Storage tank type atomizer
By designing the motor compartment, pump compartment, storage tank structure, and gear system of the storage tank atomizer, the problems of increased volume and energy waste in existing atomizers during large-scale atomization have been solved, achieving a portable, stable, and efficient atomization effect.
Patent Information
- Application Number
- CN202520024373.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing atomizers significantly increase in size when large-area, long-distance atomization is required, making them inconvenient to carry and consuming a lot of energy. The operation of multiple devices also leads to energy waste.
A tank-type atomizer was designed. Through the top-to-bottom structure of the motor compartment, pump compartment and storage tank, combined with a gear system, it achieves stable liquid transmission and efficient atomization, integrates power resources, and reduces equipment size and energy consumption.
This invention achieves a portable atomizer suitable for multiple occasions, reducing device size and energy consumption while ensuring the stability and efficiency of the atomization process.
Smart Images

Figure CN223788740U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tank-type atomizers, and in particular to a tank-type atomizer. Background Technology
[0002] Nebulizers, whether used as medical devices or everyday items, are highly favored for their sophisticated atomization technology. This technology can efficiently convert liquid medications, purified water, or other therapeutic liquids into tiny droplet particles down to the micrometer level. These tiny droplets form a fine mist on a macroscopic scale, making them ideal for localized treatment or improving the indoor environment.
[0003] However, in actual use, when encountering situations where atomization is required over a large area and over a long distance, it is often necessary to connect a longer hose and an additional pump to enhance the liquid delivery capacity. But this will significantly increase the size of the entire atomization system, making it not only difficult to carry, but also causing many inconveniences when moving or storing it. In addition, the simultaneous operation of multiple independent devices also leads to energy waste, as each device needs to consume a certain amount of energy to maintain its normal operation. Utility Model Content
[0004] To overcome the shortcomings of existing technologies, this utility model provides a tank-type atomizer. The motor compartment, pump compartment, and storage tank are arranged from top to bottom, making it not only easy to carry but also suitable for various applications. A gear system stably and efficiently drives the pump compartment, achieving liquid atomization and spraying. The storage tank stores and atomizes the liquid; its upper part is connected to the pump compartment, and its lower part is connected to the transmission gear system via a drive shaft. This ensures smooth liquid transport and stable atomization, reduces the size of the atomizing device, integrates power resources, and reduces energy consumption.
[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a storage tank type atomizer, including a support base, a winding sleeve rotatably disposed around the support base, a flexible tube wound around the winding sleeve, a movable annular groove formed on the cylindrical outer periphery of the support base, a movable annular block fixedly disposed on the inner surface of the winding sleeve, the movable annular block being disposed inside the movable annular groove, a motor chamber fixedly disposed at the bottom of the support base, a pump chamber for spraying atomized liquid installed above the motor chamber, a storage tank for storing liquid and atomized liquid installed above the pump chamber, an installation groove formed inside the motor chamber, a motor fixedly installed inside the installation groove, the output end of the motor being connected to the pump chamber, a connecting gear fixedly disposed around the output end of the motor, the connecting gear meshing with a transmission gear one, the transmission gear one meshing with a transmission gear two, a transmission shaft fixedly disposed above the transmission gear two, one end of the transmission shaft being rotatably connected to the storage tank.
[0006] As a preferred technical solution of this utility model, the pump compartment is provided with a number of fixing frames for fixing, and a high-lift pump body is fixedly installed between the fixing frames. The lower end of the high-lift pump body is fixedly connected to the output end of the motor. The upper side of the high-lift pump body is provided with a pump body outlet and a pump body inlet. Both the pump body outlet and the pump body inlet are designed as L-shaped, and the upper ends of both the pump body outlet and the pump body inlet are connected to the storage tank.
[0007] As a preferred technical solution of this utility model, the storage tank has a liquid storage chamber inside, and a vortex atomizing device is installed inside the liquid storage chamber. The lower part of the vortex atomizing device is connected to the pump inlet, and the lower part of the vortex atomizing device is connected to the drive shaft. A mist outlet is fixedly installed inside the storage tank. The mist outlet penetrates the upper surface of the storage tank and extends out of the top of the storage tank. The lower end of the mist outlet penetrates the storage tank and is connected to the pump outlet. A liquid injection port is opened at the upper end of the storage tank.
[0008] As a preferred embodiment of this utility model, the upper surface of the mist outlet is provided with an external thread, and one end of the hose is provided with an internal thread.
[0009] As a preferred technical solution of this utility model, the bottom end of the vortex atomizing device is provided with a liquid suction port.
[0010] Compared with the prior art, the beneficial effects that this utility model can achieve are:
[0011] A rotatable winding sleeve is installed on the support base, allowing users to neatly wind the hose around it, effectively avoiding mess and tangling problems during use. The winding sleeve's internal moving ring block tightly engages with the moving ring groove on the support base, ensuring stable rotation. The overall device has a compact structure, with the motor compartment, pump compartment, and storage tank arranged from top to bottom, making it not only easy to carry but also suitable for various applications. The motor is installed in the motor compartment and drives the pump compartment stably and efficiently through a gear system, achieving liquid atomization and spraying. The storage tank is used to store and atomize the liquid. It is connected to the pump compartment at the top and to the transmission gear system at the bottom via a drive shaft, ensuring smooth liquid transmission and stable atomization, reducing the size of the atomization equipment, integrating power resources, and reducing energy consumption. Attached Figure Description
[0012] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0013] Figure 2 This is a three-dimensional structural cross-sectional view of the present invention;
[0014] Figure 3 This is a three-dimensional sectional view of the support base in this utility model;
[0015] Figure 4 This is a cross-sectional view of the present invention;
[0016] Figure 5 This is a top view of the motor compartment in this utility model.
[0017] The components are as follows: 10. Support base; 11. Winding sleeve; 12. Hose; 13. Moving ring groove; 14. Moving ring block; 20. Motor compartment; 21. Mounting groove; 22. Motor; 23. Connecting gear; 24. Transmission gear one; 25. Transmission gear two; 26. Transmission shaft; 30. Pump compartment; 31. Fixing frame; 32. High-lift pump body; 33. Pump body outlet; 34. Pump body inlet; 40. Storage tank; 41. Vortex atomizing device; 42. Liquid storage tank; 43. Mist outlet; 44. Liquid injection port. Detailed Implementation
[0018] To make the technical means, creative features, and achieved objectives and effects of this utility model easier to understand, the present utility model is further described below with reference to specific embodiments. However, the following embodiments are merely preferred embodiments of this utility model and not all of them. Other embodiments obtained by those skilled in the art based on the embodiments described herein without creative effort are all within the protection scope of this utility model. Unless otherwise specified, the experimental methods in the following embodiments are conventional methods, and the materials and reagents used in the following embodiments are commercially available unless otherwise specified.
[0019] Please refer to Figure 1-5 As shown, this utility model provides a tank-type atomizer, including a support base 10, a winding sleeve 11 rotatably disposed around the support base 10, a flexible tube 12 wound around the winding sleeve 11, a movable annular groove 13 formed on the cylindrical outer periphery of the support base 10, a movable annular block 14 fixedly disposed on the inner surface of the winding sleeve 11, the movable annular block 14 being disposed inside the movable annular groove 13, a motor chamber 20 fixedly disposed at the bottom of the support base 10, and a pump chamber 30 for spraying atomized liquid installed above the motor chamber 20. Above the pump compartment 30 is a storage tank 40 for storing liquid and atomizing liquid. Inside the motor compartment 20 is a mounting groove 21, inside which a motor 22 is fixedly installed. The output end of the motor 22 is connected to the pump compartment 30. A connecting gear 23 is fixedly installed around the output end of the motor 22. The connecting gear 23 meshes with a first transmission gear 24. The first transmission gear 24 meshes with a second transmission gear 25. A transmission shaft 26 is fixedly installed above the second transmission gear 25. One end of the transmission shaft 26 is rotatably connected to the storage tank 40.
[0020] A rotatable winding sleeve 11 is provided on the support base 10, allowing users to neatly wind the hose 12 around it, effectively avoiding mess and tangling problems during use. The winding sleeve 11 is tightly engaged with the moving ring groove 13 on the support base 10 through the internal moving ring block 14, ensuring the stability of rotation. The overall device has a compact structure, with the motor compartment 20, pump compartment 30, and storage tank 40 arranged from top to bottom, making it not only easy to carry but also suitable for various occasions. The motor 22 is installed in the motor compartment 20 and drives the pump compartment 30 to work stably and efficiently through the gear system, realizing the atomization and spraying of the liquid. The storage tank 40 is used to store and atomize the liquid. It is connected to the pump compartment 30 at the top and to the transmission gear system at the bottom through the transmission shaft 26, ensuring smooth liquid transmission and stable atomization process, reducing the size of the atomization equipment, integrating power resources, and reducing energy consumption.
[0021] The pump compartment 30 is equipped with several fixing frames 31 for fixing. A high-lift pump body 32 is fixedly installed between the fixing frames 31. The lower end of the high-lift pump body 32 is fixedly connected to the output end of the motor 22. The upper side of the high-lift pump body 32 is provided with a pump body outlet 33 and a pump body inlet 34. Both the pump body outlet 33 and the pump body inlet 34 are designed as L-shaped. The upper ends of the pump body outlet 33 and the pump body inlet 34 are connected to the storage tank 40.
[0022] The pump compartment 30 of the atomizer in the storage tank 40 is designed with a fixing frame 31 for securely installing the high-lift pump body 32. The lower end of the high-lift pump body 32 is tightly connected to the output end of the motor 22, ensuring direct and efficient power transmission. The upper side of the high-lift pump body 32 is provided with an L-shaped pump outlet 33 and a pump inlet 34, so that the pump outlet 33 and the inlet can be smoothly connected to the storage tank 40, ensuring continuous liquid supply and efficient atomization. Through the operation of the high-lift pump body 32, the atomized liquid is stably drawn in and pressurized, and then sprayed out through the pump outlet 33.
[0023] The storage tank 40 has a liquid storage chamber 42 inside, and a vortex atomizing device 41 is installed inside the liquid storage chamber 42. The lower part of the vortex atomizing device 41 is connected to the pump body inlet 34, and the lower part of the vortex atomizing device 41 is connected to the drive shaft 26. A mist outlet 43 is fixedly installed inside the storage tank 40. The mist outlet 43 penetrates the upper surface of the storage tank 40 and extends out of the top of the storage tank 40. The lower end of the mist outlet 43 penetrates the storage tank 40 and is connected to the pump body outlet 33. A liquid injection port 44 is opened at the upper end of the storage tank 40.
[0024] The storage tank 40 of the atomizer has a liquid storage chamber 42 inside for storing the liquid to be atomized. A vortex atomizing device 41 is installed inside the liquid storage chamber 42. The lower part of the device is connected to the drive shaft 26. The rotation of the drive shaft 26 drives the vortex atomizing device 41 to work, realizing efficient atomization of the liquid. After being pressurized inside the high-lift pump body 32, the liquid is sprayed out through the pump body outlet 33. The mist outlet 43 passes through the upper end of the storage tank 40 and extends to its top. At the same time, the lower end of the mist outlet 43 is connected to the pump body outlet 33 to ensure smooth transmission of the atomized liquid. The upper end of the storage tank 40 is also provided with a liquid inlet 44, which allows users to add liquid at any time, further improving the practicality and convenience of the atomizer. This design makes the entire atomization process more efficient and stable, providing users with a better atomization experience.
[0025] The upper surface of the mist outlet 43 has an external thread, and one end of the hose 12 has an internal thread.
[0026] The upper surface of the mist outlet 43 has a specially designed external thread that matches the internal thread at one end of the hose 12, achieving a secure connection between the mist outlet 43 and the hose 12. Users can easily connect the hose 12 to the mist outlet 43 with a simple rotation operation, without the need for additional tools or complicated steps. This ensures stable transmission of atomized liquid, prevents leakage and waste, and provides good sealing performance, guaranteeing the continuity and efficiency of the atomization process. This design also facilitates disassembly and replacement when needed, further enhancing the flexibility and convenience of using the atomizer.
[0027] The bottom of the vortex atomizing device 41 is provided with a liquid suction port.
[0028] The vortex atomizing device 41 has a specially designed liquid intake port at its bottom, which allows it to directly draw liquid from the liquid storage tank 42 without the need for an additional liquid delivery device. This simplifies the structure of the entire atomization system. The liquid intake port ensures that the liquid can enter the vortex atomizing device 41 stably and continuously, providing a sufficient liquid supply for the subsequent atomization process. This design also improves atomization efficiency because the liquid can be directly drawn in and atomized, reducing liquid loss and waste during the transmission process.
[0029] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A tank-type atomizer, characterized in that: The system includes a support base (10), a winding sleeve (11) rotatably disposed around the support base (10), a flexible hose (12) wound around the winding sleeve (11), a movable annular groove (13) formed on the cylindrical periphery of the support base (10), a movable annular block (14) fixedly disposed on the inner surface of the winding sleeve (11), the movable annular block (14) being disposed inside the movable annular groove (13), a motor chamber (20) fixedly disposed at the bottom of the support base (10), a pump chamber (30) for spraying atomized liquid is installed above the motor chamber (20), and a useful device is installed above the pump chamber (30). In the storage tank (40) for storing liquid and atomizing liquid, the motor compartment (20) has an installation groove (21) inside, and a motor (22) is fixedly installed inside the installation groove (21). The output end of the motor (22) is connected to the pump compartment (30). A connecting gear (23) is fixedly provided around the output end of the motor (22). The connecting gear (23) meshes with a first transmission gear (24). The first transmission gear (24) meshes with a second transmission gear (25). A transmission shaft (26) is fixedly provided above the second transmission gear (25). One end of the transmission shaft (26) is rotatably connected to the storage tank (40).
2. The tank-type atomizer according to claim 1, characterized in that: The pump compartment (30) is provided with several fixing frames (31) for fixing. A high-lift pump body (32) is fixedly installed between the fixing frames (31). The lower end of the high-lift pump body (32) is fixedly connected to the output end of the motor (22). The upper side of the high-lift pump body (32) is provided with a pump body outlet (33) and a pump body inlet (34). Both the pump body outlet (33) and the pump body inlet (34) are designed to be L-shaped. The upper ends of both the pump body outlet (33) and the pump body inlet (34) are connected to the storage tank (40).
3. A tank-type atomizer according to claim 2, characterized in that: The storage tank (40) has a liquid storage chamber (42) inside, and a vortex atomizing device (41) is installed inside the liquid storage chamber (42). The lower part of the vortex atomizing device (41) is connected to the pump inlet (34), and the lower part of the vortex atomizing device (41) is connected to the drive shaft (26). A mist outlet (43) is fixedly installed inside the storage tank (40). The mist outlet (43) penetrates the upper surface of the storage tank (40) and extends out of the top of the storage tank (40). The lower end of the mist outlet (43) penetrates the storage tank (40) and is connected to the pump outlet (33). A liquid injection port (44) is opened at the upper end of the storage tank (40).
4. A tank-type atomizer according to claim 3, characterized in that: The upper surface of the mist outlet (43) is provided with an external thread, and one end of the hose (12) is provided with an internal thread.
5. A tank-type atomizer according to claim 4, characterized in that: The bottom end of the vortex atomizing device (41) is provided with a liquid suction port.