Energy gathering assembly and cooking utensil
By designing the energy-concentrating structure of the energy-concentrating component and the connecting part of the cover plate, the steam flow path is optimized, solving the problem of slow steam generation in pancake cookers. This enables rapid steam generation and baking effect of the cooking utensils, improving the cooking efficiency and cooking effect of pancake cookers.
Patent Information
- Application Number
- CN202423319026.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The steam generators of existing cooking appliances have an unreasonable structure, resulting in long steam generation time and slow speed, which reduces the cooking speed and taste of the food.
Design an energy-concentrating component, including an energy-concentrating structure and a cover plate. The energy-concentrating structure has a first opening, a second opening, and a channel. The medium in the channel converges under the action of pressure difference, quickly generating high-temperature steam, which is then directed to a predetermined position on the cooking appliance to avoid direct contact between the steam and the bottom of the food. The steam flow path is optimized by utilizing the connecting part and the receiving groove structure of the cover plate.
It enables the rapid generation of high-temperature steam, shortens cooking time, improves the cooking efficiency and taste of ingredients, avoids energy loss, and keeps cooking utensils clean.
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Figure CN223682379U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cooking utensils, in particular to an energy-gathering assembly and a cooking utensil. BACKGROUND
[0002] In the related art, a cooking utensil has a steaming function, and food is cooked by using the steaming function. However, the steam generator structure of the cooking utensil is not reasonable, which results in a long steam generation time and a slow steam generation speed, greatly reducing the cooking speed and the cooking taste of food. CONTENT OF THE UTILITY MODEL
[0003] The present application aims to at least solve one of the technical problems existing in the prior art or the related art.
[0004] To this end, the first aspect of the present application provides an energy-gathering assembly.
[0005] The second aspect of the present application provides a cooking utensil.
[0006] Therefore, the first aspect of the present application provides an energy-gathering assembly, which comprises an energy-gathering structure and a cover plate.
[0007] The energy-gathering assembly provided by the present application comprises an energy-gathering structure and a cover plate.
[0008] The energy-gathering structure is provided with a first opening, a second opening and a channel, and the first opening and the second opening are both communicated with the channel.
[0009] After the energy gathering assembly is placed in the pot body of the cooking utensil, the energy gathering structure covers the medium, so that the medium is gathered in the channel. Since the space in the channel is fixed and the medium is affected by the pressure difference, the medium only fills part of the channel, so the amount of medium in the channel can be limited. The amount of medium to be heated is less affected by the amount and temperature of the medium outside the energy gathering structure. In this way, when the cooking utensil is working, most of the heat is absorbed by the medium in the channel of the energy gathering structure, and the medium outside the energy gathering structure can only absorb a small amount of heat due to the effect of the energy gathering structure. Therefore, by heating the medium in the channel, the time for the medium to reach boiling point from room temperature and generate relatively stable steam can be greatly shortened, and the temperature rise of the medium outside the energy gathering structure is very small. In this way, the purpose of quickly generating high-temperature steam can be achieved, and energy loss can be avoided. The high-temperature steam generated in the channel is discharged through the first communication part of the cover plate and is directed to flow to the predetermined position of the cooking utensil. The time for the cooking utensil to reach a saturated steam state can be shortened, and the efficiency of cooking food in the cooking utensil can be improved.
[0010] Further, the cover plate is provided with a first communication part, and the side of the cover plate away from the energy gathering structure is provided with a receiving groove, and the first communication part is located on the side of the receiving groove. The first communication part has the function of guiding the flow path of the steam, so that the steam discharged through the first communication part flows to the side of the cooking utensil. That is, the steam rises around the chamber of the cooking utensil and circulates in the chamber to fully heat the food in the chamber. While ensuring the effectiveness and reliability of heating food, the direct contact between steam and the bottom of food can be avoided, thereby reducing the condensate formed on the surface of food during cooking and greatly improving the cooking taste and effect of food.
[0011] Further, the cross-sectional area of the flow passage on the side of the flow guide section away from the cover plate is smaller than the cross-sectional area of the flow passage on the side of the flow guide section facing the second opening. The shape of the channel is further limited. The channel includes a flow guide section between the first opening and the second opening, and the flow guide section is connected to the second opening. That is, the flow guide section has an expanding structure, and the shape of the flow guide section defines the flow path of the steam, which has the functions of converging and guiding the steam, so that the steam can be directed and quickly guided to the first communication part on the side of the evaporation cover.
[0012] That is, the position of the first communication part and the shape of the channel are adapted to jointly guide the flow path of the steam, so that the steam flowing out of the first communication part flows to the side of the cooking utensil to meet the demand of surrounding steam, avoid the direct contact between the steam and the bottom of the food, thereby reducing the condensate formed on the surface of the food during cooking and greatly improving the cooking taste and effect of the food.
[0013] In addition, the side of the cover plate away from the energy concentrating structure is provided with a containing groove, and the first communication part is located at the circumferential side of the containing groove. That is, the positional relationship between the containing groove and the first communication part is limited. When the cooking utensil is in operation, the soup of the food material above the energy concentrating assembly can flow to the containing groove of the cover plate. That is, the containing groove has the function of containing soup, and the cover plate has the function of containing soup. In this way, the soup can be prevented from flowing back to the bottom of the cooking utensil, and the medium in the cooking utensil can be prevented from being polluted. Therefore, the cooking taste of the food material and the cleanness of the cooking are ensured.
[0014] According to the energy concentrating assembly provided in the present application, the following additional technical features can be further provided.
[0015] In some embodiments, optionally, the mouth wall of the second opening is arranged opposite to the groove side wall of the containing groove, or the mouth wall of the second opening is located outside the groove side wall of the containing groove.
[0016] In this embodiment, the second opening and the containing groove are matched.
[0017] The mouth wall of the second opening is arranged opposite to the groove side wall of the containing groove, or the mouth wall of the second opening is located outside the groove side wall of the containing groove. This arrangement increases the contact area between the second opening and the cover plate, so that the steam can uniformly act on each area of the bottom of the cover plate. The steam can heat the cover plate in a large area, increase the temperature of the first load of the cooking utensil above the energy concentrating assembly, ensure uniform heating of the food material on the first load, and shorten the time for heating the food material on the first load.
[0018] In some embodiments, optionally, the side of the cover plate away from the energy concentrating structure is provided with a first supporting rib, and the first supporting rib and the outer surface of the cover plate enclose the containing groove.
[0019] In this embodiment, the side of the cover plate away from the energy concentrating structure is provided with a first supporting rib, and the first load of the cooking utensil is arranged on the first supporting rib. The first supporting rib has the function of supporting the first load, so that the first load is arranged in a spaced manner with the plurality of first communication parts located at the circumferential side of the first supporting rib. The steam can rise around the first load, and the flow path of the steam can be ensured to avoid the situation of blocking the flow of the steam. That is, this arrangement can not only meet the use requirement of supporting the first load of the cover plate, but also meet the use requirement of the steam rising around the first load.
[0020] It can be understood that the first load has the function of bearing the food material to be cooked.
[0021] The first supporting rib and the outer surface of the cover plate enclose the containing groove. That is, the first supporting rib not only has the function of forming the groove side wall of the containing groove, but also has the function of supporting the first load. The function of the first supporting rib is enriched, and the function of the cover plate is enriched.
[0022] Exemplarily, the first support rib is a ring-shaped rib.
[0023] In some embodiments, optionally, the first communication part is in a plurality, and the plurality of first communication parts are arranged along the circumference of the first support rib.
[0024] In this embodiment, the number and arrangement position of the first communication part are further defined.
[0025] The number of the first communication part is a plurality, and the plurality of first communication parts are arranged along the circumferential side of the first load object. This arrangement allows steam to be supplied from multiple directions and multiple positions at the same time via the plurality of first communication parts, so that the steam rises around the first load object and circulates in the cavity of the cooking utensil, so as to sufficiently heat the food materials in the cavity, while ensuring the effectiveness and reliability of heating the food materials, the situation that the steam directly contacts the bottom of the food materials can be avoided, so as to reduce the condensate formed on the surface of the food materials during cooking, and greatly improve the cooking taste and cooking effect of the food materials.
[0026] In some embodiments, optionally, the flow guide section extends from the first opening to the second opening.
[0027] In this embodiment, the energy-gathering structure is further defined.
[0028] The energy-gathering structure is provided with a first opening and a second opening, the first opening is in communication with the channel, and the second opening is in communication with the channel. The first opening is arranged opposite to the inner bottom wall of the pot body, and the cover plate is arranged on the second opening.
[0029] The medium flows into the channel through the first opening, and the steam flows to the first communication part through the second opening.
[0030] In some embodiments, optionally, the flow guide section extends from the first opening to the second opening, that is, the positional relationship of the flow guide section, the first opening and the second opening is defined. A part of the flow guide section stores the medium, and another part of the flow guide section has the function of guiding the steam, so that the steam can flow to the first communication part in an orderly manner along the flow guide section of the flared type.
[0031] In some embodiments, optionally, the channel further comprises a connecting section, the connecting section is connected between the first opening and the flow guide section, and the flow cross-sectional area of the connecting section is smaller than the flow cross-sectional area of the flow guide section.
[0032] In this embodiment, the energy-gathering structure is further defined.
[0033] The energy-gathering structure is provided with a first opening and a second opening, the first opening is in communication with the channel, and the second opening is in communication with the channel. The first opening is arranged opposite to the inner bottom wall of the pot body, and the cover plate is arranged on the second opening.
[0034] The medium flows into the channel through the first opening, and the steam flows to the first communication portion through the second opening.
[0035] The channel further comprises a connecting section connected between the first opening and the flow guide section, and the flow guide section is connected to the second opening. The flow area of the connecting section is smaller than that of the flow guide section. The connecting section is in a cylindrical structure.
[0036] The connecting section is configured to store the medium, and the flow guide section is configured to guide the steam to the first communication portion.
[0037] The structure of the connecting section can limit the amount of medium to be heated, and can meet the requirement of fast steam output. If the flow area of the connecting section is larger than that of the flow guide section, the amount of medium to be heated in a unit time is large, which prolongs the steam output time and cannot meet the requirement of fast steam output.
[0038] In some embodiments, when the channel further comprises a connecting section, the connecting section and the flow guide section are smoothly connected.
[0039] In this embodiment, the structure of the channel is further limited, such that when the channel further comprises a connecting section, the connecting section and the flow guide section are smoothly connected. That is, the connecting section and the flow guide section are smoothly connected, which allows the gas flow to smoothly pass through the connecting section and the flow guide section.
[0040] The cover plate and the energy-concentrating structure are detachably connected, which facilitates the cleaning and maintenance of the energy-concentrating assembly.
[0041] In some embodiments, the energy-concentrating structure comprises a flow guide cylinder, one end of the flow guide cylinder enclosing the first opening; and a flow guide plate, the flow guide plate surrounding the other end of the flow guide cylinder, the outer edge of the flow guide plate enclosing the second opening, and the flow guide cylinder and the flow guide plate enclosing the channel.
[0042] In this embodiment, the energy-concentrating structure is limited.
[0043] The energy-concentrating structure comprises the flow guide cylinder and the flow guide plate.
[0044] One end of the flow guide cylinder is arranged opposite to the inner bottom wall of the pot body, and the flow guide plate extends from the other end of the flow guide cylinder to the opening end of the pot body, that is, the flow guide plate surrounds the other end of the flow guide cylinder.
[0045] The shapes of the flow guide cylinder and the flow guide plate are matched to enclose the channel, and meet the requirement that the flow area of the side of the flow guide section away from the cover plate is smaller than that of the side of the flow guide section facing the second opening.
[0046] It can be understood that the cover plate is arranged on the deflector, and the energy concentrating structure has the functions of supporting and fixing the cover plate. Meanwhile, the cover plate has the function of covering the deflector, so that the steam can only flow to the chamber through the first communication part to meet the use requirement of surrounding steam.
[0047] In some embodiments, optionally, the side of the deflector away from the cover plate is provided with a first surrounding edge, and the first surrounding edge is arranged in a spaced manner with the edge portion of the deflector.
[0048] In this embodiment, the side of the deflector away from the cover plate is provided with a first surrounding edge, and the first surrounding edge is arranged in a spaced manner with the edge portion of the deflector.
[0049] The pot body of the cooking utensil is provided with a mounting groove, and the mounting groove is communicated with the opening end of the pot body. The deflector is arranged on the opening end of the pot body.
[0050] Specifically, the part of the deflector between the first surrounding edge and the outer edge of the deflector is arranged on the opening end of the pot body, and the first surrounding edge extends into the mounting groove and abuts against the groove side wall of the mounting groove.
[0051] The first surrounding edge has the function of positioning the energy concentrating structure. That is, the first surrounding edge and the outer edge of the deflector cooperate to meet the use requirement that the deflector is arranged on the opening end of the pot body, and the first surrounding edge can also limit the cooperation size of the pot body and the energy concentrating structure, so that the energy concentrating structure is stably and reliably assembled on the pot body.
[0052] In some embodiments, optionally, the first surrounding edge surrounds the deflector.
[0053] In this embodiment, the cooperation structure of the first surrounding edge and the deflector is further limited.
[0054] The first surrounding edge surrounds the deflector. This arrangement increases the cooperation area and cooperation angle of the energy concentrating structure and the pot body, can position the energy concentrating structure from multiple directions and multiple angles, and this structure arrangement can also seal the liquid storage cavity of the cooking utensil, so that the liquid storage cavity and the channel can be effectively isolated, the medium in the liquid storage cavity is prevented from contacting the steam to cause heat loss of the steam, the generated high-temperature steam can directly reach the chamber, and thus the steam heat can be used with maximum efficiency.
[0055] In some embodiments, optionally, the edge portion of the cover plate has a second surrounding edge, the edge portion of the deflector has a third surrounding edge, and the second surrounding edge surrounds the outside of the third surrounding edge.
[0056] In this embodiment, the cooperation structure of the cover plate and the energy concentrating structure is further limited.
[0057] The edge portion of the cover plate has a second surrounding edge, and the edge portion of the flow guide plate has a third surrounding edge. The second surrounding edge is arranged outside the third surrounding edge. That is, the second surrounding edge of the cover plate is arranged around the third surrounding edge of the flow guide plate. That is, the cover plate is arranged around the flow guide plate. The second surrounding edge and the third surrounding edge are matched to limit each other from various directions and various angles, and the matching size of the cover plate and the energy focusing structure can be ensured.
[0058] In some embodiments, optionally, the first surrounding edge, the third surrounding edge, and the portion of the flow guide plate between the first surrounding edge and the third surrounding edge are configured as a stepped structure, and the portion of the flow guide plate between the first surrounding edge and the third surrounding edge is arranged opposite to the first communication portion.
[0059] In this embodiment, the matching structure of the flow guide plate, the second surrounding edge, and the first supporting rib is further limited.
[0060] The first surrounding edge, the third surrounding edge, and the portion of the flow guide plate between the first surrounding edge and the third surrounding edge are configured as a stepped structure. The stepped structure can increase the matching gap between the flow guide plate and the first object, and provide structural support for the steam flow.
[0061] In addition, the portion of the flow guide plate between the first surrounding edge and the third surrounding edge is arranged opposite to the first communication portion, which provides structural support for the smooth and effective flow of steam to the first communication portion through the channel.
[0062] The second aspect of the present application provides a cooking appliance, which comprises the energy focusing assembly as in the first aspect.
[0063] The cooking appliance provided by the present application comprises the energy focusing assembly as in the first aspect, and therefore has all the beneficial effects of the energy focusing assembly, which are not described one by one here.
[0064] In some embodiments, optionally, the cooking appliance further comprises a pot body provided with a heating member; the energy focusing assembly is detachably arranged in the pot body, the outer surface of the energy focusing structure and the inner surface of the pot body form a liquid storage cavity, the first opening is located between the inner bottom wall of the pot body and the second opening, the liquid storage cavity is communicated with the first opening, and the heating member is used at least for supplying heat to the channel; the first object is detachably arranged on the first supporting rib of the cover plate, and at least a portion of the first communication portion is located on the circumferential side of the first object; and the pot cover is detachably arranged on the pot body, and the first communication portion is communicated with the region between the pot cover and the first object.
[0065] The cooking appliance provided by the present application comprises a pot body, an energy focusing assembly, a first object, and a pot cover.
[0066] The energy-gathering structure is provided with a first opening, a second opening and a channel, the first opening and the second opening are both communicated with the channel, and the first opening is located between the inner bottom wall of the pot body and the second opening. The energy-gathering structure is detachably arranged in the pot body, the first opening of the energy-gathering structure is arranged opposite to the inner bottom wall of the pot body, the cover plate is detachably arranged on the second opening, the first material-carrying object is detachably arranged on the side of the cover plate away from the energy-gathering structure, and the pot cover is detachably arranged on the pot body. That is, the pot body and the pot cover enclose the appearance surface of the cooking appliance. The energy-gathering structure, the cover plate and the first material-carrying object are all located in the space enclosed by the pot body and the pot cover.
[0067] After the energy-gathering structure is arranged in the pot body, the energy-gathering structure covers the medium, so that the medium is gathered in the channel. Since the space in the channel is fixed and the medium is affected by the pressure difference, the medium only fills part of the channel, so the amount of medium in the channel can be limited. The amount of medium outside the energy-gathering structure is less affected by the amount and temperature of the medium. In this way, when the cooking appliance is working, most of the heat is absorbed by the medium in the channel of the energy-gathering structure, and the medium outside the energy-gathering structure can only absorb a small amount of heat due to the effect of the energy-gathering structure. Therefore, by heating the medium in the channel, the time for the medium to reach boiling point from room temperature and generate relatively stable steam can be greatly shortened, and the temperature rise of the medium outside the energy-gathering structure is very small. In this way, the purpose of quickly generating high-temperature steam can be achieved, and energy loss can be avoided.
[0068] Further, the food material is arranged on the first material-carrying object, and then the pot cover is arranged on the pot body to enclose the food material in the cavity enclosed by the pot cover and the first material-carrying object. The channel communicates with the cavity through the first communication part, that is, the high-temperature steam generated in the channel is discharged through the first communication part and is directed to flow to the predetermined position of the cooking appliance, which can shorten the time for the cooking appliance to reach the saturated steam state and improve the efficiency of cooking the food material.
[0069] Further, the cover plate is provided with a first communication part, the first communication part communicates with the channel, and at least a part of the first communication part is located on the side of the first material-carrying object. The first communication part has the function of guiding the flow path of the steam, so that the steam discharged through the first communication part flows to the side of the cavity, that is, the steam rises around the first material-carrying object and circulates in the cavity to heat the food material in the cavity. While ensuring the effectiveness and reliability of heating the food material, the direct contact between the steam and the bottom of the food material can be avoided, thereby reducing the condensate formed on the surface of the food material during cooking and greatly improving the cooking taste and effect of the food material.
[0070] Further, the energy-gathering structure is provided with a channel, and the outer surface of the energy-gathering structure and the inner surface of the pot body enclose a liquid storage cavity, and the channel and the liquid storage cavity are communicated. That is, the inner surface of the energy-gathering structure encloses the channel, and the outer surface of the energy-gathering structure and the inner surface of the pot body enclose the liquid storage cavity. In another aspect, the energy-gathering structure divides the internal space of the pot body into the channel and the liquid storage cavity. The channel and the liquid storage cavity are separated, so as to avoid the medium in the liquid storage cavity from contacting the steam to cause the heat loss of the steam, and the generated high-temperature steam can directly reach the cavity, so that the heat of the steam is used with the maximum efficiency.
[0071] It can be understood that the liquid storage cavity and the channel are communicated, so that when the amount of medium in the channel decreases, the medium in the liquid storage cavity can be supplemented into the channel, and structural support is provided for ensuring the amount of medium in the channel and for meeting the continuous steam output.
[0072] In some embodiments, optionally, the cooking utensil further comprises: a steamer, the steamer being a cylindrical structure, the steamer being detachably connected between the pot body and the pot cover, the steamer surrounding the first carrier, the inner peripheral wall of the steamer and the cover plate enclosing a cylindrical gap, the steamer being provided with a second communication part; a second carrier, the second carrier being detachably arranged on the side of the steamer away from the pot body, the second communication part being located on the peripheral side of the second carrier, the second carrier, the steamer and the first carrier enclosing a first sub-cavity, the second carrier and the pot cover enclosing a second sub-cavity, the cylindrical gap communicating the first communication part and the first sub-cavity, and the second communication part communicating the first sub-cavity and the second sub-cavity.
[0073] In this embodiment, the structure of the cooking utensil is further limited.
[0074] The cooking utensil further comprises a steamer and a second carrier.
[0075] The steamer is a cylindrical structure, the steamer being detachably arranged on the pot body, and the pot cover being detachably arranged on the side of the steamer away from the pot body. The pot body, the steamer and the pot cover enclose the appearance surface of the cooking utensil.
[0076] Among them, the first carrier is detachably arranged on the cover plate, and the second carrier is detachably arranged on the side of the steamer away from the pot body. The second carrier, the steamer and the first carrier enclose a first sub-cavity, and the second carrier and the pot cover enclose a second sub-cavity.
[0077] Specifically, the food material can be placed in the first sub-cavity, and specifically, the food material is placed on the first carrier, and then the second carrier is arranged on the steamer to enclose the food material in the first sub-cavity.
[0078] Specifically, the food material can be placed in the second sub-cavity, and specifically, the food material is placed on the second carrier, and then the pot cover is arranged on the steamer to enclose the food material in the second sub-cavity.
[0079] The steamer surrounds the first object, and the inner circumferential wall and the cover plate of the steamer enclose a cylindrical gap. The steamer is provided with a second communication part located at the circumferential side of the second object.
[0080] When the cooking appliance is in operation, steam flows to the cylindrical gap through the first communication part of the cover plate, so that the steam rises around the first object and circulates in the first sub-cavity to sufficiently heat the food in the first sub-cavity. In this way, the effectiveness and reliability of heating the food are ensured, and the direct contact between the steam and the bottom of the food is avoided, so that the condensate formed on the surface of the food during cooking is reduced, and the cooking taste and effect of the food are greatly improved.
[0081] At the same time, the steam flows to the second sub-cavity through the second communication part, so that the steam rises around the second object and circulates in the second sub-cavity to sufficiently heat the food in the second sub-cavity. In this way, the effectiveness and reliability of heating the food are ensured, and the direct contact between the steam and the bottom of the food is avoided, so that the condensate formed on the surface of the food during cooking is reduced, and the cooking taste and effect of the food are greatly improved.
[0082] It can be understood that the steamer can be disassembled and assembled according to actual conditions. For example, when only the chamber is needed to cook food, only the pot body, the energy concentrating structure, the cover plate, the first object and the pot cover can be assembled, that is, the cover plate is covered on the energy concentrating structure, the first object is covered on the cover plate, and the pot cover is directly covered on the pot body. For example, when the food to be cooked is more or the types of food to be cooked are different, the steamer, the first object, the cover plate, the second object, the energy concentrating structure, the pot cover and the pot body can be assembled together to meet the use requirement of cooking food in the first sub-cavity and the second sub-cavity at the same time.
[0083] In some embodiments, optionally, the first object is provided with a first overflow port opposite to the receiving groove of the cover plate; and the second object is provided with a second overflow port opposite to the receiving groove of the cover plate.
[0084] In this embodiment, the structure of the first object is further limited.
[0085] The first object is provided with a first overflow port, and when the cooking appliance is in operation, the soup in the first object can flow to the receiving groove of the cover plate through the first overflow port, that is, the cover plate has the function of receiving soup, so that the soup is prevented from flowing back to the liquid storage cavity and polluting the medium in the liquid storage cavity, thereby providing structural support for ensuring the cooking taste of the food and the cleanliness of cooking.
[0086] The structure of the second object is further limited.
[0087] The first carrier object is provided with a first overflow port, and the second carrier object is provided with a second overflow port. When the cooking utensil is in operation, the soup of the food material on the second carrier object can flow to the receiving groove of the cover plate through the first overflow port and the second overflow port. That is, the cover plate has the function of receiving the soup, thereby avoiding the situation that the soup flows back to the liquid storage cavity and pollutes the medium in the liquid storage cavity. The structural support is provided to ensure the cooking taste of the food material and the cleanliness of the cooking.
[0088] In some embodiments, optionally, at least one of the first carrier object and the second carrier object comprises: a partition plate; a side plate connected to an outer edge of the partition plate, the partition plate and the side plate enclosing a carrier groove; and a flange connected to an end of the side plate, the flange of the first carrier object abutting against the cover plate, and / or the flange of the second carrier object abutting against the steamer.
[0089] In this embodiment, the structure of the first carrier object and the second carrier object is further limited.
[0090] The first carrier object comprises a partition plate, a side plate, and a flange. The side plate is connected to an outer edge of the partition plate, and the partition plate and the side plate enclose a carrier groove. That is, the partition plate and the side plate form a concave structure, and at least a part of the food material can be placed in the carrier groove.
[0091] Optionally, the side plate of the first carrier object is arranged opposite to a plurality of first support ribs of the cover plate, and the plurality of first support ribs and the side plate cooperate to limit the displacement of the first carrier object relative to the cover plate. The cooperation size of the first carrier object and the cover plate can be ensured, the use requirement that the first carrier object is covered on the cover plate is met, the flow path of the steam is not hindered, and the steam can flow around the first carrier object.
[0092] The flange is connected to an end of the side plate and is arranged on the cover plate to meet the use requirement that the first carrier object is covered on the cover plate.
[0093] Optionally, the side plate of the second carrier object is arranged opposite to a plurality of second support ribs of the steamer, and the plurality of second support ribs and the side plate cooperate to limit the displacement of the second carrier object relative to the steamer. The cooperation size of the second carrier object and the steamer can be ensured, the use requirement that the second carrier object is arranged on the side of the steamer away from the pot body is met, the flow path of the steam is not hindered, and the steam can flow around the second carrier object.
[0094] Optionally, the side plate of the second carrier object is arranged opposite to a plurality of second support ribs of the steamer, and the plurality of second support ribs and the side plate cooperate to limit the displacement of the second carrier object relative to the steamer. The cooperation size of the second carrier object and the steamer can be ensured, the use requirement that the second carrier object is arranged on the side of the steamer away from the pot body is met, the flow path of the steam is not hindered, and the steam can flow around the second carrier object.
[0095] In some embodiments, optionally, a plurality of support protrusions are arranged on a side of the partition plate facing the pot cover, and the plurality of support protrusions are arranged along the diagonal direction of the partition plate.
[0096] In this embodiment, the structure of the partition plate is further defined.
[0097] The partition plate is provided with a plurality of support protrusions. Specifically, the side of the partition plate facing the pot cover is provided with a plurality of support protrusions. In this way, when the food materials are stacked into the material loading groove, the support protrusions can be used to form flow channels between the food materials and the inner wall of the material loading groove, thereby facilitating the enhancement of the contact between the food materials and the steam, making the food materials evenly heated from top to bottom, and thereby improving the cooking taste of the food materials.
[0098] Optionally, the plurality of support protrusions include first support protrusions and second support protrusions, the first support protrusions are strip-shaped protrusions, and the second support protrusions are provided with at least one discontinuity.
[0099] The structure of the plurality of support protrusions is further defined.
[0100] The plurality of support protrusions are arranged along the diagonal direction of the partition plate. The plurality of support protrusions include first support protrusions and second support protrusions, the first support protrusions are strip-shaped protrusions, and the second support protrusions are provided with at least one discontinuity. It can be understood that the discontinuity is a flow channel, and the steam can flow at the discontinuity.
[0101] The flow resistance of the steam at the edge of the partition plate is smaller, and the flow resistance of the steam at the central position of the partition plate is larger. Therefore, most of the steam will flow to the edge of the partition plate, causing the food materials at the central position of the partition plate to be insufficiently heated, and the food materials at the edge of the partition plate to be severely heated, which is prone to the problem that the food materials at the central region of the partition plate are not steamed.
[0102] The structure of the plurality of support protrusions is reasonably arranged, the flow resistance of the steam at the edge of the partition plate is increased, the steam can flow along the gap between adjacent two support protrusions, which is conducive to the uniform distribution of the steam in the material loading groove, thereby making the food materials at each position in the material loading groove evenly heated, and being conducive to improving the cooking effect of the food materials.
[0103] In some embodiments, the steamer is provided with a fourth surrounding edge and a plurality of second support ribs. The fourth surrounding edge is connected to the inner circumferential wall of the steamer and is located on the side of the steamer away from the pot. Along the circumference of the steamer, the plurality of second support ribs are arranged on the side of the fourth surrounding edge away from the pot. The second material loading member is supported on the plurality of second support ribs, and the pot cover is arranged around the plurality of second support ribs. The fourth surrounding edge is provided with a plurality of through holes. Any two adjacent second support ribs and the fourth surrounding edge enclose a second communication part. The second communication part communicates the first sub-cavity and the second sub-cavity through at least one through hole.
[0104] In this embodiment, the structure of the steamer is further defined.
[0105] The steamer basket is provided with a fourth surrounding edge and a plurality of second supporting ribs. The fourth surrounding edge is connected to the inner circumferential wall of the steamer basket and is located on the side of the steamer basket away from the pot body. The plurality of second supporting ribs are connected to the same side of the fourth surrounding edge, specifically, the plurality of second supporting ribs are connected to the side of the fourth surrounding edge away from the pot body, and the plurality of second supporting ribs are arranged along the circumference of the steamer basket.
[0106] Any two adjacent second supporting ribs and the fourth surrounding edge enclose a second communication part. The fourth surrounding edge is provided with a plurality of through holes, and the second communication part communicates the first sub-cavity and the second sub-cavity through at least one through hole. That is, the number of second communication parts is a plurality, and each second communication part cooperates with at least one through hole.
[0107] The steam in the first sub-cavity flows to the plurality of second communication parts through the plurality of through holes, and flows to the second sub-cavity through the plurality of second communication parts, so that the steam can rise around the second load object.
[0108] In addition, the pot cover is arranged around the plurality of second supporting ribs, that is, the inner circumferential wall of the pot cover is located on the outer side of the plurality of second supporting ribs, and the pot cover wraps the plurality of second supporting ribs on the inner side thereof.
[0109] Optionally, the end of the pot cover is inserted between the inner circumferential wall of the steamer basket and the plurality of second supporting ribs.
[0110] In some embodiments, the steamer basket is further provided with a plurality of blocking ribs, one blocking rib is arranged on the side of each second supporting rib away from the pot body, and the blocking rib is arranged opposite to the outer edge of the second load object.
[0111] In this embodiment, the structure of the steamer basket is further limited.
[0112] The steamer basket is further provided with a plurality of blocking ribs, one blocking rib cooperates with each second supporting rib, specifically, one blocking rib is arranged on the side of each second supporting rib away from the pot body.
[0113] The blocking rib is arranged opposite to the outer edge of the second load object, and the blocking rib has the function of limiting the second load object, which can limit the cooperation structure of the second load object and the steamer basket, and avoid the displacement of the second load object.
[0114] At the same time, since the blocking rib is arranged on the side of the second supporting rib away from the pot body, and the blocking rib is arranged opposite to the outer edge of the second load object. In this way, the positional relationship between the second load object and the through hole can be ensured, and the second load object will not block the through hole, which provides structural support for ensuring the effective flow of steam in the second sub-cavity.
[0115] In some embodiments, the number of the steamer basket and the second load object is a plurality, one second load object cooperates with one steamer basket, and a plurality of steamer baskets are sequentially and detachably connected in the direction from the pot body to the pot cover.
[0116] In this embodiment, the number of the steamer and the second carrier is further defined, and the matching structure is further defined.
[0117] The number of the steamer and the second carrier is further defined, and the matching structure is further defined.
[0118] The setting makes it possible to form multiple chambers, which can meet the use demand of cooking a large amount of food or cooking multiple foods.
[0119] In some embodiments, the pot body is provided with a mounting groove, which is communicated with the opening end of the pot body; the stepped structure of the energy gathering assembly is arranged on the opening end of the pot body, and the first surrounding edge of the energy gathering assembly extends into the mounting groove and abuts against the groove side wall of the mounting groove.
[0120] In this embodiment, the matching structure of the pot body and the energy gathering structure is further defined.
[0121] The pot body is provided with a mounting groove, which is communicated with the opening end of the pot body, and the flow guide plate abuts against the opening end of the pot body.
[0122] Specifically, the side of the flow guide plate away from the pot cover is provided with a first surrounding edge, which is arranged in a spaced manner with the outer edge of the flow guide plate, the part of the flow guide plate between the first surrounding edge and the outer edge of the flow guide plate is arranged on the opening end of the pot body, and the first surrounding edge extends into the mounting groove and abuts against the groove side wall of the mounting groove.
[0123] The first surrounding edge has the function of positioning the energy gathering structure. That is, the first surrounding edge and the outer edge of the flow guide plate match each other, which can meet the use demand of the flow guide plate abutting against the opening end of the pot body, and the first surrounding edge can also play the role of limiting the matching size of the pot body and the energy gathering structure, so that the energy gathering structure is stably and reliably assembled to the pot body.
[0124] In some embodiments, the inner bottom wall of the pot body is provided with a cylindrical groove, the flow guide cylinder of the energy gathering assembly is inserted into the cylindrical groove, and the storage cavity and the channel are communicated through the cylindrical groove.
[0125] In this embodiment, the matching structure of the pot body and the flow guide cylinder is further defined.
[0126] The inner bottom wall of the pot body is provided with a cylindrical groove, the flow guide cylinder is inserted into the cylindrical groove, and the flow guide cylinder and the outer surface of the flow guide plate and the inner surface of the pot body enclose the storage cavity.
[0127] The storage cavity and the channel are communicated through the cylindrical groove, and the medium in the storage cavity can flow to the channel of the energy gathering structure through the cylindrical groove, so as to ensure the amount of the medium in the channel, which can meet the use demand of continuously discharging steam.
[0128] Therefore, the cylindrical groove not only has the function of limiting the flow guide cylinder, but also has the function of connecting the liquid storage cavity and the channel.
[0129] It can be understood that the heating member works to heat the channel, providing structural support for steam output.
[0130] Additional aspects and advantages of the present application will become apparent from the following description, or will be learned by practice of the application. BRIEF DESCRIPTION OF DRAWINGS
[0131] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood by considering the following detailed description, including the accompanying drawings, in which:
[0132] Figure 1 A first partial structure schematic diagram of a cooking utensil of a first embodiment of the present application is shown;
[0133] Figure 2 For Figure 1 A local enlarged view of A of the cooking utensil shown;
[0134] Figure 3 For Figure 1 A local enlarged view of B of the cooking utensil shown;
[0135] Figure 4 A second partial structure schematic diagram of the cooking utensil of the first embodiment of the present application is shown;
[0136] Figure 5 For Figure 4 A local enlarged view of C of the cooking utensil shown;
[0137] Figure 6 For Figure 4 A local enlarged view of D of the cooking utensil shown;
[0138] Figure 7 An exploded view of the cooking utensil of the first embodiment of the present application is shown;
[0139] Figure 8 For Figure 7 A local enlarged view of E of the cooking utensil shown;
[0140] Figure 9 For Figure 7 A local enlarged view of F of the cooking utensil shown;
[0141] Figure 10 A partial structure schematic diagram of a cooking utensil of a second embodiment of the present application is shown;
[0142] Figure 11 A structure schematic diagram of a focusing assembly of one embodiment of the present application is shown;
[0143] Figure 12 A partial structural schematic diagram of the energy focusing assembly of one embodiment of the present application is shown;
[0144] Figure 13 An exploded view of the energy focusing assembly of one embodiment of the present application is shown;
[0145] Figure 14 An exploded view of the cooking utensil of the third embodiment of the present application is shown.
[0146] wherein, Figures 1 to 14 The correspondence between the reference signs and the component names in the drawings is as follows:
[0147] 10 cooking utensil, 100 pot body, 110 heating element, 120 open end of the pot body, 130 mounting groove, 140 cylindrical groove, 200 energy focusing structure, 210 first opening, 220 second opening, 230 passage, 232 flow guide section, 234 connecting section, 240 flow guide cylinder, 250 flow guide plate, 252 first enclosing edge, 254 step structure, 256 third enclosing edge, 300 liquid storage cavity, 400 cover plate, 410 first communication part, 420 first support rib, 430 second enclosing edge, 440 receiving groove, 442 groove side wall of the receiving groove, 500 first carrier, 510 first flow passage, 600 pot cover, 800 steamer, 810 second communication part, 820 fourth enclosing edge, 822 through hole, 830 second support rib, 900 cylindrical gap, 1000 second carrier, 1010 second flow passage, 1100 first sub-cavity, 1200 second sub-cavity, 1300 partition plate, 1310 support protrusion, 1400 side plate, 1500 carrier groove, 1600 flange, 20 energy focusing assembly. DETAILED DESCRIPTION
[0148] In order to enable persons skilled in the art to more clearly understand the above-mentioned purposes, features and advantages of the present application, the present application will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0149] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, however, the present application can also be implemented in other ways different from those described herein, and therefore, the scope of protection of the present application is not limited by the specific embodiments disclosed below.
[0150] The following refers to Figures 1 to 14 The energy focusing assembly 20 and the cooking utensil 10 of some embodiments of the present application are described.
[0151] As Figure 7 , Figure 11 , Figure 12 , Figure 13 andFigure 14 As shown, the energy focusing assembly 20 according to some embodiments of the present application comprises: an energy focusing structure 200, the energy focusing structure 200 is provided with a first opening 210, a second opening 220 and a channel 230, the channel 230 communicates the first opening 210 and the second opening 220, the channel 230 comprises a flow guide section 232, the flow guide section 232 is connected to the second opening 220; a cover plate 400, the cover plate 400 is arranged on the second opening 220, the cover plate 400 is provided with a first communication part 410, the first communication part 410 communicates the second opening 220, the side of the cover plate 400 away from the energy focusing structure 200 is provided with a receiving groove 440, the first communication part 410 is located on the circumferential side of the receiving groove 440; the flow cross-sectional area of the side of the flow guide section 232 away from the cover plate 400 is smaller than the flow cross-sectional area of the side of the flow guide section 232 facing the second opening 220.
[0152] The energy focusing assembly 20 provided by the present application comprises an energy focusing structure 200 and a cover plate 400.
[0153] The energy focusing structure 200 is provided with a first opening 210, a second opening 220 and a channel 230, the first opening 210 and the second opening 220 both communicate with the channel 230.
[0154] After the energy focusing assembly 20 is placed in the pot body 100 of the cooking utensil 10, the energy focusing structure 200 will cover the medium, so that the medium is gathered in the channel 230, since the space in the channel 230 is fixed and under the action of pressure difference, the medium will only fill part of the channel 230, so the amount of medium located in the channel 230 can be limited. The amount of medium to be heated is less affected by the amount and temperature of the medium outside the energy focusing structure 200. In this way, when the cooking utensil 10 is working, most of the heat is absorbed by the medium in the channel 230 of the energy focusing structure 200, and the medium outside the energy focusing structure 200 can only absorb very little heat due to the effect of the energy focusing structure 200, so by heating the medium in the channel 230, the time for the medium to be heated from room temperature to boiling and generate relatively stable steam can be greatly shortened, and the temperature rise of the medium outside the energy focusing structure 200 is very small. In this way, the purpose of quickly generating high-temperature steam can be achieved, and the loss of energy is avoided. The high-temperature steam generated in the channel 230 will be discharged from the cover plate 400 through the first communication part 410 and be directed to flow to the predetermined position of the cooking utensil 10, which can shorten the time for the cooking utensil 10 to reach the saturated steam state and improve the efficiency of the cooking utensil 10 in cooking food.
[0155] Further, the cover plate 400 is provided with a first communication part 410, and the side of the cover plate 400 away from the energy gathering structure 200 is provided with a receiving groove 440, and the first communication part 410 is located at the circumferential side of the receiving groove 440. The first communication part 410 has the function of guiding the flow path of the steam, so that the steam discharged through the first communication part 410 flows to the side of the cooking utensil 10, that is, the steam rises around the cavity of the cooking utensil 10 and circulates in the cavity to fully heat the food in the cavity, while ensuring the effectiveness and reliability of heating the food, and avoiding the direct contact of the steam with the bottom of the food, thereby reducing the condensate formed on the surface of the food during cooking, and greatly improving the cooking taste and cooking effect of the food.
[0156] Further, the cross-sectional area of the flow passage of the side of the flow guide section 232 away from the cover plate 400 is smaller than the cross-sectional area of the flow passage of the side of the flow guide section 232 toward the second opening 220. The shape of the channel 230 is further limited. The channel 230 includes the flow guide section 232, the flow guide section 232 is located between the first opening 210 and the second opening 220, and the flow guide section 232 is connected to the second opening 220. That is, the flow guide section 232 has a flared structure, and the shape of the flow guide section 232 defines the flow path of the steam, which has the functions of converging and guiding the steam, so that the steam can be directed and quickly guided to the first communication part 410 at the side of the evaporation cover.
[0157] That is, the position of the first communication part 410 and the shape of the channel 230 are matched to jointly guide the flow path of the steam, so that the steam flowing out through the first communication part 410 flows to the side of the cooking utensil 10 to meet the use requirement of surrounding the steam, and avoid the direct contact of the steam with the bottom of the food, thereby reducing the condensate formed on the surface of the food during cooking, and greatly improving the cooking taste and cooking effect of the food.
[0158] In addition, the side of the cover plate 400 away from the energy gathering structure 200 is provided with a receiving groove 440, and the first communication part 410 is located at the circumferential side of the receiving groove 440. That is, the positional relationship between the receiving groove 440 and the first communication part 410 is limited. When the cooking utensil 10 is working, the soup of the food above the energy gathering assembly 20 can flow to the receiving groove 440 of the cover plate 400, that is, the receiving groove 440 has the function of receiving the soup, and the cover plate 400 has the function of receiving the soup, so that the soup can be prevented from flowing back to the bottom of the cooking utensil 10, thereby avoiding the pollution of the medium in the cooking utensil 10, and providing structural support for ensuring the cooking taste of the food and the cleanliness of the cooking.
[0159] In some embodiments, optionally, the mouth wall of the second opening 220 is arranged opposite to the groove side wall 442 of the receiving groove, or the mouth wall of the second opening 220 is located outside the groove side wall 442 of the receiving groove.
[0160] In this embodiment, the second opening 220 and the receiving groove 440 are matched.
[0161] The mouth wall of the second opening 220 is arranged opposite to the groove side wall 442 of the receiving groove, or the mouth wall of the second opening 220 is located outside the groove side wall 442 of the receiving groove. This arrangement increases the contact area of the second opening 220 and the cover plate 400, so that the steam can uniformly act on each area of the bottom of the cover plate 400, the steam can heat the cover plate in a large area, improve the temperature of the first carrier 500 of the cooking utensil 10 located above the energy focusing assembly 20, ensure uniform heating of the food materials on the first carrier 500, and also shorten the time of heating the food materials on the first carrier 500.
[0162] In some embodiments, optionally, as shown in Figure 1 、 Figure 2 、 Figure 7 、 Figure 8 、 Figure 11 and Figure 13 , the side of the cover plate 400 away from the energy focusing structure 200 is provided with a first supporting rib 420, and the first supporting rib 420 and the outer surface of the cover plate enclose the receiving groove 440.
[0163] In this embodiment, the side of the cover plate 400 away from the energy focusing structure 200 is provided with a first supporting rib 420, and the first carrier 500 of the cooking utensil 10 is arranged on the first supporting rib 420. The first supporting rib 420 has the function of supporting the first carrier 500, so that the first carrier 500 is arranged in a spaced manner with the plurality of first communication parts 410 located around the side of the first supporting rib 420, and the steam can rise around the four sides of the first carrier 500, so as to ensure the flow path of the steam and avoid the situation of blocking the flow of the steam. That is, this arrangement can not only meet the use requirement of supporting the first carrier 500 of the cover plate 400, but also meet the use requirement of the steam rising around the four sides of the first carrier 500.
[0164] It can be understood that the first carrier 500 has the function of carrying the food materials to be cooked.
[0165] The first supporting rib 420 and the outer surface of the cover plate enclose the receiving groove 440, that is, the first supporting rib 420 not only has the function of forming the groove side wall 442 of the receiving groove, but also has the function of supporting the first carrier 500. This enriches the function of the first supporting rib 420 and the function of the cover plate 400.
[0166] Exemplarily, the first supporting rib 420 is an annular rib.
[0167] In some embodiments, optionally, the first communication portion 410 is in a plurality, and the plurality of first communication portions 410 are arranged along the circumference of the first support rib 420.
[0168] In this embodiment, the number and arrangement position of the first communication portion 410 are further defined.
[0169] The number of the first communication portion 410 is a plurality, and the plurality of first communication portions 410 are arranged along the circumferential side of the first load object 500. This arrangement allows steam to be supplied from multiple directions and multiple positions at the same time via the plurality of first communication portions 410, so that the steam rises around the first load object 500 and circulates in the cavity of the cooking appliance 10, so as to sufficiently heat the food materials in the cavity, while ensuring the effectiveness and reliability of heating the food materials, the situation that the steam directly contacts the bottom of the food materials can be avoided, so as to reduce the condensate formed on the surface of the food materials during cooking, and the cooking taste and effect of the food materials can be greatly improved.
[0170] In some embodiments, optionally, the flow guide section 232 extends from the first opening 210 to the second opening 220.
[0171] In this embodiment, the energy concentrating structure 200 is further defined.
[0172] The energy concentrating structure 200 is provided with the first opening 210 and the second opening 220, the first opening 210 is in communication with the channel 230, and the second opening 220 is in communication with the channel 230. The first opening 210 is arranged opposite to the inner bottom wall of the pot body 100, and the cover plate 400 is arranged on the second opening 220.
[0173] The medium flows into the channel 230 through the first opening 210, and the steam flows to the first communication portion 410 through the second opening 220.
[0174] In this embodiment, the flow guide section 232 extends from the first opening 210 to the second opening 220, that is, the positional relationship of the flow guide section 232, the first opening 210 and the second opening 220 is defined. A part of the flow guide section 232 stores the medium, and another part of the flow guide section 232 has the function of guiding the steam, so that the steam can flow to the first communication portion 410 in an orderly manner along the flared flow guide section 232.
[0175] In some embodiments, optionally, as shown in Figure 12 The channel 230 further includes a connecting section 234, which is connected between the first opening 210 and the flow guide section 232, and the flow cross-sectional area of the connecting section 234 is smaller than the flow cross-sectional area of the flow guide section 232.
[0176] In this embodiment, the energy concentrating structure 200 is further defined.
[0177] The energy-gathering structure 200 is provided with a first opening 210 and a second opening 220, the first opening 210 is in communication with the channel 230, and the second opening 220 is in communication with the channel 230. The first opening 210 is arranged opposite to the inner bottom wall of the pot body 100, and the cover plate 400 is arranged on the second opening 220.
[0178] The medium flows into the channel 230 through the first opening 210, and the steam flows to the first communication part 410 through the second opening 220.
[0179] The channel 230 further includes a connecting section 234 connected between the first opening 210 and the flow guide section 232, and the flow guide section 232 is connected to the second opening 220. The flow area of the connecting section 234 is smaller than that of the flow guide section 232. Exemplarily, the connecting section 234 is a cylindrical structure.
[0180] The connecting section 234 at least stores the medium, and the flow guide section 232 at least guides the steam to the first communication part 410.
[0181] The structure of the connecting section 234 can limit the amount of medium to be heated, and ensure the use requirement of rapid steam output. If the flow area of the connecting section 234 is larger than that of the flow guide section 232, the amount of medium heated per unit time is larger, which will prolong the steam output time and cannot meet the use requirement of rapid steam output.
[0182] In some embodiments, when the channel 230 further includes the connecting section 234, the connecting section 234 and the flow guide section 232 are smoothly connected.
[0183] In this embodiment, the structure of the channel 230 is further limited, so that when the channel 230 further includes the connecting section 234, the connecting section 234 and the flow guide section 232 are smoothly connected. That is, the connecting section 234 and the flow guide section 232 are smoothly connected, which enables the gas flow to smoothly pass through the connecting section 234 to the flow guide section 232.
[0184] Exemplarily, the cover plate 400 is detachably connected with the energy-gathering structure 200, which facilitates the cleaning and maintenance of the energy-gathering assembly 20.
[0185] In some embodiments, as shown in Figure 4 , Figure 6 and Figure 13 , the energy-gathering structure 200 includes a flow guide cylinder 240, one end of the flow guide cylinder 240 encloses the first opening 210; a flow guide plate 250 surrounds the other end of the flow guide cylinder 240, the outer edge of the flow guide plate 250 encloses the second opening 220, and the flow guide cylinder 240 and the flow guide plate 250 enclose the channel 230.
[0186] In this embodiment, the energy concentrating structure 200 is defined.
[0187] The energy concentrating structure 200 includes a flow guide cylinder 240 and a flow guide plate 250.
[0188] One end of the flow guide cylinder 240 is arranged opposite to the inner bottom wall of the pot body 100, and the flow guide plate 250 extends from the other end of the flow guide cylinder 240 to the open end 120 of the pot body, that is, the flow guide plate 250 surrounds the other end of the flow guide cylinder 240.
[0189] The flow guide cylinder 240 and the flow guide plate 250 are shaped to enclose the channel 230, so as to meet the use requirement that the flow cross-sectional area of the flow guide section 232 away from the cover plate 400 is smaller than the flow cross-sectional area of the flow guide section 232 toward the second opening 220.
[0190] It can be understood that the cover plate 400 is arranged on the flow guide plate 250, and the energy concentrating structure 200 has the function of supporting and fixing the cover plate 400. At the same time, the cover plate 400 has the function of covering the flow guide plate 250, so that the steam can only flow to the chamber through the first communication part 410, so as to meet the use requirement of surrounding the steam.
[0191] In some embodiments, as shown in Figure 12 the side of the flow guide plate 250 away from the cover plate 400 is provided with a first surrounding edge 252, and the first surrounding edge 252 is arranged in a spaced manner with the edge portion of the flow guide plate 250.
[0192] In this embodiment, the side of the flow guide plate 250 away from the cover plate 400 is provided with a first surrounding edge 252, and the first surrounding edge 252 is arranged in a spaced manner with the edge portion of the flow guide plate 250.
[0193] The pot body 100 of the cooking utensil 10 is provided with a mounting groove 130, and the mounting groove 130 is communicated with the open end 120 of the pot body, and the flow guide plate 250 is arranged on the open end 120 of the pot body.
[0194] Specifically, the part of the flow guide plate 250 between the first surrounding edge 252 and the outer edge of the flow guide plate 250 is arranged on the open end 120 of the pot body, and the first surrounding edge 252 extends into the mounting groove 130 and abuts against the groove side wall of the mounting groove 130.
[0195] The first surrounding edge 252 has the function of positioning the energy concentrating structure 200. That is, the first surrounding edge 252 and the outer edge of the flow guide plate 250 cooperate to meet the use requirement that the flow guide plate 250 is arranged on the open end 120 of the pot body, and the first surrounding edge 252 can also limit the cooperation size of the pot body 100 and the energy concentrating structure 200, so that the energy concentrating structure 200 is stably and reliably assembled to the pot body 100.
[0196] In some embodiments, the first surrounding edge 252 is optionally arranged around the draft tube 240.
[0197] In this embodiment, the cooperation structure of the first surrounding edge 252 and the draft tube 240 is further defined.
[0198] The first surrounding edge 252 is arranged around the draft tube 240. This arrangement increases the cooperation area and cooperation angle of the energy concentrating structure 200 and the pot body 100, and can position the energy concentrating structure 200 from multiple directions and multiple angles. Meanwhile, this structure arrangement can also seal the liquid storage cavity 300 of the cooking appliance 10, so that the liquid storage cavity 300 and the channel 230 can be effectively isolated, avoiding the contact between the medium in the liquid storage cavity 300 and the steam to cause the heat loss of the steam, so that the high-temperature steam generated can directly reach the cavity, thereby maximizing the utilization efficiency of the steam heat.
[0199] In some embodiments, the edge portion of the cover plate 400 has a second surrounding edge 430, and the edge portion of the draft plate 250 has a third surrounding edge 256, as shown in Figure 12 The second surrounding edge 430 is arranged outside the third surrounding edge 256.
[0200] In this embodiment, the cooperation structure of the cover plate 400 and the energy concentrating structure 200 is further defined.
[0201] The edge portion of the cover plate 400 has a second surrounding edge 430, and the edge portion of the draft plate 250 has a third surrounding edge 256, and the second surrounding edge 430 is arranged outside the third surrounding edge 256. That is, the second surrounding edge 430 of the cover plate 400 is arranged around the third surrounding edge 256 of the draft plate 250. That is, the cover plate 400 is sleeved on the draft plate 250. The second surrounding edge 430 and the third surrounding edge 256 cooperate to limit each other from various directions and various angles, so as to ensure the cooperation size of the cover plate 400 and the energy concentrating structure 200.
[0202] In some embodiments, the first surrounding edge 252, the third surrounding edge 256, and the portion of the draft plate 250 between the first surrounding edge 252 and the third surrounding edge 256 are configured as a stepped structure 254, as shown in Figure 12 The portion of the draft plate 250 between the first surrounding edge 252 and the third surrounding edge 256 is arranged opposite to the first communication portion 410.
[0203] In this embodiment, the cooperation structure of the draft plate 250, the second surrounding edge 430, and the first supporting rib 420 is further defined.
[0204] The first rim 252, the third rim 256 and the portion of the deflector 250 between the first rim 252 and the third rim 256 are configured as a stepped structure 254. The stepped structure 254 can increase the mating clearance between the deflector 250 and the first carrier 500, and provide structural support for the steam flow.
[0205] In addition, the portion of the deflector 250 between the first rim 252 and the third rim 256 is arranged opposite to the first communication part 410, which provides structural support for the steam to flow smoothly and effectively from the channel 230 to the first communication part 410.
[0206] According to some embodiments of the present application, a cooking appliance 10 comprises the energy focusing assembly 20 according to any of the above embodiments.
[0207] The cooking appliance 10 provided by the present application comprises the energy focusing assembly 20 according to any of the above embodiments, and thus has all the beneficial effects of the energy focusing assembly 20, which will not be repeated here.
[0208] In some embodiments, as shown in Figure 1 、 Figure 3 、 Figure 4 、 Figure 7 、 Figure 10 and Figure 14 , the cooking appliance 10 further comprises a pot body 100 provided with a heating element 110; the energy focusing assembly 20 is detachably arranged in the pot body 100, the outer surface of the energy focusing structure 200 and the inner surface of the pot body 100 form a liquid storage cavity 300, the first opening 210 is located between the inner bottom wall of the pot body 100 and the second opening 220, the liquid storage cavity 300 is communicated with the first opening 210, the heating element 110 is used at least for heating the channel 230; the first carrier 500 is detachably arranged on the first support rib 420 of the cover plate 400, at least a portion of the first communication part 410 is located on the periphery of the first carrier 500; the pot cover 600 is detachably arranged on the pot body 100, and the first communication part 410 is communicated with the region between the pot cover 600 and the first carrier 500.
[0209] The cooking appliance 10 provided by the present application comprises the energy focusing assembly 20 according to any of the above embodiments, and thus has all the beneficial effects of the energy focusing assembly 20, which will not be repeated here.
[0210] The energy-gathering structure 200 is provided with a first opening 210, a second opening 220 and a channel 230, the first opening 210 and the second opening 220 are both communicated with the channel 230, and the first opening 210 is located between the inner bottom wall of the pot body 100 and the second opening 220. The energy-gathering structure 200 is detachably arranged in the pot body 100, the first opening 210 of the energy-gathering structure 200 is arranged opposite to the inner bottom wall of the pot body 100, the cover plate 400 is detachably arranged on the second opening 220, the first material-carrying object 500 is detachably arranged on the side of the cover plate 400 away from the energy-gathering structure 200, and the pot cover 600 is detachably arranged on the pot body 100. That is, the pot body 100 and the pot cover 600 enclose the appearance surface of the cooking utensil 10. The energy-gathering structure 200, the cover plate 400 and the first material-carrying object 500 are all located in the space enclosed by the pot body 100 and the pot cover 600.
[0211] After the energy-gathering structure 200 is placed in the pot body 100, the energy-gathering structure 200 covers the medium, so that the medium is gathered in the channel 230. Since the space in the channel 230 is fixed, and under the action of the pressure difference, the medium will only fill part of the channel 230, so the amount of medium located in the channel 230 can be limited. The amount of medium to be heated is less affected by the amount and temperature of the medium outside the energy-gathering structure 200. In this way, when the cooking utensil 10 is working, most of the heat is absorbed by the medium in the channel 230 of the energy-gathering structure 200, and the medium outside the energy-gathering structure 200 can only absorb very little heat due to the action of the energy-gathering structure 200. Therefore, by heating the medium in the channel 230, the time for the medium to reach boiling point from room temperature and generate relatively stable steam can be greatly shortened, and the temperature rise of the medium outside the energy-gathering structure 200 is very small. In this way, the purpose of quickly generating high-temperature steam can be achieved, and energy loss can be avoided.
[0212] Further, the food material is placed on the first material-carrying object 500, and then the pot cover 600 is covered on the pot body 100 to enclose the food material in the cavity enclosed by the pot cover 600 and the first material-carrying object 500. The channel 230 is communicated with the cavity through the first communication part 410, that is, the high-temperature steam generated in the channel 230 is discharged from the cover plate 400 through the first communication part 410 and is directed to flow to the predetermined position of the cooking utensil 10, which can shorten the time for the cooking utensil 10 to reach the saturated steam state and can improve the efficiency of cooking the food material by the cooking utensil 10.
[0213] Further, the cover plate 400 is provided with a first communication part 410, the first communication part 410 communicates with the channel 230, at least a part of the first communication part 410 is located at the circumferential side of the first loading object 500. The first communication part 410 has the function of the flow path of the steam guide, so that the steam discharged through the first communication part 410 flows to the side of the chamber, that is, the steam rises around the first loading object 500 and circulates in the chamber, so as to sufficiently heat the food materials in the chamber, while ensuring the effectiveness and reliability of heating the food materials, the direct contact between the steam and the bottom of the food materials can be avoided, so as to reduce the condensate formed on the surface of the food materials during cooking, and the cooking taste and effect of the food materials can be greatly improved.
[0214] Further, the energy gathering structure 200 is provided with a channel 230, the outer surface of the energy gathering structure 200 and the inner surface of the pot body 100 enclose a liquid storage cavity 300, and the channel 230 and the liquid storage cavity 300 are communicated. That is, the inner surface of the energy gathering structure 200 encloses the channel 230, and the outer surface of the energy gathering structure 200 and the inner surface of the pot body 100 enclose the liquid storage cavity 300. In other words, the energy gathering structure 200 divides the internal space of the pot body 100 into the channel 230 and the liquid storage cavity 300. The channel 230 and the liquid storage cavity 300 are separated, so as to avoid the contact between the medium in the liquid storage cavity 300 and the steam, thereby reducing the heat loss of the steam, and the generated high-temperature steam can directly reach the chamber, so that the heat of the steam can be used with the maximum efficiency.
[0215] It can be understood that the liquid storage cavity 300 and the channel 230 are communicated, so that when the amount of medium in the channel 230 is reduced, the medium in the liquid storage cavity 300 can be supplemented into the channel 230, so as to provide structural support for ensuring the amount of medium in the channel 230 and providing structural support for continuously discharging steam.
[0216] In some embodiments, optionally, as Figure 1 、 Figure 2 、 Figure 4 、 Figure 7 and Figure 14As shown, the cooking utensil 10 further comprises: a steamer 800, the steamer 800 is in a cylindrical structure, the steamer 800 is detachably connected between the pot body 100 and the pot cover 600, the steamer 800 surrounds the first loading object 500, the inner peripheral wall of the steamer 800 and the cover plate 400 enclose a cylindrical gap 900, and the steamer 800 is provided with a second communication part 810; a second loading object 1000, which is detachably arranged on the side of the steamer 800 away from the pot body 100, and the second communication part 810 is located on the peripheral side of the second loading object 1000; the second loading object 1000, the steamer 800 and the first loading object 500 enclose a first sub-cavity 1100, the second loading object 1000 and the pot cover 600 enclose a second sub-cavity 1200, the cylindrical gap 900 communicates the first communication part 410 and the first sub-cavity 1100, and the second communication part 810 communicates the first sub-cavity 1100 and the second sub-cavity 1200.
[0217] In this embodiment, the structure of the cooking utensil 10 is further defined.
[0218] The cooking utensil 10 further comprises the steamer 800 and the second loading object 1000.
[0219] The steamer 800 is in a cylindrical structure, the steamer 800 is detachably arranged on the pot body 100, and the pot cover 600 is detachably arranged on the side of the steamer 800 away from the pot body 100. The pot body 100, the steamer 800 and the pot cover 600 enclose the appearance surface of the cooking utensil 10.
[0220] The first loading object 500 is detachably arranged on the cover plate 400, and the second loading object 1000 is detachably arranged on the side of the steamer 800 away from the pot body 100. The second loading object 1000, the steamer 800 and the first loading object 500 enclose the first sub-cavity 1100, and the second loading object 1000 and the pot cover 600 enclose the second sub-cavity 1200.
[0221] Specifically, the food material can be placed in the first sub-cavity 1100, specifically, the food material is placed on the first loading object 500, and then the second loading object 1000 is arranged on the steamer 800 to enclose the food material in the first sub-cavity 1100.
[0222] Specifically, the food material can be placed in the second sub-cavity 1200, specifically, the food material is placed on the second loading object 1000, and then the pot cover 600 is arranged on the steamer 800 to enclose the food material in the second sub-cavity 1200.
[0223] The steamer 800 surrounds the first loading object 500, and the inner peripheral wall of the steamer 800 and the cover plate 400 enclose the cylindrical gap 900. The steamer 800 is provided with the second communication part 810, and the second communication part 810 is located on the peripheral side of the second loading object 1000.
[0224] When the cooking appliance 10 is in operation, the steam flows to the cylindrical gap 900 through the first communication part 410 of the cover plate 400, so that the steam rises around the first carrier 500 and circulates in the first sub-cavity 1100 to sufficiently heat the food in the first sub-cavity 1100. In this way, the steam can not directly contact the bottom of the food, so that the condensate formed on the surface of the food during cooking can be reduced, and the cooking taste and effect of the food can be greatly improved.
[0225] At the same time, the steam flows to the second sub-cavity 1200 through the second communication part 810, so that the steam rises around the second carrier 1000 and circulates in the second sub-cavity 1200 to sufficiently heat the food in the second sub-cavity 1200. In this way, the steam can not directly contact the bottom of the food, so that the condensate formed on the surface of the food during cooking can be reduced, and the cooking taste and effect of the food can be greatly improved.
[0226] It can be understood that the steamer 800 can be disassembled and assembled according to actual conditions. For example, when only the chamber is used to cook food, only the pot body 100, the energy concentrating structure 200, the cover plate 400, the first carrier 500, and the pot cover 600 are assembled, i.e., the cover plate 400 is covered on the energy concentrating structure 200, the first carrier 500 is covered on the cover plate 400, and the pot cover 600 is directly covered on the pot body 100. For example, when the food to be cooked is more or the types of food to be cooked are different, the steamer 800, the first carrier 500, the cover plate 400, the second carrier 1000, the energy concentrating structure 200, the pot cover 600, and the pot body 100 are assembled together to meet the use requirement of simultaneously cooking food in the first sub-cavity 1100 and the second sub-cavity 1200.
[0227] In some embodiments, as shown in FIG. 5A, the first carrier 500 is provided with a first overflow port 510, and the second carrier 1000 is provided with a second overflow port 1010. Figure 14
[0228] In this embodiment, the structure of the first carrier 500 is further limited.
[0229] The first loading object 500 is provided with a first overflow port 510. When the cooking appliance 10 is in operation, soup of food materials on the first loading object 500 can flow to the receiving groove 440 of the cover plate 400 through the first overflow port 510. That is, the cover plate 400 has the function of receiving soup, which avoids the situation that the soup flows back to the liquid storage cavity 300 and pollutes the medium in the liquid storage cavity 300. The structure provides structural support for ensuring the cooking taste of food materials and the cleanness of cooking.
[0230] The structure of the second loading object 1000 is further limited.
[0231] The first loading object 500 is provided with a first overflow port 510, and the second loading object 1000 is provided with a second overflow port 1010. When the cooking appliance 10 is in operation, soup of food materials on the second loading object 1000 can flow to the receiving groove 440 of the cover plate 400 through the first overflow port 510 and the second overflow port 1010. That is, the cover plate 400 has the function of receiving soup, which avoids the situation that the soup flows back to the liquid storage cavity 300 and pollutes the medium in the liquid storage cavity 300. The structure provides structural support for ensuring the cooking taste of food materials and the cleanness of cooking.
[0232] In some embodiments, as shown in Figure 4 and Figure 5 At least one of the first loading object 500 and the second loading object 1000 includes a partition plate 1300, a side plate 1400 connected to an outer edge of the partition plate 1300, the partition plate 1300 and the side plate 1400 enclosing a loading groove 1500, and a flange 1600 connected to an end of the side plate 1400. The flange 1600 of the first loading object 500 abuts against the cover plate 400, and / or the flange 1600 of the second loading object 1000 abuts against the steamer 800.
[0233] In this embodiment, the structure of the first loading object 500 and the second loading object 1000 is further limited.
[0234] The first loading object 500 includes a partition plate 1300, a side plate 1400, and a flange 1600. The side plate 1400 is connected to an outer edge of the partition plate 1300, and the partition plate 1300 and the side plate 1400 enclose a loading groove 1500. That is, the partition plate 1300 and the side plate 1400 form a concave structure, and at least a part of food materials can be placed in the loading groove 1500.
[0235] Optionally, the side plate 1400 of the first carrier 500 is arranged opposite to the plurality of first support ribs 420 of the cover plate 400, and the plurality of first support ribs 420 and the side plate 1400 cooperate to limit the displacement of the first carrier 500 relative to the cover plate 400, so as to ensure the cooperation size of the first carrier 500 and the cover plate 400, while meeting the use requirement of the first carrier 500 being arranged on the cover plate 400, the steam flow path is not hindered, so that the steam can flow around the first carrier 500.
[0236] The flange 1600 is connected to the end of the side plate 1400, and the flange 1600 is arranged on the cover plate 400 to meet the use requirement of the first carrier 500 being arranged on the cover plate 400.
[0237] The second carrier 1000 includes the partition plate 1300, the side plate 1400, and the flange 1600. The side plate 1400 is connected to the outer edge of the partition plate 1300, and the partition plate 1300 and the side plate 1400 enclose the carrier groove 1500, that is, the partition plate 1300 and the side plate 1400 form a concave structure, and at least part of the food material can be placed in the carrier groove 1500.
[0238] Optionally, the side plate 1400 of the second carrier 1000 is arranged opposite to the plurality of second support ribs 830 of the steamer 800, and the plurality of second support ribs 830 and the side plate 1400 cooperate to limit the displacement of the second carrier 1000 relative to the steamer 800, so as to ensure the cooperation size of the second carrier 1000 and the steamer 800, while meeting the use requirement of the second carrier 1000 being arranged on the side of the steamer 800 away from the pot body 100, the steam flow path is not hindered, so that the steam can flow around the second carrier 1000.
[0239] In some embodiments, as shown in Figure 4 and Figure 5 The partition plate 1300 is provided with a plurality of support protrusions 1310 on the side facing the pot cover 600, and the plurality of support protrusions 1310 are arranged along the diagonal direction of the partition plate 1300.
[0240] In this embodiment, the structure of the partition plate 1300 is further limited.
[0241] The partition plate 1300 is provided with a plurality of support protrusions 1310, and specifically, the partition plate 1300 is provided with a plurality of support protrusions 1310 on the side facing the pot cover 600. In this way, when the food material is stacked into the carrier groove 1500, the support protrusions 1310 can be used to form a flow channel between the food material and the inner wall of the carrier groove 1500, thereby facilitating the contact between the food material and the steam, so that the food material is heated uniformly up and down, and the cooking taste of the food material can be improved.
[0242] Optionally, the plurality of support protrusions 1310 includes a first support protrusion 1310 and a second support protrusion 1310, the first support protrusion 1310 is a strip-shaped protrusion, and the second support protrusion 1310 is provided with at least one discontinuity.
[0243] Further limit the structure of the plurality of support protrusions 1310.
[0244] The plurality of support protrusions 1310 are arranged along the diagonal direction of the baffle 1300. The plurality of support protrusions 1310 includes a first support protrusion 1310 and a second support protrusion 1310, the first support protrusion 1310 is a strip-shaped protrusion, and the second support protrusion 1310 is provided with at least one discontinuity. It can be understood that the discontinuity is a flow channel, and steam can flow at the discontinuity.
[0245] The flow resistance of steam at the edge of the baffle 1300 is smaller, and the flow resistance of steam at the central position of the baffle 1300 is larger. Therefore, most of the steam will flow to the edge of the baffle 1300, causing the food material at the central position of the baffle 1300 to be insufficiently heated, and the food material at the edge of the baffle 1300 to be severely heated, which is prone to the problem that the food material in the central region of the baffle 1300 is not steamed.
[0246] The present application reasonably sets the structure of the plurality of support protrusions 1310, increases the flow resistance of steam at the edge of the baffle 1300, and steam can flow along the gap between adjacent two support protrusions 1310, which is conducive to the uniform distribution of steam in the object carrying groove 1500, and thus the food material at each position in the object carrying groove 1500 is evenly heated, which is conducive to improving the cooking effect of the food material.
[0247] In some embodiments, optionally, as shown in Figure 7 and Figure 9 The steamer 800 is provided with a fourth surrounding edge 820 and a plurality of second support ribs 830, the fourth surrounding edge 820 is connected to the inner circumferential wall of the steamer 800, and the fourth surrounding edge 820 is located on the side of the steamer 800 away from the pot body 100; along the circumference of the steamer 800, the plurality of second support ribs 830 are arranged on the side of the fourth surrounding edge 820 away from the pot body 100, the second object carrying member 1000 is supported on the plurality of second support ribs 830, and the pot cover 600 is arranged around the plurality of second support ribs 830; the fourth surrounding edge 820 is provided with a plurality of through holes 822, any adjacent two second support ribs 830 and the fourth surrounding edge 820 enclose a second communication part 810, and the second communication part 810 communicates the first sub-cavity 1100 and the second sub-cavity 1200 through at least one through hole 822.
[0248] In this embodiment, the structure of the steamer 800 is further limited.
[0249] The steamer 800 is provided with a fourth surrounding edge 820 and a plurality of second supporting ribs 830. The fourth surrounding edge 820 is connected to the inner circumferential wall of the steamer 800 and is located on the side of the steamer 800 away from the pot body 100. The plurality of second supporting ribs 830 are connected to the same side of the fourth surrounding edge 820, specifically, the plurality of second supporting ribs 830 are connected to the side of the fourth surrounding edge 820 away from the pot body 100, and the plurality of second supporting ribs 830 are arranged along the circumference of the steamer 800.
[0250] Any two adjacent second supporting ribs 830 and the fourth surrounding edge 820 enclose a second communication part 810. The fourth surrounding edge 820 is provided with a plurality of through holes 822, and the second communication part 810 communicates the first sub-cavity 1100 and the second sub-cavity 1200 through at least one through hole 822. That is, the number of second communication parts 810 is a plurality, and each second communication part 810 cooperates with at least one through hole 822.
[0251] The steam in the first sub-cavity 1100 flows to the plurality of second communication parts 810 through the plurality of through holes 822, and flows to the second sub-cavity 1200 through the plurality of second communication parts 810, so that the steam can rise around the second carrier 1000.
[0252] In addition, the pot cover 600 is arranged around the plurality of second supporting ribs 830, that is, the inner circumferential wall of the pot cover 600 is located outside the plurality of second supporting ribs 830, and the pot cover 600 wraps the plurality of second supporting ribs 830 on the inner side thereof.
[0253] Optionally, the end of the pot cover 600 is inserted between the inner circumferential wall of the steamer 800 and the plurality of second supporting ribs 830.
[0254] In some embodiments, the steamer 800 is further provided with a plurality of blocking ribs, one blocking rib is arranged on the side of each second supporting rib 830 away from the pot body 100, and the blocking rib is arranged opposite to the outer edge of the second carrier 1000.
[0255] In this embodiment, the structure of the steamer 800 is further limited.
[0256] The steamer 800 is further provided with a plurality of blocking ribs, one blocking rib cooperates with each second supporting rib 830, specifically, one blocking rib is arranged on the side of each second supporting rib 830 away from the pot body 100.
[0257] The blocking rib is arranged opposite to the outer edge of the second carrier 1000, and the blocking rib has the function of limiting the second carrier 1000, which can limit the cooperation structure of the second carrier 1000 and the steamer 800, and avoid the displacement of the second carrier 1000.
[0258] Meanwhile, the blocking rib is arranged on the side of the second supporting rib 830 away from the pot body 100, and the blocking rib is arranged opposite to the outer edge of the second load 1000. In this way, the positional relationship between the second load 1000 and the through hole 822 can be ensured, and the second load 1000 cannot block the through hole 822, thereby providing structural support for ensuring the effective flow of steam in the second sub-cavity 1200.
[0259] In some embodiments, optionally, the number of the steamer 800 and the second load 1000 is multiple, each second load 1000 is matched with a steamer 800, and the multiple steamers 800 are sequentially detachably connected in the direction from the pot body 100 to the pot cover 600.
[0260] In this embodiment, the number and matching structure of the steamer 800 and the second load 1000 are further limited.
[0261] The number of the steamer 800 and the second load 1000 is multiple, and each second load 1000 is matched with a steamer 800. That is, the number of the steamers 800 is multiple, the number of the second loads 1000 is multiple, and each second load 1000 is detachably arranged on a steamer 800.
[0262] This arrangement can form multiple cavities, which can meet the use demand of cooking a large amount of food or cooking multiple foods.
[0263] In some embodiments, optionally, as shown in Figure 1 , Figure 7 and Figure 14 , the pot body 100 is provided with a mounting groove 130, the mounting groove 130 is communicated with the opening end 120 of the pot body, the stepped structure 254 of the energy concentrating assembly 20 is arranged on the opening end 120 of the pot body, and the first surrounding edge 252 extends into the mounting groove 130 and abuts against the groove side wall of the mounting groove 130.
[0264] In this embodiment, the matching structure of the pot body 100 and the energy concentrating structure 200 is further limited.
[0265] The pot body 100 is provided with a mounting groove 130, the mounting groove 130 is communicated with the opening end 120 of the pot body, and the flow guide plate 250 abuts against the opening end 120 of the pot body.
[0266] Specifically, the side of the flow guide plate 250 away from the pot cover 600 is provided with a first surrounding edge 252, the first surrounding edge 252 is arranged in a spaced manner with the outer edge of the flow guide plate 250, the part of the flow guide plate 250 between the first surrounding edge 252 and the outer edge of the flow guide plate 250 is arranged on the opening end 120 of the pot body, and the first surrounding edge 252 extends into the mounting groove 130 and abuts against the groove side wall of the mounting groove 130.
[0267] The first surrounding edge 252 has the effect of positioning the energy concentrating structure 200. That is, the first surrounding edge 252 cooperates with the outer edge of the flow guide plate 250 to meet the use requirement that the flow guide plate 250 is placed on the open end 120 of the pot body, and the first surrounding edge 252 can also limit the cooperation size of the pot body 100 and the energy concentrating structure 200, so that the energy concentrating structure 200 is stably and reliably assembled to the pot body 100.
[0268] In some embodiments, as shown in Figure 14 The inner bottom wall of the pot body 100 is provided with a cylindrical groove 140, the flow guide cylinder 240 of the energy concentrating assembly 20 is inserted into the cylindrical groove 140, and the liquid storage cavity 300 and the channel 230 are communicated through the cylindrical groove 140.
[0269] In this embodiment, the cooperation structure of the pot body 100 and the flow guide cylinder 240 is further limited.
[0270] The inner bottom wall of the pot body 100 is provided with a cylindrical groove 140, the flow guide cylinder 240 is inserted into the cylindrical groove 140, and the outer surface of the flow guide cylinder 240 and the flow guide plate 250 and the inner surface of the pot body 100 enclose the liquid storage cavity 300.
[0271] The liquid storage cavity 300 and the channel 230 are communicated through the cylindrical groove 140, and the medium in the liquid storage cavity 300 can flow to the channel 230 of the energy concentrating structure 200 through the cylindrical groove 140, so as to ensure that the amount of medium in the channel 230 can meet the use requirement of continuously discharging steam.
[0272] Therefore, the cylindrical groove 140 not only has the effect of limiting the flow guide cylinder 240, but also has the effect of communicating the liquid storage cavity 300 and the channel 230.
[0273] It can be understood that the heating element 110 works to heat the channel 230 to provide structural support for discharging steam.
[0274] In other embodiments, the first communication part 410 is a cylindrical opening, so that the steam rises around the first carrier 500 and circulates in the cavity to sufficiently heat the food materials in the cavity.
[0275] Optionally, the first communication part 410 includes a communication opening, a communication gap, or a communication hole 822, and the like, which are not listed one by one.
[0276] Optionally, the first support rib 420 is a cylindrical rib.
[0277] Optionally, the number of the first support rib 420 is multiple, and the multiple first support ribs 420 are arranged along the circumference of the first opening 210.
[0278] In other embodiments, the first carrier 500 and the second carrier 1000 are both closed and non-porous plates.
[0279] Optionally, the plurality of support protrusions 1310 comprises a first support protrusion and a second support protrusion, the first support protrusion is a strip-shaped protrusion, and the second support protrusion is provided with at least one breakage.
[0280] Optionally, the end of the pot cover 600 is inserted between the inner circumferential wall of the steamer 800 and the plurality of second support ribs 830.
[0281] Specifically, the medium comprises a liquid, or the medium comprises a liquid and a gas. When the medium is a liquid, the liquid can be water.
[0282] Specifically, a cross section of the channel 230 is taken along a direction perpendicular to the extension direction of the channel 230, and in the cross section, the area enclosed by the inner contour line of the channel 230 is the flow cross-sectional area of the channel 230.
[0283] Specifically, a cross section of the flow guide section 232 is taken along a direction perpendicular to the extension direction of the flow guide section 232, and in the cross section, the area enclosed by the inner contour line of the flow guide section 232 is the flow cross-sectional area of the flow guide section 232.
[0284] Optionally, the cooking utensil 10 comprises an electric steamer.
[0285] Optionally, the cooking utensil 10 comprises a heating element 110, a power supply, a control module, a display module, a water tank, and the like, which are not listed one by one here.
[0286] Optionally, the energy-concentrating structure 200 forms a rapid steam outlet module with the heating element 110 of the pot body 100, and the energy-concentrating structure 200 forms a steam channel 230 with the lower layer of surrounding steaming pieces (i.e., the first load object 500 and the second load object 1000). The heating element 110 comprises a hot plate.
[0287] The first load object 500 is used to place food materials. The first load object 500 forms a lower layer of cooking cavities, such as a first sub-cavity 1100, with the steamer 800. The first load object 500 comprises a lower layer of steaming pieces.
[0288] The steamer 800 forms a first sub-cavity 1100 and a second sub-cavity 1200 with the first load object 500 and the second load object 1000. The second load object 1000 comprises an upper layer of steaming pieces. The steamer 800 can support the upper layer of steaming pieces.
[0289] The upper layer of steaming pieces and the pot cover 600 enclose the first sub-cavity 1100.
[0290] The energy-gathering structure 200 is arranged on the pot body 100, and cooperates with the heating piece 110 to form a rapid steam outlet module. Meanwhile, the energy-gathering structure 200 is provided with a first surrounding edge 252 which cooperates with the pot body 100 and has a sealing effect, so that the channel 230 is completely isolated from the liquid storage cavity 300, and the medium in the liquid storage cavity 300 is prevented from contacting the steam to cause heat loss of the steam.
[0291] The cover plate 400 can serve as a juice collecting disc to collect soup juice falling from the first and second load objects 500 and 1000, and prevent the soup juice from flowing back into the liquid storage cavity 300. The cover plate 400 is provided with a steam plate supporting structure and an annular steam outlet hole therearound. For example, the steam plate supporting structure is a first supporting rib 420, and the annular steam outlet hole is a first communication part 410.
[0292] The arrangement not only has the effects of shortening the steam path and guiding the steam, but also can reduce the heat loss of the steam, thereby effectively shortening the time for the steam in the cooking utensil 10 to reach saturation.
[0293] In the drawings, Figure 1 The arrows in the drawings indicate the flow direction of the steam.
[0294] In the present application, the term "a plurality of" refers to two or more, unless otherwise explicitly limited. The terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, "connecting" can be fixed connection, or detachable connection, or integrally connected; "connecting" can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0295] In the description of the present application, the terms "one embodiment", "some embodiments", "a specific embodiment" and the like mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. The above is only the preferred embodiment of the present application, and is not intended to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A focusing assembly, characterized by, The energy focusing structure is provided with a first opening, a second opening and a channel, the channel communicates the first opening and the second opening, and the channel comprises a flow guide section connected to the second opening. A cover plate is provided on the second opening, the cover plate is provided with a first communication part communicating the second opening, and a receiving groove is provided on the side of the cover plate away from the energy focusing structure, and the first communication part is located on the circumferential side of the receiving groove. The flow cross-sectional area of the side of the flow guide section away from the cover plate is smaller than the flow cross-sectional area of the side of the flow guide section facing the second opening. The opening wall of the second opening is arranged opposite to the groove side wall of the receiving groove; or 2. The energy focusing assembly of claim 1, wherein, The opening wall of the second opening is located outside the groove side wall of the receiving groove. The side of the cover plate away from the energy focusing structure is provided with a first support rib, and the first support rib and the outer surface of the cover plate enclose the receiving groove.
3. The energy focusing assembly of claim 1 or 2, wherein, The number of the first communication parts is multiple, and the multiple first communication parts are arranged at intervals along the circumference of the first support rib.
4. The energy focusing assembly of claim 3, wherein, The flow guide section extends from the first opening to the second opening; or 5. The energy focusing assembly of claim 1 or 2, wherein, The channel further comprises a connecting section connected between the first opening and the flow guide section, and the flow cross-sectional area of the connecting section is smaller than the flow cross-sectional area of the flow guide section. When the channel further comprises the connecting section, the connecting section and the flow guide section are smoothly connected.
6. The energy focusing assembly of claim 5, wherein, The energy focusing structure comprises:
7. The energy focusing assembly of claim 1 or 2, wherein, A flow guide cylinder, one end of the flow guide cylinder enclosing the first opening; A flow guide plate, the flow guide plate surrounding the other end of the flow guide cylinder, the outer edge of the flow guide plate enclosing the second opening, and the flow guide cylinder and the flow guide plate enclosing the channel. The side of the flow guide plate away from the cover plate is provided with a first surrounding edge, and the first surrounding edge is arranged at intervals with the edge part of the flow guide plate.
8. The energy focusing assembly of claim 7, wherein, The first surrounding edge surrounds the flow guide cylinder.
9. The energy focusing assembly of claim 8, wherein, The edge part of the cover plate has a second surrounding edge, the edge part of the flow guide plate has a third surrounding edge, and the second surrounding edge is arranged outside the third surrounding edge.
10. The energy focusing assembly of claim 8, wherein, The first surrounding edge, the third surrounding edge and the part of the flow guide plate between the first surrounding edge and the third surrounding edge are configured as a stepped structure, and the part of the flow guide plate between the first surrounding edge and the third surrounding edge is arranged opposite to the first communication part.
11. The energy focusing assembly of claim 10, wherein, The energy focusing assembly comprises:
12. A cooking appliance characterized by, The energy focusing assembly according to any one of claims 1 to 11. Further comprising:
13. The cooking appliance of claim 12, wherein, A pot body provided with a heating element; the energy focusing assembly is detachably arranged in the pot body, the outer surface of the energy focusing structure and the inner surface of the pot body enclosing a liquid storage cavity, the first opening is located between the inner bottom wall of the pot body and the second opening, the liquid storage cavity communicates with the first opening, and the heating element is used at least for supplying heat to the channel; A first carrier is detachably arranged on the first support rib of the cover plate, and at least a part of the first communication part is located on the circumferential side of the first carrier; A pot cover is detachably arranged on the pot body, and the first communication part communicates the area between the pot cover and the first carrier. Further comprising:
14. The cooking appliance of claim 13, wherein, The steamer is a cylindrical structure, which is detachably connected between the pot body and the pot cover, surrounds the first carrier, and has a second communication part. The second carrier is detachably arranged on the side of the steamer away from the pot body, the second communication part is located on the circumferential side of the second carrier, the second carrier, the steamer and the first carrier enclose a first sub-cavity, the second carrier and the pot cover enclose a second sub-cavity, the cylindrical gap communicates the first communication part and the first sub-cavity, and the second communication part communicates the first sub-cavity and the second sub-cavity.
15. The cooking appliance of claim 14, wherein, The first carrier is provided with a first overflow port which is arranged opposite to the receiving groove of the cover plate. The second carrier is provided with a second overflow port which is arranged opposite to the receiving groove of the cover plate.
16. The cooking appliance of claim 14, wherein, At least one of the first carrier and the second carrier comprises: A partition plate, a side plate connected to the outer edge of the partition plate, and a carrier groove enclosed by the partition plate and the side plate. A flange connected to the end of the side plate, the flange of the first carrier abutting against the cover plate, and / or the flange of the second carrier abutting against the steamer.
17. The cooking appliance of claim 16, wherein, The side of the partition plate facing the pot cover is provided with a plurality of support protrusions which are arranged along the diagonal direction of the partition plate.
18. The cooking appliance of claim 14, wherein, The steamer is provided with a fourth surrounding edge connected to the inner circumferential wall of the steamer and located on the side of the steamer away from the pot body. Along the circumferential direction of the steamer, a plurality of second support ribs are arranged on the side of the fourth surrounding edge away from the pot body, the second carrier abuts against the plurality of second support ribs, and the pot cover is arranged around the plurality of second support ribs. The fourth surrounding edge is provided with a plurality of through holes, any two adjacent second support ribs and the fourth surrounding edge enclose a second communication part, and the second communication part communicates the first sub-cavity and the second sub-cavity through at least one through hole.
19. The cooking appliance of claim 14, wherein, The number of the steamer and the second carrier is plural, each second carrier is matched with one steamer, and a plurality of steamer are detachably connected in sequence from the pot body to the pot cover.
20. The cooking appliance of any one of claims 13 to 19, wherein, The pot body is provided with a mounting groove which communicates the open end of the pot body. The stepped structure of the energy focusing assembly is arranged on the open end of the pot body, and the first surrounding edge of the energy focusing assembly extends into the mounting groove and abuts against the groove side wall of the mounting groove.
21. The cooking appliance of any one of claims 13 to 19, wherein, The inner bottom wall of the pot body is provided with a cylindrical groove, the flow guide cylinder of the energy focusing assembly is inserted into the cylindrical groove, and the storage cavity and the channel are communicated through the cylindrical groove.