Multifunctional humidifier
By designing functional modules and humidification modules in different storage spaces within the humidifier, and switching between them via a second through-hole, the problem of insufficient user experience in the functional integration of multi-functional humidifiers is solved. This enables convenient switching between normal humidification and additional functions, enriching the user experience.
Patent Information
- Application Number
- CN202422721604.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-07
AI Technical Summary
Existing multi-functional humidifiers lack structural design and humidification function integration, resulting in an inadequate user experience.
Design a humidifier in which the functional module and the humidification module are respectively housed in different storage spaces. By switching the opening and closing state of the second through hole, the humidification fluid can be discharged directly or discharged after being linked with the functional module through the connecting part, realizing the switching between normal humidification and auxiliary functions, and making full use of the flow characteristics of the humidification fluid.
It enables convenient switching between normal humidification and additional functions of the humidifier, enriches the user experience, and makes full use of the flow characteristics of the humidifying fluid to achieve multiple humidification effects.
Smart Images

Figure CN223525264U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the humidifier technical field, in particular to a multifunctional humidifier. BACKGROUND
[0002] The humidifier is a kind of household appliance for increasing air humidity in room or specific space.In dry season or environment, humidifier can help maintain appropriate humidity level, improve comfort, protect health and reduce potential damage to furniture and equipment.According to the working principle of humidifier, humidifier can include the following: ultrasonic humidifier, evaporative humidifier and hot steam humidifier, ultrasonic humidifier converts water molecules into fine water mist by high-frequency vibration to increase air humidity;Evaporative humidifier makes water molecules directly into the air by evaporation technology, without producing water mist;Hot steam humidifier generates steam by heating water to increase air humidity.
[0003] Due to the development of home intelligent technology, the requirements of users for humidifier are also more and more rich, multifunctional humidifier integrates color lamp, music, display and other functions, these multifunctional humidifiers only directly splice function structure on traditional humidifier, simply integrate multiple modules, without using humidification fluid characteristics of humidifier for corresponding structure design, which is not suitable for humidification function, and user experience is not enough. CONTENT OF THE INVENTION
[0004] Therefore, it is necessary to provide a multifunctional humidifier with reasonable structure and good user experience for the above problems.
[0005] A multifunctional humidifier, the humidifier comprises:
[0006] A shell having a first through hole, a second through hole, a first containing space, a second containing space and a communication part, the first containing space and the second containing space are communicated through the communication part, the first through hole is arranged corresponding to the first containing space, and the second through hole is arranged corresponding to the communication part;
[0007] A function module arranged in the first containing space, the function module is arranged spaced apart from the inner surface of the shell;And
[0008] A humidification module arranged in the second containing space, the humidification module is used to provide humidification fluid to the communication part;
[0009] Wherein, the second through hole includes an open state and a closed state, when the second through hole is in the open state, the humidification fluid generated by the humidification module is discharged from the second through hole, and when the second through hole is in the closed state, the humidification fluid generated by the humidification module passes through the function module and is discharged from the first through hole.
[0010] In one of the embodiments, the functional module is one or more of a plant module, an aromatherapy module, a sterilization module, and a negative ion module.
[0011] In one of the embodiments, the humidifier further comprises an opening and closing member for closing or opening the second through hole, and a recognition element for sensing the state of the opening and closing member. When the recognition element detects that the opening and closing member opens the second through hole, the humidifying module works in the first working condition; and when the recognition element detects that the opening and closing member closes the second through hole, the humidifying module works in the second working condition.
[0012] In one of the embodiments, the humidifier further comprises an opening and closing member for closing or opening the second through hole, and a baffle. When the second through hole is in the open state, the baffle is separated from the second through hole; and when the second through hole is in the closed state, the baffle blocks the second through hole.
[0013] In one of the embodiments, the baffle comprises a magnetic material, and the opening and closing member comprises a magnetic material. When the opening and closing member closes the second through hole, the baffle is configured to drive the plate to block the second through hole.
[0014] In one of the embodiments, the shell comprises a top surface, a bottom surface, and a peripheral surface. The first through hole is located at the lower part of the peripheral surface, the second through hole is located at the top surface, and the position of the communication part matches the top surface.
[0015] In one of the embodiments, the shell comprises a middle frame member. The middle frame member comprises a first support and a second support. The first support is arranged in a spaced manner with the top surface to enclose the communication part, and the second support is used to divide the first accommodation space and the second accommodation space.
[0016] In one of the embodiments, at least part of the first support is arranged in a tilted manner towards the first accommodation space.
[0017] In one of the embodiments, the functional module is detachably connected to the second support.
[0018] In one of the embodiments, the first support is provided with a humidifying outlet which is connected to the humidifying module.
[0019] In one of the embodiments, the humidifying outlet is provided with a sleeve ring which is sleeved at the humidifying outlet. The sleeve ring is used to install and connect the humidifying assembly.
[0020] In one of the embodiments, the humidifying module comprises a water tank, a humidifying core and a vibrating member, the vibrating member is arranged at the humidifying outlet, the vibrating member is used to generate atomized humidifying fluid, and the humidifying core is communicated between the vibrating member and the water tank.
[0021] In one of the embodiments, the functional module comprises a plant unit and a mounting unit, and the mounting unit is arranged in the first accommodating space in an inclined manner.
[0022] The humidifier described above has the functional module and the humidifying module arranged in the respective accommodating spaces, when the second through hole is in the open state, the humidifier directly discharges the humidifying fluid generated by the humidifying module, so as to realize the normal humidifying function of the humidifier, when the second through hole is in the closed state, the humidifying fluid cannot be directly discharged, and needs to pass through the communication part to enter the first accommodating space and link with the functional module, and then is discharged from the first through hole corresponding to the functional module, the humidifying fluid can be switched between the normal humidifying and the humidifying with additional functions, the switching process is convenient, the flow characteristics of the humidifying fluid can be fully utilized to add various functions for cooperation, various humidifying effects can be realized, and the user experience is enriched. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 The figure is a structure schematic diagram of the humidifier of one embodiment of the present application.
[0024] Figure 2 The figure is a structure schematic diagram of the humidifier of one embodiment of the present application.
[0025] Figure 3 The figure is a front view of the humidifier of one embodiment of the present application.
[0026] Figure 4 The figure is an exploded structure schematic diagram of the humidifier of one embodiment of the present application.
[0027] Figure 5 The figure is an internal structure schematic diagram of the humidifier of one embodiment of the present application.
[0028] Figure 6 The figure is a schematic diagram of the water tank of one embodiment of the present application.
[0029] Figure 7 The figure is a sectional view of the plane A-A. Figure 3 The figure is a sectional view of the plane A-A.
[0030] Figure 8 The figure is a schematic diagram of the second through hole in the closed state of one embodiment of the present application.
[0031] Figure 9 The figure is a schematic diagram of the second through hole in the open state of one embodiment of the present application.
[0032] Figure 10 The figure is a sectional view of the plane A-A. Figure 8a partial enlarged schematic view of the local area.
[0033] Figure 11 for Figure 9 a partial enlarged schematic view of the local area.
[0034] BRIEF DESCRIPTION OF DRAWINGS
[0035] 1, humidifier; 2, opening and closing piece; 100, shell; 101, top surface; 102, bottom surface; 103, peripheral side surface; 104, display plate; 105, upper plate; 106, side plate; 107, lower plate; 110, first through hole; 120, second through hole; 121, baffle; 122, storage groove; 130, first containing space; 140, second containing space; 141, upper containing part; 142, lower containing part; 150, communication part; 151, opening; 160, collar; 161, third limiting part; 162, ring groove; 163, first butt joint part; 164, second butt joint part; 170, third containing space; 200, middle frame member; 210, first support piece; 220, second support piece; 211, slope bottom; 212, humidification outlet; 213, ring wall; 300, humidification module; 310, water tank; 311, base part; 312, water storage part; 313, pressing groove; 314, through hole; 320, pressing quick release mechanism; 321, button; 3211, operation part; 3212, butt joint part; 3213, second limiting part; 3214, first limiting part; 3215, movement part; 322, elastic piece; 323, abutment plate; 324, first fixed table; 325, second fixed table; 330, humidification core; 340, water level detection piece; 350, vibration piece; 360, filtering part; 400, mounting unit; 410, mounting pin; 420, quick release piece; 500, platform member; 510, platform part; 520, sheath part; 600, general control module; 610, power supply; 620, interface; 630, control box; 640, switch module; 641, start-stop switch; 642, lighting switch. DETAILED DESCRIPTION
[0036] In order to make the above objectives, features and advantages of the present application more apparent, a detailed description of the specific embodiments of the present application will be given below with reference to the accompanying drawings. In the following description, a large number of specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be implemented in many different ways other than those described herein, and those skilled in the art can make similar improvements without departing from the spirit of the present application, and therefore the present application is not limited to the specific embodiments disclosed below.
[0037] In the description of the application, it should be understood that, if there are these terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application.
[0038] In addition, if there are these terms "first", "second", these terms are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features. In the description of the application, if the term "multiple" appears, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.
[0039] In this application, unless otherwise explicitly specified and limited, if there are terms such as "mounting", "connecting", "connecting", "fixing" and the like, these terms should be broadly understood. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.
[0040] In this application, unless otherwise explicitly specified and limited, if there are similar descriptions such as "first feature on or under second feature", the meaning can be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature "above", "above" and "above" of the second feature can be that the first feature is directly above or obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" of the second feature can be that the first feature is directly below or obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0041] It should be noted that if an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. If an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. If so, the terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application are for illustrative purposes only and do not represent the only possible implementation.
[0042] See Figures 1-11 , Figures 1-4 A schematic diagram of the structure of a multifunctional humidifier 1 according to an embodiment of this application is shown. Figures 5-6 A partial structural schematic diagram of the humidifier 1 according to one embodiment of this application is shown. Figures 7-11 A cross-sectional schematic diagram of a humidifier 1 according to an embodiment of this application is shown. The humidifier 1 provided in an embodiment of this application realizes multiple functions and is adapted to the basic humidification function to add other functional effects to the humidifying fluid discharged by the humidifier 1, including a housing 100, functional modules and a humidification module 300.
[0043] like Figures 1-4 , Figures 8-9 As shown, the housing 100 has a first through hole 110, a second through hole 120, a first receiving space 130, a second receiving space 140, and a connecting portion 150. The first receiving space 130 and the second receiving space 140 are connected through the connecting portion 150. The position of the first through hole 110 corresponds to the position of the first receiving space 130, and the position of the second through hole 120 corresponds to the position of the connecting portion 150. A functional module is disposed in the first receiving space 130, and the functional module is spaced apart from the inner surface of the housing 100. A humidifying module 300 is disposed in the second receiving space 140, and the humidifying module 300 is used to provide humidifying fluid to the connecting portion 150. The second through hole 120 has an open state and a closed state. When the second through hole 120 is in the open state, the humidifying fluid generated by the humidifying module 300 is discharged from the second through hole 120. When the second through hole 120 is in the closed state, the humidifying fluid generated by the humidifying module 300 is discharged from the first through hole 110 through the functional module.
[0044] The humidifier 1, when the second through hole 120 is in the open state, directly discharges the humidification fluid generated by the humidification module 300, so that the humidifier 1 realizes the normal humidification function. When the second through hole 120 is in the closed state, the humidification fluid cannot be directly discharged and needs to pass through the communication part 150 into the first containing space 130 to link with the functional module, and then be discharged from the first through hole 110 corresponding to the functional module. The humidification fluid can be switched between the normal humidification and the humidification with additional functions, the switching process is convenient, the flow characteristics of the humidification fluid can be fully utilized to add various functions for cooperation, multiple humidification effects are realized, and the user experience is enriched.
[0045] In one of the embodiments, the functional module (not shown in the figure) is one or more of a plant module, an aromatherapy module, a sterilization module, and a negative ion module.
[0046] Specifically, the plant module is a module structure including plants, and the plants can obtain water through the humidification air flow under the closed state of the second through hole 120 and filter and adsorb particulate matters and carbon dioxide in the humidification fluid. The aromatherapy module is an aromatherapy module structure capable of generating fragrance, and solid, liquid or gaseous aromatherapy can be arranged in the aromatherapy module. The sterilization module is a structure capable of sterilizing through the flow and contact of the humidification fluid, for example, a plurality of spaced ultraviolet lamp groups or a porous structure coated with silver ions. The negative ion module is a structure capable of generating negative ions, for example, a high-frequency oscillation structure or a water molecule ionization structure. Hereinafter, the functional module is taken as the plant module for detailed description.
[0047] In one of the embodiments, the functional module includes a plant unit (not shown in the figure) and a mounting unit 400, and the mounting unit 400 is obliquely arranged in the first containing space 130. Specifically, the plant unit is composed of a group of plants and nutrients, and can be integrally installed in the mounting unit 400 and mounted to the humidifier 1 by the mounting unit 400. In particular, the plant unit includes moss.
[0048] In one of the embodiments, the mounting unit 400 includes at least two mounting areas, and each mounting area is provided with a functional unit having different functions. The mounting areas can be designed in positions according to the adaptability to the humidification fluid. For example, the mounting unit 400 includes a plant area and an aromatherapy area, and the plant area is located above the aromatherapy area, i.e. the plant area is located closer to the second through hole 120 of the mounting unit 400, so as to facilitate the plants to contact more humidification fluid and prevent spices from being attached to the plants after being wetted. Further, a plurality of mounting pins 410 form a group, each group of mounting pins 410 can serve as a marker for enclosing a mounting area, and each group of mounting pins 410 is controlled to display effects by an independent light source group.
[0049] In one of the embodiments, the functional module comprises a functional unit and a mounting unit 400, the mounting unit 400 comprises a first side and a second side, the first side is provided with mounting pins 410 at intervals, the mounting pins 410 are used for mounting the functional unit, the second side is provided with quick release members 420, the quick release members 420 are detachably connected with the middle frame member 200. The first side is defined as the side facing the first accommodating space 130, and the second side is defined as the side facing the second accommodating space 140.
[0050] Specifically, the functional unit is a structure for realizing the function of the functional module, and the functional unit is an integrated structure, which is integrally and detachably mounted in the mounting unit 400.
[0051] The mounting unit 400 is in the shape of a groove, forming a groove-shaped cavity for accommodating the functional unit, the functional unit is arranged in the groove-shaped cavity, and the groove-shaped cavity is recessed from the first side. The first side is provided with mounting pins 410 at intervals, the mounting pins 410 are protruded from the groove bottom and used for piercing into the functional unit to fix the functional unit, or adjacent mounting pins 410 are used for clamping the functional unit to fix the functional unit.
[0052] Further, the mounting pins 410 are made of transparent or light-transmitting material, the mounting unit 400 is provided with a light source, or at least one mounting pin 410 is provided with a light source. The mounting pins 410 not only have the function of fixing the functional unit, but also have the display effect. When the number of mounting pins 410 is sufficient, the plurality of mounting pins 410 integrally constitute a display, which can realize the display effect of patterns and numbers.
[0053] In one of the embodiments, the humidifier 1 further comprises an opening and closing member 2 and an identification element, the opening and closing member 2 is used to close or open the second through hole 120, the identification element is used to sense the state of the opening and closing member 2, when the identification element detects that the opening and closing member 2 opens the second through hole 120, the humidifying module 300 works in the first working condition, and when the identification element detects that the opening and closing member 2 closes the second through hole 120, the humidifying module 300 works in the second working condition.
[0054] Specifically, the second through hole 120 is circular, and the corresponding opening and closing member 2 is spherical. As shown in FIGS. 1 and 2, the surface of the spherical opening and closing member 2 is tangent to the second through hole 120 and can completely close the circular second through hole 120. Figure 9 Figure 11 The opening and closing member 2 has a certain weight, which is configured to be greater than the thrust of the humidifying fluid with the maximum flow rate, and the weight can prevent the opening and closing member 2 from being lifted by the humidifying fluid. The opening and closing member 2 is made of anticorrosive and rustproof material, for example, metal alloy, stone or plastic material. In particular, the opening and closing member 2 is made of magnetic material or has a magnetic element built-in.
[0055] The identification element is configured as a Hall sensor located near the second through hole 120. The identification element can detect whether the distance between the opening and closing element 2 reaches a preset value to determine whether the opening and closing element 2 is in a closed state. The opening and closing element 2 is made of a magnetic material, and the identification element can detect whether the opening and closing element 2, i.e., the magnetic material, is adjacent to determine whether the second through hole 120 is closed.
[0056] As a preferred mode, the first working condition corresponds to the humidification module 300 continuously working, and the second working condition corresponds to the humidification module 300 intermittently working. When the humidifier 1 is turned on and the second through hole 120 is in an open state, as shown in Figure 8 and Figure 10 , the humidification module 300 continuously works at a preset power, continuously generates humidification fluid to the communication part 150 and the second through hole 120, and the humidifier 1 directly discharges the humidification fluid. Under the suction action of the humidification fluid, the first through hole 110 acts as an air inlet hole, a small amount of air flows upward along the functional module, mixes with the humidification fluid, and is discharged. Figure 9 and Figure 11 When the humidifier 1 is turned on and the second through hole 120 is in a closed state, as shown in and
[0057] , the humidification module 300 continuously works at a preset power and interval, intermittently generates humidification fluid to the communication part 150 and the first containing space 130, and the humidification fluid flows on the surface of the plant module. At this time, the first through hole 110 acts as an air outlet hole, and the humidification gas flow is finally discharged at the first through hole 110. Figure 8 Figure 10 As a preferred mode, the first working condition corresponds to the humidification module 300 continuously working at a first power, and the second working condition corresponds to the humidification module 300 continuously working at a second power, which is less than the first power. When the humidifier 1 is turned on and the second through hole 120 is in an open state, as shown in Figure 9 and Figure 11 , the humidification module 300 continuously works at the first power, continuously generates humidification fluid to the communication part 150 and the second through hole 120, and the humidifier 1 directly discharges the humidification fluid. Under the suction action of the humidification fluid, the first through hole 110 acts as an air inlet hole, a small amount of air flows upward along the functional module, mixes with the humidification fluid, and is discharged.
[0058] The humidifier 1 further comprises a controller, which can be configured to control the operation of the humidifier 1 according to the information detected by the identification element. In particular, when the controller confirms that the second through hole 120 is closed through the identification element, the controller can control the humidifier 1 to operate only for a set time.
[0059] The humidifier 1 is powered on or powered off, i.e. the air purifier humidification function is used, which can be manually requested by the user or requested when the preset condition is met. In this case, the preset condition can include at least one condition according to the time period, the humidity condition around the device, the illumination condition around the device, the air quality condition around the device, and the temperature condition around the device. When the set condition for using the air purifier humidification function is met, the controller controls to power on the humidifier 1 and generate humidification fluid. The user can open or close the second through hole 120 using the opening and closing element 2. In this way, the identification element detects that the second through hole 120 is opened or closed by the opening and closing element 2, and the controller controls to switch between the first and second working conditions.
[0060] In one embodiment, as shown in Figures 8-11 The humidifier 1 further comprises an opening and closing element 2 for closing or opening the second through hole 120, and a baffle 121, which is separated from the second through hole 120 when the second through hole 120 is in an open state, and which blocks the second through hole 120 when the second through hole 120 is in a closed state. The formation of the oil film can be prevented by forming an irregular shape on the inner circumferential wall of the second through hole 120, and the baffle 121 can also be provided to prevent the oil film from occurring due to the opening and closing element 2, and to block the water vapor.
[0061] In one embodiment, the baffle 121 comprises a magnetic material, and the opening and closing element 2 comprises a magnetic material. When the opening and closing element 2 closes the second through hole 120, the baffle 121 is configured to drive the baffle to block the second through hole 120.
[0062] The baffle 121 can be made of a magnetic material or a non-magnetic material, and an additional attachment made of a magnetic material is additionally provided on at least a portion of the baffle 121. When the opening and closing element 2 closes the second through hole 120, the baffle 121 can be moved to a position covering the second through hole 120. The attachment can be located near the hinge to accurately receive the influence of the opening and closing element 2. When the opening and closing element 2 is away from the baffle 121, the baffle 121 is away from the second through hole 120, and when the opening and closing element 2 is close, the baffle 121 is attracted to the vicinity of the second through hole 120 under the action of the magnetic force, at which time the opening and closing element 2 and the baffle 121 are located on the two sides of the hole wall of the second through hole 120, respectively.
[0063] The baffle 121 is movably connected to the housing 100 so that it can open the lower end of the second through-hole 120 and can be positioned adjacent to the second through-hole 120 when separated from the shutter 2. In this case, the baffle 121 and the housing 100 can be composed of a hinge supporting the rotation of the baffle 121 or can be composed of a film connecting the baffle 121 and the main body frame or the upper plate 105.
[0064] In another aspect, when the baffle 121 is formed to completely cover the second through-hole 120, a situation in which the baffle 121 does not open even though the shutter 2 is opened can occur due to the surface tension of moisture remaining between the baffle 121 and the second through-hole 120. In consideration of this, as illustrated, the baffle 121 can be formed to be long enough to partially open the second through-hole 120 without completely covering the second through-hole 120. Although not illustrated, a protrusion can be formed on the surface of the baffle 121 to prevent the baffle 121 from being completely adhered to the second through-hole 120, or a protrusion can be formed on the bottom surface area of the periphery of the second through-hole 120, that is, the lower surface of the upper plate 105, to prevent the baffle 121 from being completely adhered to the second through-hole 120. Further, the baffle 121 is spaced apart from the second through-hole 120 when closed to prevent the second through-hole 120 from being completely closed, and the housing 100 is provided with a first protrusion to space the closed baffle 121 apart from the second through-hole 120.
[0065] In one embodiment, the housing 100 includes a top surface 101, a bottom surface 102, and a peripheral surface 103, the first through-hole 110 is located at the lower portion of the peripheral surface 103, the second through-hole 120 is located at the top surface 101, and the communication portion 150 is located to match the top surface 101. The first through-hole 110 is located at the bottom of the peripheral surface 103 corresponding to the first accommodation space 130, and a flow passage crossing the first accommodation space 130 is formed between the first through-hole 110 and the second through-hole 120.
[0066] The housing 100 includes a main body frame forming the entire outer body of the purifier humidification function. As shown, Figure 4 the main body frame includes an upper plate 105 forming an upper surface, a bottom plate forming a bottom surface, and side plates 106 forming two side surfaces. The upper plate 105, the bottom plate, and the side plates 106 are connected to be separable. The upper surface of the upper plate 105 is the top surface 101, and the lower surface of the bottom plate 107 is a part of the bottom surface 102. The two side plates 106 respectively abut to form the entire peripheral surface 103, and the two side plates 106 are surrounded by the outer edges of the upper plate 105 and the bottom plate.
[0067] In one embodiment, the side plates 106 are further provided with a display plate 104, as shown in Figure 1 , 4As shown, the position of the display board 104 corresponds to the first accommodation space 130, the display board 104 is detachably connected with the side plate 106, and the first through hole 110 is provided on the display board 104. Specifically, the display board 104 is made of transparent material and is used for displaying functional modules. The side plate 106 surrounds the middle frame member 200 and the humidifying module 300, and the side plate 106 has a notch, and the display board 104 is arranged corresponding to the notch.
[0068] The second through hole 120 is formed on the upper plate 105 forming the main body frame. The second through hole 120 is vertically through the upper plate 105, and the edge of the second through hole 120 is recessed towards the center. As shown, Figure 11 As shown, the upper plate 105, i.e. the top surface 101, is provided with a storage groove 122 parallel to the second through hole 120, and a magnetic member for attaching the opening and closing member 2 can be provided in the storage groove 122 of the upper plate 105. When the opening and closing member 2 is stored in the storage groove 122, it can be attached to the magnetic member to prevent the risk of loss.
[0069] The bottom plate forming the main body frame provides the bottom surface 102 of the first accommodation space 130, i.e. the part of the side plate 106, the upper plate 105 and the bottom plate together forming the outer periphery of the first accommodation space 130. In this case, the bottom surface 102 of the second space is open.
[0070] In one embodiment, the housing 100 includes a middle frame member 200, the middle frame member 200 includes a first support 210 and a second support 220, the first support 210 is arranged in parallel with the top surface 101 to form the communication part 150, and the second support 220 is used to divide the first accommodation space 130 and the second accommodation space 140.
[0071] Specifically, the main body frame forms the first accommodation space 130 and the second accommodation space 140 separated from each other by the middle frame member 200. For example, the middle frame member 200 can be formed as a partition plate of the front and rear spaces of the main body frame, and is located in the central area of the main body frame. In this case, the first accommodation space 130 can be the space in front of the middle frame member 200, and the second accommodation space 140 can be the space behind the middle frame member 200.
[0072] The middle frame member 200 extends in the vertical direction Figure 8 、 9 As shown, the upper and lower ends of the middle frame member 200 abut between the upper plate 105 and the lower plate 107. The first support 210 is arranged close to and abuts the upper plate 105, and the second support 220 is arranged close to and abuts the lower plate 107. The first support 210 and the second support 220 are integrally arranged and are different parts of the middle frame member 200.
[0073] As shown in Figure 8 , 9 , the lower plate 107 and the upper plate 105 are supported at both ends of the middle frame member 200, and the lower plate 107 and the upper plate 105 are butted against both ends of the side plate 106.
[0074] As shown in Figure 4 , 8 , 9, the first support 210 is in a ring groove structure, and the first support 210 includes a ring wall 213 and a slope bottom 211. The slope bottom 211 is capable of separating the communication part 150 and the second accommodating space 140, and the ring wall 213 surrounds the slope bottom 211 and encloses the communication part 150. That is, the communication part 150 can be defined as the internal space between the slope bottom 211 and the ring wall 213 of the first support 210. The ring wall 213 has an opening 151, and the slope bottom 211 also does not close the opening 151, and the opening 151 makes the communication part 150 communicate with the first accommodating space 130.
[0075] In one embodiment, at least part of the first support 210 is arranged to be inclined towards the first accommodating space 130. The slope bottom 211 has a certain slope, and in particular, the slope bottom 211 can be designed in an arc shape, which is more convenient for the humidification fluid to transition from the communication part 150 to the first accommodating space 130 or from the first accommodating space 130 to the communication part 150.
[0076] The first support 210 is provided with a humidification outlet 212, and the humidification outlet 212 is butted against the humidification module 300. The humidification outlet 212 is arranged on the slope bottom 211, and the humidification outlet 212 is located to face the second through hole 120 formed on the upper plate 105 and to guide the humidification fluid generated by the humidifier 1 to be discharged towards the second through hole 120.
[0077] The slope bottom 211 is located at a position away from the upper plate 105, so that the humidification outlet 212 can be away from the second through hole 120. In view of this, the communication part 150 can also be defined as the space for the water vapor sprayed from the humidification outlet 212 through the second through hole 120.
[0078] In one embodiment, the functional module is detachably connected to the second support 220. Specifically, the second support 220 is in a groove structure, and the upper edge of the groove wall of the groove-shaped second support 220 is connected to the slope bottom 211 of the first support 210, and the lower edge of the groove-shaped second support 220 is further extended to cover and connect the lower plate 107. The lower plate 107 or the second support 220 is detachably connected to the side plate 106, for example, the lower plate 107 or the second support 220 is provided with a magnetic member, and the corresponding half of the side plate 106 of the first accommodating space 130 is also provided with a magnetic member.
[0079] In one embodiment, the humidifying module 300 comprises a water tank 310, a humidifying core 330 and a vibrating member 350, the vibrating member 350 is arranged at the humidifying outlet 212, the vibrating member 350 is used to generate atomized humidifying fluid, the humidifying core 330 is communicated between the vibrating member 350 and the water tank 310. The humidifying module 300 and the plant module are arranged at two sides of the middle frame member 200.
[0080] The water tank 310 is installed in the second accommodating space 140. The water tank 310 is installed from the lower part of the humidifier 1 to the shell 100, the bottom of the water tank 310 closes the second accommodating space 140, so as to form the second accommodating space 140 by the middle frame member 200, the side plate 106 of the shell 100 and the bottom of the water tank 310. The humidifying outlet 212 and the vibrating member 350 are matched at the top of the second accommodating space 140.
[0081] In one embodiment, the sleeve 160 is arranged at the humidifying outlet 212, the sleeve 160 is sleeved at the humidifying outlet 212 and is used to install and dock the humidifying module 300. Specifically, the sleeve 160 comprises a middle through hole and a ring groove 162, the middle through hole comprises a first docking part 163 and a second docking part 164. The ring groove 162 is arranged at the outer periphery of the sleeve 160 and is used to dock the humidifying outlet 212, so that the sleeve 160 is arranged in the humidifying outlet 212, a part of the groove wall of the ring groove 162 is located at the upper surface of the humidifying outlet 212 and another part is located at the lower surface of the humidifying outlet 212, so as to complete the docking. The first docking part 163 is in a stepped shape, the middle part forms an annular wall surface, the first docking part 163 is used to install the vibrating member 350, and the side surface of the vibrating member 350 abuts against the annular wall surface, the through hole formed in the middle part of the annular wall surface is used to discharge the humidifying fluid. The second docking part 164 has an inner diameter larger than that of the first docking part 163, a stepped structure is formed at the second docking part 164, so that the humidifying core 330 or the corresponding structure abuts against the step.
[0082] Further, the edge of the upper surface of the sleeve 160, that is, the edge of the groove wall of the ring groove 162 located above the humidifying outlet 212, is convexly provided with a third limiting part 161, the third limiting part 161 is used to limit the baffle 121. The humidifying outlet 212 and the second through hole 120 are coaxially arranged, when the baffle 121 opens the second through hole 120, the baffle 121 falls to the communicating part 150 and is located near the humidifying outlet 212, so as to facilitate the baffle 121 to quickly respond when the opening and closing member 2 moves to close the second through hole 120, the third limiting part 161 arranged at the edge of the humidifying outlet 212 is used to limit the baffle 121 to a position not blocking the discharge of the humidifying fluid.
[0083] Referring to Figures 5-7 , Figures 5-7The structure diagram of the water tank 310 of the humidifier 1 in an embodiment of the present application is shown. The water tank 310 provided in the embodiment of the present application is used in the humidifier 1, and in particular, the water tank 310 is mainly used in the multifunctional humidifier 1.
[0084] The water tank 310 is configured to be used at the bottom of the humidifier 1. The water tank 310 includes a water tank 310 body and a press quick release mechanism 320. A water storage space is formed in the water tank 310 body. The press quick release mechanism 320 is arranged at the bottom of the water tank 310 body. The press quick release mechanism 320 is used to be operated by an external force to switch between a press state and an initial state. When the press quick release mechanism 320 is in the press state, the water tank 310 body can be separated from the shell 100 of the humidifier 1. When the press quick release mechanism 320 is reset to the initial state, the press quick release mechanism 320 is in butt joint with the shell 100, so that the water tank 310 body is installed to the humidifier 1.
[0085] The water tank 310 described above can be directly detached from the lower part of the shell 100 of the humidifier 1 by operating the press quick release mechanism 320, and only one action is needed. Only one action is needed to install the water tank 310. The water tank 310 is convenient and fast to detach and install. The water tank 310 is operated alone, and the detaching and installing process does not affect other structures of the humidifying module 300, which is convenient for realizing the structural design of the multifunctional humidifier 1.
[0086] In one embodiment, the press quick release mechanism 320 includes a button 321. One side of the button 321 is configured to be movably connected with the water tank 310 body. One side of the button 321 is configured to be in butt joint with the shell 100 of the humidifier 1 in the initial state.
[0087] Specifically, the movably connected button 321 moves relative to the water tank 310 body in a linear direction. When the button 321 is in the initial state, one end of the button 321 is in butt joint with the shell 100. The shell 100 limits the button 321, so that the water tank 310 body is installed in the corresponding position in the shell 100. When the button 321 is operated by the user to become the press state, the button 321 moves a certain distance relative to the water tank 310 body in the linear direction. The button 321 is separated from the shell 100, and the water tank 310 body can be separated from the shell 100.
[0088] In one embodiment, the bottom of the water tank 310 body is provided with a press groove 313, and the press quick release mechanism 320 is arranged in the press groove 313. The press groove 313 is an independent groove structure formed by concave setting of the water tank 310 body. The press groove 313 constitutes part of the outer surface of the water tank 310 body. The press quick release mechanism is arranged in the press groove 313 and moves in the press groove 313 in a linear direction.
[0089] In one embodiment, the quick-release mechanism 320 includes a button 321 and an elastic element 322. The button 321 is disposed within a pressing groove 313 and is movable relative to the pressing groove 313. The elastic element 322 abuts against the inner surface of the button 321 and the bottom of the pressing groove 313. The elastic element 322 provides a restoring force to the button 321 to return it from a pressed state to its initial state. When the external force disappears, the button 321 returns to its initial state from the pressed state.
[0090] In one embodiment, a first limiting part 3214 protrudes from one end of the button 321 facing the pressing groove 313. An abutting plate 323 is provided in the pressing groove 313. The first limiting part 3214 is located between the abutting plate 323 and the bottom of the groove. When the quick-release mechanism 320 is reset to the initial state, the first limiting part 3214 abuts against the surface of the abutting plate 323.
[0091] Specifically, the abutment plate 323 is spaced apart from the bottom of the groove. The gap between the abutment plate 323 and the bottom of the groove defines the minimum distance that the button 321 can move in a straight line. When the button 321 is operated by the user to a pressed state, the button 321 is limited by at least one of the bottom of the groove and the abutment plate 323. When the button 321 is in the initial state, the button 321 is limited by at least one of the bottom of the groove and the abutment plate 323. Further, in the embodiment shown in the figure, when the button 321 is operated by the user to a pressed state, the first limiting part 3214 abuts against the bottom of the groove to be limited by the bottom of the groove. When the button 321 is in the initial state, the first limiting part 3214 abuts against the abutment plate 323 to be limited by the abutment plate 323.
[0092] like Figure 7 As shown, button 321 includes a moving part 3215, which passes through the abutting plate 323. The abutting plate 323 has a through hole so that the moving part 3215 of button 321 can pass through, and the first limiting part 3214 is disposed between the abutting plate 323 and the bottom of the groove.
[0093] In one embodiment, the outward-facing side of the button 321 includes an operating part 3211 and a mating part 3212. The operating part 3211 is disposed on the outer periphery of the mating part 3212 and protrudes from the housing 100. The mating part 3212 is disposed inside the housing 100. The mating part 3212 is provided with a second limiting part 3213. When the quick-release mechanism 320 is reset to the initial state, the second limiting part 3213 abuts against the inner surface of the housing 100.
[0094] The moving part 3215 is located on the side of the key 321 away from the operating part 3211 and the docking part 3212. The shell 100 is provided with an operating hole, so that when the pressing quick release mechanism 320 is in the initial state, the operating part 3211 is exposed from the operating hole, and at this time, the second limiting part 3213 abuts against the shell 100 to realize the docking of the water tank 310 and the shell 100. The shell 100 is provided with a limiting groove matched with the second limiting part 3213. When the pressing quick release mechanism 320 is in the pressing state, the second limiting part 3213 is separated from the shell 100, and the water tank 310 can be disassembled.
[0095] In other embodiments, the second limiting part 3213 can also not be provided, and a stepped structure is formed between the operating part 3211 and the docking part 3212. The docking part 3212 as a whole forms a limiting structure, and the shell 100 is provided with a limiting groove matched with the shape of the docking part 3212 to realize connection.
[0096] In one of the embodiments, the pressing groove 313 is provided with a first fixed table 324, and one end of the elastic piece 322 is sleeved on the first fixed table 324.
[0097] And / or, the key 321 is provided with a second fixed table 325, and one end of the elastic piece 322 is sleeved on the second fixed table 325.
[0098] Specifically, the first fixed table 324 is arranged on the abutting plate 323 or the groove bottom of the pressing groove 313, and the shape of the first fixed table 324 is matched with the shape of the end of the elastic piece 322, for fixing one end of the elastic piece 322. For example, the first fixed table 324 is circular, the elastic piece 322 is spiral, and one end of the elastic piece 322 is sleeved on one end of the circular first fixed table 324. The second fixed table 325 is arranged on the surface of the key 321 away from the operating part 3211, and the shape of the second fixed table 325 is matched with the shape of the end of the elastic piece 322, for fixing one end of the elastic piece 322. For example, the second fixed table 325 is circular, the elastic piece 322 is spiral, and one end of the elastic piece 322 is sleeved on one end of the circular second fixed table 325.
[0099] In one of the embodiments, the humidifier 1 further comprises a humidifying module 300 for providing humidifying fluid, and the humidifying module 300 comprises the water tank 310 and a humidifying core 330, one end of the humidifying core 330 extends into the water tank 310, and the other end extends out of the water tank 310 and is arranged in extension.
[0100] The humidifying core 330 extends into the water tank 310 at one end, extends out of the water tank 310 at the other end, and extends within the second accommodating space 140 above the water tank 310, and extends to the humidifying outlet 212 at the bottom of the communication part 150. The humidifying module 300 further comprises a vibrating member 350 for generating atomized humidifying fluid, and the humidifying core 330 is in communication between the vibrating member 350 and the water tank 310.
[0101] In one embodiment, as shown in Figure 8 、 9 The humidifier 1 comprises a platform member 500, which comprises a platform part 510 and a sheath part 520. The platform part 510 is arranged in the middle of the humidifier 1, and the sheath part 520 is arranged between the platform part 510 and the shell 100. The upper end of the water tank 310 abuts against the platform part 510, and the end of the humidifying core 330 extending out of the water tank 310 is arranged within the sheath part 520.
[0102] Specifically, the platform member 500 is arranged within the second accommodating space 140 and fixedly connected with the middle frame member 200. The platform part 510 of the platform member 500 divides the second accommodating space 140 into an upper accommodating part 141 and a lower accommodating part 142 arranged in sequence along the vertical direction. The water tank 310 is arranged in the lower accommodating part 142, and a part of the humidifying core 330 and the vibrating member 350 are located in the upper accommodating part 141. The outer periphery of the platform part 510 abuts against the shell 100 and the middle frame member 200. After the water tank 310 is installed, the upper surface of the water tank 310 abuts against the lower surface of the platform part 510.
[0103] The humidifying core 330 is fixed to the platform member 500 and / or the middle frame member 200. The sheath part 520 is located above the platform part 510 and is in abutment between the middle frame member 200 and the platform part 510, forming a cavity for accommodating the humidifying core 330. In particular, the platform part 510 and the sheath part 520 are of an integrated structure.
[0104] The inner diameter of the second abutment part 164 is larger than that of the first abutment part 163, and a step structure is formed at the second abutment part 164, so that the upper end of the sheath part 520 abuts against the step. The sheath part 520 is provided with a reinforcing rib extending outward on the peripheral side, and the reinforcing rib is fixedly connected with the first support member 210 of the sleeve ring 160 or the middle frame member 200.
[0105] The humidifying module 300 further comprises a filter portion 360, which is sleeved on the outside of a part of the humidifying core 330 located in the water tank 310, the upper end of the filter portion 360 abuts against the lower surface of the platform member 500, the filter portion 360 is in communication with the cavity formed in the sheath portion 520 for accommodating the humidifying core 330, and thus the humidifying core 330 is fixed in the humidifier 1. The filter portion 360 is detachably connected with the platform member 500. The filter portion 360 is provided with filter holes to allow the water in the water tank 310 to pass through.
[0106] The main body of the water tank 310 comprises a base portion 311 and a water storage portion 312, the base portion 311 is provided with a pressing groove 313 and a pressing quick-release mechanism 320, and the water storage portion 312 is arranged above the base portion 311. The base portion 311 and the water storage portion 312 are composed of different materials, the base portion 311 is made of a material with higher strength, and the water storage portion 312 is made of a transparent material. The housing 100 is provided with a visual through hole, which is matched with the water storage portion 312 to display the water level change of the water tank 310. Further, the thickness of the base portion 311 is greater than that of the water storage portion 312, so as to form a slot at the upper edge of the base portion 311, and the water storage portion 312 is inserted into the slot.
[0107] In one of the embodiments, the humidifying module 300 further comprises a water level detection member 340 arranged in the water tank 310, which is used to detect the water level information in the water tank 310.
[0108] Specifically, one end of the water level detection member 340 extends into the water tank 310, and the other end is fixed to the platform portion 510. On the platform portion 510, outside the sheath portion 520, a fixing groove for accommodating the water level detection member 340 is arranged.
[0109] The upper surface of the water storage portion 312 of the water tank 310 is provided with a through hole 314 for allowing the humidifying core 330, the filter portion 360 and the water level detection member 340 to pass through. The edge of the through hole 314 abuts against the lower surface of the platform portion 510 or one end of the sheath portion 520. In one plane in the radial direction, from the outside to the inside, the main body of the water tank 310, the sheath portion 520, the filter portion 360 and the humidifying core 330 are sequentially sleeved.
[0110] In one of the embodiments, the second accommodating space 140 comprises an upper accommodating portion 141 and a lower accommodating portion 142 arranged in sequence in the vertical direction, the water tank 310 is arranged in the lower accommodating portion 142, and the humidifying core 330 extends and is arranged from the water tank 310 through the upper accommodating portion 141; the humidifier 1 further comprises a general control module 600, which is arranged in the upper accommodating portion 141.
[0111] Part of the humidifying core 330 and the vibration member 350 are located in the upper accommodating portion 141, the humidifying core 330 passes through the middle portion of the upper accommodating portion 141, and a space is provided between the humidifying core 330 and the inner surface of the shell 100, in which the general control module 600 is arranged. The water tank 310 is detachably arranged in the lower accommodating portion 142, and the lower surface of the water tank 310 constitutes the lower surface of the humidifier 1 after the water tank 310 is installed.
[0112] Further, the general control module 600 comprises a controller, a power supply 610 and an interface 620. The humidifier 1 further comprises an opening and closing member 2 for closing or opening the second through hole 120 and an identification element for sensing the state of the opening and closing member 2. The controller is used to control the operation of the humidifier 1 according to the information detected by the identification element, and when the set conditions for using the air purifier humidification function are met or the start-up signal is detected, the controller controls the power supply of the humidifier 1 and generates humidification fluid. The power supply 610 is a storage power supply 610, which is charged through the interface 620 arranged on the shell 100 and supplies power to the vibration member 350, the identification element and the controller through a circuit.
[0113] The general control module 600 comprises a control box 630, which integrates the elements in the general control module 600 and is fixedly connected with the middle frame member 200. The control box 630 encloses the elements in the general control module 600 to achieve waterproof effect. The control box 630 and the interface 620 are respectively located on both sides of the humidifying core 330.
[0114] In one embodiment, the humidifier 1 further comprises a switch module 640, and the shell 100 further comprises a third accommodating space 170, which is located above the first accommodating space 130 and adjacent to the communication portion 150, and is used to accommodate the switch module 640. The third accommodating space 170 is located in the upper portion of the first accommodating space 130 together with the communication portion 150 and is located near the lower surface of the upper plate 105. The third accommodating space 170 is independently formed by the upper plate 105 to avoid the influence of water vapor on electronic devices. The switch module 640 is in communication connection with the general control module 600, and the switch module 640 is used to send start-up or shutdown signals. The switch module 640 comprises a start-stop switch 641 and an illumination switch 642. The start-stop switch 641 sends an opening signal or a shutdown signal to control the start-up or shutdown of the humidifier 1, and the illumination switch 642 sends a light-on signal or a light-off signal to control the opening or closing of the light source in the first accommodating space 130. The switch module 640 is in electrical connection with the general control module 600, and the above-mentioned signals can be transmitted to the general control module 600 to perform corresponding control.
[0115] Any combination of the technical features in the above-described embodiments can be made, and for the sake of brevity, not all possible combinations are described, however, as long as there is no conflict, any combination of the technical features should be considered within the scope of the present disclosure.
[0116] The above-described embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the application. It should be pointed out that for ordinary skilled persons in the art, several modifications and improvements can be made without departing from the concept of the present application, and these all belong to the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the appended claims.
Claims
1. A multifunctional humidifier, characterized by, The humidifier (1) comprises: a housing (100) having a first through hole (110), a second through hole (120), a first accommodating space (130), a second accommodating space (140), and a communication part (150), the first accommodating space (130) and the second accommodating space (140) being communicated through the communication part (150), the first through hole (110) being arranged at a position corresponding to the first accommodating space (130), and the second through hole (120) being arranged at a position corresponding to the communication part (150); a functional module arranged in the first accommodating space (130), the functional module being arranged at a position spaced from the inner surface of the housing (100); and a humidifying module (300) arranged in the second accommodating space (140), the humidifying module (300) being configured to provide humidifying fluid to the communication part (150). The second through hole (120) has an open state and a closed state, when the second through hole (120) is in the open state, the humidifying fluid generated by the humidifying module (300) is discharged from the second through hole (120), and when the second through hole (120) is in the closed state, the humidifying fluid generated by the humidifying module (300) is discharged from the first through hole (110) through the functional module.
2. The multifunctional humidifier according to claim 1, wherein The functional module is one or more of a plant module, an aromatherapy module, a sterilization module, and a negative ion module.
3. The multifunctional humidifier according to claim 1, wherein The humidifier (1) further comprises an opening and closing member (2) configured to close or open the second through hole (120), and a recognition element configured to sense the state of the opening and closing member (2), when the recognition element detects that the opening and closing member (2) opens the second through hole (120), the humidifying module (300) works in a first working condition, and when the recognition element detects that the opening and closing member (2) closes the second through hole (120), the humidifying module (300) works in a second working condition.
4. The multifunctional humidifier according to claim 1, wherein The humidifier (1) further comprises an opening and closing member (2) configured to close or open the second through hole (120), and a baffle (121), when the opening and closing member (2) makes the second through hole (120) in the open state, the baffle (121) is separated from the second through hole (120), and when the opening and closing member (2) makes the second through hole (120) in the closed state, the baffle (121) blocks the second through hole (120).
5. The multifunctional humidifier according to claim 4, wherein The baffle (121) comprises a magnetic material, the opening and closing member (2) comprises a magnetic material, and when the opening and closing member (2) closes the second through hole (120), the opening and closing member (2) is configured to drive the baffle (121) to block the second through hole (120).
6. The multifunctional humidifier according to claim 1, wherein The housing (100) comprises a top surface (101), a bottom surface (102), and a peripheral side surface (103), the first through hole (110) is located at a lower part of the peripheral side surface (103), the second through hole (120) is located at the top surface (101), and the communication part (150) is arranged at a position matching the top surface (101).
7. The multifunctional humidifier according to claim 6, wherein The shell (100) comprises a middle frame member (200) comprising a first support (210) and a second support (220), the first support (210) being arranged in spaced apart relation with the top surface (101) to enclose the communication portion (150), and the second support (220) being used to divide the first receiving space (130) and the second receiving space (140).
8. The multifunctional humidifier according to claim 7, wherein At least a portion of the first support (210) is arranged in inclined relation towards the first receiving space (130).
9. The multifunctional humidifier according to claim 7, wherein The functional module is detachably connected to the second support (220).
10. The multi-functional humidifier according to claim 7, wherein The first support (210) is provided with a humidifying outlet (212) which is connected to the humidifying module (300).
11. The multifunctional humidifier according to claim 10, wherein The humidifying outlet (212) is provided with a collar (160) which is sleeved on the humidifying outlet (212), and the collar (160) is used to mount and connect the humidifying module (300).
12. The multi-functional humidifier according to claim 10, wherein The humidifying module (300) comprises a water tank (310), a humidifying core (330) and a vibrating member (350), the vibrating member (350) being arranged on the humidifying outlet (212) and being used to generate atomized humidifying fluid, and the humidifying core (330) being in communication between the vibrating member (350) and the water tank (310).
13. The multi-functional humidifier as claimed in claim 1, wherein The functional module comprises a plant unit and a mounting unit (400), and the mounting unit (400) is arranged in inclined relation in the first receiving space (130).