Loading assembly and cooking utensil
By designing detachable food-carrying components and a staggered steam vent structure, the problems of food not being able to be placed directly in the steamer and steam condensation are solved, achieving a dry texture for the food and reducing the burden of cleaning.
Patent Information
- Application Number
- CN202423317925.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The steaming trays of existing steamers cannot be used to hold food directly, requiring additional containers. Furthermore, the direct action of steam on the food surface causes condensation, affecting the taste and increasing the cleaning burden.
Design a food carrier assembly including first and second food carriers that can be detachably connected. The steam holes are staggered, and steam circulates within the accommodating cavity to heat the food, avoiding direct contact between the steam and the bottom of the food. A combination structure of deep and shallow plates is used to meet the needs of different food ingredients.
It improves the cooking taste of ingredients, reduces the need to wash extra containers, and ensures that ingredients are dry and heated effectively.
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Figure CN223773560U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cooking utensil technology, and more specifically, to a food carrier assembly and a cooking utensil. Background Technology
[0002] In related technologies, steamers include a steaming tray, and the steam vents of the steaming tray are usually located at the bottom of the tray. Therefore, food cannot be placed directly on the steaming tray; an additional container is required to hold the food, which means that users need to clean the container separately when cleaning the steaming tray.
[0003] Meanwhile, when steaming buns, steamed bread, and other pastries that can be placed directly on a steaming tray, the steam acts directly on the food, easily causing condensation to form on the surface. This makes it impossible to ensure the food is dry and greatly reduces its taste. Utility Model Content
[0004] This application aims to address at least one of the technical problems existing in the prior art or related technologies.
[0005] Therefore, the first aspect of this application proposes a cargo carrier assembly.
[0006] The second aspect of this application proposes a cooking utensil.
[0007] In view of the above, a first aspect of this application provides a carrying assembly, comprising: a first carrying member, the first carrying member including a first bottom wall and a first side wall, the first side wall connecting to the outer edge of the first bottom wall, the first bottom wall and the first side wall enclosing a first receiving cavity; a second carrying member, detachably stacked on the first carrying member, the second carrying member including a second bottom wall and a second side wall, the second bottom wall enclosing a second receiving cavity, the second side wall extending from the outer edge of the second bottom wall toward the first carrying member and abutting against the first carrying member; the first side wall including a first flow wall having a first steam hole, the second side wall including a second flow wall having a second steam hole, the positional relationship between the centerline of the first steam hole and the centerline of the second steam hole including intersecting, parallel, or skew; wherein, the first receiving cavity connects the first steam hole and the second steam hole.
[0008] The present application provides a cargo-carrying assembly comprising a first cargo carrier and a second cargo carrier.
[0009] The second container can be detachably stacked on top of the first container, meaning that the first and second containers can be detachably connected. In other words, the choice can be made based on the ingredients to be cooked: whether to use the first container alone, the second container alone, or the first and second containers together.
[0010] Specifically, the first container includes a first bottom wall and a first side wall, with the outer edges of the first side wall and the first bottom wall connected. The first bottom wall and the first side wall enclose a first receiving cavity, where food can be placed. The first side wall includes a first flow wall with a first steam hole, meaning the first steam hole is located on the side of the first container. In this way, steam can flow into the first receiving cavity through the first steam hole, rising and circulating around the periphery of the first receiving cavity to heat the food inside. This ensures effective heating of the food while preventing direct contact between the steam and the bottom of the food, thus reducing condensation on the surface of the food during cooking, ensuring a dry texture, and significantly improving the cooking taste and results. Furthermore, this design eliminates the need for additional containers to hold the food, reducing the need for washing additional containers and minimizing container cleaning tasks.
[0011] Specifically, the second container includes a second bottom wall and a second side wall, with the second side wall connected to the second bottom wall. The second bottom wall encloses a second receiving cavity, where food can be placed. The second side wall extends from the outer edge of the second bottom wall toward the first container and abuts against it, supporting the second bottom wall. The second side wall includes a second flow wall with a second steam hole. Steam can flow through the steam hole to the food in the second receiving cavity. The steam can rise and circulate around the periphery of the second receiving cavity to heat the food. This ensures effective heating while preventing direct contact between the steam and the bottom of the food, thus reducing condensation on the surface of the food during cooking, ensuring a dry texture, and significantly improving the cooking taste and results. Furthermore, this design eliminates the need for additional containers, reducing the need for washing them and minimizing the workload of container cleaning.
[0012] The first flow wall serves as the mounting carrier for the first steam orifice, and the second flow wall serves as the mounting carrier for the second steam orifice. The positional relationship between the centerlines of the first and second steam orifices includes intersection, parallelism, or non-planarity. That is, the centerlines of the first and second steam orifices intersect, are parallel, or are non-planar straight lines. In other words, the first and second steam orifices are misaligned, rather than being directly opposite each other.
[0013] When the first and second containers are used together, they are assembled with the pot and lid of the cooking appliance. The first steam hole on the first flow wall and the second steam hole on the second flow wall are misaligned. Therefore, steam first flows into the first cavity through the first steam hole. After the first cavity is filled with steam, most of the steam flows through the second steam hole to the channel between the lid and the second flow wall, and then to the second cavity. This ensures that both the first and second cavities are filled with high-temperature steam, meeting the requirements for thoroughly cooking the food in both cavities. If the center lines of the first and second steam holes are collinear (i.e., they overlap), then there is no misalignment between the first and second steam holes. After steam flows into the first cavity through the first steam hole, most of the steam will flow directly to the second steam hole, resulting in insufficient steam in the first cavity. This would prevent the food in the first cavity from being thoroughly cooked, thus failing to meet the cooking requirements.
[0014] It is understandable that the positional relationship between the centerlines of the first steam orifice and the second steam orifice is that they are skew lines, meaning they are straight lines that are not on the same plane. Specifically, the centerlines of the first steam orifice and the second steam orifice are two straight lines that do not lie in the same plane. Skew lines are straight lines that neither intersect nor are parallel.
[0015] The cargo-carrying component described above according to this application may also have the following additional technical features:
[0016] In some embodiments, the first flow wall and the second flow wall are optionally arranged at intervals.
[0017] In this embodiment, the positional relationship between the first flow wall with the first steam hole and the second flow wall with the second steam hole is further defined, such that the first flow wall and the second flow wall are arranged at intervals, providing structural support to satisfy the misalignment of the positions of the first steam hole and the second steam hole.
[0018] In some embodiments, optionally, the first flow wall and the second flow wall are arranged opposite to each other; the first steam hole and the second steam hole are arranged at least partially offset; or when the positional relationship between the centerline of the first steam hole and the centerline of the second steam hole includes intersection or non-plane, the angle between the centerline of the first steam hole and the centerline of the second steam hole is an acute angle.
[0019] In this embodiment, the first flow wall and the second flow wall are arranged opposite to each other, specifically, the first flow wall and the second flow wall are arranged opposite to each other and spaced apart.
[0020] The first steam hole and the second steam hole are arranged at least partially offset, that is, the first steam hole and the second steam hole are partially offset, or the first steam hole and the second steam hole are completely offset. This arrangement can meet the usage requirements of the positional relationship between the center lines of the first steam hole and the center lines of the second steam hole, including intersecting, parallel, or non-planar relationships, and prevent the situation where steam flows directly to the second steam hole after entering the first receiving cavity through the first steam hole.
[0021] Alternatively, when the centerline of the first steam hole and the centerline of the second steam hole are intersecting or skewed, the angle between the centerlines of the first steam hole and the second steam hole is an acute angle, so as to meet the usage requirements where the positions of the first steam hole and the second steam hole are misaligned, and to prevent the situation where steam flows directly to the second steam hole after entering the first receiving cavity through the first steam hole.
[0022] In some embodiments, optionally, when the angle between the centerline of the first steam hole and the centerline of the second steam hole is an acute angle, the first flow wall is recessed or inclined toward the second load, and / or the second flow wall is recessed or inclined toward the first load.
[0023] In this embodiment, when the angle between the centerline of the first steam hole and the centerline of the second steam hole is an acute angle, the first flow wall is recessed toward the second object, or the first flow wall is inclined toward the second object.
[0024] Alternatively, when the angle between the centerline of the first steam hole and the centerline of the second steam hole is an acute angle, the second flow wall is recessed toward the first object, or the second flow wall is inclined toward the first object.
[0025] Alternatively, when the angle between the centerline of the first steam hole and the centerline of the second steam hole is an acute angle, the first flow wall is recessed or inclined toward the second load, and the second flow wall is recessed or inclined toward the first load.
[0026] In some embodiments, the first flow wall and the second flow wall are optionally arranged in a staggered manner.
[0027] In this embodiment, the positional relationship between the first flow wall with a first steam hole and the second flow wall with a second steam hole is further defined, such that the first flow wall and the second flow wall are spaced apart and staggered.
[0028] In some embodiments, optionally, the first flow wall and the second flow wall abut each other, and one of the first flow wall and the second flow wall is arranged at an angle relative to the other.
[0029] In this embodiment, the positional relationship between the first flow wall with a first steam hole and the second flow wall with a second steam hole is further defined.
[0030] Specifically, the first flow wall and the second flow wall abut each other, and one of the first flow wall and the second flow wall is arranged at an angle relative to the other. That is, the first flow wall is arranged at an angle relative to the second flow wall, or the second flow wall is arranged at an angle relative to the first flow wall.
[0031] For example, the first flow wall is perpendicular to the second flow wall.
[0032] For example, the angle between the first flow wall and the second flow wall is an acute angle.
[0033] For example, the angle between the first flow wall and the second flow wall is an obtuse angle.
[0034] In some embodiments, the first sidewall may optionally include a shielding wall connected between the first bottom wall and the first flow wall.
[0035] In this embodiment, the structure of the first carrier is further defined.
[0036] The first sidewall also includes a shielding wall, which is located between the first bottom wall and the first flow wall, extending along the bottom of the first receiving cavity to the opening end of the first receiving cavity, and is connected between the first bottom wall and the first flow wall. The shielding wall can shield the food.
[0037] The first flow wall is located above the shielding wall, that is, the first steam hole is located above the shielding wall. The shielding wall serves to separate the first bottom wall and the first steam hole. This prevents the steam flowing into the first receiving cavity through the first steam hole from directly contacting the bottom of the food, thereby reducing condensation on the surface of the food during cooking and greatly improving the taste and cooking effect.
[0038] In addition, the shielding wall is located between the first bottom wall and the first flow wall. The shielding wall can be used to shield food. Therefore, the first container can be used to hold liquid food, as well as steamed buns, dumplings and other pasta, which enriches the function of the first container and helps to improve the performance of the product.
[0039] In some embodiments, optionally, the depth of the first receiving cavity is greater than the depth of the second receiving cavity along the direction from the first carrier to the second carrier.
[0040] In this embodiment, the mating structure of the first carrier and the second carrier is further defined.
[0041] Along the direction from the first object carrier to the second object carrier, the depth of the first receiving cavity is greater than the depth of the second receiving cavity. That is, the first object carrier has a deep disk structure, and the second object carrier has a shallow disk structure.
[0042] For example, the first container can hold more food items, while the second container can hold fewer food items.
[0043] The first steam vent of the first container is located above the shielding wall, so the first container can also hold liquid food.
[0044] The first and second containers are a combination of deep and shallow dishes, which gives users more cooking options. That is, users can choose to use the first and / or second containers based on the type of ingredients being cooked, thus meeting diverse user needs.
[0045] In some embodiments, optionally, the cross-sectional area of the region enclosed by the first sidewall gradually increases along the direction from the first carrier to the second carrier.
[0046] In this embodiment, the structure of the first carrier is further defined such that the cross-sectional area of the region enclosed by the first sidewall gradually increases along the direction from the first carrier to the second carrier.
[0047] That is, the first sidewall of the first container extends obliquely along the bottom of the first receiving cavity to the opening end of the first receiving cavity, and the first receiving cavity has a flared structure. In other words, the distance between the first container and the inner surface of the pot of the cooking appliance gradually increases along the opening end of the first receiving cavity to the bottom of the first receiving cavity. This configuration provides space support for the effective flow of steam to the first steam hole, so that steam can effectively flow into the first receiving cavity through the first steam hole.
[0048] In addition, this structure facilitates the assembly of the first loading component with the pot body, allowing a portion of the first loading component to be quickly inserted into the pot body.
[0049] In some embodiments, the second flow wall is optionally closer to the second bottom wall than the side of the second side wall that is away from the second bottom wall.
[0050] In this embodiment, the structure of the second sidewall of the second carrier is further defined.
[0051] The second flow wall is closer to the second bottom wall than the side of the second side wall that is away from the second bottom wall. That is, the distance from the second flow wall to the side of the second side wall that is away from the second bottom wall is greater than the distance from the second flow wall to the second bottom wall.
[0052] This design shortens the distance between the second steam hole and the second accommodating cavity, which helps to reduce the path of steam flowing from the second steam hole to the second accommodating cavity, allowing the steam passing through the second steam hole to flow quickly to the second accommodating cavity, so as to effectively heat the food in the second accommodating cavity.
[0053] In some embodiments, optionally, both the first flow wall and the second flow wall are cylindrical walls; the number of first steam holes and the number of second steam holes are both multiple, with multiple first steam holes distributed around the periphery of the first accommodating cavity and multiple second steam holes distributed around the periphery of the second accommodating cavity.
[0054] In this embodiment, the number and arrangement of the first steam hole and the second steam hole are defined.
[0055] The first flow wall is a cylindrical wall, and the second flow wall is a cylindrical wall.
[0056] There are multiple first steam holes distributed around the perimeter of the first receiving cavity. This arrangement allows steam to flow simultaneously into the first receiving cavity from the first steam holes in various directions. The steam discharged through the multiple first steam holes flows towards the sides of the first receiving cavity. That is, the steam rises and circulates around the first receiving cavity, effectively heating the food inside. While ensuring the effectiveness and reliability of heating the food, it avoids direct contact between the steam and the bottom of the food, thereby reducing condensation on the surface of the food during cooking and greatly improving the taste and cooking effect.
[0057] There are multiple second steam holes distributed around the perimeter of the second receiving cavity. This arrangement allows steam to flow simultaneously into the second receiving cavity from various directions. The steam exiting through these holes flows towards the sides of the second receiving cavity and circulates within it, effectively heating the food inside. This ensures efficient and reliable heating while preventing direct contact between steam and the bottom of the food, thus reducing condensation on the food's surface during cooking and significantly improving the taste and overall cooking results.
[0058] In some embodiments, the loading assembly may optionally include: a enclosure, disposed on the side of the first sidewall away from the first receiving cavity, and the enclosure is arranged opposite to and spaced apart from the first flow wall, the enclosure being used for mounting and positioning the first loading component.
[0059] In this embodiment, the structure of the carrier component is further defined.
[0060] The loading assembly also includes a surrounding plate, which is located on the side of the first side wall opposite to the first receiving cavity. When the loading assembly is assembled with the pot body of the cooking appliance, the surrounding plate abuts against the open end of the pot body. The surrounding plate can support and fix the first loading component to ensure the assembly dimensions of the first loading component and the pot body.
[0061] It is understandable that the enclosure plate and the first flow wall are arranged opposite to each other and at intervals. That is, the enclosure plate and the first flow wall enclose the flow channel, the enclosure plate does not block the first flow wall, and further, the enclosure plate does not block the first steam hole. Steam will flow through the flow channel to the first steam hole, and then through the first steam hole to the first receiving cavity.
[0062] Because the enclosure plate abuts against the open end of the pot body, the first flow wall is located inside the pot body. The pot body will not block the first flow wall, allowing the steam inside the pot body to flow smoothly into the flow channel between the enclosure plate and the first flow wall.
[0063] It is understandable that when assembling the first loading component and the pot body, the first loading component rests against the open end of the pot body through the surrounding plate.
[0064] In some embodiments, the cargo-carrying assembly may optionally include a first handle located on the side of the enclosure away from the first sidewall.
[0065] In this embodiment, the structure of the carrier component is further defined.
[0066] The loading assembly also includes a first handle, which is connected to the enclosure. Specifically, the first handle is located on the side of the enclosure away from the first side wall. The first loading item can be picked up or put down using the first handle to avoid scalding the user.
[0067] Understandably, when assembling the first container and the pot body, the first container rests against the open end of the pot body via the surrounding plate. The first handle is located on the outside of the pot body; that is, the first handle protrudes from the outer peripheral wall of the pot body.
[0068] In some embodiments, the second sidewall may optionally include a fixed wall, the second flow wall being connected between the fixed wall and the second bottom wall, the fixed wall being used to abut against the enclosure.
[0069] In this embodiment, the structure of the second sidewall is further defined, and the second sidewall also includes a fixed wall, with the second flow wall connected between the fixed wall and the second bottom wall.
[0070] When assembling the first and second loads, the fixed wall abuts against the enclosure, allowing the second load to be stacked on top of the first load, thereby defining the mating structure of the first and second loads to ensure the volume of the first and second accommodating cavities.
[0071] In some embodiments, the loading assembly may optionally include a second handle disposed on the side of the fixed wall opposite to the second bottom wall.
[0072] In this embodiment, the structure of the carrier component is further defined.
[0073] The loading assembly also includes a second handle, which is connected to the fixed wall. Specifically, the second handle is located on the side of the fixed wall opposite to the second bottom wall. The second object can be placed or removed using the second handle to avoid scalding the user.
[0074] Understandably, when assembling the first and second load-bearing components, the second load-bearing component rests against the enclosure plate via a fixed wall. The second handle is located on the outside of the cover. That is, the second handle protrudes from the outer peripheral wall of the cover.
[0075] In some embodiments, the first handle and the second handle are optionally arranged opposite each other and spaced apart.
[0076] In this embodiment, the positional relationship between the first handle and the second handle is defined such that the first handle and the second handle are arranged opposite each other and spaced apart. That is, the first handle and the second handle are arranged opposite each other and separately, forming a groove-shaped structure, allowing the user's hand to reach into the gap between the first handle and the second handle, providing a gripping space for the user to pick up and put down the carrier component.
[0077] The second aspect of this application provides a cooking appliance, comprising: the carrying component of the first aspect.
[0078] The cooking appliance provided in this application includes the loading component as described in the first aspect, and therefore has all the beneficial effects of the aforementioned loading component, which will not be described in detail here.
[0079] In some embodiments, optionally, the cooking appliance further includes: a pot body, a portion of the first loading component located within the pot body, a surrounding plate of the loading component abutting against the open end of the pot body, a steam generator provided within the pot body, the steam generator communicating with a first steam hole; a lid, the open end of the lid abutting against the fixed wall of the second loading component, the inner surface of the lid and the second flow wall enclosing a channel, the second steam hole communicating with the first receiving cavity and the channel, and the channel communicating with the second receiving cavity.
[0080] In this embodiment, the structure of the cooking appliance is further defined.
[0081] Cooking utensils also include the pot body and the lid.
[0082] When assembling the loading assembly, the pot body, and the lid, a portion of the first loading component is located inside the pot body, and the surrounding plate of the loading assembly abuts against the open end of the pot body. The second loading component is stacked on top of the first loading component; specifically, its fixed wall abuts against the side of the surrounding plate opposite to the pot body. The lid is placed on the loading assembly; specifically, the open end of the lid abuts against the fixed wall of the second loading component.
[0083] In other words, the lid, pot body, surrounding plate, and fixed wall together form the outer surface of the cooking utensil. The second bottom wall of the first and second load-bearing components and the second flow-through wall of the second load-bearing component are located inside the outer surface of the cooking utensil to prevent steam leakage. This ensures the effectiveness and reliability of cooking the ingredients in the first and second cavities, and also guarantees the aesthetic appearance of the product.
[0084] Additional aspects and advantages of this application will become apparent in the following description or may be learned by practice of this application. Attached Figure Description
[0085] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0086] Figure 1 An exploded view of a portion of the structure of a carrier assembly according to an embodiment of this application is shown;
[0087] Figure 2 for Figure 1 A magnified view of part A of the cargo-carrying component shown;
[0088] Figure 3 for Figure 1 A magnified view of part B of the cargo-carrying component shown;
[0089] Figure 4 A schematic diagram of the structure of a carrier assembly according to an embodiment of this application is shown;
[0090] Figure 5 A schematic diagram of the structure of a first carrier according to an embodiment of this application is shown;
[0091] Figure 6 A schematic diagram of the structure of a second carrier according to an embodiment of this application is shown;
[0092] Figure 7 A partial structural schematic diagram of a cooking appliance according to an embodiment of this application is shown.
[0093] in, Figures 1 to 7 The correspondence between the reference numerals and component names in the attached drawings is as follows:
[0094] 10 Carrying assembly, 100 First carrying component, 110 First bottom wall, 120 First side wall, 122 First flow wall, 124 First steam hole, 126 Barrier wall, 130 First receiving cavity, 200 Second carrying component, 210 Second bottom wall, 220 Second side wall, 222 Second flow wall, 224 Second steam hole, 226 Fixed wall, 230 Second receiving cavity, 300 Enclosure, 400 First handle, 500 Second handle, 60 Cooking utensil, 600 Pot body, 610 Opening end of pot body, 700 Steam generator, 800 Lid, 810 Opening end of lid, 900 Channel. Detailed Implementation
[0095] To better understand the above-mentioned objectives, features, and advantages of this application, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0096] Many specific details are set forth in the following description in order to provide a full understanding of this application. However, this application may also be implemented in other ways different from those described herein. Therefore, the scope of protection of this application is not limited to the specific embodiments disclosed below.
[0097] The following reference Figures 1 to 7 The present application describes a carrier assembly 10 and a cooking appliance 60 according to some embodiments.
[0098] like Figure 1 , Figure 5 and Figure 6 As shown, a loading assembly 10 according to some embodiments of this application includes a first loading element 100 and a second loading element 200.
[0099] like Figure 1 , Figure 4 , Figure 5 and Figure 6 As shown, the first carrier 100 includes a first bottom wall 110 and a first side wall 120, and the second carrier 200 includes a second bottom wall 210 and a second side wall 220.
[0100] The first bottom wall 110 and the first side wall 120 enclose the first receiving cavity 130.
[0101] The second carrier 200 is detachably stacked on the first carrier 100.
[0102] The second bottom wall 210 encloses the second receiving cavity 230.
[0103] The second sidewall 220 extends from the outer edge of the second bottom wall 210 toward the first carrier 100 and abuts against the first carrier 100.
[0104] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, the first sidewall 120 includes a first flow wall 122, and the second sidewall 220 includes a second flow wall 222.
[0105] The first flow wall 122 is provided with a first steam hole 124, and the second flow wall 222 is provided with a second steam hole 224. The positional relationship between the center line of the first steam hole 124 and the center line of the second steam hole 224 includes intersecting, parallel or skew.
[0106] The first accommodating cavity 130 is connected to the first steam hole 124 and the second steam hole 224.
[0107] The present application provides a cargo-carrying assembly 10, which includes a first cargo carrier 100 and a second cargo carrier 200.
[0108] The second carrier 200 is detachably stacked on top of the first carrier 100, that is, the first carrier 100 and the second carrier 200 are detachably connected. In other words, the choice can be made based on the ingredients to be cooked: the first carrier 100 alone, the second carrier 200 alone, or the first carrier 100 and the second carrier 200 used together.
[0109] Specifically, the first container 100 includes a first bottom wall 110 and a first side wall 120. The outer edges of the first side wall 120 and the first bottom wall 110 are connected, and the first bottom wall 110 and the first side wall 120 enclose a first receiving cavity 130, in which food can be placed. The first side wall 120 includes a first flow wall 122, which is provided with a first steam hole 124, that is, the first steam hole 124 is located on the side of the first container 100. In this way, steam can flow to the first receiving cavity 130 through the first steam hole 124. The steam can rise around the periphery of the first receiving cavity 130 and circulate within the first receiving cavity 130 to heat the food inside the first receiving cavity 130. While ensuring the effectiveness of heating the food, it can avoid direct contact between the steam and the bottom of the food, thereby reducing the condensation formed on the surface of the food during cooking, ensuring the dry texture of the food, and greatly improving the cooking taste and effect. At the same time, this setup avoids the need for additional containers to hold food, thus eliminating the need to wash extra containers and reducing the workload of container cleaning.
[0110] Specifically, the second carrier 200 includes a second bottom wall 210 and a second side wall 220. The second side wall 220 is connected to the second bottom wall 210, and the second bottom wall 210 encloses a second receiving cavity 230, in which food can be placed. The second side wall 220 extends from the outer edge of the second bottom wall 210 toward the first carrier 100 and abuts against the first carrier 100. The second side wall 220 serves to support the second bottom wall 210. The second sidewall 220 includes a second flow-through wall 222, which has a second steam hole 224. Steam can flow through the second steam hole 224 to the food in the second receiving cavity 230. The steam can rise and circulate around the periphery of the second receiving cavity 230 to heat the food. While ensuring effective heating of the food, this design avoids direct contact between the steam and the bottom of the food, thereby reducing condensation on the surface of the food during cooking, ensuring a dry texture, and greatly improving the cooking taste and results. Furthermore, this design eliminates the need for additional containers to hold the food, reducing the need for washing additional containers and the associated workload.
[0111] The first flow wall 122 serves as the mounting carrier for the first steam hole 124, and the second flow wall 222 serves as the mounting carrier for the second steam hole 224. The positional relationship between the centerlines of the first steam hole 124 and the second steam hole 224 includes intersection, parallelism, or non-planarity. That is, the centerlines of the first steam hole 124 and the second steam hole 224 intersect, are parallel, or are non-planar straight lines. In other words, the positions of the first steam hole 124 and the second steam hole 224 are misaligned, rather than being directly opposite each other.
[0112] When the first container 100 and the second container 200 are used together, they are assembled with the pot body 600 and the lid 800 of the cooking appliance 60. The positions of the first steam hole 124 on the first flow wall 122 and the second steam hole 224 on the second flow wall 222 are misaligned. Therefore, steam first flows into the first receiving cavity 130 through the first steam hole 124. After the first receiving cavity 130 is filled with steam, most of the steam flows through the second steam hole 224 to the channel 900 between the lid 800 and the second flow wall 222, and then flows to the second receiving cavity 230. This ensures that both the first receiving cavity 130 and the second receiving cavity 230 are filled with high-temperature steam, meeting the requirements for thoroughly cooking the food in both cavities. If the center line of the first steam hole 124 and the center line of the second steam hole 224 are collinear (that is, the center lines of the first steam hole 124 and the second steam hole 224 overlap), then the positions of the first steam hole 124 and the second steam hole 224 are not misaligned. After the steam flows into the first accommodating cavity 130 through the first steam hole 124, most of the steam will flow directly to the second steam hole 224, resulting in insufficient steam in the first accommodating cavity 130. This will prevent the food in the first accommodating cavity 130 from being fully cooked and will not meet the cooking requirements of the food.
[0113] In addition, the second flow wall 222 is spaced apart from the second bottom wall 210 and the second flow wall 222 is recessed toward the first container 100. The second flow wall 222 can be spaced apart from the inner surface of the lid 800 of the cooking appliance 60 so that the inner surface of the lid 800 and the second flow wall 222 enclose a channel 900, providing structural support for steam to flow to the second accommodating cavity 230 through the second steam hole 224.
[0114] This embodiment provides a cargo-carrying assembly 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the first flow wall 122 and the second flow wall 222 are arranged at intervals.
[0115] In this embodiment, the positional relationship between the first flow wall 122 with the first steam hole 124 and the second flow wall 222 with the second steam hole 224 is further defined, such that the first flow wall 122 and the second flow wall 222 are arranged at intervals, providing structural support for the misalignment of the positions of the first steam hole 124 and the second steam hole 224.
[0116] This embodiment provides a carrying assembly 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the first flow wall 122 and the second flow wall 222 are arranged opposite to each other; the first steam hole 124 and the second steam hole 224 are at least partially staggered; or when the positional relationship between the center line of the first steam hole 124 and the center line of the second steam hole 224 includes intersection or non-plane, the angle between the center line of the first steam hole 124 and the center line of the second steam hole 224 is an acute angle.
[0117] In this embodiment, the first flow wall 122 and the second flow wall 222 are arranged opposite to each other. Specifically, the first flow wall 122 and the second flow wall 222 are arranged opposite to each other and spaced apart.
[0118] The first steam hole 124 and the second steam hole 224 are at least partially staggered, that is, the first steam hole 124 and the second steam hole 224 are partially staggered, or the first steam hole 124 and the second steam hole 224 are completely staggered. This arrangement can meet the usage requirements of the positional relationship between the center line of the first steam hole 124 and the center line of the second steam hole 224, including intersecting, parallel, or skewed, and avoid the situation where steam flows directly to the second steam hole 224 after entering the first receiving cavity 130 through the first steam hole 124.
[0119] Alternatively, when the centerline of the first steam hole 124 and the centerline of the second steam hole 224 are intersecting or skewed, the angle between the centerline of the first steam hole 124 and the centerline of the second steam hole 224 is an acute angle. This satisfies the requirement that the positions of the first steam hole 124 and the second steam hole 224 are misaligned, and prevents steam from flowing directly to the second steam hole 224 after entering the first receiving cavity 130 through the first steam hole 124.
[0120] This embodiment provides a carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: when the angle between the center line of the first steam hole 124 and the center line of the second steam hole 224 is an acute angle, the first flow wall 122 is recessed or inclined toward the second carrying component 200, and / or the second flow wall 222 is recessed or inclined toward the first carrying component 100.
[0121] In this embodiment, when the angle between the centerline of the first steam hole 124 and the centerline of the second steam hole 224 is an acute angle, the first flow wall 122 is recessed toward the second carrier 200, or the first flow wall 122 is inclined toward the second carrier 200.
[0122] Alternatively, when the angle between the centerline of the first steam hole 124 and the centerline of the second steam hole 224 is an acute angle, the second flow wall 222 is recessed toward the first carrier 100, or the second flow wall 222 is inclined toward the first carrier 100.
[0123] Alternatively, when the angle between the centerline of the first steam hole 124 and the centerline of the second steam hole 224 is an acute angle, the first flow wall 122 is recessed or inclined toward the second carrier 200, and the second flow wall 222 is recessed or inclined toward the first carrier 100.
[0124] This embodiment provides a cargo-carrying assembly 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the first flow wall 122 and the second flow wall 222 are arranged in a staggered manner.
[0125] In this embodiment, the positional relationship between the first flow wall 122 with the first steam hole 124 and the second flow wall 222 with the second steam hole 224 is further defined, such that the first flow wall 122 and the second flow wall 222 are spaced apart and staggered.
[0126] This embodiment provides a cargo-carrying assembly 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the first flow wall 122 and the second flow wall 222 abut against each other, and one of the first flow wall 122 and the second flow wall 222 is arranged at an angle relative to the other.
[0127] In this embodiment, the positional relationship between the first flow wall 122 with the first steam hole 124 and the second flow wall 222 with the second steam hole 224 is further defined.
[0128] Specifically, the first flow wall 122 and the second flow wall 222 abut against each other, and one of the first flow wall 122 and the second flow wall 222 is arranged at an angle relative to the other. That is, the first flow wall 122 is arranged at an angle relative to the second flow wall 222, or the second flow wall 222 is arranged at an angle relative to the first flow wall 122.
[0129] For example, the first flow wall 122 is perpendicular to the second flow wall 222.
[0130] For example, the angle between the first flow wall 122 and the second flow wall 222 is an acute angle.
[0131] For example, the included angle between the first flow wall 122 and the second flow wall 222 is an obtuse angle.
[0132] This embodiment provides a carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 , Figure 2 and Figure 5 As shown, the first sidewall 120 also includes a shielding wall 126.
[0133] The shielding wall 126 is connected between the first bottom wall 110 and the first flow wall 122.
[0134] In this embodiment, the structure of the first carrier 100 is further defined.
[0135] The first sidewall 120 also includes a shielding wall 126, which is located between the first bottom wall 110 and the first flow-through wall 122, extending along the bottom of the first receiving cavity 130 to the opening end of the first receiving cavity 130. The shielding wall 126 connects the first bottom wall 110 and the first flow-through wall 122. The shielding wall 126 can shield the food.
[0136] The first flow wall 122 is located above the shielding wall 126, that is, the first steam hole 124 is located above the shielding wall 126. The shielding wall 126 serves to separate the first bottom wall 110 and the first steam hole 124. This prevents the steam flowing into the first receiving cavity 130 through the first steam hole 124 from directly contacting the bottom of the food, thereby reducing condensation on the surface of the food during cooking and greatly improving the taste and cooking effect.
[0137] In addition, the shielding wall 126 is located between the first bottom wall 110 and the first flow wall 122. The shielding wall 126 can be used to shield food. Therefore, the first container 100 can be used to hold liquid food, or it can be used to hold steamed buns, dumplings and other pasta, enriching the functions of the first container 100 and improving the performance of the product.
[0138] This embodiment provides a carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 As shown, along the direction from the first carrier 100 to the second carrier 200, the depth of the first accommodating cavity 130 is greater than the depth of the second accommodating cavity 230.
[0139] In this embodiment, the mating structure of the first carrier 100 and the second carrier 200 is further defined.
[0140] Along the direction from the first carrier 100 to the second carrier 200, the depth of the first receiving cavity 130 is greater than the depth of the second receiving cavity 230. That is, the first carrier 100 has a deep plate structure, and the second carrier 200 has a shallow plate structure.
[0141] For example, the first container 100 can hold more food, while the second container 200 can hold less food.
[0142] The first steam hole 124 of the first container 100 is located above the shielding wall 126, so the first container 100 can also hold liquid food.
[0143] The first container 100 and the second container 200 are a combination of deep and shallow plates, which provides users with more cooking options. That is, users can choose to use the first container 100 and / or the second container 200 based on the type of ingredients to be cooked, thus meeting diverse user needs.
[0144] This embodiment provides a carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: along the direction from the first carrying component 100 to the second carrying component 200, the cross-sectional area of the flow passage of the region enclosed by the first sidewall 120 gradually increases.
[0145] In this embodiment, the structure of the first carrier 100 is further defined such that the cross-sectional area of the region enclosed by the first sidewall 120 gradually increases along the direction from the first carrier 100 to the second carrier 200.
[0146] That is, the first sidewall 120 of the first container 100 extends obliquely along the bottom of the first receiving cavity 130 to the opening end of the first receiving cavity 130, and the first receiving cavity 130 has a flared structure. In other words, the distance between the inner surfaces of the first container 100 and the pot body 600 of the cooking utensil 60 gradually increases along the opening end of the first receiving cavity 130 to the bottom of the first receiving cavity 130. This configuration provides space support for the effective flow of steam to the first steam hole 124, so that steam can effectively flow into the first receiving cavity 130 through the first steam hole 124.
[0147] In addition, this structure facilitates the assembly of the first loading component 100 with the pot body 600, allowing a portion of the first loading component 100 to be quickly inserted into the pot body 600.
[0148] It is understood that a cross-section is taken of the first sidewall 120 of the first container 100 along the line perpendicular to the bottom of the first accommodating cavity 130 to the opening end of the first accommodating cavity 130. In the cross-section, the area enclosed by the inner contour line of the first sidewall 120 is the flow cross-sectional area of the area enclosed by the first sidewall 120.
[0149] This embodiment provides a cargo-carrying assembly 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the second flow wall 222 is closer to the second bottom wall 210 than the side of the second side wall 220 that is away from the second bottom wall 210.
[0150] In this embodiment, the structure of the second sidewall 220 of the second carrier 200 is further defined.
[0151] The second flow wall 222 is closer to the second bottom wall 210 than the side of the second side wall 220 that is away from the second bottom wall 210. That is, the distance from the second flow wall 222 to the side of the second side wall 220 that is away from the second bottom wall 210 is greater than the distance from the second flow wall 222 to the second bottom wall 210.
[0152] This design shortens the distance between the second steam hole 224 and the second accommodating cavity 230, which helps to reduce the path of steam flowing from the second steam hole 224 to the second accommodating cavity 230, so that the steam passing through the second steam hole 224 can flow quickly to the second accommodating cavity 230 to effectively heat the food in the second accommodating cavity 230.
[0153] This embodiment provides a cargo-carrying assembly 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the first flow wall 122 and the second flow wall 222 are both cylindrical walls.
[0154] There are multiple first steam holes 124 and multiple second steam holes 224.
[0155] Multiple first steam holes 124 are distributed around the first accommodating cavity 130.
[0156] Multiple second steam holes 224 are distributed around the second accommodating cavity 230.
[0157] In this embodiment, the number and arrangement of the first steam hole 124 and the second steam hole 224 are defined.
[0158] The first flow wall 122 is a cylindrical wall, and the second flow wall 222 is a cylindrical wall.
[0159] There are multiple first steam holes 124, which are distributed around the periphery of the first receiving cavity 130. This arrangement allows steam to flow simultaneously into the first receiving cavity 130 from the first steam holes 124 in various directions. The steam discharged through the multiple first steam holes 124 flows towards the side of the first receiving cavity 130. That is, the steam rises around the first receiving cavity 130 and circulates within the first receiving cavity 130 to fully heat the food inside. While ensuring the effectiveness and reliability of heating the food, it avoids direct contact between the steam and the bottom of the food, thereby reducing condensation on the surface of the food during cooking and greatly improving the taste and cooking effect.
[0160] There are multiple second steam holes 224, which are distributed around the periphery of the second receiving cavity 230. This arrangement allows steam to flow simultaneously into the second receiving cavity 230 from the second steam holes 224 in various directions. The steam discharged through the multiple second steam holes 224 flows to the side of the second receiving cavity 230 and circulates within it, thus fully heating the food inside. While ensuring the effectiveness and reliability of heating the food, it avoids direct contact between the steam and the bottom of the food, thereby reducing condensation on the surface of the food during cooking and greatly improving the taste and cooking effect.
[0161] This embodiment provides a carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, the cargo assembly 10 also includes a enclosure 300.
[0162] The enclosure 300 is located on the side of the first side wall 120 away from the first accommodating cavity 130, and the enclosure 300 is opposite to and spaced apart from the first flow wall 122.
[0163] The enclosure 300 is used for the installation and positioning of the first load 100.
[0164] In this embodiment, the structure of the carrier assembly 10 is further defined.
[0165] The loading assembly 10 also includes a surrounding plate 300, which is disposed on the side of the first sidewall 120 opposite to the first receiving cavity 130. When the loading assembly 10 is assembled with the pot body 600 of the cooking appliance 60, the surrounding plate 300 abuts against the open end 610 of the pot body. The surrounding plate 300 can support and fix the first loading component 100 to ensure the assembly dimensions of the first loading component 100 and the pot body 600.
[0166] It is understood that the enclosure 300 and the first flow wall 122 are arranged opposite to each other and at intervals. That is, the enclosure 300 and the first flow wall 122 enclose the flow channel, and the enclosure 300 does not block the first flow wall 122. Furthermore, the enclosure 300 does not block the first steam hole 124. Steam will flow through the flow channel to the first steam hole 124 and then through the first steam hole 124 to the first receiving cavity 130.
[0167] Since the enclosure 300 abuts against the opening end 610 of the pot body, the first flow wall 122 is located inside the pot body 600. The pot body 600 will not block the first flow wall 122, so that the steam in the pot body 600 can flow smoothly into the flow channel between the enclosure 300 and the first flow wall 122.
[0168] It is understandable that when assembling the first loading component 100 and the pot body 600, the first loading component 100 rests against the opening end 610 of the pot body through the surrounding plate 300.
[0169] This embodiment provides a carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, the cargo assembly 10 also includes a first handle 400.
[0170] The first handle 400 is located on the side of the enclosure 300 away from the first side wall 120.
[0171] In this embodiment, the structure of the carrier assembly 10 is further defined.
[0172] The carrying assembly 10 also includes a first handle 400, which is connected to the enclosure 300. Specifically, the first handle 400 is located on the side of the enclosure 300 opposite to the first side wall 120. The first item 100 can be picked up or put down through the first handle 400 to avoid scalding the user.
[0173] Understandably, when assembling the first loading component 100 and the pot body 600, the first loading component 100 rests against the opening end 610 of the pot body via the surrounding plate 300. The first handle 400 is located on the outside of the pot body 600. That is, the first handle 400 protrudes from the outer peripheral wall of the pot body 600.
[0174] Optionally, the number of the top leader (400) is one.
[0175] Optionally, there may be multiple first handles 400, which are arranged at intervals along the circumference of the first load 100.
[0176] This embodiment provides a carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 , Figure 3 , Figure 4 and Figure 6 As shown, the second sidewall 220 also includes a fixed wall 226.
[0177] The second flow wall 222 is connected between the fixed wall 226 and the second bottom wall 210.
[0178] The fixed wall 226 is used to abut against the enclosure 300.
[0179] In this embodiment, the structure of the second sidewall 220 is further defined. The second sidewall 220 also includes a fixed wall 226, and the second flow wall 222 is connected between the fixed wall 226 and the second bottom wall 210.
[0180] When assembling the first carrier 100 and the second carrier 200, the fixed wall 226 abuts against the enclosure 300, so that the second carrier 200 can be stacked on the first carrier 100, thereby limiting the mating structure of the first carrier 100 and the second carrier 200 to ensure the volume of the first accommodating cavity 130 and the second accommodating cavity 230.
[0181] Optionally, when assembling the lid 800 of the cooking utensil 60, the open end 810 of the lid abuts against the fixed wall 226 of the second carrier 200.
[0182] This embodiment provides a carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 , Figure 3 , Figure 4 and Figure 6 As shown, the cargo assembly 10 also includes a second handle 500.
[0183] The second handle 500 is located on the side of the fixed wall 226 away from the second bottom wall 210.
[0184] In this embodiment, the structure of the carrier assembly 10 is further defined.
[0185] The loading assembly 10 also includes a second handle 500, which is connected to the fixed wall 226. Specifically, the second handle 500 is located on the side of the fixed wall 226 opposite to the second bottom wall 210. The second loading component 200 can be picked up or put down through the second handle 500 to avoid scalding the user.
[0186] Understandably, when assembling the first carrier 100 and the second carrier 200, the second carrier 200 rests against the enclosure 300 via the fixed wall 226. The second handle 500 is located on the outside of the cover 800. That is, the second handle 500 protrudes from the outer peripheral wall of the cover 800.
[0187] Optionally, the number of second-in-command 500 is one.
[0188] Optionally, there may be multiple second handles 500, which are arranged at circumferential intervals along the second bottom wall 210.
[0189] This embodiment provides a cargo-carrying component 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the first handle 400 and the second handle 500 are arranged opposite each other and at intervals.
[0190] In this embodiment, the positional relationship between the first handle 400 and the second handle 500 is defined such that the first handle 400 and the second handle 500 are arranged opposite each other and spaced apart. That is, the first handle 400 and the second handle 500 are arranged opposite each other and separately, and the first handle 400 and the second handle 500 form a groove-shaped structure, allowing the user's hand to reach into the gap between the first handle 400 and the second handle 500, providing a gripping space for the user to pick up and put down the carrier component.
[0191] A cooking appliance 60 according to some embodiments of this application includes: a loading component 10 of any of the above embodiments.
[0192] The cooking appliance 60 provided in this application includes the loading component 10 of any of the above embodiments, and therefore has all the beneficial effects of the loading component 10, which will not be described in detail here.
[0193] This embodiment provides a cooking utensil 60. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 7 As shown, the cooking utensil 60 also includes a pot body 600 and a lid body 800.
[0194] A portion of the first loading element 100 is located within the pot body 600.
[0195] The enclosure 300 of the loading assembly 10 abuts against the opening end 610 of the pot body.
[0196] A steam generator 700 is installed inside the pot body 600.
[0197] Steam generator 700 is connected to the first steam port 124.
[0198] The open end 810 of the cover abuts against the fixed wall 226 of the second carrier 200.
[0199] The inner surface of the cover 800 and the second flow wall 222 enclose the channel 900.
[0200] The second steam hole 224 connects the first accommodating cavity 130 and the channel 900, and the channel 900 connects the second accommodating cavity 230.
[0201] In this embodiment, the structure of the cooking utensil 60 is further defined.
[0202] The cooking utensil 60 also includes a pot body 600 and a lid body 800.
[0203] When assembling the loading assembly 10, the pot body 600, and the lid 800, a portion of the first loading component 100 is located inside the pot body 600, and the surrounding plate 300 of the loading assembly 10 abuts against the opening end 610 of the pot body. The second loading component 200 is stacked on top of the first loading component 100; specifically, the fixed wall 226 abuts against the side of the surrounding plate 300 opposite to the pot body 600. The lid 800 covers the loading assembly 10; specifically, the opening end 810 of the lid abuts against the fixed wall 226 of the second loading component 200.
[0204] In other words, the lid 800, pot body 600, surrounding plate 300, and fixed wall 226 enclose and form the outer surface of the cooking appliance 60. The second bottom wall 210 of the first container 100 and the second flow wall 222 of the second container 200 are located inside the outer surface of the cooking appliance 60, preventing steam leakage and ensuring the effectiveness and reliability of cooking the food in the first and second accommodating cavities 130 and 230, while also ensuring the aesthetic appearance of the product.
[0205] It is understandable that when food is steamed using only the first container 100, the enclosure 300 abuts against the opening end 610 of the pot body and the opening end 810 of the lid body.
[0206] It is understandable that when food is steamed using only the second container 200, the fixed wall 226 abuts against the opening end 610 of the pot body and the opening end 810 of the lid body.
[0207] This application places the first steam hole 124 on the periphery of the first container 100 and the second steam hole 224 on the periphery of the second bottom wall 210. This avoids the need for additional containers to hold the food and prevents steam from directly acting on the food, greatly reducing the generation of condensate.
[0208] Furthermore, based on the fact that the first sidewall 120 of the first container 100 is provided with a first steam hole 124 and the second sidewall 220 of the second container 200 is provided with a second steam hole 224, the lower steaming plate (i.e., the first container 100) is set as a deep plate that can accommodate liquid food, and the upper steaming plate (i.e., the second container 200) is set as a shallow plate. This combination of deep and shallow plates can give users more cooking options.
[0209] In this application, the first sidewall 120 includes a first flow wall 122, which is recessed towards the second load 200 and has a first steam hole 124. The second sidewall 220 includes a second flow wall 222, which is spaced apart from the second bottom wall 210 and recessed towards the first load 100. The second flow wall 222 also has a second steam hole 224. That is, the positions of the first steam hole 124 on the first flow wall 122 and the second steam hole 224 on the second flow wall 222 are angularly misaligned. When using the load assembly 10, steam preferentially fills the lower deep tray before reaching the upper shallow tray, thus filling the entire cooking space and preventing the lower deep tray from being filled with high-temperature steam.
[0210] The second object 200 is stacked on top of the first object 100, making it convenient for the user to take the first object 100 and the second object 200.
[0211] Meanwhile, the positional arrangement of the first steam hole 124 and the second steam hole 224 does not affect the individual use of the first carrier 100 and the second carrier 200.
[0212] This application arranges the first steam hole 124 around the first container 100 and the second steam hole 224 around the second container 200, with the first steam hole 124 of the first container 100 and the second steam hole 224 of the second container 200 being angularly offset. When the first container 100 and the second container 200 are used simultaneously, steam first enters the first container 100 through the first steam hole 124. After the first accommodating cavity 130 is filled with steam, steam then enters the second accommodating cavity 230 through the second steam hole 224, until the entire steaming space is filled with high-temperature steam, thus fully steaming the food in both layers.
[0213] In this application, the term "multiple" refers to two or more unless otherwise expressly defined. The terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0214] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. The above descriptions are merely preferred embodiments of this application and are not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A cargo-carrying assembly, characterized in that, The utility model relates to a kind of steam sterilization device, including: First carrier, the first carrier includes first bottom wall and first side wall, the first side wall connects the outer edge of the first bottom wall, the first bottom wall and the first side wall enclose first accommodating cavity; Second carrier, the second carrier is detachably stacked on the first carrier, the second carrier includes second bottom wall and second side wall, the second bottom wall encloses second accommodating cavity, the second side wall from the outer edge of the second bottom wall extends towards the first carrier and abuts against the first carrier; The first side wall includes first flow wall, the first flow wall is provided with first steam hole, the second side wall includes second flow wall, and the second flow wall is provided with second steam hole; The positional relationship between the center line of the first steam hole and the center line of the second steam hole includes intersection, parallel or different surface; Wherein, the first accommodating cavity is communicated with the first steam hole and the second steam hole.
2. The carrier assembly of claim 1, wherein, The first flow wall and the second flow wall are arranged at intervals.
3. The carrier assembly of claim 2, wherein, The first flow wall and the second flow wall are oppositely arranged. The first steam hole and the second steam hole are at least partially staggered arrangement;Or when the positional relationship between the center line of the first steam hole and the center line of the second steam hole includes intersection or different surface, the included angle between the center line of the first steam hole and the center line of the second steam hole is acute angle.
4. The carrier assembly of claim 3, wherein, When the included angle between the center line of the first steam hole and the center line of the second steam hole is acute angle, the first flow wall is recessed or inclined towards the second carrier, and / or the second flow wall is recessed or inclined towards the first carrier.
5. The article carrier assembly of claim 2, wherein, The first flow wall and the second flow wall are staggered arrangement.
6. The article of claim 1, wherein, The first flow wall and the second flow wall abut, and one of the first flow wall and the second flow wall is arranged inclinedly relative to the other.
7. The carrier assembly of any one of claims 1 to 6, wherein, The first side wall further includes a shielding wall connected between the first bottom wall and the first flow wall.
8. The carrier assembly of claim 7, wherein, In the direction from the first carrier to the second carrier, the depth of the first accommodating cavity is greater than the depth of the second accommodating cavity.
9. The article carrier assembly of claim 7, wherein, In the direction from the first carrier to the second carrier, the flow cross-sectional area of the area enclosed by the first side wall gradually increases.
10. The carrier assembly of any one of claims 1 to 5, wherein, The second flow wall is closer to the second bottom wall than the side of the second bottom wall away from the second bottom wall.
11. The carrier assembly of any one of claims 1 to 5, wherein, The first flow wall and the second flow wall are both cylindrical walls. The number of the first steam hole and the second steam hole is multiple, and multiple first steam holes are distributed along the circumference of the first accommodating cavity, and multiple second steam holes are distributed along the circumference of the second accommodating cavity.
12. The carrier assembly of any one of claims 1 to 5, wherein, Further including: The surrounding plate is arranged on the side of the first side wall away from the first accommodating cavity, and the surrounding plate is oppositely and spacedly arranged with the first flow wall, and the surrounding plate is used for mounting and positioning the first carrier.
13. The carrier assembly of claim 12, wherein, Further including: The first handle is arranged on the side of the surrounding plate away from the first side wall.
14. The carrier assembly of claim 13, wherein, The second side wall further includes a fixed wall, the second flow wall is connected between the fixed wall and the second bottom wall, and the fixed wall is used for abutting against the surrounding plate.
15. The article of claim 14, wherein, Further including: The second handle is arranged on the side of the fixed wall away from the second bottom wall.
16. The article of claim 15, wherein, The first handle and the second handle are arranged opposite and spaced.
17. A cooking appliance characterized by, Comprise: The carrier assembly according to any one of claims 1-16.
18. The cooking appliance of claim 17, wherein, Further comprise: A pot body, a part of the first carrier is located in the pot body, the surrounding plate of the carrier assembly abuts with the open end of the pot body, the pot body is provided with a steam generator, and the steam generator is communicated with the first steam hole; A cover body, the open end of the cover body abuts with the fixed wall of the second carrier, the inner surface of the cover body and the second flow wall enclose a channel, the second steam hole is communicated with the first accommodating cavity and the channel, and the channel is communicated with the second accommodating cavity.