Embedded steam oven
By implementing a flattened component design and space optimization in the built-in steam oven, the problem of insufficient space utilization in the prior art is solved, resulting in a larger cooking cavity volume and higher space utilization, while reducing production costs and ensuring circuit safety.
Patent Information
- Application Number
- CN202423288052.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing built-in steam ovens fail to maximize the use of internal space, resulting in an increase in the overall operating space when users require a larger cooking cavity, which increases operating costs and occupies kitchen space.
By flattening the internal components and optimizing the space of the steam oven, including the flat assembly of the condenser, water supply and power components, as well as the adjustment of the position of the rear air fryer and steam generator, the volume of the cooking cavity is increased while the overall volume remains unchanged.
Without increasing the overall size of the steam oven, the utilization rate of the cooking cavity volume is improved, production costs are reduced, and circuit safety and user experience are ensured.
Smart Images

Figure CN223682339U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of kitchen equipment, more particularly to a built-in steam oven. BACKGROUND
[0002] With the increasing interest in cooking, more and more steam ovens and ovens have entered the kitchen of ordinary families, but for some small kitchens, the addition of steam ovens and ovens will occupy a large amount of space volume. In this background, steam oven is favored in the market, steam oven is also called steam oven, which adds steam function on the basis of ordinary oven, has the functions of steaming and baking, and can complete food heating, thawing, baking, fermentation, barbecue and other processing functions. Through high-temperature steam cooking, it provides better food taste.
[0003] The existing built-in steam oven does not have corresponding use specifications for the internal volume, and only needs to meet the functional and performance requirements under the premise of the specified overall use environment volume, without maximizing the use of the volume of the steam oven, so that when the user needs a larger cooking cavity volume, the overall use environment volume is further increased with the increase of the volume, which squeezes the kitchen space, increases the use cost, and the user experience is not good. UTILITY MODEL CONTENT
[0004] The utility model aims at overcoming the deficiency that the prior art does not maximize the volume of the steam oven, and provides a built-in steam oven, which improves the volume utilization rate of the steam oven, and obtains a larger cooking cavity volume without increasing the overall volume of the steam oven.
[0005] To solve the above technical problems, the utility model adopts the technical scheme of:
[0006] A built-in steam oven is provided, which comprises an inner cavity assembly, a top partition plate, a top outer plate, a condensation assembly, a water supply assembly and a power supply assembly. The top partition plate and the top outer plate are arranged on the top of the inner cavity assembly. A first accommodating cavity is arranged between the top partition plate and the top outer plate. The condensation assembly, the water supply assembly and the power supply assembly are arranged in the first accommodating cavity. The condensation assembly, the water supply assembly and the power supply assembly are flatly assembled on the top partition plate. One side of the condensation assembly is connected with the power supply assembly, and the other side is connected with the water supply assembly.
[0007] The utility model discloses an embedded steam oven, is equipped with first containing cavity between top baffle and top outer plate, condensing assembly, water supply assembly and power component are all installed on the top baffle of the top of inner cavity component, and the both sides of condensing assembly are connected with power component and water supply assembly respectively, so that the flat laying assembly of flattening is kept in the first containing cavity, the volume of first containing cavity can be reduced through the height of each component on the top baffle, so as to expand the internal space of inner cavity component, the volume utilization of steam oven is improved through adjusting the internal assembly structure design of embedded steam oven, and greater cooking cavity volume is obtained without increasing the overall volume of steam oven.
[0008] Further, the height of the condensing assembly is greater than or equal to the height of the water supply assembly and the height of the power component. During assembly, the highest surface of the condensing assembly is used as the highest assembly surface, and the height of the condensing assembly is compressed to reduce the volume of the first containing cavity, thereby increasing the volume of the internal cooking cavity of the steam oven, and further improving the volume utilization.
[0009] Further, a gap is provided between the condensing assembly and the top outer plate. After assembly of the condensing assembly, sufficient space distance is reserved between the top and the top outer plate, and the condensing assembly cannot directly contact the top outer plate to avoid abnormal noise during operation of the condensing assembly.
[0010] Further, it further includes a back baffle, a back outer plate, an air frying assembly, and a steam generator, the back baffle and the back outer plate are arranged on the back of the inner cavity component, a second containing cavity is provided between the back baffle and the back outer plate, and the air frying assembly and the steam generator are arranged in the second containing cavity. A second containing cavity for accommodating the air frying assembly and the steam generator is provided between the back baffle and the back outer plate, the volume of the air frying assembly and the steam generator assembly in the back is limited to reduce the space occupied by the second containing cavity and increase the volume of the internal cooking cavity of the steam oven.
[0011] Further, the air frying assembly is arranged at the center of the back baffle, the steam generator is arranged at the bottom of the back baffle, and the height of the air frying assembly protruding from the back baffle is greater than or equal to the height of the steam generator protruding from the back baffle. The air frying assembly is arranged at the center of the back baffle, and uniform and stable high-temperature airflow is generated in the inner cavity component during cooking to provide excellent air frying cooking effect. The steam generator is arranged at the bottom of the back baffle to provide high-temperature steam for the steam oven. The longitudinal space of the steam oven is limited by the air frying assembly. The air frying assembly and the steam generator are also arranged in a flattened manner on the back baffle. The height of the air frying assembly protruding from the back baffle is greater than or equal to the height of the steam generator protruding from the back baffle, so that the end surface of the air frying assembly protruding from the back baffle is used as the highest assembly surface to further expand the volume of the internal cooking cavity of the inner cavity component.
[0012] Further, the back baffle bottom is provided with a first inner recess position, and the steam generator is arranged in the first inner recess position.
[0013] Further, the back outer plate is provided with a first outer convex position matched with the air frying assembly.
[0014] Further, the back outer plate top is provided with a second inner recess position, and the second inner recess position is provided with a power socket.
[0015] Further, the condensing assembly comprises a condensing box arranged on the top baffle, the condensing box is provided with a condensing plate at the top, a sealing ring is arranged between the condensing box and the condensing plate, the condensing box is provided with a mounting hole connected with the condensing plate, and the mounting hole is arranged outside the sealing ring.
[0016] Further, the condensing box is provided with a steam inlet, the inner cavity assembly is provided with an exhaust hole connected with the steam inlet, and a sealing pad is arranged between the steam inlet and the exhaust hole.
[0017] Compared with the prior art, the utility model has the advantages that:
[0018] 1. The volume utilization rate of the steam oven is further improved, and a larger cooking cavity volume is obtained without increasing the overall volume of the steam oven and reducing the functions of the steam oven.
[0019] 2. The assembly efficiency and production cost are considered, that is, the user's cooking cavity volume demand can be met, and the manufacturer's benefit is not reduced.
[0020] 3. Improve the sealing effect in the condensing assembly, avoid steam leakage to the inside of the steaming oven, so as to affect the overall circuit safety of the steaming oven. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 Structure diagram of the embedded steaming oven;
[0022] Figure 2 Front view of the embedded steaming oven;
[0023] Figure 3 Rear view of the embedded steaming oven;
[0024] Figure 4 Side view of the embedded steaming oven;
[0025] Figure 5 Exploded view of the top partition plate;
[0026] Figure 6 Exploded view of the back partition plate;
[0027] Figure 7 Exploded view of the embedded steaming oven;
[0028] Figure 8 Top view of the embedded steaming oven;
[0029] Figure 9 A-A sectional view in Figure 8
[0030] In the drawings: 100, inner cavity assembly; 110, second outer convex position; 111, shelf; 120, heat insulation cotton; 130, exhaust hole; 210, top partition plate; 220, top outer plate; 310, back partition plate; 311, first inner concave position; 320, back outer plate; 321, first outer convex position; 322, second inner concave position; 323, power supply jack; 400, condensing assembly; 410, condensing box; 411, mounting hole; 412, steam inlet; 413, steam outlet; 414, sealing gasket; 420, cooling fan; 430, air duct; 440, condensing plate; 450, sealing ring; 500, water supply assembly; 510, water pump; 520, water pump support; 530, water tank; 540, water tank support; 600, power supply assembly; 700, air frying assembly; 800, steam generator. DETAILED DESCRIPTION
[0031] The utility model makes further explanation in combination with specific implementation. Among them, the drawing is only for example explanation, and the representation is only the schematic diagram, and cannot be understood as the limitation to this patent; in order to better explain the embodiment of the utility model, some components of the drawing can be omitted, enlarged or reduced, and the size of actual product is not represented; for those skilled in the art, it is understandable that some well-known structures and their description in the drawing can be omitted.
[0032] The same or similar reference numerals in the drawings of the embodiments of the utility model correspond to the same or similar components; in the description of the utility model, it is understood that if the orientation or position relationship indicated by the terms "upper", "lower", "left", "right" and the like is based on the orientation or position relationship shown in the drawing, only for the convenience of describing the utility model and simplifying the description, and not indicating or implying that the device or element indicated must have a particular orientation, a particular orientation and operation, therefore the position relationship description term in the drawing is only for example explanation, and cannot be understood as the limitation to this patent, for the ordinary skilled in the art, the specific meaning of the above terms can be understood according to the specific situation.
[0033] Embodiment one
[0034] The embodiment is the first embodiment of embedded steam oven, including inner cavity subassembly 100, top baffle 210, top outer plate 220, back baffle 310, back outer plate 320, condensation subassembly 400, water supply subassembly 500, power supply subassembly 600, empty blast subassembly 700 and steam generator 800, and the top baffle 210 and the top outer plate 220 are all arranged at the top of the inner cavity subassembly 100, and the first containing cavity is equipped between the top baffle 210 and the top outer plate 220, and the back baffle 310 and the back outer plate 320 are all arranged at the back of the inner cavity subassembly 100, and the second containing cavity is equipped between the back baffle 310 and the back outer plate 320, and the condensation subassembly 400, water supply subassembly 500 and power supply subassembly 600 are all arranged in the first containing cavity, and the empty blast subassembly 700 and steam generator 800 are arranged in the second containing cavity, and the condensation subassembly 400, water supply subassembly 500 and power supply subassembly 600 are laid out and assembled on the top baffle 210, and the height of the condensation subassembly 400 is greater than or equal to the height of water supply subassembly 500 and the height of power supply subassembly 600.
[0035] As Figure 1As shown, in this embodiment of the embedded steam oven, a first accommodating cavity is provided between the top partition 210 and the top outer plate 220. The condensing component 400, the water supply component 500, and the power supply component 600 are all installed on the top partition 210 at the top of the inner cavity component 100. They are flattened and assembled in the first accommodating cavity. The height of the condensing component 400 is greater than the height of the water supply component 500 and the power supply component 600. During the assembly process, the highest surface of the condensing component 400 is used as the highest assembly surface. At the same time, the air frying component 700 is moved to the back of the inner cavity component 100. The air frying component and the steam generator 800 are installed in the second accommodating cavity between the back partition 310 and the back outer plate 320. Without affecting the function, the height of the condensing component 400 and the air frying component 700 can be further compressed, thereby further expanding the internal space of the inner cavity component 100.
[0036] In this embodiment, a gap is provided between the condenser assembly 400 and the top outer plate 220. After the condenser assembly 400 is assembled, sufficient space is reserved between the top and the top outer plate 220 to prevent direct contact between the condenser assembly 400 and the top outer plate 220, thus avoiding abnormal noise generated during the operation of the condenser assembly 400.
[0037] The air fryer assembly 700 is located at the center of the back partition 310, and the steam generator 800 is located at the bottom of the back partition 310. The height of the air fryer assembly 700 protruding from the back partition 310 is greater than or equal to the height of the steam generator 800 protruding from the back partition 310. In this embodiment, the air fryer assembly 700, located at the center of the back partition 310, generates a uniform and stable high-temperature airflow in the inner cavity assembly 100 during cooking, providing excellent air frying and baking effects. The steam generator 800, located at the bottom of the back partition 310, provides high-temperature steam to the steam oven. The longitudinal space of the steam oven is limited by the air fryer assembly 700. The air fryer assembly 700 and the steam generator 800 are also flattened on the back partition 310. The height of the air fryer assembly 700 protruding from the back partition 310 is greater than or equal to the height of the steam generator 800 protruding from the back partition 310, making the end face of the air fryer assembly 700 protruding from the back partition 310 the highest mounting surface, further expanding the volume of the cooking cavity inside the inner cavity assembly 100.
[0038] like Figure 5 As shown, the condenser assembly 400 is connected to the water supply assembly 500 on one side and to the power supply assembly 600 on the other side. The water supply assembly 500 includes a water pump 510, a water pump bracket 520 for fixing the water pump 510, a water tank 530, and a water tank bracket 540 for fixing the water tank 530. The water pump bracket 520 and the water tank bracket 540 respectively fix the water pump 510 and the water tank 530 on the top partition 210. The water pump 510 is connected to the water tank 530, and the water tank 530 is connected to the steam generator 800 through a pipeline. The water pump 510 pumps the water in the water tank 530 into the steam generator 800 for evaporation, thereby generating high-temperature steam.
[0039] like Figure 7 As shown, in this embodiment, a heat insulation cotton 120 is provided between the inner cavity assembly 100 and the top partition 210, and the heat insulation cotton 120 is in close contact with the inner cavity assembly 100. The heat insulation cotton 120 is in close contact with the inner cavity assembly 100, separating the inner cavity assembly 100 from the top partition 210, and preventing the high-temperature inner cavity assembly 100 from conducting heat to the top partition 210 and affecting the normal operation of the components on the top partition 210.
[0040] The working principle of the embedded steam oven in this embodiment is as follows: The condenser assembly 400, the water supply assembly 500, and the power supply assembly 600 are all installed on the top partition 210 on the top of the inner cavity assembly 100. They are flattened and laid out in the first accommodating cavity. The height of the condenser assembly 400 is greater than the height of the water supply assembly 500 and the power supply assembly 600. During the assembly process, the highest surface of the condenser assembly 400 is used as the highest assembly surface. At the same time, the air fryer assembly 700 is moved to the back of the inner cavity assembly 100. The air fryer assembly 700 and the steam generator 800 are installed in the second accommodating cavity between the back partition 310 and the back outer plate 320. The height of the air fryer assembly 700 protruding from the back partition 310 is greater than or equal to the height of the steam generator 800 protruding from the back partition 310.
[0041] Example 2
[0042] This embodiment is a second embodiment of an embedded steam oven. This embodiment is similar to the first embodiment, except that the bottom of the back partition 310 has a first recess 311, and the steam generator 800 is disposed in the first recess 311. In this embodiment, a recess that decreases the volume of the cooking cavity is called an inward recess; a protrusion that increases the volume of the cooking cavity is called an outward protrusion. Figure 6 As shown, the bottom of the back partition 310 is provided with a first recess 311 for installing the steam generator 800, so that the highest surface of the steam generator 800 relative to the back partition 310 is lower than the highest surface of the inner cavity assembly 100 relative to the back partition 310, thereby improving space utilization while keeping the external volume of the steam oven unchanged.
[0043] In this embodiment, the outer back plate 320 has a first outward protrusion 321 at its center that mates with the airburst assembly 700. For example... Figure 3 As shown, in order to save installation space, the outer back plate 320 is made to protrude outward at the installation position of the air-blast assembly 700, and a first protrusion 321 is designed to cooperate with the air-blast assembly 700, so that the air-blast assembly 700 can be as close as possible to the outer back plate 320, releasing the depth space of the inner cavity.
[0044] The top of the back outer plate 320 is provided with a second inner recessed position 322, and a power socket 323 is arranged in the second inner recessed position 322. Figure 3 As shown in the figure, in order to avoid the interference of the power socket in the installation process of the embedded steam oven, the second inner recessed position 322 is arranged on the back outer plate 320, the power cord on the power socket is connected with the power supply assembly 600 through the power socket 323, and the normal installation of the air frying assembly 700 is not affected.
[0045] The steam oven in the embodiment further comprises a steam baking tray, as shown in the figures. Figure 2 、 Figure 4 As shown in the figures, the side wall of the inner cavity assembly 100 is provided with a second outer protruding position 110, and a shelf 111 for installing the steam baking tray is arranged in the second outer protruding position 110. The side wall of the inner cavity assembly 100 is processed to be outwardly protruding, and the design of the second outer protruding position 110 makes the shelf 111 for installing the steam baking tray not all protrude from the inside of the inner cavity assembly 100, so as to not occupy too much cooking cavity space and increase the volume utilization rate of the cooking cavity.
[0046] The working principle of the embedded steam oven in the embodiment is as follows: the bottom of the back partition plate 310 is provided with a first inner recessed position 311, the steam generator 800 is arranged in the first inner recessed position 311; the center of the back outer plate 320 is provided with a first outer protruding position 321 matched with the air frying assembly 700; the top of the back outer plate 320 is provided with a second inner recessed position 322; and the side wall of the inner cavity assembly 100 is provided with a second outer protruding position 110.
[0047] Embodiment three
[0048] The third embodiment of the embedded steam oven, which is similar to the first embodiment, is different from the first embodiment in that the condensation assembly 400 comprises a condensation box 410 arranged on the top partition plate 210, a cooling fan 420 and an air duct 430, the condensation box 410 is provided with a steam inlet 412 and a steam outlet 413, the steam outlet 413 is communicated with the air duct 430, the cooling fan 420 is communicated with the air duct 430, the inner cavity assembly 100 is provided with an exhaust hole 130 connected with the steam inlet 412, and a sealing gasket 414 is arranged between the steam inlet 412 and the exhaust hole 130. The high-temperature steam in the inner cavity assembly 100 is cooled by the cooling fan 420 and then communicated with the external air, so as to prevent the hot air flow from harming the human body. The sealing structure between the exhaust hole 130 and the steam inlet 412 is particularly important, and this position is the only passage for the steam to enter the condensation box 410. If there is no sealing structure design, a large amount of condensed water and water vapor will leak from this position, which affects the electrical safety of the whole oven. The sealing gasket 414 arranged between the steam inlet 412 and the exhaust hole 130 can prevent the steam from leaking into the inside of the steam oven.
[0049] The top of the condensing box 410 is provided with a condensing plate 440, the condensing plate 440 and the condensing box 410 are provided with a sealing ring 450, the edge of the condensing box 410 is provided with a mounting hole 411 connected with the condensing plate 440, and the mounting hole 411 is arranged outside the sealing ring 450.
[0050] The working principle of the embedded steam oven in the embodiment is as follows: the condensing box 410 is provided with a steam inlet 412 and a steam outlet 413, the steam outlet 413 is communicated with the air duct 430, the cooling fan 420 is communicated with the air duct 430, and the sealing pad 414 is arranged between the steam inlet 412 and the exhaust hole 130.
[0051] In the specific content of the above specific embodiments, any non-contradictory combination of technical features can be combined, and in order to make the description simple, all possible combinations of the above technical features are not described, however, as long as the combination of the technical features does not exist, it should be considered that it is within the scope of the present application.
[0052] Obviously, the above embodiments of the present application are only examples for clearly illustrating the present application, and are not intended to limit the embodiments of the present application. For ordinary skilled in the art, on the basis of the above description, other different forms of changes or variations can be made. Here, it is not necessary and impossible to enumerate all the embodiments. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. An embedded steam oven, characterized by, The utility model provides an air fryer, including inner chamber component (100), top partition (210), top outer plate (220), condensation component (400), water supply component (500) and power component (600), top partition (210) and top outer plate (220) are arranged at the top of inner chamber component (100), and first accommodating cavity is equipped between top partition (210) and top outer plate (220), condensation component (400), water supply component (500) and power component (600) are arranged in first accommodating cavity, and condensation component (400), water supply component (500) and power component (600) are laid out on top partition (210), one side of condensation component (400) is connected with power component (600), and the other side is connected with water supply component (500).
2. The built-in steam oven according to claim 1, characterized in that, The height of the condensation component (400) is greater than or equal to the height of the water supply component (500) and the height of the power component (600).
3. The built-in steam oven according to claim 1, characterized in that, A gap is provided between the condensation component (400) and the top outer plate (220).
4. The built-in steam oven of claim 1, wherein, The utility model also includes back partition (310), back outer plate (320), air frying component (700) and steam generator (800), back partition (310) and back outer plate (320) are arranged at the back of the inner chamber component (100), a second accommodating cavity is provided between the back partition (310) and the back outer plate (320), and the air frying component (700) and the steam generator (800) are arranged in the second accommodating cavity.
5. The built-in steam oven according to claim 4, characterized in that, The air frying component (700) is arranged at the center of the back partition (310), the steam generator (800) is arranged at the bottom of the back partition (310), and the height of the air frying component (700) protruding from the back partition (310) is greater than or equal to the height of the steam generator (800) protruding from the back partition (310).
6. The built-in steam oven of claim 4, wherein, The bottom of the back partition (310) is provided with a first inner recess (311), and the steam generator (800) is arranged in the first inner recess (311).
7. The built-in steam oven according to claim 4, characterized in that, The center of the back outer plate (320) is provided with a first outer protrusion (321) matched with the air frying component (700).
8. The built-in steam oven of claim 4, wherein, The top of the back outer plate (320) is provided with a second inner recess (322), and a power supply jack (323) is arranged in the second inner recess (322).
9. The built-in steam oven according to any one of claims 1 to 8, characterized in that, The condensation component (400) includes a condensation box (410) arranged on the top partition (210), the top of the condensation box (410) is provided with a condensation plate (440), a sealing ring (450) is arranged between the condensation plate (440) and the condensation box (410), the edge of the condensation box (410) is provided with a mounting hole (411) connected with the condensation plate (440), and the mounting hole (411) is arranged outside the sealing ring (450).
10. The built-in steam oven according to claim 9, characterized in that, The condensing box (410) is provided with a steam inlet (412), the inner cavity assembly (100) is provided with an exhaust hole (130) connected with the steam inlet (412), and a sealing gasket (414) is arranged between the steam inlet (412) and the exhaust hole (130).