Humidification device and storage box
By designing an independent airflow and liquid circulation system in the storage box, the problem of poor humidification effect of the storage box is solved, achieving humidity uniformity and stability, and extending the shelf life of stored items.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2026-04-02
AI Technical Summary
The existing storage boxes have poor humidification effects, resulting in uneven humidity inside the boxes and affecting the quality of stored items.
Design a storage box including a box body, an inner liner and a humidification component. By connecting the two ends of the air duct to the storage cavity respectively, independent circulation of airflow and liquid is achieved, avoiding mutual interference between airflow and liquid flow. The humidification component with a zoned design ensures the stability of the airflow circulation process and the humidification effect.
It improves the humidity uniformity and humidification stability inside the storage box, avoids the problem of excessively high or low humidity in some areas, extends the shelf life of stored items, and improves the performance of the storage box.
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Figure CN2024135794_02042026_PF_FP_ABST
Abstract
Description
Humidifying device and storage box
[0001] The present application claims priority to Chinese Patent Application No. 202411394334.1, filed on September 30, 2024; Chinese Patent Application No. 202411387049.7, filed on September 30, 2024; Chinese Patent Application No. 202422418107.X, filed on September 30, 2024; Chinese Patent Application No. 202422418035.9, filed on September 30, 2024; Chinese Patent Application No. 202422414274.7, filed on September 30, 2024; Chinese Patent Application No. 202422414232.3, filed on September 30, 2024; and Chinese Patent Application No. 202422414216.4, filed on September 30, 2024, the contents of all of which are incorporated herein by reference in their entirety. TECHNICAL FIELD
[0002] The present disclosure relates to the technical field of humidifying devices, and in particular to a humidifying device and a storage box. BACKGROUND
[0003] A storage box is a container used to store and protect items. For example, a cigar is stored in a storage box. The cigar will continue to age under suitable temperature and humidity conditions, and the flavor and aroma will become more complex and rich over time. SUMMARY
[0004] The present disclosure provides a humidifying device and a storage box, which improves the stability of the humidifying device, improves the humidifying capacity of the storage box, reduces the humidity fluctuation of the storage box, and improves the use performance of the storage box.
[0005] In one aspect, a storage box is provided. The storage box comprises a box body, an inner container and a humidifying assembly. The box body has a cavity; the inner container is located in the cavity and forms a storage cavity; the humidifying assembly is arranged in the cavity and can humidify the storage cavity; the humidifying assembly comprises a humidifying assembly body, a liquid storage member, an air duct and a fan assembly. The humidifying assembly has a humidifying air outlet. The liquid storage member can supply liquid to the humidifying assembly. The air duct has an air inlet and at least one air outlet, and any one of the air inlet and the at least one air outlet is in communication with the storage cavity. The fan assembly can suck air in the storage cavity into the air duct through the air inlet and discharge the air from the air outlet to the storage cavity. The humidifying air outlet is in communication with the air duct, so that the air humidified by the humidifying assembly is discharged from the air outlet to the storage cavity.
[0006] 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 assembly is realized. The liquid storage member supplies liquid to the humidifying assembly 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 delivery 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 member, avoid the problem of too high or too low humidity in local area, and improve the use performance of the storage box. In addition, by connecting the humidifying air outlet to the air duct, the air humidified by the humidifying assembly is discharged from the air outlet of the air duct to the storage cavity, so as to realize the humidifying effect of the humidifying assembly on the air flow in the air duct.
[0007] In another aspect, a humidifying device is provided. The humidifying device comprises a liquid storage member, a humidifying assembly and a docking assembly. The liquid storage member has a liquid storage cavity and a liquid outlet. The liquid storage member comprises a connecting pipe having a connecting cavity; the connecting cavity is in communication with the liquid outlet and the liquid storage cavity. The humidifying assembly has a humidifying liquid inlet and a humidifying cavity. The docking assembly is used to dock the liquid storage member and the humidifying assembly. The liquid storage member is used to supply liquid to the humidifying assembly. The docking assembly comprises a first docking assembly and a second docking assembly.
[0008] The first docking assembly comprises a first connecting seat, a first docking member and a first elastic member. The first connecting seat is located in the liquid storage cavity and is mounted on the connecting pipe. At least part of the first docking member is located in the connecting cavity; the first docking member and the connecting pipe are in sliding connection; and the first elastic member is connected between the first connecting seat and the first docking member in a compressed state.
[0009] The second docking assembly comprises a second connecting seat, a second docking piece and a second elastic piece. The second connecting seat is installed at the humidifying liquid inlet, and the second connecting seat has a connecting channel communicating with the humidifying part. At least part of the second docking piece is located in the connecting channel. The second docking piece and the second connecting seat are in sliding connection. The second elastic piece is connected between the second connecting seat and the second docking piece in a compressed state. The elastic force of the first elastic piece is greater than that of the second elastic piece. When the first docking assembly and the second docking assembly are docked, the first docking piece abuts against the second docking piece, and the second elastic piece is compressed to make the second docking piece open the connecting channel. When the second docking piece opens the connecting channel, the second docking piece abuts against the first docking piece, and the first elastic piece is compressed to make the first docking piece open the liquid storage outlet. When the first docking assembly and the second docking assembly are separated, the first elastic piece releases the elastic force, and the first docking piece blocks the liquid storage outlet under the action of the elastic force of the first elastic piece. When the first docking piece blocks the liquid storage outlet, the second docking piece blocks the connecting channel under the action of the elastic force of the second elastic piece.
[0010] The humidifying device provided by some embodiments of the present disclosure has the first docking assembly and the second docking assembly. In the process of switching the liquid storage piece and the humidifying part from the undocking state to the docking state, the second docking piece of the second docking assembly first opens the connecting channel, and then the first docking piece of the first docking assembly opens the liquid storage outlet, so that the humidifying cavity and the liquid storage cavity are connected step by step. The connection sequence of the liquid storage cavity and the humidifying cavity is determined according to the liquid supply direction. The humidifying device not only improves the sealing performance of the humidifying device when the liquid storage piece supplies liquid to the humidifying part, but also improves the docking efficiency of the humidifying device and avoids excessive residual water in the docking process.
[0011] When the liquid storage piece and the humidifying part are switched from the docking state to the undocking state, the first docking piece and the second docking piece respectively close the liquid storage outlet and the connecting channel, so that the liquid storage outlet and the connecting channel are blocked respectively, and the sealing performance of the liquid storage piece and the humidifying part is improved. In the switching process, the liquid cannot leak from the liquid storage cavity or the humidifying cavity, and the generation of residual water is avoided, so that the reliable storage of the liquid is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0012] FIG. 1 is a structural diagram of a storage box according to some embodiments;
[0013] FIG. 2 is a structural diagram of a humidifying assembly of the storage box from a first perspective according to some embodiments;
[0014] FIG. 3 is a structural diagram of a humidifying assembly of the storage box from a second perspective according to some embodiments;
[0015] FIG. 4 is a structural view of a humidifying assembly of the storage box according to some embodiments, in a third perspective view;
[0016] FIG. 5 is a sectional view along line A-A of FIG. 4;
[0017] FIG. 6 is a structural sectional view along line B-B of FIG. 4;
[0018] FIG. 7 is a partial enlarged view of circle PI of FIG. 6;
[0019] FIG. 8 is a partial enlarged view of circle P2 of FIG. 6;
[0020] FIG. 9 is a sectional view along line C-C of FIG. 4;
[0021] FIG. 10 is a structural view of a humidifying assembly of the storage box according to some embodiments;
[0022] FIG. 11 is a structural view of a housing of the storage box according to some embodiments, in a first perspective view;
[0023] FIG. 12 is a structural view of a housing of the storage box according to some embodiments, in a second perspective view;
[0024] FIG. 13 is a structural view of a liquid storage member of the storage box according to some embodiments;
[0025] FIG. 14 is a structural view of a cover of the liquid storage member of the storage box according to some embodiments;
[0026] FIG. 15 is a structural view of the liquid storage member of the storage box according to some embodiments, with the liquid storage cover removed, in a first perspective view;
[0027] FIG. 16 is a structural view of the liquid storage member of the storage box according to some embodiments, with the liquid storage cover removed, in a second perspective view;
[0028] FIG. 17 is a structural view of the liquid storage cover of the liquid storage member of the storage box according to some embodiments;
[0029] FIG. 18 is a structural view of a fan assembly of the storage box according to some embodiments;
[0030] FIG. 19 is a structural view of a housing of the storage box according to some embodiments;
[0031] FIG. 20 is a structural view of a humidifying member of the storage box according to some embodiments;
[0032] FIG. 21 is a structural view of a cover member and the humidifying member of the storage box according to some embodiments;
[0033] FIG. 22 is a structural view of a housing and a docking assembly of the storage box according to some embodiments;
[0034] FIG. 23 is a structural diagram of a docking assembly of the storage box according to some embodiments;
[0035] FIG. 24 is another structural diagram of a docking assembly of the storage box according to some embodiments;
[0036] FIG. 25 is yet another structural diagram of a docking assembly of the storage box according to some embodiments;
[0037] FIG. 26 is yet another structural diagram of a docking assembly of the storage box according to some embodiments;
[0038] FIG. 27 is a structural diagram of a first connecting seat of the storage box according to some embodiments;
[0039] FIG. 28 is a structural diagram of a first docking piece of the storage box according to some embodiments;
[0040] FIG. 29 is a structural diagram of a second docking assembly of the storage box according to some embodiments;
[0041] FIG. 30 is a structural diagram of a second connecting seat and a second docking piece of the storage box according to some embodiments;
[0042] FIG. 31 is a structural diagram of a first stop piece of the storage box from a first perspective according to some embodiments;
[0043] FIG. 32 is a structural diagram of a first stop piece of the storage box from a second perspective according to some embodiments;
[0044] FIG. 33 is a structural diagram of a turnover component of the storage box according to some embodiments;
[0045] FIG. 34 is a structural diagram of a liner, a humidifying assembly, and a conveying air duct in the storage box according to some embodiments. DETAILED DESCRIPTION
[0046] Some embodiments of the present disclosure will be described clearly and completely with reference to the drawings, obviously, the described embodiments are only some embodiments of the present disclosure, but not all the embodiments. Based on the embodiments provided in the present disclosure, all other embodiments obtained by those skilled in the art belong to the scope of protection of the present disclosure.
[0047] Unless the context clearly requires otherwise, throughout the description and the claims, the term "comprise," and variations thereof (e.g., "comprises" and "comprising"), will be construed to be inclusive in a manner consistent with the term's plain meaning, namely, "including but not limited to." In describing the description, the terms "one embodiment," "some embodiments," "exemplary embodiments," "example," "specific example" or "some examples" are intended to indicate that the described feature, structure, material, or characteristic is included in at least one embodiment or example of the present disclosure. Such phrasing merely indicates that the feature, structure, material, or characteristic is included in some embodiments or examples of the disclosure, but does not require that all embodiments or examples include the feature, structure, material, or characteristic. In addition, the description of a particular feature, structure, material, or characteristic in connection with an embodiment or example does not indicate that the feature, structure, material, or characteristic is required in all embodiments or examples.
[0048] Hereinafter, the terms "first" and "second" are used only for the purpose of description, and cannot be understood to indicate or imply relative importance or implicitly indicate the number of the indicated technical features. Thus, the features defined with "first" and "second" can explicitly or implicitly include one or more of the features. In the description of some embodiments of the present disclosure, the meaning of "a plurality of" is two or more, unless otherwise stated.
[0049] In describing some embodiments, the term "connected" and variations thereof can be used. The term "connected" is used broadly and exemplarily, and for example, "connected" can be fixedly connected, or detachably connected, or integrated; can be directly connected, or indirectly connected through an intermediate medium. The embodiments disclosed herein are not necessarily limited by the content herein.
[0050] "A, B, and C at least one of" has the same meaning as "at least one of A, B, or C," and includes the following combinations of A, B, and C: only A, only B, only C, a combination of A and B, a combination of A and C, a combination of B and C, and a combination of A, B, and C.
[0051] As used herein, the term "if' is optionally interpreted as meaning "when" or "upon the occurrence of" or "in response to a determination" or "in response to a detection" depending on the context. Similarly, the phrase "if it is determined" or "if [a stated condition or event] is detected" is optionally interpreted as meaning "upon determining" or "in response to a determination" or "upon detecting [the stated condition or event]" or "in response to a detection [of the stated condition or event]."
[0052] The use of “adapted to” or “configured to” herein means open and inclusive language that does not exclude additional devices or steps not explicitly described.
[0053] Additionally, the use of “based on” means open and inclusive, as the process, step, calculation, or other action that is based on one or more recited conditions or values can in practice be based on additional conditions or values beyond those recited.
[0054] As used herein, “about,” “approximately,” or “around” includes the recited value and the average value within an acceptable range of deviation from the particular value, as determined by one of ordinary skill in the art considering the measurement in question and the error in measuring the particular quantity (i.e., the limitations of the measurement system).
[0055] As used herein, “parallel,” “perpendicular,” “equal” includes the recited condition and conditions that approximate the recited condition within an acceptable range of deviation, as determined by one of ordinary skill in the art considering the measurement in question and the error in measuring the particular quantity (i.e., the limitations of the measurement system).
[0056] In the related art, a storage box for storing cigars is generally referred to as a cigar humidor. The humidity of the cigar humidor has a great influence on the quality of the cigar. The cigar humidor is equipped with a humidification water tank. The humidification water tank includes a water tank body and a fan. The water tank body stores water. In this way, the airflow in the storage cavity is guided by the fan to flow into the water tank body, the water humidifies the airflow, and then the airflow 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.
[0057] However, the storage box in the related art has the problem of poor humidification effect.
[0058] To solve the above problem, some embodiments of the present disclosure provide a storage box 1000. The storage box 1000 can be used to store various items. For example, cigars. For the convenience of description, the subsequent description is mainly described by using the storage box 1000 to store cigars.
[0059] It can be understood that the storage box 1000 can also be used to store plastics, metals, wood, cloth, etc. The present disclosure does not limit the types of items stored in the storage box.
[0060] As shown in FIGS. 1 and 2, the storage box 1000 includes a box body 1001, an inner container 20, and a humidifying assembly 500. The box body 1001 has a cavity. The inner container 20 is located in the cavity. The inner container 20 is formed with a storage cavity. The storage cavity formed by the inner container 20 is used to store cigars. The humidifying assembly 500 is arranged in the cavity. The humidifying assembly 500 is arranged close to the bottom of the cavity. The humidifying assembly 500 is used to humidify the storage cavity, so as 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.
[0061] In some embodiments, as shown in FIGS. 3, 4, and 5, the humidifying assembly 500 includes a liquid storage member 520, a humidifying part, an air duct, and a fan assembly 540. The liquid storage member 520 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 the air inlet and the air outlet are respectively communicated with the storage cavity. The fan assembly 540 can suck the airflow in the storage cavity into the air duct through the air inlet, and discharge the airflow from the air outlet to the storage cavity. The humidifying air outlet merges into the air duct (for example, the humidifying air outlet is communicated with the air duct), so that the airflow humidified by the humidifying part is discharged from the air outlet of the air duct to the storage cavity.
[0062] By communicating the two ends of the air duct with the storage cavity through the air inlet and the air outlet respectively, the airflow flow in the humidifying assembly 500 is realized. By supplying liquid to the humidifying part through the liquid storage member 520, the liquid flow in the humidifying assembly 500 is realized. In this way, the circulation process of the airflow and the delivery process of the liquid in the storage box 1000 are separated, the mutual influence between the airflow flow and the liquid flow is avoided, the humidifying stability of the humidifying part is improved, the problem of too high or too low humidity in a local area is avoided, and the use performance of the storage box is improved. In addition, by merging the humidifying air outlet into the air duct, so that the airflow humidified by the humidifying part is discharged from the air outlet of the air duct to the storage cavity, the humidifying effect of the humidifying part on the airflow in the air duct is realized.
[0063] As shown in FIGS. 5, 6, 10, and 11, the humidifying assembly 500 includes a housing 510. The housing is formed with an air inlet and an air outlet. The housing 510 includes a mounting part, a humidifying part, and an exhaust part. The mounting part has a mounting cavity 510a, and the mounting cavity 510a includes a first sub-mounting cavity 510b and a second sub-mounting cavity 510c. The second sub-mounting cavity 510c of the mounting part is communicated with the air inlet and the storage cavity. The humidifying part has a humidifying cavity 510d. The exhaust part has an exhaust cavity 510g.
[0064] As shown in FIG. 10, the humidifying assembly 500 further comprises a humidifying piece 530. The humidifying piece 530 is located in the humidifying cavity 510d. The second sub-mounting cavity 510c, the humidifying cavity 510d and the exhaust cavity 510g form an air duct. The humidifying cavity 510d of the humidifying part and the second sub-mounting cavity 510c of the mounting part are in communication. The humidifying cavity 510d of the humidifying part and the exhaust cavity 510g of the exhaust part are in communication. The liquid storage piece 520 is detachably mounted in the mounting cavity 510a. The liquid storage cavity 520a of the liquid storage piece 520 is in communication with the humidifying cavity 510d of the humidifying part. The humidifying piece 530 is mounted in the humidifying cavity 510d. The design of the liquid storage piece 520 ensures that the humidifying piece 530 can continuously obtain liquid supply, avoiding the interruption of humidification due to insufficient liquid. The humidifying cavity 510d is in communication with the exhaust cavity 510g. The fan assembly 540 is located in the second sub-mounting cavity 510c of the mounting part. The fan outlet 541c (as shown in FIG. 18) of the fan assembly 540 is in communication with the humidifying cavity 510d of the humidifying part. The fan assembly 540 introduces airflow into the humidifying cavity 510d of the humidifying part at a certain speed interval, ensuring the stability and uniformity of the airflow. The housing 510 is provided with an air outlet, and the exhaust cavity 510g of the exhaust part is communicated to the storage cavity through the air outlet.
[0065] In some embodiments, as shown in FIG. 10, during the use of the storage box, the fan assembly 540 located in the second sub-mounting cavity 510c of the mounting part is in working state. First, the fan assembly 540 guides the airflow in the storage cavity 210 (as shown in FIG. 34) through the air inlet into the second sub-mounting cavity 510c of the mounting part, and the airflow flows into the humidifying cavity 510d of the humidifying part through the fan outlet 541c. In addition, the liquid storage piece 520 located in the first sub-mounting cavity 510b of the mounting part, the humidifying piece 530 located in the humidifying part, and the humidifying piece 530 located in the humidifying cavity 510d of the humidifying part work. The humidifying piece 530 in the humidifying cavity 510d of the humidifying part humidifies the airflow, and in addition, the liquid storage piece 520 delivers the liquid in the liquid storage cavity 520a to the humidifying cavity 510d of the humidifying part to humidify the airflow by the humidifying piece 530. Subsequently, the humidified airflow enters the exhaust cavity 510g of the exhaust part and is discharged through the air outlet 811 on the housing. The flow direction of the airflow is shown by the black solid arrow in FIG. 10.
[0066] By dividing the shell into the mounting part, the humidifying part and the exhaust part, the mounting part has the first sub-mounting cavity 510b, the second sub-mounting cavity 510c, the humidifying part has the humidifying cavity 510d, and the exhaust part has the exhaust cavity 510g, and the fan assembly 540 and the liquid storage member 520 are respectively arranged in the first sub-mounting cavity 510b and the second sub-mounting cavity 510c of the mounting part, and the humidifying member 530 is arranged in the humidifying cavity 510d of the humidifying part, the liquid storage member 520 has the liquid storage function, the fan assembly 540 has the air guiding function, the humidifying member 530 has the humidifying function, and the exhaust cavity 510g of the exhaust part has the exhaust function. In this way, the respective areas have clear division of labor, ensuring the stability of the air guiding process, the liquid delivery process, the air flow humidifying process and the air flow exhaust process, effectively controlling the humidity in the storage cavity 210, avoiding the quality decline of cigars due to improper humidity, and prolonging the storage period of cigars. In addition, the design of the divided areas enables the parts of the humidifying assembly 500 to operate independently, facilitating disassembly, cleaning and maintenance. Users can maintain or replace a certain component individually without affecting the operation of the entire humidifying assembly 500.
[0067] In addition, the second sub-mounting cavity 510c of the mounting part is communicated with the storage cavity 210 through the air inlet, the humidifying cavity 510d of the humidifying part is communicated with the second sub-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 exhaust cavity 510g of the exhaust part is communicated with the storage cavity 210 through the air outlet 811, and the fan outlet 541c of the fan assembly 540 is communicated with the humidifying cavity 510d. In this way, the air flow in the storage cavity 210 is first sucked into the fan assembly 540, then the sucked air flow is humidified by the humidifying member 530, and the humidified air flow is discharged from the humidifying assembly 500 through the exhaust cavity 510g and the air outlet 811, forming an air flow circulation. The circulation process of the air flow makes the humidity adjustment more flexible and rapid, realizes the continuity and efficiency of the humidifying assembly 500 in humidifying the air flow in the storage cavity 210, and in addition, the liquid storage cavity 520a of the liquid storage member 520 is communicated with the humidifying cavity 510d of the humidifying part, and the liquid storage member 520 is used to supply liquid to the humidifying cavity 510d to realize the flow of liquid in the humidifying assembly 500.
[0068] In this way, the circulation process of the air flow in the storage box and the delivery process of the liquid are separated, avoiding the mutual influence between the air flow and the liquid flow, to improve the humidifying stability of the humidifying assembly 500, avoid the problem of excessive or insufficient humidity in the local area, ensure the uniform distribution of humidity in the storage cavity 210, and improve the use performance of the storage box.
[0069] In addition, by reasonably arranging the humidifying member 530, the liquid storage member 520 and the fan assembly 540 in different areas of the shell, the overall volume of the humidifying assembly 500 is reduced, and the space utilization is improved.
[0070] For example, the liquid can be tap water. The liquid can also be distilled water and a mineral solution to prevent scale and bacterial growth.
[0071] In some embodiments, as shown in FIGS. 10-12, the cabinet 1001 has an opening. The mounting portion is located on the side of the housing close to the opening. In this way, the user can disassemble and install the liquid storage member 520 located in the first sub-mounting cavity 510b, which facilitates the user to add liquid or clean the liquid storage member 520, and the operation is more convenient. Considering that the air duct assembly of the storage cabinet is arranged on the side away from the opening, by arranging the humidifying portion and the exhaust portion on the side of the housing away from the opening, the airflow humidified by the humidifying cavity 510d flows to the exhaust cavity 510g, and then the humidified airflow flows to the air duct assembly through the exhaust port 811 on the housing. This structure has the advantages of position correspondence and convenient communication, reduces the resistance and energy loss in airflow flow, and improves the reliability and stability of the humidifying assembly 500 for humidifying the storage cavity 210.
[0072] The exhaust portion is located on the top of the humidifying portion. Arranging the exhaust portion on the top of the humidifying portion can effectively exhaust the humidified airflow by using the principle of natural convection, improving the exhaust efficiency.
[0073] In some embodiments, as shown in FIGS. 2 and 3, the housing includes a side plate 511 and a cover plate 512. The cover plate 512 is connected to the top of the side plate 511.
[0074] The first sub-mounting cavity 510b, the second sub-mounting cavity 510c of the mounting portion, the humidifying cavity 510d of the humidifying portion, and the exhaust cavity 510g of the exhaust portion are at least surrounded by the cover plate 512 and the side plate 511. The side close to the opening of the cover plate 512 and the side plate 511 is formed with a taking and placing opening. The taking and placing opening is used to communicate with the second sub-mounting cavity 510c of the mounting portion.
[0075] For example, as shown in FIG. 8, the side close to the opening of the cover plate 512 and the side plate 511 is formed with a taking and placing opening. The taking and placing opening is designed so that the user can easily access the liquid storage member 520 and the fan assembly 540 in the mounting cavity 510a, facilitating regular inspection, cleaning and maintenance, and reducing maintenance difficulty and time. In addition, taking and placing the liquid storage member 520 through the taking and placing 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.
[0076] For example, as shown in FIG. 13 and FIG. 14, in order to facilitate observation of the remaining amount of liquid in the liquid storage cavity 520a, a taking and placing cover 516 is arranged at the taking and placing opening. The taking and placing cover 516 and the side plate 511 are rotatably connected. The taking and placing cover 516 is provided with a window 516a. A user can see the liquid level in the liquid storage member 520 through the window 516a. In addition, the taking and placing cover 516 is also provided with a handle, which facilitates opening of the taking and placing cover 516 and removal of the liquid storage box.
[0077] In some embodiments, as shown in FIG. 12 and FIG. 13, the shell further comprises a first partition plate 513. The first partition plate 513 extends along a first direction. The first direction intersects the height direction of the humidifying assembly 500. The first direction is shown as direction X in FIG. 11.
[0078] The first partition plate 513 is located in the mounting cavity 510a of the mounting portion. The first partition plate 513 divides the mounting cavity 510a into a first sub-mounting cavity 510b and a second sub-mounting cavity 510c. The first sub-mounting cavity 510b is located at the top of the second sub-mounting cavity 510c.
[0079] The liquid storage member 520 is detachably mounted in the first sub-mounting cavity 510b. The fan assembly 540 is mounted in the second sub-mounting cavity 510c. By arranging the first partition plate 513, the first partition plate 513 divides the mounting cavity 510a into the first sub-mounting cavity 510b and the second sub-mounting cavity 510c, and the liquid storage member 520 and the fan assembly 540 are located in different areas, so that the functions are clearly divided and interference between them is avoided. In addition, considering that the liquid storage member 520 is located in the first sub-mounting cavity 510b, the design of the first partition plate 513 can prevent liquid in the liquid storage member 520 from leaking into the second sub-mounting cavity 510c, avoid the liquid leakage affecting the normal operation of the fan assembly 540, and improve the reliability of the fan assembly 540.
[0080] As shown in FIG. 7 and FIG. 8, part of the second sub-mounting cavity 510c is located at the bottom of the first sub-mounting cavity 510b, and part of the second sub-mounting cavity 510c is located at the bottom of the humidifying cavity 510d. In this way, the fan assembly 540 is located at the bottom of the liquid storage member 520 and the humidifying member 530, and the fan 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, avoid changes in the temperature of the liquid in the humidifying cavity 510d and the humidifying member 530, avoid the temperature changes affecting the evaporation rate of the liquid in the humidifying cavity 510d, and improve the humidifying effect of the humidifying member 530 on the airflow. In addition, the layout structure of the humidifying member 530, the liquid storage member 520 and the fan assembly 540 makes the airflow in the humidifying assembly 500 form a downward flow path, and the temperature of the humidified airflow gradually decreases during the upward process, so that condensation phenomenon is less likely to occur and water droplets are less likely to form.
[0081] In some embodiments, the first partition 513 is provided with a mounting member (e.g., a protrusion) for facilitating the installation of the fan 542. The mounting member provides a fixed mounting position for the fan 542 installation of the second sub-mounting cavity 510c, so that the fan assembly 540 can be more stably installed in the second sub-mounting cavity 510c, preventing displacement or vibration of the fan assembly 540 during operation.
[0082] In some embodiments, the liquid storage member 520 comprises a liquid storage box.
[0083] In some embodiments, either the liquid storage member 520 or the first partition 513 is provided with a buckle, and the other is provided with a clamping groove. The liquid storage member 520 and the first partition 513 are detachably connected through the cooperation of the buckle and the clamping groove. In this way, the user only needs to press or pull the buckle gently to detach or install the liquid storage member 520 to the housing.
[0084] In other embodiments, the side plate 511 is provided with a sliding rail, and the side surface of the liquid storage member 520 is provided with a sliding groove matched with the sliding rail. The user can slide the liquid storage member 520 to slide it into or out of the first sub-mounting cavity 510b along the sliding rail, realizing the detachable connection of the liquid storage member 520 and the mounting cavity 510a.
[0085] In yet other embodiments, magnets are embedded in the connection parts of the liquid storage member 520 and the first partition 513, respectively, to realize the detachable connection of the liquid storage member 520 and the first partition 513 through magnetic force. This design is simple to operate, and only needs to attract and fix the liquid storage member 520 close to the first partition 513.
[0086] By detachably installing the liquid storage member 520 in the first sub-mounting cavity 510b, the user can easily detach and install the liquid storage member 520, which is convenient for cleaning and maintaining 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, without the need to replace the entire humidifying assembly 500, reducing the maintenance and replacement cost of the humidifying assembly 500.
[0087] In some embodiments, as shown in FIG. 11, the housing further comprises an air inlet plate 515. The air inlet plate 515 is connected to part of the side plate 511 and the side of the first partition 513 close to the opening. The air inlet plate 515 is located on the side of the second sub-mounting cavity 510c close to the opening.
[0088] The air inlet plate 515 is provided with a plurality of air inlet holes at intervals. The air inlet holes form air inlets. The design of the plurality of air inlet holes on the air inlet plate 515 ensures that the fan assembly 540 can obtain sufficient air flow in the storage cavity 210. The air inlet holes are in communication with the second sub-mounting cavity 510c. By arranging the plurality of air inlet holes at intervals, it is ensured that the air flow can enter the second sub-mounting cavity 510c uniformly, improving the ventilation effect and preventing the air flow from flowing poorly in local areas.
[0089] In some embodiments, as shown in FIGS. 2, 3, 11 and 12, the shell further includes a second partition plate 514. The second partition plate 514 extends along the height direction of the humidifying assembly 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 humidifying assembly 500 (i.e., the height direction of the cabinet 1001). The height direction of the humidifying assembly 500 is the Z direction in FIG. 11. That is, the flow direction of the air flow is along the height direction of the cabinet 1001, and the humidified air flow can be transported from the humidifying cavity 510d to the exhaust cavity 510g and discharged through the exhaust port 811, improving the humidification efficiency.
[0090] The first partition plate 513, the second partition plate 514, the cover plate 512 and the side plate 511 together enclose the humidifying cavity 510d. By enclosing the first partition plate 513, the second partition plate 514, the cover plate 512 and the side plate 511, an independent humidifying cavity 510d is formed, preventing accidental leakage of the humidified air flow and ensuring the stability and efficiency of the humidification effect.
[0091] In some embodiments, referring to FIGS. 3, 4 and 19, the cover plate 512 includes a first plate body 512a and a cover plate component 80. The cover plate component 80 includes a second plate body 810. The first plate body 512a includes a first extension segment 512b and a second extension segment 512c. The second extension segment 512c is connected to the side of the first extension segment 512b away from the outlet. The first extension segment 512b is located at the top of the mounting cavity 510a. Part of the second extension segment 512c is bent towards the humidifying 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.
[0092] The second plate body 810 is connected to the side of the second extension segment 512c away from the humidifying cavity 510d and forms the exhaust cavity 510g together with the bent second extension segment 512c and the side plate 511. The second plate body 810 is provided with an exhaust port 811 to ensure that the humidified air flow can be smoothly discharged, preventing the humidified air flow from accumulating in the exhaust cavity 510g and affecting the humidification effect.
[0093] In some embodiments, as shown in FIG. 18, 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 mounted at the fan air inlet 541b, and the fan mounting cavity 541a is in communication with the humidifying cavity 510d through the fan air outlet 541c. The fan mounting seat 541 provides a fixed mounting position, so that the fan 542 can be stably mounted at the fan air inlet 541b, preventing displacement or vibration of the fan 542 during operation. By providing the fan air inlet 541b and the fan air outlet 541c on the fan mounting cavity 541a, the airflow path is clear, ensuring that the airflow in the storage cavity 210 can smoothly enter from the fan air inlet 541b, be pressurized by the fan 542, and then be discharged from the fan air outlet 541c into the humidifying cavity 510d.
[0094] During the humidification process of the humidifying assembly 500, first, the fan 542 is started, and the fan 542 guides the airflow in the storage cavity 210 to the fan mounting cavity 541a through the fan air inlet 541b. Then, the airflow in the fan mounting cavity 541a flows into the humidifying cavity 510d through the fan air outlet 541c. The humidifying member 530 in the humidifying cavity 510d humidifies the airflow, so that the airflow can fully absorb the liquid and ensure that the humidity of the airflow is close to the preset value. By providing the fan 542 and using the forced circulation of the fan 542, the airflow in the storage cavity 210 can continuously flow and be subjected to humidification treatment. Forced airflow circulation can avoid dead angles of air flow in the storage cavity 210, ensure that the humidity in any corner can be effectively controlled, and provide a more uniform humidity environment. This design helps to maintain a constant humidity in the storage cavity 210, avoid humidity fluctuations, and provide a stable storage environment.
[0095] To further reduce humidity fluctuations inside the storage box, in some embodiments, as shown in FIGS. 10, 15, and 16, the humidifying assembly 500 further includes an air permeable tube 521. The air permeable tube 521 is arranged in the liquid storage cavity 520a. In the height direction of the humidifying assembly 500, the bottom end of the air permeable tube 521 is higher than the bottom end of the humidifying member 530. The top end of the air permeable tube 521 is in communication with the atmosphere. The air permeable tube 521 keeps the pressure balance inside and outside the liquid storage cavity 520a by communicating with the atmosphere. When the liquid level in the humidifying cavity 510d drops, the liquid in the liquid storage cavity 520a flows into the humidifying cavity 510d, and in addition, air is supplemented through the air permeable tube 521 to prevent negative pressure and ensure smooth liquid flow.
[0096] For example, a Mariotte bottle is a device for keeping the liquid outflow rate fixed, and the working principle of the Mariotte bottle is based on the principle of air pressure balance and liquid static pressure. The structure of the Mariotte bottle generally includes a sealed bottle body, an air inlet pipe and a liquid outlet pipe. In some embodiments of the present disclosure, the liquid storage member 520 and the air permeable pipe 521 are designed according to the working principle of the Mariotte bottle. The direction of the top end of the air permeable pipe 521 to the bottom end of the air permeable pipe 521 is parallel to the height direction of the humidifying assembly 500.
[0097] For example, under the condition that the temperature of the storage compartment is constant and the air flow rate is constant, the humidity of the storage compartment depends on the humidity of the humidifying assembly 500. Whether the humidifying assembly 500 can discharge air flow with stable humidity through the exhaust cavity 510g and the air outlet 811 depends on whether the liquid level of the humidifying cavity 510d is stable, whether the humidifying area of the humidifying member 530 is fixed, and whether the height of the humidifying member 530 immersed in the humidifying cavity 510d is fixed.
[0098] In the process of humidifying the storage compartment by the humidifying assembly 500, first, the bottom end of the humidifying member 530 is below the liquid level of the humidifying cavity 510d, and the humidifying member 530 absorbs the liquid of the humidifying cavity 510d to humidify the air flow. The liquid level of the humidifying cavity 510d is flush with the plane where the bottom end of the air permeable pipe 521 is located. Subsequently, as the humidifying member 530 absorbs the liquid of the humidifying cavity 510d in the process of humidifying the air flow, the liquid level of the humidifying cavity 510d decreases, at this time, the liquid level height difference between the liquid storage cavity 520a and the humidifying cavity 510d increases, the pressure balance inside and outside the air permeable pipe 521 is broken, and the sum of the negative pressure inside the liquid storage cavity 520a and the liquid level height difference between the liquid storage cavity 520a and the humidifying cavity 510d is greater than 1 atmosphere.
[0099] Then, due to the pressure difference, the liquid in the liquid storage cavity 520a flows into the humidifying cavity 510d to supplement the liquid in the humidifying cavity 510d. The air permeable pipe 521 allows air to enter the liquid storage cavity 520a to supplement the volume of gas reduced due to the outflow of liquid, preventing the formation of excessive negative pressure. The liquid in the liquid storage cavity 520a flows into the humidifying cavity 510d to raise the liquid level in the humidifying cavity 510d to flush with the bottom end of the air permeable pipe 521. The humidifying member 530 continues to absorb the liquid in the humidifying cavity 510d for humidification, and when the liquid level decreases, the liquid in the liquid storage cavity 520a will automatically supplement to maintain the liquid level in the humidifying cavity 510d stable, and the liquid level in the humidifying cavity 510d is always flush with the bottom end of the air permeable pipe 521.
[0100] In this way, through the above process, the liquid level in the humidifying cavity 510d is always at the same level as the bottom end of the air permeable tube 521, so that the height of the humidifying element 530 immersed in the liquid in the humidifying cavity 510d is certain, and on the basis that the humidifying area of the humidifying element 530 is fixed, the amount of liquid evaporated by the humidifying element 530 per unit time is constant, thereby ensuring the humidity of the airflow humidified by the humidifying element 530 to be stable, achieving a stable humidity in the storage chamber, reducing the fluctuation of the humidity in the storage box, and preventing the cigars from drying or being excessively humid.
[0101] In some embodiments, as shown in FIGS. 15-17, the top of the liquid storage element 520 is provided with an air permeable hole 520b. The air permeable hole 520b is in communication with the liquid storage cavity 520a. The direction from the top end of the air permeable tube 521 to the bottom end of the air permeable tube 521 is parallel to the height direction of the humidifying assembly 500. In this way, the air permeable hole 520b is directly in communication with the atmosphere, ensuring that the air pressure in the liquid storage cavity 520a is always balanced with the atmospheric pressure, so that changes in air pressure caused by the flow of liquid in the liquid storage cavity 520a can be avoided, and the liquid in the liquid storage cavity 520a can flow smoothly. Since no negative pressure is formed, the liquid can continuously flow into the humidifying cavity 510d, ensuring that the humidifying element 530 can continuously obtain liquid supply and avoid interruption of humidification.
[0102] For example, the liquid storage element 520 includes a liquid storage box 520c and a liquid storage cover 520d. The liquid storage box 520c has a liquid storage cavity 520a with one end open. The liquid storage cover 520d covers the opening of the liquid storage cavity 520a of the liquid storage box 520c.
[0103] As shown in FIG. 17, the liquid storage cover 520d is provided with an air permeable hole 520b. The liquid storage cover 520d is provided with a liquid supplementing port, and a liquid supplementing cover covers the liquid supplementing port, so as to facilitate the user to supplement liquid to the liquid storage box 520c through the liquid supplementing port.
[0104] In some embodiments, the inner top wall of the liquid storage element 520 is provided with an air permeable tube fixing tube 522. The top end of the air permeable tube 521 is fixedly connected to the air permeable tube fixing tube 522.
[0105] The inner peripheral wall of the air permeable tube fixing tube 522 is fixedly connected to the outer peripheral wall of the top end of the air permeable tube 521. The normal projection of the top wall of the liquid storage element 520 surrounds the outer periphery of the air permeable hole 520b, and this surrounding design ensures that the airflow passage around the air permeable hole 520b is unobstructed, avoiding airflow obstruction. The unobstructed airflow passage helps to keep the air pressure in the liquid storage cavity 520a balanced with the atmospheric pressure, ensuring that the liquid can flow smoothly.
[0106] For example, the inner diameter of the air pipe fixing tube 522 is not less than (e.g., greater than or equal to) the outer diameter of the air pipe 521. The inner periphery of the air pipe fixing tube 522 is wrapped around the outer periphery of the top end of the air pipe 521. The top end of the air pipe 521 is fixedly connected to the inner top wall of the liquid storage member 520 through the air pipe fixing tube 522. The air pipe fixing tube 522 can limit the air pipe 521, avoiding movement or falling of the air pipe 521 during use, and increasing the structural stability. In addition, the connection mode of this fixed connection improves the sealing between the air pipe 521 and the air pipe fixing tube 522, avoids gas leakage, and is beneficial to maintaining the pressure balance in the liquid storage cavity 520a.
[0107] For example, the top end of the air pipe 521 is clamped with the air pipe fixing tube 522. The clamping connection mode of the air pipe 521 and the air pipe fixing tube 522 realizes detachable installation, which is convenient for later maintenance of the air pipe 521.
[0108] In some embodiments, the inner bottom wall of the liquid storage member 520 is provided with an air pipe support 523. The air pipe support 523 includes a support seat 523a and a support rod 523b. The support seat 523a is connected to the inner bottom wall of the liquid storage member 520. The support rod 523b is connected to the top end of the support seat 523a. The bottom end of the air pipe 521 is sleeved on the support rod 523b and connected to the top end of the support seat 523a.
[0109] For example, as shown in FIGS. 10 and 16, the bottom end of the air pipe 521 is fixed on the inner bottom wall of the liquid storage member 520 through the air pipe support 523, and in addition, the top end of the air pipe 521 is fixed on the inner top wall of the liquid storage member 520 through the air pipe fixing tube 522. The two ends of the air pipe 521 are respectively fixed by the air pipe support 523 and the air pipe fixing tube 522, avoiding movement or falling of the air pipe 521 during use, preventing the problem of pressure imbalance of the liquid storage cavity 520a caused by the change of the position of the air pipe 521, thereby improving the control of the liquid level of the humidification cavity 510d, avoiding abnormal fluctuation of the liquid level of the liquid storage cavity 520a, and further avoiding the poor humidification effect of the humidification member 530 on the airflow caused by the abnormal fluctuation of the liquid level of the humidification cavity 510d.
[0110] As shown in FIG. 10 and FIG. 16, the support seat 523a is connected to the inner bottom wall of the liquid storage member 520. The support seat 523a has a certain height, so that when impurities in the liquid in the liquid storage cavity 520a accumulate, due to the provision of the support seat 523a, the height of the bottom end of the air permeable tube 521 is higher than the impurity layer deposited on the bottom of the liquid storage cavity 520a, which can avoid the impurities from blocking the bottom end of the air permeable tube 521, and ensure the flow path of the liquid unobstructed. The support rod 523b is arranged above the support seat 523a, and at least part of the support rod 523b extends into the air permeable tube 521, so that the support rod 523b can effectively support the air permeable tube 521, avoid the air permeable tube 521 from tilting or shifting due to liquid impact, and ensure that the air permeable tube 521 is always in the preset position. In addition, since the support occupies a small bottom area, it is more convenient to clean the bottom of the liquid storage cavity 520a, and it is easy to remove the accumulated impurities.
[0111] In some embodiments, along the width direction of the storage box, the air permeable tube 521 is located at the center line of the liquid storage member 520. The width direction of the storage box is shown as the Y direction in FIG. 11. By locating the air permeable tube 521 at the center line of the liquid storage member 520, the uniformity of the air pressure distribution in the liquid storage cavity 520a can be increased, and the problem of local air pressure being too high or too low can be avoided.
[0112] In some embodiments, along the length direction of the storage box, the air permeable tube 521 is located at the center line of the liquid storage member 520. The length direction of the storage box is shown as the X direction in FIG. 11. By locating the air permeable tube 521 at the center line of the liquid storage member 520, the air pressure distribution in the liquid storage member 520 can be more uniform, and the problem of local air pressure being too high or too low can be avoided.
[0113] In some embodiments, along the length direction of the storage box, the air permeable tube 521 is located at the center line of the liquid storage cavity 520a and is centered in the width direction. In this way, the design of the position of the air permeable tube 521 at the center line helps to balance the liquid flow in the liquid storage cavity 520a, avoids the problem of liquid accumulation or poor flow on one side, and ensures that the humidifying member 530 can continuously obtain liquid supply.
[0114] In order to realize the convenience of using the humidifying fiber 920, in some embodiments, as shown in FIG. 5, the shell further includes a first partition plate 560. The exhaust cavity 510g of the exhaust part and the humidifying cavity 510d of the humidifying part are separated by the first partition plate 560, and the first partition plate 560 is provided with a first mounting opening 561. The top of the exhaust cavity 510g of the exhaust part is formed with a second mounting opening 552. The first mounting opening 561 and the second mounting opening 552 are oppositely arranged.
[0115] As shown in FIGS. 5, 6 and 21, the humidifying assembly 500 can further include a cover member 80. The cover member 80 covers the second mounting hole 552 and is detachably connected with the housing. An air outlet 811 is configured on the cover member 80, and the air outlet 811 communicates the exhaust cavity 510g with the storage cavity 210.
[0116] The humidifying assembly 500 can further include a humidifying member 90. The humidifying member 90 is detachably arranged at the bottom of the cover member 80. At least a portion of the humidifying member 90 is arranged in the humidifying cavity 510d via the first mounting hole 561.
[0117] The humidifying member 90 has water absorption and air permeability. For example, the humidifying member 90 can include humidifying fibers 920 or humidifying cotton, etc. The humidifying fibers 920 can be fibers having water absorption and air permeability.
[0118] Referring to FIGS. 5, 6, 15, 20 and 21, the bottom end of the humidifying member 90 is arranged below the liquid level of the humidifying cavity 510d, and the humidifying member 90 above the liquid level divides the humidifying cavity 510d above the liquid level into a first humidifying cavity 510e and a second humidifying cavity 510f. The first humidifying cavity 510e communicates with the fan outlet 541c of the fan 542, and the second humidifying cavity 510f communicates with the exhaust cavity 510g.
[0119] The humidifying member 90 has water absorption, and the humidifying member 90 below the liquid level of the humidifying cavity 510d absorbs water and transports the water upward to the humidifying member 90 above the liquid level of the humidifying cavity 510d.
[0120] Taking the humidifying fibers 920 as an example, the humidifying fibers 920 have many capillary structures. When part of the humidifying fibers 920 are immersed in water, the humidifying fibers 920 can quickly absorb water under the action of wetting and the capillary structure. The water molecules rise in the capillary structure of the humidifying fibers 920, so that the humidifying fibers 920 above the liquid level also adsorb water.
[0121] The humidifying member 90 has air permeability. When the fan 542 is working, the air in the storage cavity 210 flows to the first humidifying cavity 510e through the fan inlet 541b and the fan outlet 541c of the fan 542, and then flows to the second humidifying cavity 510f through the humidifying fibers 920 above the liquid level of the humidifying cavity 510d. When the air passes through the humidifying fibers 920, part of the water adsorbed by the humidifying fibers 920 is carried away, so that the humidity of the air increases. The humid air in the second humidifying cavity 510f flows to the storage cavity 210 from the humidifying outlet, so as to humidify the storage cavity 210. The humidifying fibers 920 increase the contact area between the air and the water, thereby improving the humidifying efficiency of the humidifying assembly 500 on the storage cavity 210.
[0122] In the case where the humidifying component 90 comprises the humidifying fiber 920, referring to FIGS. 5, 20 and 21, the humidifying component 90 can further comprise a bracket 910. The bracket 910 can comprise a first bracket body 911. The first bracket body 911 is located within the exhaust cavity 510g, and a top end of the first bracket body 911 is detachably connected with the cover component 80.
[0123] For example, referring to FIGS. 5, 6, 20 and 21, the first bracket body 911 can comprise a plug-in component 912. The plug-in component 912 is located at a top of the first bracket body, and a slot 913 is configured on the plug-in component 912. The slot 913 can be a cuboid slot, a cylindrical slot or a slot of other shapes. An opening of the slot 913 can be upward or toward a side of the plug-in component 912.
[0124] The first bracket body 911 can further comprise a stop component 914. The stop component 914 comprises a third connecting arm 915, and an extending direction of the third connecting arm 915 can be substantially parallel to a center line of the opening of the slot 913. The third connecting arm 915 can be an elastic arm.
[0125] In the case where the opening of the slot 913 is upward, a bottom end of the third connecting arm 915 can be arranged on the plug-in component 912.
[0126] In the case where the opening of the slot 913 is toward the side of the plug-in component 912, one end of the extending direction of the third connecting arm 915 can be arranged on the plug-in component 912 below the slot 913.
[0127] The stop component 914 can further comprise a third stop piece 916. The third stop piece 916 is arranged at an end of the third connecting arm 915 away from the plug-in component 912, the third stop piece 916 corresponds to the opening of the slot 913, and the third stop piece 916 and the opening of the slot 913 are arranged in a spaced manner.
[0128] Referring to FIGS. 5, 21, the bottom of the cover component 80 has a plug-in portion 821, and a shape of the plug-in portion 821 is adapted to a shape of the slot 913. The plug-in portion 821 is inserted into the slot 913.
[0129] In the case where the opening of the slot 913 is upward, the plug-in portion 821 is inserted into the slot 913 through the opening from top to bottom.
[0130] In the case where the opening of the slot 913 is toward the side of the plug-in component 912, referring to FIG. 5, the plug-in portion 821 is inserted into the slot 913 through the opening in a horizontal direction, so that an occupied space of the plug-in portion 821 and the plug-in component 912 in a vertical direction can be reduced.
[0131] Referring to FIGS. 20 and 21, after the insertion portion 821 is inserted into the insertion slot 913, the third stopper 916 stops at an end of the insertion portion 821 away from the insertion slot 913, so that the insertion portion 821 is not easily removed from the insertion slot 913.
[0132] When the first frame 911 needs to be detached from the cover member 80, the third stopper 916 is actuated, and the third stopper 916 is removed from the insertion portion 821 under the action of the third connecting arm 915. At this time, the insertion portion 821 can be removed from the insertion slot 913, so that the first frame 911 and the cover member 80 are separated.
[0133] In some embodiments, the first frame 911 and the cover member 80 can be connected by fastening bolts to achieve detachable connection between the first frame 911 and the cover member 80.
[0134] In some embodiments, referring to FIGS. 20 and 21, the bracket 910 can further include a second frame 918. The second frame 918 is arranged at the bottom of the first frame 911. The second frame 918 and the first frame 911 can be arranged integrally.
[0135] At least part of the second frame 918 is arranged in the humidification cavity 510d via the first mounting port 561.
[0136] The humidification fiber 920 is arranged in the second frame 918. For example, the second frame 918 can be formed with at least one mounting frame 919, and the humidification fiber 920 is arranged in the mounting frame 919 to arrange the humidification fiber 920 in the second frame 918.
[0137] In some embodiments, the at least one mounting frame 919 includes two mounting frames 919 arranged side by side to improve the connection strength of the humidification fiber 920.
[0138] In other embodiments, the edges of the humidification fiber 920 can be fixedly arranged in the second frame 918 by fastening bolts.
[0139] The humidification fiber 920 is located in the humidification cavity 510d. The humidification fiber 920 and the second frame 918 formed in the humidification cavity 510d divide the humidification cavity 510d above the liquid level into a first humidification cavity 510e and a second humidification cavity 510f.
[0140] In some embodiments, referring to FIG. 20, the bottom of the first frame 911 can have a sealing plate 917. The bottom surface of the sealing plate 917 faces the first installation opening 561. The sealing plate 917 overlaps the top of the first partition plate 560 and covers the first installation opening 561 to separate the humidification cavity 510d and the exhaust cavity 510g, so that the airflow in the humidification cavity 510d is not easily flowed from the first installation opening 561 to the exhaust cavity 510g.
[0141] In some embodiments, referring to FIGS. 5 and 6, the cover plate member 80 can further include a second plate body 810. The second plate body 810 covers the second installation opening 552. An exhaust opening 811 is configured on the second plate body 810. The second plate body 810 and the shell are detachably connected.
[0142] In some embodiments, the peripheral edge of the second installation opening 552 can be provided with a first limiting piece 553, which can be in the shape of a block, a sheet, a column or other shapes. The first limiting piece 553 is protruded from the peripheral edge of the second installation opening 552 towards the inside of the second installation opening 552.
[0143] Referring to FIG. 21, the peripheral edge of the second plate body 810 can be provided with a clamping structure 812. The clamping structure 812 can be an elastic clamping structure.
[0144] The clamping structure 812 can include a second connecting arm 813, which can be in the shape of a long strip, a sheet or a rod, etc. The second connecting arm 813 can be an elastic arm. The second connecting arm 813 can be inclinedly extended relative to the horizontal direction. The bottom end of the extension direction of the second connecting arm 813 is connected to the bottom of the second plate body 810. The top end of the extension direction of the second connecting arm 813 extends above the second plate body 810, so as to facilitate the user to move the top end of the second connecting arm 813. In the natural state, the top end of the second connecting arm 813 extends away from the second plate body 810 relative to the bottom end. Here, the natural state of the second connecting arm 813 can refer to the original shape and size under no external force.
[0145] The clamping structure 812 can further include a second limiting piece 814, which can be in the shape of a block, a sheet, a column or other shapes. The second limiting piece 814 is arranged on one side of the second connecting arm 813 towards the peripheral edge of the second installation opening 552. The second limiting piece 814 is clamped on the bottom of the first limiting piece 553, and the second connecting arm 813 and the first limiting piece 553 are elastically matched, so that the second limiting piece 814 and the peripheral edge of the second installation opening 552 are tightly matched, thereby detachably connecting the second plate body 810 and the shell.
[0146] The top end of the second connecting arm 813 can be elastically moved towards the second plate body 810, and the second connecting arm 813 drives the second limiting part 814 to move towards the second plate body 810, so that the second limiting part 814 is separated from the first limiting part 553. At this time, the second plate body 810 can be detached from the shell by moving upwards.
[0147] In some embodiments, the second plate body 810 and the shell can be detachably connected by a fastening bolt.
[0148] In some embodiments, the top of the first frame body 911 can be detachably arranged on the bottom of the second plate body 810.
[0149] In some embodiments, referring to FIG. 21, the cover plate component 80 can further include a connecting part 820. The connecting part 820 is arranged on the bottom of the second plate body 810, and the connecting part 820 and the humidifying component 90 are detachably connected. By detachably connecting the connecting part 820 and the humidifying component 90, the structure constructed on the second plate body 810 can be reduced, and the structural strength of the second plate body 810 is improved.
[0150] In the case that the bottom of the cover plate component 80 has a plug-in part 821, the plug-in part 821 can be located at the bottom of the connecting part 820.
[0151] In some embodiments, referring to FIG. 6, the circumferential edge of the second plate body 810 can be constructed with a receiving notch 815 recessed from the inside of the second plate body 810 by the circumferential edge of the second plate body 810. The first limiting part 553 corresponds to the receiving notch 815. The clamping structure 812 is arranged in the receiving notch 815 to reduce the length of the clamping structure 812 extending beyond the circumferential edge of the second plate body 810, so that the gap between the circumferential edge of the second plate body 810 and the circumferential edge of the second mounting port 552 can be reduced, and the shielding effect of the second plate body 810 on the second mounting port 552 is improved.
[0152] In some embodiments, referring to FIGS. 5 and 6, the circumferential edge of the second mounting port 552 can be located at the periphery of the top opening of the exhaust cavity 510g, and the bottom edge of the second plate body 810 and the end face of the top end of the exhaust cavity 510g are in abutment. In this way, the end face of the top end of the exhaust cavity 510g can support the second plate body 810, and can stop at the bottom end of the second plate body 810, so that the second plate body 810 is not easy to fall into the exhaust cavity 510g after installation.
[0153] In some embodiments, the humidifying part 530 extends along the width direction and the height direction of the storage box, i.e. along the plane composed of the directions X and Z shown in FIG. 11. The two ends of the humidifying part 530 along the length direction of the storage box are respectively connected with the side plates 511 of the shell.
[0154] The humidifying member 530 divides the humidifying cavity 510d into a first humidifying cavity 510e and a second humidifying cavity 510f. The first humidifying cavity 510e is located near the opening side in the humidifying cavity 510d. The first humidifying cavity 510e is in communication with the humidifying liquid inlet. The second humidifying cavity 510f is in communication with the humidifying gas outlet.
[0155] For example, during the humidification process of the humidifying assembly 500, the fan 542 is started. The fan 542 guides the airflow in the storage chamber to the fan mounting cavity 541a through the fan air inlet 541b. Then, the airflow in the fan mounting cavity 541a flows into the first humidifying cavity 510e through the fan air outlet 541c. Then, the humidifying member 530 humidifies the airflow. Then, the humidified airflow enters the second humidifying cavity 510f and flows to the exhaust cavity 510g through the humidifying gas outlet, and finally is discharged through the exhaust cavity 510g.
[0156] By connecting the two ends of the humidifying member 530 along the length direction of the storage box to the side plates 511 of the shell respectively, the humidifying cavity 510d is divided into the first humidifying cavity 510e and the second humidifying cavity 510f. The first humidifying cavity 510e is responsible for the entry and preliminary humidification of the liquid, and the second humidifying cavity 510f is responsible for the discharge of the gas, ensuring that the gas can be smoothly discharged, reducing the possibility of gas retention and blockage. In addition, since the two ends of the humidifying member 530 along the length direction of the storage box are connected to the side plates 511 of the shell respectively, it is ensured that all the airflow entering the first humidifying cavity 510e passes through the humidification treatment of the humidifying member 530, improving the humidity uniformity of the airflow. The uniform humidification effect of the humidifying cavity 510d and the humidifying member 530 ensures the stability of the humidity in the storage chamber, avoiding the problem of excessively high or low humidity in local areas.
[0157] For example, along the length direction of the storage box, the opposite ends of the humidifying member 530 are connected to the side plates 511 of the shell by pasting sponges. The side plates 511 of the shell provide stable support for the humidifying member 530, preventing the humidifying member 530 from shaking and shifting during use. In addition, the humidifying member 530 as part of the internal support structure helps to improve the compression resistance and deformation resistance of the humidifying assembly 500.
[0158] For example, the humidifying member 530 includes humidifying fibers 920. The part of the humidifying fibers 920 close to the bottom of the humidifying cavity 510d is below the liquid level of the humidifying part, that is, the height of the bottom end of the humidifying fibers 920 is lower than the height of the bottom end of the air permeable tube 521, so that the humidifying fibers 920 can fully absorb the liquid in the humidifying cavity 510d, ensuring the efficiency and continuity of the humidifying effect. The humidifying fibers 920 absorb liquid from the bottom to the top through capillary action to ensure that each position of the humidifying fibers 920 can humidify the airflow respectively, improving the humidifying efficiency. In addition, on the basis of the airflow driven by the fan assembly 540, the humidifying fibers 920 can effectively absorb liquid and uniformly release humidified airflow, preventing water vapor from accumulating in the humidifying cavity 510d, and ensuring the stability of the humidifying effect. The top of the humidifying fibers 920 is fixedly connected to the top of the humidifying cavity 510d, ensuring that the fibers maintain a stable position in the humidifying cavity 510d, preventing the humidifying fibers 920 from moving or falling off in the humidifying cavity 510d, and improving the reliability of the humidifying assembly 500.
[0159] In some embodiments, as shown in FIG. 22, the bottom of the humidifying part is provided with a humidifying air inlet tube 537. The top end of the humidifying air inlet tube 537 is higher than the bottom end of the air permeable tube 521 and communicates with the first humidifying cavity 510e, so that liquid is prevented from entering the fan assembly 540 through the humidifying air inlet tube 537, avoiding liquid entering the fan assembly 540 and causing damage or performance degradation of the fan assembly 540. The bottom end of the humidifying air inlet tube 537 communicates with the fan air outlet 541c of the fan assembly 540. The airflow introduced into the humidifying cavity 510d through the fan air outlet 541c of the fan assembly 540 enters the first humidifying cavity 510e through the humidifying air inlet tube 537, which helps to uniformly distribute the airflow and ensure the humidifying effect.
[0160] In order to further reduce the generation of residual water when the liquid storage member 520 and the humidifying part are docked or separated, in some embodiments, as shown in FIGS. 6, 7 and 22, the storage box further includes a humidifying device. The humidifying device includes a liquid storage member 520, a humidifying part and a docking assembly. The docking assembly includes a first docking assembly 524 and a second docking assembly 532. The first docking assembly 524 is arranged on the liquid storage member 520. The second partition plate 514 is formed with a humidifying liquid inlet. The second docking assembly 532 is arranged at the humidifying liquid inlet. The first docking assembly 524 and the second docking assembly 532 are detachably docked to communicate the liquid storage cavity 520a and the humidifying cavity 510d.
[0161] For example, during use of the humidifying device, the liquid storage member 520 is first placed in the installation cavity 510a. At this time, the first docking assembly 524 provided at the liquid storage outlet of the liquid storage member 520 is docked with the second docking assembly 532 located at the humidifying liquid inlet of the humidifying part, so that the liquid can flow smoothly from the liquid storage cavity 520a to the humidifying cavity 510d. By providing the first docking assembly 524 and the second docking assembly 532, the liquid storage member 520 can deliver liquid to the humidifying cavity 510d in real time, which is simple and fast, and reduces the complexity and time cost of user operation. In addition, the liquid in the liquid storage member 520 flows to the humidifying cavity 510d through the first docking assembly 524 and the second docking assembly 532, reducing the risk of liquid overflow.
[0162] Due to the arrangement of the humidifying device, the docking efficiency can be improved and residual water can be reduced. The humidifying device is described in detail below.
[0163] As shown in FIGS. 22-26, the first docking assembly 524 includes a first connecting seat 525, a first elastic member 527, and a first docking member 526. The first connecting seat 525 is mounted to the connecting pipe 520e. At least part of the first docking member 526 is located in the connecting cavity. The first docking member 526 is in sliding connection with the connecting pipe 520e. The first elastic member 527 is in compression between the first connecting seat 525 and the first docking member 526.
[0164] In some embodiments, the first connecting seat 525 includes a first connecting part and a second connecting part connected to each other. The first connecting part is located in the liquid storage cavity 520a. The first connecting part is connected to the connecting pipe 520e. The first end of the second connecting part is detachably connected to the first connecting part. The second end of the second connecting part is detachably connected to the outer periphery of the connecting pipe 520e.
[0165] By detachably connecting the first connecting part and the second connecting part, the second connecting part and the connecting pipe 520e, the assembly and disassembly process of the first connecting seat 525 is simplified. In addition, the first connecting part, the second connecting part and the connecting pipe 520e can be independently manufactured and replaced, improving the flexibility of producing each component, and when replacement or maintenance is needed, only the specific component needs to be replaced, without replacing the first connecting part, the second connecting part and the connecting pipe 520e, reducing the difficulty and cost of maintenance.
[0166] In some embodiments, as shown in FIG. 27, the first connecting part includes a connecting body 525a. The second connecting part includes a plurality of buckles 525b. The connecting body 525a has a connecting body cavity with two end connecting openings. The first end of the connecting body cavity is in communication with the liquid storage cavity 520a through the connecting opening. The second end of the connecting body cavity is in communication with the connecting cavity through the connecting opening.
[0167] The plurality of buckles 525b are sequentially and spacedly arranged along the circumference of the connecting body 525a. The first end of the buckle 525b is connected with the connecting body 525a, and the second end of the buckle 525b is connected with the outer circumference of the connecting tube 520e.
[0168] For example, the connecting body 525a is arranged at the first end of the connecting tube 520e. The connecting tube 520e is located in the liquid storage cavity 520a. The connecting body 525a is connected with the outer circumference of the connecting tube 520e through the buckle 525b, so as to ensure the firmness of the connection between the connecting body 525a and the connecting tube 520e, and prevent the connecting body 525a from loosening or falling off during the liquid conveying process. In addition, the plurality of buckles 525b are spacedly arranged along the circumference of the fixing body, so that the first connecting seat 525 can uniformly bear force at the connection position, avoiding damage or deformation caused by excessive force at a single point, and improving the stability and durability of the connection between the first connecting seat 525 and the connecting tube 520e.
[0169] The design of the buckle 525b makes the installation and disassembly of the first connecting seat 525 more convenient. The user only needs to set the first connecting seat 525 on the outer circumference of the first connecting seat 525, and the buckle 525b will automatically clamp the outer circumference of the connecting tube 520e, so as to realize the firm connection between the first connecting seat 525 and the connecting tube 520e. When disassembling the first connecting seat 525 from the connecting tube 520e, the first connecting seat 525 and the connecting tube 520e can be loosened by moving the buckle 525b, which has the characteristics of convenient maintenance and replacement.
[0170] The first end of the connecting body cavity is connected with the liquid storage cavity 520a through the connecting opening, and the second end of the connecting body cavity is connected with the connecting cavity through another connecting opening, so as to realize the smooth flow of the liquid in the liquid storage cavity 520a to the connecting cavity.
[0171] In some embodiments, the first connecting part includes a connecting body 525a. The second connecting part includes a connecting cylinder. The connecting body 525a has a connecting body cavity with two end connecting openings. The first end of the connecting body cavity is connected with the liquid storage cavity 520a. The second end of the connecting body cavity is connected with the connecting cavity.
[0172] The first end of the connecting cylinder is connected with the connecting body 525a. The second end of the connecting cylinder is threadedly connected with the outer circumference of the connecting tube 520e.
[0173] By threadedly connecting the second end of the connecting cylinder with the outer circumference of the connecting tube 520e, the firm connection between the second end of the connecting cylinder and the connecting tube 520e is realized. In addition, the threaded connection facilitates the assembly and disassembly of the connecting cylinder and the connecting tube 520e.
[0174] In some embodiments, the connecting body 525a has a first connecting opening and a second connecting opening, the first end of the connecting body cavity communicates with the liquid storage cavity 520a through the first connecting opening, and the second end of the connecting body cavity communicates with the connecting cavity through the second connecting opening.
[0175] The first connecting opening is directed towards the inner bottom wall of the liquid storage member 520. By directing the first connecting opening towards the inner bottom wall of the liquid storage member 520, the liquid can flow more smoothly when entering the connecting body cavity. This design reduces the liquid flow resistance and turbulence, improves the flow efficiency of the liquid. In addition, since the first connecting opening is directed towards the inner bottom wall of the liquid storage member 520, as much liquid as possible in the liquid storage cavity 520a can flow out, ensuring complete discharge of the liquid and reducing the amount of residual liquid.
[0176] In some embodiments, as shown in FIG. 24, the inner periphery of the first connecting seat 525 is provided with a anti-disengagement member 529. The first abutting member 526 and the anti-disengagement member 529 in the connecting cavity are cooperatively arranged.
[0177] The anti-disengagement member 529 divides the connecting cavity into a first sub-connecting cavity and a second sub-connecting cavity that communicate with each other. The first sub-connecting cavity is arranged on the side of the second sub-connecting cavity close to the liquid storage cavity 520a.
[0178] By arranging the anti-disengagement member 529, the anti-disengagement member 529 divides the connecting cavity into a first sub-connecting cavity and a second sub-connecting cavity, and the first sub-connecting cavity is arranged on the side close to the liquid storage cavity 520a. This segmented design can better control the movement path and position of the first abutting member 526, ensuring the smooth progress of the abutting process.
[0179] When the liquid storage member 520 and the humidifying part are not abutted, under the compression action of the first elastic member 527, the first abutting member 526 and the anti-disengagement member 529 abut to seal the liquid storage outlet.
[0180] In the process of switching from the un-abutted state to the abutted state of the liquid storage member 520 and the humidifying part, the first abutting member 526 moves relative to the anti-disengagement member 529 towards the direction close to the liquid storage cavity 520a to open the liquid storage outlet.
[0181] In the process of switching from the abutted state to the un-abutted state of the liquid storage member 520 and the humidifying part, the first abutting member 526 moves relative to the second abutting assembly 532 towards the direction close to the humidifying cavity 510d, and the middle part of the first abutting member 526 abuts with the anti-disengagement member 529 to seal the liquid storage outlet.
[0182] The anti-falling piece 529 divides the connecting cavity into a first sub-connecting cavity and a second sub-connecting cavity, ensuring the stability of the first connecting piece 526 in the connecting cavity. During the process of connecting and separating, the anti-falling piece 529 can also effectively prevent the first connecting piece 526 from falling off accidentally, enhancing the reliability of the first connecting assembly 524. In addition, the arrangement of the anti-falling piece 529 can increase the contact area between the first connecting piece 526 and the connecting cavity, thereby improving the sealing effect. In particular, during the process of connecting and separating, the anti-falling piece 529 can ensure that the first connecting piece 526 always remains in the correct position, avoiding liquid leakage. For example, the anti-falling piece 529 has an anti-falling protrusion.
[0183] In some embodiments, as shown in FIG. 28, the first connecting piece 526 includes a first connecting segment 526a and a second connecting segment 526b connected to each other. The first connecting segment 526a is located in the first sub-connecting cavity, and at least part of the second connecting segment 526b is arranged in the second sub-connecting cavity. This segmented design can better control the movement path and position of the first connecting piece 526 in the connecting cavity, ensuring the smooth progress of the connecting process.
[0184] The first connecting segment 526a has a connecting cavity with a connecting opening. The first end of the connecting cavity is in communication with the connecting cavity through the connecting opening. The first connecting segment 526a is provided with a first connecting through hole at the end close to the second connecting segment 526b, and the first connecting through hole is in communication with the connecting cavity.
[0185] The connection between the first connecting segment 526a and the second connecting segment 526b is arranged in cooperation with the anti-falling piece 529, which is used to limit the movement of the second connecting segment 526b in the direction of approaching the liquid outlet of the liquid storage piece 520, ensuring the stability and sealing of the first connecting piece 526 in the connecting cavity. The anti-falling piece 529 not only prevents the first connecting piece 526 from falling off, but also enhances the sealing effect between the first connecting piece 526 and the connecting cavity, preventing liquid leakage.
[0186] When the liquid storage piece 520 and the humidifying part are not connected, the first connecting segment 526a is located in the first sub-connecting cavity, and the end of the first connecting segment 526a close to the second connecting segment 526b abuts against the anti-falling piece 529 to seal the liquid outlet of the liquid storage piece 520, and the second connecting segment 526b is located in the second sub-connecting cavity.
[0187] In the process of switching from the non-docking to the docking of the liquid storage member 520 and the humidifying part, the first docking member 526 moves relative to the second docking assembly 532 towards the direction of approaching the liquid storage cavity 520a, at this time, the first docking section 526a and the second docking section 526b respectively move relative to the anti-disengagement member 529 towards the direction of approaching the liquid storage cavity 520a, the end of the first docking section 526a close to the second docking section 526b no longer abuts against the anti-disengagement member 529, so as to open the liquid storage and outlet, and the liquid in the docking cavity can flow to the second docking assembly 532 through the first docking through hole. In this way, the liquid in the liquid storage cavity 520a flows to the connecting cavity through the connecting body cavity, and then flows to the second docking assembly 532 through the docking cavity and the first docking through hole, so as to realize the liquid supply function of the liquid storage cavity 520a.
[0188] In the process of switching from the docking to the non-docking of the liquid storage member 520 and the humidifying part, the first docking member 526 moves relative to the second docking assembly 532 towards the direction of approaching the humidifying cavity 510d, at this time, the first docking section 526a and the second docking section 526b both move relative to the anti-disengagement member 529 towards the direction of deviating from the liquid storage cavity 520a and approaching the humidifying cavity 510d, the end of the first docking section 526a close to the second docking section 526b abuts against the anti-disengagement member 529, so as to seal the liquid storage and outlet and realize the plugging of the liquid storage member 520.
[0189] In some embodiments, the outer diameter of the second docking section 526b decreases in the direction from the first docking assembly 524 to the second docking assembly 532, so that, since the first elastic member 527 is sleeved on the first docking member 526, the elastic force per unit area of the first elastic member 527 on the second docking section 526b is amplified, the extrusion force on the first sealing member 528 is increased, and the sealing of the liquid storage and outlet by the first docking member 526 is improved.
[0190] In some embodiments, as shown in FIGS. 24-26, the first docking assembly 524 further comprises at least one first sealing member 528. The first sealing member 528 is arranged at the connection between the first connecting seat 525 and the connecting pipe 520e.
[0191] In some embodiments, the first sealing member 528 is arranged at the abutting position of the first docking section 526a and the anti-disengagement member 529.
[0192] For example, the end of the connecting body 525a close to the connecting pipe 520e is provided with a ring groove, and the first sealing member 528 is arranged in the ring groove. In this way, the connecting body 525a is connected with the connecting pipe 520e through the first sealing member 528, the direct contact between the connecting body 525a and the connecting pipe 520e is reduced, and the abrasion is reduced.
[0193] The first seal 528 is arranged at the abutting position of the first abutting section 526a and the anti-disengagement piece 529, so that liquid leakage can be effectively prevented when the liquid storage piece 520 and the humidifying part are not connected. The first seal 528 provides an additional sealing layer, and the sealing performance of the first abutting assembly 524 in plugging the liquid outlet of the liquid storage piece. In addition, the first seal 528 serves as a buffer between the first abutting section 526a and the anti-disengagement piece 529, reducing the direct contact and friction between the first abutting section 526a and the anti-disengagement piece 529, thereby reducing wear and tear and prolonging the service life of the humidifying assembly 500.
[0194] In the humidifying assembly 500 of some embodiments of the present disclosure, the at least one first seal 528 includes a plurality of first seals 528, and the arrangement of the plurality of first seals 528 provides multiple sealing protection. The plurality of first seals 528 are arranged at the connection position of the first connecting seat 525 and the connecting pipe 520e, and at the abutting position of the first abutting section 526a and the anti-disengagement piece 529, so as to ensure the sealing performance of the humidifying assembly 500 at multiple key positions and prevent liquid leakage. The first seal 528 not only provides a sealing function, but also increases the stability of the humidifying assembly 500 to a certain extent. In particular, the first seal 528 arranged at the abutting position of the first abutting section 526a and the anti-disengagement piece 529 can effectively buffer the impact force during the connection process and reduce the wear and tear of the first abutting piece 526.
[0195] For example, the first seal 528 can be an O-ring.
[0196] In some embodiments, as shown in FIGS. 23 and 24, the second abutting assembly 532 includes a second connecting seat 533, a second elastic piece 535, and a second abutting piece 534. The second connecting seat 533 is mounted at the humidifying liquid inlet. The second connecting seat 533 has a connecting channel in communication with the humidifying part. The second elastic piece 535 is connected in a compressed state between the second connecting seat 533 and the second abutting piece 534. The second abutting piece 534 and the second connecting seat 533 are in sliding connection.
[0197] In some embodiments, as shown in FIGS. 29 and 30, the second connecting seat 533 includes a first connecting section 533a and a first stop piece 545 connected to each other. The first connecting section 533a is arranged at the humidifying liquid inlet. The first stop piece 545 is arranged at one side of the first connecting section 533a close to the humidifying cavity. The segmented design of the first connecting section 533a and the first stop piece 545 provides multiple sealing protection. The first connecting section 533a is arranged at the humidifying liquid inlet, ensuring sealing with the external environment; and the first stop piece 545 is arranged at the side close to the humidifying cavity, further enhancing the sealing effect inside.
[0198] In some embodiments, as shown in FIGS. 31 and 32, the second connecting seat 533 has a connecting channel. The second docking assembly 532 is formed with a drainage channel 570. The connecting channel communicates with the drainage channel 570 and the humidification cavity 510d, ensuring that the liquid can flow smoothly from the first connecting segment 533a to the humidification cavity 510d, avoiding the liquid remaining in the connecting channel during docking.
[0199] In some embodiments, the outer periphery of the first connecting segment 533a is provided with a fixing lug. The fixing lug is connected to the humidification part to improve the connection stability of the second docking assembly 532 and the humidification part.
[0200] It can be understood that the diameter of the second connecting seat opening on the side of the second connecting seat 533 away from the humidification cavity 510d is smaller than the diameter of the connecting channel.
[0201] In some embodiments, as shown in FIGS. 24 and 25, the second docking member 534 includes a docking body 534a and a plurality of docking connecting segments 534b. The cross-sectional area of the docking body 534a gradually increases in the direction from the first connecting segment 533a to the first stopper 545, so that the sealing effect is gradually increased during docking, ensuring the sealing of the humidification assembly 500. The cross-sectional area of the docking body 534a is smaller than the inner diameter of the connecting channel, so that the liquid can flow smoothly from the second docking assembly 532 to the first connecting segment 533a during docking, avoiding the liquid remaining in the connecting channel during docking.
[0202] The plurality of docking connecting segments 534b are sequentially and spaced apart in the circumferential direction of the docking body 534a, so that the second docking member 534 is accurately positioned in the connecting channel, ensuring alignment and sealing during docking and improving docking accuracy. The design of the docking connecting segment 534b increases the stability of the humidification assembly 500. The plurality of docking connecting segments 534b can better disperse stress and reduce deformation and damage of the structure during docking. The first end of the docking connecting segment 534b is connected to the docking body 534a. The second end of the docking connecting segment 534b extends towards the first stopper 545. The docking connecting segment 534b and the inner periphery of the first connecting segment 533a are in sliding connection.
[0203] For example, the docking connecting segment 534b can be a guide fin. In addition, a narrow slot is provided in the first connecting segment 533a. The guide fin slides in the narrow slot to enable the second docking member 534 to slide stably in the connecting channel. The gap between the guide fins is used for liquid flow.
[0204] In some embodiments, as shown in FIGS. 24-26, the second docking assembly 532 further comprises at least one second sealing member 536. The second sealing member 536 is arranged at the outer periphery of the first connecting segment 533a away from the humidification cavity 510d. The second sealing member 536 is arranged at the junction of the first connecting segment 533a and the first stopper 545.
[0205] For example, the second sealing member 536 is arranged in a ring groove arranged at the outer periphery of the first connecting segment 533a away from the humidification cavity 510d. In this way, when the first docking assembly 524 and the second docking assembly 532 are docked, the second connecting seat 533 and the second docking member 534 extend into the connecting cavity and abut against the first docking member 526, improving the sealing of the connecting cavity and avoiding the problem of liquid leakage.
[0206] For example, the first stopper 545 is provided with a ring groove near the end of the first connecting segment 533a, and the second sealing member 536 is arranged in the ring groove. The second sealing member 536 is used to seal the first connecting segment 533a and the first stopper 545.
[0207] For example, the outer diameter of the docking body 534a increases in the direction from the first connecting segment 533a to the first stopper 545. In this way, since the second elastic member 535 is sleeved on the docking body 534a, the elastic force per unit area of the second elastic member 535 on the docking body is amplified, and the extrusion force on the second sealing member 536 is increased, improving the sealing of the connecting channel by the second docking member 534. In addition, the outer diameter of the docking body 534a decreases in the direction from the first stopper 545 to the first connecting segment 533a, reducing the occupation of the liquid flow space and increasing the smoothness of the liquid flow. For example, the second sealing member 536 can be an O-ring.
[0208] The elastic force of the first elastic member 527 is greater than the elastic force of the second elastic member 535.
[0209] When the liquid storage member 520 and the humidification part are not docked, the first docking member 526 blocks the liquid outlet of the liquid storage member 520. The second docking member 534 blocks the connecting channel to ensure the sealing of the liquid storage cavity 520a and the humidification cavity 510d, preventing liquid leakage. In addition, this separate blocking design effectively prevents external air from entering the liquid storage cavity 520a and the humidification cavity 510d, avoiding liquid leakage or external contaminants from entering.
[0210] During the process of switching from undocking to docking of the liquid storage member 520 and the humidification part, the liquid storage member 520 and the mounting part are in:
[0211] The first docking state: as shown in FIG. 25, the second docking member 534 and the second connecting seat 533 extend into the connecting cavity and abut against the first docking member 526. The first docking member 526 pushes the second docking member 534 to move away from the first docking assembly 524, so as to open the connecting passage.
[0212] The second docking state: as shown in FIG. 25, the first docking member 526 moves away from the second docking assembly 532 under the pressing force of the second docking assembly 532, so as to open the liquid storage outlet.
[0213] The third docking state: as shown in FIG. 26, the liquid storage cavity 520a of the liquid storage member 520 and the humidifying cavity 510d of the humidifying part are communicated.
[0214] For example, during the process of switching from the undocking state to the docking state of the liquid storage member 520 and the humidifying part, first, the first docking assembly 524 and the second docking assembly 532 preliminarily contact, and the second docking member 534 and the second connecting seat 533 first extend into the connecting cavity and abut against the first docking member 526.
[0215] Subsequently, since the elastic force of the first elastic member 527 is greater than the elastic force of the second elastic member 535, the first docking member 526 pushes the second docking member 534 to move away from the first docking assembly 524, so as to open the connecting passage. The moving direction of the second docking member 534 is shown by the black solid arrow in FIG. 25. At this time, the humidifying cavity 510d is communicated with the connecting passage. Since the humidifying cavity 510d is a chamber that needs to be supplemented with liquid, the liquid level in the humidifying cavity 510d is low, and the liquid storage amount is small, so the liquid in the humidifying cavity 510d will not overflow from the connecting passage.
[0216] Finally, the first docking member 526 moves away from the second docking assembly 532 under the pressing force of the second docking assembly 532, and the moving direction of the first docking assembly 524 is shown by the black hollow arrow in FIG. 26, so as to open the liquid storage outlet. At this time, the liquid storage cavity 520a is communicated with the connecting cavity, and the liquid in the liquid storage cavity 520a flows to the humidifying cavity 510d through the connecting cavity and the connecting passage in sequence. The flowing direction of the liquid is shown by the black single arrow in FIG. 26. The liquid storage cavity 520a is a chamber that needs to provide liquid, and the liquid in the first chamber is sufficient. Since the elastic force of the first elastic member 527 is greater than the elastic force of the second elastic member 535, the liquid storage cavity 520a is communicated after the humidifying cavity 510d is communicated, so as to avoid excessive residual water caused by the liquid in the liquid storage cavity 520a flowing out in advance.
[0217] In the storage box of some embodiments of the present disclosure, by setting the first docking assembly 524 and the second docking assembly 532, in the process of switching the liquid storage piece 520 and the humidifying part from undocking to docking, the second docking piece 534 of the second docking assembly 532 first opens the connecting channel, and then the first docking piece 526 of the first docking assembly 524 opens the liquid outlet of the liquid storage piece, so as to realize the step-by-step connection of the humidifying cavity 510d and the liquid storage cavity 520a. The connection sequence of the liquid storage cavity 520a and the humidifying cavity 510d is determined according to the liquid flow direction, so as to not only improve the sealing performance of the humidifying assembly 500 when the liquid storage piece 520 supplies liquid to the humidifying part, but also avoid excessive residual water in the docking process.
[0218] In the storage box of some embodiments of the present disclosure, by setting the first elastic piece 527 in the first docking assembly 524, the first elastic piece 527 connects the first connecting seat 525 and the first docking piece 526, by setting the second elastic piece 535 in the second docking assembly 532, the second elastic piece 535 connects the second connecting seat 533 and the second docking piece 534, and the elastic force of the first elastic piece 527 and the second elastic piece 535 is different, that is, the elastic force of the first elastic piece 527 is greater than that of the second elastic piece 535, so that in the docking process of the liquid storage piece 520 and the humidifying part, the connecting channel of the second docking assembly 532 in the humidifying part is first opened, and then the liquid outlet of the liquid storage piece 520 is opened, that is, the liquid storage piece 520 and the humidifying part are opened in a certain sequence, so as to ensure the deformation and movement sequence of each component of the first docking assembly 524 and the second docking assembly 532 in the docking process, avoid confusion and misoperation, and realize the sequence and reliability of the docking process.
[0219] In the storage box of some embodiments of the present disclosure, the setting of the first docking assembly 524 and the second docking assembly 532 realizes the rapid connection of the liquid storage piece 520 and the humidifying part, reduces the time of liquid staying in the connecting pipe 520e, and thus reduces the generation of residual water. In addition, even if a small amount of liquid leaks in the docking process, the leaked liquid will be located in the connecting cavity of the connecting pipe 520e, so as to avoid the harm caused by liquid leakage.
[0220] For example, the first elastic piece 527 can be a compression spring. When the compression spring is subjected to a compression force, the compression spring stores potential energy; when the compression force is removed, the spring releases the potential energy.
[0221] For example, the first elastic piece 527 can be a spring. When the spring is subjected to a compression force, the spring stores potential energy; when the force is removed, the spring releases the potential energy.
[0222] In the process of switching the liquid storage piece 520 and the humidifying part from docking to undocking, the liquid storage piece 520 and the mounting part are in:
[0223] The fourth docking state: the first docking piece 526 moves towards the second docking assembly 532 under the elastic restoring force of the first elastic piece 527 to block the liquid outlet of the liquid storage.
[0224] The fifth docking state: the second docking piece 534 moves towards the first docking assembly 524 under the elastic restoring force of the second elastic piece 535 to block the connecting channel.
[0225] The sixth docking state: the second docking piece 534 and the second connecting seat 533 are separated from the first docking piece 526, and the second docking piece 534 and the second connecting seat 533 are separated from the connecting cavity.
[0226] For example, when the liquid storage 520 and the humidifying part are in the docking state, the first docking piece 526 and the second docking piece 534 respectively open the liquid outlet of the liquid storage and the connecting channel, so that the liquid storage cavity and the humidifying cavity are connected.
[0227] When the liquid storage 520 and the humidifying part start to switch from the docking state to the undocking state, the first elastic piece 527 and the second elastic piece 535 start to release the elastic potential energy.
[0228] Since the elastic force of the first elastic piece 527 is greater than that of the second elastic piece 535, during the switching of the liquid storage 520 and the humidifying part from the docking state to the undocking state, first, under the elastic force of the first elastic piece 527, the first docking piece 526 moves towards the second docking assembly 532, the first docking piece 526 blocks the liquid outlet of the liquid storage, and the sealing of the liquid storage cavity 520a is ensured.
[0229] Subsequently, under the elastic force of the second elastic piece 535, the second docking piece 534 moves towards the first docking assembly 524, the second docking piece 534 moves to the connecting channel, blocks the connecting channel, and ensures the sealing of the humidifying cavity 510d.
[0230] Then, the second docking piece 534 and the second connecting seat 533 are no longer abutted with the first docking piece 526, and are separated from the connecting cavity.
[0231] Finally, the second docking piece 534 and the second connecting seat 533 are completely separated from the connecting cavity, and the switching from the docking state to the undocking state is completed.
[0232] When the liquid storage 520 and the humidifying part switch from the docking state to the undocking state, the first docking piece 526 and the second docking piece 534 respectively close the liquid outlet of the liquid storage and the connecting channel, so that the liquid outlet of the liquid storage and the connecting channel are respectively blocked, and the sealing of the liquid storage 520 and the humidifying part is enhanced. During the switching process, the liquid will not leak from the liquid storage cavity 520a or the humidifying cavity 510d, avoiding the generation of residual water and ensuring the reliable storage of the liquid.
[0233] Since a large amount of liquid is stored in the liquid storage member 520, the separation process of the liquid storage member 520 and the humidifying part is designed to block the liquid outlet of the liquid storage member 520 by the first docking member 526 first, so as to avoid the liquid storage member 520 from continuously supplying liquid to the humidifying part. If the separation process of the liquid storage member 520 and the humidifying part is set to block the humidifying part by the second docking assembly 532 first and then block the liquid outlet of the liquid storage member 520 by the first docking assembly 524, the liquid in the liquid storage member 520 will still flow into the connecting cavity after the humidifying part is blocked by the second docking assembly 532, which will cause excessive residual water in the connecting cavity. Therefore, in the humidifying assembly 500 of some embodiments of the present disclosure, the elastic force of the first elastic member 527 of the first docking assembly 524 is set to be greater than the elastic force of the second elastic member 535 of the second docking assembly 532, so as to realize that the first docking member 526 blocks the liquid storage member 520 first and avoids excessive residual water in the liquid storage member 520.
[0234] In order to further reduce the residual water generated in the separation process of the first docking assembly 524 and the second docking assembly 532, in some embodiments, as shown in FIGS. 6, 7, 11 and 12, the shell can have a second partition plate 514 located between the mounting cavity 510a and the humidifying cavity 510d. The mounting cavity 510a and the humidifying cavity 510d can be separated by the second partition plate 514.
[0235] The second partition plate 514 can be provided with the second docking assembly 532, and the side of the liquid storage member 520 facing the second partition plate 514 can be provided with the first docking assembly 524. When the second docking assembly 532 and the first docking assembly 524 are docked, the liquid storage cavity 520a of the liquid storage member 520 and the humidifying cavity 510d are communicated, at this time, the water in the liquid storage member 520 can flow to the humidifying cavity 510d through the first docking assembly 524 and the second docking assembly 532 to supply water to the humidifying cavity 510d.
[0236] In some embodiments, as shown in FIGS. 31 and 32, the bottom end of the second docking assembly 532 can be configured with a liquid discharge channel 570. The inner cavity of the second docking assembly 532 is communicated with the humidifying cavity 510d through the liquid discharge channel 570. When the first docking assembly 524 and the second docking assembly 532 are separated, the water that may be left in the docking area of the first docking assembly 524 and the second docking assembly 532 can flow into the humidifying cavity 510d along the liquid discharge channel 570, so as to reduce the amount of water left in the docking area of the second docking assembly 532 and the first docking assembly 524, and prevent the water from spilling into the mounting cavity 510a.
[0237] The liquid discharge channel 570 has a flow guiding effect, and the water in the inner cavity of the second docking assembly 532 flows into the humidifying cavity 510d through the liquid discharge channel 570, which reduces the splashing of the water in the process of flowing from the inner cavity of the second docking assembly 532 to the humidifying cavity 510d.
[0238] For example, the top end of the liquid discharge channel 570 is in communication with the inner cavity of the second docking assembly 532, and the bottom end of the liquid discharge channel 570 is in communication with the humidification cavity 510d. Since the top end of the inner cavity of the second docking assembly 532 is higher than the liquid level in the humidification cavity 510d, according to the principle of siphon, when the first docking assembly 524 and the second docking assembly 532 are separated, the water in the inner cavity of the second docking assembly 532 quickly flows into the liquid discharge channel 570 and then flows from the liquid discharge channel 570 into the humidification cavity 510d, thereby reducing the residual water in the docking area of the second docking assembly 532 and the first docking assembly 524, so that the residual water is less likely to spill into the mounting cavity 510a.
[0239] The top end of the liquid discharge channel 570 can be in communication with the bottom end of the inner cavity of the second docking assembly 532, so that the water at the bottom end of the inner cavity of the second docking assembly 532 can also flow to the humidification cavity 510d through the liquid discharge channel 570, thereby improving the emptying rate of the water in the inner cavity of the second docking assembly 532, reducing the amount of residual water in the docking area of the second docking assembly 532 and the first docking assembly 524, and making it less likely for the water to spill into the mounting cavity 510a.
[0240] In some embodiments, as shown in FIGS. 31 and 32, the bottom end of the second docking assembly 532 can be provided with a liquid discharge pipe 571, the top end of the liquid discharge pipe 571 is in communication with the bottom end of the inner cavity of the second docking assembly 532, and the bottom end of the liquid discharge pipe 571 is in communication with the humidification cavity 510d, and the inner cavity of the liquid discharge pipe 571 constitutes the liquid discharge channel 570.
[0241] When the first docking assembly 524 and the second docking assembly 532 are separated, the water in the inner cavity of the second docking assembly 532 quickly flows downward to the liquid discharge pipe 571 and then flows along the liquid discharge pipe 571 to the humidification cavity 510d, thereby reducing the residual water in the docking area of the second docking assembly 532 and the first docking assembly 524, so that the residual water is less likely to spill into the mounting cavity 510a.
[0242] In some embodiments, referring to FIG. 31, the bottom end of the side of the liquid discharge pipe 571 facing away from the first docking assembly 524 can be provided with a communication port 572, which can be in communication with the port at the bottom end of the liquid discharge pipe 571. The communication port 572 is in communication with the humidification cavity 510d. The water in the inner cavity of the second docking assembly 532 can not only flow to the humidification cavity 510d from the port at the bottom end of the liquid discharge pipe 571, but also flow to the humidification cavity 510d from the communication port 572, thereby improving the discharge efficiency of the water in the second docking assembly 532.
[0243] In some embodiments, the width of the communication port 572 along the radial direction of the drain pipe 571 increases from top to bottom, so that water flowing to the bottom end of the drain pipe 571 can be quickly discharged into the humidification cavity 510d, thereby improving the discharge efficiency of water in the second docking assembly 532.
[0244] In some embodiments, the bottom end of the second docking assembly 532 can have a connecting block located in the humidification cavity 510d, and a drain passage 570 is formed in the connecting block. The drain passage 570 can extend in a vertical direction, or the drain passage 570 can extend obliquely relative to the vertical direction. The drain passage 570 can extend in a curved shape. The top end of the drain passage 570 communicates with the bottom end of the inner cavity of the second docking assembly 532, and the bottom end of the drain passage 570 communicates with the humidification cavity 510d.
[0245] In some embodiments, referring to FIGS. 23 and 24, the second docking assembly 532 can include a second connecting seat 533.
[0246] In some embodiments, the second connecting seat 533 can be a first pipe body provided on the second partition plate 514, the first end of the first pipe body extending into the humidification cavity 510d, and the second end of the first pipe body extending out of the humidification cavity 510d. The inner cavity of the first pipe body is a connecting passage. The end of the first pipe body extending out of the humidification cavity 510d forms a first liquid inlet 574 (as shown in FIG. 7). The first liquid inlet 574 is used for communication with the first docking assembly 524 and the liquid storage member 520. The end of the first pipe body extending into the humidification cavity 510d forms a first liquid outlet 549. The first liquid outlet 549 communicates with the humidification cavity 510d.
[0247] In other embodiments, as shown in FIGS. 23 to 26, the second connecting seat 533 can include a first pipe body and a first stopper 545.
[0248] The first pipe body is provided on the second partition plate 514, the first end of the first pipe body extending into the humidification cavity 510d, and the second end of the first pipe body extending out of the humidification cavity 510d. The end of the first pipe body extending out of the humidification cavity 510d forms a first liquid inlet 574. The first stopper 545 is located in the humidification cavity 510d. The first stopper 545 is provided on the end of the first pipe body away from the liquid storage member 520. The first stopper 545 and the first pipe body enclose a connecting passage.
[0249] As shown in FIG. 31, the first stopper 545 can include an end portion 548 and a peripheral side portion 547, the peripheral side portion 547 being tubular, the axis of the peripheral side portion 547 being consistent with the axis of the first pipe body, the peripheral side portion 547 being in abutment with the first pipe body, and the end portion 548 being sealed to the end of the peripheral side portion 547 away from the first pipe body.
[0250] In some embodiments, the first tube body extends to an end inside the humidifying cavity 510d, which can be indirectly communicated with the humidifying cavity 510d through the first stopper 545. For example, referring to FIG. 32, the first stopper 545 can be configured with a first liquid outlet 549, through which the first tube body is indirectly communicated with the humidifying cavity 510d. The water in the first tube body flows to the humidifying cavity 510d through the first liquid outlet 549.
[0251] The first liquid outlet 549 can be configured at the bottom of the peripheral side 547 of the first stopper 545, so as to configure the first liquid outlet 549 at the bottom end of the first stopper 545.
[0252] The second docking assembly 532 can include a second docking member 534, which is movably arranged in the first tube body.
[0253] The second docking assembly 532 can include a second elastic member 535, which can be a spring or an elastic washer, etc. The second elastic member 535 is arranged between the second docking member 534 and the first stopper 545, and the direction of the elastic force of the second elastic member 535 is directed to the second docking member 534 by the first stopper 545.
[0254] When the second docking assembly 532 and the first docking assembly 524 are not docked, the second docking member 534 is stopped and blocked at the end of the first tube body away from the first stopper 545 under the elastic force of the second elastic member 535.
[0255] In some embodiments, the first stopper 545 can be clamped to the second partition plate 514. For example, as shown in FIG. 31, the peripheral side of the first stopper 545 can be provided with at least two assembly plates 546. The side of the second partition plate 514 facing the humidifying cavity 510d can be provided with clamping claws matched with the assembly plates 546. The assembly plates 546 and the clamping claws are matched to detachably arrange the first stopper 545 on the second partition plate 514, so as to facilitate the disassembly and maintenance of the second docking member 534 and the second elastic member 535.
[0256] In other embodiments, the first stopper 545 can be integrally arranged with the first tube body, so as to simplify the number of components of the second docking assembly 532 and improve the assembly efficiency of the second docking assembly 532.
[0257] In some embodiments, as shown in FIG. 32, the first stopper 545 can be configured with a limiting portion 573, which can be a limiting protrusion or a limiting column, etc., towards one side of the second elastic member 535. The end of the second elastic member 535 away from the second abutting member 534 is sleeved outside the limiting portion 573, and the limiting portion 573 can limit the freedom of the end of the second elastic member 535 away from the second abutting member 534 in the radial direction of the first pipe body, thereby improving the stability of the extension path of the second elastic member 535, so as to push the second abutting member 534 to normally block the end of the first pipe body away from the first stopper 545.
[0258] In order to further improve the humidifying effect of the humidifying assembly 500, the turnover component 70 is arranged when the humidifying assembly 500 is working, so as to avoid that the wet air enters the storage cavity through the humidifying air outlet.
[0259] In some embodiments, referring to FIGS. 8 and 33, the humidifying assembly can further include a turnover component 70, which is rotatably arranged in the shell. When the fan assembly 540 is working, the turnover component 70 is opened under the wind force of the fan assembly 540. When the fan assembly 540 stops working, the turnover component 70 is closed under the gravity of itself.
[0260] In the case that the inlet 701 of the fan assembly 540 and the storage cavity 210 are communicated, and the outlet 702 of the fan assembly 540 and the humidifying cavity 510d are communicated, the turnover component 70 can be located outside the humidifying cavity 510d, and the turnover component 70 covers one side of the humidifying air outlet away from the humidifying cavity 510d. When the fan assembly 540 is working, the air of the fan assembly 540 flows from the humidifying cavity 510d to the storage cavity 210, the air pressure on one side of the turnover component 70 towards the humidifying cavity 510d is greater than the air pressure on the other side of the turnover component 70 away from the humidifying cavity 510d, and the turnover component 70 rotates relative to the shell to the side away from the humidifying cavity 510d under the action of the pressure difference between the two sides, and opens the humidifying air outlet, so that the air in the humidifying cavity 510d flows to the storage cavity 210 through the humidifying air outlet.
[0261] When the fan assembly 540 stops working, the air pressure difference between the two sides of the turnover component 70 decreases, and the turnover component 70 overcomes the small air flow at the humidifying air outlet through the gravity of itself, so that the turnover component 70 can still maintain the closed state of the humidifying air outlet under the influence of the small air flow, so that when the fan assembly 540 stops working, the wet air in the humidifying cavity 510d is difficult to enter the storage cavity 210 through the humidifying air outlet, and the air in the humidifying cavity 510d is difficult to form a circulating flow path with the air in the storage cavity 210.
[0262] When the fan assembly 540 works, the air outlet of the fan assembly 540 flows from the storage cavity 210 to the humidifying cavity 510d, the air pressure on the side of the turnover component 70 away from the humidifying cavity 510d is greater than the air pressure on the side of the turnover component 70 toward the humidifying cavity 510d, the turnover component 70 rotates toward the humidifying cavity 510d relative to the shell under the action of the air pressure difference between the two sides, and opens the humidifying air outlet, so that the air in the storage cavity 210 can flow to the humidifying cavity 510d through the humidifying air outlet.
[0263] When the fan assembly 540 stops working, the air pressure difference between the two sides of the turnover component 70 decreases, and the turnover component 70 overcomes the small air flow at the humidifying air outlet by its own gravity, so that the turnover component 70 can still maintain the closed state of the humidifying air outlet under the influence of the small air flow, so that the air in the storage cavity 210 is difficult to form a circulating flow path with the air in the humidifying cavity 510d when the fan assembly 540 stops working.
[0264] Hereinafter, the turnover component 70 will be further described by taking an example that the inlet 701 of the fan assembly 540 is in communication with the storage cavity 210, and the outlet 702 of the fan assembly 540 is in communication with the humidifying cavity 510d.
[0265] In some embodiments, referring to FIG. 8 and FIG. 33, the turnover component 70 can include a pivot shaft 730 and a flap 710.
[0266] The flap 710 can have a hinged end 711, which can be arranged to rotate relative to the shell through the pivot shaft 730.
[0267] The flap 710 can also have a movable end 712, which rotates around the pivot shaft 730 to open or cover the humidifying air outlet.
[0268] The humidifying air outlet can be a long strip-shaped humidifying air outlet, and correspondingly, the flap 710 can be a long strip-shaped plate, the extension direction of the flap 710 can be consistent with the extension direction of the humidifying air outlet, and the axis of the pivot shaft 730 can be consistent with the extension direction of the humidifying air outlet, so as to improve the adaptability of the flap 710 and the humidifying air outlet.
[0269] In some embodiments, referring to FIG. 5, FIG. 8 and FIG. 33, the pivot shaft 730 is rotatably arranged in the shell, and the hinged end 711 of the flap 710 can be fixedly arranged on the pivot shaft 730, the pivot shaft 730 rotates synchronously with the flap 710, so that the flap 710 can open or cover the humidifying air outlet.
[0270] In some embodiments, the hinge end 711 of the flap 710 can be rotatably arranged relative to the hinge shaft 730, and the flap 710 can rotate around the hinge shaft 730, so that the flap 710 can open or cover the humidifying air outlet.
[0271] The flip part 70 composed of the hinge shaft 730 and the flap 710 has a simple structure and is easy to assemble, which simplifies the structure of the flip part 70 and the storage box.
[0272] As shown in FIGS. 6 and 8, the flap 710 is configured to rotate in a set direction D under the action of the air force of the fan assembly 540 when the fan assembly 540 is working, and open the humidifying air outlet; and rotate in the opposite direction of the set direction D under the action of the gravity of the flip part 70 when the fan assembly 540 stops working, and cover the side of the humidifying air outlet away from the humidifying cavity 510d.
[0273] The flap 710 has a simple structure and is easy to process and manufacture. The flap 710 can horizontally cover the humidifying air outlet, or obliquely cover the humidifying air outlet (see FIG. 8).
[0274] In the case where the flap 710 horizontally covers the humidifying air outlet, the hinge end 711 and the movable end 712 can be located at two ends of the flap 710 in the horizontal direction, respectively.
[0275] In the case where the flap 710 obliquely covers the humidifying air outlet, referring to FIGS. 8 and 33, the hinge end 711 is located above the movable end 712.
[0276] When the fan assembly 540 is working, the flap 710 rotates in the set direction D under the action of the air force of the fan assembly 540, and opens the humidifying air outlet.
[0277] When the fan assembly 540 stops working, the flap 710 rotates in the opposite direction of the set direction D around the hinge shaft 730 under the action of its own gravity, and covers the side of the humidifying air outlet away from the humidifying cavity 510d, so that the air in the humidifying cavity 510d is difficult to flow from the humidifying air outlet to the storage cavity 210.
[0278] In some embodiments, referring to FIGS. 8 and 33, the flip part 70 can further include a counterweight 720, which can be arranged at the hinge end 711 of the flap 710. The counterweight 720 is rotatably arranged relative to the housing.
[0279] In the case where the rotating shaft 730 is rotatably arranged in the housing and the hinged end 711 of the flap 710 is fixedly arranged on the rotating shaft 730, referring to FIGS. 8 and 33, the counterweight 720 can be fixedly arranged on the rotating shaft 730, so that the counterweight 720 is indirectly arranged on the hinged end 711 of the flap 710 through the rotating shaft 730, and the whole of the flap 710, the rotating shaft 730 and the counterweight 720 are rotatably arranged relative to the housing through the rotating shaft 730, so that the rotating shaft 730 and the housing are only rotatably assembled, and the assembly structure between the flap 710 and the housing is simplified.
[0280] In the case where the rotating shaft 730 is fixedly arranged in the housing and the hinged end 711 of the flap 710 is rotatably arranged relative to the rotating shaft 730, the counterweight 720 can be directly arranged on the hinged end 711 of the flap 710, so that the whole of the flap 710 and the counterweight 720 are rotatably arranged relative to the rotating shaft 730.
[0281] Referring to FIGS. 8 and 33, the center of gravity O2 of the counterweight 720 and the center of gravity O1 of the flap 710 are located on two sides of a vertical plane M passing through the axis of the rotating shaft 730, and the moment of the counterweight 720 rotating relative to the rotating shaft 730 is smaller than the moment of the flap 710 rotating relative to the rotating shaft 730. For example, the moment of the flap 710 rotating relative to the rotating shaft 730 is the product of the gravity G1 of the flap 710 and the force arm L1 of the flap 710; the moment of the counterweight 720 rotating relative to the rotating shaft 730 is the product of the gravity G2 of the counterweight 720 and the force arm L2 of the counterweight 720. The product of the gravity G1 of the flap 710 and the force arm L1 of the flap 710 is greater than the product of the gravity G2 of the counterweight 720 and the force arm L2 of the counterweight 720 (G1 x L1 > G2 x L2).
[0282] Therefore, the presence of the counterweight 720 does not change the normal operation of the flap 710. When the fan assembly 540 is working, the flap 710 rotates in the set direction D under the action of the wind of the fan assembly 540 and opens the humidifying air outlet; when the fan assembly 540 stops working, the flap 710 rotates in the opposite direction of the set direction D under the action of the gravity of the turnover component 70 and covers the side of the humidifying air outlet away from the humidifying cavity 510d. In addition, when the fan assembly 540 is working, the counterweight 722 can provide the turnover component 70 with assistance to rotate the turnover component 70 around the rotating shaft 730 in the set direction D, thereby reducing the wind required to open the humidifying air outlet and reducing the energy consumption and noise of the fan assembly 540.
[0283] In some embodiments, referring to FIGS. 8 and 33, the counterweight 720 can include a first connecting arm 721, which can be plate-shaped or rod-shaped. One end of the extending direction of the first connecting arm 721 can be arranged close to the rotating axis of the turnover component 70.
[0284] The counterweight 720 can include a counterweight portion 722. The counterweight portion 722 is disposed at an end of the first connecting arm 721 away from the rotation axis of the turnover component 70.
[0285] The length of the force arm L2 of the entire counterweight 720 can be increased by the first connecting arm 721. In the case where the value of G2 x L2 remains unchanged, the required gravity G2 of the counterweight 720 can be reduced, thereby the mass of the counterweight portion 722 can be reduced, and the material consumption of the counterweight portion 722 can be reduced.
[0286] In some embodiments, the counterweight portion 722 can be a counterweight rod. The axis of the counterweight rod can be parallel to the rotation axis of the turnover component 70. On the one hand, the counterweight rod can reduce the radial space occupation, thereby reducing the space occupation of the turnover component 70. On the other hand, the axis of the counterweight rod is parallel to the rotation axis of the turnover component 70, so that the torque of the counterweight rod at each position is substantially consistent, the variation range of the force of the counterweight 720 on the hinged end 711 in the axial direction is reduced, the stability of the assistance of the counterweight 720 to the turnover component 70 is improved, and the stability of the turnover component 70 relative to the shell when rotating is improved.
[0287] In other embodiments, the counterweight portion 722 can be a counterweight block. The counterweight block has a simple structure and is easy to manufacture. The counterweight block is disposed at an end of the first connecting arm 721 away from the rotation axis of the turnover component 70. The counterweight block can be disposed at a middle position of the turnover component 70 in the axial direction, so as to improve the stability of the turnover component 70 relative to the shell when rotating.
[0288] In some embodiments, referring to FIGS. 8 and 33, the side of the flap 710 facing the humidifying air outlet can be configured with an auxiliary member 713 protruding from the flap 710 toward the humidifying air outlet. The side of the flap 710 facing the humidifying air outlet is also the windward side of the flap 710. The auxiliary member 713 can improve the structural strength of the flap 710, so that the flap 710 is less likely to deform.
[0289] When the flap 710 covers the humidifying air outlet, at least part of the auxiliary member 713 extends into the humidifying air outlet. When the fan assembly 540 stops working, a small airflow in the humidifying cavity 510d flows to the windward side of the flap 710. At least part of the airflow first flows to the auxiliary member 713 and then flows along the auxiliary member 713 to the edge of the humidifying air outlet. Since the auxiliary member 713 increases the surface area of the windward side of the flap 710, the flow path of the airflow flowing along the auxiliary member 713 to the edge of the humidifying air outlet is increased, the energy of the airflow flowing to the edge of the humidifying air outlet is reduced, the airflow is less likely to flow out from the gap between the flap 710 and the edge of the humidifying air outlet, and the possibility of the airflow in the humidifying cavity 510d flowing into the storage cavity 210 is reduced.
[0290] In some embodiments, the turnover component 70 can include a first turnover plate and a second turnover plate. The first turnover plate and the second turnover plate are respectively rotatably connected with the housing.
[0291] When the fan assembly 540 stops working, the first turnover plate covers part of the humidifying air outlet under the action of its own gravity, and the second turnover plate covers another part of the humidifying air outlet under the action of its own gravity. The first turnover plate and the second turnover plate separate the humidifying cavity 510d and the storage cavity 210.
[0292] When the fan assembly 540 works, the first turnover plate and the second turnover plate rotate relative to the housing under the action of the wind power of the fan assembly 540, and open the humidifying air outlet, so as to connect the humidifying cavity 510d and the storage cavity 210.
[0293] In order to further improve the humidifying effect of the humidifying assembly 500, in some embodiments, the peripheral edge of the second mounting port 552 can be located at the periphery of the top opening of the exhaust cavity 510g, and the bottom edge of the cover plate 512 and the end surface of the top end of the exhaust cavity 510g abut. In this way, the end surface of the top end of the exhaust cavity 510g can support the cover plate 512, and can stop at the bottom end of the cover plate 512, so that the cover plate 512 is not easy to fall into the exhaust cavity 510g after installation.
[0294] In some embodiments, referring to FIG. 1 and FIG. 33, the rear wall 213 of the inner container 20 can be provided with at least one air duct air inlet 214. The at least one air duct air inlet 214 can include a plurality of air duct air inlets 214. For example, referring to FIG. 33, the at least one air duct air inlet 214 includes two air duct air inlets 214.
[0295] Referring to FIG. 34, the rear wall 213 of the inner container 20 can also be provided with at least one air duct air outlet 215. The at least one air duct air outlet 215 can include a plurality of air duct air outlets 215. For example, referring to FIG. 34, the at least one air duct air outlet 215 includes two air duct air outlets 215.
[0296] The air duct air outlet 215 can be located above the air duct air inlet 214, so that the air duct air inlet 214 is closer to the housing and the air outlet 811 on the housing than the air duct air outlet 215.
[0297] In some embodiments, referring to FIG. 34, the humidifying assembly 500 can also include a conveying air duct 100, which is arranged on the rear wall 213 and communicates the air duct air inlet 214 and the air duct air outlet 215.
[0298] The air outlet direction of the air outlet 811 is towards the air duct inlet 214, or part of the air outlet 811 is in communication with the air duct inlet 214, so that part of the air discharged from the air outlet 811 enters the air duct inlet 214, and part of the air discharged from the air outlet 811 directly enters the storage cavity 210. The air entering the air duct inlet 214 from the air outlet 811 is conveyed upwards along the conveying air duct 100 to the air duct outlet 215, and flows from the air duct outlet 215 to the upper region of the storage cavity 210, thereby improving the humidification efficiency of the upper region of the storage cavity 210.
[0299] For example, the air outlet 811 and the air duct inlet 214 can be in communication through a communication pipe, the communication pipe being located in the storage cavity 210, and the communication pipe wall can be provided with a communication hole, so that part of the air in the communication pipe can flow into the storage cavity 210 from the communication hole, thereby making part of the air outlet 811 in communication with the air duct inlet 214.
[0300] The wet air flows downwards at a rate greater than upwards due to the gravity of the water molecules, so the air flow from the air duct outlet 215 to the storage cavity 210 can flow downwards quickly, so that the air flow quickly spreads to the entire storage cavity 210, reducing the humidity difference between the upper and lower regions of the storage cavity 210, and improving the uniformity of the humidity in the storage cavity 210.
[0301] In some embodiments, referring to FIG. 9, the humidification assembly 500 can further include an air guide 10 disposed in the air exhaust cavity 510g, the air guide 10 being configured to guide the air outlet of the humidification air outlet to the air outlet 811.
[0302] In some embodiments, referring to FIG. 9, the air guide 10 can be configured in the first frame 911, so that the first frame 911 can be used to connect the cover plate component 80 and guide the air outlet of the humidification air outlet to the air outlet 811.
[0303] In some embodiments, referring to FIG. 9, the air guide 10 can include at least two air guide fins 11, and an air guide channel 12 is formed between adjacent two air guide fins 11, a first end of the air guide channel 12 being towards the humidification air outlet, and a second end of the air guide channel 12 being towards the air outlet 811. After the humidification cavity 510d humidifies the air, at least part of the humidified air is blown into the air exhaust cavity 510g from the humidification air outlet, and then flows into the air guide channel 12 from the first end of the air guide channel 12 towards the humidification air outlet, and flows along the air guide channel 12 towards the air outlet 811, and then flows out of the air guide channel 12 from the second end of the air guide channel 12 away from the humidification air outlet, and at least part of the humidified air flowing out of the air guide channel 12 flows into the storage cavity 210 through the air outlet 811 to humidify the storage cavity 210.
[0304] The air guide channel 12 can guide at least part of the airflow of the humidifying air outlet, so that the airflow of the humidifying air outlet can flow to the air outlet 811 as much as possible, reducing the retention of the airflow in the air exhaust cavity 510g, thereby improving the humidification efficiency of the storage cavity 210.
[0305] In some embodiments, referring to FIG. 9, the humidifying air outlet can be a strip-shaped humidifying air outlet, and the humidifying air outlet can extend along the first direction D1, which can be consistent with the width direction of the storage box or have an included angle with respect to the width direction of the storage box. The air outlet of the humidifying air outlet is directed to the side of the air exhaust cavity 510g, that is, the humidifying air outlet is a side air outlet.
[0306] In some embodiments, the at least one air outlet 811 includes two air outlets 811, which are arranged at the top of the air exhaust cavity 510g along the first direction D1. The positions of the humidifying air outlet and the two air outlets 811 correspond.
[0307] The air guide fins 11 are oppositely arranged with the humidifying air outlet, and the plurality of air guide fins 11 are arranged at intervals along the first direction D1 and form two air guide fin groups 13 corresponding to the two air outlets 811, respectively.
[0308] The air inlet ends of the two air guide fin groups 13 are respectively directed to the humidifying air outlet; the air outlet ends of the two air guide fin groups 13 are respectively away from the humidifying air outlet and respectively extend to the corresponding air outlets 811.
[0309] In some embodiments, referring to FIG. 9 and FIG. 34, the air outlet 811 can include a first air outlet 811a. The air guide fin group 13 can include a first air guide fin group 13a corresponding to the first air outlet 811a. The air inlet end of the first air guide fin group 13a is directed to the humidifying air outlet, and the air outlet end of the first air guide fin group 13a is directed to the first air outlet 811a.
[0310] The air outlet 811 can also include a second air outlet 811b. The air guide fin group 13 can also include a second air guide fin group 13b corresponding to the second air outlet 811b. The air inlet end of the second air guide fin group 13b is directed to the humidifying air outlet, and the air outlet end of the second air guide fin group 13b is directed to the second air outlet 811b.
[0311] In the air flow discharged from the humidifying air outlet, the part of the air flow discharged from the humidifying air outlet corresponding to the first air guide fin group 13a flows towards the first air outlet 811a under the guidance of the first air guide fin group 13a. The part of the air flow discharged from the humidifying air outlet corresponding to the second air guide fin group 13b flows towards the second air outlet 811b under the guidance of the second air guide fin group 13b. Referring to FIG. 34, the air flow discharged from the first air outlet 811a and the second air outlet 811b flows into the storage cavity 210 to humidify the storage cavity 210.
[0312] The first air guide fin group 13a and the second air guide fin group 13b can guide the air flow discharged from the humidifying air outlet in two directions, so that the air flow is discharged from the two air outlets 811 arranged along the first direction D1 in two paths, which reduces the humidity variation amplitude of the air in the storage cavity 210 along the first direction D1 and improves the uniformity of the humidity in the storage cavity 210.
[0313] In some embodiments, the end of the air guide fin 11 away from the humidifying air outlet is inclined relative to the end close to the humidifying air outlet towards the corresponding air outlet 811, so that the air guide channel 12 formed between the adjacent two air guide fins 11 is inclined relative to the end close to the humidifying air outlet towards the corresponding air outlet 811, to improve the guiding effect on the air guide channel 12.
[0314] In some embodiments, referring to FIG. 9, the inclination angle a of the plurality of air guide fins 11 in the air guide fin group 13 relative to the center line of the humidifying air outlet gradually increases from the end away from the corresponding air outlet 811 to the end close to the corresponding air outlet 811, for example, referring to FIG. 9, a2 is greater than a1, so that the width of the air guide channel 12 formed between the adjacent two air guide fins 11 along the first direction D1 increases from the end close to the humidifying air outlet to the end away from the humidifying air outlet, so that the air flow flowing in the air guide channel 12 in the direction away from the humidifying air outlet diffuses and flows out, reducing the resistance of the air guide fin 11 to the air flow, thereby increasing the speed of the air flow, and further improving the humidifying efficiency of the humidifying assembly 500 on the storage cavity 210.
[0315] In other embodiments, the inclination directions of the plurality of air guide fins 11 in the air guide fin 11 can also be consistent, so as to facilitate the arrangement of the plurality of air guide fins 11 and the processing and manufacturing of the humidifying assembly 500.
[0316] In some embodiments, as shown in FIGS. 3 to 6, at least one air guide plate 551 can be arranged in the air outlet 811, and the air guide plate 551 can be arranged inclined relative to the horizontal direction. The air guide plate 551 can further guide the air outlet of the air outlet 811, so that the air flow in the air exhaust cavity 510g can flow upwards from the air outlet 811 along the inclination direction of the air guide plate 551 to the storage cavity 210.
[0317] In some embodiments, referring to FIG. 4, the top end of the air deflector 551 can be inclined to extend towards the direction away from the front side of the shell, so that the airflow in the exhaust cavity 510g can be inclined upwards along the air deflector 551 from the air outlet 811 and flow towards the rear wall 213 of the storage cavity 210, so that the humidified air can flow to the end of the storage cavity 210 close to the rear wall 213 to humidify the deep part of the storage cavity 210.
[0318] In addition, since the air duct inlet 214 is arranged on the rear wall 213 of the inner container 20, the top end of the air deflector 551 is inclined to extend towards the rear wall 213, so that at least part of the air outlet of the air outlet 811 can more easily flow to the air duct inlet 214, and then flow upwards along the air duct 100 from the air duct outlet 215 to the upper region of the storage cavity 210.
[0319] In some embodiments, referring to FIG. 5, the top end of the air deflector 551 is also inclined to extend towards the corresponding side wall 212 (as shown in FIG. 34), so that the air deflector 551 can guide the air outlet of the air outlet 811 towards the rear wall 213 and the side wall 212, increasing the direction of the air outlet of the air outlet 811, thereby improving the humidification efficiency of the humidification assembly 500 on the storage cavity 210.
[0320] In some embodiments, the air deflector 10 can also be an air deflector pipe, and the first end of the air deflector pipe is arranged towards the humidification air outlet, and the second end of the air deflector pipe is arranged towards the air outlet 811. After the humidified air in the humidification cavity 510d is blown into the exhaust cavity 510g from the humidification air outlet, at least part of the humidified air flows along the air deflector pipe towards the air outlet 811 and then flows into the storage cavity 210 from the air outlet 811 to humidify the storage cavity 210.
[0321] In some embodiments, the side plate 511 is provided with a water overflow port. The water overflow port is in communication with the humidification cavity 510d. The design of the water overflow port can effectively prevent the liquid level in the humidification cavity 510d from being too high, and prevent the excess liquid in the humidification cavity 510d from overflowing into other cavities or the external environment, thereby protecting the humidification assembly 500 and the inner container 20. In addition, by discharging the excess water through the water overflow port, the water level in the humidification cavity 510d can be kept stable, ensuring the uniformity and stability of the humidification effect. By discharging the excess water in time through the water overflow port, the risk of electric shock and short circuit is reduced, and the reliability of the equipment is improved.
[0322] In the description of the above embodiments, specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in a suitable manner.
[0323] It should be noted that any one of the disclosed technical solutions in the present disclosure can solve one or more of the above technical problems and achieve the corresponding technical effects to some extent. Alternatively, multiple disclosed technical solutions can be combined into an overall solution to solve one or more of the above technical problems and achieve the corresponding technical effects. Alternatively, part of the disclosed technical solutions are combined into an overall solution, combined with related technologies and degraded solutions, but the solution can compensate for the degradation trend through the technical means of the present disclosure, so as to solve one or more of the above technical problems and achieve the corresponding technical effects. Alternatively, each of the disclosed technical solutions is combined into a complete technical solution to form an organic and indivisible overall solution, thereby solving the technical problems and achieving the corresponding technical effects.
[0324] Any one of the disclosed technical solutions in the present disclosure, and the recombination of multiple disclosed technical solutions can form a complete technical solution respectively, and can solve one or more of the above technical problems and achieve the corresponding technical effects, all of which belong to the content of the present disclosure and are directly and without doubt determined according to the content of the present disclosure.
[0325] Those skilled in the art will understand that the disclosure range of the present disclosure is not limited to the above specific embodiments, and certain elements of the embodiments can be modified and replaced without departing from the spirit of the present disclosure. The scope of the present disclosure is limited by the appended claims. In the description of the above embodiments, specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in a suitable manner.
Claims
1. A storage box (1000), comprising: a box body (1001) having a cavity; an inner container (20) located in the cavity, the inner container (20) being formed with a storage cavity; and a humidifying assembly (500) disposed in the cavity, the humidifying assembly (500) being capable of humidifying the storage cavity; the humidifying assembly (500) comprising: a humidifying part having a humidifying air outlet; a liquid storage member (520) capable of supplying liquid to the humidifying part; an air duct having an air inlet and at least one air outlet (811), any one of the air inlet and the at least one air outlet (811) being in communication with the storage cavity; and a fan assembly (540) capable of sucking 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; wherein the humidifying air outlet is in communication with the air duct, so that the air flow humidified by the humidifying part is discharged from the air outlet to the storage cavity. The humidifying assembly (500) further comprises a humidifying member (530) and a housing (510); the housing (510) is formed with the air inlet and the air outlet, and comprises:
2. The storage box (1000) according to claim 1, wherein a mounting part having: a first sub-mounting cavity (510b); and a second sub-mounting cavity (510c) in communication with the air inlet and the storage cavity; the humidifying part having a humidifying cavity (510d); the humidifying member (530) is located in the humidifying cavity (510d); and an exhaust part having an exhaust cavity (510g) in communication with the storage cavity through the air outlet (811); wherein the humidifying cavity (510d) and the second sub-mounting cavity (510c) are in communication, and the humidifying cavity (510d) and the exhaust cavity (510g) are in communication; the second sub-mounting cavity (510c), the humidifying cavity (510d) and the exhaust cavity (510g) form the air duct; the fan assembly (540) is located in the second sub-mounting cavity (510c), and a fan air outlet (541c) of the fan assembly (540) is in communication with the humidifying cavity (510d); the liquid storage member (520) is detachably mounted in the first sub-mounting cavity (510b); a liquid storage cavity (520a) of the liquid storage member (520) is in communication with the humidifying cavity (510d). The box body (1001) has an opening; the mounting part is located on a side of the housing (510) close to the opening; 3. The storage box (1000) according to claim 2, wherein the humidifying part and the exhaust part are located on a side of the housing (510) away from the opening; and the exhaust part is located on top of the humidifying part. The housing (510) comprises:
4. The storage box (1000) according to claim 3, wherein a side plate (511); and a cover plate (512) connected to a top of the side plate (511). The first sub-mounting cavity (510b), the second sub-mounting cavity (510c), the humidifying cavity (510d), and the exhaust cavity (510g) are at least enclosed by the cover plate (512) and the side plate (511); a side of the cover plate (512) and the side plate (511) close to the opening is formed with a taking and placing opening, and the taking and placing opening communicates with the second sub-mounting cavity (510c).
5. The storage box (1000) according to claim 4, wherein The shell (510) further comprises: a first partition plate (513) extending along a first direction intersecting with a height direction of the humidifying assembly (500); The first partition plate (513) is located in the mounting cavity (510a) of the mounting portion, and the first partition plate (513) divides the mounting cavity (510a) into the first sub-mounting cavity (510b) and the second sub-mounting cavity (510c), and the first sub-mounting cavity (510b) is located at a top of part of the second sub-mounting cavity (510c); The liquid storage member (520) is detachably mounted in the first sub-mounting cavity (510b), and the fan assembly (540) is mounted in the second sub-mounting cavity (510c).
6. The storage box (1000) according to claim 5, wherein The shell (510) further comprises: a second partition plate (514) extending along the height direction of the humidifying assembly (500), a bottom of the second partition plate (514) being connected to the first partition plate (513), and a top of the second partition plate (514) being 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) jointly enclose the humidifying cavity (510d).
7. The storage box (1000) according to any one of claims 4 to 6, wherein, The cover plate (512) comprises: a first plate body (512a) comprising: a first extension section (512b) located at a top of the mounting cavity (510a); and a second extension section (512c) connected to a side of the first extension section (512b) away from the opening; part of the second extension section (512c) is bent towards the humidifying cavity (510d); and a second plate body (810) connected to a side of the second extension section (512c) away from the humidifying cavity (510d) and jointly forming the exhaust cavity (510g) with the side plate (511) and the bent second extension section (512c); The second plate body (810) is formed with the exhaust opening (811).
8. The storage box (1000) according to claim 7, wherein The fan assembly (540) comprises: a fan mounting seat (541) having a fan mounting cavity (541a) with a fan air inlet (541b) and a fan air outlet (541c); the fan mounting cavity (541a) communicates with the humidifying cavity (510d) through the fan air outlet (541c); and a fan (542) mounted at the fan air inlet (541b).
9. The storage box (1000) according to any one of claims 1 to 8, wherein, The humidifying assembly (500) further comprises: An air permeable tube (521) is arranged in the liquid storage cavity (520a), and a bottom end of the air permeable tube (521) is located at a level higher than a bottom end of the humidifying element (530) along a height direction of the humidifying assembly (500); and a top end of the air permeable tube (521) is connected to the atmosphere.
10. The storage box of claim 2, wherein, The shell further comprises a first partition plate (560) arranged between the exhaust cavity (510g) and the humidifying cavity (510d); and a first mounting opening (561) is arranged on the first partition plate (560); A second mounting opening (552) is formed at a top of the exhaust cavity (510g), and the second mounting opening (552) is arranged opposite to the first mounting opening (561); The humidifying assembly (500) further comprises: A cover plate member (80) is arranged to cover the second mounting opening (552) and is detachably connected to the shell; and an air outlet (811) is arranged on the cover plate member (80) to connect the exhaust cavity (510g) and the storage cavity; The humidifying part comprises a humidifying member (90) detachably arranged at a bottom of the cover plate member (80), and at least a part of the humidifying member (90) is arranged in the humidifying cavity (510d) through the first mounting opening (561).
11. The storage box of claim 10, wherein, The humidifying member (90) comprises the humidifying element (530); The humidifying element (530) comprises humidifying fibers (920), and a part of the humidifying fibers (920) close to a bottom of the humidifying cavity (510d) is located below a liquid level of the humidifying cavity (510d), and a top of the humidifying fibers (920) is connected to a top of the humidifying cavity (510d).
12. The storage box of claim 11, wherein, The humidifying member (90) further comprises a bracket (910); The bracket (910) comprises a first bracket body (911) and a second bracket body (918); The first bracket body (911) is arranged in the exhaust cavity (510g), and a top of the first bracket body (911) is detachably connected to the cover plate member (80); The second bracket body (918) is arranged at a bottom of the first bracket body (911); The humidifying fibers (920) are arranged in the second bracket body (918), and the humidifying fibers (920) are arranged in the humidifying cavity (510d).
13. The storage box of claim 12, wherein, The second bracket body (918) is configured with at least one mounting frame (919), and the humidifying fibers (920) are arranged in the at least one mounting frame (919).
14. The storage box of claim 12, wherein, The first bracket body (911) comprises a plug-in member (912) and a stop member (914); The plug-in member (912) is arranged at a top of the first bracket body (911), and the plug-in member (912) is configured with a plug-in groove (913); The stop component (914) comprises a third connecting arm (915) and a third stop piece (916); one end of the third connecting arm (915) is connected with the plug-in component (912), and the third stop piece (916) is arranged at the end of the third connecting arm (915) away from the plug-in component (912); the third stop piece (916) corresponds to the slot of the at least partial slot (913), and the third stop piece (916) and the slot of the slot (913) are arranged in a spaced manner; The bottom of the cover plate component (80) is provided with a plug-in part (821) which is inserted into the slot (913), and the third stop piece (916) is stopped at the end of the plug-in part (821) away from the slot (913).
15. The storage box of claim 3, wherein, The humidifying part (530) extends along the width direction and the height direction of the storage box (100), and the humidifying part (530) is connected with the side plate (511) of the shell (510) at both ends along the length direction of the storage box. The humidifying part is provided with a humidifying liquid inlet, and the liquid storage part (520) is provided with a liquid storage liquid outlet. The humidifying part (530) divides the humidifying cavity (510d) into a first humidifying cavity (510e) and a second humidifying cavity (510f); the first humidifying cavity (510e) is located at the side close to the opening in the humidifying cavity (510d); the first humidifying cavity (510e) is in communication with the humidifying liquid inlet; and the second humidifying cavity (510f) is in communication with the humidifying air outlet of the humidifying part.
16. The storage box of claim 15, wherein, The bottom of the humidifying part is provided with a humidifying air inlet pipe (537), the top end of the humidifying air inlet pipe (537) is higher than the bottom end of the air permeable pipe (521), the humidifying air inlet pipe (537) is in communication with the first humidifying cavity (510e), and the bottom end of the humidifying air inlet pipe (537) is in communication with the fan air outlet (541c) of the fan assembly (540).
17. The storage box of claim 1, wherein, The liquid storage part (520) is provided with a first docking assembly (524), the second partition plate (514) is formed with a humidifying liquid inlet, and the humidifying liquid inlet is provided with a second docking assembly (532); the first docking assembly (524) and the second docking assembly (532) are detachably docked to communicate the liquid storage cavity (520a) and the humidifying cavity (510d).
18. The storage box according to claim 15, wherein The liquid storage part (520) comprises: a connecting pipe (520e) having a connecting cavity; the connecting cavity is in communication with the liquid storage liquid outlet and a liquid storage cavity of the liquid storage part (520); The humidifying assembly (500) further comprises a docking assembly which can dock the liquid storage part (520) and the humidifying part; the liquid storage part (520) can supply liquid to the humidifying part; the docking assembly comprises: a first docking assembly (524) comprising: a first connecting seat (525) located in the liquid storage cavity (520a) and mounted on the connecting pipe (520e); The first connecting piece (526) is at least partially located in the connecting cavity; the first connecting piece (526) is in sliding connection with the connecting pipe (520e); and The first elastic member (527) is in compression state and connected between the first connecting seat (525) and the first connecting piece (526); The second connecting seat (533) is installed at the humidifying liquid inlet, and has a connecting channel in communication with the humidifying part; The second connecting piece (534) is at least partially located in the connecting channel; the second connecting piece (534) is in sliding connection with the second connecting seat (533); and The second elastic member (535) is in compression state and connected between the second connecting seat (533) and the second connecting piece (534); The elastic force of the first elastic member (527) is greater than that of the second elastic member (535); When the first connecting assembly (524) and the second connecting assembly (532) are connected, the first connecting piece (526) abuts against the second connecting piece (534), and the second elastic member (535) is compressed to open the connecting channel of the second connecting piece (534); When the second connecting piece (534) opens the connecting channel, the second connecting piece (534) abuts against the first connecting piece (526), and the first elastic member (527) is compressed to open the liquid storage outlet of the first connecting piece (526); When the first connecting assembly (524) and the second connecting assembly (532) are separated, the first elastic member (527) releases the elastic force, and the first connecting piece (526) blocks the liquid storage outlet under the elastic force of the first elastic member (527); When the first connecting piece (526) blocks the liquid storage outlet, the second connecting piece (534) blocks the connecting channel under the elastic force of the second elastic member (535). The first connecting assembly (524) is arranged on the side of the liquid storage member (520) facing the second connecting assembly (532), and the inner cavity of the first connecting assembly (524) is in communication with the liquid storage cavity of the liquid storage member (520); 19. The storage box of claim 18, wherein, When the first connecting assembly (524) and the second connecting assembly (532) are connected, the inner cavities of the first connecting assembly (524) and the second connecting assembly (532) are in communication to supply liquid in the liquid storage member (520) into the humidifying cavity (510d); The second connecting assembly (532) is configured to, when separated from the first connecting assembly (524), make the liquid remaining in the connecting region of the first connecting assembly (524) and the second connecting assembly (532) flow into the humidifying cavity (510d). 20. The storage box of claim 19, wherein, The air-permeable tube (521) is arranged in the liquid storage member (520), and the bottom end of the air-permeable tube (521) is below the liquid level of the liquid storage member (520) when the liquid storage member (520) supplies liquid to the humidification cavity (510d), and the bottom end of the air-permeable tube (521) is not lower than the liquid level of the humidification cavity (510d); The top end of the inner cavity of the second docking assembly (532) is not lower than the bottom end of the air-permeable tube (521).
21. The storage box of claim 20, wherein, The second docking assembly (532) is configured with a liquid discharge channel (570) that can communicate the inner cavity of the second docking assembly (532) and the humidification cavity (510d).
22. The storage box of claim 21, wherein, The top end of the liquid discharge channel (570) is connected to the bottom end of the inner cavity of the second docking assembly (532), and the bottom end of the liquid discharge channel (570) communicates with the humidification cavity (510d).
23. The storage box of claim 22, wherein, The bottom end of the second docking assembly (532) has a liquid discharge tube (571), the top end of the liquid discharge tube (571) communicates with the bottom end of the inner cavity of the second docking assembly (532), the bottom end of the liquid discharge tube (571) communicates with the humidification cavity (510d), and the inner cavity of the liquid discharge tube (571) constitutes the liquid discharge channel (570).
24. The storage box of claim 23, wherein, The bottom end of the side of the liquid discharge tube (571) away from the first docking assembly (524) is configured with a communication port (572), and the liquid discharge channel (570) communicates with the humidification cavity (510d) through the communication port (572).
25. The storage box of claim 24, wherein, The width of the communication port (572) along the radial direction of the liquid discharge tube (571) increases from top to bottom.
26. The storage box of claim 2, wherein, The humidification assembly (500) further comprises: A turnover component (70) is rotatably arranged in the shell, and the turnover component (70) is configured to open the humidification air outlet under the action of the air force of the fan assembly (540) when the fan assembly (540) is working, and close the humidification air outlet under the action of gravity when the fan assembly (540) stops working.
27. The storage box of claim 26, wherein, The turnover component (70) is arranged outside the humidification cavity (510d); The turnover component (70) comprises a flap (710) and a rotating shaft (730), the flap (710) is rotatably arranged with the shell through the rotating shaft (730), and the flap (710) is configured to rotate in a set direction under the action of the air force of the fan assembly (540) when the fan assembly (540) is working, and open the humidification air outlet, and rotate in the opposite direction of the set direction under the action of gravity of the turnover component (70) when the fan assembly (540) stops working, and cover the side of the humidification air outlet away from the humidification cavity (510d).
28. The storage box of claim 27, wherein, The flap (710) has a hinged end (711) and a movable end (712), the hinged end (711) is rotatably arranged with the shell, and the movable end (712) rotates around the hinged end (711) to open or close the humidification air outlet; The turnover component (70) further comprises a counterweight (720) arranged at the hinge end (711) of the turnover plate (710), the counterweight (720) is arranged to rotate relative to the shell, the center of gravity of the counterweight (720) and the center of gravity of the turnover plate (710) are located on both sides of the vertical plane of the axis of the rotation shaft (730), and the moment of rotation of the counterweight (720) around the rotation shaft (730) is smaller than the moment of rotation of the turnover plate (710) around the rotation shaft (730).
29. The storage box of any one of claims 2-5, wherein, The inner container (20) has a conveying air duct (100) arranged at the rear wall (213) of the inner container (20), the conveying air duct (100) has an air duct air inlet (214) and an air duct air outlet (215) in communication; The air duct air inlet (214) is in communication with the storage cavity; The air duct air outlet (215) is in communication with the storage cavity, and the air duct air outlet (215) is located above the air duct air inlet (214); The air outlet direction of the air outlet (811) is towards the air duct air inlet (214), or part of the air outlet (811) is in communication with the air duct air inlet (214), so that part of the air discharged by the air outlet (811) enters the air duct air inlet (214), and the part of the air enters the storage cavity.
30. The storage box of claim 29, wherein, The humidifying cavity (510d) has a humidifying air outlet, the exhaust cavity (510g) is in communication with the humidifying cavity (510d) through the humidifying air outlet, and the exhaust cavity (510g) has the air outlet (811); The humidifying assembly 500 further comprises an air guide member (10) arranged in the exhaust cavity (510g), and the air guide member (10) is configured to guide the air outlet of the humidifying air outlet to the air outlet (811).
31. The storage box of claim 30, wherein, The air guide member (10) comprises at least two air guide fins (11), and an air guide channel (12) is formed between adjacent two air guide fins (11) in the at least two air guide fins (11), a first end of the air guide channel (12) is towards the humidifying air outlet, and a second end of the air guide channel (12) is towards the air outlet (811).
32. The storage box of claim 31, wherein, The humidifying air outlet is in the shape of a strip, the humidifying air outlet extends along a first direction, and the air outlet of the humidifying air outlet is towards the side of the exhaust cavity (510g); The at least one air outlet (811) comprises two air outlets (811), and the two air outlets (811) are arranged at the top of the exhaust cavity (510g) in a spaced manner along the first direction; The positions between the humidifying air outlet and the two air outlets (811) correspond; The at least two air guide fins (11) and the humidifying air outlet are arranged opposite to each other, the at least two air guide fins (11) are arranged in a spaced manner along the first direction, and form two air guide fin groups (13) corresponding to the two air outlets (811) respectively; The at least two air guide fins (11) and the humidifying air outlet are arranged opposite to each other, the at least two air guide fins (11) are arranged in a spaced manner along the first direction, and form two air guide fin groups (13) corresponding to the two air outlets (811) respectively; The air inlet ends of the two groups of air guide fins (13) are respectively directed towards the humidifying air outlet, and the air outlet ends of the two groups of air guide fins (13) are respectively directed away from the humidifying air outlet and extend towards the corresponding air outlet (811).
33. The storage box of claim 32, wherein, The end of the at least two air guide fins (11) away from the humidifying air outlet is inclined towards the corresponding air outlet (811) relative to the end close to the humidifying air outlet. The inclination angle of the plurality of air guide fins (11) of any one of the two groups of air guide fins (13) relative to the center line of the humidifying air outlet increases from the end away from the corresponding air outlet (811) to the end close to the corresponding air outlet (811).
34. A humidifying device, comprising: a liquid storage member (520) having a liquid storage cavity (520a) and a liquid outlet; the liquid storage member (520) comprises: a connecting pipe (520e) having a connecting cavity; the connecting cavity is in communication with the liquid outlet and the liquid storage cavity (520a); a humidifying part having a humidifying liquid inlet and a humidifying cavity (510d); and a docking assembly for docking the liquid storage member (520) and the humidifying part; the liquid storage member (520) is used to supply liquid to the humidifying part; the docking assembly comprises: a first docking assembly (524) comprising: a first connecting seat (525) located in the liquid storage cavity (520a) and mounted on the connecting pipe (520e); a first docking member (526), at least part of the first docking member (526) is located in the connecting cavity; the first docking member (526) and the connecting pipe (520e) are in sliding connection; and a first elastic member (527), the first elastic member (527) is connected between the first connecting seat (525) and the first docking member (526) in a compressed state; and a second docking assembly (532) comprising: a second connecting seat (533) mounted at the humidifying liquid inlet, the second connecting seat (533) has a connecting channel in communication with the humidifying part; a second docking member (534), at least part of the second docking member (534) is located in the connecting channel; the second docking member (534) and the second connecting seat (533) are in sliding connection; and a second elastic member (535), the second elastic member (535) is connected between the second connecting seat (533) and the second docking member (534) in a compressed state; wherein the elastic force of the first elastic member (527) is greater than the elastic force of the second elastic member (535); when the first docking assembly (524) and the second docking assembly (532) are docked, the first docking member (526) abuts against the second docking member (534), and the second elastic member (535) is compressed to make the second docking member (534) open the connecting channel; When the second connector (534) opens the connecting channel, the second connector (534) abuts against the first connector (526), and the first elastic member (527) is compressed to open the liquid storage outlet of the first connector (526); When the first connector assembly (524) and the second connector assembly (532) are separated, the first elastic member (527) releases the elastic force, and the first connector (526) blocks the liquid storage outlet under the elastic force of the first elastic member (527); When the first connector (526) blocks the liquid storage outlet, the second connector (534) blocks the connecting channel under the elastic force of the second elastic member (535).
35. The humidifying arrangement of claim 34, wherein, The first connecting seat (525) comprises: a first connecting part connected to the connecting pipe (520e); a second connecting part connected to the first connecting part, a first end of the second connecting part being detachably connected to the first connecting part, and a second end of the second connecting part being detachably connected to the outer periphery of the connecting pipe (520e).
36. The humidifying device according to claim 35, wherein the first connecting part comprises: a connecting body (525a) having a connecting body cavity with two ends connected to openings, a first end of the connecting body cavity being in communication with the liquid storage cavity (520a) through the connecting openings, and a second end of the connecting body cavity being in communication with the connecting cavity through the connecting openings; the second connecting part comprises: a plurality of buckles (525b) arranged in sequence and spaced apart along the circumference of the connecting body (525a), a first end of the buckle (525b) being connected to the connecting body (525a), and a second end of the buckle (525b) being connected to the outer periphery of the connecting pipe (520e).
37. The humidifying arrangement of claim 36 wherein, the connecting body (525a) has: a first connecting opening through which the first end of the connecting body cavity is in communication with the liquid storage cavity (520a); and a second connecting opening through which the second end of the connecting body cavity is in communication with the connecting cavity. An anti-disengagement member (529) is arranged on the inner periphery of the first connecting seat (525), and the first connector (526) and the anti-disengagement member (529) in the connecting cavity are arranged in cooperation; 38. The humidifying arrangement of claim 35, wherein, the anti-disengagement member (529) can divide the connecting cavity into a first sub-connecting cavity and a second sub-connecting cavity in communication with each other, and the first sub-connecting cavity is arranged on the side of the second sub-connecting cavity close to the liquid storage cavity (520a). the first connector (526) comprises a first connector segment (526a) and a second connector segment (526b) connected to each other, the first connector segment (526a) is located in the first sub-connecting cavity, and at least part of the second connector segment (526b) is located in the second sub-connecting cavity; 39. The humidifying arrangement of claim 38, wherein, The first docking section (526a) has a docking cavity with a docking opening, a first end of the docking cavity being communicated with the connecting cavity through the docking opening; an end of the first docking section (526a) close to the second docking section (526b) is provided with a first docking through hole, the first docking through hole being communicated with the docking cavity; The connecting position of the first docking section (526a) and the second docking section (526b) is matched with the anti-extraction member (529), and the anti-extraction member (529) can limit the first docking section (526a) from moving towards the liquid storage liquid outlet.
40. The humidifying arrangement of claim 39, wherein, The first docking assembly (524) further comprises at least one first sealing member (528), and the at least one first sealing member (528) satisfies at least one of the following conditions: The at least one first sealing member (528) is arranged at the connecting position of the first connecting seat (525) and the connecting pipe (520e); or the at least one first sealing member (528) is arranged at the abutting position of the first docking section (526a) and the anti-extraction member (529).
41. The humidification device of any of claims 34-40, wherein, The second connecting seat (533) comprises: A first connecting section (533a) is arranged at the humidification liquid inlet, and the first connecting section (533a) has the connecting channel; A first stop member (545) is connected with the first connecting section (533a), and the first stop member (545) is arranged at one side of the first connecting section (533a) close to the humidification cavity (510d); the first stop member (545) has a second connecting cavity; The connecting channel is communicated with the humidification cavity (510d) through the second connecting cavity.
42. The humidifying arrangement of claim 41, wherein, The second docking member (534) comprises: A docking body (534a) has an increasing cross-sectional area along the direction from the first connecting section (533a) to the first stop member (545); the cross-sectional area of the docking body (534a) is smaller than the inner diameter of the connecting channel; and A plurality of docking connecting sections (534b) are sequentially and spacedly arranged along the circumference of the docking body (534a); a first end of the docking connecting section (534b) is connected with the docking body (534a), a second end of the docking connecting section (534b) extends towards the first stop member (545), and the docking connecting section (534b) is in sliding connection with the inner periphery of the first connecting section (533a).
43. The humidifying arrangement of claim 42, wherein, The second docking assembly (532) further comprises at least one second sealing member (536), and the at least one second sealing member (536) satisfies at least one of the following conditions: The at least one second sealing member (536) is arranged at the outer periphery of the first connecting section (533a) away from the humidification cavity (510d); or the at least one second sealing member (536) is arranged at the connecting position of the first connecting section (533a) and the first stop member (545).
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