Combined packaging box
The modular packaging design enables dynamic connection and protection of volatile substances, solving the problem of volatile substances being easily contaminated, extending their service life and providing diverse storage functions, making it suitable for home and gift packaging.
Patent Information
- Application Number
- CN202520519782.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-21
AI Technical Summary
Existing packaging for volatile substances lacks effective protection, making the substances susceptible to environmental contamination and affecting their performance and lifespan.
The packaging box adopts a modular design, which uses hinges to achieve dynamic connection of the volatile components. Combined with the base, transition piece, filter, and volatile chamber, it forms a uniform dispersion and protection of volatiles. The filter uses built-in sponge to block dust and bacteria, the volatile chamber controls the concentration and releases it stably, and the storage cavity expands the storage space.
It effectively prevents volatile pollution, extends service life, meets the demand for high quality and long life, and provides insect repellent and fragrance functions, making it suitable for household daily necessities and gift packaging.
Smart Images

Figure CN223891592U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of packaging boxes, and specifically to a modular packaging box. Background Technology
[0002] As people's living standards improve, products that emit volatile gases indoors, such as air fresheners and insect repellent sachets, are becoming increasingly common in daily life.
[0003] However, most of these products on the market currently use simple packaging, leaving them exposed to the air and susceptible to environmental pollutants such as dust and bacteria, which can lead to deterioration, affect their performance and lifespan, and lack effective protective measures. As a result, they fail to meet consumers' demand for high-quality, long-lasting products. Summary of the Invention
[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a modular packaging box. By dynamically connecting the volatile component to the box body, the hinge allows for the conversion between storage and use states, avoiding long-term exposure and contamination of volatiles. The upper cavity of the box body houses the volatile component, while the lower storage cavity expands the storage space, meeting the diverse usage needs of the packaging box. The volatile component is precisely positioned using a base frustum and limiting components. The volatiles are evenly dispersed through the vent plate of the transition component. The sponge inside the filter component forms a physical barrier, blocking dust and bacteria while allowing molecules to pass through. The gas collection chamber of the volatile chamber controls the concentration for continuous and stable release, effectively preventing contaminants from contacting volatiles and extending their service life. The gas collection chamber of the volatile chamber controls the concentration for continuous and stable release. At the same time, by combining storage and volatile functions, the product also achieves additional insect-repellent and fragrance effects, meeting the requirements of high quality and long lifespan.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A modular packaging box includes at least one box body, which is connected to a volatile component via a hinge. The volatile component consists of a base connected to the hinge, a transition member disposed above the base, a filter member disposed above the transition member, and a volatile chamber disposed above the filter member. The base is used to hold volatiles, the transition member is used to allow the volatiles to disperse and flow out evenly, the filter member is used to prevent the volatiles from contacting other pollutants, and the volatile chamber is used to disperse the volatiles to the outside.
[0007] The lower layer of the box has a storage cavity, in which a storage component is slidably connected for storage. The storage component is used to store the volatile components. The upper layer of the box has a placement cavity for storing the volatile components. The inner side of the placement cavity is connected to the side of the hinge component.
[0008] The hinge includes a first connecting plate disposed inside the mounting cavity, a second connecting plate hinged to one end of the first connecting plate, and a limiting member disposed on one side of the second connecting plate, the limiting member being used to limit the evaporation component.
[0009] The base consists of a frustum on one side of the second connecting plate and a cylinder on the frustum. The cylinder has a cavity for holding volatile substances.
[0010] The transition piece consists of a connecting part that is tightly connected to one end of the cylinder, a tray that is fixedly connected to one end of the connecting part, and a vent plate located between the connecting part and the tray. The tray is used to prevent the transition piece from sliding completely into the cylinder. Several vent holes are provided on the vent plate for the passage of volatiles.
[0011] The filter element consists of a fastening part that is tightly connected to the outside of the tray and a filter part located above the fastening part, which is used to connect the base and the evaporation chamber.
[0012] The filter element contains a sponge to prevent external substances from entering and contaminating the volatiles in the base.
[0013] The evaporation chamber consists of a gas collection chamber tightly connected to one end of the filter section and an evaporation section located above the gas collection chamber. The evaporation section has several evaporation holes. The gas collection chamber is used to guide the volatiles to the evaporation section, and the evaporation section is used to release the volatiles to the outside through the evaporation holes.
[0014] The beneficial effects of this utility model are as follows:
[0015] 1. By combining the base, transition parts, filter parts and volatilization chamber of the volatilization component, not only is the storage, protection and release of volatiles realized, but it also effectively prevents volatiles from being affected by pollutants such as dust and bacteria, ensuring its long-term use effect and service life. At the same time, it protects volatiles from damage by flying insects, mosquitoes and other pests, and solves the problem that indoor volatile gas products are easily contaminated and deteriorated, affecting their use effect and service life.
[0016] 2. The upper part of the box has a placement cavity to accommodate the evaporation component, while the lower storage cavity expands the storage space through a sliding connection to meet diverse storage needs. The evaporation component is dynamically connected to the box via a hinge, supporting two configurations: when storing, the evaporation component is kept in the placement cavity to save space; when using, first open the lid, then flip it 120-180 degrees using the hinge, and close the lid. When the hinge returns to 90 degrees, the evaporation component rests smoothly on the lid. This design is suitable for various scenarios, such as storing household daily necessities, gifts, and clothing. It is particularly effective in situations where items need protection or fragrance, such as storing clothing and bedding, where its insect-repelling and fragrance-enhancing functions can play a significant role. In gift packaging, the unique evaporation component can also bring extra surprise and pleasure to the recipient. Attached Figure Description
[0017] Figure 1 This is a perspective view of the utility model in use.
[0018] Figure 2 This is a cross-sectional view of the storage state of this utility model.
[0019] Figure 3 This is a 1 / 4 cross-sectional view of the volatile component of this utility model.
[0020] Figure 4 This is a perspective view of the hinge component of this utility model.
[0021] Explanation of icon numbers:
[0022] 1-Box body, 10-Box lid, 11-Storage cavity, 12-Storage component, 13-Placement cavity, 2-Hinge, 20-First connecting plate, 21-Second connecting plate, 22-Limiting component, 3-Volatile component, 30-Base, 300-Frustum, 301-Cylinder, 302-Cavity, 31-Transition component, 310-Connecting part, 311-Tray, 312-Ventilating plate, 313-Ventilating hole, 32-Filter component, 320-Snap-fitting part, 321-Filtering part, 322-Sponge body, 33-Volatile chamber, 330-Gas collection cavity, 331-Volatile part, 332-Volatile hole. Detailed Implementation
[0023] The present invention will be further described below with reference to the accompanying drawings:
[0024] like Figure 1-4As shown, this utility model relates to a modular packaging box, including at least one box body 1. The box body 1 is connected to a volatile component 3 via a hinge 2. The volatile component 3 consists of a base 30 connected to the hinge 2, a transition member 31 disposed above the base 30, a filter member 32 disposed above the transition member 31, and a volatile chamber 33 disposed above the filter member 32. The base 30 is used to hold volatiles, and the transition member 31 is used to ensure uniform volatile distribution. The filter element 32 is used to prevent volatiles from coming into contact with other pollutants. The evaporation chamber 33 is used to disperse volatiles outwards. When using the evaporation assembly 3, open the lid 10 located at the top of the box body 1, and flip the evaporation assembly 3 outwards by 120 to 180 degrees using the hinge 2 which is in a folded state. Then, close the lid 10 onto the box body 1, allowing the hinge 2 to rotate back to 90 degrees. The evaporation assembly 3 and the lid 10 remain horizontal. When the packaging box is accurately laid flat... In use, the volatile component 3 uses its own weight to press the second connecting plate 21 tightly against the box cover 10 for stability. When loading volatiles, open the transition piece 31 and the filter piece 32, put the volatiles into the base 30, insert the transition piece 31 first, and then close the filter piece 32 to complete the loading. During the loading process, the filter piece 32 and the volatile chamber 33 do not need to be separated. Through the rotation of the hinge piece 2, the volatile component 3 can freely switch between the storage state and the use state, which is convenient for users. The base 30, transition piece 31, filter piece 32 and volatile chamber 33 of the volatile component 3 not only store, protect and release volatiles to the outside, but also make the volatiles less susceptible to the influence of environmental pollutants such as dust and bacteria, ensuring its long-term use effect and service life. It effectively protects the volatiles from damage by flying insects, mosquitoes and other pests, meeting consumers' demand for high-quality and long-life products.
[0025] like Figure 1-4 As shown, the lower layer of the box body 1 has a storage cavity 11, and a storage component 12 is slidably connected inside the storage cavity 11. The storage component 12 is used to store items. The upper layer of the box body 1 has a placement cavity 13, which is used to store the volatile component 3. The storage component 12 inside the storage cavity 11 expands its storage space. When the user stores items inside, the volatile components protect the items. When the volatile aroma makes the items smell nice, it increases the user's user experience, or it releases an insect-repellent scent to protect the stored items from insect damage.
[0026] like Figure 1-4As shown, the hinge 2 includes a first connecting plate 20 disposed inside the housing cavity 13, a second connecting plate 21 hinged to one end of the first connecting plate 20, and a limiting member 22 disposed on one side of the second connecting plate 21. The limiting member 22 is used to limit the evaporation component 3. The side of the first connecting plate 20 is fixed to the inner wall of the housing cavity 13 by fixing glue or snap fasteners. Here, the hinge 2 is flipped outward by flipping the second connecting plate 21 upward to achieve the action of flipping the hinge 2 outward by 120 degrees to 180 degrees. The hinge 2 cooperates with the box body 1 to realize the storage and use of the evaporation component 3.
[0027] like Figure 1-4 As shown, the base 30 consists of a frustum 300 located on one side of the second connecting plate 21 and a cylinder 301 located on the frustum 300. The cylinder 301 has a cavity 302 inside, which is used to hold volatiles. The frustum 300 and the cylinder 301 are integrally formed. The base 30 achieves the limiting of the hinge 2 through the cooperation of the frustum 300 and the limiting member 22, thus ensuring the stability of the volatile component 3.
[0028] like Figure 1-4 As shown, the transition piece 31 consists of a connecting part 310 that is tightly fitted to one end of the cylinder 301, a tray 311 that is fixedly connected to one end of the connecting part 310, and a vent plate 312 disposed between the connecting part 310 and the tray 311. The tray 311 is used to prevent the transition piece 31 from sliding completely into the cavity 302 inside the cylinder 301. Several vent holes 313 are provided on the vent plate 312 for the passage of volatiles. The cavity 302 of the base 30 and the filter 32 are connected through the connecting part 310 and the tray 311. When the filter 32 needs to be removed, hold the cylinder 301 and pull the filter 32 outward, so that the fastening part 320 of the filter 32 can be released from the tray 311, which greatly facilitates the user to pick up and put away volatiles.
[0029] like Figure 1-4 As shown, the filter element 32 consists of a fastening part 320 that fits tightly with the tray 311 and a filter part 321 located above the fastening part 320. The filter part 321 is used to connect the base 30 and the evaporation chamber 33. The filter element 32 contains a sponge 322, which is used to prevent external substances from entering and contaminating the volatiles in the base. The filter element 32, in cooperation with the sponge 322, maintains the original properties of the volatiles, allowing the volatiles to maintain their optimal performance over a long period of time.
[0030] like Figure 1-4As shown, the evaporation chamber 33 consists of a gas collecting chamber 330 tightly connected to one end of the filter section 321 and an evaporation section 331 disposed above the gas collecting chamber 330. The evaporation section 331 has several evaporation holes 332. The gas collecting chamber 330 is used to guide the volatiles to the evaporation section 331. The evaporation section 331 is used to release the volatiles to the outside through the evaporation holes 332. The evaporation chamber 33 concentrates the volatiles into the evaporation section 331 through the gas collecting chamber 330, so that the volatiles maintain a certain concentration and ensure the continuity of release.
[0031] This design combines storage and evaporation functions, mainly consisting of a box body 1 and an evaporation component 3. The upper layer of the box body 1 has a placement cavity 13 to accommodate the evaporation component 3, while the lower storage cavity 11 expands the storage space through a sliding storage component 12, meeting diverse storage needs. The evaporation component 3 is dynamically connected to the box body 1 via a hinge 2. This hinge 2 consists of a first connecting plate 20 located inside the placement cavity 13, a hinged second connecting plate 21, and a limiting component 22, supporting two configurations: when stored, the evaporation component 3 is kept within the placement cavity 13 to save space. First, open the lid 10. After rotating the lid 10 by 120-180 degrees using the hinge 2, close the lid 10. When the hinge 2 returns to 90 degrees, the evaporation component 3 will fall smoothly onto the lid 10. The base 30 of the evaporation component 3 is formed by combining a frustum 300 and a cylinder 301 to create a cavity 302. The frustum 300 cooperates with the limiting member 22 to achieve limiting. The cylindrical cavity 302 contains the volatiles. The transition member 31 is tightly connected to the cylinder 301 through the connecting part 310. The tray 311 prevents the transition member 31 from completely sliding into the cylindrical cavity 302. The vent plate 312 evenly distributes the volatiles through the vent holes. The system evenly disperses volatiles; the filter element 32 is tightly connected to the tray 311 via a snap-fit part 320, and the internal sponge 322 forms a physical barrier, effectively blocking pollutants while allowing volatile molecules to pass through; the volatile chamber 33 guides the volatiles to the volatile part 331 with volatile holes 332 through the gas collection chamber 330, achieving continuous and stable release. The base 30 is tightly connected to the transition part 31, and the snap-fit connection of the filter element 32 simplifies the volatile replacement process. The gas collection chamber 330 maintains the stability of the volatile concentration. This volatile assembly 3 not only realizes the storage, protection, and external release of volatiles, but also... It effectively prevents volatile substances from being affected by pollutants such as dust and bacteria, ensuring its long-term effectiveness and lifespan. At the same time, it protects volatile substances from damage caused by flying insects and mosquitoes, meeting consumers' demand for high-quality, long-life products. It is suitable for various scenarios, such as storage of household daily necessities, gifts, and clothing storage. Especially in situations where items need to be protected or scented, such as storing clothing and bedding, its insect-repelling and fragrance-enhancing functions can play a significant role. In gift packaging, the unique volatile component can also bring extra surprise and pleasant experience to the recipient.
[0032] The above description is only a preferred embodiment of the present utility model and is not intended to limit the scope of the present utility model. Therefore, without departing from the design spirit of the present utility model, any equivalent changes or modifications made by those skilled in the art to the structure, features and principles of the present utility model should fall within the protection scope of the patent application of the present utility model.
Claims
1. A modular packaging box, comprising at least one box body, characterized in that: The housing is connected to the volatile component via a hinge. The volatile component consists of a base connected to the hinge, a transition piece above the base, a filter piece above the transition piece, and a volatile chamber above the filter piece. The base is used to hold the volatiles, the transition piece is used to allow the volatiles to disperse and flow out evenly, the filter piece is used to prevent the volatiles from contacting other pollutants, and the volatile chamber is used to disperse the volatiles to the outside.
2. The modular packaging box according to claim 1, characterized in that: The lower layer of the box has a storage cavity, in which a storage component is slidably connected for storage. The storage component is used to store the volatile components. The upper layer of the box has a placement cavity for storing the volatile components. The inner side of the placement cavity is connected to the side of the hinge component.
3. A modular packaging box according to claim 2, characterized in that: The hinge includes a first connecting plate disposed inside the mounting cavity, a second connecting plate hinged to one end of the first connecting plate, and a limiting member disposed on one side of the second connecting plate, the limiting member being used to limit the evaporation component.
4. A modular packaging box according to claim 3, characterized in that: The base consists of a frustum on one side of the second connecting plate and a cylinder on the frustum. The cylinder has a cavity for holding volatile substances.
5. A modular packaging box according to claim 4, characterized in that: The transition piece consists of a connecting part that is tightly connected to one end of the cylinder, a tray that is fixedly connected to one end of the connecting part, and a vent plate located between the connecting part and the tray. The tray is used to prevent the transition piece from sliding completely into the cylinder. Several vent holes are provided on the vent plate for the passage of volatiles.
6. A modular packaging box according to claim 5, characterized in that: The filter element consists of a fastening part that is tightly connected to the outside of the tray and a filter part located above the fastening part, which is used to connect the base and the evaporation chamber.
7. A modular packaging box according to claim 6, characterized in that: The filter element contains a sponge to prevent external substances from entering and contaminating the volatiles in the base.
8. A modular packaging box according to claim 6, characterized in that: The evaporation chamber consists of a gas collection chamber tightly connected to one end of the filter section and an evaporation section located above the gas collection chamber. The evaporation section has several evaporation holes. The gas collection chamber is used to guide the volatiles to the evaporation section, and the evaporation section is used to release the volatiles to the outside through the evaporation holes.