Humidification assembly and humidification equipment
By designing the baffle and cover components of the humidification unit, a structural error-proof function was achieved, solving the problem of user misoperation, ensuring the normal operation of the humidifier, and improving reliability and ease of use.
Patent Information
- Application Number
- CN202423105927.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Users are prone to misoperation when using water-filled humidifiers, such as pouring water into the mist guide tube, which causes the humidifier to fail to produce mist or reduce the humidification output. The existing silkscreened warning method has limited effectiveness.
Design a humidification component including a housing, a baffle assembly, and a cover assembly. The baffle assembly is connected to the mist guide tube via a base. The baffle is movable to open or close the mist guide channel. When the cover assembly is connected to the housing, the baffle automatically closes to prevent accidental operation. The design of the base and the pivot simplifies installation and improves reliability and ease of use.
It effectively prevents user misoperation, ensures the humidifier works normally, improves the reliability of humidification components and user experience, simplifies the installation process, and reduces the difficulty of operation.
Smart Images

Figure CN223525266U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of household appliances, and particularly relates to a humidifying assembly and a humidifying device. BACKGROUND
[0002] At present, in the related art, if the user does not pay full attention when using the water adding humidifier, it is easy to add water to the inside of the water tank along the mist guide pipe, and the above misoperation will cause the humidifier to be unable to normally mist or the humidification amount to be significantly reduced, thereby affecting the normal use effect of the humidifier and the user experience.
[0003] In view of the above problems, most of the humidifier products on the market currently adopt a solution of prompting on the product by silk printing to guide the user to correctly operate and avoid misadding water to the mist guide pipe. However, this solution has limited effect in actual application and cannot effectively prevent the misoperation of the user. SUMMARY
[0004] The utility model aims at solving at least one of the technical problems existing in the prior art or related art.
[0005] To this end, the first aspect of the utility model provides a humidifying assembly.
[0006] The second aspect of the utility model provides a humidifying device.
[0007] Therefore, the first aspect of the utility model provides a humidifying assembly, which comprises a box body, a baffle assembly and a cover assembly. The box body comprises a main body and a mist guide pipe. The main body has a liquid storage cavity, and the mist guide pipe is connected to the main body. The cover assembly is detachably connected to the main body and can open or close the liquid storage cavity. The cover assembly comprises an abutting portion. The baffle assembly comprises a baffle and a seat body. The seat body is arranged on the side of the mist guide pipe close to the cover assembly. The seat body is provided with a mist guide channel. The mist guide channel is in communication with the mist guide pipe. The baffle is arranged in the mist guide channel. The baffle can open or close the mist guide channel. When the cover assembly is connected to the main body, the abutting portion is in contact with the baffle. The baffle is in a first position, and the mist guide channel is open. When the cover assembly is separated from the main body, the abutting portion is separated from the baffle. The baffle is in a second position, and the mist guide channel is closed.
[0008] The humidifying assembly comprises a box body, a baffle assembly and a cover assembly. The box body comprises a main body and a mist guide pipe. The main body has a liquid storage cavity for storing liquid. Specifically, the liquid storage cavity can store liquid for humidification, such as water. The main body is provided with the liquid storage cavity, so that the humidifying assembly can have a liquid source. The liquid storage cavity has sufficient liquid storage capacity to meet the long-term humidification requirement.
[0009] The mist guide pipe is connected to the main body and is used for transmitting mist generated during humidification. The mist guide pipe is a channel for transmitting mist.
[0010] The cover assembly is detachably connected to the main body, allowing the liquid storage chamber to be opened or closed, facilitating water addition or other maintenance operations for users.
[0011] The baffle assembly includes a baffle and a base. The base is located on the side of the mist guide tube near the cover assembly and has a mist guide channel that communicates with the mist guide tube. The baffle is positioned within the mist guide channel and can open or close the channel. The baffle is a movable component, and its position determines the open or closed state of the mist guide channel. When the baffle is in the open position, mist can freely pass through the mist guide tube and the mist guide channel; when the baffle is in the closed position, the mist guide channel is completely sealed, preventing liquid or other impurities from entering.
[0012] The cover assembly includes a contact part. When the cover assembly is connected to the main body, the contact part contacts a baffle. In the first position, the baffle is in the open mist guiding channel. When the cover assembly is separated from the main body, the contact part separates from the baffle, and the baffle is in the second position, closing the mist guiding channel. When the humidification unit is operating, when the cover assembly is connected to the main body, the contact part contacts the baffle and pushes the baffle to the first position. At this time, the mist guiding channel is open, and the humidifier can operate normally, with mist being transmitted to the outside through the mist guiding tube and the mist guiding channel. When the cover assembly is separated from the main body, the contact part separates from the baffle, and the baffle moves to the second position, closing the mist guiding channel. This prevents liquid from entering the liquid storage chamber even if the user accidentally pours liquid into the mist guiding tube, avoiding problems such as the humidifier not producing mist or having reduced humidification output.
[0013] This invention achieves structural error prevention through the design of a baffle assembly and a cover assembly. When the user opens the water tank cover, the baffle automatically closes the mist guiding channel to prevent accidental operation; when the user closes the water tank cover, the baffle automatically opens, keeping the mist guiding channel unobstructed. Compared to existing screen-printed prompts, the humidifier component proposed in this invention solves the problem of user misoperation more directly and effectively through structural error prevention, eliminating the need for users to carefully read the prompts.
[0014] This invention, through the design of the baffle assembly, also improves the reliability and ease of use of the entire humidification assembly. Specifically, during installation, the baffle can be first assembled with the base, and the baffle is placed within the mist guiding channel of the base. After the baffle is installed, the entire baffle assembly is then assembled onto the mist guiding tube. Compared to the installation method of installing the baffle onto the mist guiding tube, this invention allows the baffle to be installed outside the mist guiding tube via the base, and allows the use of components larger than the baffle to align with the mist guiding tube, reducing operational difficulty, simplifying installation steps, and improving installation accuracy and stability.
[0015] In use, the baffle and the abutting portion frequently contact, and there is a risk of falling off. If the baffle accidentally falls off during use, the design of the seat body facilitates reinstallation of the baffle. The baffle can be arranged again by disassembling the seat body and reinstalling the baffle to the seat body. Compared with the mode of directly installing the smaller baffle in the narrower mist guide pipe, the baffle can be more conveniently and easily installed. In summary, the installation of the baffle is more convenient, the baffle assembly is more easily arranged, and the usability of the humidifying assembly is stronger.
[0016] The design of the seat body can also improve the stability and reliability of the baffle, provide necessary support and fixation for the baffle, and make the humidifying assembly more reliable.
[0017] In summary, the humidifying assembly provided by the utility model realizes the structure error prevention function through structural design, effectively solves the problem of user misoperation of the water feeding type humidifier, and improves the reliability and user experience in use. Through the design of the seat body in the baffle assembly, the baffle is conveniently installed and replaced, and the reliability and stability of the baffle in use are improved.
[0018] In addition, the humidifying assembly in the above technical solution provided by the utility model can also have the following additional technical features:
[0019] In some technical solutions of the utility model, the baffle assembly further comprises: a rotating shaft connected with the seat body; one end of the baffle is sleeved on the rotating shaft, and the other end of the baffle is a free end; and the baffle can rotate relative to the seat body to open or close the mist guide channel.
[0020] In the technical solution, the baffle assembly further comprises a rotating shaft connected with the seat body. The rotating shaft is a support component for the rotation of the baffle. One end of the rotating shaft is fixedly connected with the seat body, and the other end supports the rotation of the baffle.
[0021] One end of the baffle is fixedly connected with the seat body, and the other end of the baffle is a free end. When it is necessary to change the position of the baffle, the abutting portion exerts a force on the free end of the baffle to make it rotate relative to the seat body. The rotating shaft plays a supporting and guiding role, ensuring the stability and accuracy of the baffle during rotation. With the rotation of the baffle, the opening or closing of the mist guide channel is realized. Through the introduction of the rotating shaft, the baffle assembly can realize more flexible and accurate rotation control.
[0022] In some technical solutions of the utility model, the abutting portion protrudes from the lower surface of the cover assembly, and the abutting portion comprises a protruding portion extending toward the rotating shaft. During installation of the cover assembly on the body, the position at which the baffle contacts the protruding portion slides from the end of the baffle away from the rotating shaft to the end of the baffle close to the rotating shaft.
[0023] In the technical scheme, the abutting portion protrudes from the lower surface of the cover assembly, facilitating the abutting portion to contact the baffle, thereby realizing control of the closing and conducting of the mist guide pipe.
[0024] The abutting portion comprises a protruding portion extending towards the rotating shaft, and the abutting portion is specifically matched with the baffle through the protruding portion, thereby reducing the design difficulty and saving the design cost without designing the overall shape of the abutting portion.
[0025] During installation of the cover assembly on the body, the baffle is gradually rotated during contact with the protruding portion, and the position of the baffle contacting the protruding portion slides from the end of the baffle away from the rotating shaft to the end of the baffle close to the rotating shaft. The baffle provides a contact surface for contacting the protruding portion, so that the baffle can be rotated by the force applied by the protruding portion, so that the baffle is driven into place and is in the first position to close the mist guide passage.
[0026] Through the design of sliding from one end to the other end, the protruding portion can also be reversely guided to smoothly move to the position matched with the baffle during installation of the cover assembly to close the mist guide pipe, so that the baffle is firmly in the first position, thereby ensuring the closing effect of the mist guide passage. In this way, even if the user accidentally pours liquid into the mist guide pipe, the liquid will not enter the liquid storage cavity, avoiding the problem of no mist or small humidification amount of the humidifier.
[0027] In some technical schemes of the utility model, optionally, the baffle comprises a positioning surface and a guide surface, the positioning surface is from one side of the baffle sleeved on the rotating shaft to the side close to the guide surface, and extends obliquely relative to the extension direction of the mist guide pipe; during installation of the cover assembly on the body, the protruding portion slides from the guide surface towards the positioning surface; and when the baffle is in the first position, the protruding portion abuts against the positioning surface.
[0028] In the technical scheme, the utility model limits the baffle to comprise a positioning surface and a guide surface, the positioning surface is one surface on the baffle, the positioning surface is from one side of the baffle sleeved on the rotating shaft to the side close to the guide surface, and extends obliquely relative to the extension direction of the mist guide pipe. Through the above oblique design, it can be ensured that the baffle can be matched with the protruding portion, and the protruding portion is firmly clamped with the baffle.
[0029] The guide surface is another surface on the baffle, and the guide surface is located on one side of the positioning surface and is used for guiding the sliding of the protruding portion during movement.
[0030] During installation of the cover assembly, the protruding portion slides from the guide surface towards the positioning surface, and when the baffle is in the first position, the protruding portion abuts against the positioning surface. In the utility model, the protruding portion first contacts the guide surface of the baffle, and as the cover assembly is further installed, the protruding portion slides along the guide surface towards the positioning surface. This guide design not only enables the cover assembly to be stably installed, but also enables the baffle to be correctly rotated to the first position when being driven, and also ensures that the protruding portion can smoothly transition when reaching the positioning surface.
[0031] When the baffle is in the first position, the baffle closes the mist guide channel, the convex part abuts against the positioning surface, and the baffle is stably in the first position to close the mist guide channel.
[0032] In some technical solutions of the utility model, optionally, the baffle assembly further comprises a fixed plate and a torsion spring, the fixed plate is connected with the rotating shaft and located at one end of the rotating shaft, and the torsion spring is sleeved on the rotating shaft, one end of the torsion spring abuts against the fixed plate, and the other end abuts against the baffle; wherein when the baffle is in the first position, the torsion spring is in a compressed state.
[0033] In the technical solution, the baffle assembly further comprises a fixed plate and a torsion spring, the fixed plate is connected with the rotating shaft and located at one end of the rotating shaft, and the fixed plate is a relatively stationary component, providing stable support for the rotating shaft and the baffle.
[0034] The torsion spring is sleeved on the rotating shaft, one end of the torsion spring abuts against the fixed plate, and the displacement and deformation of the torsion spring are limited through the fixed plate. When the baffle is in the first position, the torsion spring is in a compressed state and stores elastic potential energy. When the abutting part is separated from the baffle, the torsion spring releases the elastic potential energy and pushes the baffle to rotate around the rotating shaft to the second position. When the cover assembly is connected with the body, the abutting part contacts the baffle and pushes the baffle to rotate to the first position against the elastic force of the torsion spring, and when the abutting part moves away, the torsion spring restores the force of deformation and pushes the baffle to rotate to the closed state.
[0035] In summary, the utility model designs a baffle assembly that utilizes the elastic force of a torsion spring to control the rotation of a baffle. When the cover assembly is opened, the torsion spring pushes the baffle to rotate to the closed state, preventing liquid or gas from passing through the mist guide channel. When the cover assembly is closed, the abutting part pushes the baffle to rotate to the open state against the elastic force of the torsion spring, allowing mist to pass through the mist guide channel and be output.
[0036] In some technical solutions of the utility model, optionally, the baffle can slide along the extension direction of the mist guide channel to open or close the mist guide channel.
[0037] In the technical solution, the baffle can also be controlled to open and close the mist guide channel through sliding. The baffle can slide along the extension direction of the mist guide channel to open or close the mist guide channel. When the cover assembly is connected with the body, the abutting part contacts the baffle and pushes the baffle to slide to the first position, at which point the mist guide channel is in the open state and the humidifier can work normally, with mist being transmitted to the outside through the mist guide channel. When the cover assembly is separated from the body, the abutting part is separated from the baffle, and the baffle moves to the second position to close the mist guide channel. In this way, even if the user accidentally pours liquid into the mist guide channel, the liquid will not enter the liquid storage cavity, avoiding the problem of the humidifier not producing mist or the humidification amount being small.
[0038] Optionally, the baffle assembly further comprises a support plate and an elastic member. The support plate is connected with the seat body; one end of the elastic member is connected with the support plate, and the other end is connected with the baffle; when the baffle is in the first position, there is a gap between the baffle and the inner wall of the seat body, the mist guide pipe is in communication, and the elastic member is in a compressed state; when the baffle is in the second position, the baffle is in contact with the inner wall of the seat body, and the mist guide channel is closed.
[0039] In the technical scheme, the baffle assembly further comprises a support plate and an elastic member. The support plate and the elastic member cooperate to realize position control of the baffle.
[0040] The support plate is connected with the seat body, so that support of the elastic member is realized through the seat body. One end of the elastic member is connected with the support plate, and the other end is connected with the baffle. Displacement and deformation of the elastic member are limited through the support plate.
[0041] When the baffle is in the first position, there is a gap between the baffle and the inner wall of the seat body, the mist guide pipe is in communication, and the elastic member is in a compressed state, storing elastic potential energy. When the abutting portion is separated, the elastic member restores the deformation force to push the baffle to rotate to a closed state, and the baffle is in the second position, the baffle is in contact with the inner wall of the seat body, and the mist guide channel is closed. Through the support plate and the elastic member, sliding movement of the baffle is realized, and the application range of the humidifying assembly is expanded.
[0042] Optionally, one side of the seat body close to the mist guide pipe is provided with a first clamping groove, and the end portion of the mist guide pipe extends into the first clamping groove.
[0043] In the technical scheme, one side of the seat body close to the mist guide pipe is provided with a first clamping groove, and the end portion of the mist guide pipe extends into the first clamping groove. The first clamping groove can provide positioning and fixing effects, ensure the position of the mist guide pipe on the seat body is accurate, and prevent the mist guide pipe from being displaced or falling off during work.
[0044] By extending the end portion of the mist guide pipe into the first clamping groove, this connection mode does not require additional fasteners, simplifies the installation process, and improves the reliability of the connection.
[0045] By extending the end portion of the mist guide pipe into the first clamping groove, the tightness of the connection between the mist guide pipe and the mist guide channel can be ensured, and the mist guide pipe can be closed correspondingly when the mist guide channel is closed.
[0046] Optionally, the cover assembly further comprises: a first cover body, the first cover body is arranged at the opening of the liquid storage cavity, and the first cover body comprises a connecting pipeline, the connecting pipeline abuts against one side of the seat body away from the mist guide pipe; an abutting portion is connected with the connecting pipeline and extends into the inside of the seat body to abut against the baffle.
[0047] In the technical scheme, the cover assembly comprises a first cover body and an abutting part connected with the first cover body. The first cover body is arranged at the opening of the liquid storage cavity, thereby ensuring the sealing of the liquid storage cavity and preventing liquid leakage or external impurities from entering.
[0048] The first cover body comprises a connecting pipeline. When the first cover body is tightly combined with the seat body, the connecting pipeline tightly abuts against one side of the seat body away from the mist guide pipe.
[0049] The abutting part is tightly connected with the connecting pipeline on the first cover body and extends into the interior of the seat body. This design enables the abutting part to directly act on the baffle in the interior of the seat body, thereby effectively driving the baffle.
[0050] When the cover assembly is connected with the body, the first cover body tightly covers the opening of the liquid storage cavity, and the connecting pipeline tightly abuts against the seat body, thereby ensuring the sealing of the whole system. With the connection of the cover assembly and the body, the abutting part enters the interior of the seat body and pushes or releases the baffle as needed, thereby controlling the opening or closure of the mist guide channel.
[0051] In some technical schemes of the utility model, optionally, the cover assembly further comprises a second cover body and a third cover body. The second cover body is arranged on one side of the first cover body away from the liquid storage cavity and surrounds the connecting pipeline. The third cover body is arranged on one side of the second cover body away from the first cover body, and the third cover body is provided with a mist outlet.
[0052] In the technical scheme, the cover assembly comprises the first cover body, the second cover body and the third cover body. The second cover body is arranged on one side of the first cover body away from the liquid storage cavity and surrounds the connecting pipeline, thereby providing protection for the connecting pipeline.
[0053] The third cover body is arranged on one side of the second cover body away from the first cover body and is the outermost layer of the cover assembly. The third cover body is provided with a mist outlet, which is a hole for mist output.
[0054] Through the multi-layer cover assembly design of the first cover body, the second cover body and the third cover body, the mist output structure not only ensures the sealing of the liquid storage cavity, but also provides additional protection for the connecting pipeline and the mist outlet, thereby preventing external impurities from entering or internal liquid from leaking.
[0055] In some technical schemes of the utility model, optionally, the third cover body is provided with a buckle, and the buckle is buckled to the first cover body.
[0056] In the technical scheme, the third cover body is provided with a buckle, and the buckle is buckled to the first cover body, thereby realizing the tight connection of the third cover body and the first cover body. The buckle type mounting structure enables the third cover body to be easily mounted and dismounted.
[0057] In some technical solutions of the utility model, optionally, the second clamping groove is arranged on the side of the connecting pipeline close to the seat body, and the end of the seat body away from the fog guide pipe extends to the second clamping groove.
[0058] In the technical solution, the second clamping groove is arranged on the side of the connecting pipeline close to the seat body, and the end of the seat body away from the fog guide pipe extends to the second clamping groove, so that the stable connection of the first cover body and the seat body is realized.
[0059] The second clamping groove can provide the positioning and fixing functions, the position of the first cover body on the seat body is accurate, and the connection mode does not need additional fasteners, so that the installation process is simplified, and the connection reliability is improved.
[0060] According to the second aspect of the utility model, the utility model provides a humidifying equipment, the humidifying equipment comprises the humidifying assembly in any one of the above technical solutions.
[0061] The humidifying equipment provided in the second aspect of the utility model comprises the humidifying assembly in any one of the above technical solutions, so has all the beneficial effects of the humidifying assembly in any one of the above technical solutions, and details are not repeated here.
[0062] The additional aspects and advantages of the utility model will be partly given in the following description, partly become obvious from the following description, or be understood through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0063] The above and / or additional aspects and advantages of the utility model will become apparent and more readily understood from the following description, taken in conjunction with the accompanying drawings, in which:
[0064] Figure 1 Fig. 1 shows one of the structure schematic diagrams of the humidifying equipment according to one embodiment of the utility model;
[0065] Figure 2 Fig. 2 shows the exploded view of the humidifying assembly according to one embodiment of the utility model;
[0066] Figure 3 Fig. 3 shows one of the structure schematic diagrams of the humidifying equipment in the upper water filling state according to one embodiment of the utility model;
[0067] Figure 4 Fig. 4 shows the structure schematic diagram of the humidifying equipment in the cover assembly closed state according to one embodiment of the utility model;
[0068] Figure 5 Fig. 5 shows the second structure schematic diagram of the humidifying assembly according to one embodiment of the utility model;
[0069] Figure 6Fig. 3 shows a structural schematic view of the humidifying assembly according to an embodiment of the present application;
[0070] Figure 7 Fig. 2 shows a structural schematic view of the humidifying device in a water adding state according to an embodiment of the present application;
[0071] Figure 8 Fig. 5 shows a structural schematic view of the abutting portion of the humidifying assembly according to an embodiment of the present application;
[0072] Figure 9 Fig. 6 shows a structural schematic view of the baffle of the humidifying assembly according to an embodiment of the present application.
[0073] The correspondence between the reference signs in the drawings and the component names is as follows: Figures 1 to 9 The correspondence between the reference signs in the drawings and the component names is as follows:
[0074] 10 humidifying device, 100 humidifying assembly, 110 box body, 112 body, 114 liquid storage cavity, 116 opening, 118 mist guide pipe, 120 baffle assembly, 122 baffle, 124 positioning surface, 126 guide surface, 128 seat body, 130 mist guide channel, 132 first clamping groove, 134 rotating shaft, 136 fixed plate, 138 torsional spring, 140 support plate, 142 elastic member, 144 gap, 150 cover assembly, 152 abutting portion, 153 protruding portion, 154 first cover body, 156 connecting pipeline, 158 second clamping groove, 160 second cover body, 162 third cover body, 164 mist outlet, 166 buckle. DETAILED DESCRIPTION
[0075] In order to more clearly understand the above purpose, features and advantages of the present application, the present application will be further described in detail below with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0076] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, however, the present application can also be implemented in other ways different from those described herein, therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.
[0077] The following description refers to the accompanying drawings that show embodiments of the present application. Figures 1 to 9 The humidifying assembly 100 and the humidifying device 10 according to some embodiments of the present application are described below.
[0078] As Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, in some embodiments of the utility model, provide a humidifying assembly 100, humidifying assembly 100 includes box 110, baffle assembly 120 and cover assembly 150, box 110 includes body 112 and fog guide pipe 118, body 112 has liquid storage cavity 114, and fog guide pipe 118 is connected with body 112, cover assembly 150 is detachably connected with body 112, can open or close liquid storage cavity 114, cover assembly 150 includes abutment portion 152, baffle assembly 120 includes baffle 122 and seat body 128, seat body 128 is set up at the side of fog guide pipe 118 close to cover assembly 150, seat body 128 is provided with fog guide channel 130, and fog guide channel 130 is communicated with fog guide pipe 118, baffle 122 is set up in fog guide channel 130, and baffle 122 can guide or close fog guide channel 130, wherein, cover assembly 150 is connected with body 112, abutment portion 152 contacts baffle 122, baffle 122 is at first position, and fog guide channel 130 is guided, cover assembly 150 is separated from body 112, abutment portion 152 is separated from baffle 122, baffle 122 is at second position, and fog guide channel 130 is closed.
[0079] In this embodiment, the humidifying assembly 100 provided by the utility model mainly consists of a box 110, a baffle assembly 120 and a cover assembly 150. The box 110 includes a body 112 and a fog guide pipe 118. The body 112 has a liquid storage cavity 114 for storing liquid. Specifically, the liquid storage cavity 114 can store liquid for humidification, such as water. The design of the body 112 with the liquid storage cavity 114 allows the humidifying assembly 100 to have a liquid source itself. The liquid storage cavity 114 has sufficient liquid storage capacity to meet the long-term humidification requirement.
[0080] Specifically, the box 110 further includes a liquid injection port. The liquid injection port is arranged on the body 112 and is in communication with the liquid storage cavity 114. Through the liquid injection port, liquid can be conveniently added to the liquid storage cavity 114.
[0081] Specifically, the box 110 further includes a sealing cover. The sealing cover is arranged on the body 112 and is arranged at the liquid injection port to prevent liquid leakage and rapid evaporation.
[0082] Specifically, the box 110 further includes a liquid level indicator. The liquid level indicator is arranged on the body 112 to allow the user to intuitively understand the remaining amount of liquid in the liquid storage cavity 114. Specifically, the liquid level indicator includes a window or an electronic display screen.
[0083] Specifically, the box 110 further includes a handle. The handle is arranged on the body 112. Through the handle, the box 110 can be conveniently moved.
[0084] The mist guide tube 118 is connected to the main body 112 and is used to transport the mist generated during humidification. The mist guide tube 118 is a channel for mist transmission. Specifically, the inner wall of the mist guide tube 118 is smooth to reduce the resistance of the mist during transmission and ensure that the mist can be smoothly transmitted to the outside.
[0085] The cover assembly 150 is detachably connected to the body 112 and can open or close the liquid storage chamber 114 to facilitate users to add water or perform other maintenance operations.
[0086] The baffle assembly 120 includes a baffle 122 and a base 128. The base 128 is disposed on the side of the mist guide tube 118 near the cover assembly 150. The base 128 has a mist guide channel 130, which communicates with the mist guide tube 118. The baffle 122 is disposed within the mist guide channel 130 and can open or close the mist guide channel 130. The baffle 122 is a movable component, and its position determines the open or closed state of the mist guide channel 130. When the baffle 122 is in the open position, mist can be freely transmitted through the mist guide tube 118 and the mist guide channel 130; when the baffle 122 is in the closed position, the mist guide channel 130 is completely closed, preventing liquid or other impurities from entering the mist guide tube 118.
[0087] The cover assembly 150 includes an abutment portion 152, wherein the cover assembly 150 is connected to the body 112, the abutment portion 152 contacts the baffle 122, the baffle 122 is in a first position, and the fog guiding channel 130 is open; the cover assembly 150 is separated from the body 112, the abutment portion 152 is separated from the baffle 122, the baffle 122 is in a second position, and the fog guiding channel 130 is closed.
[0088] Humidifier component 100 is working, such as Figure 1 and Figure 4 As shown, when the cover assembly 150 is connected to the body 112, the abutment part 152 contacts the baffle 122 and pushes the baffle 122 to the first position. At this time, the mist guiding channel 130 is in the conducting state, the humidifier can work normally, and the mist is transmitted to the outside through the mist guiding pipe 118 and the mist guiding channel 130.
[0089] like Figure 3 As shown, when the cover assembly 150 is separated from the body 112, the abutment part 152 separates from the baffle 122, and the baffle 122 moves to the second position, closing the mist guiding channel 130. In this way, even if the user accidentally pours liquid into the mist guiding tube 118, the liquid will not enter the liquid storage chamber 114, avoiding the problem of the humidifier not producing mist or the humidification amount becoming smaller.
[0090] The utility model discloses a baffle assembly 120 and cover assembly 150 are designed, realized the mistake proof function on structure, when the user opens the water tank cover, baffle 122 automatic closing fog guide channel 130, prevent misoperation, when the user covers the water tank cover, baffle 122 automatic opening, keep fog guide channel 130 unobstructed.
[0091] The utility model discloses a baffle assembly 120 and cover assembly 150 are designed, realized the mistake proof function on structure, when the user opens the water tank cover, baffle 122 automatic closing fog guide channel 130, prevent misoperation, when the user covers the water tank cover, baffle 122 automatic opening, keep fog guide channel 130 unobstructed.
[0092] In the use process, baffle 122 and the abutment portion 152 frequently contact, and there is the risk of falling off, if baffle 122 accidentally falls off in the use process, the design of installing through seat body 128 also facilitates reinstalling baffle 122, through the way of disassembling seat body 128, reinstalling baffle 122 to seat body 128, baffle 122 can be arranged again, compared with the way of directly installing smaller baffle in narrower fog guide channel, the application can more conveniently, more easily install baffle 122, and above all, through seat body 128, the installation of baffle 122 is more convenient, baffle assembly 120 is more easily arranged, and the easy use of humidifying assembly 100 is stronger.
[0093] The design of seat body 128 can also improve the stability and reliability of baffle 122, provide necessary support and fixation for baffle 122, and the reliability of humidifying assembly 100 is higher.
[0094] In conclusion, the humidifying assembly 100 provided by the utility model realizes the mistake proof function through structural design, effectively solves the problem of user misoperation of the water-filled humidifier, and improves the reliability and user experience. Through the design of the seat body 128 in the baffle assembly 120, the baffle 122 is convenient to install and replace, and the reliability and stability of the baffle 122 in use are improved.
[0095] Specifically, the humidifying assembly 100 provided by the utility model can be used in humidifiers or household appliances with humidifying function, such as fans, heaters and the like.
[0096] Specifically, when the cover assembly 150 is connected with the body 112, the abutting portion 152 is in contact with the baffle 122 and exerts a certain force to push the baffle 122 to move from the second position to the first position. Conversely, when the cover assembly 150 is separated from the body 112, the abutting portion 152 is separated from the baffle 122, and the baffle 122 is automatically or driven by other mechanisms to move to the second position under the action of gravity or other mechanisms. The cooperation between the abutting portion 152 and the baffle 122 takes into account the smoothness and accuracy of the movement.
[0097] Specifically, the abutting portion 152 is provided with a limiting block matched with the shape of the baffle 122 to ensure that no sliding or misalignment occurs during pushing.
[0098] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , in some embodiments of the utility model, optionally, the baffle assembly 120 further comprises: a rotating shaft 134, the rotating shaft 134 is connected with the seat body 128; one end of the baffle 122 is sleeved on the rotating shaft 134, the other end of the baffle 122 is a free end, and the baffle 122 can rotate relative to the seat body 128 to open or close the fog guide channel 130.
[0099] In this embodiment, the baffle assembly 120 further comprises a rotating shaft 134 connected with the seat body 128. The rotating shaft 134 is a supporting component for the rotation of the baffle 122, one end of the rotating shaft 134 is fixedly connected with the seat body 128, and the other end supports the rotation of the baffle 122.
[0100] One end of the baffle 122 is fixedly connected with the seat body 128, and the other end of the baffle 122 is a free end. When it is necessary to change the position of the baffle 122, the abutting portion 152 will exert a force on the free end of the baffle 122 to make it rotate relative to the seat body 128. The rotating shaft 134 plays a supporting and guiding role, ensuring the stability and accuracy of the baffle 122 during rotation. With the rotation of the baffle 122, the opening or closing of the fog guide channel 130 is realized. Through the introduction of the rotating shaft 134, the baffle assembly 120 can realize more flexible and accurate rotation control.
[0101] Specifically, the rotating shaft 134 comprises a shaft body, a connecting end and a supporting end. The shaft body is the main part of the rotating shaft 134, and the shaft body is cylindrical to facilitate the sleeve and rotation of the baffle 122. The connecting end is located at one end of the shaft body and is used to connect and fix the rotating shaft 134 with the seat body 128. The supporting end is located at the other end of the shaft body and is used to support the rotation of the baffle 122.
[0102] Specifically, the baffle assembly 120 is locked on both ends of the rotating shaft 134 to form a whole through two screws.
[0103] As Figure 1 , Figure 7 , Figure 8 and Figure 9 shown, in some embodiments of the utility model, optionally, the abutment portion 152 protrudes from the lower surface of the cover assembly 150, the abutment portion 152 includes the convex part 153 extending to the rotating shaft 134, in the process of installing the cover assembly 150 on the body, the position of baffle 122 and convex part 153 contact is from the end of baffle 122 away from the rotating shaft 134 to the end of baffle 122 close to the rotating shaft 134 sliding.
[0104] In this embodiment, the abutment portion 152 protrudes from the lower surface of the cover assembly 150, facilitating the abutment portion 152 and baffle 122 contact, thereby realizing the control of the fog guide channel 130 closed and guided.
[0105] The abutment portion 152 includes the convex part 153 extending to the rotating shaft 134, and the abutment portion 152 specifically realizes the cooperation with the baffle 122 through the convex part 153, so that the overall shape of the abutment portion 152 does not need to be designed, the design difficulty can be reduced, and the design cost can be saved.
[0106] In the process of installing the cover assembly 150 on the body, the baffle 122 gradually moves in the process of contacting the convex part 153, and the position of the baffle 122 and the convex part 153 contact is from the end of the baffle 122 away from the rotating shaft 134 to the end of the baffle 122 close to the rotating shaft 134 sliding. The baffle 122 provides a contact surface in contact with the convex part 153, so that the baffle 122 can be rotated by the convex part 153 to apply a force, so that the baffle 122 is driven into place and is in the first position to close the fog guide pipe 118.
[0107] Through the design of sliding from one end to the other end, the convex part 153 can also be reversely guided to move to the position cooperating with the baffle 122 to close the fog guide pipe 118 in the process of installing the cover assembly 150, so that the baffle 122 is firmly in the first position, thereby ensuring the closing effect of the fog guide channel 130, so that even if the user accidentally pours liquid into the fog guide pipe 118, the liquid will not enter the liquid storage cavity 114, avoiding the problem that the humidifying device 10 does not fog or the humidification amount is small.
[0108] As Figure 1 , Figure 7 , Figure 8 and Figure 9As shown, in some embodiments of the utility model, optionally, the baffle 122 includes a positioning surface 124 and a guide surface 126, the positioning surface 124 is sleeved on one side of the baffle 122 to the side close to the guide surface 126 of the pivot 134, and extends obliquely relative to the extension direction of the guide mist pipe 118;During the installation of the cover assembly 150 on the body, the convex part 153 slides from the guide surface 126 towards the positioning surface 124;When the baffle 122 is in the first position, the convex part 153 abuts against the positioning surface 124.
[0109] In this embodiment, the utility model limits that the baffle 122 includes a positioning surface 124 and a guide surface 126, the positioning surface 124 is one surface on the baffle 122, the positioning surface 124 is sleeved on one side of the baffle 122 to the side close to the guide surface 126 of the pivot 134, and extends obliquely relative to the extension direction (such as the direction indicated by arrow A in the middle) of the guide mist pipe 118, through the above-mentioned oblique design, it can be ensured that the baffle 122 can cooperate with the convex part 153, and the convex part 153 is firmly clamped with the baffle 122. Figure 4
[0110] The guide surface 126 is another surface on the baffle 122, and the guide surface 126 is located on one side of the positioning surface 124 and is used to guide the sliding of the convex part 153 during movement.
[0111] During the installation of the cover assembly 150, the convex part 153 slides from the guide surface 126 towards the positioning surface 124, and when the baffle 122 is in the first position, the convex part 153 abuts against the positioning surface 124.In the utility model, the convex part 153 first contacts the guide surface 126 of the baffle 122, and along with the further installation of the cover assembly 150, the convex part 153 slides along the guide surface 126 towards the positioning surface 124, this guide design not only can make the cover assembly 150 stably install, and can make the baffle 122 correctly rotate to the first position when being driven, can also ensure that the convex part 153 can smoothly transition when reaching the positioning surface 124.
[0112] When the baffle 122 is in the first position, the baffle 122 closes the guide mist channel 130, the convex part 153 abuts against the positioning surface 124, so that the baffle 122 stably is in the first position and closes the guide mist channel 130.
[0113] As Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown in some embodiments of the utility model, optionally, the baffle assembly 120 further includes a fixed plate 136 and a torsion spring 138, the fixed plate 136 is connected with the rotating shaft 134 and located at one end of the rotating shaft 134, and the torsion spring 138 is sleeved on the rotating shaft 134, one end of the torsion spring 138 abuts against the fixed plate 136, and the other end abuts against the baffle 122, wherein when the baffle 122 is in the first position, the torsion spring 138 is in a compressed state.
[0114] In this embodiment, the baffle assembly 120 further includes a fixed plate 136 and a torsion spring 138, the fixed plate 136 is connected with the rotating shaft 134 and located at one end of the rotating shaft 134, and the fixed plate 136 is a relatively stationary component, providing stable support for the rotating shaft 134 and the baffle 122.
[0115] The torsion spring 138 is sleeved on the rotating shaft 134, one end of the torsion spring 138 abuts against the fixed plate 136, and the other end abuts against the baffle 122. The torsion spring 138 is a spring with torsional elasticity, which can start to deform when subjected to external force and restore its original shape after the external force is removed. One end of the torsion spring 138 abuts against the fixed plate 136, which limits the displacement and deformation of the torsion spring 138 through the fixed plate 136.
[0116] When the baffle 122 is in the first position, the torsion spring 138 is in a compressed state and stores elastic potential energy. When the abutting portion 152 is separated from the baffle 122, the torsion spring 138 releases the elastic potential energy and pushes the baffle 122 to rotate around the rotating shaft 134 to the second position. When the cover assembly 150 is connected with the body 112, the abutting portion 152 contacts the baffle 122 and pushes the baffle 122 to rotate to the first position against the elastic force of the torsion spring 138, and when the abutting portion 152 moves away, the torsion spring 138 restores the force of deformation and pushes the baffle 122 to rotate to the closed state.
[0117] In summary, the utility model designs the baffle assembly 120 to control the rotation of the baffle 122 by the elastic force of the torsion spring 138. When the cover assembly 150 is opened, the torsion spring 138 pushes the baffle 122 to rotate to the closed state, preventing liquid or gas from passing through the mist guide channel 130; when the cover assembly 150 is closed, the abutting portion 152 pushes the baffle 122 to rotate to the open state against the elastic force of the torsion spring 138, allowing mist to pass through the mist guide channel 130 and output.
[0118] As shown in some embodiments of the utility model, optionally, the baffle 122 can slide along the extension direction of the mist guide channel 130 to open or close the mist guide channel 130. Figure 5 Figure 6 As shown in some embodiments of the utility model, optionally, the baffle 122 can slide along the extension direction of the mist guide channel 130 to open or close the mist guide channel 130.
[0119] In this embodiment, the baffle 122 can also be controlled by sliding to open and close the mist guide pipe 118. The baffle 122 can slide along the extension direction of the mist guide channel 130 to open or close the mist guide channel 130. When the cover assembly 150 is connected to the body 112, as shown in Figure 6 , the abutting portion 152 is in contact with the baffle 122 and pushes the baffle 122 to slide to the first position, at which time the mist guide pipe 118 is in the open state, and the humidifier can work normally, and the mist is transmitted to the outside through the mist guide channel 130. As shown in Figure 5 , when the cover assembly 150 is separated from the body 112, the abutting portion 152 is separated from the baffle 122, and the baffle 122 moves to the second position to close the mist guide channel 130, so that even if the user accidentally pours liquid into the mist guide pipe 118, the liquid will not enter the liquid storage cavity 114, avoiding the problem that the humidifier does not mist or the humidification amount is small.
[0120] As shown in Figure 5 and Figure 6 , in some embodiments of the utility model, optionally, the baffle assembly 120 further comprises a support plate 140 and an elastic member 142. The support plate 140 is connected with the seat body 128; one end of the elastic member 142 is connected with the support plate 140, and the other end is connected with the baffle 122; when the baffle 122 is in the first position, there is a gap 144 between the baffle 122 and the inner wall of the seat body 128, the mist guide pipe 118 is open, and the elastic member 142 is in the compressed state; when the baffle 122 is in the second position, the baffle 122 is in contact with the inner wall of the seat body 128, and the mist guide channel 130 is closed.
[0121] In this embodiment, the baffle assembly 120 further comprises a support plate 140 and an elastic member 142. The support plate 140 and the elastic member 142 cooperate to control the position of the baffle 122.
[0122] The support plate 140 is connected with the seat body 128, thereby supporting the elastic member 142 through the seat body 128. One end of the elastic member 142 is connected with the support plate 140, and the other end is connected with the baffle 122. The displacement and deformation of the elastic member 142 are limited by the support plate 140.
[0123] When the baffle 122 is in the first position, there is a gap 144 between the baffle 122 and the inner wall of the seat body 128, the mist guide pipe 118 is open, and the elastic member 142 is in the compressed state, storing elastic potential energy. When the abutting portion 152 is separated, the elastic member 142 restores the force of deformation to push the baffle 122 to rotate to the closed state, and when the baffle 122 is in the second position, the baffle 122 is in contact with the inner wall of the seat body 128, and the mist guide channel 130 is closed.
[0124] Through the support plate 140 and the elastic member 142, the sliding movement of the baffle 122 is realized, and the application range of the humidifying assembly 100 is expanded.
[0125] Specifically, the elastic member 142 is a spring.
[0126] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 indicate that, in some embodiments of the utility model, optionally, the seat body 128 is provided with a first clamping groove 132 on the side close to the fog guide pipe 118, and the end of the fog guide pipe 118 extends into the first clamping groove 132.
[0127] In this embodiment, the seat body 128 is provided with a first clamping groove 132 on the side close to the fog guide pipe 118, and the end of the fog guide pipe 118 extends into the first clamping groove 132. The first clamping groove 132 can provide positioning and fixing effects, ensure the accurate position of the fog guide pipe 118 on the seat body 128, and prevent the fog guide pipe 118 from shifting or falling off during work.
[0128] By extending the end of the fog guide pipe 118 into the first clamping groove 132, this connection method does not require additional fasteners, simplifies the installation process, and improves the reliability of the connection.
[0129] By extending the end of the fog guide pipe 118 into the first clamping groove 132, the tightness of the connection between the fog guide pipe 118 and the fog guide channel 130 can be ensured, and the fog guide pipe 118 can be closed when the fog guide channel 130 is closed.
[0130] Specifically, the first clamping groove 132 is located on the side of the seat body 128 close to the fog guide pipe 118, and its shape matches the outer shape of the end of the fog guide pipe 118 to ensure that the fog guide pipe 118 can be smoothly and stably inserted into the clamping groove. The end of the fog guide pipe 118 is designed to tightly fit the shape of the first clamping groove 132, and when the fog guide pipe 118 is inserted into the clamping groove, the fit between the two should ensure sealing and stability.
[0131] As shown in Figure 2 and Figure 4 indicate that, in some embodiments of the utility model, optionally, the cover assembly 150 further comprises: a first cover body 154, the first cover body 154 is covered at the opening 116 of the liquid storage cavity 114, and the first cover body 154 comprises a connecting pipeline 156 abutting to the side of the seat body 128 away from the fog guide pipe 118; the abutting portion 152 is connected with the connecting pipeline 156 and extends to the inside of the seat body 128 and abuts to the baffle 122.
[0132] In this embodiment, the cover assembly 150 comprises a first cover body 154 and an abutting portion 152 connected thereto. The first cover body 154 is covered at the opening 116 of the liquid storage cavity 114, thereby ensuring the sealing of the inside of the liquid storage cavity 114 and preventing liquid leakage or external impurities from entering.
[0133] The first cover body 154 comprises a connecting pipe 156, which is tightly abutted against the seat body 128 away from the guide mist pipe 118 when the first cover body 154 is tightly combined with the seat body 128.
[0134] The abutting portion 152 is tightly connected with the connecting pipe 156 on the first cover body 154 and extends into the inside of the seat body 128. This design enables the abutting portion 152 to directly act on the baffle 122 inside the seat body 128, thereby achieving effective driving of the baffle 122.
[0135] When the cover assembly 150 is connected with the body 112, the first cover body 154 tightly covers the opening 116 of the liquid storage cavity 114, and the connecting pipe 156 tightly abuts against the seat body 128, thereby ensuring the sealing of the whole system. With the connection of the cover assembly 150 and the body 112, the abutting portion 152 enters the inside of the seat body 128 and pushes or releases the baffle 122 as needed, thereby controlling the opening or closure of the guide mist passage 130.
[0136] As shown in Figure 2 and Figure 4 In some embodiments of the utility model, the cover assembly 150 optionally further comprises a second cover body 160 and a third cover body 162. The second cover body 160 is arranged on the side of the first cover body 154 away from the liquid storage cavity 114 and surrounds the connecting pipe 156. The third cover body 162 is arranged on the side of the second cover body 160 away from the first cover body 154, and the third cover body 162 is provided with a mist outlet 164.
[0137] In this embodiment, the cover assembly 150 comprises the second cover body 160 and the third cover body 162 in addition to the first cover body 154. The second cover body 160 is arranged on the side of the first cover body 154 away from the liquid storage cavity 114 and surrounds the connecting pipe 156, thereby providing protection for the connecting pipe 156.
[0138] The third cover body 162 is arranged on the side of the second cover body 160 away from the first cover body 154 and is the outermost layer of the cover assembly 150. The third cover body 162 is provided with the mist outlet 164, which is a hole for mist output.
[0139] Through the multi-layer cover assembly 150 design of the first cover body 154, the second cover body 160 and the third cover body 162, the mist output structure not only ensures the sealing of the liquid storage cavity 114 but also provides additional protection for the connecting pipe 156 and the mist outlet 164, thereby preventing foreign matters from entering or liquid from leaking.
[0140] The mist outlet structure can realize uniform, stable and effective output of the mist, thereby improving the humidification efficiency. The multi-layer design of the cover assembly 150 makes each part of the mist outlet structure easy to disassemble and clean, thereby facilitating the daily maintenance and care of the device. The mist outlet structure ensures the safety and reliability of the device through the multi-layer sealing and protection design, preventing safety hazards caused by liquid leakage or impurities entering.
[0141] Specifically, the humidification assembly 100 further comprises an adjusting mechanism located at the mist outlet 164 to adjust the flow and direction of the mist as needed.
[0142] Specifically, the adjusting mechanism comprises a valve or an adjusting plate.
[0143] As shown in Figure 2 and Figure 4 , in some embodiments of the utility model, optionally, the third cover body 162 is provided with a buckle 166, and the buckle 166 is clamped on the first cover body 154.
[0144] In this embodiment, the third cover body 162 is provided with a buckle 166, and the buckle 166 is clamped on the first cover body 154, realizing the close connection between the third cover body 162 and the first cover body 154. The buckle 166 type mounting structure makes the installation and disassembly of the third cover body 162 simple and fast.
[0145] Specifically, the buckle 166 on the third cover body 162 is connected with the buckle slot or buckle point on the first cover body 154 through clamping. During clamping, the buckle 166 will be compressed or deformed to some extent, and then when the buckle 166 completely enters the buckle slot or buckle point, the buckle 166 will restore to its original state and be clamped in the buckle slot or buckle point, thereby realizing the stable connection between the third cover body 162 and the first cover body 154.
[0146] When it is needed to separate the third cover body 162 and the first cover body 154, the buckle 166 is pressed to generate sufficient deformation or displacement to overcome the friction between the buckle 166 and the buckle slot or buckle point, thereby realizing the separation of the two.
[0147] As shown in Figure 2 and Figure 4 , in some embodiments of the utility model, optionally, the second clamping groove 158 is arranged on the side of the connecting pipeline 156 close to the seat body 128, and the end of the seat body 128 away from the mist guide pipe 118 extends to the second clamping groove 158.
[0148] In this embodiment, the second clamping groove 158 is arranged on the side of the connecting pipeline 156 close to the seat body 128, and the end of the seat body 128 away from the mist guide pipe 118 extends to the second clamping groove 158, realizing the stable connection between the first cover body 154 and the seat body 128.
[0149] The second clamping groove 158 can provide positioning and fixing effects, and the first cover 154 is accurately positioned on the seat 128, and the connection does not require additional fasteners, simplifies the installation process, and improves the reliability of the connection.
[0150] Specifically, an elastic locking element, such as a spring sheet or a rubber pad, is also arranged between the second clamping groove 158 and one end of the seat 128, and when the seat 128 is inserted into the second clamping groove 158, the elastic locking element can automatically lock the seat 128, maintaining the stability and sealing of the connection.
[0151] As shown in FIGS. Figure 2 and Figure 4 In some embodiments of the present application, a humidifying device 10 is provided, which comprises the humidifying assembly 100 according to any one of the above embodiments.
[0152] In this embodiment, the humidifying device 10 according to the second aspect of the present application comprises the humidifying assembly 100 according to any one of the above embodiments, and thus has all the beneficial effects of the humidifying assembly 100 according to any one of the above embodiments, which will not be described here.
[0153] Specifically, the humidifying device 10 comprises a humidifier or a fan with a humidifying function.
[0154] In the claims, the specification, and the drawings of the present application, the term "a plurality of" means two or more, unless otherwise specifically specified, and the terms "upper", "lower", and the like indicate the orientation or positional relationship shown in the drawings based on the orientation or positional relationship shown in the drawings, and are only used to more conveniently describe the present application and make the description process more simple, and are not intended to indicate or imply that the device or element must have the described specific orientation, be constructed and operated in a specific orientation, and therefore these descriptions cannot be understood as a limitation on the present application; the terms "connection", "installation", "fixation", and the like should be understood in a broad sense, for example, "connection" can be a fixed connection between multiple objects, or a detachable connection between multiple objects, or an integral connection; it can be a direct connection between multiple objects, or an indirect connection between multiple objects through an intermediate medium. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances of the above data.
[0155] In the claims, the specification, and the drawings of the present application, terms such as "one embodiment", "an embodiment", "certain embodiments" and the like mean that the particular feature, structure, material, or characteristic being referred to is included in at least one embodiment of the present application. The appearances of such phrases in various places in the specification are not necessarily all referring to the same embodiment. Further, the description as used herein is intended to be illustrative of at least one embodiment of the present application and is not intended to be limiting. Still further, any one or more of the features, structures, materials, or characteristics could be combined in any suitable manner in one or more embodiments or examples.
[0156] The above descriptions are merely some embodiments of the present application, and are not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A humidifying assembly, characterized by, The box comprises a body having a liquid storage cavity and a mist guide pipe connected with the body, a cover assembly detachably connected with the body and capable of opening or closing the liquid storage cavity, the cover assembly comprising an abutting part, a baffle assembly comprising a baffle and a seat body, the seat body being arranged on a side of the mist guide pipe close to the cover assembly, the seat body being provided with a mist guide passage in communication with the mist guide pipe, the baffle being arranged in the mist guide passage and capable of opening or closing the mist guide passage. The cover assembly is connected with the body, the abutting part is in contact with the baffle, the baffle is in a first position, and the mist guide passage is open. The cover assembly is separated from the body, the abutting part is separated from the baffle, the baffle is in a second position, and the mist guide passage is closed. The baffle assembly further comprises a rotating shaft connected with the seat body, one end of the baffle is sleeved on the rotating shaft, and the other end of the baffle is a free end, the baffle can rotate relative to the seat body to open or close the mist guide passage. The abutting part protrudes from the lower surface of the cover assembly, the abutting part comprises a protruding part extending towards the rotating shaft, in the process of mounting the cover assembly on the body, the position where the baffle is in contact with the protruding part slides from the end of the baffle away from the rotating shaft to the end of the baffle close to the rotating shaft. The baffle comprises a positioning surface and a guide surface, the positioning surface extends from the side of the baffle sleeved on the rotating shaft to the side close to the guide surface, and the positioning surface extends obliquely relative to the extension direction of the mist guide pipe.
2. The humidifying assembly of claim 1, wherein, In the process of mounting the cover assembly on the body, the protruding part slides from the guide surface towards the positioning surface. When the baffle is in the first position, the protruding part is in abutment with the positioning surface. The baffle assembly further comprises a fixed plate connected with the rotating shaft at one end of the rotating shaft, and a torsional spring sleeved on the rotating shaft, one end of the torsional spring abutting against the fixed plate, and the other end of the torsional spring abutting against the baffle.
3. The humidifying assembly of claim 2, wherein, When the baffle is in the first position, the torsional spring is in a compressed state.
4. The humidifying assembly of claim 3, wherein, The baffle can slide along the extension direction of the mist guide pipe to open or close the mist guide pipe. The baffle assembly further comprises a support plate connected with the seat body, and an elastic member, one end of the elastic member being connected with the support plate, and the other end of the elastic member being connected with the baffle. When the baffle is in the first position, there is a gap between the baffle and the inner wall of the seat body, the mist guide passage is open, and the elastic member is in a compressed state.
5. The humidifying assembly of claim 2, wherein, When the baffle is in the second position, the baffle is in contact with the inner wall of the seat body, and the mist guide passage is closed. The seat body is provided with a first clamping groove on the side close to the mist guide pipe, and the end of the mist guide pipe extends into the first clamping groove. The cover assembly further comprises a first cover body covering the opening of the liquid storage cavity, the first cover body comprising a connecting pipeline abutting against the side of the seat body away from the mist guide pipe. 6. The humidifying assembly of claim 1, wherein, 7. The humidifying assembly of claim 6, wherein, 8. The humidifying assembly of claim 1, wherein, 9. The humidifying assembly of any one of claims 1 to 8, wherein, The abutting portion is connected with the connecting pipeline and extends to the inside of the seat body and abuts against the baffle.
10. The humidification assembly of claim 9, wherein, The cover assembly further comprises: A second cover body is arranged on the side of the first cover body away from the liquid storage cavity and surrounds the connecting pipeline; A third cover body is arranged on the side of the second cover body away from the first cover body, and the third cover body is provided with a mist outlet.
11. The humidifying assembly of claim 10, wherein, The third cover body is provided with a buckle which is buckled to the first cover body.
12. The humidification assembly of claim 9, wherein, The connecting pipeline is provided with a second clamping groove on the side close to the seat body, and the end of the seat body away from the mist guide channel extends to the second clamping groove.
13. A humidification apparatus comprising: The humidifying assembly comprises the humidifying assembly according to any one of claims 1 to 12. The humidifying assembly comprises the humidifying assembly according to any one of claims 1 to 12.