at high temperatures, thereby reducing the risk of deformation or damage caused by thermal expansion. On the other hand, the aluminum-plated steel plate has excellent corrosion resistance due to the formation of aluminum oxide on its surface, which can resist the corrosion of various corrosive substances such as acid, alkali, and salt. This can reduce the corrosion of the metal disc body 1 by food residues, cleaning agents, and other substances, and has good stability. On the other hand, the aluminum-plated steel plate has less impact on human health.
[0036] In an embodiment, the surface of the metal disc body 1 is coated with a Teflon coating.
[0037] In this way, by coating the surface of the metal disc body 1 with a Teflon coating, on the one hand, the surface of the Teflon coating has extremely low surface tension, so it has extremely strong non-stick properties and is easy to clean. On the other hand, the Teflon coating can maintain its performance stability for a long time and is not prone to aging or falling off, which can prolong the service life of the metal disc body 1. On the other hand, the Teflon coating has good corrosion resistance and high temperature resistance.
[0038] In an embodiment, please refer to Figure 1 The interior of the micro-steaming and baking integrated device is formed with a microwave feed inlet, the microwave feed inlet is arranged towards the side of the metal disc body 1 where the food material is placed, and the projection shape of the air hole 1a along the thickness direction is circular.
[0039] Exemplarily, the disc assembly 100 is arranged in a cooking cavity, which can be divided into an upper cavity and a lower cavity, food can be placed in the upper cavity, and the microwave feeding device can be arranged at the top of the microwave steaming and baking integrated equipment, and the microwave feeding inlet is arranged downward and communicates with the upper cavity, so that the microwave can directly heat or bake the food.
[0040] Here, by setting the projection shape of the air hole 1a in the thickness direction as a circle, the microwave transmittance can be reduced to a certain extent, that is, it is more difficult for the microwave to enter the other side of the disc assembly 100 relative to the food through the air hole 1a, so that the microwave heating efficiency of the food can be improved, the waiting time of the user can be reduced, and the user experience is good.
[0041] In an embodiment, the hole diameter of all air holes 1a is between 6 mm and 10 mm.
[0042] Exemplarily, the diameter of the air hole 1a can be 6 mm, 7 mm, 8 mm, 9 mm or 10 mm, etc. Here, by setting the air hole 1a with a suitable hole diameter, the microwave transmittance can be reduced to the maximum range to increase the heating efficiency, and the flow rate of the heated air and steam can be improved, the air frying effect and the steam heating effect can be improved, and the uniformity is good.
[0043] Exemplarily, in an embodiment, the inside of the microwave steaming and baking integrated equipment is provided with a steam outlet and a hot air outlet. The steam outlet can be arranged upward and communicate with the lower cavity, and the steam can heat the food through the air hole 1a. Of course, the steam outlet can also be arranged at other places, such as the top or side of the cooking cavity, etc. The hot air outlet can be arranged forward, and the hot air can circulate through the air hole 1a to uniformly evaporate the moisture on the surface of the food, thereby improving the air frying effect.
[0044] In an embodiment, the hole diameter ratio of the air hole 1a is between 1 and 2.
[0045] Exemplarily, the arrangement mode of the plurality of air holes 1a is not limited, for example, it can be in the shape of a windmill or a spiral. The hole diameter ratio of the air hole 1a refers to the ratio of the hole diameter of one air hole 1a to the distance between the air hole 1a and the adjacent another air hole 1a. The hole diameter ratio can be 1, 1.2, 1.5, 1.8 or 2, etc.
[0046] Here, by setting a suitable hole diameter ratio, the microwave heating efficiency can be improved while ensuring the air frying heating effect.
[0047] In an embodiment, please refer to Figure 1 The metal disc 1 is formed with a cooking groove 12a, and the groove bottom surface of the cooking groove 12a is formed with the air hole 1a.
[0048] Exemplarily, the metal disc body 1 comprises an outer wrapping area 11 and a middle area 12, the outer wrapping area 11 is arranged outside the middle area 12, the middle area 12 is recessed in the thickness direction to form a cooking groove 12a, the groove bottom surface of the cooking groove 12a is formed with air holes 1a, and the two side surfaces of the outer wrapping area 11 in the first direction are connected with the silica gel wrapping members 2.
[0049] Here, by forming the cooking groove 12a, the groove wall of the cooking groove 12a can hold the food materials during cooking, reducing the situation that the food materials or additives fall from the metal disc body 1, and in combination with the air holes 1a on the groove bottom surface of the cooking groove 12a, the food materials can be heated conveniently, and the cooking effect is good and fast.
[0050] In an embodiment, please refer to Figure 1 , the groove bottom surface of the cooking groove 12a is formed with reinforcing ribs 12b.
[0051] Exemplarily, the groove bottom surface of the cooking groove 12a is formed with a ring of reinforcing ribs 12b. In this way, the overall rigidity of the metal disc body 1 can be improved, and the situation of deformation and damage during cooking can be reduced, and the working stability is good.
[0052] In an embodiment, the ratio between the sum of the areas of all air holes 1a and the area of the groove bottom surface of the cooking groove 12a is greater than 50%.
[0053] Exemplarily, the ratio between the sum of the areas of all air holes 1a and the area of the groove bottom surface of the cooking groove 12a can be 51%, 55%, 60%, 65%, 70%, 75% or 80% and the like.
[0054] Here, by means of the appropriate ratio, on the one hand, the circulation of the heated air can be improved to heat the food materials comprehensively and uniformly, and the air frying effect is improved; on the other hand, the steam blocking can be reduced to a certain extent, and the contact area between the food materials and the steam is increased, and the steam heating effect is good.
[0055] In an embodiment, the silica gel wrapping member 2 and the metal disc body 1 are connected by vulcanization process.
[0056] Here, the silica gel wrapping member 2 and the metal disc body 1 are connected by vulcanization process, on the one hand, the connection strength between the silica gel wrapping member 2 and the metal disc body 1 can be improved, so as to improve the durability of the entire disc assembly 100, and reduce the situation that the silica gel wrapping member 2 falls off or loosens when the micro-steam baking integrated equipment is placed and extracted; on the other hand, the transition between the silica gel wrapping member 2 and the metal disc body 1 after the vulcanization process connection is natural and smooth, which makes the appearance of the metal disc body 1 more beautiful and neat.
[0057] Exemplarily, in an embodiment, please refer to Figure 1The outer packaging area 11 is bent along one side of the second direction to form a handle 11a, and the user can place the disc body assembly 100 on the convex rib of the cooking cavity by holding the handle 11a or take the disc body assembly 100 out of the cooking cavity by holding the handle 11a, which is convenient to operate.
[0058] The above description is merely a preferred embodiment of the present application, but not for limiting the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A disc assembly applied to a micro-steaming and baking integrated device, characterized in that, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
2. The disc assembly of claim 1, wherein, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
3. The disc assembly of claim 1, wherein, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
4. The disc assembly of claim 3, wherein, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
5. The disc assembly of claim 1, wherein, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
6. The disc assembly of claim 1, wherein, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
7. The disc assembly of claim 1, wherein, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
8. The disc assembly of claim 7, wherein, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
9. The disc assembly of claim 7, wherein, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof.
10. A micro-combination steaming and roasting apparatus, characterized by, The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through the thickness direction thereof. The metal disc body is formed with a plurality of air holes penetrating through