Inner bin type atomizing equipment convenient to carry

By introducing a removable connection between the replenishment port and the replenishment bottle, as well as an inverted reflux function, into the internal chamber-type atomizing device, the problems of leakage and large size during device transport are solved, achieving the effect of portability and compact design.

CN223847283UActive Publication Date: 2026-01-30GUANGZHOU BENXIANG INFORMATION TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520016708.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2026-01-30
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing internal chamber atomizing devices are prone to leakage during transport and have a large casing size, making them inconvenient to store.

Method used

An internal chamber atomizing device was designed, which adopts a detachable connection between the replenishment port and the replenishment bottle. The liquid storage chamber and the atomizing element are located inside the housing. The liquid guiding distance is short, and an inverted backflow function is provided to prevent leakage. The housing design is compact.

Benefits of technology

This approach achieves the goal of keeping the device compact while avoiding leakage during transport, thus improving the device's portability and ease of use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223847283U_ABST
    Figure CN223847283U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of atomization equipment, in particular to inner bin type atomization equipment convenient to carry. The utility model provides portable inner bin type atomizing equipment which comprises a shell, an atomizing through hole is formed in the surface of the shell, an atomizing piece is installed in the atomizing through hole, a liquid storage bin and a liquid guide piece are arranged in the shell, and the liquid guide piece guides liquid to be atomized in the liquid storage bin to the atomizing piece to be atomized. A liquid supplementing hole communicated with the liquid storage bin is formed in the surface of the shell, a liquid supplementing bottle can be detachably installed in a butt joint mode through the liquid supplementing hole, and liquid to be atomized in the liquid supplementing bottle provided with the liquid supplementing hole in the butt joint mode flows into the liquid storage bin through the liquid supplementing hole for liquid supplementing. And when the atomization equipment is inverted, the liquid to be atomized in the liquid storage bin flows back to the liquid supplementing bottle which is provided with the liquid supplementing hole in a butt joint mode through the liquid supplementing hole. According to the inner bin type atomization equipment, on the basis that the size of the inner bin type atomization equipment shell is small, the defect that liquid is prone to leakage is overcome, and carrying is convenient.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to atomization equipment field, concretely relates to a portable inner bin type atomization equipment. BACKGROUND

[0002] The atomization equipment is a kind of more common small household appliance, and the atomization equipment currently includes a shell, a liquid storage bin, a liquid guide and an atomization piece are arranged in the shell, the liquid storage bin is filled with water, essential oil or aromatherapy liquid to be atomized, the liquid to be atomized is guided to the atomization piece by the liquid guide to form small particle mist, and the mist is discharged to the outside through the exhaust hole of the shell.The liquid storage bin is located in the shell, and a liquid injection port is usually formed in the shell to reach the liquid storage bin, a one-way valve is mounted in the liquid injection port, and the user needs to inject the liquid to be atomized into the liquid storage bin through the liquid injection port before using the atomization equipment.The inner bin type atomization equipment has the advantages that the liquid storage bin and the atomization piece are hidden in the shell, the liquid storage bin and the atomization piece are close to each other, the liquid guide distance is short, the liquid guide can be designed to be short, the size of the atomization equipment shell can be small, and the atomization equipment is convenient to store and carry;The disadvantage is that once the liquid to be atomized in the liquid storage bin is not used up, the weight of the atomization equipment shell increases, the atomization equipment is inconvenient to carry, and the unused liquid to be atomized in the liquid storage bin is easy to leak out of the shell.Another kind of atomization equipment is different from the above-mentioned atomization equipment in that the liquid storage bin is not arranged in the shell, and a liquid supplement bottle is additionally mounted outside the shell, the liquid supplement bottle is filled with the liquid to be atomized, the liquid supplement bottle is mounted on the shell, the liquid guide in the shell is connected to the liquid supplement bottle outside the shell, and the liquid to be atomized in the liquid supplement bottle outside the shell is guided to the atomization piece inside the shell for atomization.The detachable bottle type atomization equipment has the advantages that the liquid supplement bottle can be detached from the shell at any time, the unused liquid to be atomized in the liquid supplement bottle is also detached from the shell, and the liquid to be atomized is left for next use, so that the unused liquid to be atomized is not easy to accumulate in the shell, the weight of the atomization equipment shell does not change greatly, the weight of the atomization equipment does not increase, the atomization equipment is not affected by the weight increase, the detached liquid supplement bottle has a sealing function, and the liquid supplement bottle can be stored and carried separately, so that the liquid supplement bottle and the shell are not easy to leak during carrying. SUMMARY

[0003] The utility model solves the technical problem to provide a kind of inner bin type atomization equipment that is convenient to carry, which is based on the smaller size of the inner bin type atomization equipment shell, overcomes the shortcoming of easy leakage, and is convenient to carry.

[0004] To solve the above problems, the utility model provides a kind of inner storehouse formula atomization equipment convenient to carry, including shell, shell surface is opened with atomization through-hole, atomization through-hole is equipped with atomization piece, shell inside is equipped with liquid storage storehouse and liquid guide piece, and liquid guide piece guides the liquid to be atomized in liquid storage storehouse to atomization piece and atomizes, shell surface is opened with the liquid supplementing hole of the communication liquid storage storehouse, and liquid supplementing bottle can be detachably mounted and connected, and the liquid to be atomized in the liquid supplementing bottle that has been mounted and connected the liquid supplementing hole flows into liquid storage storehouse and supplements liquid through the liquid supplementing hole, and the liquid to be atomized in liquid storage storehouse backflows into the liquid supplementing bottle that has been mounted and connected the liquid supplementing hole when atomization equipment is inverted.

[0005] Further, the liquid supplementing hole is specifically provided on the upper surface of the shell, so that the liquid supplementing bottle can be mounted and connected to the liquid supplementing hole in a manner that the bottle opening faces downward above the shell.

[0006] Further, the length of the liquid guide piece is 36 mm, and / or the volume of the liquid storage storehouse is 35 mL.

[0007] Further, the liquid guide piece includes a tube body and a liquid guide cotton core installed in the lumen of the tube body, the initial end of the tube body extends to the bottom of the liquid storage storehouse, and the terminal end of the tube body extends to the back of the atomization piece; the side wall of the initial end of the tube body is provided with a notch, the initial end of the liquid guide cotton core communicates with the liquid storage storehouse through the notch, and the terminal end of the liquid guide cotton core penetrates out of the terminal end of the tube body and is attached to the back of the atomization piece.

[0008] Further, the liquid storage storehouse is made of transparent material in whole or in part, and the shell is made of transparent material in whole or in part corresponding to the transparent part of the liquid storage storehouse, so that the user can directly observe the condition of the liquid to be atomized in the liquid storage storehouse from the outside of the shell.

[0009] Further, it includes a first cover piece capable of covering the liquid supplementing hole not mounted and connected by the liquid supplementing bottle in a releasable manner, and / or a second cover piece capable of covering the atomization through-hole in a releasable manner.

[0010] Further, the first cover piece serves as a decorative piece, and / or the second cover piece serves as a decorative piece.

[0011] Further, the shell includes an upper shell and a lower shell, which are connected and installed together by high-frequency plastic fusion or bolt connection or screw connection or thread connection.

[0012] Further, it includes a controller connected to the atomization piece, and a battery for supplying power to the controller and the atomization piece, both of which are hidden in the shell.

[0013] Further, it includes the liquid supplementing bottle.

[0014] Beneficial effects: the atomization equipment of the utility model is an inner tank type atomization equipment, the liquid storage tank and the atomization part are arranged in the shell, the liquid storage tank and the atomization part are close, the liquid guide distance is short, the liquid guide part can be designed to be short, the shell size of the atomization equipment can be made small, and the atomization equipment is convenient to store and carry. On this basis, the atomization equipment is provided with a liquid supplementing hole, a liquid supplementing bottle is installed and connected to the liquid supplementing hole, the liquid storage tank is communicated through the liquid supplementing hole for liquid supplementing, after the liquid supplementing is completed, atomization can be started, and the liquid supplementing bottle can be retained or removed from the liquid supplementing hole during the atomization process; if the atomization equipment needs to be taken away and the liquid to be atomized in the liquid storage tank has not been used up, the atomization equipment can be inverted to make the liquid to be atomized in the liquid storage tank flow back to the liquid supplementing bottle through the liquid supplementing hole, after the liquid flows back to the liquid supplementing bottle, the liquid supplementing bottle is removed from the liquid supplementing hole, the liquid supplementing bottle is separately sealed and stored and carried, since the liquid to be atomized (the residual liquid amount is very small and can be ignored) is no longer accumulated in the liquid storage tank, liquid leakage is not easy to occur during the process of carrying and moving the atomization equipment. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a structure schematic diagram of the atomization equipment (the liquid supplementing bottle is connected and installed in the liquid supplementing hole of the atomization equipment).

[0016] Figure 2 It is a structure schematic diagram of the atomization equipment (the liquid supplementing bottle is not connected and installed in the liquid supplementing hole of the atomization equipment).

[0017] Figure 3 It is a sectional view along the A-A direction of the liquid supplementing bottle. Figure 1

[0018] Figure 4 It is a partial explosion schematic diagram of the atomization equipment (the first cover part and the second cover part are not shown).

[0019] Figure 5 It is a structure schematic diagram of the liquid guide part.

[0020] Figure 6 It is a structure schematic diagram of the first cover part and the second cover part of the atomization equipment covering the liquid supplementing hole and the atomization hole respectively.

[0021] Symbol explanation:

[0022] 1-atomization equipment; 2-shell; 21-upper shell; 211-atomization hole; 212-liquid supplementing hole; 22-lower shell; 3-liquid storage tank; 31-first through hole; 32-second through hole; 4-atomization part; 5-liquid guide part; 51-tube body; 511-beginning end part; 512-end part; 52-liquid guide cotton core; 521-beginning end part; 522-end part; 6-liquid supplementing bottle; 71-first cover part; 72-second cover part; 81-controller; 82-control switch; 83-battery; 84-charging port. DETAILED DESCRIPTION​

[0023] The application will be further described in detail below with reference to the specific embodiments.

[0024] See Figure 2 The shell 2 of the atomization device 1 comprises an upper shell 21 and a lower shell 22 which are welded together, and the upper shell 21 is provided with an atomization through hole 211 on its upper surface. See Figure 3 The shell 2 is internally provided with a liquid storage bin 3 for storing the liquid to be atomized (such as clean water, essential oil or aromatherapy liquid, etc.), and the liquid storage bin 3 is provided with a first through hole 31 on its upper surface (see Figure 4 The first through hole 31 is upwardly aligned with and communicates with the atomization through hole 211. An ultrasonic atomization piece 4 is mounted in the atomization through hole 211, and the front surface of the atomization piece 4 faces outward while the back surface faces the liquid storage bin 3. A controller 81 is connected to the atomization piece 4, and the controller 81 is connected with a control switch 82 which is arranged on the upper surface of the upper shell 21 (see Figure 1 ) for being pressed by the user, and the controller 81 is also connected with a battery 83. When the user presses the control switch 82, the controller 81 is triggered to take electricity from the battery 83 and supply electricity to the atomization piece 4, and the atomization piece 4 is started and vibrates at high frequency to atomize the liquid thereon. The shell 2 is provided with a charging port 84 which is electrically connected with the battery 83, and an external power source can be electrically connected with the charging port 84 to charge the battery 83.

[0025] See Figure 3 A liquid guiding piece 5 is mounted in the first through hole 31 of the liquid storage bin 3. The liquid guiding piece 5 comprises a tube body 51 and a liquid guiding cotton core 52 which is arranged in the tube cavity of the tube body 51, and the tube body 51 has a starting end portion 511 which extends to the bottom of the liquid storage bin 3 through the first through hole 31 and a terminal end portion 512 which extends to the back surface of the atomization piece 4. See Figure 5 The side wall of the starting end portion 511 of the tube body 51 is provided with a notch (see Figure 3 ), and the starting end portion 521 of the liquid guiding cotton core 52 communicates with the liquid storage bin 3 through the notch, and the terminal end portion 522 (see ) of the liquid guiding cotton core 52 extends out of the tube body 51 from the terminal end portion 512 of the tube body 51 to tightly adhere to the back surface of the atomization piece 4, so as to guide the liquid to be atomized in the liquid storage bin 3 to the back surface of the atomization piece 4. When the user presses the control switch 82, the controller 81 controls the atomization piece 4 to vibrate at high frequency to atomize the liquid to be atomized which reaches the back surface of the atomization piece 4. Since the liquid storage bin 3 and the atomization piece 4 are both internally arranged in the shell 2 of the atomization device 1, the liquid storage bin 3 and the atomization piece 4 are relatively close to each other, and the guiding distance is relatively short, so the liquid guiding piece 5 in this embodiment can be designed to be relatively short, and the length dimension is 36 mm, and the size of the shell 2 of the atomization device 1 can also be correspondingly made smaller, so as to be convenient for storage and carrying.

[0026] See Figure 3 and Figure 4A threaded through hole, designated as a replenishment hole 212, is located at the center of the upper surface of the upper housing 21. Correspondingly, a second through hole 32, connecting to the internal space of the storage chamber 3, is located on the upper surface of the storage chamber 3. This second through hole 32 is aligned upwards and connects to the replenishment hole 212. When the liquid to be atomized in the storage chamber 3 is depleted and needs replenishment, a replenishment bottle 6 containing the liquid to be atomized can be taken, with the bottle opening facing upwards. Then, the housing 2 of the atomizing device 1 is inverted, aligning the replenishment hole 212 of the housing 2 downwards with the opening of the replenishment bottle 6. The replenishment bottle 6 is then screwed into the replenishment hole 212 for installation and connection. After installation and connection, the user flips the atomizing device 1 together with the replenishment bottle 6 connected to the replenishment hole 212. After flipping, the atomizing device 1 returns to its upright position, while the replenishment bottle 6 is inverted and positioned above the housing 2 with its opening facing downwards (e.g., Figure 1 , 3 As shown), the liquid to be atomized in the replenishment bottle 6 flows sequentially through the replenishment hole 212 and the second through hole 32 into the storage chamber 3 for replenishment under the action of gravity. The storage chamber 3 has a volume of 35mL, which can hold a sufficient amount of liquid and can be used for a relatively long time. After replenishment, the liquid guiding cotton core 52 can guide the liquid to be atomized in the storage chamber 3 to the atomizing element 4 for atomization as described above; during atomization, the replenishment bottle 6 can be as follows... Figure 1 The fluid replenishment bottle 6 can be installed in the same position as shown, maintaining the connection to the fluid replenishment port 212, or it can be directly removed from the fluid replenishment port 212. After the fluid replenishment bottle 6 is removed from the fluid replenishment port 212, it can be used as follows: Figure 6 As shown, the first cover 71 covers the liquid replenishment hole 212. A second cover 72 is provided at the atomizing through hole 211. If the atomizing device 1 is not used for a short period of time, the second cover 72 can be used to cover the atomizing through hole 211 to prevent the liquid to be atomized in the liquid storage tank 3 from evaporating. When atomization is required, the second cover 72 can be removed from the atomizing through hole 211 to expose the atomizing through hole 211.

[0027] If the atomization device 1 needs to be taken away and the atomized liquid in the liquid storage chamber 3 of the atomization device 1 has not been used up, the empty liquid supplement bottle 6 can be taken out, the first cover 71 is opened to expose the liquid supplement hole 212, the liquid supplement bottle 6 is screwed into the liquid supplement hole 212 with the bottle opening facing downward for installation and docking, then the shell 2 of the atomization device 1 is inverted, the liquid supplement bottle 6 is restored to the upright position with the bottle opening facing upward, and the atomized liquid in the liquid storage chamber 3 will flow back to the liquid supplement bottle 6 through the second through hole 32 and the liquid supplement hole 212 under the action of gravity, and finally the liquid supplement bottle 6 is unscrewed from the liquid supplement hole 212. Since there is no longer any accumulation of atomized liquid (the amount of residual liquid is very small and can be ignored) in the liquid storage chamber 3, the liquid storage chamber 3 is not prone to leakage during the movement of the atomization device 1. Preferably, after unscrewing the liquid supplement bottle 6, the user can also cover the liquid supplement hole 212 and the atomization through hole 211 with the first cover 71 and the second cover 72 respectively, so that the atomization device 1 is less likely to leak during movement. The unscrewed liquid supplement bottle 6 can be separately carried and stored with a sealed cap, and is also not prone to leakage during movement. In the embodiment, the first cover 71 and the second cover 72 are soft plugs that cover the liquid supplement hole 212 and the atomization through hole 211 respectively in an interference fit. In other embodiments, the first cover 71 and the second cover 72 can be replaced by screw caps that are threadedly connected to the liquid supplement hole 212 and the atomization through hole 211 respectively. The first cover 71 and the second cover 72 can also serve as decorative parts to achieve decoration while covering.

[0028] In the embodiment, the shell 2 and the liquid storage chamber 3 are made of transparent materials, so that the user can directly observe the condition of the atomized liquid in the liquid storage chamber 3 from the outside of the shell 2. In other embodiments, the liquid storage chamber 3 can be made of transparent materials only in part, and the shell 2 can also be made of transparent materials only in the part corresponding to the transparent part of the liquid storage chamber 3. In the embodiment, the upper shell 21 and the lower shell 22 are fused together by high-frequency plastic welding; in other embodiments, the upper shell 21 and the lower shell 22 can be connected and installed together by means of bolt connection, screw connection or threaded connection.

[0029] The above description is only an embodiment of the present application, and does not limit the scope of patent protection. Those skilled in the art can make non-essential changes or substitutions based on the present application, and still fall within the scope of patent protection.

Claims

1. A portable internal tank type atomization device, comprising a shell, a surface of the shell being provided with an atomization through hole, an atomization member being installed in the atomization through hole, a liquid storage tank and a liquid guide member being arranged inside the shell, the liquid guide member guiding the liquid to be atomized in the liquid storage tank to the atomization member for atomization, characterized in that, The shell surface is provided with a liquid supplementing hole communicating with the liquid storage bin, and a liquid supplementing bottle is detachably connected to the liquid supplementing hole. The liquid supplementing hole is used for supplementing the liquid in the liquid supplementing bottle into the liquid storage bin, and the liquid in the liquid storage bin flows back into the liquid supplementing bottle through the liquid supplementing hole when the atomization device is inverted.

2. The inner cartridge nebulizer device of claim 1, wherein, The liquid supplementing hole is arranged on the upper surface of the shell, so that the liquid supplementing bottle can be connected to the liquid supplementing hole in a manner that the bottle opening faces downward.

3. The inner cartridge nebulizer device of claim 1, wherein, The length of the liquid guide is 36 mm, and / or the volume of the liquid storage bin is 35 mL.

4. The inner cartridge nebulizer device of claim 1, wherein: The liquid guide comprises a tube body and a liquid guide cotton core arranged in the lumen of the tube body. The initial end of the tube body extends to the bottom of the liquid storage bin, and the terminal end of the tube body extends to the back surface of the atomization element. The side wall of the initial end of the tube body is provided with a notch, the initial end of the liquid guide cotton core communicates with the liquid storage bin through the notch, and the terminal end of the liquid guide cotton core extends out of the terminal end of the tube body and is attached to the back surface of the atomization element.

5. The inner cartridge nebulizer device of claim 1, wherein, The liquid storage bin is made of transparent material, and the shell is made of transparent material corresponding to the transparent part of the liquid storage bin, so that the user can directly observe the liquid in the liquid storage bin from the outside of the shell.

6. The inner cartridge nebulizer of claim 1, wherein, The first cover is used to cover the liquid supplementing hole which is not connected to the liquid supplementing bottle, and / or the second cover is used to cover the atomization hole.

7. The inner cartridge nebulizer device of claim 6, wherein, The first cover is used as a decoration, and / or the second cover is used as a decoration.

8. The inner cartridge nebulizer device of claim 1, wherein, The shell comprises an upper shell and a lower shell, which are connected by high-frequency plastic welding or bolt connection or screw connection or thread connection.

9. The inner cartridge nebulizer device of claim 1, wherein, The controller is connected to the atomization element, and the controller and the atomization element are powered by a battery, which are both hidden in the shell.

10. The inner cartridge nebulizer device of any one of claims 1-9, wherein, The liquid supplementing bottle is included.