Condenser, cooking equipment and integrated cooker

By designing a condenser for integrated stoves and using heat exchange technology to condense high-temperature steam, the problem of poor steam emissions in integrated stoves is solved, and the suction and discharge effect and user experience are improved.

CN222898921UActive Publication Date: 2025-05-27VATTI CORP LTD
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Patent Information

Application Number
CN202421368383.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-17
Publication Date
2025-05-27
Estimated Expiration
2034-06-17

AI Technical Summary

Technical Problem

The steam oven in the existing integrated stove has poor high-temperature steam emissions, resulting in some steam overflowing on the kitchen walls and cannot be absorbed and discharged in time when the hood fails, affecting the user experience.

Method used

A condenser is designed, including a housing, a first condensing assembly, a second condensing assembly and an air intake portion, and condenses high-temperature steam through heat exchange to reduce emissions.

Benefits of technology

It effectively reduces the overflow of high-temperature steam in cooking equipment, improves the steam absorption and discharge effect, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a condenser, cooking equipment and an integrated cooker. The condenser comprises a shell, a first condensation cavity and a second condensation cavity which are communicated with each other are formed in the shell, the lower portion of the first condensation cavity and the lower portion of the second condensation cavity are used for storing condensate, and exhaust holes are formed in the upper side of the shell. The first condensation assembly is arranged in the first condensation cavity; the second condensation assembly is arranged in the second condensation cavity, and the exhaust hole is located above the second condensation assembly; and the air inlet part is installed on the shell and communicates with the first condensation cavity and the lower portion of the shell, and the upper end of the air inlet part is located on the upper portion of the first condensation cavity. The condenser provided by the utility model is simple in structure, has a better condensation effect, and can enable the cooking equipment to discharge high-temperature steam without a range hood.
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Description

Technical Field

[0001] The utility model relates to the technical field of kitchen appliances, in particular to a condenser, a cooking device and an integrated stove. Background Art

[0002] In the existing integrated stove, the high-temperature steam of the steam oven is discharged upward from the cooking range and then exhausted by the range hood. However, the smoke collecting hood of the range hood is always at a certain distance from the high-temperature steam exhaust hole provided on the cooking range, so that part of the high-temperature steam will diffuse to the kitchen wall, resulting in poor suction and exhaust effect of the high-temperature steam. When the range hood fails or the range hood and stove linkage fails, the steam will not be sucked and exhausted in time, and the user experience is poor.

[0003] Therefore, there is an urgent need for a condenser to solve the above problems. Summary of the Utility Model

[0004] The utility model aims to solve at least one of the problems existing in the related art to a certain extent. For this purpose, the utility model provides a condenser with a simple structure, good condensation effect and capable of reducing the discharge of high-temperature steam by a cooking device.

[0005] The above object is achieved by the following technical solutions:

[0006] A condenser, comprising:

[0007] A housing, inside which a first condensation chamber and a second condensation chamber are communicated with each other. The lower parts of the first condensation chamber and the second condensation chamber are used for storing condensate. An exhaust hole is opened on the upper side of the housing;

[0008] A first condensation assembly, arranged in the first condensation chamber;

[0009] A second condensation assembly, arranged in the second condensation chamber. The exhaust hole is located above the second condensation assembly;

[0010] An air inlet part, installed on the housing and communicating the first condensation chamber and the lower part of the housing. The upper end of the air inlet part is located in the upper part of the first condensation chamber.

[0011] Optionally, an air inlet chamber is arranged in the middle of the first condensation chamber, and the air inlet part is communicated with the air inlet chamber.

[0012] Optionally, the first condensation assembly includes a plurality of first condensation sheets extending in the front-back direction. Adjacent two first condensation sheets are spaced and arranged in parallel. The first condensation sheet includes a first condensation sheet body. A first air passage is opened in the upper part of the first condensation sheet body, and a first liquid passage is opened in the lower part of the first condensation sheet body.

[0013] Optionally, two adjacent first air passing channels are arranged staggeredly.

[0014] Optionally, the second condensation assembly includes a plurality of second condensation sheets arranged in the left - right direction. Two adjacent second condensation sheets are spaced and arranged in parallel. The second condensation sheet includes a second condensation sheet body. A second air passing channel is formed in the upper part of the second condensation sheet body, and a second liquid passing channel is formed in the lower part of the second condensation sheet body.

[0015] Optionally, the first liquid passing channels of two adjacent first condensation sheets are arranged oppositely, and the second liquid passing channels of two adjacent second condensation sheets are arranged oppositely.

[0016] Optionally, the housing includes a lower housing structure and an upper cover detachably connected to the lower housing structure. A first condensation cavity and a second condensation cavity are formed by the covering between the lower housing structure and the upper cover. The air inlet portion extends upward through the lower housing structure and into the upper part of the first condensation cavity.

[0017] Optionally, the lower housing structure includes:

[0018] A bottom shell, including a bottom shell body and a receiving cavity formed in the bottom shell body;

[0019] A liquid storage box placed in the receiving cavity. The liquid storage box includes a box body. A condensation cavity is formed in the box body. A first partition and a second partition are arranged in the condensation cavity. The second partition extends in the left - right direction to divide the condensation cavity into the first condensation cavity and the second condensation cavity. The first partition extends in the front - rear direction in the middle of the first condensation cavity to divide the middle part of the first condensation cavity into an air inlet cavity. Spaces are formed between the left end and the right end of the second partition and the inner wall of the box body to form a passageway.

[0020] Optionally, a sealing ring is further included and is arranged between the upper cover and the lower housing structure.

[0021] On the other hand, the present utility model provides a cooking device, including a cooking inner pot and the above - mentioned condenser. One end of the air inlet portion located outside the housing is communicated with the cooking inner pot.

[0022] On yet another aspect, the present utility model provides an integrated stove, which is characterized by including a gas stove and the above - mentioned cooking device. The condenser is arranged on the stove top of the gas stove and behind the burner of the gas stove.

[0023] Compared with the prior art, the present utility model has at least the following beneficial effects:

[0024] The condenser provided by the present utility model comprises a housing, a first condensation assembly, a second condensation assembly and an air inlet portion. A first condensation chamber and a second condensation chamber which are in communication with each other are arranged inside the housing. The lower portions of the first condensation chamber and the second condensation chamber are used for storing condensate. An exhaust hole is formed in the upper side of the housing. The first condensation assembly is arranged inside the first condensation chamber. The second condensation assembly is arranged inside the second condensation chamber, and the exhaust hole is located above the second condensation assembly. The air inlet portion is mounted on the housing and communicates the first condensation chamber with the lower portion of the housing, and the upper end of the air inlet portion is located in the upper portion of the first condensation chamber. High-temperature steam enters the upper portion of the first condensation chamber through the air inlet portion, flows through the first condensation assembly and the second condensation assembly in sequence, and exchanges heat with the condensate located in the lower portions of the first condensation chamber and the second condensation chamber, so that the high-temperature steam is condensed. Finally, the gas is discharged from the exhaust hole located above the second condensation assembly. The structure is simple, and through the condensation of the first condensation assembly and the second condensation assembly in sequence, a good condensation effect is achieved. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 FIG. 6 is a schematic perspective view of the condenser provided by a specific embodiment of the present utility model;

[0026] Figure 2 FIG. 10 is a schematic perspective view of the condenser provided by a specific embodiment of the present utility model after removing the upper cover;

[0027] Figure 3 FIG. Figure 2 is a top view of

[0028] Figure 4 FIG. Figure 2 is an exploded view of

[0029] Figure 5 FIG. 26 is a schematic structural view of the first condensation fin of the condenser provided by a specific embodiment of the present utility model;

[0030] Figure 6 FIG. 30 is a schematic structural view of the second condensation fin of the condenser provided by a specific embodiment of the present utility model.

[0031] In the figures:

[0032] 1. Housing; 11. Lower housing structure; 111. Bottom shell; 1110. Bottom shell body; 10. Accommodation cavity; 112. Liquid storage box; 1120. Box body; 1121. First partition; 1122. Second partition; 1123. First card slot; 1124. Second card slot; 12. Upper cover; 121. Exhaust hole;

[0033] 2. Air inlet portion;

[0034] 3. First condensation fin; 31. First condensation fin body; 32. First liquid passage; 33. First air passage;

[0035] 4. Second condensing sheet; 41. Second condensing sheet body; 42. Second liquid passage; 43. Second air passage;

[0036] 51. First magnetic member; 52. Second magnetic member;

[0037] 100. First condensing chamber; 200. Second condensing chamber; 300. Intake chamber; 400. Passageway. Detailed implementation manners

[0038] The following embodiments are used to illustrate the present utility model, but the present utility model is not limited by these embodiments. Modifying the specific implementation manners of the present utility model or equivalently replacing some technical features without departing from the spirit of the solution of the present utility model shall all be covered within the scope of the technical solution claimed by the present utility model.

[0039] Please refer to Figures 1 - 6 , the present utility model provides a condenser, which includes a housing 1, a first condensing assembly, a second condensing assembly and an intake part 2. A first condensing chamber 100 and a second condensing chamber 200 which are communicated with each other are arranged inside the housing 1. The lower parts of the first condensing chamber 100 and the second condensing chamber 200 are used for storing condensate. An exhaust hole 121 is formed in the upper side of the housing 1. The first condensing assembly is arranged in the first condensing chamber 100. The second condensing assembly is arranged in the second condensing chamber 200, and the exhaust hole 121 is located above the second condensing assembly. The intake part 2 is installed on the housing 1 and communicates the first condensing chamber 100 and the lower part of the housing 1, and the upper end of the intake part 2 is located in the upper part of the first condensing chamber 100. High-temperature steam enters the upper part of the first condensing chamber 100 through the intake part 2, flows through the first condensing assembly and the second condensing assembly in sequence, and exchanges heat with the condensate located in the lower parts of the first condensing chamber 100 and the second condensing chamber 200, so that the high-temperature steam is condensed, and finally the gas is discharged from the exhaust hole 121 located above the second condensing assembly. The structure is simple, and the condensate passes through the first condensing assembly and the second condensing assembly in sequence, having a good condensing effect.

[0040] Optionally, an intake chamber 300 is arranged in the middle of the first condensing chamber 100, and the intake part 2 is communicated with the intake chamber 300, so that after the high-temperature steam comes out of the intake chamber 300, it can flow towards the first condensing assemblies located on both sides of the intake chamber 300 respectively, thereby realizing the shunt of the high-temperature steam and accelerating the condensing speed.

[0041] Optionally, the first condensation component includes a plurality of first condensation fins 3 arranged to extend in the front-rear direction. Adjacent first condensation fins 3 are spaced apart and arranged in parallel. The first condensation fin 3 includes a first condensation fin body 31. A first air passage 33 is formed in the upper part of the first condensation fin body 31 to facilitate the high-temperature steam to flow through the plurality of first condensation fins 3 in sequence. A first liquid passage 32 is formed in the lower part of the first condensation fin body 31 to facilitate the condensed liquid to flow in the first condensation chamber 100 via the first liquid passage 32, so as to accelerate the condensation speed.

[0042] Optionally, the adjacent first air passages 33 are arranged in a staggered manner to increase the flow length of the high-temperature steam and improve the condensation effect.

[0043] Optionally, the second condensation component includes a plurality of second condensation fins 4 arranged in the left-right direction. Adjacent second condensation fins 4 are spaced apart and arranged in parallel. The second condensation fin 4 includes a second condensation fin body 41. A second air passage 43 is formed in the upper part of the second condensation fin body 41 to facilitate the high-temperature steam to flow through the plurality of second condensation fins 4 in sequence. A second liquid passage 42 is formed in the lower part of the second condensation fin body 41 to facilitate the condensed liquid to flow in the second condensation chamber 200 via the second liquid passage 42, so as to accelerate the condensation speed.

[0044] Optionally, the first liquid passages 32 of the adjacent first condensation fins 3 are arranged oppositely to accelerate the flow of the condensed liquid in the first condensation chamber 100, and the second liquid passages 42 of the adjacent second condensation fins 4 are arranged oppositely to accelerate the flow of the condensed liquid in the second condensation chamber 200.

[0045] Optionally, the housing 1 includes a lower housing structure 11 and an upper cover 12 detachably connected to the lower housing structure 11. The first condensation chamber 100 and the second condensation chamber 200 are formed by covering between the lower housing structure 11 and the upper cover 12. The air inlet portion 2 extends through the lower housing structure 11 from bottom to top and reaches the upper part of the first condensation chamber 100. After the user detaches the upper cover 12, the condensed water in the lower housing structure 11 can be poured out to prevent the condensed water from overflowing from the housing.

[0046] Optionally, the lower housing structure 11 includes a bottom housing 111 and a liquid storage box 112. The bottom housing 111 includes a bottom housing body 1110 and a receiving cavity 10 formed in the bottom housing body 1110. The liquid storage box 112 is placed in the receiving cavity 10. The liquid storage box 112 includes a box body 1120. A condensation cavity is formed in the box body 1120. A first partition 1121 and a second partition 1122 are arranged in the condensation cavity. The second partition 1122 extends in the left-right direction to divide the condensation cavity into a first condensation cavity 100 and a second condensation cavity 200. The first partition 1121 extends in the front-back direction in the middle of the first condensation cavity 100 to divide the middle part of the first condensation cavity 100 into an air inlet cavity 300. Both the left end and the right end of the second partition 1122 are spaced from the inner wall of the box body 1120 to form a passage 4, so that the high-temperature steam flows from the first condensation cavity 100 to the second condensation cavity 200 through the passages 4 located at both ends of the second partition 1122, and at the same time, it is beneficial for the condensate to flow between the first condensation cavity 100 and the second condensation cavity 200. After the user opens the upper cover 12, only the liquid storage box 112 needs to be taken out and the condensate water in the liquid storage box 112 can be poured out.

[0047] Specifically, in this embodiment, the high-temperature steam flows from the first condensation cavity 100 to the second condensation cavity 200 along Figure 3 the direction indicated by arrow a in the figure.

[0048] It should be noted that to ensure that the cooking device can achieve condensation during operation, the user needs to ensure whether there is enough condensate in the liquid storage box 112 before cooking.

[0049] Optionally, in this embodiment, the condensate is water.

[0050] Optionally, both the first condensation fin 3 and the second condensation fin 4 are aluminum sheets. The aluminum sheet has a good heat conduction effect to accelerate the heat exchange effect.

[0051] Optionally, a first card slot 1123 located in the first condensation cavity 100 and a second card slot 1124 located in the second condensation cavity 200 are further arranged at the bottom of the box body 1120. The lower part of the first condensation fin 3 is clamped in the first card slot 1123, and the lower part of the second condensation fin 4 is clamped in the second card slot 1124.

[0052] Optionally, it further includes a sealing ring (not shown in the figure). The sealing ring is arranged between the upper cover 12 and the lower housing structure 11 to seal the gap between the upper cover 12 and the lower housing structure 11 and prevent the high-temperature steam from overflowing outside the condenser without condensation through this gap.

[0053] Optionally, the lower housing structure 11 and the upper cover 12 are detachably connected through a magnetic structure.

[0054] Further, a first magnetic member 51 is provided on the upper cover 12, and a second magnetic member 52 magnetically coupled with the first magnetic member 51 is provided at the upper end of the lower housing structure 11.

[0055] On the other hand, the present utility model provides a cooking device, including a cooking inner pot and the above-mentioned condenser. One end of the air inlet portion 2 located outside the outer shell 1 is communicated with the cooking inner pot, so that the high-temperature steam in the cooking inner pot can flow into the condenser for condensation.

[0056] On yet another aspect, the present utility model provides an integrated stove, which is characterized in that it includes a gas stove and the above-mentioned cooking device. The condenser is arranged on the stove top of the gas stove and behind the burner of the gas stove, thereby avoiding the condenser from interfering with the user's cooking operation.

[0057] The above are only some embodiments of the present utility model. For those of ordinary skill in the art, without departing from the creative concept of the present utility model, several deformations and improvements can still be made, and these all belong to the protection scope of the present utility model.

Claims

1. A condenser, characterized in that: include: A shell (1) having a first condensation chamber (100) and a second condensation chamber (200) connected to each other arranged therein, the lower parts of the first condensation chamber (100) and the second condensation chamber (200) being used to store condensate, and an exhaust hole (121) being provided on the upper side of the shell (1); A first condensing component, disposed in the first condensing chamber (100); A second condensing component is arranged in the second condensing chamber (200), and the exhaust hole (121) is located above the second condensing component; An air inlet portion (2) is mounted on the outer shell (1) and is in communication with the first condensation chamber (100) and the lower portion of the outer shell (1); the upper end of the air inlet portion (2) is located at the upper portion of the first condensation chamber (100).

2. The condenser according to claim 1, characterized in that An air inlet cavity (300) is provided in the middle of the first condensation cavity (100), and the air inlet portion (2) is in communication with the air inlet cavity (300).

3. The condenser according to claim 2, characterized in that: The first condensation component includes a plurality of first condensation sheets (3) extending in the front-to-back direction, and two adjacent first condensation sheets (3) are spaced apart and arranged in parallel. The first condensation sheet (3) includes a first condensation sheet body (31), and a first air passage (33) is provided at the upper portion of the first condensation sheet body (31), and a first liquid passage (32) is provided at the lower portion of the first condensation sheet body (31).

4. The condenser according to claim 3, characterized in that Two adjacent first air passages (33) are arranged alternately.

5. The condenser according to claim 3, characterized in that: The second condensation component includes a plurality of second condensation sheets (4) arranged in the left-right direction, and two adjacent second condensation sheets (4) are spaced apart and arranged in parallel. The second condensation sheet (4) includes a second condensation sheet body (41), and a second air passage (43) is provided at the upper portion of the second condensation sheet body (41), and a second liquid passage (42) is provided at the lower portion of the second condensation sheet body (41).

6. The condenser according to claim 5, characterized in that The first liquid passages (32) of two adjacent first condensing sheets (3) are arranged opposite to each other, and the second liquid passages (42) of two adjacent second condensing sheets (4) are arranged opposite to each other.

7. The condenser according to any one of claims 2 to 6, characterized in that: The housing (1) comprises a lower shell structure (11) and an upper cover (12) detachably connected to the lower shell structure (11); the lower shell structure (11) and the upper cover (12) are covered to form the first condensation chamber (100) and the second condensation chamber (200); and the air inlet (2) passes through the lower shell structure (11) from bottom to top and extends into the upper part of the first condensation chamber (100).

8. The condenser according to claim 7, characterized in that The lower shell structure (11) comprises: The bottom shell (111) comprises a bottom shell body (1110) and a receiving cavity (10) provided in the bottom shell body (1110); A liquid storage box (112) is placed in the accommodating cavity (10), the liquid storage box (112) comprises a box body (1120), a condensation cavity is opened in the box body (1120), a first partition (1121) and a second partition (1122) are arranged in the condensation cavity, the second partition (1122) is extended in the left-right direction to separate the condensation cavity into the first condensation cavity (100) and the second condensation cavity (200), the first partition (1121) is extended in the front-back direction and arranged in the middle of the first condensation cavity (100) to separate the middle part of the first condensation cavity (100) into the air inlet cavity (300), and the left end and the right end of the second partition (1122) are spaced from the inner wall of the box body (1120) to form a passage (400).

9. The condenser according to claim 7, characterized in that: It also comprises a sealing ring, which is arranged between the upper cover (12) and the lower shell structure (11).

10. A cooking device, characterized in that: It comprises a cooking liner and a condenser according to any one of claims 1 to 9, wherein one end of the air inlet (2) located outside the outer shell (1) is connected to the cooking liner.

11. An integrated stove, characterized in that: The cooking device comprises a gas stove and the cooking device according to claim 10, wherein the condenser is arranged on the stovetop of the gas stove and is located behind the burner of the gas stove.