Aromatherapy bottle capable of emitting fragrance through inverted pressing

The inverted, press-to-diffuse aromatherapy bottle design solves the inconvenience of separating the aromatherapy bottle from the reed, and enables convenient control of aromatherapy solvent evaporation and reuse of the solvent, thus improving user experience and environmental friendliness.

CN224235823UActive Publication Date: 2026-05-15GUANGZHOU FANZHIRONG COSMETICS CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU FANZHIRONG COSMETICS CO LTD
Filing Date
2025-05-06
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

The existing design of separating the aromatherapy bottle from the reed makes it inconvenient to use, requiring manual insertion and removal of the reed. Furthermore, the reed is easily soiled when wet, increasing the difficulty of cleaning.

Method used

Design an inverted, press-to-dissipate aromatherapy bottle with an integrated structure. The evaporation component works in conjunction with the bottle and cap components. The evaporation and pausing of the aromatherapy solvent are achieved by inverting the bottle and pressing the cap. The cap component is sealed with a sealing element. The evaporation component punctures the sealed cap through the puncture part to contact the solvent and releases the fragrance through the diffuser hole.

Benefits of technology

The simplified operation process allows users to flexibly adjust the fragrance release, reducing the waste and pollution risk of volatile solvents, extending the lifespan of the aromatherapy product, and providing a more user-friendly experience and environmental friendliness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aromatherapy products, and discloses an aromatherapy bottle capable of emitting fragrance through inverted pressing. The aromatherapy bottle comprises a bottle body, a cover body assembly, a volatilization assembly and a sealing piece, an opening is formed in the top of the bottle body, a containing space is formed in the bottle body, and the opening is communicated with the containing space; the cover body assembly is rotationally connected to the bottle body, a sliding cavity penetrating through the two ends is formed in the cover body assembly, the sliding cavity is communicated with the containing space through the open hole, and the cover body assembly is provided with an aroma expanding hole; the sealing piece comprises a fixing part and a sealing cover which are connected with each other, the fixing part is connected to the bottle body, the sealing cover can seal the bottle body and the cover body assembly, and the volatilization assembly can open the sealing cover; the volatilization assembly comprises a puncture part and a volatilization part which are fixedly connected with each other, the volatilization part is connected to the cover body assembly, the puncture part moves towards the interior of the containing space and can puncture the sealing cover and contain the volatile aromatherapy solvent in the containing space, and the volatilization part can outwards volatilize fragrance through the fragrance diffusion hole by making contact with the volatile aromatherapy solvent in the puncture part.
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Description

Technical Field

[0001] This utility model relates to the field of aromatherapy product technology, and in particular to an inverted, press-to-dissipate aromatherapy bottle. Background Technology

[0002] Currently, aromatherapy bottles use a reed diffuser, with the bottle and reed being two separate components. To use, the user needs to remove the inner stopper of the aromatherapy bottle, then insert the reed into it. The fragrance diffuses into the air through the absorption action of the reed, achieving a scent-diffusing effect.

[0003] However, during use, users need to manually insert the reed, and to stop using the aromatherapy, they must remove the reed and replace the inner stopper on the bottle, a rather cumbersome process. Furthermore, used reeds need to be stored separately, and their damp state easily leads to contamination or odors, further increasing the difficulty of cleaning and storage. Therefore, how to solve the inconvenience caused by the separation of the aromatherapy bottle and the reed, and provide a more convenient operating method, is a key issue that existing technology needs to address. Utility Model Content

[0004] The technical problem this invention aims to solve is: how to address the inconvenience caused by the separation of the existing aromatherapy bottle and the rattan.

[0005] To solve the above-mentioned technical problems, this utility model provides an inverted, press-to-disperse aromatherapy bottle, comprising a bottle body, a cap assembly, a evaporation assembly, and a sealing element;

[0006] The bottle has an opening at the top and a storage space inside for holding volatile aromatherapy solvents. The opening and the storage space are interconnected.

[0007] The cap assembly is rotatably connected to the bottle body. The cap assembly includes an upper cap and a lower cap that cooperate with each other. The cap assembly is provided with an aroma diffuser hole.

[0008] The sealing element includes a fixed part and a sealing cap that are connected to each other. The fixed part is connected to the bottle body, the sealing cap can seal the bottle body and the cap assembly, the evaporation component can open the sealing cap, and the sealing element and the cap assembly are provided with sliding cavities.

[0009] The evaporation component includes a puncture part and an evaporation part that are fixedly connected to each other. The evaporation part is connected to the cover assembly. The puncture part can move into the accommodating space to puncture the sealing cover and fill the volatile aromatherapy solvent in the accommodating space. The evaporation part can release the fragrance outward through the aroma diffuser by contacting the volatile aromatherapy solvent in the puncture part.

[0010] Preferably, the end of the puncture site near the accommodating space is inclined.

[0011] Preferably, the puncture portion is hollow, and the volatile portion is contained within the puncture portion.

[0012] Preferably, the volatile part is made of PE.

[0013] Preferably, the cap assembly includes an upper cap and a lower cap. The lower cap is threaded to the bottle body, and the upper cap is snapped to the lower cap. The upper cap has a snap point, and the lower cap has a limiting groove. The upper cap can move up and down within the lower cap. The puncture part and the evaporation part are both fixedly connected to the upper cap.

[0014] Preferably, the puncture site is also provided with an evaporation hole, and the aroma diffuser hole is located on the lower cover. The aroma diffuser hole and the evaporation hole are interconnected, and the aroma diffuser hole is used to assist the puncture site in evaporating the aromatherapy solvent.

[0015] Preferably, there are multiple aroma diffuser holes, which are spaced apart along the circumference of the lower cover.

[0016] Preferably, there are multiple evaporation holes, which are spaced apart circumferentially along the evaporation component.

[0017] Compared with the prior art, the advantages of this inverted, press-to-dissipate aromatherapy bottle are as follows:

[0018] 1. When the customer needs the fragrance diffuser to release its aroma, the evaporation section is housed within and slidably connected to the sliding cavity. The user inverts the bottle and presses the top cap to move the evaporation section into the cavity, allowing the puncture section to fill with the volatile aromatherapy solvent. This enables the evaporation section to continuously release fragrance through contact with the solvent within the puncture section. When the user no longer needs the fragrance diffuser, they simply turn the bottle upright, removing the solvent from the puncture section. Once the solvent in the puncture section is used up, the evaporation section stops releasing fragrance. This design allows users to flexibly adjust the fragrance release of the diffuser to meet different environmental and usage needs.

[0019] 2. Unlike traditional diffuser bottles where the reeds are separate, this inverted, press-to-release diffuser uses an integrated structure, with the evaporation component working in conjunction with the bottle and cap components. There's no need to manually insert and remove the reeds like with traditional diffusers. For first-time use, simply invert the bottle and press the cap to release the fragrance. When not in use, there's no complicated procedure; simply place the bottle upright. This greatly simplifies the process and saves users time and effort.

[0020] 3. The sealing components of the cap and bottle also reduce the risk of waste and pollution caused by the spillage of volatile fragrance solvents, providing users with a more user-friendly experience.

[0021] 4. The rotating connection design of the cap assembly allows the entire inverted, press-to-dispense aromatherapy bottle to be reused. After the aromatherapy solvent in the container has evaporated, the user can unscrew the cap assembly and add new aromatherapy solvent into the container through the opening.

[0022] 5. The sealing cap effectively seals the bottle and cap assembly, preventing volatile fragrance solvents from evaporating too quickly, thus extending the lifespan of the fragrance and maintaining its longevity.

[0023] 6. The evaporation component punctures the sealing cap through the puncture part and comes into contact with the fragrance solvent. The evaporation component then releases the fragrance outward through the aroma diffuser. Users can activate the fragrance evaporation function when needed. When not in use, the evaporation component separates from the fragrance solvent, which helps to more effectively control the evaporation rate and concentration of the fragrance. Attached Figure Description

[0024] Figure 1 This is a front view of an embodiment of the present utility model;

[0025] Figure 2 This is a cross-sectional view of an embodiment of the present utility model;

[0026] Figure 3 This is a schematic diagram of the bottle body according to an embodiment of the present utility model;

[0027] Figure 4 This is a partial schematic diagram of the cover assembly according to an embodiment of the present utility model.

[0028] In the picture, 1. Bottle body;

[0029] 11. Accommodation space; 12. Opening;

[0030] 2. Cover assembly;

[0031] 21. Sliding cavity; 22. Top cover; 23. Bottom cover; 24. Aroma diffuser hole;

[0032] 3. Volatilization components;

[0033] 31. Puncture section; 32. Volatilization section; 33. Volatilization pore;

[0034] 4. Sealing components;

[0035] 41. Fixing part; 42. Sealing cover. Detailed Implementation

[0036] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.

[0037] In the description of this utility model, it should be understood that the terms "longitudinal", "lateral", "vertical", "horizontal", "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", and "outer" used to indicate the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0038] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," and "connected," etc., should be interpreted broadly. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0039] like Figures 1-4 As shown, a preferred embodiment of the present invention is an inverted, press-to-dissipate aroma diffuser bottle, which includes a bottle body 1, a cap assembly 2, a volatilization assembly 3, and a sealing element 4;

[0040] The top of the bottle body 1 is provided with an opening 12, and the bottle body 1 is provided with a containing space 11, which is used to hold volatile fragrance solvents. The opening 12 and the containing space 11 are interconnected.

[0041] The cap assembly 2 is rotatably connected to the bottle body 1, and the cap assembly 2 is provided with an aroma diffuser hole 24;

[0042] The sealing component 4 includes a fixing part 41 and a sealing cap 42 connected to each other. The fixing part 41 is connected to the bottle body 1. The sealing cap 42 can seal the bottle body 1 and the cap assembly 2. The evaporation assembly 3 can open the sealing cap 42. A sliding cavity (21) penetrating both ends is provided between the sealing cap (42) and the upper cap (22).

[0043] The evaporation component 3 includes a puncture part 31 and an evaporation part 32 that are fixedly connected to each other. The evaporation part 32 is connected to the cover assembly 2. The puncture part 31 can move into the accommodating space 11 to puncture the sealing cover 42 and fill the volatile aromatherapy solvent in the accommodating space 11. The evaporation part 32 can release the fragrance outward through the aroma diffuser hole 24 by contacting the volatile aromatherapy solvent in the puncture part 31.

[0044] Based on the above solution, when the customer needs the fragrance released by the inverted press-type aroma diffuser, the evaporation part 32, housed within and slidably connected to the sliding cavity 21, moves the evaporation part 32 into the receiving space 11 by pressing the top cover 22. This allows the puncture part 31 to be filled with the volatile aromatherapy solvent within the receiving space 11, enabling the evaporation part 32 to release fragrance through contact with the volatile aromatherapy solvent within the puncture part 31. When the user does not need the fragrance released by the inverted press-type aroma diffuser, the user places the diffuser upright, so that the puncture part 31 is no longer filled with the volatile aromatherapy solvent within the receiving space 11. Once the volatile aromatherapy solvent within the puncture part 31 is used up, the evaporation part 32 will no longer release fragrance. Through this design, the user can flexibly adjust whether the fragrance is released by the inverted press-type aroma diffuser to meet different environmental and usage needs. This inverted, press-type diffuser bottle features an integrated structure, with the evaporation component 3 working in conjunction with the bottle body 1 and the cap component 2. Unlike traditional inverted, press-type diffusers, there's no need to manually insert and remove the reeds. During use, simply invert the bottle and press the cap to adjust the fragrance diffusion. When not in use, simply place the bottle upright; no complicated steps are required, greatly simplifying the process and saving users time and effort. Simultaneously, the sealing component 4 (cap component 2) and the bottle body 1 reduce the risk of waste and pollution from volatile fragrance solvent spillage, providing a more user-friendly experience. The rotating connection design of the cap component 2 makes the entire inverted, press-type diffuser bottle easier to reuse. Users can simply unscrew the cap component 2 to add new fragrance solvent to the containing space 11 through the opening 12, improving the environmental friendliness of the product packaging. The fixing part 41 effectively seals the bottle body 1 and the cap component 2, preventing the volatile fragrance solvent from evaporating too quickly, thereby extending the lifespan of the diffuser and maintaining the fragrance's longevity. The evaporation component 3 pierces the sealing cap 42 through the puncture part 31 and comes into contact with the fragrance solvent. The evaporation part 32 then releases the fragrance outward through the aroma diffuser 24. When needed, the user can invert the bottle and press the top cap to activate the fragrance evaporation function. When not in use, the bottle can be placed upright to separate the evaporation component from the fragrance solvent, which helps to more effectively control the evaporation rate and concentration of the fragrance.

[0045] Furthermore, the end of the puncture section 31 near the receiving space 11 is inclined. The inclined tip is more conducive to generating shear force when subjected to force, rather than simply vertical compression. This makes the puncture action more crisp and clean, reduces the possibility of puncture failure, and ensures that the evaporation component 3 can smoothly contact the aromatherapy solvent in the receiving space 11.

[0046] Furthermore, the puncture portion 31 is hollow, and the evaporation portion 32 is housed within it. The evaporation portion 32, housed within the puncture portion 31, supports each other, improving the overall stability of the evaporation component 3 and reducing the risk of loosening or damage due to external forces or vibrations, thereby enhancing product reliability. Integrating the evaporation portion 32 into the hollow puncture portion 31 significantly reduces the overall size of the evaporation component 3, making the internal structure of the inverted, press-to-disperse fragrance bottle more compact. In this embodiment, the evaporation portion 32 and the puncture portion 31 are coaxially arranged.

[0047] Furthermore, the evaporation section 32 is made of PE. PE material has a suitable microporous structure, which allows the fragrance liquid to evaporate at a stable and uniform rate, ensuring that the fragrance is continuously and stably released, creating a long-lasting and comfortable fragrance environment for the user.

[0048] Furthermore, the cap assembly 2 includes an upper cap 22 and a lower cap 23. The lower cap 23 is threaded to the bottle body 1, and the upper cap 22 engages with the lower cap 23. The upper cap 22 has a snap-on point, and the lower cap 23 has a limiting groove. Through the cooperation of the snap-on point of the upper cap 22 and the limiting groove of the lower cap 23, the upper cap 22 can move up and down within the lower cap 23. The piercing part 31 and the evaporation part 32 are both fixedly connected to the upper cap 22. When the upper cap 22 is pressed, the snap-on point of the upper cap 22 moves to the lower end of the limiting groove of the lower cap 23, and at the same time, the piercing part 31 pierces the sealing cap 42. When the aromatherapy solvent in the containing space is consumed, the cap assembly 2 can be unscrewed to add new aromatherapy solvent to the containing space. This type of refill packaging is more conducive to the reuse of the bottle and improves the environmental friendliness of the packaging.

[0049] Furthermore, the puncture section 31 is also provided with an evaporation hole 33, and a fragrance diffuser hole 24 is located on the lower cover 23. The fragrance diffuser hole 24 is interconnected with the evaporation hole 33, and is used to assist the evaporation of the fragrance solvent in the puncture section 31. The interconnection between the fragrance diffuser hole 24 and the evaporation hole 33 can assist the evaporation of volatile fragrance solvents within the puncture section 31. This assisted evaporation allows the fragrance solvent to be released more evenly from the evaporation hole 33 and the fragrance diffuser hole 24 during the evaporation process, avoiding situations where local evaporation is too fast or too slow. The uniform evaporation effect allows the fragrance to diffuse more evenly in the space, creating a uniform and comfortable aromatherapy environment for the user, and avoiding the problem of some areas being too strong or too weak in fragrance due to uneven fragrance distribution.

[0050] Furthermore, there are multiple aroma diffuser holes 24, spaced apart circumferentially along the lower cover 23. These circumferentially distributed diffuser holes 24 form a multi-channel airflow network, enabling efficient aroma diffusion even when the diffuser bottle is inverted and pressed to diffuse fragrance, regardless of its orientation. This makes it compatible with various scenarios such as desktop placement, wall mounting, and car mounts. Even if a single diffuser hole 24 becomes blocked, the remaining holes can still maintain normal function, improving the system's fault tolerance.

[0051] Furthermore, the number of evaporation holes 33 is multiple, and these holes 33 are spaced apart circumferentially along the evaporation assembly. During use, impurities in the aromatherapy solvent or substances generated during evaporation may accumulate at the evaporation holes 33, causing blockage and affecting the aromatherapy effect. The design of multiple evaporation holes 33 reduces the probability of a single evaporation hole 33 becoming blocked. Even if one evaporation hole 33 becomes blocked, the others can still function normally, ensuring that the evaporation of the aromatherapy solvent and the diffusion of the fragrance are not significantly affected. This improves the stability and reliability of the product and reduces the inconvenience for users who need to frequently clean or replace the product due to blockage of the evaporation holes 33.

[0052] In summary, this utility model embodiment provides an inverted, press-type aroma diffuser bottle. When the customer needs the aroma diffuser bottle to release fragrance, based on the structure where the evaporation part 32 is housed in and slidably connected to the sliding cavity 21, the user inverts the bottle and presses the top cover 22 to move the evaporation part 32 into the accommodating space 11. This allows the puncture part 31 to be filled with volatile aromatherapy solvent within the accommodating space 11, enabling the evaporation part 32 to release fragrance by contacting the volatile aromatherapy solvent within the puncture part 31. When the user no longer needs the aroma diffuser bottle to release fragrance, the user places the inverted, press-type aroma diffuser bottle upright, so that the puncture part 31 no longer contains volatile aromatherapy solvent within the accommodating space 11. Once the volatile aromatherapy solvent within the puncture part 31 is used up, the evaporation part 32 no longer releases fragrance. Through the above design, users can flexibly adjust whether the fragrance is released from the inverted, press-to-release diffuser bottle, meeting different environmental and usage needs. This inverted, press-to-release diffuser bottle adopts an integrated structure, with the evaporation component 3 working in conjunction with the bottle body 1 and the cap component 2. Unlike traditional inverted, press-to-release diffusers, there is no need to manually insert and remove the reeds; users can simply rotate the bottle to adjust the fragrance release, greatly simplifying the operation and saving time and effort. The sealing component 4, sealing the cap 42, and the cap component 2 and bottle body 1 also reduce the risk of waste and pollution caused by the spillage of volatile fragrance solvents, providing a more user-friendly experience. The interlocking design of the upper cap 22 and lower cap 23 of the cap component 2 makes the entire inverted, press-to-release diffuser bottle even easier to use. Users only need to invert the bottle and press the upper cap 22 to release the fragrance, eliminating complicated operations and improving product convenience and user experience. The sealing element 4 effectively seals the bottle body 1 and the cap assembly 2, preventing the volatile fragrance solvent from evaporating too quickly, thereby extending the lifespan of the fragrance and maintaining its aroma. The evaporation component 3 punctures the sealing cap 42 through the puncture part 31 and comes into contact with the fragrance solvent. The evaporation part 32 then releases the fragrance outward through the aroma diffuser 24. The user can activate the fragrance evaporation function when needed. When not in use, the evaporation component separates from the fragrance solvent, which helps to more effectively control the evaporation rate and concentration of the fragrance.

[0053] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.

Claims

1. An inverted, press-to-dissipate aroma diffuser bottle, characterized in that, It includes a bottle body (1), a cap assembly (2), a evaporation assembly (3), and a seal (4); The bottle body (1) has an opening (12) at the top and a accommodating space (11) inside. The accommodating space (11) is used to place volatile aromatherapy solvents. The opening (12) and the accommodating space (11) are interconnected. The cap assembly (2) includes an upper cap (22) and a lower cap (23). The cap assembly (2) is rotatably connected to the bottle body (1). The cap assembly (2) and the accommodating space (11) are interconnected through the opening (12). The cap assembly (2) is provided with an aroma diffuser hole (24). The sealing element (4) includes a fixing part (41) and a sealing cap (42) connected to each other. The fixing part (41) is connected to the bottle body (1). The sealing cap (42) can seal the bottle body (1) and the cap assembly (2). The evaporation assembly (3) can open the sealing cap (42). A sliding cavity (21) penetrating both ends is provided between the sealing cap (42) and the upper cover (22). The evaporation component (3) includes a puncture part (31) and an evaporation part (32) fixedly connected to each other. The evaporation part (32) is connected to the cover assembly (2). The puncture part (31) can move into the accommodating space (11) to puncture the sealing cover (42) and fill the volatile aromatherapy solvent in the accommodating space (11). The evaporation part (32) can release fragrance outward through the aroma diffuser hole (24) by contacting the volatile aromatherapy solvent in the puncture part (31).

2. The inverted, press-to-dissipate aroma diffuser bottle according to claim 1, characterized in that, The puncture portion (31) is inclined at one end near the accommodating space (11).

3. The inverted, press-to-dissipate aroma diffuser bottle according to claim 1, characterized in that, The puncture portion (31) is hollow, and the evaporation portion (32) is housed within the puncture portion (31).

4. The inverted, press-to-dissipate aroma diffuser bottle according to claim 1, characterized in that, The volatile part (32) is made of PE.

5. The inverted, press-to-dissipate aroma diffuser bottle according to claim 1, characterized in that, The cap assembly (2) includes an upper cap (22) and a lower cap (23). The lower cap (23) is threaded to the bottle body (1). The lower cap (23) is provided with a limiting groove. The upper cap (22) is provided with a fastening point. The fastening point of the upper cap (22) cooperates with the limiting groove of the lower cap (23). The upper cap (22) is snapped onto the lower cap (23). The puncture part (31) and the evaporation part (32) are both fixedly connected to the upper cap (22).

6. The inverted, press-to-dissipate aroma diffuser bottle according to claim 1, characterized in that, The puncture part (31) is also provided with an evaporation hole (33), and the aroma diffuser hole (24) is provided on the lower cover (23). The aroma diffuser hole (24) is connected to the evaporation hole (33). The aroma diffuser hole (24) is used to assist the puncture part (31) in evaporating the aroma solvent.

7. The inverted, press-to-dissipate aroma diffuser bottle according to claim 6, characterized in that, The number of aroma diffuser holes (24) is multiple, and the multiple aroma diffuser holes (24) are arranged at intervals along the circumference of the lower cover (23).

8. The inverted, press-to-dissipate aroma diffuser bottle according to claim 6, characterized in that, The number of evaporation holes (33) is multiple, and the multiple evaporation holes (33) are arranged at intervals along the circumference of the evaporation component (3).