Humidifier accessory capable of improving atomization effect and humidifier with humidifier accessory

The one-piece waterproof ring and energy-gathering tube design solves the problems of complex assembly and material limitations of traditional atomizer accessories, achieving efficient and stable atomization effects and humidifier safety.

CN223435225UActive Publication Date: 2025-10-14DONGGUAN LUHANG IND CO LTD
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Patent Information

Application Number
CN202422908826.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-10-14
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

The waterproof ring and energy-gathering tube design of traditional atomizer accessories need to be manufactured and assembled separately, which increases the assembly steps and errors, and the material selection is limited, resulting in insufficient atomization effect and stability, especially poor performance on devices without energy-gathering tubes.

Method used

The waterproof ring and the energy-gathering tube are designed as one piece, and flexible materials such as rubber, polyvinyl chloride, nylon, silicone or TPE are used. The inner diameter of the energy-gathering tube decreases, and the hollow hole is aligned with the center of the waterproof ring. The inside is provided with an assembly groove and a welding position slot, the outside is provided with a wiring groove, and a waterproof protrusion is provided on the electrical box to achieve integrated installation.

Benefits of technology

It simplifies the assembly process, improves assembly efficiency and accuracy, reduces costs, enhances the atomization effect and equipment stability, adapts to different equipment, and improves the safety and reliability of the humidifier.

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Abstract

The utility model relates to the field of humidifier accessories, in particular to a humidifier accessory capable of improving the atomization effect and a humidifier with the humidifier accessory. A humidifier accessory capable of improving the atomization effect comprises a waterproof ring used for being assembled with an atomization unit and an energy gathering barrel integrally formed above the waterproof ring, and a plurality of water inlet holes are formed in the connecting position between the energy gathering barrel and the waterproof ring. Due to the design that the waterproof ring and the energy gathering barrel are integrally formed, the assembling process is greatly simplified. Traditionally, the waterproof ring and the energy-gathering barrel possibly need to be manufactured separately and assembled independently, so that not only is the assembly steps increased, but also errors in the assembly process can be caused. The integrated design avoids the problems, and the assembly efficiency and accuracy are improved. In addition, the cost can be reduced through the integrally-formed design; and through the one-step forming process, the material waste and the processing time are reduced, so that the cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the field of humidifier accessories, in particular to a humidifier accessory for improving atomization effect and a humidifier thereof. Background Art

[0002] The design and use of existing atomizer accessories present several significant drawbacks. Traditional atomizer accessories typically include a separate waterproof ring and energy-gathering tube, each of which must be manufactured and assembled separately. This design not only increases the number of assembly steps but can also lead to errors during assembly, impacting the overall performance and stability of the atomizer. Furthermore, the material options available for traditional atomizer accessories are limited, often failing to meet the requirements of different devices and application scenarios.

[0003] In addition, many atomizer devices on the market (such as humidifiers) only have a place to install a waterproof ring, but no energy-gathering tube. This leads to certain limitations in the atomization effect of these devices, and they cannot fully utilize the advantages of the energy-gathering tube to improve atomization efficiency and quality.

[0004] Therefore, in order to solve the problems existing in the prior art and improve the assembly efficiency and atomization effect of the atomizer accessories, a new type of atomization effect improving accessory and humidifier thereof are needed. Summary of the Invention

[0005] In order to solve the above problems, the utility model provides a humidifier accessory and a humidifier thereof that improves the atomization effect. The one-piece molding can be completed through a one-time molding process, which reduces material waste and processing time, thereby reducing costs.

[0006] To achieve the above-mentioned purpose, the technical solution adopted by the utility model is: a humidifier accessory for improving the atomization effect, including a waterproof ring for mounting an atomization unit and an energy-gathering cylinder integrally formed above the waterproof ring, and a plurality of water inlet holes are provided at the connection between the energy-gathering cylinder and the waterproof ring.

[0007] Furthermore, the energy-gathering cylinder and the waterproof ring are made of rubber, polyvinyl chloride, nylon, silicone or TPE.

[0008] Furthermore, the energy-gathering cylinder is provided with a hollow hole running through the upper end and the lower end thereof, and the hollow hole is aligned with the center of the waterproof ring.

[0009] Furthermore, the inner diameter of the energy-gathering cylinder decreases from top to bottom, and the cross section of the energy-gathering cylinder is circular, rectangular or triangular.

[0010] Furthermore, a circle of assembly grooves for assembling the atomization unit is provided on the inner side of the waterproof ring.

[0011] Furthermore, the outer side wall of the waterproof ring is provided with a wiring groove connected to the assembly groove.

[0012] Furthermore, the inner side of the waterproof ring is provided with a plurality of welding position slots connected to the bottom of the assembly slot.

[0013] Furthermore, the surface of the waterproof ring is provided with a plurality of circles of fitting protrusions.

[0014] The present application also provides a humidifier, including a humidifier housing and humidifier accessories for improving the atomization effect; wherein the humidifier housing includes an atomizing water tank located on the upper layer and an electrical box located on the lower layer, wherein the upper atomizing water tank is provided with a connecting hole connecting the atomizing water tank and the electrical box, and the electrical box is provided with a matching sleeve, wherein the energy-gathering cylinder passes through the connecting hole and extends into the atomizing water tank, and the waterproof ring is fitted in the matching sleeve.

[0015] Furthermore, a circle of waterproof protrusions is provided on the surface of the electrical box, and the waterproof protrusions are located between the communicating hole and the fitting sleeve.

[0016] The beneficial effect of the present invention is that the design of the waterproof ring and the energy-gathering cylinder being integrally formed greatly simplifies the assembly process. Traditionally, the waterproof ring and the energy-gathering cylinder may need to be manufactured and assembled separately, which not only increases the assembly steps but may also lead to errors in the assembly process. The one-piece design avoids these problems and improves assembly efficiency and accuracy. In addition, the one-piece design can also reduce costs. Traditionally, the waterproof ring and the energy-gathering cylinder may need to be purchased and processed separately, which increases material costs and processing costs. One-piece molding can be completed through a one-time molding process, reducing material waste and processing hours, thereby reducing costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic structural diagram of a first embodiment of an accessory for improving atomization effect.

[0018] Figure 2 yes Figure 1 Cross-sectional view of the foundation.

[0019] Figure 3 It is a schematic structural diagram of a second embodiment of an accessory for improving atomization effect.

[0020] Figure 4 It is a structural schematic diagram of a third embodiment of an accessory for improving atomization effect.

[0021] Figure 5 It is a schematic diagram of the atomization unit structure.

[0022] Figure 6 It is a schematic diagram of the humidifier shell structure.

[0023] Figure 7 It is a schematic diagram of the bottom structure of the humidifier housing.

[0024] Figure 8 It is a schematic diagram of the cross-sectional structure of the humidifier shell.

[0025] Explanation of the accompanying numbers: 1. Waterproof ring; 11. Assembly groove; 12. Wiring groove; 13. Welding position slot; 14. Mounting protrusion; 2. Energy gathering cylinder; 3. Water inlet hole; 4. Humidifier housing; 41. Atomizing water tank; 42. Electrical box; 421. Mounting sleeve; 422. Connecting hole; 4211. Waterproof protrusion; 423. First mounting bolt position; 43. Ventilation cavity; 5. Atomizing unit; 51. Atomizing sheet; 52. Welding point. DETAILED DESCRIPTION

[0026] See also Figures 1-8 As shown, the utility model relates to an accessory for improving the atomization effect, comprising a waterproof ring 1 for equipping an atomization unit and an energy-gathering cylinder 2 integrally formed above the waterproof ring 1, and a plurality of water inlet holes 3 are provided at the connection between the energy-gathering cylinder 2 and the waterproof ring 1. The design of the waterproof ring 1 and the energy-gathering cylinder 2 being integrally formed greatly simplifies the assembly process. Traditionally, the waterproof ring 1 and the energy-gathering cylinder 2 may need to be manufactured and assembled separately, which not only increases the assembly steps, but may also cause errors in the assembly process. The one-piece molding design avoids these problems and improves assembly efficiency and accuracy. In addition, the one-piece molding design can also reduce costs. Traditionally, the waterproof ring 1 and the energy-gathering cylinder 2 may need to be purchased and processed separately, which increases material costs and processing costs. One-piece molding can be completed through a one-time molding process, reducing material waste and processing hours, thereby reducing costs.

[0027] Furthermore, this accessory's design takes into account the many nebulizer devices on the market (such as humidifiers) that lack a built-in energy-gathering tube 2. These devices typically only have a mounting area for the waterproof ring 1, but no energy-gathering tube 2. The accessory's one-piece design allows for easy adaptation to these devices without requiring additional modification or adjustment. The integrated design of the waterproof ring 1 and energy-gathering tube 2 makes this accessory compatible with a wider range of nebulizer devices.

[0028] Overall, the design of the energy-gathering cylinder 2 is able to concentrate the shock waves generated by the atomization unit, thereby improving the atomization effect. This not only makes the mist more delicate and uniform, but also improves the efficiency and quality of atomization. Higher atomization effect means that users can enjoy a moist and comfortable air environment more quickly. At the same time, the one-piece design also reduces failure points and maintenance costs, improves the reliability and durability of the device, and thus enhances the overall user experience.

[0029] Furthermore, the energy-gathering cylinder 2 and the waterproof ring 1 are made of rubber, polyvinyl chloride, nylon, silicone, or TPE. These materials are all soft materials with good flexibility and elasticity. This enables the waterproof ring 1 and the energy-gathering cylinder 2 to better adapt to atomizer devices of different shapes and sizes, ensuring the tightness and stability of the installation. At the same time, these materials have good waterproof properties. In devices such as humidifiers, waterproofing is crucial because the equipment usually contains electrical components and circuits. If moisture penetrates, it may cause a short circuit or damage. Therefore, the use of materials with good waterproof properties can ensure the safety and reliability of the equipment. In this specific embodiment, the preferred material is silicone.

[0030] See also Figures 1-4 As shown, further, the energy-gathering cylinder 2 is provided with a hollow hole running through its upper and lower ends, and the hollow hole is aligned with the center of the waterproof ring 1. The design of the hollow hole ensures that the water mist can flow out smoothly from the inside of the energy-gathering cylinder 2, avoiding the reduction of the atomization effect due to obstruction. The water mist can diffuse directly upward or to the surroundings along the hollow hole, improving the uniformity and efficiency of the atomization. By adjusting the size and shape of the hollow hole, the direction of the water mist flow can be directional guided. This is especially important for application scenarios that require a specific atomization effect, which can ensure that the fragrance can be evenly distributed in the space.

[0031] See Figures 1-4 Furthermore, the inner diameter of the energy-gathering cylinder 2 decreases from top to bottom, and the cross-section of the energy-gathering cylinder 2 is circular, rectangular or triangular.

[0032] The design of the decreasing inner diameter of the energy-gathering cylinder 2 causes the water mist to be subjected to gradually increasing pressure when passing through the energy-gathering cylinder 2. This pressure change helps to further refine the water mist and improve the uniformity and fineness of the atomization. Moreover, the energy-gathering cylinder 2 with a decreasing inner diameter can also improve the distribution of the airflow. During the atomization process, the airflow usually flows along the inner wall of the energy-gathering cylinder 2. The design of the decreasing inner diameter can make the airflow more evenly distributed inside the energy-gathering cylinder 2, avoiding the difference in atomization effect caused by uneven airflow distribution. (Preferred in this application Figures 1-2 Structural scheme)

[0033] See also Figures 1-4As shown, further, a circle of assembly grooves 11 for assembling the atomizing unit is provided on the inner side of the waterproof ring 1. The design of the assembly groove 11 provides accurate positioning for the atomizing unit. During the installation process, the atomizing unit only needs to be aligned with the assembly groove 11 and placed therein, without the need for additional positioning or adjustment steps, which greatly simplifies the assembly process. Moreover, the assembly groove 11 can tightly fix the atomizing unit to prevent it from loosening or displacement during operation. This stable assembly method ensures a close fit between the atomizing unit and the waterproof ring 1, thereby improving the overall stability and reliability. The close fit between the assembly groove 11 and the atomizing unit enhances the overall sealing. In equipment such as humidifiers, waterproofing is of vital importance. The design of the assembly groove 11 prevents moisture from penetrating through the gap between the waterproof ring 1 and the atomizing unit, thereby improving the waterproof performance of the equipment.

[0034] See also Figure 2 As shown, further, the outer wall of the waterproof ring 1 is provided with a wiring groove 12 connected to the assembly groove 11. The wiring groove 12 provides an orderly channel for the electrical wires or signal lines, so that these lines can be neatly led out along the outer wall of the waterproof ring 1. This avoids the lines from being tangled together in a disorderly manner, and improves the neatness and aesthetics of the equipment. The wiring groove 12 can protect the electrical wires or signal lines from damage by the external environment. During the use of the equipment, the lines may be subjected to external forces such as friction, pulling or squeezing, and the design of the wiring groove 12 can provide certain protection for the lines and extend their service life. The design of the wiring groove 12 can also prevent water mist from penetrating into the interior of the device through the gap between the waterproof ring 1 and the electrical wires or signal lines. This further improves the waterproof performance and safety of the equipment.

[0035] See also Figures 2-5 As shown, further, the inner side of the waterproof ring 1 is provided with a number of welding position retaining grooves 13 that are connected to the bottom of the assembly groove 11. Since in this embodiment, the atomizing unit 5 includes an atomizing sheet 51 and a wire welded on the atomizing sheet 51, and two welding points 52 are provided on the wire and the atomizing sheet 51, the welding position retaining groove 13 can be accurately aligned with the welding position (welding point 52) ​​of the atomizing unit to ensure the position stability of the atomizing unit during the assembly process. This precise positioning avoids shaking or offsetting of the atomizing unit during the installation process, and improves the accuracy and reliability of the assembly. The welding position retaining groove 13 can tightly clamp the welding point 52 of the atomizing unit to prevent it from loosening during operation. This stable assembly method ensures a close fit between the atomizing unit and the waterproof ring 1, and improves the overall stability and durability.

[0036] See also Figures 5-8As shown, the present application also provides a humidifier, including a humidifier housing 4 and humidifier accessories for improving the atomization effect; wherein the humidifier housing 4 includes an atomizing water tank 41 located on the upper layer and an electrical box 42 located on the lower layer, wherein the upper atomizing water tank 41 is provided with a connecting hole connecting the atomizing water tank 41 and the electrical box 42, and the electrical box 42 is provided with a fitting sleeve 421, wherein the energy collecting cylinder 2 passes through the connecting hole 422 and extends into the atomizing water tank 41, and the waterproof ring 1 is fitted in the fitting sleeve 421.

[0037] The humidifier design provided in this application cleverly combines the humidifier housing 4 with humidifier accessories that enhance the atomization effect, thereby achieving a highly efficient and practical humidification device. The following is a detailed description of the humidifier design:

[0038] The humidifier housing 4 adopts a layered design. The upper layer is the atomizing water tank 41, which is responsible for storing and supplying the water required for humidification; the lower layer is the electrical box 42, which has built-in electrical components and control circuits to provide power and control for the humidifier. A connecting hole is provided between the atomizing water tank 41 and the electrical box 42. This design allows the energy collecting cylinder 2 to pass through, realizing the connection between the water tank and the electrical part, while ensuring the compactness and integrity of the structure. A mounting sleeve 421 is provided on the electrical box 42 for mounting the waterproof ring 1, which is an accessory of the humidifier that improves the atomization effect. This design not only facilitates the installation and disassembly of accessories, but also ensures a close fit between the waterproof ring 1 and the electrical box 42, thereby improving the waterproof performance.

[0039] The energy-gathering cylinder 2 passes through the connecting hole and extends into the atomizing water tank 41. Its special decreasing inner diameter design and cross-sectional shape selection help focus energy and increase pressure, thereby optimizing the atomization effect. The presence of the energy-gathering cylinder 2 makes the water mist more delicate and uniform, thereby improving the humidification efficiency. The waterproof ring 1 is mounted in the mounting sleeve 421 of the electrical box 42, and through a tight fit, the waterproof performance of the humidifier is ensured. At the same time, the assembly groove 11 and the welding position slot 13 design on the inner side of the waterproof ring 1 further enhance the stability of the assembly and the quality of welding.

[0040] Therefore, the overall humidifier achieves efficient and uniform humidification effects through the optimized design of the energy-gathering cylinder 2 and the close fit of the waterproof ring 1. This not only improves the humidification speed, but also ensures the comfort and health of humidification. The layered design of the humidifier and the use of the waterproof ring 1 effectively prevent the corrosion of electrical components by moisture, thereby improving the safety and reliability of the equipment. At the same time, the design of the connecting hole and the mounting sleeve 421 also takes into account the safety and stability of the structure. The easy-to-install and easy-to-disassemble design of the humidifier accessories that improve the atomization effect makes the maintenance of the humidifier simpler and more convenient. Users can easily replace or clean accessories to extend the service life of the humidifier.

[0041] Furthermore, the integrated design of the waterproof ring 1 and the energy-gathering cylinder 2 reduces the number of components in the humidifier, making the overall structure more compact. This helps save space and makes the humidifier easier to place and carry. Integrated designs often employ modular or one-click installation methods, making the humidifier installation process simpler and faster. Users no longer need to spend extensive time and effort assembling and adjusting individual components; simply follow the instructions to complete the installation.

[0042] Furthermore, the surface of the electrical box 42 is also provided with a circle of waterproof protrusions 4211, which are located between the connecting hole and the fitting sleeve 421, and the waterproof protrusions 4211 cooperate with the gap between the fitting protrusions 14 on the surface of the waterproof ring 1.

[0043] The gap between the waterproof protrusion 4211 and the fitting protrusion 14 forms an additional waterproof barrier. When moisture attempts to penetrate the electrical box 42 through the gap between the connecting hole and the fitting sleeve 421, this waterproof barrier can effectively block the moisture and ensure the safety of the electrical components. The design of the waterproof protrusion 4211 requires moisture to overcome more obstacles during the penetration process. Even if moisture passes through the first waterproof line (such as the waterproof ring 1), the waterproof protrusion 4211 can block it outside the electrical box 42, further reducing the risk of moisture penetration.

[0044] Furthermore, several first mounting bolt positions 423 are provided on the outside of the mounting sleeve 421. After the waterproof ring is mounted within the corresponding mounting sleeve, a sealing cover can be installed through these first mounting bolt positions 423. This sealing cover covers the waterproof ring 1. By installing the sealing cover through the first mounting bolt positions 423, the waterproof ring 1 is securely fixed within the mounting sleeve 421. This design prevents the waterproof ring 1 from loosening or falling off due to vibration or impact during use, thereby improving the overall stability of the humidifier.

[0045] Among them, a further optimization scheme is to cover the atomizing water tank 41 with a humidifier cover (with a humidification port on the top); and a blowing device (a fan unit can be used) is provided in the electrical box 42, and an independent ventilation cavity 43 is provided in the atomizing water tank 41, which extends all the way to the top of the atomizing water tank 41, wherein the air outlet of the fan unit is connected to the ventilation cavity 43, and the air is mechanically blown up by the fan unit, and then enters the atomizing water tank 41 through the ventilation cavity 43, which can push the water mist in the atomizing water tank 41 to be blown out from the humidification port.

[0046] The ventilation cavity 43 extends to the top of the atomizing water tank 41, providing a smooth channel for the water mist to rise. Under the blowing of the fan, the water mist can rise rapidly along the ventilation cavity 43 and diffuse evenly into the air through the humidification port. The design of the ventilation cavity 43 helps to expand the diffusion range of the water mist. By optimizing the flow path of the airflow, the water mist can be blown into the air more widely, thereby improving the humidification efficiency of the humidifier. The use of the ventilation cavity 43 in conjunction with the fan significantly improves the humidification speed of the humidifier. The airflow can quickly blow the water mist out of the humidification port, causing the humidity in the air to increase rapidly. By optimizing the airflow path and promoting the diffusion of water mist, the ventilation cavity 43 enhances the humidification effect of the humidifier. The water mist can be more evenly distributed in the air, improving the overall performance of the humidifier.

[0047] The above embodiments are merely descriptions of preferred embodiments of the present invention and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various modifications and improvements made to the technical solutions of the present invention by ordinary engineering technicians in this field should fall within the scope of protection determined by the claims of the present invention.

Claims

1. A humidifier accessory for improving atomization effect, characterized in that: It includes a waterproof ring for assembling an atomization unit and an energy-gathering cylinder integrally formed above the waterproof ring. A plurality of water inlet holes are provided at the connection between the energy-gathering cylinder and the waterproof ring.

2. A humidifier accessory for improving atomization effect according to claim 1, characterized in that: The energy-gathering cylinder and the waterproof ring are made of rubber, polyvinyl chloride, nylon, silicone or TPE.

3. A humidifier accessory for improving atomization effect according to claim 1, characterized in that: The energy-gathering cylinder is provided with a hollow hole penetrating the upper end and the lower end thereof, and the hollow hole is aligned with the center of the waterproof ring.

4. A humidifier accessory for improving atomization effect according to claim 1, characterized in that: The inner diameter of the energy-gathering cylinder decreases from top to bottom, and the cross section of the energy-gathering cylinder is circular, rectangular or triangular.

5. A humidifier accessory for improving atomization effect according to claim 1, characterized in that: The inner side of the waterproof ring is also provided with a circle of assembly grooves for assembling the atomization unit.

6. A humidifier accessory for improving atomization effect according to claim 5, characterized in that: The outer side wall of the waterproof ring is provided with a wiring groove which is communicated with the assembly groove.

7. A humidifier accessory for improving atomization effect according to claim 6, characterized in that: The inner side of the waterproof ring is also provided with a plurality of welding position clamping grooves which are communicated with the bottom of the assembly groove.

8. The humidifier accessory for improving atomization effect according to claim 1, characterized in that: The surface of the waterproof ring is convexly provided with a plurality of circles of fitting protrusions.

9. A humidifier, characterized in that: It comprises a humidifier shell and a humidifier accessory for improving the atomization effect as described in any one of claims 1 to 8; wherein the humidifier shell comprises an atomizing water tank located on the upper layer and an electrical box located on the lower layer, wherein the upper atomizing water tank is provided with a connecting hole connecting the atomizing water tank and the electrical box, and the electrical box is provided with a fitting sleeve, wherein the energy-gathering cylinder passes through the connecting hole and extends into the atomizing water tank, and the waterproof ring is fitted in the fitting sleeve.

10. A humidifier according to claim 9, characterized in that: The surface of the electrical box is also provided with a circle of waterproof protrusions, which are located between the communicating hole and the fitting sleeve.