Kitchen air conditioner

By installing a movable baffle and a fresh air module at the smoke inlet of the kitchen air conditioner, and using the fresh air outlet to form an airflow barrier, the problem of oil fumes spreading to users is solved, achieving more efficient oil fume absorption and improving kitchen air quality.

CN223882471UActive Publication Date: 2026-02-06HANGZHOU ROBAM APPLIANCES CO LTD
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Patent Information

Application Number
CN202423187915.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-02-06
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The kitchen air conditioner's smoke extraction vent cannot completely cover the flow range of cooking fumes, causing some fumes to flow to the user's location, resulting in poor smoke extraction performance.

Method used

A movable baffle is installed at the smoke inlet. When the baffle is in the open state, its first surface faces the smoke inlet and its second surface faces the fresh air outlet. The air blown out of the fresh air outlet forms an airflow barrier, preventing the oil fumes from spreading to the user. The oil fumes are restricted in their path and are sucked into the smoke inlet.

Benefits of technology

It improves the fume extraction effect of kitchen air conditioners, reduces the spread of fumes, improves the air quality of the cooking environment, and provides clean and healthy cooking conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a kitchen air conditioner, and relates to the technical field of kitchen electric appliances. The kitchen air conditioner comprises a shell and a fresh air module. The shell is provided with a smoke suction cavity which is provided with a smoke suction opening. The fresh air module is arranged on the shell and provided with a fresh air outlet. The shell is provided with a movable baffle to close or open the smoke suction port; when the baffle is opened, the first surface of the baffle faces the smoke suction port, and the second surface of the baffle faces the fresh air outlet. According to the kitchen air conditioner provided by the embodiment of the invention, the oil smoke suction effect of the kitchen air conditioner is improved, and the problem that a smoke suction port of the kitchen air conditioner cannot completely cover the flowing range of oil smoke, so that part of oil smoke flows to a user can be solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of kitchen appliances, in particular to a kitchen air conditioner. BACKGROUND

[0002] The kitchen air conditioner is a kitchen appliance specially designed for the kitchen environment, aiming to solve the problems of high temperature, high humidity and high oil fume in the kitchen.

[0003] The kitchen air conditioner is provided with a smoke suction port. During the user's cooking process, the smoke suction port can absorb the oil fume generated in the cooking process to reduce the possibility of the user inhaling the oil fume. However, the smoke suction port of the kitchen air conditioner usually cannot completely cover the flow range of the oil fume, and part of the oil fume may flow to the user, and the oil fume suction effect of the kitchen air conditioner is poor. UTILITY MODEL CONTENT

[0004] The embodiments of the present application provide a kitchen air conditioner to solve the problem that the smoke suction port of the kitchen air conditioner cannot completely cover the flow range of the oil fume, resulting in part of the oil fume flowing to the user, and improve the oil fume suction effect of the kitchen air conditioner.

[0005] The embodiments of the present application provide a kitchen air conditioner, comprising a shell and a fresh air module;

[0006] The shell is provided with a smoke suction cavity, and the smoke suction cavity has a smoke suction port;

[0007] The fresh air module is arranged on the shell, and the fresh air module is provided with a fresh air outlet;

[0008] The shell is provided with a movable baffle to close or open the smoke suction port;

[0009] When the baffle is in the open state, the first surface of the baffle faces the smoke suction port, and the second surface of the baffle faces the fresh air outlet.

[0010] As an optional implementation, when the baffle is in the open state, the air outlet direction of the fresh air outlet is arranged to be parallel to the extension direction of the second surface of the baffle.

[0011] Alternatively, when the baffle is in the open state, the air outlet direction of the fresh air outlet is arranged to be parallel to the extension direction of the second surface of the baffle.

[0012] As an optional implementation, the shell is provided with a partition plate, the partition plate is located above the baffle, and the partition plate is provided with a ventilation port;

[0013] The fresh air module is arranged on the partition plate, the fresh air outlet is arranged opposite to the ventilation port, and the fresh air outlet of the fresh air module is arranged to blow air through the ventilation port.

[0014] As an optional implementation, the baffle is rotatably arranged on the width direction of the shell.

[0015] The ventilation opening is arranged in parallel with the width direction of the shell.

[0016] As an optional implementation, the partition plate is provided with a mounting portion, which is arranged above the partition plate.

[0017] The baffle is provided with a connecting piece, a first end of the connecting piece is rotatably connected with the mounting portion, and a second end of the connecting piece is fixedly connected with the baffle.

[0018] As an optional implementation, the distance between the top end of the baffle and the ventilation opening when the baffle is in the open state is less than the distance between the top end of the baffle and the ventilation opening when the baffle is in the closed state.

[0019] As an optional implementation, the partition plate has a front end facing the user and a rear end away from the user.

[0020] The front end of the partition plate is provided with a control panel, which extends along the width direction of the shell.

[0021] As an optional implementation, the control panel includes a first control portion, a first end of the first control portion is connected with the partition plate, and a second end of the first control portion extends downward along the height direction of the shell.

[0022] As an optional implementation, the shell is provided with a mounting plate, which is arranged in parallel with the partition plate along the height direction of the shell.

[0023] The mounting plate is arranged above the partition plate, and the mounting plate is connected with the fresh air module.

[0024] As an optional implementation, the fresh air module includes an air guide channel, which is arranged between the mounting plate and the partition plate, and a bottom end of the air guide channel is provided with the fresh air outlet.

[0025] The kitchen air conditioner provided by the embodiment of the present application comprises a shell, the shell is provided with a smoke suction cavity, the smoke suction cavity is provided with a smoke suction port, the smoke suction port can capture and absorb the oil fume generated in the cooking process, and the spread of the oil fume in the kitchen is reduced. The shell is provided with a movable baffle, the baffle can adjust the opening and closing state of the smoke suction port according to the need, so that the oil fume absorption effect is optimized. The kitchen air conditioner further comprises a fresh air module, the fresh air module is arranged on the shell, the fresh air module is provided with a fresh air outlet, and the fresh air module can blow air through the fresh air outlet. When the baffle is in the open state, the first surface of the baffle faces the smoke suction port, and the second surface of the baffle faces the fresh air outlet, so that the air blown out of the fresh air outlet can form an air flow barrier on the second surface of the baffle. The air flow barrier can block the oil fume which tries to spread to the position of the user by passing through the baffle, the moving path of the oil fume which contacts the air flow barrier is limited, and the oil fume is more easily sucked into the smoke suction port, so that the oil fume absorption effect is improved. BRIEF DESCRIPTION OF DRAWINGS

[0026] The drawings incorporated into the specification and constituting a part of the specification show embodiments consistent with the present application and, together with the specification, serve to explain the principles of the present application.

[0027] Figure 1 The structural schematic diagram of the kitchen air conditioner provided by the embodiment of the present application is shown in the figure.

[0028] Figure 2 The structural schematic diagram of the kitchen air conditioner provided by the embodiment of the present application is shown in the figure. Figure 1 The internal structure schematic diagram of the kitchen air conditioner is shown in the figure. Figure 1 ; The structural schematic diagram of the kitchen air conditioner provided by the embodiment of the present application is shown in the figure.

[0029] Figure 3 The structural schematic diagram of the kitchen air conditioner provided by the embodiment of the present application is shown in the figure.

[0030] Figure 4 The structural schematic diagram of the kitchen air conditioner provided by the embodiment of the present application is shown in the figure. Figure 1 The internal structure schematic diagram of the kitchen air conditioner is shown in the figure. Figure 2 ; The structural schematic diagram of the kitchen air conditioner provided by the embodiment of the present application is shown in the figure.

[0031] Figure 5 The structural schematic diagram of the kitchen air conditioner provided by the embodiment of the present application is shown in the figure. Figure 4 The structural schematic diagram of the kitchen air conditioner provided by the embodiment of the present application is shown in the figure.

[0032] Figure 6 The connection structure schematic diagram of the fresh air module and the mounting plate in the kitchen air conditioner provided by the embodiment of the present application is shown in the figure.

[0033] Explanation of reference signs:

[0034] 100-Shell; 101-Smoke suction cavity; 1011-Smoke suction port; 1012-Smoke exhaust port; 102-Air conditioner cold cavity;

[0035] 110-Baffle; 111-Connecting piece;

[0036] 120-Separating plate; 121-Vent; 122-Mounting portion;

[0037] 130 - mounting plate

[0038] 200 - fresh air module

[0039] 210 - air guide channel; 211 - fresh air outlet

[0040] 220 - fresh air duct

[0041] 230 - fresh air fan; 231 - air inlet end

[0042] 300 - control panel

[0043] 310 - first control unit

[0044] The specific embodiments of the application have been shown by way of example in the above figures, and will be described in more detail hereafter. These figures and this written description are not intended to limit the scope of the inventive concept in any way, but are merely to illustrate specific embodiments of the inventive concept to a person skilled in the art by way of reference to a particular embodiment. DETAILED DESCRIPTION

[0045] The exemplary embodiments will be described in detail herein with reference to the attached drawings. In the following description, like reference numerals refer to like elements, unless the context clearly dictates otherwise. The following exemplary embodiments are described in enough detail to enable those skilled in the art to make and use it. The embodiments described herein are not meant to be limiting in any way, but merely to be illustrative of the present application. It should be noted that for the sake of brevity, many functional aspects of the application will not be described in detail.

[0046] As described in the background section, a kitchen air conditioner is a kitchen appliance specially designed for the kitchen environment, aiming to solve the problems of high temperature, high humidity and high oil fume in the kitchen.

[0047] The kitchen air conditioner is provided with a smoke suction port. During the user's cooking process, the smoke suction port can absorb the oil fume generated during the cooking process to reduce the possibility of the user inhaling the oil fume. Since the oil fume has diffusivity and fluidity, and the flow of the oil fume in the kitchen is complex and difficult to predict, the smoke suction port of the kitchen air conditioner cannot completely cover the flow range of the oil fume, and part of the oil fume may flow to the position where the user is located, and the oil fume suction effect of the kitchen air conditioner is poor.

[0048] In order to solve the problem of oil fume escaping, a movable baffle can be arranged at the smoke suction port. During the process of sucking oil fume at the smoke suction port, the baffle can be inclined to shield between the user and the smoke suction port. On the one hand, the baffle can gather the smoke to promote the flow of the oil fume to the smoke suction port; on the other hand, the baffle can also serve as a protective barrier between the user and the smoke suction port, avoiding the user facing the smoke suction port directly, thereby reducing the possibility of the user inhaling the oil fume.

[0049] However, when the user is cooking, a large amount of oil fume is generated, and part of the oil fume still spreads and escapes to the user's location through the bottom of the baffle, affecting the use experience.

[0050] To solve the above technical problems, the embodiments of the present application provide a kitchen air conditioner, which comprises a shell, the shell is provided with a smoke suction cavity, the smoke suction cavity has a smoke suction port, the smoke suction port can capture and absorb oil fume generated during cooking, and the spread of the oil fume in the kitchen is reduced. The shell is provided with a movable baffle, the baffle can adjust the opening and closing state of the smoke suction port as needed, so that the absorption effect of the oil fume is optimized. The kitchen air conditioner further comprises a fresh air module, the fresh air module is arranged on the shell, the fresh air module is provided with a fresh air outlet, and the fresh air module can blow air through the fresh air outlet. When the baffle is in the open state, the first surface of the baffle faces the smoke suction port, and the second surface of the baffle faces the fresh air outlet, so that the air blown out of the fresh air outlet can form an air flow barrier on the second surface of the baffle. The air flow barrier can block the oil fume that tries to spread to the user's location beyond the baffle, the moving path of the oil fume in contact with the air flow barrier is limited, and the oil fume is more easily sucked into the smoke suction port, thereby improving the oil fume absorption effect.

[0051] The technical solutions of the present application will be described in detail below in combination with the drawings and specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described in detail in some embodiments.

[0052] In combination with Figures 1 to 5 As shown in the drawings, the embodiments of the present application provide a kitchen air conditioner, which comprises a shell 100 and a fresh air module 200; the shell 100 is provided with a smoke suction cavity 101, and the smoke suction cavity 101 has a smoke suction port 1011; the fresh air module 200 is arranged on the shell 100, and the fresh air module 200 is provided with a fresh air outlet 211; the shell 100 is provided with a movable baffle 110 to close or open the smoke suction port 1011; when the baffle 110 is in the open state, the first surface of the baffle 110 faces the smoke suction port 1011, and the second surface of the baffle 110 faces the fresh air outlet 211.

[0053] It can be understood that the shell 100 can provide structural support and protection for the entire kitchen air conditioner, ensuring the stability and safety of the internal components.

[0054] The shell 100 is provided with the smoke suction cavity 101, and the smoke suction cavity 101 has the smoke suction port 1011. The smoke suction cavity 101 and the smoke suction port 1011 can be used to capture and absorb oil fume generated during cooking, can more effectively guide the oil fume into the air conditioning system, and reduce the spread of the oil fume in the kitchen. Therefore, the removal efficiency of the oil fume is improved.

[0055] The shell 100 is provided with a movable baffle 110, which can close or open the smoke inlet 1011. The movable baffle 110 provides a flexible control mechanism, which can adjust the opening and closing state of the smoke inlet 1011 according to the user's needs. When smoking is not needed, the baffle 110 can close the smoke inlet 1011 to prevent external air from entering; when smoking is needed, the baffle 110 is opened to ensure that the cooking fume is effectively sucked in, thereby optimizing the absorption effect of the cooking fume.

[0056] By setting the fresh air module 200 in the shell 100, fresh air can be discharged through the fresh air outlet 211. When the baffle 110 is in the open state, the fresh air outlet 211 blows air towards the baffle 110, and the air blown by the fresh air outlet 211 can form an air flow barrier on the second surface of the baffle 110. This air flow barrier can effectively block the cooking fume that tries to spread to the user's area beyond the baffle 110. By limiting the movement path of the cooking fume, the cooking fume is more easily guided to the smoke inlet 1011 and quickly sucked into the smoke cavity 101 and processed. This not only improves the capture efficiency of the cooking fume, but also significantly improves the air quality in the kitchen, providing a cleaner and healthier cooking environment.

[0057] In combination Figure 5 As shown in some embodiments, when the baffle 110 is in the open state, the air outlet direction of the fresh air outlet 211 is towards the second surface of the baffle 110.

[0058] It should be noted that the first surface of the baffle 110 and the second surface of the baffle 110 are oppositely arranged. The first surface of the baffle 110 faces the smoke inlet 1011, and the second surface of the baffle 110 faces away from the smoke inlet 1011 and towards the user's location.

[0059] Wherein, when the baffle 110 is in the open state, the cooking fume can enter the smoke cavity 101 through the smoke inlet 1011, and then be absorbed and processed by the air conditioning system.

[0060] In combination Figure 5 As shown by the direction of the straight arrow in the figure, when the air outlet direction of the fresh air outlet 211 is towards the second surface of the baffle 110, the air flow blown by the fresh air outlet 211 will hit the second surface of the baffle 110 at a certain speed and direction. After the air flow hits the baffle 110, it is reflected and diffused, causing the air flow to form a relatively stable flow area near the second surface of the baffle 110. This reflected and diffused air flow forms a dynamic barrier on the second surface of the baffle 110.

[0061] The air curtain can guide the oil fume to flow along the extension direction of the baffle 110 without diffusing outward, making it easier to be sucked into the suction port 1011. The fresh air module 200 continuously blows air to the baffle 110 through the fresh air outlet 211, which can ensure the stability of the air curtain, and the air curtain can maintain its blocking effect.

[0062] In some embodiments, the outflow direction of the fresh air outlet 211 is parallel to the extension direction of the baffle 110 when the baffle 110 is in the open state.

[0063] When the outflow direction of the fresh air outlet 211 is parallel to the extension direction of the baffle 110, the airflow blown out of the fresh air outlet 211 can maintain a consistent flow path along the entire extension direction of the baffle 110. This consistency helps to form the same airflow characteristics on each part of the second surface of the baffle 110, avoiding changes in local airflow intensity.

[0064] By designing the outflow direction of the fresh air outlet 211 to be parallel to the extension direction of the baffle 110, a uniform air curtain can be formed along the extension direction of the baffle 110 on the second surface of the baffle 110. This air curtain can effectively block the oil fume from escaping from the bottom of the baffle 110 and reduce the possibility of oil fume diffusing outward. The parallel airflow direction ensures the uniformity and stability of the air curtain, enhancing the capture effect of the oil fume.

[0065] In combination with Figure 3 and Figure 4 In some embodiments, the shell 100 is provided with a partition plate 120, which is located above the baffle 110 and is provided with a ventilation opening 121; the fresh air module 200 is arranged on the partition plate 120, and the fresh air outlet 211 is arranged opposite to the ventilation opening 121, and the fresh air outlet 211 of the fresh air module 200 blows air through the ventilation opening 121.

[0066] The partition plate 120 can provide a mounting position for the fresh air module 200. The partition plate 120 is provided with a ventilation opening 121, which allows airflow to flow between the two sides of the partition plate 120, ensuring that the airflow introduced by the fresh air module 200 can effectively pass through the partition plate 120 and enter the area that needs ventilation.

[0067] The fresh air outlet 211 is arranged opposite to the ventilation opening 121, ensuring that the air output by the fresh air module 200 can directly enter the target area through the ventilation opening 121. This design reduces the resistance and loss of airflow, improving the efficiency of air delivery.

[0068] In some embodiments, the baffle 110 is rotatably arranged on the partition plate 120 along the width direction of the shell 100; the air vent 121 is arranged at a position spaced apart from the rotation axis of the baffle 110, and the extension direction of the air vent 121 is parallel to the width direction of the shell 100.

[0069] It should be noted that the width direction of the shell 100 is parallel to the Y axis in the coordinate system shown in FIG. 1, the front-rear direction of the shell 100 is parallel to the X axis in the coordinate system shown in FIG. 1, and the height direction of the shell 100 is parallel to the Z axis in the coordinate system shown in FIG. 1. Figure 1 Figure 1 It should be noted that the width direction of the shell 100 is parallel to the Y axis in the coordinate system shown in FIG. 1, the front-rear direction of the shell 100 is parallel to the X axis in the coordinate system shown in FIG. 1, and the height direction of the shell 100 is parallel to the Z axis in the coordinate system shown in FIG. 1. Figure 1

[0070] The baffle 110 is rotatable along the width direction of the shell 100, and the rotation axis of the baffle 110 is parallel to the Y axis in the coordinate system shown in FIG. 1. Figure 1

[0071] The extension direction of the air vent 121 is parallel to the width direction of the shell 100, and the airflow blown out through the air vent 121 can be uniformly distributed along the width direction of the shell 100, which helps to form a uniform airflow in the entire width direction of the baffle 110, thereby improving the uniformity and stability of the airflow barrier.

[0072] In combination with FIG. 1, in some embodiments, the partition plate 120 is provided with a mounting portion 122, and the mounting portion 122 is located above the partition plate 120; the baffle 110 is provided with a connecting piece 111, and a first end of the connecting piece 111 is rotatably connected to the mounting portion 122, and a second end of the connecting piece 111 is fixedly connected to the baffle 110. Figure 4 In some embodiments, the mounting portion 122 is arranged on the top surface of the partition plate 120, and the mounting portion 122 can be arranged obliquely. The mounting portion 122 serves as a support structure, which can provide a mounting space for the connecting piece 111, ensure the mounting stability of the connecting piece 111, and bear the weight and movement of the baffle 110.

[0073] For example, the connecting piece 111 can be an arc-shaped rod structure. The first end of the connecting piece 111 is rotatably connected to the mounting portion 122, and the second end of the connecting piece 111 is fixedly connected to the baffle 110. The connecting rod can form a stable rotating mechanism to allow the baffle 110 to rotate around the mounting portion 122, and ensure that the baffle 110 can be smoothly opened and closed during use.

[0074] In some embodiments, the distance between the top end of the baffle 110 and the air vent 121 when the baffle 110 is in the open state is less than the distance between the top end of the baffle 110 and the air vent 121 when the baffle 110 is in the closed state.

[0075]

[0076] ​​​​The distance between the baffle 110 and the vent 121 changes in different states, which helps to optimize the air flow path.

[0077] The top end of the baffle 110 is spaced apart from the bottom surface of the partition plate 120. When the baffle 110 is opened, the distance between the top end of the baffle 110 and the vent 121 is small, and the gap between the top end of the baffle 110 and the bottom surface of the partition plate 120 is reduced, which helps to prevent part of the air blown out by the vent 121 from flowing away through the gap, and ensures that more air can be effectively guided to the second surface of the baffle 110 to form an effective air flow barrier.

[0078] In combination Figure 4 and Figure 5 As shown in FIGS. 1, 2, 3, and 4, in some embodiments, the partition plate 120 has a front end facing the user and a rear end away from the user; the front end of the partition plate 120 is provided with a control panel 300 extending along the width direction of the housing 100.

[0079] The front end of the partition plate 120 faces the front side of the housing 100, i.e., the direction of the user; the rear end of the partition plate 120 faces the rear side of the housing 100. The control panel 300 is arranged at the front end of the partition plate 120, which is easy to be contacted and viewed by the user, and the user can conveniently operate and adjust when using the kitchen air conditioner, thereby improving the operability of the kitchen air conditioner.

[0080] In some embodiments, the control panel 300 includes a first control portion 310, a first end of the first control portion 310 is connected with the partition plate 120, and a second end of the first control portion 310 extends downward along the height direction of the housing 100.

[0081] The control panel 300 is arranged on the side of the partition plate 120 facing the baffle 110. When the baffle 110 is in the open state, the fresh air outlet 211 is located between the control panel 300 and the baffle 110, i.e., the fresh air outlet 211 is located between the first control portion 310 and the baffle 110

[0082] The first control portion 310 of the control panel 300 extends downward, and after the air flow is blown out through the fresh air outlet 211, the first control portion 310 can shield the side of the air flow away from the second surface of the baffle 110, so as to prevent the air flow from moving away from the baffle 110 and dispersing, and ensure that the air flow can flow near the second surface of the baffle 110 to form an effective air flow barrier.

[0083] The control panel 300 extends along the width direction of the housing 100, so that the control panel 300 can guide the air flow blown out by the fresh air outlet 211 in the entire width direction of the housing 100, and ensure that the air flow can form a uniform air flow barrier in the entire width direction of the partition plate.

[0084] In combinationFigure 6 As shown, in some embodiments, the shell 100 is provided with a mounting plate 130, which is spaced apart from the partition plate 120 along the height direction of the shell 100; the mounting plate 130 is located above the partition plate 120, and the mounting plate 130 is connected with the fresh air module 200.

[0085] By arranging the mounting plate 130 in the shell 100, a stable mounting base can be provided for the fresh air module 200 and other components, ensuring that these components remain stable during operation.

[0086] The mounting plate 130 can form different functional areas inside the shell 100, which helps to optimize the air flow path, reduce air flow interference, and provide independent working space for each component, thereby improving the overall efficiency of the kitchen air conditioner.

[0087] The mounting plate 130 and the partition plate 120 are spaced apart along the height direction of the shell 100, so that a region capable of accommodating the fresh air module 200 can be formed between the mounting plate 130 and the partition plate 120, which facilitates the installation stability of the fresh air module 200 and reduces the vibration and displacement of the fresh air module 200 during operation.

[0088] In combination Figures 4 to 6 As shown, in some embodiments, the fresh air module 200 includes an air guide channel 210, which is arranged between the mounting plate 130 and the partition plate 120, and the bottom end of the air guide channel 210 is provided with a fresh air outlet 211.

[0089] The air guide channel 210 is installed in the accommodating region between the mounting plate 130 and the partition plate 120, the top end of the air guide channel 210 is connected with the mounting plate 130, and the bottom end of the air guide channel 210 is connected with the partition plate 120, thereby improving the structural compactness of the fresh air module 200.

[0090] The fresh air outlet 211 is located at the bottom end of the air guide channel 210 and corresponds to and communicates with the air vent 121 arranged on the partition plate 120, so that the air output by the fresh air module 200 can enter the air guide channel 210 and be blown out through the fresh air outlet 211 and the air vent 121. Such an arrangement reduces the complexity of the air flow path, improves the air delivery efficiency, and ensures that the air flow is evenly distributed to the required area.

[0091] In combination Figure 6 As shown, in some embodiments, the fresh air module 200 further includes a fresh air duct 220 and a fresh air fan 230, and the fresh air fan 230 is arranged in the shell 100; the air inlet end 231 of the fresh air fan 230 communicates with the outside of the shell 100, and the air outlet end of the fresh air fan 230 communicates with the air guide channel 210 through the fresh air duct 220.

[0092] The fresh air fan 230 provides power to introduce air from outside the housing 100, while the fresh air duct 220 guides the airflow to ensure that fresh air can be effectively delivered to the air guide channel 210.

[0093] The fresh air fan 230 is integrated into the housing 100, which can protect the fan from external factors such as dust and fumes, and also effectively reduce the space occupied by the kitchen air conditioner, improving the overall compactness.

[0094] The air inlet 231 of the fresh air fan 230 can extend toward the top of the housing 100 to communicate with the outside of the housing 100 from the top of the housing 100. In this way, the air inlet 231 can be kept away from areas where oil fumes and dust are easily generated, ensuring that the air inlet 231 of the fresh air fan 230 can draw in cleaner air.

[0095] The air outlet of the fresh air fan 230 is connected to the air guide channel 210 through the fresh air duct 220, so that the airflow generated by the fan can be smoothly guided to the air guide channel 210, reducing the complexity and loss of the airflow path and improving the efficiency of air delivery.

[0096] The fume extraction chamber 101 is connected to the exhaust duct, which has an exhaust port 1012. The exhaust port 1012 can also be located on the top of the housing 100. A conveying pipe is also connected to the exhaust port 1012 of the exhaust duct, and the conveying pipe can be connected to the external environment. The fumes drawn into the fume extraction chamber 101 can be conveyed to the external environment through the exhaust duct and the conveying pipe.

[0097] The exhaust port 1012 and the air inlet 231 of the fresh air fan 230 are both located on the top of the housing 100. However, the exhaust port 1012 is connected to the conveying pipe, while the air inlet 231 of the fresh air fan 230 is directly connected to the external environment of the housing 100. Therefore, the exhaust port 1012 and the air inlet 231 of the fresh air fan 230 are not connected, which can prevent the air inlet 231 of the fresh air fan 230 from drawing in oil fumes.

[0098] Combination Figure 2 and Figure 6 As shown, in some embodiments, the housing 100 is provided with an air conditioning cold cavity 102; the fresh air fan 230 is located inside the air conditioning cold cavity 102; and at least a portion of the fresh air duct 220 is located inside the air conditioning cold cavity 102.

[0099] The mounting plate 130 divides the interior of the housing 100 into upper and lower spaces, with the air conditioning cooling chamber 102 located in the upper space and the smoke extraction chamber 101 located in the lower space. The mounting plate 130 provides physical isolation, making the air conditioning cooling chamber 102 and the smoke extraction chamber 101 completely independent and preventing air mixing between the two.

[0100] When the fresh air fan 230 is located in the air conditioner cold cavity 102, part of the air guide channel 210 passes through the mounting plate 130 to the lower part of the mounting plate 130 and communicates with the air guide channel 210 mounted at the bottom of the mounting plate 130, so as to deliver the air output by the fresh air fan 230 to the air guide channel 210.

[0101] By placing the fresh air fan 230 in the air conditioner cold cavity 102, the working temperature of the fresh air fan 230 can be effectively controlled, which helps to reduce the influence of temperature fluctuation on the performance of the fresh air fan 230, prolong the service life of the fresh air fan 230, and improve the operation efficiency of the fresh air fan 230.

[0102] By placing part of the structure of the fresh air duct in the air conditioner cold cavity, the air can be pre-processed during air delivery, and the air can be pre-cooled during delivery, so that the temperature of the blown air flow is not too high, and the user experience is improved.

[0103] In the description of the present application, it should be understood that the orientations or positional relationships indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0104] In the description of the present application, it should be understood that the terms "include" and "have" and any variations thereof used in this document are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units need not be limited to only those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.

[0105] Unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting", "fixing" and the like should be understood broadly, for example, they can be fixed connection, or detachable connection, or integrated; they can be directly connected, or indirectly connected through an intermediate medium, or the connection between the two elements or the interaction relationship between the two elements. 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. In addition, the terms "first", "second" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features.

[0106] Finally, it should be noted that: the above embodiments are used to illustrate the technical solutions of the present application, but not limited to them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A kitchen air conditioner, characterized by, The shell (100) and the fresh air module (200) are included. The shell (100) is provided with a smoke suction cavity (101) having a smoke suction port (1011). The fresh air module (200) is arranged in the shell (100), and the fresh air module (200) is provided with a fresh air outlet (211). The shell (100) is provided with a movable baffle (110) for closing or opening the smoke suction port (1011). When the baffle (110) is in an open state of the smoke suction port (1011), a first surface of the baffle (110) faces the smoke suction port (1011), and at least part of a second surface of the baffle (110) faces the fresh air outlet (211).

2. The kitchen air conditioner of claim 1, wherein, When the baffle (110) is in an open state, the air outlet direction of the fresh air outlet (211) faces the second surface of the baffle (110). Alternatively, when the baffle (110) is in an open state of the smoke suction port (1011), the air outlet direction of the fresh air outlet (211) is parallel to the extension direction of the baffle (110). 3.The kitchen air conditioner of claim 1, wherein The shell (100) is provided with a partition plate (120) located above the baffle (110), and the partition plate (120) is provided with a ventilation port (121). The air outlet end of the fresh air module (200) is arranged in the partition plate (120), the fresh air outlet (211) is in communication with the ventilation port (121), and the fresh air outlet (211) of the fresh air module (200) blows air through the ventilation port (121). 4.The kitchen air conditioner of claim 3, wherein The baffle (110) is rotatably arranged on the partition plate (120) in the width direction of the shell (100). The ventilation port (121) is arranged in the extension direction of the ventilation port (121) and the width direction of the shell (100). 5.The kitchen air conditioner of claim 4, wherein The partition plate (120) is provided with a mounting portion (122) located above the partition plate (120). The baffle (110) is provided with a connecting piece (111), a first end of the connecting piece (111) is rotatably connected with the mounting portion (122), and a second end of the connecting piece (111) is fixedly connected with the baffle (110). 6.The kitchen air conditioner of claim 5, wherein When the baffle (110) is in an open state, the distance between the top end of the baffle (110) and the ventilation port (121) is less than the distance between the top end of the baffle (110) and the ventilation port (121) when the baffle (110) is in a closed state. 7.The kitchen air conditioner of claim 3, wherein The partition plate (120) has a front end facing the user and a rear end away from the user. The front end of the partition plate (120) is provided with a control panel (300), and the control panel (300) extends along the width direction of the shell (100). 8.The kitchen air conditioner of claim 7, wherein The control panel (300) comprises a first control part (310), the top end of the first control part (310) is connected with the partition plate (120), and the bottom end of the first control part (310) extends downward along the height direction of the shell (100).

9. The kitchen air conditioner according to any one of claims 3-6, wherein, The shell (100) is provided with a mounting plate (130), and the mounting plate (130) is arranged in the height direction of the shell (100) and is spaced apart from the partition plate (120). The mounting plate (130) is located above the partition plate (120), and the mounting plate (130) is connected with the fresh air module (200). 10.The kitchen air conditioner of claim 9, wherein The fresh air module (200) comprises an air guide channel (210), the air guide channel (210) is arranged between the mounting plate (130) and the partition plate (120), and the bottom end of the air guide channel (210) is provided with the fresh air outlet (211).