Storage box

The redesigned humidity control system in cigar storage boxes addresses inadequate humidity control by separating airflow and liquid flow processes, ensuring stable and uniform moisture distribution for improved cigar preservation.

CN223101366UActive Publication Date: 2025-07-15HISENSE RONSHEN (GUANGDONG) FREEZER CO LTD +1
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Patent Information

Application Number
CN202422418107.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-15
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The existing storage box has poor humidification effect, resulting in inconsistent humidity in different areas of the storage box, affecting the quality of the cigar.

Method used

A storage box is designed, and the humidification assembly includes a liquid storage piece, a humidification part, an air duct and a fan assembly. By connecting the two ends of the air duct with the storage chamber, the liquid storage piece supplies liquid to the humidification part, the fan assembly guides the air flow and transports it into the air duct through the humidification air outlet, realizing the circulation and humidification of the air flow, avoiding the mutual influence of the air flow and the liquid flow, and ensuring humidification stability.

Benefits of technology

It improves the uniformity and humidification stability of the humidity in the storage box, avoids the problem of excessive or low humidity in local areas, extends the shelf life of the cigar, and improves the performance of the storage box.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The embodiment of the utility model belongs to the technical field of storage equipment, and provides a storage box which comprises a box body, an inner container and a humidifying assembly. The humidifying assembly comprises a liquid storage part, a humidifying part, an air duct and a fan assembly. The liquid storage part is used for supplying liquid to the humidifying part; the humidifying part is provided with a humidifying air outlet; an air inlet and an air outlet of the air duct are communicated with the storage cavity; the fan assembly is used for sucking airflow in the storage cavity into the air duct through the air inlet and discharging the airflow to the storage cavity from the air outlet; the humidifying air outlet is converged into the air duct, so that air flow humidified by the humidifying part is discharged to the storage cavity from the air outlet of the air duct; the circulation process of the air flow in the storage box and the conveying process of the liquid are separated, mutual influence between air flow flowing and liquid flowing is avoided, the humidification stability of the humidification part is improved, the problem that the humidity of a local area is too high or too low is solved, and the use performance of the storage box is improved. The humidifying air outlet is converged into the air duct, so that the humidifying part can humidify the air flow in the air duct.
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Description

Technical Field

[0001] The embodiments of the present application relate to the technical field of storage devices. In particular, it relates to a storage box. Background Art

[0002] A storage box is a container used to store and protect items. For example, a cigar cabinet is stored in a storage box. Cigars will continue to age under suitable temperature and humidity conditions, and their flavor and aroma will become more complex and rich over time.

[0003] In the prior art, a storage box for storing cigars is usually called a cigar cabinet. The humidity in the storage box has a great impact on the quality of cigars. A humidifying water tank is often equipped in the storage box. The humidifying water tank includes a water tank body and a fan. Water is stored in the water tank body. In this way, the air flow in the storage box is guided by the fan to flow through the water tank body, and the water humidifies the air flow; subsequently, the air flow carrying water vapor flows out of the water tank body and flows in the storage cavity of the storage box to humidify the storage cavity.

[0004] However, the existing storage box has the problem of poor humidifying effect. Summary of the Utility Model

[0005] The embodiments of the present application provide a storage box, which improves the stability of the process of guiding, humidifying and discharging the air flow by the humidifying component in the storage box, improves the humidifying ability of the storage box, and improves the service performance of the storage box.

[0006] The embodiments of the present application provide a storage box. The storage box includes a box body, an inner liner and a humidifying component. The box body has a cavity. The inner liner is located in the cavity, and the inner liner forms a storage cavity. The humidifying component is arranged in the cavity and is used to humidify the storage cavity. The humidifying component includes a liquid storage member, a humidifying part, an air duct and a fan assembly. The liquid storage member is used to supply liquid to the humidifying part; the humidifying part has a humidifying air outlet; the air duct has an air inlet and an air outlet, and both the air inlet and the air outlet are communicated with the storage cavity; the fan assembly is used to suck the air flow in the storage cavity into the air duct through the air inlet and discharge the air flow from the air outlet to the storage cavity; the humidifying air outlet converges into the air duct so that the air flow humidified by the humidifying part is discharged from the air outlet of the air duct to the storage cavity.

[0007] The above technical solution has the following advantages or beneficial effects: By connecting the two ends of the air duct to the storage cavity through the air inlet and the air outlet respectively, the air flow in the humidifying component is realized; The liquid storage part supplies liquid to the humidifying part to realize the flow of liquid in the humidifying component. In this way, the circulation process of the air flow in the storage box and the conveying process of the liquid are separated, avoiding the mutual influence between the air flow and the liquid flow, so as to improve the humidifying stability of the humidifying part, avoid the problem of too high or too low humidity in local areas, and improve the service performance of the storage box. At the same time, by merging the humidifying air outlet into the air duct, the air flow humidified by the humidifying part is discharged from the air outlet of the air duct to the storage cavity, so as to realize the humidifying effect of the humidifying part on the air flow in the air duct.

[0008] In some embodiments of the present application, the humidifying component includes a humidifying part and a housing. An air inlet and an air outlet are formed on the housing.

[0009] The housing has a mounting part, a humidifying part and an exhaust part. The mounting part has a first mounting cavity and a second mounting cavity. The second mounting cavity of the mounting part is communicated with the storage cavity through the air inlet.

[0010] The humidifying part has a humidifying cavity. The humidifying part is located in the humidifying cavity.

[0011] The exhaust part has an exhaust cavity. The exhaust cavity of the exhaust part is communicated with the storage cavity through the air outlet.

[0012] Among them, the humidifying cavity of the humidifying part is communicated with the second mounting cavity of the mounting part. The humidifying cavity of the humidifying part is communicated with the exhaust cavity of the exhaust part. The second mounting cavity, the humidifying cavity and the exhaust cavity form an air duct.

[0013] The liquid storage part has a liquid storage cavity. The liquid storage part is detachably installed in the first mounting cavity. The liquid storage cavity of the liquid storage part is communicated with the humidifying cavity of the humidifying part.

[0014] The humidifying part is located in the humidifying cavity.

[0015] The fan assembly is located in the second mounting cavity of the mounting part, and the air outlet of the fan assembly is communicated with the humidifying cavity of the humidifying part.

[0016] The above technical solution has the following advantages or beneficial effects: By dividing the housing into three main areas: a mounting part, a humidifying part and an exhaust part, and placing the fan assembly, the liquid storage part and the humidifying part in different areas. Among them, the liquid storage part has a liquid storage function, the fan assembly has a guiding function, the humidifying part has a humidifying function, and the exhaust cavity of the exhaust part has an exhaust function. In this way, each area of the housing has a clear division of labor, ensuring the stability of the air flow guiding process, the liquid conveying process, the air flow humidifying process and the air flow discharging process, being able to effectively control the humidity in the storage cavity, improving the humidifying ability of the humidifying component of the storage box, and improving the service performance of the storage box.

[0017] The air flow in the storage cavity is first sucked into the fan assembly through the air inlet. Subsequently, the sucked air flow is humidified by the humidifying member and discharged from the humidifying assembly through the exhaust cavity and the air outlet. The circulation process of the air flow makes the humidity adjustment more flexible and rapid, realizes the continuity and high efficiency of the humidifying assembly in humidifying the air flow in the storage cavity, ensures the uniform distribution of humidity in the storage cavity, avoids the problems of too high or too low humidity in local areas, and improves the service performance of the storage box.

[0018] In the humidifying assembly, the second installation cavity of the installation part is communicated with the storage box through the air inlet. The second installation cavity of the installation part, the humidifying cavity of the humidifying part and the exhaust cavity of the exhaust part are communicated in sequence. The exhaust cavity of the exhaust part is communicated with the storage cavity through the air outlet. In this way, the circulation of the air flow in the storage cavity is realized. By communicating the liquid storage cavity of the liquid storage member with the humidifying cavity of the humidifying part, the liquid storage member is used to supply liquid to the humidifying member to realize the flow of liquid in the humidifying assembly. In this way, the circulation process of the air flow in the storage box and the conveying process of the liquid are separated, avoiding the mutual influence between the air flow and the liquid flow, improving the humidifying stability of the humidifying member, avoiding the problems of too high or too low humidity in local areas, and improving the service performance of the storage box.

[0019] In some embodiments of the present application, the box body has an opening. The installation part is located on one side of the housing close to the opening.

[0020] The humidifying part and the exhaust part are located on the side of the housing away from the opening. The exhaust part is located at the top of the humidifying part.

[0021] The above technical solution has the following advantages or beneficial effects: Considering that the air duct assembly of the storage box is arranged on the side away from the opening, by arranging the humidifying part and the exhaust part on the side of the housing away from the opening, the air flow humidified by the humidifying cavity flows to the exhaust cavity, and then the humidified air flow flows to the air duct assembly through the air outlet on the housing. This structure has the advantages of corresponding positions and convenient connection, reducing the resistance and energy loss in the air flow, and improving the reliability and stability of the humidifying assembly in humidifying the storage cavity.

[0022] In some embodiments of the present application, the housing includes a side plate and a cover plate. The cover plate is connected to the top of the side plate.

[0023] The first installation cavity, the second installation cavity of the installation part, the humidifying cavity of the humidifying part and the exhaust cavity of the exhaust part are at least surrounded by the cover plate and the side plate. A taking and placing port is formed on the side of the cover plate and the side plate close to the opening. The taking and placing port is used to communicate with the second installation cavity.

[0024] The above technical solution has the following advantages or beneficial effects: The design of the access opening enables users to easily access the liquid storage member and the fan assembly in the installation cavity, facilitating regular inspection, cleaning, and maintenance, and reducing the difficulty and time of maintenance. At the same time, taking and placing the liquid storage member through the access opening will not affect the normal operation of the humidifying member and the fan assembly, ensuring that the use of other components is not disturbed and improving the overall operation convenience of the humidifying assembly.

[0025] In some embodiments of the present application, the housing further includes a first partition. The first partition extends along a first direction. The first direction intersects the height direction of the humidifying assembly.

[0026] The first partition is located in the installation cavity of the installation part. The first partition divides the installation cavity into a first installation cavity and a second installation cavity. The first installation cavity is located on top of a part of the second installation cavity.

[0027] A liquid storage member is detachably installed in the first installation cavity. A fan assembly is installed in the second installation cavity.

[0028] The above technical solution has the following advantages or beneficial effects: By providing the first partition, the first partition divides the installation cavity into a first installation cavity and a second installation cavity, and the liquid storage member and the fan assembly are located in different areas respectively, with clear functional partitions to avoid mutual interference. In addition, considering that the liquid storage member is located in the first installation cavity, the design of the first partition can prevent the liquid in the liquid storage member from leaking into the second installation cavity, avoiding the influence of liquid leakage on the normal operation of the fan assembly and improving the safety of the fan assembly. At the same time, since the fan assembly is usually heavy. Setting the fan assembly in the second installation cavity can lower the center of gravity of the entire humidifying assembly, improve the stability of the humidifying assembly, prevent tipping, and improve the structural stability of the storage box.

[0029] In some embodiments of the present application, the housing further includes a second partition. The second partition extends along the height direction of the humidifying assembly. The bottom of the second partition is connected to the first partition, and the top of the second partition is connected to the cover plate.

[0030] The first partition, the second partition, the cover plate, and the side plate together enclose a humidifying cavity.

[0031] The above technical solution has the following advantages or beneficial effects: The second partition extends along the height direction of the humidifying assembly. In this way, the flow direction of the air flow is along the height direction of the humidifying assembly, and the humidified air flow can be transported from the humidifying cavity to the exhaust cavity and discharged through the exhaust port, improving the humidifying efficiency.

[0032] Through the enclosure design of the first partition, the second partition, the cover plate, and the side plate, an independent humidifying cavity is formed, preventing the accidental leakage of the humidified air flow and ensuring the stability and high efficiency of the humidifying effect.

[0033] In some embodiments of the present application, the cover plate includes a first plate body and a second plate body. The first plate body includes a first extension section and a second extension section. The second extension section is connected to a side of the first extension section facing away from the opening. The first extension section is located at the top of the installation cavity. A part of the second extension section is bent towards the humidification cavity.

[0034] The second plate body is connected to a side of the second extension section facing away from the humidification cavity, and together with the bent second extension section and the side plate forms an exhaust cavity. An air outlet is formed on the second plate body.

[0035] The above technical solution has the following advantages or beneficial effects: A part of the second extension section is bent towards the humidification cavity, which helps to guide the humidified air flow into the exhaust cavity, optimize the air flow path, and improve the humidification efficiency.

[0036] An air outlet is formed on the second plate body to ensure that the humidified air flow can be discharged smoothly, prevent the humidified air flow from accumulating in the exhaust cavity, and affect the humidification effect.

[0037] In some embodiments of the present application, the housing further includes an air inlet plate. The air inlet plate is connected to a part of the side plate and the side of the first partition near the opening. The air inlet plate is located on the side of the second installation cavity near the opening.

[0038] A plurality of air inlet holes are arranged at intervals on the air inlet plate. The air inlet holes form an air inlet. The air inlet holes communicate with the second installation cavity.

[0039] The above technical solution has the following advantages or beneficial effects: The design of the plurality of air inlet holes on the air inlet plate ensures that the fan assembly can obtain sufficient gas flow in the storage cavity. The air inlet holes communicate with the second installation cavity. By arranging the air inlet holes at intervals, it is ensured that the air flow can enter the second installation cavity evenly, improve the ventilation effect, and prevent the situation of poor air flow in local areas.

[0040] In some embodiments of the present application, a first docking component is arranged on the liquid storage member. A humidification liquid inlet is formed on the second partition. A second docking component is arranged at the humidification liquid inlet. The first docking component and the second docking component are detachably docked to communicate the liquid storage cavity and the humidification cavity.

[0041] The above technical solution has the following advantages or beneficial effects: By arranging the first docking component and the second docking component, the liquid storage member can deliver liquid to the humidification cavity in real time. The process is simple and fast, reducing the operation complexity and time cost of the user. At the same time, the liquid in the liquid storage member flows to the humidification cavity through the first docking component and the second docking component, reducing the risk of liquid overflow.

[0042] In some embodiments of the present application, the fan assembly includes a fan mounting base and a fan. The fan mounting base has a fan mounting cavity. The fan mounting cavity has a fan air inlet and a fan air outlet. The fan is mounted at the fan air inlet, and the fan mounting cavity communicates with the humidifying cavity through the fan air outlet.

[0043] The above technical solution has the following advantages or beneficial effects: The fan mounting base provides a fixed mounting position, enabling the fan to be stably mounted at the air inlet, preventing the fan from shifting or vibrating during operation. By providing a fan air inlet and a fan air outlet on the fan mounting cavity, the air flow path is clarified, ensuring that the air flow in the storage cavity can smoothly enter from the air inlet on the housing, be pressurized by the fan and discharged from the fan air outlet, and enter the humidifying cavity.

[0044] In some embodiments of the present application, the humidifying member includes humidifying fibers. The part of the humidifying fibers near the bottom of the humidifying cavity is located below the liquid level of the humidifying cavity. The top of the humidifying fibers is fixedly connected to the top of the humidifying part.

[0045] The above technical solution has the following advantages or beneficial effects: The humidifying fibers suck the liquid from the bottom to the top through capillary action to ensure that the air flow can be humidified at all positions of the humidifying fibers, improving the humidifying efficiency.

[0046] In some embodiments of the present application, an overflow port is provided on the side plate. The overflow port communicates with the humidifying cavity.

[0047] The above technical solution has the following advantages or beneficial effects: The design of the overflow port can effectively prevent the liquid level in the humidifying cavity from being too high, avoiding the excess liquid in the humidifying cavity from overflowing into other cavities or the external environment, thereby protecting the humidifying component and the inner container.

[0048] In a second aspect, embodiments of the present application provide a storage box. The storage box includes:

[0049] A box body having a cavity;

[0050] An inner container located in the cavity, and the inner container forms a storage cavity;

[0051] A humidifying assembly disposed in the cavity for humidifying the storage cavity; the humidifying assembly includes:

[0052] A liquid storage member;

[0053] A humidifying part; the liquid storage member is used to supply liquid to the humidifying part; the humidifying part is used to humidify the air flow, and the humidifying part has a humidifying air outlet;

[0054] An air duct having an air inlet and an air outlet, and both the air inlet and the air outlet are used to communicate with the storage cavity;

[0055] The fan assembly is used to suck the air flow in the storage cavity into the air duct through the air inlet, and discharge the air flow from the air outlet to the storage cavity;

[0056] The humidifying air outlet merges into the air duct, so that the humidified air flow from the humidifying part is discharged from the air outlet of the air duct to the storage cavity.

[0057] The above technical solution has the following advantages or beneficial effects: By connecting the two ends of the air duct to the storage cavity through the air inlet and the air outlet respectively, the air flow in the humidifying component is realized; The liquid storage part supplies liquid to the humidifying part to realize the liquid flow in the humidifying component. In this way, the circulation process of the air flow in the storage box and the conveying process of the liquid are separated, avoiding the mutual influence between the air flow and the liquid flow, improving the humidifying stability of the humidifying part, avoiding the problem of too high or too low humidity in local areas, and improving the use performance of the storage box. At the same time, by merging the humidifying air outlet into the air duct, the humidified air flow from the humidifying part is discharged from the air outlet of the air duct to the storage cavity, so as to realize the humidifying effect of the humidifying part on the air flow in the air duct. Description of the Drawings

[0058] In order to more clearly illustrate the embodiments of the present application or the implementation manners in the related art, the following will briefly introduce the drawings required to be used in the description of the embodiments or the related art. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, other drawings can also be obtained according to these drawings.

[0059] Figure 1 It is a schematic structural diagram of the storage box provided by the embodiment of the present application;

[0060] Figure 2 It is a schematic structural diagram of the humidifying component provided by the embodiment of the present application from the first perspective;

[0061] Figure 3 It is a schematic structural diagram of the humidifying component provided by the embodiment of the present application from the second perspective;

[0062] Figure 4 It is a schematic structural diagram of the humidifying component provided by the embodiment of the present application from the third perspective;

[0063] Figure 5 For Figure 2 It is a schematic structural diagram in the A-A direction in

[0064] Figure 6 It is a schematic structural diagram of the housing of the humidifying component provided by the embodiment of the present application from the first perspective;

[0065] Figure 7 It is a schematic structural diagram of the housing of the humidifying component provided by the embodiment of the present application from the second perspective;

[0066] Figure 8 Schematic diagram of the liquid storage part of the humidification component provided by the embodiment of the present application;

[0067] Figure 9 Schematic diagram of the pick - up and put - down cover of the humidification component provided by the embodiment of the present application;

[0068] Figure 10 Schematic diagram of the fan component provided by the embodiment of the present application;

[0069] Figure 11 Schematic diagram of the cover plate of the humidification component provided by the embodiment of the present application Figure 1 ;

[0070] Figure 12 Schematic diagram of the cover plate of the humidification component provided by the embodiment of the present application Figure 2 .

[0071] Reference numerals:

[0072] 100: Box body;

[0073] 500: Humidification component;

[0074] 510: Housing;

[0075] 510a: Installation cavity; 510b: First installation cavity; 510c: Second installation cavity; 510d: Humidification cavity; 510g: Exhaust cavity;

[0076] 511: Side plate; 512: Cover plate; 512a: First plate body; 512b: First extension section; 512c: Second extension section; 512d: Second plate body; 513: First partition; 514: Second partition; 515: Air inlet plate; 516: Pick - up and put - down cover; 516a: Window;

[0077] 520: Liquid storage part; 520a: Liquid storage cavity; 524: First docking component;

[0078] 530: Humidifying part; 531: Humidifying fiber; 532: Second docking component;

[0079] 540: Fan component; 541: Fan mounting seat; 541a: Fan installation cavity; 541b: Fan air inlet; 541c: Fan air outlet; 542: Fan. Detailed implementation manners

[0080] A storage box is a container for storing and protecting items. For example, a cigar cabinet is stored in a storage box. Cigars will continue to age under suitable temperature and humidity conditions, and their flavors and aromas will become more complex and rich over time.

[0081] A storage box for storing cigars, commonly known as a cigar cabinet. A cigar cabinet is a device specifically designed for storing and preserving cigars. Cigars will continue to age under suitable temperature and humidity conditions, and their flavors and aromas will become more complex and rich over time. The main function of the storage box for storing cigars is to provide an environment with suitable temperature and humidity for the cigars, thus ensuring that the cigars are stored under optimal conditions.

[0082] In the prior art, the humidity of the storage box for storing cigars has a great impact on the quality of the cigars. A humidification water tank is equipped in the storage box for storing cigars. The humidification water tank includes a water tank body and a fan. Water is stored in the water tank body. In this way, the air flow in the storage cavity is guided by the fan to flow through the water tank body, and the water humidifies the air flow. Subsequently, the air flow carrying water vapor flows out of the water tank body and flows in the storage cavity of the storage box to humidify the storage cavity.

[0083] However, the design of the water tank may cause the area of contact between air and water to be uneven. Some air may not be fully humidified, and the humidified air may not be evenly distributed, resulting in inconsistent humidity in different areas of the storage box. Therefore, the existing storage box has the problem of poor humidification effect.

[0084] In view of this, an embodiment of the present application provides a storage box. The storage box includes a box body, an inner container, and a humidification component. The box body has a cavity. The inner container is located in the cavity, and the inner container forms a storage cavity. The humidification component is arranged in the cavity and is used for humidifying the storage cavity. The humidification component includes a liquid storage member, a humidification part, an air duct, and a fan assembly. The liquid storage member is used for supplying liquid to the humidification part; the humidification part has a humidification air outlet; the air duct has an air inlet and an air outlet, and both the air inlet and the air outlet are communicated with the storage cavity; the fan assembly is used for sucking the air flow in the storage cavity into the air duct through the air inlet and discharging the air flow from the air outlet into the storage cavity; the humidification air outlet converges into the air duct so that the air flow humidified by the humidification part is discharged from the air outlet of the air duct into the storage cavity. By connecting the two ends of the air duct to the storage cavity through the air inlet and the air outlet respectively, the air flow in the humidification component is realized; the liquid storage member supplies liquid to the humidification part to realize the flow of the liquid in the humidification component. In this way, the circulation process of the air flow in the storage box and the conveying process of the liquid are separated, avoiding the mutual influence between the air flow and the liquid flow, so as to improve the humidification stability of the humidification member, avoiding the problem of too high or too low humidity in local areas, and improving the use performance of the storage box. At the same time, by converging the humidification air outlet into the air duct, the air flow humidified by the humidification part is discharged from the air outlet of the air duct into the storage cavity, so as to realize the humidification effect of the humidification part on the air flow in the air duct.

[0085] To make the objectives, embodiments, and advantages of this application clearer, the following will clearly and completely describe the exemplary embodiments of this application with reference to the accompanying drawings in the exemplary embodiments of this application. Obviously, the described exemplary embodiments are only a part of the embodiments of this application, rather than all of the embodiments.

[0086] It should be noted that the brief description of the terms in this application is only for the convenience of understanding the subsequent described embodiments, rather than intending to limit the embodiments of this application. Unless otherwise specified, these terms should be understood in their ordinary and common meanings.

[0087] In addition, the terms "include" and "have" and any variations thereof are intended to cover but not exclude inclusion. For example, a product or device that includes a series of components does not necessarily have to be limited to those clearly listed components, but may include other components that are not clearly listed or are inherent to these products or devices.

[0088] In the description of this application, it should be understood that the orientation or positional relationships indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to this application.

[0089] The terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of this application, unless otherwise specified, the meaning of "a plurality" is two or more.

[0090] In the description of this application, it should be noted that unless otherwise clearly specified and limited, the terms "install", "connect", and "couple" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the internal communication of two elements. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0091] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts shall fall within the protection scope of the present application.

[0092] Figure 1 Schematically shows a schematic structural diagram of a storage box provided by an embodiment of the present application. Figure 2 Schematically shows a schematic structural diagram of a first perspective of a humidifying component 500 provided by an embodiment of the present application. Figure 3 Schematically shows a schematic structural diagram of a second perspective of a humidifying component 500 provided by an embodiment of the present application. Figure 4 Schematically shows a schematic structural diagram of a third perspective of a humidifying component 500 provided by an embodiment of the present application. Figure 5 For Figure 2 is a schematic structural diagram in the A-A direction in

[0093] Figure 6 Schematically shows a schematic structural diagram of a first perspective of a housing 510 of a humidifying component 500 provided by an embodiment of the present application.

[0094] In a first aspect, an embodiment of the present application provides a storage box. The storage box can be used to store various items. For example, cigars. For the convenience of description, the subsequent description will be made with the storage box used to store cigars.

[0095] It can be understood that the storage box can also be used to store plastics, metals, woods, fabrics, etc. The present application does not limit the types of items stored in the storage box.

[0096] Referring to Figures 1 to 6 As shown, the storage box includes a box body 100, an inner liner, and a humidifying component 500. The box body 100 has a cavity. The inner liner is located in the cavity. The inner liner forms a storage cavity. Among them, the storage cavity formed by the inner liner is used to store cigars. The humidifying component 500 is disposed in the cavity. The humidifying component 500 is disposed near the bottom of the cavity. The humidifying component 500 is used to humidify the storage cavity to maintain the humidity of the cigar storage environment, prevent the cigars from drying or being too wet, and thus ensure the quality of the cigars.

[0097] The humidifying component 500 includes a liquid storage member 520, a humidifying portion, an air duct, and a fan assembly 540. The liquid storage member 520 is used to supply liquid to the humidifying portion; the humidifying portion has a humidifying air outlet; the air duct has an air inlet and an air outlet, and both the air inlet and the air outlet are communicated with the storage cavity; the fan assembly 540 is used to suck the air flow in the storage cavity into the air duct through the air inlet and discharge the air flow from the air outlet to the storage cavity; the humidifying air outlet converges into the air duct so that the humidified air flow from the humidifying portion is discharged from the air outlet of the air duct to the storage cavity.

[0098] By connecting the two ends of the air duct to the storage cavity through the air inlet and the air outlet respectively, the air flow in the humidifying component 500 is realized; the liquid storage member 520 supplies liquid to the humidifying part, so as to realize the flow of liquid in the humidifying component. In this way, the circulation process of the air flow in the storage box and the conveying process of the liquid are separated, avoiding the mutual influence between the air flow and the liquid flow, improving the humidifying stability of the humidifying part, avoiding the problem of excessive or too low humidity in local areas, and improving the service performance of the storage box. At the same time, by introducing the humidifying air outlet into the air duct, the air flow humidified by the humidifying part is discharged from the air outlet of the air duct to the storage cavity, so as to realize the humidifying effect of the humidifying part on the air flow in the air duct.

[0099] Refer to Figures 2 to 6 As shown, the humidifying component 500 includes a housing 510 and a humidifying member 530. An air inlet and an air outlet are formed on the housing. The housing 510 has a mounting part, a humidifying part and an exhaust part. The mounting part has a first mounting cavity 510b and a second mounting cavity 510c. The second mounting cavity 510c of the mounting part is communicated with the storage cavity through the air inlet. The humidifying part has a humidifying cavity 510d. The exhaust part has an exhaust cavity 510g. The humidifying member 530 is located in the humidifying cavity 510d. The second mounting cavity 510c, the humidifying cavity 510d and the exhaust cavity 510g form an air duct; the humidifying cavity 510d of the humidifying part is communicated with the second mounting cavity 510c of the mounting part. The humidifying cavity 510d of the humidifying part is communicated with the exhaust cavity 510g of the exhaust part. The liquid storage member 520 is detachably mounted in the mounting cavity 510a. The liquid storage cavity 520a of the liquid storage member 520 is communicated with the humidifying cavity 510d of the humidifying part. A humidifying member 530 is mounted in the humidifying cavity 510d. The design of the liquid storage member 520 ensures that the humidifying member 530 can continuously obtain liquid supply, avoiding the humidifying interruption caused by insufficient liquid. The humidifying cavity 510d is communicated with the exhaust cavity 510g. The fan assembly 540 is located in the second mounting cavity 510c of the mounting part. The fan air outlet 541c of the fan assembly 540 is communicated with the humidifying cavity 510d of the humidifying part. The fan assembly 540 introduces air flow into the humidifying cavity 510d of the humidifying part at a certain speed range to ensure the stability and uniformity of the air flow. An air outlet is provided on the housing 510, and the exhaust cavity 510g of the exhaust part is communicated with the storage cavity through the air outlet.

[0100] Exemplarily, during the use of the storage box, the fan assembly 540 in the second installation cavity 510c of the installation part is in a working state. First, the fan assembly 540 guides the air flow in the storage cavity to the second installation cavity 510c of the installation part through the air inlet, and the air flow flows to the humidification cavity 510d of the humidification part through the fan air outlet 541c; at the same time, the liquid storage member 520 in the first installation cavity 510b of the installation part and the humidifying member 530 in the humidification part are working. The humidifying member 530 in the humidification cavity 510d of the humidification part humidifies the air flow. At the same time, the liquid storage member 520 transports the liquid in the liquid storage cavity 520a to the humidification cavity 510d of the humidification part so that the humidifying member 530 humidifies the air flow; subsequently, the humidified air flow enters the exhaust cavity 510g of the exhaust part and is discharged through the air outlet on the housing 510. The flow direction of the air flow is as shown by the direction of the black solid arrow in Figure 5 as shown in

[0101] By dividing the housing 510 into an installation part, a humidification part and an exhaust part, wherein the installation part has a first installation cavity 510b and a second installation cavity 510c, the humidification part has a humidification cavity 510d, and the exhaust part has an exhaust cavity 510g, and placing the fan assembly 540 and the liquid storage member 520 in the first installation cavity 510b and the second installation cavity 510c of the installation part respectively, and placing the humidifying member 530 in the humidification cavity 510d of the humidification part, wherein the liquid storage member 520 has a liquid storage function, the fan assembly 540 has a guiding function, the humidifying member 530 has a humidifying function, and the exhaust cavity 510g of the exhaust part has an exhaust function. In this way, each area has a clear division of labor, ensuring the stability of the gas guiding process, the liquid transportation process, the air flow humidification process, and the air flow discharge process, effectively controlling the humidity in the storage cavity, avoiding the quality decline of cigars caused by improper humidity, and extending the storage period of cigars. At the same time, this regional design enables each part of the humidification assembly 500 to operate independently, facilitating disassembly, cleaning and maintenance. Users can maintain or replace a certain component separately without affecting the operation of the entire humidification assembly 500.

[0102] In addition, by connecting the second installation cavity 510c of the installation part to the storage cavity through the air inlet, connecting the humidification cavity 510d of the humidification part to the second installation cavity 510c of the installation part, connecting the humidification cavity 510d of the humidification part to the exhaust cavity 510g of the exhaust part, connecting the exhaust cavity 510g of the exhaust part to the storage cavity through the air outlet, and connecting the air outlet 541c of the fan assembly 540 to the humidification cavity 510d, in this way, the air flow in the storage cavity is first sucked in by the fan assembly 540, then the sucked air flow is humidified by the humidifying member 530, and discharged from the humidification assembly 500 through the exhaust cavity 510g and the air outlet, forming an air flow circulation. The circulation process of the air flow makes the humidity adjustment more flexible and rapid, realizing the continuity and high efficiency of the humidification of the air flow in the storage cavity by the humidification assembly 500. At the same time, by connecting the liquid storage cavity 520a of the liquid storage member 520 to the humidification cavity 510d of the humidification part, the liquid storage member 520 is used to supply liquid to the humidification cavity 510d to realize the flow of liquid in the humidification assembly 500. In this way, the circulation process of the air flow in the storage box and the conveying process of the liquid are separated, avoiding the mutual influence between the air flow and the liquid flow, so as to improve the humidification stability of the humidification assembly 500, avoiding the problem of too high or too low humidity in local areas, ensuring the uniform distribution of humidity in the storage cavity, and improving the use performance of the storage box.

[0103] In addition, by reasonably arranging the humidifying member 530, the liquid storage member 520, and the fan assembly 540 in different areas of the housing 510, the overall volume of the humidification assembly 500 is reduced, and the space utilization rate is improved.

[0104] Exemplarily, the liquid can be tap water. The liquid can also be distilled water and mineral solution to prevent scale and bacteria growth.

[0105] Figure 7 Schematically shows a schematic structural diagram of a second perspective of the housing 510 of the humidification assembly 500 provided by an embodiment of the present application.

[0106] As an implementable embodiment, referring to Figures 1 to 7 As shown, the box body 100 has an opening. The installation part is located on the side of the housing 510 close to the opening. In this way, the user can disassemble and install the liquid storage member 520 in the first installation cavity 510b, which is convenient for the user to add liquid to or clean the liquid storage member 520, and the operation is more convenient. Considering that the air duct assembly of the storage box is arranged on the side away from the opening, by arranging the humidification part and the exhaust part on the side of the housing 510 away from the opening, the air flow humidified in the humidification cavity 510d flows to the exhaust cavity 510g, and then the humidified air flow flows to the air duct assembly through the air outlet on the housing 510. This structure has the advantages of corresponding positions and convenient connection, reducing the resistance and energy loss in the air flow, and improving the reliability and stability of the humidification of the storage cavity by the humidification assembly 500.

[0107] The exhaust part is located at the top of the humidifying part. Setting the exhaust part at the top of the humidifying part can utilize the principle of natural convection to effectively discharge the humidified air flow and improve the exhaust efficiency.

[0108] As an implementable embodiment, the housing 510 includes a side plate 511 and a cover plate 512. The cover plate 512 is connected to the top of the side plate 511.

[0109] The first installation cavity 510b, the second installation cavity 510c of the installation part, the humidifying cavity 510d of the humidifying part, and the exhaust cavity 510g of the exhaust part are at least surrounded by the cover plate 512 and the side plate 511. A pick-and-place opening is formed on one side of the cover plate 512 and the side plate 511 close to the opening. The pick-and-place opening is used to communicate with the second installation cavity 510c of the installation part.

[0110] Exemplarily, referring to Figures 1 to 7 As shown, a pick-and-place opening is formed on one side of the cover plate 512 and the side plate 511 close to the opening. The design of the pick-and-place opening enables users to easily access the liquid storage member 520 and the fan assembly 540 in the installation cavity 510a, facilitating regular inspection, cleaning, and maintenance, reducing the difficulty and time of maintenance. At the same time, taking and placing the liquid storage member 520 through the pick-and-place opening will not affect the normal operation of the humidifying member 530 and the fan assembly 540, ensuring that the use of other components is not disturbed and improving the overall operation convenience of the humidifying assembly 500.

[0111] Figure 8 Schematically shows a structural diagram of the liquid storage member 520 of the humidifying assembly 500 provided by an embodiment of the present application. Figure 9 Schematically shows a structural diagram of the pick-and-place cover 516 of the humidifying assembly 500 provided by an embodiment of the present application.

[0112] Exemplarily, referring to Figure 5 、 Figure 8 and Figure 9 As shown, in order to facilitate observing the remaining amount of the liquid in the liquid storage cavity 520a, a pick-and-place cover 516 is provided at the pick-and-place opening. The pick-and-place cover 516 is rotatably connected to the side plate 511. A window 516a is provided on the pick-and-place cover 516. Users can see the liquid level in the liquid storage member 520 through the window 516a. In addition, a handle is provided on the pick-and-place cover 516 to facilitate opening the pick-and-place cover 516 and taking out the liquid storage box.

[0113] As an implementable embodiment, referring to Figures 5 to 9 shown, the housing 510 further includes a first partition 513. The first partition 513 extends in a first direction. The first direction intersects the height direction of the humidifying assembly 500. The first direction refers to the direction shown by X in Figure 6 .

[0114] The first partition plate 513 is located within the installation cavity 510a of the installation portion. The first partition plate 513 divides the installation cavity 510a into a first installation cavity 510b and a second installation cavity 510c. The first installation cavity 510b is located on top of a part of the second installation cavity 510c.

[0115] A liquid storage member 520 is detachably installed within the first installation cavity 510b. A blower assembly 540 is installed within the second installation cavity 510c. By providing the first partition plate 513, the first partition plate 513 divides the installation cavity 510a into the first installation cavity 510b and the second installation cavity 510c. The liquid storage member 520 and the blower assembly 540 are respectively located in different areas, with clear functional zoning to avoid mutual interference. In addition, considering that the liquid storage member 520 is located within the first installation cavity 510b, the design of the first partition plate 513 can prevent the liquid in the liquid storage member 520 from leaking into the second installation cavity 510c, avoiding the influence of liquid leakage on the normal operation of the blower assembly 540 and improving the safety of the blower assembly 540.

[0116] Refer to Figure 5 As shown, a part of the second installation cavity 510c is located at the bottom of the first installation cavity 510b, and a part of the second installation cavity 510c is located at the bottom of the humidifying cavity 510d. In this way, the blower assembly 540 is located at the bottom of the liquid storage member 520 and the humidifying member 530. The blower assembly 540 located at the bottom of the humidifying member 530 can help maintain the temperature of the humidifying member 530 at a relatively stable preset value, avoiding changes in the temperature of the liquid and the humidifying member 530 located within the humidifying cavity 510d, and avoiding the influence of temperature changes on the evaporation rate of the liquid within the humidifying cavity 510d, improving the humidifying effect of the humidifying member 530 on the air flow. In addition, this layout structure of the humidifying member 530, the liquid storage member 520, and the blower assembly 540 enables the air flow within the humidifying assembly 500 to form an upward flow path from bottom to top. During the upward movement of the humidified air flow, the temperature gradually decreases, making it not easy to condense, and reducing the formation of water droplets.

[0117] Exemplarily, the first partition plate 513 is provided with mounting protrusions facilitating the installation of the blower 542. The mounting protrusions provide a fixed mounting position for the installation of the blower 542 in the second installation cavity 510c, enabling the blower assembly 540 to be more firmly installed within the second installation cavity 510c and preventing displacement or vibration of the blower assembly 540 during operation.

[0118] Exemplarily, the liquid storage member 520 includes a liquid storage box.

[0119] In some embodiments, a buckle is provided on either the liquid storage member 520 or the first partition 513, and a slot is provided on the other of the liquid storage member 520 and the first partition 513. The liquid storage member 520 and the first partition 513 are detachably connected through the cooperation of the buckle and the slot. In this way, the user only needs to gently press or pull the buckle to detach or install the liquid storage member 520 from the housing 510.

[0120] In some other embodiments, a slide rail is provided on the side plate 511. Correspondingly, a sliding groove cooperating with the slide rail is provided on the side surface of the liquid storage member 520. The user can slide the liquid storage member 520 to slide it into or out of the first installation cavity 510b along the slide rail, realizing the detachable connection between the liquid storage member 520 and the installation cavity 510a.

[0121] In still some other embodiments, magnets are respectively embedded at the connection parts of the liquid storage member 520 and the first partition 513, and the detachable connection between the liquid storage member 520 and the first partition 513 is realized through magnetic force. This design is easy to operate. The liquid storage member 520 can be automatically adsorbed and fixed just by approaching the first partition 513.

[0122] By detachably installing the liquid storage member 520 in the first installation cavity 510b, it is convenient for the user to disassemble and install the liquid storage member 520, and it is convenient to clean and maintain the liquid storage cavity 520a of the liquid storage member 520. In addition, when the liquid storage member 520 is damaged or needs to be replaced, only the damaged part needs to be replaced, instead of replacing the entire humidifying component 500, reducing the maintenance and replacement costs of the humidifying component 500.

[0123] Figure 10 Schematically shows a structural diagram of the fan assembly 540 provided by the embodiments of the present application.

[0124] As a realizable implementation manner, referring to Figure 10 As shown, the fan assembly 540 includes a fan mounting seat 541 and a fan 542. The fan mounting seat 541 has a fan mounting cavity 541a. The fan mounting cavity 541a has a fan air inlet 541b and a fan air outlet 541c. The fan 542 is installed at the fan air inlet 541b, and the fan mounting cavity 541a communicates with the humidifying cavity 510d through the fan air outlet 541c. The fan mounting seat 541 provides a fixed installation position, enabling the fan 542 to be stably installed at the fan air inlet 541b, preventing the fan 542 from displacing or vibrating during operation. By providing the fan air inlet 541b and the fan air outlet 541c on the fan mounting cavity 541a, the air flow path is clarified, ensuring that the air flow in the storage cavity can smoothly enter from the fan air inlet 541b, be pressurized by the fan 542 and discharged from the fan air outlet 541c into the humidifying cavity 510d.

[0125] Exemplarily, during the humidification process of the humidification component 500, first, the fan 542 is started. The fan 542 guides the air flow in the storage cavity to the fan installation cavity 541a through the fan air inlet 541b. Subsequently, the air flow in the fan installation cavity 541a flows into the humidification cavity 510d through the fan air outlet 541c. The humidifying member 530 in the humidification cavity 510d humidifies the air flow so that the air flow can fully absorb the liquid, ensuring that the humidity of the air flow is close to the preset value. By providing the fan 542 and using the forced circulation of the fan 542, the air flow in the storage cavity can continuously flow and undergo humidification treatment. The forced air circulation can avoid dead corners in the air circulation in the storage cavity, ensuring that the humidity in each corner can be effectively controlled and providing a more uniform humidity environment. This design helps to maintain a constant humidity in the storage cavity, avoid humidity fluctuations, and provide a stable storage environment.

[0126] As an implementable embodiment, referring to Figure 5 and Figure 6 shown, the housing 510 further includes an air inlet plate 515. The air inlet plate 515 is connected to one side of a part of the side plate 511 and the first partition plate 513 close to the opening. The air inlet plate 515 is located on one side of the second installation cavity 510c close to the opening.

[0127] A plurality of air inlet holes are arranged at intervals on the air inlet plate 515. The air inlet holes form an air inlet. The design of the plurality of air inlet holes on the air inlet plate 515 ensures that the fan assembly 540 can obtain sufficient gas flow in the storage cavity. The air inlet holes communicate with the second installation cavity 510c. By arranging the air inlet holes at intervals, it is ensured that the air flow can enter the second installation cavity 510c evenly, improving the ventilation effect and preventing the situation of poor air flow in local areas.

[0128] Figure 11 Schematically shows the structural schematic of the cover plate 512 of the humidification component 500 provided by the embodiment of the present application Figure 1 . Figure 12 Schematically shows the mechanism schematic of the cover plate 512 of the humidification component 500 provided by the embodiment of the present application Figure 2 .

[0129] As an implementable embodiment, referring to Figure 5 , Figure 6 , Figure 11 and Figure 12 shown, the housing 510 further includes a second partition plate 514. The second partition plate 514 extends along the height direction of the humidification component 500. The bottom of the second partition plate 514 is connected to the first partition plate 513, and the top of the second partition plate 514 is connected to the cover plate 512. In this way, the second partition plate 514 extends along the height direction of the humidification component 500 (i.e., the height direction of the box body 100). The height direction of the humidification component 500 refers to Figure 6The direction shown by Z in the figure. That is to say, the flow direction of the air flow is along the height direction of the box body 100, and the humidified air flow can be transported from the humidification cavity 510d to the exhaust cavity 510g and discharged through the air outlet, improving the humidification efficiency.

[0130] The first partition 513, the second partition 514, the cover plate 512 and the side plate 511 jointly enclose the humidification cavity 510d. Through the enclosure design of the first partition 513, the second partition 514, the cover plate 512 and the side plate 511, an independent humidification cavity 510d is formed, preventing the accidental leakage of the humidified air flow and ensuring the stability and efficiency of the humidification effect.

[0131] As an achievable implementation manner, the cover plate 512 includes a first plate body 512a and a second plate body 512d. The first plate body 512a includes a first extension section 512b and a second extension section 512c. The second extension section 512c is connected to the side of the first extension section 512b away from the opening. The first extension section 512b is located at the top of the installation cavity 510a. A part of the second extension section 512c is bent towards the direction close to the humidification cavity 510d, which helps to guide the humidified air flow into the exhaust cavity 510g, optimizes the air flow path and improves the humidification efficiency.

[0132] The second plate body 512d is connected to the side of the second extension section 512c away from the humidification cavity 510d, and jointly forms the exhaust cavity 510g with the bent second extension section 512c and the side plate 511. A air outlet is formed on the second plate body 512d to ensure that the humidified air flow can be discharged smoothly, preventing the humidified air flow from accumulating in the exhaust cavity 510g and affecting the humidification effect.

[0133] As an achievable implementation manner, a first docking component 524 is provided on the liquid storage member 520. A humidification liquid inlet is formed on the second partition 514. A second docking component 532 is provided at the humidification liquid inlet. The first docking component 524 and the second docking component 532 are detachably docked to connect the liquid storage cavity 520a and the humidification cavity 510d.

[0134] Exemplarily, during the use of the humidification component 500, first place the liquid storage member 520 in the installation cavity 510a. At this time, the first docking component 524 provided at the liquid outlet of the liquid storage member 520 and the second docking component 532 located at the humidification liquid inlet of the housing 510 are docked, so that the liquid can flow smoothly from the liquid storage cavity 520a to the humidification cavity 510d. By providing the first docking component 524 and the second docking component 532, the liquid storage member 520 can be made to transport liquid to the humidification cavity 510d in real time. The process is simple and fast, reducing the operation complexity and time cost of the user. At the same time, the liquid in the liquid storage member 520 flows to the humidification cavity 510d through the first docking component 524 and the second docking component 532, reducing the risk of liquid spillage.

[0135] The first docking component 524 includes a first connection base, a first elastic member, and a first docking member. The first connection base is installed on the connection pipe. The connection pipe is arranged at the liquid storage liquid outlet. At least part of the first docking member is located in the first connection cavity. The first elastic member is connected between the first connection base and the first docking member in a compressed state.

[0136] Exemplarily, the first elastic member can be a spring. The first docking member can be a plunger.

[0137] The second docking component 532 includes a second connection base, a second elastic member, and a second docking member. The second connection base is installed at the humidification liquid inlet. The second connection base has a connection channel communicating with the humidification cavity 510d. The second elastic member is connected between the second connection base and the second docking member in a compressed state.

[0138] The elastic force of the first elastic member is greater than the elastic force of the second elastic member.

[0139] Exemplarily, the second elastic member can be a spring. The second docking member can be a plunger.

[0140] As an implementable embodiment, the humidifying member 530 includes a humidifying fiber 531. The part of the humidifying fiber 531 close to the bottom of the humidification cavity 510d is located below the liquid level of the humidification cavity 510d. In this way, the humidifying fiber 531 can fully absorb the liquid in the humidification cavity 510d to ensure the high efficiency and continuity of the humidifying effect. The humidifying fiber 531 sucks the liquid from the bottom to the top through capillary action to ensure that each position of the humidifying fiber 531 can humidify the air flow, improving the humidifying efficiency. At the same time, on the basis of the air flow driven by the fan assembly 540, the humidifying fiber 531 can effectively absorb the liquid and uniformly release the humidified air flow, preventing water vapor from accumulating in the humidification cavity 510d and ensuring the stability of the humidifying effect. The top of the humidifying fiber 531 is fixedly connected to the top of the humidifying part to ensure that the fiber maintains a stable position in the humidification cavity 510d, preventing the humidifying fiber 531 from moving or falling off in the humidification cavity 510d and improving the safety and reliability of the humidifying assembly 500.

[0141] As an implementable embodiment, an overflow port is provided on the side plate 511. The overflow port communicates with the humidification cavity 510d. The design of the overflow port can effectively prevent the liquid level in the humidification cavity 510d from being too high, avoiding the excess liquid in the humidification cavity 510d from overflowing into other cavities or the external environment, thereby protecting the humidifying assembly 500 and the inner tank. In addition, by discharging the excess water through the overflow port, the water level in the humidification cavity 510d can be kept stable, ensuring the uniformity and stability of the humidifying effect. By discharging the excess water in time through the overflow port, water is prevented from entering the electrical component area, reducing the risks of electric leakage and short circuit and improving the safety of the device.

[0142] Second aspect, an embodiment of the present application provides a storage box. The storage box includes a box body 100, an inner container, and a humidifying component 500. The box body 100 has a cavity.

[0143] The inner container is located in the cavity, and the inner container forms a storage cavity. The humidifying component 500 is disposed in the cavity, and the humidifying component is used to humidify the storage cavity. The humidifying component 500 includes a liquid storage member 520, a humidifying portion, an air duct, and a fan assembly 540. The liquid storage member 520 is used to supply liquid to the humidifying portion; the humidifying portion is used to humidify the air flow, and the humidifying portion has a humidifying air outlet.

[0144] The air duct has an air inlet and an air outlet, and both the air inlet and the air outlet are used to communicate with the storage cavity;

[0145] The fan assembly 540 is used to suck the air flow in the storage cavity into the air duct through the air inlet, and discharge the air flow from the air outlet to the storage cavity.

[0146] The humidifying air outlet merges into the air duct, so that the air flow humidified by the humidifying portion is discharged from the air outlet of the air duct to the storage cavity.

[0147] By connecting the two ends of the air duct to the storage cavity through the air inlet and the air outlet respectively, the air flow in the humidifying component 500 is realized; the liquid storage member 520 supplies liquid to the humidifying portion to realize the liquid flow in the humidifying component. In this way, the circulation process of the air flow in the storage box and the conveying process of the liquid are separated, avoiding the mutual influence between the air flow and the liquid flow, improving the humidifying stability of the humidifying portion, avoiding the problem of too high or too low humidity in local areas, and improving the use performance of the storage box. At the same time, by merging the humidifying air outlet into the air duct, the air flow humidified by the humidifying portion is discharged from the air outlet of the air duct to the storage cavity, so as to realize the humidifying effect of the humidifying portion on the air flow in the air duct.

[0148] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some 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.

[0149] For the sake of convenience of explanation, the above description has been made in conjunction with specific embodiments. However, the above exemplary discussion is not intended to be exhaustive or to limit the embodiments to the specific forms disclosed above. According to the above teachings, various modifications and variations can be obtained. The selection and description of the above embodiments are for better explaining the principles and practical applications, so that those skilled in the art can better use the embodiments and various different modified embodiments suitable for specific use considerations.

Claims

1. A storage box, characterized in that, Comprising: A box body (100) having a cavity; An inner container located in the cavity, and the inner container forms a storage cavity; A humidifying component (500) disposed in the cavity, and the humidifying component (500) is used for humidifying the storage cavity; The humidifying component (500) includes: A liquid storage member (520); A humidifying part; the liquid storage member (520) is used for supplying liquid to the humidifying part; the humidifying part has a humidifying air outlet; An air duct having an air inlet and an air outlet, and both the air inlet and the air outlet are communicated with the storage cavity; A fan assembly (540) for sucking the air flow in the storage cavity into the air duct through the air inlet and discharging the air flow from the air outlet to the storage cavity; The humidifying air outlet converges into the air duct so that the air flow humidified by the humidifying part is discharged from the air outlet of the air duct to the storage cavity.

2. The storage box according to claim 1, characterized in that, The humidifying component (500) includes a humidifying member (530) and a housing (510); the housing (510) is formed with the air inlet and the air outlet, and the housing (510) has: An installation part having: A first installation cavity (510b); A second installation cavity (510c); the second installation cavity (510c) of the installation part is communicated with the storage cavity through the air inlet; The humidifying part having a humidifying cavity (510d); The humidifying member (530) is located in the humidifying cavity (510d); An exhaust part having an exhaust cavity (510g), and the exhaust cavity (510g) of the exhaust part is communicated with the storage cavity through the air outlet; Wherein, the humidifying cavity (510d) of the humidifying part is communicated with the second installation cavity (510c) of the installation part, and the humidifying cavity (510d) of the humidifying part is communicated with the exhaust cavity (510g) of the exhaust part; the second installation cavity (510c), the humidifying cavity (510d) and the exhaust cavity (510g) form the air duct; The fan assembly (540) is located in the second installation cavity (510c), and the fan air outlet (541c) of the fan assembly (540) is communicated with the humidifying cavity (510d) of the humidifying part; The liquid storage member (520) is detachably installed in the first installation cavity (510b); the liquid storage cavity (520a) of the liquid storage member (520) is communicated with the humidifying cavity (510d) of the humidifying part.

3. The storage box according to claim 2, characterized in that, The box body (100) has an opening; the installation part is located on one side of the housing (510) close to the opening; The humidifying part and the exhaust part are located on one side of the housing (510) away from the opening; the exhaust part is located at the top of the humidifying part.

4. The storage box according to claim 3, characterized in that, The housing (510) includes: Side plates (511); A cover plate (512) connected to the top of the side plates (511); The first installation cavity (510b) and the second installation cavity (510c) of the installation part, the humidification cavity (510d) of the humidification part, and the exhaust cavity (510g) of the exhaust part are surrounded by at least a cover plate (512) and a side plate (511); a take-in and put-out port is formed on one side of the cover plate (512) and the side plate (511) close to the opening, and the take-in and put-out port is used to communicate with the second installation cavity (510c) of the installation part.

5. The storage box according to claim 4, characterized in that, The housing (510) further comprises: A first partition (513), the first partition (513) extending along a first direction, the first direction intersecting with a height direction of the humidifying assembly (500); The first partition (513) is located in the installation cavity (510a) of the installation portion, and the first partition (513) divides the installation cavity (510a) into a first installation cavity (510b) and a second installation cavity (510c), and the first installation cavity (510b) is located on the top of a portion of the second installation cavity (510c); A liquid storage component (520) is detachably installed in the first installation cavity (510b), and a fan assembly (540) is installed in the second installation cavity (510c).

6. The storage box according to claim 5, characterized in that, The housing (510) further comprises: A second partition (514), the second partition (514) extending in a height direction of the humidifying assembly (500), the bottom of the second partition (514) connected to the first partition (513), and the top of the second partition (514) connected to the cover plate (512); The first partition plate (513), the second partition plate (514), the cover plate (512) and the side plate (511) together form a humidification chamber (510d).

7. The storage box according to any one of claims 5-6, characterized in that, The cover plate (512) comprises: The first plate (512a) includes: A first extension section (512b), the first extension section (512b) is located at the top of the installation cavity (510a); A second extension section (512c), the second extension section (512c) is connected to a side of the first extension section (512b) away from the opening; a portion of the second extension section (512c) is bent in a direction close to the humidification chamber (510d); A second plate body (512d) is connected to a side of the second extension section (512c) facing away from the humidification chamber (510d), and together with the bent second extension section (512c) and the side plate (511) forms an exhaust chamber (510g); Wherein, the air outlet is formed on the second plate body (512d).

8. The storage box according to claim 7, wherein, The housing (510) further comprises: An air inlet plate (515), the air inlet plate (515) being connected to a portion of the side plate (511) and a side of the first partition plate (513) close to the opening, and the air inlet plate (515) being located on a side of the second installation cavity (510c) close to the opening; A plurality of air inlet holes are arranged at intervals on the air inlet plate (515), and the air inlet holes form the air inlet port; the air inlet holes are connected to the second installation cavity (510c).

9. The storage box according to claim 6, characterized in that, A first docking component (524) is provided on the liquid storage member (520), and a humidification liquid inlet is formed on the second partition plate (514). A second docking component (532) is provided at the humidification liquid inlet; the first docking component (524) and the second docking component (532) are detachably docked to communicate the liquid storage cavity (520a) and the humidification cavity (510d).

10. The storage box according to claim 7, characterized in that, The fan assembly (540) includes: A fan mounting seat (541), the fan mounting seat (541) has a fan mounting cavity (541a), the fan mounting cavity (541a) has a fan air inlet (541b) and a fan air outlet (541c); the fan mounting cavity (541a) is communicated with the humidification cavity (510d) through the fan air outlet (541c); A fan (542), the fan (542) is installed at the fan air inlet (541b).

11. The storage box according to claim 7, characterized in that, The humidifying member (530) includes: Humidifying fibers (531), the part of the humidifying fibers (531) close to the bottom of the humidification cavity (510d) is located below the liquid level of the humidification cavity (510d), and the top of the humidifying fibers (531) is fixedly connected to the top of the humidifying part.

12. The storage box according to claim 7, wherein An overflow port is provided on the side plate (511), and the overflow port is communicated with the humidification cavity (510d).

13. A storage box, characterized in that, It includes: A box body (100), having a cavity; An inner container, the inner container is located in the cavity, and the inner container forms a storage cavity; A humidifying assembly (500), arranged in the cavity, the humidifying assembly (500) is used for humidifying the storage cavity; The humidifying assembly (500) includes: A liquid storage member (520); A humidifying part; the liquid storage member (520) is used for supplying liquid to the humidifying part; the humidifying part is used for humidifying the air flow, and the humidifying part has a humidifying air outlet; An air duct, the air duct has an air inlet and an air outlet, and both the air inlet and the air outlet are used for communicating with the storage cavity; A fan assembly (540), the fan assembly (540) is used for sucking the air flow in the storage cavity into the air duct through the air inlet and discharging the air flow from the air outlet to the storage cavity; The humidifying air outlet merges into the air duct, so that the air flow humidified by the humidifying part is discharged from the air outlet of the air duct to the storage cavity.