Humidification module, humidifier, and humidifying air purifier
The humidification module addresses the challenge of cumbersome cleaning by using an interlocking component for automatic movement, facilitating easy attachment and detachment of the water tank, enhancing maintenance convenience.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- GD MIDEA ENVIRONMENT APPLIANCES MFG
- Filing Date
- 2023-06-29
- Publication Date
- 2026-04-22
AI Technical Summary
The humidification modules in existing cleaners are difficult to remove and clean due to their cumbersome design, making maintenance inconvenient.
A humidification module with an interlocking component that allows for automatic movement of the humidification component, enabling quick attachment and detachment of the water tank, facilitated by a mechanism involving a reset member and movable member that rotates and deforms to facilitate easy switching between mounted and detached states.
Enables quick and convenient cleaning of the humidification module by allowing the water tank to be easily detached and reattached, improving user experience and maintenance efficiency.
Smart Images

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Abstract
Description
Technical Field
[0001] This application claims the priority of a Chinese patent application filed on August 17, 2022, with an application number of 202210989228.2 and an invention title of "Humidification Module, Humidifier, and Humidifying Cleaner", and the entire content thereof is incorporated herein by reference.
[0002] This application relates to the technical field of cleaners, and particularly to a humidification module, a humidifier, and a humidifying cleaner.
Background Art
[0003] With the rapid development of cleaners, cleaners are becoming more and more widely used in many households. The scenes where people use cleaners are increasing, and the needs for product diversification are also increasing, including humidifying cleaners that can meet various needs.
[0004] The humidifying cleaner mainly humidifies the gas through a humidification module, and it is necessary to clean the humidification module of the cleaner after the cleaner has been used for a certain period of time. However, the humidification module in the related art is troublesome to remove and difficult to clean.
Summary of the Invention
Problems to be Solved by the Invention
[0005] This application solves at least one technical problem existing in the related art. Therefore, this application provides a humidification module that can realize the automatic movement of the humidification component, can quickly attach and detach the water tank, facilitate the cleaning of the water tank, and improve the convenience of cleaning the humidification module.
[0006] This application further provides a humidifier.
[0007] This application further provides a humidifying cleaner.
Means for Solving the Problems
[0008] According to a first aspect embodiment of the present application, the humidifying module, humidifier and humidifying air purifier includes a base, an interlocking component mounted in a mounting cavity within the base, a humidifying component connected to the interlocking component, wherein the first end of the humidifying component is located within the mounting cavity, and a water tank switchable between a detached state and a mounted state relative to the mounting cavity, wherein in the process of switching the water tank from the detached state to the mounted state, the water tank moves in a first direction, and the first end of the humidifying component moves in a third direction relative to the mounting cavity to be located within the water tank, and in the process of switching the water tank from the mounted state to the detached state, the water tank moves in a second direction, and the interlocking component moves the first end of the humidifying component in a fourth direction relative to the mounting cavity to detach it from the water tank.
[0009] According to the humidification module of the present invention, by switching the water tank from an attached state to a detached state, the water tank is gradually pulled out from the mounting cavity. In the process of the water tank being removed from the mounting cavity, the water tank no longer presses on the interlocking component, allowing the interlocking component to recover from deformation, and also moving the humidification component in a fourth direction relative to the mounting cavity. As a result, the humidification component moves away from the water tank, and the water tank is completely pulled out from the mounting cavity without being restricted in position by the humidification component. This enables automatic movement of the humidification component, allows for quick attachment and detachment of the water tank, facilitates cleaning of the water tank, and improves the convenience of cleaning the humidification module.
[0010] According to any one embodiment of the present application, the interlocking component includes a reset member and a movable member, the first end of the reset member being mounted in the mounting cavity, the second end of the reset member being connected to the movable member, the humidifying component being connected to the movable member, the movable member including a connecting end and a free end, the connecting end being rotatably connected to the mounting cavity, and the free end being connected to the humidifying component, and in the process of switching the water tank from the separated state to the mounted state, the water tank applies an external force to the movable member, causing the movable member to rotate, deform the reset member, and move the humidifying component toward the water tank, and in the process of switching the water tank from the mounted state to the separated state, the water tank releases the external force applied to the movable member, the reset member returning to its original shape, causing the movable member to move in the reverse direction, and moving the humidifying component toward the water tank.
[0011] According to any one embodiment of the present application, the movable member includes a support plate, and in the process of switching the water tank from the separated state to the mounted state, the water tank contacts the support plate and compresses the reset member, and in the process of switching the water tank from the mounted state to the separated state, the reset member moves the support plate in the opposite direction.
[0012] According to any one embodiment of the present application, the movable member includes a rotating bracket, the rotating bracket is rotatably mounted within the mounting cavity, the support plate is fixed to the rotating bracket, and the second end of the reset member is connected to the rotating bracket.
[0013] According to any one of the above embodiments of the present application, the rotating bracket is provided with a stop block, and the second end of the reset member is fixedly connected to the stop block.
[0014] According to any one of the embodiments of the present application, the movable member includes a fixed frame, the fixed frame is mounted on the rotating bracket, and the fixed frame is connected to the humidifying component.
[0015] According to any one embodiment of the present application, the fixed frame is provided with a hook groove, the hook groove is connected to the humidifying component, and the hook groove is used to move the humidifying component.
[0016] According to any one embodiment of the present application, the reset member is one of a coil spring, a spring, or a torsion spring.
[0017] According to any one of the above embodiments of the present application, the interlocking component includes a fixed seat, the fixed seat is mounted in the mounting cavity, the first end of the reset member is connected to the fixed seat, the rotating bracket is connected to the fixed seat, the rotating bracket is rotatable relative to the fixed seat, and the reset member is located between the rotating bracket and the fixed seat.
[0018] According to any one embodiment of the present application, the humidification module includes at least two opposing interlocking components.
[0019] According to any one of the embodiments of the present application, the humidifying component includes a filter bracket and a humidifying filter, the humidifying filter is mounted on the filter bracket, and the filter bracket is connected to the movable member.
[0020] According to any one embodiment of the present application, if the movable member includes a connecting member, the filter bracket is provided with a guide rail groove, and the connecting member is configured to move along the guide rail groove.
[0021] According to any one embodiment of the present application, the connecting member is provided with a buckle that fits into the guide rail groove, the buckle engages with the guide rail groove, the guide rail groove includes sequentially connected engaging portions and sliding portions, the engaging portion is closer to the base than the sliding portion, and in the process of switching the water tank from the separated state to the mounted state, the buckle moves from the engaging portion to the sliding portion, and in the process of switching the water tank from the mounted state to the separated state, the buckle moves from the sliding portion to the engaging portion.
[0022] According to any one embodiment of the present application, the water tank is provided with a notch that fits the humidifying component, and in the process of switching the water tank from the separated state to the attached state, the end of the water tank comes into contact with the interlocking component.
[0023] According to any one of the embodiments of the present application, the notch has an arc-shaped structure, and in the mounted state, the notch is provided around the outer wall surface of the humidifying component.
[0024] According to any one embodiment of the present application, a support block is provided at the end of the water tank, and the support block comes into contact with the interlocking component during the process of switching the water tank from the separated state to the mounted state.
[0025] According to any one embodiment of the present application, the humidifying module includes a water tank, the water tank is located below the water tank, and in the process of switching the water tank from the detached state to the mounted state, the first end of the humidifying component moves in the third direction to be located in the water tank, and in the process of switching the water tank from the mounted state to the detached state, the first end of the humidifying component moves in the fourth direction to be moved away from the water tank.
[0026] According to any one of the above embodiments of the present application, the water tank is integrally formed with the water tank, or the water tank is removably connected to the water tank.
[0027] According to the humidifier according to the embodiment of the second aspect of the present application, the humidifier is provided with an air inlet and an air outlet, the humidifier includes a power module and the above-described humidification module, and the power module is mounted on the humidification module. The power module is used to suck external gas from the air inlet, pass it through the humidification component, and then flow out from the air outlet.
[0028] According to the humidifier according to the embodiment of the present application, since the above humidification module is included, it has all the technical effects of the above humidification module, and the description thereof will not be repeated here.
[0029] According to the humidifying and cleaning machine according to the embodiment of the third aspect of the present application, it includes the above-described humidification module.
[0030] According to the humidifying and cleaning machine according to the embodiment of the present application, since the above humidification module is included, it has all the technical effects of the above humidification module, and the description thereof will not be repeated here.
[0031] According to any one of the above embodiments of the present application, the humidifying and cleaning machine is provided with an air inlet and an air outlet, the humidifying and cleaning machine includes a power module and a purification module, at least a part of the purification module is provided around the humidification module, and the power module is used to make external gas flow through the air inlet, the purification module, the humidification module, and the air outlet in sequence.
[0032] According to any one embodiment of the present application, in the process of switching the water tank from the separated state to the attached state, the first end of the humidifying module gradually approaches the water tank, and the area of the purification module surrounding the humidifying module gradually decreases. In the process of switching the water tank from the attached state to the separated state, the first end of the humidifying module gradually moves away from the water tank, and the area of the purification module surrounding the humidifying module gradually increases.
[0033] According to any one embodiment of the present application, the power module, the purification module, and the humidification module are arranged in order from top to bottom along the axial direction.
[0034] According to any one of the embodiments of the present application, the power module, the purification module, and the humidification module are all detachably connected to each other, or The power module is fixedly connected to the purification module, and the humidification module is detachably connected to either the power module or the purification module.
[0035] Additional aspects and advantages of the present application are, in part, set forth in the following description, become apparent from the following description, or are understood through the implementation of the present application. [Brief explanation of the drawing]
[0036] Hereinafter, in order to more clearly explain the technical concepts in the embodiments of the present application or related technologies, the drawings that may be used to describe the embodiments or related technologies will be briefly described. Clearly, the drawings in the following description are some embodiments of the present application, and those skilled in the art can, without any creative work, obtain further drawings based on these. [Figure 1] This is a schematic diagram of the structure of a humidification module according to an embodiment of the present application. [Figure 2]This is a schematic diagram of the structure of a humidification module according to an embodiment of the present application, in which the water tank is removed from inside the mounting cavity. [Figure 3] This is a schematic diagram of the structure of a humidification module according to an embodiment of the present application, in which both the water tank and the water reservoir are taken out from within the mounting cavity. [Figure 4] This is a schematic diagram of the structure of the interlocking component of the humidification module according to the present invention. [Figure 5] This is a schematic diagram (1) of the structure of the interlocking component of the humidification module according to the embodiment of the present application. [Figure 6] This is a schematic diagram (part 2) of the structure of the interlocking component of the humidification module according to the embodiment of the present application. [Figure 7] This is a schematic diagram of the structure of the filter bracket of the humidification module according to the present invention. [Figure 8] This is a schematic diagram of the structure of the connecting member of the humidification module according to the present invention. [Figure 9] This is a schematic diagram of the structure of a humidifier and air purifier according to the present invention. [Figure 10] This is a schematic diagram (1) of the structure of a humidifier and air purifier according to an embodiment of the present invention. [Figure 11] This is a cross-sectional view of a humidifier and air purifier according to an embodiment of the present application. [Figure 12] This is a schematic diagram of the airflow direction of the humidifier / purifier according to the embodiment of the present invention. [Figure 13] This is a schematic diagram of the disassembled structure of a humidifier and air purifier according to an embodiment of the present invention, part 2. [Figure 14] This is a schematic diagram of the disassembled structure of a humidifier and air purifier according to an embodiment of the present invention, part 3. [Modes for carrying out the invention]
[0037] The embodiments of this application will be described in more detail below with reference to the drawings and embodiments. The following embodiments are for illustrative purposes only and are not intended to limit the scope of this application.
[0038] The part numbers themselves in the embodiments of this application, such as "1st," "2nd," (1), (2), (3), step 1, step 2, etc., are merely for distinguishing the objects being described and do not have any order or technical meaning. Unless otherwise specified, "plural" means two or more. The terms "included," "contains," "have," and "contain" as used in the embodiments of this application are all open terms, meaning that "contains" is not limited. The term "and / or" in the embodiments of this application describes the relationship between the objects in question and indicates that three types of relationships may exist, for example, A and / or B may refer to the three cases of A existing alone, A and B existing simultaneously, and B existing alone.
[0039] In the embodiments of this Application, terms such as “exemplary” or “for example” are used to indicate an example, illustration, or explanation. Any embodiment or design described as “exemplary” or “for example” in the embodiments of this Application should not be construed as preferable or superior to other embodiments or designs. More precisely, terms such as “exemplary” or “for example” are intended to illustrate the relevant concepts in a concrete manner. Unless otherwise defined, all technical and scientific terms used in the embodiments of this Application have the same meaning as that commonly understood by a person skilled in the art of this Application. In case of any disagreement, the meaning as described herein or derived from the content herein shall prevail.
[0040] In the description of the embodiments of this application, the directions or positional relationships indicated by terms such as "center," "vertical," "horizontal," "up," "down," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inside," and "outside" are based on the directions or positional relationships shown in the drawings and are intended to facilitate and simplify the description of the embodiments of this application. They are not intended to indicate or suggest that the indicated device or element has a specific orientation or must be configured and operated in a specific orientation, and should not be understood as limitations on the embodiments of this application. Furthermore, terms such as "first," "second," and "third" are merely for descriptive purposes and should not be understood as indicating or suggesting relative importance.
[0041] In the description of embodiments of this application, unless otherwise specifically defined and limited, terms such as “connected to one another” and “connected” should be understood in a broad sense, for example, they may be fixed connections, detachable connections, integral connections, mechanical connections, electrical connections, direct connections, or indirect connections via an intermediate medium. Those skilled in the art will be able to understand the specific meaning of the above terms in the embodiments of this application depending on the specific circumstances.
[0042] In embodiments of the present application, unless otherwise explicitly stated or limited, the positioning of the first feature "above" or "below" the second feature may be by direct contact between the first and second features, or by indirect contact via an intermediate medium. Furthermore, the positioning of the first feature "above," "above," and "upper side" of the second feature may be by the first feature being directly above or diagonally above the second feature, or it may simply mean that the horizontal height of the first feature is higher than that of the second feature. The positioning of the first feature "below," "below," and "below side" of the second feature may be by the first feature being directly below or diagonally below the second feature, or it may simply mean that the horizontal height of the first feature is lower than that of the second feature.
[0043] In this specification, any description referring to terms such as “one embodiment,” “several embodiments,” “example,” “specific example,” or “several examples” means that the specific features, structures, materials, or properties described with reference to such embodiment or example are included in at least one embodiment or example of the embodiments of this application. In this specification, exemplary expressions for the above terms do not necessarily correspond to the same embodiment or example. Furthermore, the specific features, structures, materials, or properties described may be combined in an appropriate manner in any one or more embodiments or examples. Also, a person skilled in the art may combine and link different embodiments or examples and features of different embodiments or examples described herein, provided that they do not conflict with each other.
[0044] The following describes the humidification module, humidifier, and humidifying air purifier related to this application with reference to Figures 1 to 14.
[0045] According to embodiments of the present invention, as shown in Figures 1, 2, 3 and 13, the humidification module includes a base 1, an interlocking component 2, a humidification component 3, and a water tank 4. The interlocking component 2 is mounted in a mounting cavity 11 within the base 1, the humidification component 3 is connected to the interlocking component 2, the first end of the humidification component 3 is located within the mounting cavity 11, and the water tank 4 is switchable between a detached state and a mounted state relative to the mounting cavity 11. In the process of switching the water tank 4 from the detached state to the mounted state, the water tank 4 moves in a first direction, and the first end of the humidification component 3 moves in a third direction relative to the mounting cavity 11 to be located within the water tank 4. In the process of switching the water tank 4 from the mounted state to the detached state, the water tank 4 moves in a second direction, and the interlocking component 2 moves the first end of the humidification component 3 in a fourth direction relative to the mounting cavity 11 to detach it from the water tank 4.
[0046] When in use, the water tank 4 is installed in the mounting cavity 11, and at this time, the water tank 4 comes into contact with the interlocking component 2, so that the interlocking component 2 no longer supports the humidifying component 3, and the humidifying component 3 moves in a third direction relative to the mounting cavity 11, positioning the first end of the humidifying component 3 inside the water tank 4. At this time, the humidifying component 3 can perform a certain positional limiting effect with respect to the water tank 4, and the humidifying component 3 comes into contact with the water in the water tank 4, and consequently the humidifying component 3 can humidify the air passing through it. When it is necessary to clean the water tank 4, an external force is applied to the water tank 4 to switch it from an attached state to a detached state. In the process of switching the water tank 4 from an attached state to a detached state, the water tank 4 gradually moves away from the mounting cavity 11. At this time, the water tank 4 no longer comes into contact with the interlocking component 2. As a result, the interlocking component 2 recovers from deformation and moves the humidifying component 3 in a fourth direction. As a result, the humidifying component 3 moves away from the water tank 4. At this time, the water tank 4 can freely enter and exit the mounting cavity 11 without being restricted by the humidifying component 3.
[0047] In the humidification module according to the embodiment of the present invention, by switching the water tank 4 from an installed state to a detached state, the water tank 4 is gradually pulled out from the installation cavity 11. In the process of the water tank 4 being removed from the installation cavity 11, the water tank 4 no longer presses against the interlocking component 2, allowing the interlocking component 2 to recover from deformation, and also moving the humidification component 3 in a fourth direction relative to the installation cavity 11. As a result, the humidification component 3 moves away from the water tank 4, and the water tank 4 is completely pulled out from the installation cavity 11 without being restricted in position by the humidification component 3. This enables automatic movement of the humidification component 3, allows for quick attachment and detachment of the water tank 4, facilitates cleaning of the water tank 4, and improves the convenience of cleaning the humidification module.
[0048] In the embodiments of the present application, the first direction is, for example, the direction of movement when the water tank 4 is mounted into the mounting cavity 11 from the outside along the horizontal direction. However, it should be understood that the first direction may be any other suitable direction, such as the vertical direction.
[0049] In embodiments of the present application, the second direction is, for example, the direction of movement when the water tank 4 is drawn out of the mounting cavity 11 along the horizontal direction. However, it should be understood that the second direction may be any other suitable direction, such as the vertical direction.
[0050] In the embodiments of this application, the third direction is, for example, vertically downward, and the fourth direction is, for example, vertically upward. However, it should be understood that the third and fourth directions may be any other suitable directions.
[0051] In one embodiment of the present invention, as shown in Figures 1, 2, and 14, the side wall surface of the base 1 is provided with an opening 12 that fits into a water tank 4, and the water tank 4 is movable through the opening 12 into the mounting cavity 11, thereby switching between a detached state and a mounted state. When in use, by moving the water tank 4 into the mounting cavity 11 through the opening 12, the water tank 4 is mounted into the mounting cavity 11 and enters the mounted state, and by pulling the water tank 4 out of the mounting cavity 11 through the opening 12, the water tank 4 enters the detached state. The opening 12 in the side wall surface of the base 1 allows for quicker switching of the state of the water tank 4, and the opening 12 in the side wall surface can better suit the user's habits and improve the user experience.
[0052] In the embodiment of the present invention, the upper surface of the base 1 is provided with a through hole communicating with a mounting cavity 11, and the humidifying component 3 fits into the through hole. When in use, the first end of the humidifying component 3 is mounted in the mounting cavity 11 through the through hole, and the humidifying component 3 is slidably connected to the through hole, thereby allowing the humidifying component 3 to move up and down along the through hole and to move relative to the mounting cavity 11.
[0053] In one embodiment of the present application, as shown in Figures 4, 5, 6 and 13, the interlocking component 2 includes a reset member 20 and a movable member 21, the first end of the reset member 20 being mounted in the mounting cavity 11, and the second end of the reset member 20 being connected to the movable member 21, and the humidifying component 3 being connected to the movable member 21, the movable member 21 including a connecting end and a free end, the connecting end being rotatably connected to the mounting cavity 11, and the free end being connected to the humidifying component 3 and the water tank 4 During the process of switching from a detached state to an attached state, the water tank 4 applies an external force to the movable member 21, causing it to rotate, deform the reset member 20, and move the humidifying component 3 closer to the water tank 4. During the process of switching the water tank 4 from an attached state to a detached state, the water tank 4 releases the external force applied to the movable member 21, causing the reset member 20 to return to its original shape and move the movable member 21 in the opposite direction, moving the humidifying component 3 away from the water tank 4. When in use, the humidifying component 3 and the reset member 20 are connected via the movable member 21. When the water tank 4 is switched from a detached state to an attached state, the water tank 4 moves in a first direction, thereby bringing the water tank 4 into contact with the movable member 21 and applying an external force to the water tank 4, causing the movable member 21 to rotate. As the movable member 21 rotates, it moves the reset member 20 and the humidifying component 3 with it, thereby moving the humidifying component 3 in a third direction and positioning itself inside the water tank 4. When the water tank 4 is switched from the attached state to the detached state, the water tank 4 moves in the second direction, thereby releasing contact between the water tank 4 and the movable member 21. At this time, the water tank 4 no longer applies external force to the movable member 21, the reset member 20 returns to its original shape and rotates the movable member 21 in the opposite direction, and the movable member 21 moves the humidifying component 3 in the fourth direction, thereby detaching the humidifying component 3 from the water tank 4, so that the movement of the water tank 4 is not hindered by the humidifying component 3.Furthermore, it is possible to connect the reset member 20 and the humidification component 3 via the movable member 21, thereby enabling the humidification component 3 to perform corresponding interlocking as the water tank 4 moves, and allowing the water tank 4 to quickly switch states.
[0054] In one embodiment of the present invention, as shown in Figures 4, 5, and 6, the movable member 21 includes a support plate 28. In the process of switching the water tank 4 from a detached state to a mounted state, the water tank 4 contacts the support plate 28 and compresses the reset member 20. In the process of switching the water tank 4 from a mounted state to a detached state, the reset member 20 moves the support plate 28 in the opposite direction. During use, the humidifying component 3 and the reset member 20 are connected via the support plate 28. When the water tank 4 is switched from a detached state to a mounted state, the water tank 4 contacts the support plate, causing the support plate 28 to move, thereby compressing the reset member 20 and moving the humidifying component 3 in a third direction, i.e., positioning the humidifying component 3 inside the water tank 4. When the water tank 4 is removed from the mounting cavity 11, contact between the water tank 4 and the support plate 28 is released, thereby allowing the reset member 20 to recover its deformation and move the support plate 28 in the reverse direction, enabling the support plate 28 to move the humidifying component 3 in a fourth direction, that is, moving the humidifying component 3 away from the water tank 4. As a result, the water tank 4 can be smoothly pulled out from the mounting cavity 11, making it easy to clean the water tank 4 or refill it with water.
[0055] In one embodiment of the present invention, as shown in Figures 4, 5, and 6, the movable member 21 includes a rotating bracket 26, which is rotatably mounted within the mounting cavity 11, a support plate 28 is fixed to the rotating bracket 26, and the second end of the reset member 20 is connected to the rotating bracket 26. During use, rotating the rotating bracket 26 rotates the second end of the reset member 20 as the rotating bracket 26 rotates, and further compresses the reset member 20. By attaching the support plate 28 to the rotating bracket 26, the support plate 28 is positioned on the movement path of the water tank 4 when the interlocking component 2 is mounted within the mounting cavity 11, and further, in the process of switching the water tank 4 from a detached state to a mounted state, the water tank 4 contacts the support plate 28, moves the support plate 28, and the support plate 28 rotates the entire interlocking component 2, thereby allowing the water tank 4 to rotate the interlocking component 2 more easily.
[0056] Specifically, the support plate 28 may extend toward the side away from the humidifying component 3, so that the contact point between the water tank 4 and the support plate 28 can be located between the humidifying component 3 and the inner wall surface of the mounting cavity 11, allowing the water tank 4 to move the support plate 28 without being affected by the humidifying component 3.
[0057] In the embodiment of the present invention, as shown in Figures 4, 5, and 6, a stop block 27 is provided on the rotating bracket 26, and the second end of the reset member 20 is fixedly connected to the stop block 27. By connecting the reset member 20 and the stop block 27 during use, the rotating bracket 26 and the reset member 20 can maintain synchronous rotation.
[0058] Specifically, the stop block 27 and the support plate 28 are provided on both sides of the rotating bracket 26, respectively. This allows the stop block 27 and the support plate 28 to maintain stable interlocking with the reset member 20 in between, enabling the rotating bracket 26 and the reset member 20 to maintain stable interlocking.
[0059] Furthermore, the stop block 27 is, for example, parallel to the support plate 28. However, it should be understood that the stop block 27 and the support plate 28 may be in any other suitable positional relationship.
[0060] Here, the size of the stop block 27 is smaller than, for example, the size of the support plate 28; that is, the width of the stop block 27 is smaller than the width of the support plate 28.
[0061] In one embodiment of the present application, as shown in Figures 4, 5, 6 and 13, the movable member 21 includes a fixed frame 23, which is mounted on a rotating bracket 26, the second end of a coil spring is connected to the fixed frame 23, and the humidifying component 3 is connected to the fixed frame 23. When in use, in the separated state, the coil spring and the fixed frame 23 exhibit a certain inclination, at which time the coil spring is in its initial state, i.e., no deformation has occurred. When the water tank 4 is switched to the mounted state, the water tank 4 is mounted in the mounting cavity 11, the water tank 4 rotates the fixed frame 23, the fixed frame 23 rotates the coil spring, compression is achieved on the coil spring, and at the same time the fixed frame 23 moves the humidifying component 3 in a third direction to position it inside the water tank 4. When the water tank 4 needs cleaning, it is gradually pulled out of the mounting cavity 11. In the process of switching the water tank 4 to a detached state, the water tank 4 no longer comes into contact with the fixing frame 23, the coil spring recovers its deformation and moves the fixing frame 23, the fixing frame 23 moves the humidifying component 3 upward, thereby moving the first end of the humidifying component 3 away from the water tank 4, and furthermore, the water tank 4 can be smoothly pulled out of the mounting cavity 11. This enables the water tank 4 to be quickly switched between mounted and detached states, making it easy to pull the water tank 4 out of the mounting cavity 11 for cleaning.
[0062] In one embodiment of the present invention, as shown in Figures 4, 5, 6, and 13, the fixed frame 23 is provided with a hook groove 25, which is connected to the humidifying component 3, and the hook groove 25 moves the connecting member and the humidifying component 3. When in use, by connecting the hook groove 25 in the fixed frame 23 to the humidifying component 3, the humidifying component 3 is moved along with the rotation of the hook groove 25 in the fixed frame 23, thereby achieving stable interlocking between the fixed frame 23 and the humidifying component 3. Furthermore, by rotating the fixed frame 23, control over the vertical movement of the humidifying component 3 can be achieved.
[0063] In the embodiment of the present invention, as shown in Figure 4, the rotating bracket 26 is engaged with the fixed frame 23. During use, the engagement between the rotating bracket 26 and the fixed frame 23 maintains the synchronization of rotation between the rotating bracket 26 and the fixed frame 23, thereby enabling the rotating bracket 26, the fixed frame 23, and the reset member 20 to maintain stable synchronous rotation.
[0064] In the embodiments of the present application, as shown in Figures 4, 5, 6, and 13, the reset member 20 includes, for example, a coil spring, the first end of which is mounted in the mounting cavity 11, and the other end of which is connected to the movable member 21. During use, the water tank 4 moves in a first direction, and the movable member 21 moves in contact with the water tank 4, causing the movable member 21 to rotate the coil spring, and together with this, the movable member 21 moves the humidifying component 3 in a third direction to position it inside the water tank 4. When the water tank 4 moves in a second direction, contact between the water tank 4 and the movable member 21 is released, and at this time the movable member 21 is no longer subjected to the force applied by the water tank 4, the coil spring recovers its deformation and moves the movable member 21, thereby causing the movable member 21 to move the humidifying component 3 in a fourth direction to detach it from the water tank 4, and further, control over the vertical movement of the humidifying component 3 can be achieved. However, it should be understood that the reset member 20 may be a spring, a torsion spring, or any other suitable elastic body.
[0065] Specifically, during the process of switching the water tank 4 from the installed state to the detached state, the coil spring and the fixing frame 23 gradually tilt downward along the direction of movement when the water tank 4 is removed from the installation cavity 11. In the detached state, the tilt angle of the coil spring and the fixing frame 23 is, for example, any angle between 10° and 90°.
[0066] Specifically, in the installed state, the coil spring and the fixing frame 23 are perpendicular to each other, for example, to the bottom of the mounting cavity 11. However, it should be understood that in the installed state, the coil spring and the fixing frame 23 may be inclined.
[0067] In one embodiment of the present application, as shown in Figures 4, 5, 6 and 13, the interlocking component 2 includes a fixed seat 22 which is mounted in a mounting cavity 11, the first end of the reset member 20 is connected to the fixed seat 22, and a rotating bracket 26 is connected to the fixed seat 22, the rotating bracket 26 is rotatable relative to the fixed seat 22, and the reset member 20 is positioned between the rotating bracket 26 and the fixed seat 22. When in use, the first end of the fixed seat 22 is fixedly mounted in the mounting cavity 11, the second end of the reset member 20 is connected to the fixed frame 23, and the coil spring is sandwiched between the fixed seat 22 and the rotating bracket 26 to prevent the coil spring from falling out. When the water tank 4 is switched to the installed state, the water tank 4 is installed in the installation cavity 11, and the water tank 4 causes the fixing frame 23 and the reset member 20 to rotate with the fixing seat 22 as the origin, and compression is achieved on the reset member 20. In the process of switching the water tank 4 to the separated state, when the water tank 4 no longer contacts the fixing frame 23, the reset member 20 recovers its deformation and moves the fixing frame 23 in the opposite direction.
[0068] Here, the fixed seat 22 is mounted, for example, on the upper end of the base 1, and is located between the inner wall surface of the base 1 and the humidifying component 3. When in use, mounting the fixed seat 22 on the upper end of the base 1 allows the coil spring and the fixed frame 23 to rotate around the fixed seat 22 as a pivot point, thereby improving the rotation radius of the coil spring and the fixed frame 23. However, it should be understood that the fixed seat 22 may be mounted in any other suitable position.
[0069] Specifically, a coil spring is mounted between the rotating bracket 26 and the fixed seat 22, and the stop block 27 of the rotating bracket 26 may be connected to the second end of the coil spring. By causing the rotating bracket 26 to rotate around the fixed seat 22 as a pivot point, the second end of the coil spring rotates when the rotating bracket 26 rotates, and compression of the coil spring can be achieved.
[0070] Specifically, the fixed frame 23 may be rotated to rotate the coil spring accordingly, and the stop block 27 and the rotating bracket 26 may be rotated when the coil spring rotates. Furthermore, the water tank 4 can rotate the rotating bracket 26 or the fixed frame 23, thereby enabling control over the vertical movement of the humidifying component 3, and thereby allowing the structure of the water tank 4 to make corresponding changes.
[0071] In the embodiment of the present invention, the humidification module includes at least two opposing interlocking components 2. When the water tank 4 is installed during use, the water tank 4 simultaneously contacts the two interlocking components 2, thereby causing the two interlocking components 2 to simultaneously move the humidification component 3 downward relative to the installation cavity 11. In the process of switching the water tank 4 to a detached state, the contact between the water tank 4 and the two interlocking components 2 is simultaneously released, causing the two interlocking components 2 to recover their deformation and move the humidification component 3 upward, thereby moving the humidification component 3 away from the water tank 4. Furthermore, by providing interlocking components 2 on each side of the humidification component 3, both sides of the humidification component 3 can move up and down simultaneously and stably, thus avoiding unsynchronized movement of both sides of the humidification component 3.
[0072] In one embodiment of the present application, as shown in Figures 2 and 3, the humidification component 3 includes a filter bracket 31 and a humidification filter 32, the humidification filter 32 being mounted on the filter bracket 31, and the filter bracket 31 being connected to a movable member 21. During use, the movable member 21 connects the filter bracket 31 to a fixed frame 23, and as the coil spring and the fixed frame 23 rotate, the filter bracket 31 moves along with them. In the separated state, the coil spring and fixing frame 23 are positioned within the mounting cavity 11 at a constant inclination, and the movable member 21 supports the filter bracket 31, causing the filter bracket 31 and humidifying filter 32 to move away from the water tank 4. In the process of switching the water tank 4 to the mounted state, the water tank 4 rotates the coil spring and fixing frame 23, causing the movable member 21 to rotate accordingly. After rotating, the movable member 21 no longer supports the filter bracket 31, and the filter bracket 31 and humidifying filter 32 move downward due to gravity, positioning the first end of the humidifying filter 32 inside the water tank 4.
[0073] In the embodiments of the present invention, as shown in Figures 3, 7, 8, and 13, when the movable member 21 includes a connecting member 24, the filter bracket 31 is provided with a guide rail groove 33, and the connecting member is configured to move along the guide rail groove. During use, the buckle 241 of the connecting member 24 engages with the guide rail groove 33, ensuring a stable connection between the connecting member 24 and the filter bracket 31. In the process of switching the water tank 4 from a detached state to an attached state, the water tank 4 rotates the coil spring and the fixing frame 23, causing the connecting member 24 to rotate accordingly, thereby moving the connecting member 24 from the lowest point of the guide rail groove 33 to the highest point of the guide rail groove 33. At this time, the connecting member 24 does not have the force to support the filter bracket 31 and the humidifying filter 32, and the filter bracket 31 and the humidifying filter 32 move downward into the water tank 4 due to gravity. During the process of switching the water tank 4 from the installed state to the detached state, the water tank 4 is gradually pulled out from within the installation cavity 11. When the contact between the water tank 4 and the interlocking component 2 is released, the compressed coil spring recovers its deformation and rotates the fixed frame 23, causing the connecting member 24 to rotate along with it. The connecting member 24 moves from the top point of the guide rail groove 33 to the bottom point of the guide rail groove 33, the filter bracket 31 moves upward, and the humidifying filter 32 also moves upward along with it. Both the filter bracket 31 and the humidifying filter 32 move away from the water tank 4, allowing the water tank 4 to be smoothly pulled out from the installation cavity 11 without being obstructed by the filter bracket 31 and the humidifying filter 32. Furthermore, it becomes easier to pull out the water tank 4 for cleaning, making the operation convenient and quick.
[0074] In the embodiment of the present application, as shown in Figures 3, 7, 8, and 13, the connecting member 24 is provided with a buckle 241 that fits into the guide rail groove 33, the buckle 241 engages with the guide rail groove 33, the guide rail groove 33 includes sequentially connected engaging portions 34 and sliding portions, the engaging portion 34 is closer to the base 1 than the sliding portion, and in the process of switching the water tank 4 from a detached state to a mounted state, the buckle 241 moves from the engaging portion 34 to the sliding portion, and in the process of switching the water tank 4 from a mounted state to a detached state, the buckle 241 moves from the sliding portion to the engaging portion 34. When in use, in the detached state, the buckle 241 engages with the engagement portion 34, thereby positioning the connecting member 24 on the engagement portion 34. At this time, the connecting member 24 supports the filter bracket 31, causing the entire humidifying component 3 to move away from the water tank 4. In the attached state, the buckle is positioned at the end of the sliding portion furthest from the engagement portion 34, and at this time, the first end of the humidifying component 3 is located inside the water tank 4. During the process of switching the water tank 4 from the detached state to the attached state, the buckle 241 moves from the engagement portion 34 to the sliding portion and along the sliding portion to the end of the sliding portion furthest from the engagement portion 34. When the buckle 241 moves to the sliding portion, the connecting member 24 no longer supports the filter bracket 31, and at this time, the humidifying component 3 moves to the water tank 4, positioning the first end of the humidifying component 3 inside the water tank 4. During the process of switching the water tank 4 from the attached state to the detached state, the buckle 241 slides along the sliding portion to the engaging portion 34 and engages with the engaging portion 34, and at the same time moves the filter bracket 31 away from the water tank 4, causing the humidifying component 3 to move away from the water tank 4, and at this time the connecting member 24 can play a role in supporting the filter bracket 31, thereby stably maintaining the state in which the humidifying component 3 is away from the water tank 4.
[0075] Specifically, the engaging portion 34 is provided horizontally on the filter bracket 31, for example, so that it can engage with and restrict the position of the buckle 241. However, it should be understood that the engaging portion 34 may also be provided at an angle to the filter bracket 31.
[0076] Specifically, the sliding part is, for example, an arc-shaped structure. However, it should be understood that the sliding part may have any other suitable shape.
[0077] In one embodiment of the present invention, as shown in Figure 13, the water tank 4 is provided with a notch 43 that fits the humidifying component 3, where, in the process of switching the water tank 4 from a detached state to a mounted state, the end of the water tank 4 abuts against the interlocking component 2. When the water tank 4 is mounted in the mounting cavity 11 during use, the water tank 4 and the humidifying component 3 move relative to each other, and the humidifying component 3 is positioned in the notch 43. When the water tank 4 is pulled out from the mounting cavity 11, the humidifying component 3 and the notch 43 of the water tank 4 move relative to each other. That is, because the notch 43 is provided, the water tank 4 is not obstructed by the humidifying component 3 when it enters or leaves the mounting cavity 11, and the water tank 4 can enter or leave the mounting cavity 11 quickly. Furthermore, the water tank 4 can be quickly switched between a mounted state and a detached state.
[0078] Specifically, the notch 43 is, for example, an arc-shaped structure, and in the installed state, the notch 43 is positioned around the outer wall surface of the humidifying component 3. During use, the arc-shaped notch 43 fits the humidifying component 3, and in the process of switching the water tank 4 from a detached state to an installed state, the arc-shaped notch 43 in the water tank 4 gradually moves toward the humidifying component 3, thereby causing the arc-shaped notch 43 to be in close contact with the outer wall surface of the humidifying component 3. In the process of switching the water tank 4 from an installed state to a detached state, the arc-shaped notch 43 in the water tank 4 gradually moves away from the humidifying component 3, thereby releasing contact between the notch 43 and the humidifying component 3. Furthermore, when the water tank 4 is in a different state, the water tank 4 occupies only the space between the humidifying component 3 and the installation cavity 11, and the water tank 4 can be in better harmony with the humidifying component 3. However, it should be understood that the notch 43 may be any other suitable shape.
[0079] Here, as shown in Figure 13, a support block 44 is provided at the end of the water tank 4, and during the process of switching the water tank 4 from a detached state to a mounted state, the support block 44 comes into contact with the interlocking component 2. When the water tank 4 is mounted in the mounting cavity 11 during use, the support block 44 comes into contact with the fixed frame 23 or the rotating bracket 26, and the support block 44 rotates the fixed frame 23 or the rotating bracket 26, thereby causing the coil spring and connecting member 24 to rotate as well, moving the humidifying component 3 downward and positioning the first end of the humidifying component 3 in the water tank 42. When the water tank 4 is removed from the mounting cavity 11, the support block 44 no longer comes into contact with the fixed frame 23 or the rotating bracket 26, thereby causing the coil spring to recover its deformation and, together with it, rotate the fixed frame 23, and the connecting member 24 moves the humidifying component 3 upward.
[0080] In one embodiment of the present invention, the humidifying module includes a water tank 42 located below the water tank 4, where, in the process of switching the water tank 4 from a detached state to a mounted state, the first end of the humidifying component 3 moves in a third direction to be located in the water tank 42, and in the process of switching the water tank 4 from a mounted state to a detached state, the first end of the humidifying component 3 moves in a fourth direction to be located away from the water tank 42. During use, in the process of switching the water tank 4 from a detached state to a mounted state, the water tank 4 is mounted in a mounting cavity 11 and located above the water tank 42, thereby causing the water in the water tank 4 to flow into the water tank 42, the water tank 4 moving the interlocking component 2, thereby causing the interlocking component 2 to move the humidifying component 3 in a third direction, positioning the first end of the humidifying component 3 in the water tank 42, and further, the humidifying component 3 can absorb the water in the water tank 42 to humidify the gas. When it is necessary to replenish the water tank 4, the water tank 4 is switched from an installed state to a detached state, and the water tank 4 is removed from the installation cavity. At the same time, the interlocking component 2 moves the humidifying component 3 in a fourth direction away from the water tank 42, thereby preventing the humidifying component 3 from being immersed in the water tank 42. Furthermore, it prevents bacteria from multiplying due to prolonged immersion of the humidifying component 3 in the water tank 42, thus preventing unnecessary loss of the humidifying component 3.
[0081] In the embodiment of the present invention, the water tank 42 and the water tank 4 are, for example, integrally molded. When the water tank 4 is pulled out from the mounting cavity 11 during use, the water tank 42 can be pulled out together, and further operations such as cleaning of the water tank 42 can be performed.
[0082] In the embodiments of the present invention, the water tank 42 and the water tank 4 are connected, for example, in a detachable manner. During use, the user can choose to connect or separate the water tank 42 and the water tank 4 according to their actual needs, and the water tank 42 and the water tank 4 may be used as a single unit, or the water tank 42 and the water tank 4 may be used as two separate components.
[0083] According to a humidifier according to a second aspect embodiment of the present application, as shown in Figures 9, 10, 11, 12, 13, and 14, the humidifier is provided with an air intake and an air outlet. The humidifier includes a power module 5 and the humidification module. The power module 5 is mounted on the humidification module and is used to draw in external gas from the air intake, pass it through the humidification component 3, and then discharge it from the air outlet. When in use, the power module starts operating, drawing external gas into the humidifier from the air intake. The gas then passes through the humidification component 3 and discharges from the air outlet. At this time, the gas discharged from the air outlet is humidified by the humidification component 3, and thus the humidifier has a humidification function.
[0084] The air intake and outlet may be provided on the power module 5 or on the humidification module. Alternatively, one of the air intake and outlet may be provided on the power module 5, and the other on the humidification module.
[0085] According to the humidifying air purifier according to the third aspect embodiment of the present application, as shown in Figures 9, 10, 11, 12, 13 and 14, the humidifying module is included, thereby the humidifying air purifier has all the technical effects of the humidifying module.
[0086] Specifically, the humidifier and air purifier is equipped with an air intake and an air outlet. The humidifier and air purifier includes a power module 5 and a purification module 6. At least a portion of the purification module 6 is installed around the humidifier module. The power module 5 is used to ensure that the external gas flows sequentially through the air intake, the purification module 6, the humidifier module, and the air outlet. When in use, the power module 5 starts operating, causing the external gas to flow from the air intake to the purification module 6. Since a portion of the purification module 6 is installed around the humidifier module, the gas is purified by the purification module 6 before passing through the humidifier module, where the humidity of the gas is increased. The gas then flows out through the air outlet, where further purification and humidification of the gas are achieved.
[0087] In one embodiment of the present invention, during the process of switching the water tank 4 from a detached state to a mounted state, the first end of the humidifying module gradually approaches the water tank 4, and the area of the purification module 6 surrounding the humidifying module gradually decreases. During the process of switching the water tank 4 from a mounted state to a detached state, the first end of the humidifying module gradually moves away from the water tank 4, and the area of the purification module 6 surrounding the humidifying module gradually increases. During use, during the process of switching the water tank 4 from a detached state to a mounted state, the first end of the humidifying component 3 moves in a third direction relative to the mounting cavity 11, gradually approaching the water tank 4. As the first end of the humidifying component 3 gradually approaches the water tank 4, the first end of the humidifying component 3 gradually moves away from the purification module 6, gradually decreasing the area of the purification module 6 surrounding the humidifying module. During the process of switching the water tank 4 from an installed state to a detached state, the first end of the humidifying component moves in a fourth direction relative to the installation cavity 11, gradually moving away from the water tank 4, and the first end of the humidifying component 3 gradually moves closer to the purification module 6, further increasing the area of the purification module 6 that surrounds the humidifying module.
[0088] In one embodiment of the present invention, the power module 5, the purification module 6, and the humidification module are arranged, for example, from top to bottom along the axial direction. However, it should be understood that the connection order between the power module 5, the purification module 6, and the humidification module is adjustable.
[0089] In one embodiment of the present invention, the power module 5, the purification module 6, and the humidification module are all detachably connected to one another. During use, the power module 5, the purification module 6, and the humidification module are detachably connected to each other, allowing any one of them to be individually replaced or removed. Furthermore, it becomes easier to replace any one of the power module 5, the purification module 6, or the humidification module, and especially when the purification module 6 or humidification module being used is a consumable item, it can be replaced quickly.
[0090] In one embodiment of the present invention, the power module 5 is fixedly connected to the purification module 6, and the humidification modules are detachably connected to either the power module 5 or the purification module 6. When in use, the power module 5 and the purification module 6 are fixedly mounted to form a single component, and the humidification modules may be detachably connected to either the power module 5 or the purification module 6, thereby facilitating the attachment and detachment of the humidification modules and facilitating their replacement or cleaning.
[0091] In the embodiment of the present invention, the power module 5 is composed of, for example, a motor and a fan wheel, and the motor rotates the fan wheel, which in turn causes the gas to flow.
[0092] In the embodiments of the present application, the purification module 6 includes, for example, a purification filter.
[0093] In embodiments of the present invention, the power module 5 is integrally molded or fixedly connected to the purification module 6, for example, and the humidification module is detachably connected to the purification module 6, thereby making the power module 5 and the purification module 6 a single whole component and facilitating the simultaneous removal of the power module 5 and the purification module 6 from the humidification module.
[0094] Finally, it should be noted that the embodiments described above are merely illustrative and not limiting. Although the present application has been described in detail with reference to embodiments, those skilled in the art will know that any combination, modification, or equivalent substitution of the present invention will not deviate from the spirit and scope of the present invention and will all fall within the scope of the claims. [Explanation of Symbols]
[0095] 1: Bass 2: Interlocking Components 3: Humidification component 4: Water tank 5: Power Module 6: Purification Module 11: Installation cavity 12:Aperture 20: Reset component 21: Movable member 22:Fixed seat 23: Fixed slot 24: Connecting member 25: Hook groove 26: Rotating bracket 27: Stop Block 28: Support plate 31: Filter Bracket 32: Humidifying filter 33: Guide rail groove 34: Engaging part 42: Aquarium 43: Notch 44: Support Block 241: Buckle
Claims
1. Bass and, The interlocking component is mounted in the mounting cavity within the base, A humidifying component connected to the interlocking component, wherein the first end of the humidifying component is located within the mounting cavity, A water tank that can be switched between a detached state and a mounted state relative to the mounting cavity, wherein, in the process of switching the water tank from the detached state to the mounted state, the water tank moves in a first direction, and the first end of the humidifying component moves in a third direction relative to the mounting cavity to be positioned inside the water tank, and in the process of switching the water tank from the mounted state to the detached state, the water tank moves in a second direction, and the interlocking component moves the first end of the humidifying component in a fourth direction relative to the mounting cavity to detach it from the water tank, The interlocking component includes a reset member and a movable member, the first end of the reset member being mounted in the mounting cavity, the second end of the reset member being connected to the movable member, the humidifying component being connected to the movable member, the movable member including a connecting end and a free end, the connecting end being rotatably connected to the mounting cavity, and the free end being connected to the humidifying component, and in the process of switching the water tank from the separated state to the mounted state, the water tank applies an external force to the movable member, causing the movable member to rotate, deform the reset member, and move the humidifying component closer to the water tank, and in the process of switching the water tank from the mounted state to the separated state, the water tank releases the external force applied to the movable member, the reset member returns to its original shape, causing the movable member to move in the reverse direction, and moving the humidifying component away from the water tank. Humidification module.
2. The movable member includes a support plate, and in the process of switching the water tank from the detached state to the mounted state, the water tank contacts the support plate and compresses the reset member, and in the process of switching the water tank from the mounted state to the detached state, the reset member moves the support plate in the opposite direction. The humidifying module according to claim 1.
3. The movable member includes a rotating bracket, the rotating bracket is rotatably mounted within the mounting cavity, the support plate is fixed to the rotating bracket, and the second end of the reset member is connected to the rotating bracket. The humidifying module according to claim 2.
4. The rotating bracket is provided with a stop block, and the second end of the reset member is fixedly connected to the stop block. The humidifying module according to claim 3.
5. The movable member includes a fixed frame, which is mounted on the rotating bracket, and which is connected to the humidifying component. The humidifying module according to claim 3 or 4.
6. The fixed frame is provided with a hook groove, which is connected to the humidifying component, and the hook groove is used to move the humidifying component. The humidifying module according to claim 5.
7. The reset member is one of the following: a coil spring, a spring, or a torsion spring. A humidifying module according to any one of claims 1 to 4.
8. The interlocking component includes a fixed seat, which is mounted within the mounting cavity, the first end of the reset member is connected to the fixed seat, the rotating bracket is connected to the fixed seat, the rotating bracket is rotatable relative to the fixed seat, and the reset member is positioned between the rotating bracket and the fixed seat. The humidifying module according to claim 3 or 4.
9. The humidification module includes at least two opposing interlocking components. A humidifying module according to any one of claims 1 to 4.
10. The humidification component includes a filter bracket and a humidification filter, the humidification filter being mounted on the filter bracket, and the filter bracket being connected to the movable member. A humidifying module according to any one of claims 1 to 4.
11. If the movable member includes a connecting member, the filter bracket is provided with a guide rail groove, and the connecting member is configured to move along the guide rail groove. The humidification module according to claim 10.
12. The connecting member is provided with a buckle that fits into the guide rail groove, the buckle engages with the guide rail groove, the guide rail groove includes sequentially connected engaging portions and sliding portions, the engaging portion is closer to the base than the sliding portion, and in the process of switching the water tank from the detached state to the mounted state, the buckle moves from the engaging portion to the sliding portion, and in the process of switching the water tank from the mounted state to the detached state, the buckle moves from the sliding portion to the engaging portion. The humidification module according to claim 11.
13. The water tank is provided with a notch that fits the humidifying component, and in the process of switching the water tank from the separated state to the attached state, the end of the water tank comes into contact with the interlocking component. The notch has an arc-shaped structure, and in the installed state, the notch is provided around the outer wall surface of the humidifying component. A support block is provided at the end of the water tank, and in the process of switching the water tank from the separated state to the mounted state, the support block comes into contact with the interlocking component. A humidifying module according to any one of claims 1 to 4.
14. The humidifying module includes a water tank, the water tank is located below the water tank, and in the process of switching the water tank from the detached state to the mounted state, the first end of the humidifying component moves in the third direction to be located in the water tank, and in the process of switching the water tank from the mounted state to the detached state, the first end of the humidifying component moves in the fourth direction to be moved away from the water tank. The water tank is integrally molded with the water tank, or The water tank is detachably connected to the water tank. A humidifying module according to any one of claims 1 to 4.
15. A humidifier, wherein the humidifier is provided with an air intake and an air outlet, and the humidifier includes a power module and a humidifying module according to any one of claims 1 to 4, the power module is mounted on the humidifying module, and the power module is used to draw in external gas from the air intake, pass it through the humidifying component, and then discharge it from the air outlet.
16. Includes a humidification module according to any one of claims 1 to 4, The humidifier and air purifier is provided with an air intake and an air outlet, and the humidifier and air purifier includes a power module and a purification module, the purification module being at least partially mounted around the humidifier module, and the power module is used to cause external gas to flow sequentially through the air intake, the purification module, the humidifier module, and the air outlet. During the process of switching the water tank from the separated state to the attached state, the first end of the humidifying module gradually approaches the water tank, and the area of the purification module surrounding the humidifying module gradually decreases. During the process of switching the water tank from the attached state to the separated state, the first end of the humidifying module gradually moves away from the water tank, and the area of the purification module surrounding the humidifying module gradually increases. The power module, the purification module, and the humidification module are arranged in order from top to bottom along the axial direction. The power module, the purification module, and the humidification module are all detachably connected to each other, or The power module is fixedly connected to the purification module, and the humidification module is detachably connected to either the power module or the purification module. Humidifying air purifier.
Citation Information
Patent Citations
Humidifier
CN110793141A
Humidifier
JP2021120606A
Air conditioning equipment
US20160146502A1