Nebulizing device

The nebulizing device integrates a nebulization assembly and reservoir in a single housing, addressing structural issues of existing nebulizers by ensuring stable and efficient nebulization with a compact design, reducing maintenance and enhancing user-friendliness.

DE202026100739U1Active Publication Date: 2026-04-02YU XIAOQING BIJIE CITY
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Patent Information

Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-02-11
Publication Date
2026-04-02

AI Technical Summary

Technical Problem

Existing nebulizer devices suffer from a dispersed structure, requiring complex piping systems that lead to blockages, leakage, and instability in atomization efficiency, making them bulky, unreliable, and difficult to use.

Method used

A nebulizing device with a compact design integrating a nebulization assembly and reservoir in a single housing, featuring a direct supply of nebulization medium to the assembly, optimized inhalation path, and simplified structure for stable and efficient nebulization.

Benefits of technology

Ensures consistent nebulization, reduces maintenance costs, and improves user-friendliness by providing a stable and efficient nebulization process with a compact and reliable design.

✦ Generated by Eureka AI based on patent content.

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Abstract

Nebulizing device, characterized in that it comprises a housing (10) wherein the housing (10) is provided with a nebulizing arrangement (1) and a storage chamber (20) for receiving a nebulizing medium; wherein the nebulizing arrangement (1) is used for nebulizing the nebulizing medium in the storage chamber (20).
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Description

TECHNICAL AREA

[0001] The present utility model relates to the technical field of nebulization of the nebulization medium, in particular a nebulization device. STATE OF THE ART

[0002] In a variety of fields such as healthcare, personal care, and aromatherapy, the nebulizer device has become a widely used core piece of equipment, as it is able to convert the liquid nebulizer medium into a nebulized form that can be inhaled or used by the user to meet the diverse needs of the user for precise drug delivery, fresh air, and physical and mental relief.

[0003] In the prior art, atomizing devices typically suffer from a dispersed structure, resulting in a large overall volume and requiring more space. Furthermore, complex additional piping systems are necessary to supply the atomizing medium, which can lead to blockages, leakage, and other malfunctions. At the same time, the long path required to transport the atomizing medium is likely to result in instability in atomizing efficiency, making it difficult to ensure consistent atomization and preventing users from fully meeting their requirements for compactness, reliability, and ease of use. CONTENTS OF THE PRESENT USE SAMPLE

[0004] The purpose of the present utility model is to provide a fogging device in order to solve the problem of the insufficient practicality of fogging devices in the prior art.

[0005] The present utility model is realized in the following manner: a nebulizing device comprising a housing, wherein the housing is provided with a nebulizing arrangement and a reservoir for receiving a nebulizing medium; wherein the nebulizing arrangement is used for nebulizing the nebulizing medium in the reservoir.

[0006] Optionally, the housing is equipped with a connection structure; the connection structure being used for detachable connection to an inhalation hood, with a user inhaling the nebulized nebulizing medium by attaching the inhalation hood.

[0007] Optionally, the housing includes a seat and a handheld nebulizer end, the seat and handheld nebulizer end being connected by a connecting tube.

[0008] Optionally, the handheld nebulizer end is equipped with a storage chamber.

[0009] Optionally, the housing has an operating surface, the operating surface being equipped with comb teeth and a nebulizing opening.

[0010] Optionally, the connecting structure includes a protruding connecting ring, wherein the connecting ring is provided with a connecting opening for connecting to the inhalation hood, and wherein the connecting ring is connected to the reservoir; wherein the storage chamber is provided on an underside with a bottom wall, wherein the bottom wall is arranged such that it extends downwards in a direction towards the nebulization arrangement in order to direct the nebulization medium into the storage chamber in such a way that it converges towards the nebulization arrangement.

[0011] Optionally, the housing is provided with a liquid guide element, wherein one end of the liquid guide element extends into the reservoir, and another end of the liquid guide element extends to the atomizing arrangement and rests against the atomizing arrangement.

[0012] Optionally, the housing is provided with a mounting tube, wherein the mounting tube has a mounting groove, wherein the fluid guide element is firmly mounted in the mounting groove, wherein the mounting groove is provided with a spring on its underside, and wherein a lower end of the fluid guide element rests against the spring; wherein the mounting tube has an immersion section that is arranged in the reservoir, wherein the immersion section is provided with several water-permeable holes, wherein the several water-permeable holes are spaced apart along a circumferential direction of the mounting tube, and wherein the water-permeable holes connect the mounting groove to the reservoir; wherein the atomizing medium enters the mounting groove in the reservoir via the water-permeable holes, so that the liquid guide element continuously adsorbs the atomizing medium.

[0013] The misting system optionally includes a misting plate.

[0014] Optionally, the storage chamber is provided with an outlet for the nebulizing medium, with the nebulizing arrangement being positioned accordingly on an inside side of the outlet.

[0015] In comparison to the prior art, the present utility model provides a nebulization device that integrates a nebulization assembly and a reservoir in a single housing and features a compact structure. The reservoir directly supplies the nebulization medium to the nebulization assembly, and the nebulization function of the assembly achieves efficient nebulization and direct dispensing of the nebulization medium, reducing operating and maintenance costs, ensuring the stability of the nebulization medium supply, and improving user-friendliness and the consistency of the nebulization effect. BRIEF DESCRIPTION OF THE DRAWING Fig. Figure 1 shows a schematic representation of the structure of a nebulizing device according to embodiment 1 of the present utility model; Fig. Figure 2 shows a schematic sectional view of the nebulizing device according to embodiment 1 of the present utility model; Fig. Figure 3 shows a schematic representation of the structure of a nebulizing device according to an embodiment 2 of the present utility model; Fig. Figure 4 shows a schematic sectional view of the misting device according to embodiment 2 of the present utility model; Fig. Figure 5 shows a schematic sectional view of the nebulizing device according to embodiment 2 of the present utility model; Fig. Figure 6 shows a schematic representation of the structure of a mounting tube, a liquid guide element and a top cover in the atomizing device according to embodiment 2 of the present utility model; Fig. Figure 7 shows a schematic representation of the structure of a fogging device of the present utility model; Fig. Figure 8 shows a schematic representation of the structure of a fogging device of the present utility model; Fig. Figure 9 shows a schematic representation of the structure of a fogging device of the present utility model. DETAILED DESCRIPTION

[0016] To clarify and explain the subject matter, technical solutions, and advantages of this utility model, it is described in more detail below with accompanying drawings and examples. It is understood that the specific examples described here serve only to illustrate this utility model and are not intended to limit its scope.

[0017] The present utility model is described in more detail below in conjunction with specific examples of its implementation.

[0018] Identical or similar designations in the accompanying drawings of the exemplary embodiment refer to identical or similar parts. In the description of this utility model, positional designations such as top, bottom, left, right, etc., are to be understood as referring to positional or locational relationships based on the positions shown in the drawings. These designations serve solely to simplify and facilitate the description of this utility model and are not to be understood as requiring that the devices or elements mentioned be designed, operated, or positioned in a specific orientation.The terms used in the accompanying drawings to describe the spatial relationships therefore serve only as exemplary illustrations and are not to be understood as a limitation of the present utility model, and the specific meanings of the mentioned terms can be understood as such by experts in individual cases.

[0019] With reference to the Fig. 1 to Fig. Figure 9 shows a preferred embodiment of the present utility model.

[0020] The present utility model provides a nebulizing device comprising a housing 10, wherein the housing 10 is provided with a nebulizing arrangement 1 and a reservoir 20 for receiving a nebulizing medium; wherein the nebulizing arrangement 1 is used to nebulize the nebulizing medium in the reservoir 20. The nebulizing device can be a humidifier, a table nebulizer, a medical nebulizer, a handheld spray nebulizer, or a pet comb that sprays a nebulizing medium.

[0021] The above nebulization device integrates a nebulization assembly 1 and a reservoir 20 into a housing 10 and has a compact structure. The reservoir 20 directly supplies the nebulization medium to the nebulization assembly 1, and the nebulization function of the nebulization assembly 1 achieves efficient nebulization and direct dispensing of the nebulization medium, reducing operating and maintenance costs, ensuring the stability of the nebulization medium supply, and improving ease of use and the consistency of the nebulization effect.

[0022] In this embodiment, with reference to the Fig. Figures 1 to 2 describe an embodiment 1. The housing 10 is provided with a connection structure 2, which is used for detachable connection to an inhalation hood 3. A user inhales the nebulized nebulizer medium by attaching the inhalation hood 3. By adapting the connection structure 2 in the housing 10 to the inhalation hood 3, an inhalation path for the nebulizer medium is optimized to improve convenience and sealing. The flexible disassembly and assembly of the inhalation hood 3 facilitates cleaning and replacement and allows for adaptation to different usage requirements.

[0023] In particular, the connection structure 2 comprises a projecting connecting ring 40, wherein the connecting ring 40 is provided with a connecting opening 41 for connecting to the inhalation hood 3, and wherein the connecting ring 40 is connected to the reservoir 20. In this way, the projecting connecting ring 40 with the special connecting opening 41 not only provides a solid, removable connection of the inhalation hood 3, but also ensures a smooth conveyance of the nebulizing medium by means of a connection design between the connecting ring 40 and the reservoir 20.

[0024] In this embodiment, the housing 10 comprises a seat 4 and a handheld nebulizer end 5, wherein the seat 4 and the handheld nebulizer end 5 are connected to each other by a connecting tube 6. In this way, the device is a table nebulizer, wherein the handheld nebulizer end 5 is provided with a hood.

[0025] The handheld nebulizer end 5 is provided with a reservoir 20. The nebulizer assembly 1 is provided in the seat body 4, wherein the nebulizer assembly 1 is an air pump, wherein the air is compressed by the air pump and the compressed air is discharged through the connecting tube 4 into the reservoir of the handheld nebulizer end 5, and wherein the nebulizer medium in the reservoir 20 is conveyed by the air to achieve nebulization.

[0026] In this embodiment, the housing 10 has an operating surface 70, the operating surface 70 being provided with comb teeth 71 and a misting opening 72. In this way, the device functions as a pet comb that can spray the misting medium to comb the pet's hair through the comb teeth 71 and spray the misting medium through the misting opening 72 to achieve grooming. The housing 10 is in the shape of a comb.

[0027] The reservoir 20 is provided on its underside with a bottom wall 21, the bottom wall 21 being arranged such that it extends downwards in a direction facing the nebulization arrangement 1 in order to guide the nebulization medium into the reservoir 20 so that it converges towards the nebulization arrangement 1. In this way, the nebulization arrangement 1 ensures a stable supply of liquid, thereby further improving the consistency of the nebulization effect and the utilization rate of the nebulization medium.

[0028] The nebulizing medium is directed through the lower wall 21 to the outlet of the storage chamber 20.

[0029] Operating procedure: The inhalation hood 3 is detachably connected to the housing 10 via the connecting ring 40 and the connecting opening 41; the nebulizing medium in the reservoir 20 is guided through the downwardly sloping lower wall 21 and fed convergently to the nebulizing assembly 1; after the device is switched on, the nebulizing assembly 1 nebulizes the nebulizing medium, and the nebulized medium is conveyed to the inhalation hood 3 via the connecting ring 40, and the user can inhale it by attaching the inhalation hood 3; the inhalation hood 3 can be removed for cleaning after use, and the corresponding opening in the reservoir 20 can be opened to add the nebulizing medium when refilling, and then it can be properly stored.

[0030] In this embodiment, with reference to the Fig.Figures 3 to 4 show an embodiment 2. The housing 10 is provided with a liquid guide element 62, one end of which extends into the reservoir 20, while the other end extends to and rests against the atomizing assembly 1. A conveying channel for the atomizing medium can be constructed directly without complex piping, which not only ensures a stable supply of the atomizing medium but also simplifies the structure and improves the operational reliability of the atomizing assembly 1. It can be used for a humidifier.

[0031] The fluid guidance element 62 can be a water-absorbing strip, a cotton core, or a fiber bundle.

[0032] The liquid guide element 62 directs the nebulizing medium to the outlet of the storage chamber 20.

[0033] The housing 10 is provided with a mounting tube 60, the mounting tube 60 having a mounting groove, the fluid guide element 62 being fixedly mounted in the mounting groove, the mounting groove being provided on a bottom side with a spring 61, the lower end of the fluid guide element 62 bearing against the spring 61; the mounting tube 60 having an immersion section 620 arranged in the reservoir 20, the immersion section 620 being provided with several water-permeable holes 63, the several water-permeable holes 63 being spaced apart along a circumferential direction of the mounting tube 60, the water-permeable holes 63 connecting the mounting groove to the reservoir 20;

[0034] The atomizing medium in the reservoir 20 enters the mounting groove through the water-permeable holes 63, so that the liquid guide element 62 continuously adsorbs the atomizing medium. In this way, the positioning and mounting of the liquid guide element 62 is achieved, and at the same time, the connection between the liquid guide element 62 and the atomizing plate 30 is ensured by the elastic contact of the spring 61 with a groove bottom.

[0035] The housing 10 comprises a housing body 12 and a top cover 11, wherein the top cover 11 is detachably connected to the top of the housing body 12, leaving the top of the reservoir 20 open. Once connected to the housing body 12, the top cover 11 closes the top of the reservoir 20. This allows for convenient refilling of the nebulizing medium in the reservoir 20, while the top cover 11 simultaneously seals the reservoir 20 to ensure internal sealing. The structure is simple and maintenance is convenient.

[0036] Operating procedure: The top cover 11 of the housing 10 is removed, the atomizing medium is refilled into the open reservoir 20, and then the top cover 11 is closed to seal the reservoir 20; The atomizing medium in the reservoir 20 enters the mounting groove through the several water-permeable holes 63 in the immersion section 620 of the mounting tube 60 and is adsorbed by the liquid guide element 62 fixed in the mounting groove, and the liquid guide element 62 is firmly attached to the atomizing plate 30 of the atomizing assembly 1 under the elastic bearing of the spring 61 on the underside to continuously convey the atomizing medium;The device is activated by a control button 52 on the housing 10; a power supply 53 supplies the atomizing plate 30 with current; the atomizing plate 30 atomizes the atomizing medium conveyed by the liquid guide element 62, and the atomized medium is discharged to the outside via the atomizing outlet on the housing 10; In use, the device can be switched off by the control button 52, and the top cover 11 can be removed again when the atomizing medium is refilled later, and the device can be properly stored to protect its stability during use.

[0037] Optionally, the misting arrangement 1 includes a misting plate 30.

[0038] In this embodiment, the housing 10 is provided with an independently arranged circuit chamber 50, and the circuit chamber 50 is equipped with a circuit board 51 and a power supply 53, and the circuit board 51 is connected to the power supply 53 and the nebulizing plate 30, respectively. Mutual interference with the storage chamber 20 is avoided, the reliability of the power supply is ensured, and the safety during use of the device is increased.

[0039] In particular, the circuit board 51 is provided with a power supply terminal, and the power supply terminal forms a control knob 52 on the housing 10, and the control knob 52 is used to control the switching on and off of the nebulizing arrangement 1. The control knob 52 is directly connected to the nebulizing arrangement 1, and the starting and stopping of the nebulization can be achieved by simple operation, making operation convenient.

[0040] The storage chamber 20 is provided with an outlet 22 for the nebulizing medium, the nebulizing arrangement 1 being arranged accordingly on an inner side of the outlet 22. This shortens the discharge path for the nebulizing medium and ensures a rapid and concentrated discharge of the nebulizing medium. The foregoing is only a preferred embodiment of the present invention and is not intended to limit the present utility model, nor does it imply that all modifications, equivalent replacements, improvements, etc., made within the scope of the spirit and principles of the present utility model shall be included within the scope of protection of the present utility model.

Claims

[1] Misting device, characterized by , that it comprises a housing (10) wherein the housing (10) is provided with a nebulizing arrangement (1) and a storage chamber (20) for receiving a nebulizing medium; wherein the nebulizing arrangement (1) is used for nebulizing the nebulizing medium in the storage chamber (20). [2] Misting device according to claim 1, characterized by , that the housing (10) is provided with a connection structure (2); wherein the connection structure (2) is used for detachable connection with an inhalation hood (3), wherein a user inhales the nebulized nebulizing medium by attaching the inhalation hood (3). [3] Misting device according to claim 1, characterized by , that the housing (10) comprises a seat body (4) and a handheld nebulizing end (5), wherein the seat body (4) and the handheld nebulizing end (5) are connected to each other by a connecting tube (6). [4] Misting device according to claim 3, characterized by , that the handheld nebulizing end (5) is provided with a storage chamber (20). [5] Misting device according to claim 1, characterized by , that the housing (10) has an operating surface (70), wherein the operating surface (70) is provided with comb teeth (71) and a nebulizing opening (72). [6] Misting device according to claim 2, characterized by, that the connecting structure (2) comprises a projecting connecting ring (40), wherein the connecting ring (40) is provided with a connecting opening (41) for connecting to the inhalation hood (3), and wherein the connecting ring (40) is connected to the reservoir (20) for liquid; wherein the reservoir (20) is provided on a bottom side with a bottom wall (21), wherein the bottom wall (21) is arranged such that it extends downwards in a direction towards the nebulization arrangement (1) in order to direct the nebulization medium into the reservoir (20) in such a way that it converges towards the nebulization arrangement (1). [7] Misting device according to claim 1, characterized by, that the housing (10) is provided with a liquid guide element (62), wherein one end of the liquid guide element (62) extends into the storage chamber (20), wherein another end of the liquid guide element (62) extends to the atomizing arrangement (1) and rests against the atomizing arrangement (1). [8] Misting device according to claim 7, characterized bythat the housing (10) is provided with a mounting tube (60), wherein the mounting tube (60) has a mounting groove, wherein the fluid guide element (62) is firmly mounted in the mounting groove, wherein the mounting groove is provided on a bottom side with a spring (61), wherein a lower end of the fluid guide element (62) bears against the spring (61); wherein the mounting tube (60) has an immersion section (620) which is arranged in the reservoir (20), wherein the immersion section (620) is provided with several water-permeable holes (63), wherein the several water-permeable holes (63) are spaced apart along a circumferential direction of the mounting tube (60), wherein the water-permeable holes (63) connect the mounting groove to the reservoir (20);wherein the atomizing medium in the reservoir (20) enters the mounting groove via the water-permeable holes (63), so that the liquid guide element (62) continuously adsorbs the atomizing medium. [9] Nebulizing device according to claim 1, characterized by , that the misting arrangement (1) comprises a misting plate (30). [10] Nebulizing device according to any one of claims 1 to 9, characterized by , that the storage chamber (20) is provided with an outlet (22) for the nebulizing medium, wherein the nebulizing arrangement (1) is arranged accordingly on an inside of the outlet (22).