Container, storage box and bicycle
By designing snap-fit grooves on the outer wall of the container and using elastic materials, the one-piece molding structure solves the problem of the complexity of installing existing storage boxes, enabling fast, flexible installation and stable use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN ELECTRIC PLUS BICYCLE TECHNOLOGY CO LTD
- Filing Date
- 2025-04-02
- Publication Date
- 2026-05-05
AI Technical Summary
Existing storage boxes are complex and time-consuming to install, reducing their flexibility in use.
The container's outer wall features snap-fit grooves for quick installation onto various support structures without the need for additional fasteners. Combining elastic materials and a one-piece molded structure, it adapts to mounting rods of different sizes and shapes.
It improves the installation efficiency and usage flexibility of containers, adapts to various usage scenarios, and enhances structural stability and durability.
Smart Images

Figure CN224198256U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of item storage technology, and in particular to a container, storage box, and bicycle. Background Technology
[0002] Storage boxes are common items in daily life, used to store small items such as keys, pens, power banks, and data cables to improve space utilization and convenience of item management. However, in related technologies, storage boxes typically require connectors for installation, which usually require fasteners such as screws and bolts. This increases the complexity and time cost of installation, and reduces the flexibility of using the storage boxes. Utility Model Content
[0003] The main purpose of this utility model is to propose a container, storage box, and bicycle, which aims to improve the installation efficiency and flexibility of the container.
[0004] To achieve the above objectives, the present invention proposes a container in which a snap-fit groove is formed on the outer side wall, the snap-fit groove being used to install and fix the container.
[0005] In one embodiment, the snap-fit groove has a first groove area and a second groove area that are connected to each other. The second groove area has an inner circumferential surface that is arc-shaped. The first groove area is located at the opening of the second groove area. The first groove area has two vertical surfaces that are respectively connected to the two ends of the inner circumferential surface of the second groove area. The opening of the snap-fit groove is formed between the ends of the two vertical surfaces that are respectively away from the second groove area; and / or
[0006] The snap-fit groove extends from the opening of the container to the bottom wall of the container.
[0007] In one embodiment, the snap-fit groove divides the container into a first receiving cavity and a second receiving cavity that are in communication; the volume of the first receiving cavity is larger than the volume of the second receiving cavity, and the first receiving cavity has an inclined sidewall with reinforcing ribs; and / or
[0008] The container has a bottom plate and a plurality of side plates connected to the bottom plate, at least one of the side plates being inclined; the outer peripheral surface of at least one of the side plates is curved.
[0009] In one embodiment, the inner wall of the snap-fit groove is provided with an elastic gasket, the elastic gasket forming a through hole; and / or
[0010] The bottom wall of the container has at least one through hole.
[0011] In one embodiment, the container is made of an elastic material; and / or
[0012] The container is a one-piece molded structure.
[0013] This utility model also proposes a storage box, comprising:
[0014] The container described in any of the above embodiments; and
[0015] A lid, which is detachably installed on the container, has a snap-fit notch that is connected to a snap-fit groove.
[0016] In one embodiment, a positioning slot is formed on the side wall of the container, and a positioning post is formed on the side of the lid facing the container, the positioning post being inserted into the positioning slot; and / or
[0017] Both the outer circumferential surfaces of the container and the lid are provided with an anti-slip layer.
[0018] In one embodiment, the cross-sectional area of the positioning post gradually decreases from the end furthest from the container to the end closest to the container, and the cross-sectional area of the positioning slot gradually decreases from the end closest to the lid to the end furthest from the lid; and / or
[0019] The side of the cover facing away from the container has a recessed positioning groove formed along the extension direction of the positioning post at the corresponding positioning post.
[0020] In one embodiment, the side wall of the cover is provided with a hook-on portion; and / or
[0021] A surrounding plate is formed around the perimeter of the cover, and a vertical retaining plate and an inclined retaining plate are formed on the side of the cover facing the container. The distance between the inclined retaining plate and the surrounding plate gradually increases from the side closer to the cover to the side farther away from the cover.
[0022] This utility model also proposes a bicycle, comprising:
[0023] The storage box described in any of the above embodiments; and
[0024] The storage box is attached to the frame via the snap-fit slot.
[0025] In this utility model, the outer wall of the container has a snap-fit groove for snapping the container onto a mounting rod or other support structure. This snap-fit groove design allows the container to be quickly and easily installed onto various support structures without additional fasteners, improving installation efficiency and flexibility. In practical use, the container can be snapped onto furniture legs to store frequently used items such as remote controls and chargers; onto exercise equipment to store personal items like mobile phones; onto shelf uprights to store scanners; or onto bicycle frames to store repair tools like wrenches and personal belongings. The container can also be used as a flowerpot. Holes are provided in the bottom wall of the container, allowing it to snap onto road railings, balcony railings, or bicycle steering columns via the snap-fit groove. This serves as a flowerpot for urban greening or for carrying small items or plants, enhancing the aesthetics of the city or increasing the practicality and aesthetics of bicycles. Cable ties are used for securing the container, ensuring installation stability in various usage scenarios. This utility model does not limit the container's application scenarios. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0027] Figure 1 A schematic diagram of a container embodiment of this utility model is provided;
[0028] Figure 2 A side view of an embodiment of the container provided by this utility model;
[0029] Figure 3 A schematic diagram of the structure of one embodiment of the cover of this utility model is provided;
[0030] Figure 4 A schematic diagram of another embodiment of the container provided by this utility model.
[0031] Explanation of icon numbers:
[0032] 100. Container; 1. Snap-fit groove; 11. First groove area; 12. Second groove area; 2. First receiving cavity; 21. Side wall surface; 22. Reinforcing rib; 3. Second receiving cavity; 4. Base plate; 5. Side plate; 6. Positioning slot;
[0033] 200. Cover; 210. Snap-fit notch; 220. Positioning post; 230. Hanging part; 240. Enclosure panel; 250. Vertical snap-fit plate; 260. Angled snap-fit plate.
[0034] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0035] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0036] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0037] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0038] This utility model proposes a container 100.
[0039] Please see Figure 1 In one embodiment of the present invention, a snap-fit groove 1 is formed on the outer side wall of the container 100, and the snap-fit groove 1 is used to realize the installation and fixation of the container 100.
[0040] In this utility model, the outer side wall of the container 100 is formed with a snap-fit groove 1. The snap-fit groove 1 is used to snap the container 100 onto the mounting rod or other support structure. The design of the snap-fit groove 1 allows the container 100 to be quickly and easily installed onto various support structures without the need for additional fasteners, thereby improving the installation efficiency and flexibility of the container 100. In practical use, container 100 can be clipped onto the legs of furniture to store commonly used items such as remote controls and chargers; it can be clipped onto exercise equipment to store items such as mobile phones carried by users; it can be clipped onto the uprights of shelves to store items such as scanners; and it can also be clipped onto the frame of a bicycle to store repair tools such as wrenches and items carried by users. At the same time, container 100 can also be used as a flower pot. A hole is opened in the bottom wall of container 100, and container 100 is clipped onto road guardrails, balcony railings, or bicycle steering columns through the snap-fit groove 1. It can be used as a flower pot for urban greening or to carry small items or plants to improve the aesthetics of the city or increase the practicality and aesthetics of bicycles. Cable ties are used to secure it to ensure the stability of the installation in the use scenario. This utility model does not limit the use scenario of container 100.
[0041] The shape of container 100 can be a sphere, a cube, or a cuboid (e.g., ...). Figure 4 (as shown) or irregular shapes (such as) Figure 1 (as shown), etc., are not listed here one by one. This utility model does not limit them. When the container is attached to the frame of different models of bicycles, the shape of the container 100 can be changed according to the adaptability of different models of bicycles to avoid the gear parts or other parts of the bicycle, reduce interference during installation, and extend the service life of the container 100 and bicycle parts.
[0042] Specifically, please refer to Figure 1 In one embodiment of this utility model, the snap-fit groove 1 has a first groove area 11 and a second groove area 12. The second groove area 12 has an inner circumferential surface with an arc shape. The first groove area 11 is located at the opening of the second groove area 12. The first groove area 11 has two vertical surfaces that connect to the two ends of the inner circumferential surface of the second groove area 12 respectively. The opening of the snap-fit groove 1 is formed between the ends of the two vertical surfaces that are away from the second groove area 12. The two vertical surfaces are used to contact the two sides of the mounting rod, providing stable support and fixation. The inner circumferential surface of the second groove area 12 is arc-shaped to accommodate the mounting rod. The arc design can better fit the shape of the mounting rod and provide a more stable fixing effect. The mounting rod can be inserted into the snap-fit groove 1 through the opening of the snap-fit groove 1 and is firmly fixed by the vertical surface of the first groove area 11 and the arc-shaped inner circumferential surface of the second groove area 12. The design of the first groove area 11 and the second groove area 12 can adapt to mounting rods of different sizes and shapes, improving the versatility and flexibility of the container 100.
[0043] To improve the installation stability of container 100, please refer to [link / reference]. Figure 1 In one embodiment, the snap-fit groove 1 extends from the opening of the container 100 to the bottom wall of the container 100. The snap-fit groove 1 extends from the opening of the container 100 to the bottom wall of the container 100, ensuring that the mounting rod can be fixed along the entire length of the snap-fit groove 1. This increases the contact area between the snap-fit groove 1 and the mounting rod, providing more stable support and reducing loosening or detachment caused by external forces.
[0044] Further, please refer to Figure 1 In one embodiment, the snap-fit groove 1 divides the container 100 into a first receiving cavity 2 and a second receiving cavity 3 that are connected to each other; the volume of the first receiving cavity 2 is greater than the volume of the second receiving cavity 3, and the first receiving cavity 2 has an inclined side wall 21, the side wall 21 being provided with reinforcing ribs 22. The snap-fit groove 1 is located in the middle of the container 100, dividing the container 100 into a first receiving cavity 2 and a second receiving cavity 3 that are connected. This design allows the container 100 to be installed on the mounting rod in a more balanced manner during installation, reducing tilting caused by uneven weight distribution. The snap-fit groove 1 divides the container 100 into a first receiving cavity 2 and a second receiving cavity 3 that are connected. The space of the first receiving cavity 2 is larger than that of the second receiving cavity 3. This design allows for a more reasonable allocation of the internal space of the container 100. The first receiving cavity 2 can store larger items, while the second receiving cavity 3 can store smaller items or tools. The side wall 21 of the first receiving cavity 2 is provided with reinforcing ribs 22. The design of the reinforcing ribs 22 can significantly enhance the structural strength of the container 100. Especially on the side wall 21, which has a large area, the reinforcing ribs 22 can effectively prevent deformation caused by the pressure of heavy objects, enhance the durability of the container 100, and extend the service life of the container 100.
[0045] Please see Figure 1 and Figure 2 In one embodiment of this utility model, the container 100 has a base plate 4 and a plurality of side plates 5 connected to the base plate 4, at least one of the side plates 5 being inclined; the outer peripheral surface of at least one of the side plates 5 is curved. When the container 100 is not in use, the inclined side plates 5 allow multiple containers 100 to be nested together for storage, reducing space occupation. The upper container 100 can be tightly nested inside the lower container 100, making the containers 100 fit more snugly. The inclined side plates 5 can enhance the structural stability of the container 100, especially when bearing heavy items, reducing deformation caused by pressure. The curved outer peripheral surface can avoid obstruction during installation, such as when installed on the seat post of a bicycle, avoiding obstruction of the bicycle's gear components, reducing interference during installation. The curved outer peripheral surface can also play a reinforcing role, enhancing the structural strength of the container 100, especially when subjected to external forces, it can better disperse pressure and reduce local stress concentration.
[0046] To improve the applicability of container 100, in one embodiment, the inner wall of the snap-fit groove 1 is provided with an elastic gasket, which encloses a through hole. The through hole provides installation space for the mounting rod. The size of the snap-fit groove 1 can be made slightly larger to accommodate mounting rods of different diameters. The elastic gasket can fill the gap between the snap-fit groove 1 and the mounting rod, ensuring that the mounting rod can be firmly fixed in the snap-fit groove 1. The design of the elastic gasket allows the snap-fit groove 1 to adapt to mounting rods of different diameters, significantly improving the versatility of container 100 and enabling it to adapt to mounting rods of different diameters, reducing installation problems caused by mismatched mounting rod sizes. The elastic gasket can provide cushioning, reducing direct contact between the mounting rod and the snap-fit groove 1, thereby reducing wear on container 100 caused by external forces.
[0047] In another embodiment, the bottom wall of the container 100 has at least one through hole. When the container 100 is used as a flowerpot, the bottom wall of the container 100 has at least one through hole for drainage, which prevents water accumulation in the flowerpot; the bottom wall of the container 100 can be inclined from the center to the edge, so that water can flow more smoothly to the through hole, further promoting drainage and preventing root rot caused by water accumulation; the inclined design of the bottom wall also reduces the pressure of water accumulation on the bottom wall and enhances the structural stability of the bottom wall.
[0048] In one embodiment, the container 100 is made of an elastic material. The elastic material allows the container 100 to deform to a certain extent according to the shape and size of the mounting rod, thus better conforming to the mounting rod and adapting to mounting rods of different diameters and shapes, improving the versatility and flexibility of the container 100. The elastic material provides cushioning, reducing direct contact between the mounting rod and the container 100, thereby reducing wear caused by external forces. The elastic material allows the container 100 to be quickly installed onto the mounting rod without additional adjustments or fasteners, improving installation efficiency. The elastic material also has a certain degree of friction, preventing the container 100 from sliding on the mounting rod and improving safety.
[0049] In another embodiment, the container 100 is a one-piece molded structure. The one-piece molding design allows the various parts of the container 100 (such as the base plate 4, side plates 5, snap-fit grooves 1, etc.) to form a single unit during manufacturing, reducing assembly steps and connection points. This one-piece molding design improves the overall structural strength of the container 100, reduces potential weaknesses caused by connection points, and enhances the durability of the container 100. Furthermore, the one-piece molding design reduces gaps caused by connection points, improving the sealing performance of the container 100 and preventing the intrusion of dust and moisture. In practical applications, the one-piece molding design significantly improves the structural stability of the container 100 and reduces loosening or damage caused by external forces. Specifically, the container 100 can be made using 3D printing technology. 3D printing technology can customize the shape, size, and function of the container 100 according to specific needs to meet the needs of different users. 3D printing technology can manufacture complex internal structures, such as snap-fit grooves 1, side walls 21, reinforcing ribs 22, etc., without additional molds or processing steps. 3D printing technology can quickly manufacture the container 100, reducing the production cycle and cost. 3D printing technology can use a variety of materials, including elastic materials, to meet different usage requirements.
[0050] Please see Figure 1 and Figure 3 This utility model also proposes a storage box, which includes a lid 200 and a container 100. The specific structure of the container 100 is as described in the above embodiments. Since this storage box adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be described in detail here. The lid 200 is detachably placed on the container 100, and the lid 200 has a snap-fit notch 210, which communicates with the snap-fit groove 1.
[0051] In this utility model, the lid 200 is detachably mounted on the container 100, allowing users to easily open or close the storage box as needed, facilitating the storage and retrieval of items. The detachable design of the lid 200 and the container 100 allows the storage box to adapt to different usage scenarios, improving the product's versatility and flexibility. The detachable mounting of the lid 200 on the container 100 can be achieved using a positioning post 220 and a positioning slot 6, or it can use a buckle and a slot; this utility model does not limit this approach. The snap-fit notch 210 on the lid 200 communicates with the snap-fit groove 1 of the container 100, and the snap-fit... The notch 210 matches the shape of the slot 1, ensuring that the cover 200 can be firmly fixed to the container 100, reducing loosening or falling off due to shape mismatch. In actual use, the storage box can be clipped onto the legs of furniture to store commonly used items such as remote controls and chargers; it can be clipped onto sports equipment to store items such as mobile phones carried by users; it can be clipped onto the uprights of shelves to store items such as scanners; and it can also be clipped onto the frame of a bicycle to store repair tools such as wrenches and items carried by users. This utility model does not limit the usage scenarios of the container 100.
[0052] To achieve a stable connection between the cover 200 and the container 100, please refer to [link / reference]. Figure 1 and Figure 3 In one embodiment of the present invention, a positioning slot 6 is formed on the side wall of the container 100, and a positioning post 220 is formed on the side of the cover 200 facing the container 100, and the positioning post 220 is inserted into the positioning slot 6. The positioning slot 6 on the side wall of container 100 engages with the positioning post 220 of lid 200, ensuring precise alignment of lid 200 during installation and reducing installation errors. Precise alignment of the positioning slot 6 and positioning post 220 provides a stable connection, reducing the risk of lid 200 loosening or falling off due to inaccurate alignment. In practical applications, the engagement of the positioning slot 6 and positioning post 220 significantly improves installation convenience, allowing users to quickly install lid 200 onto container 100, reducing installation time and steps. This design significantly improves the structural stability between lid 200 and container 100, ensuring it will not loosen or fall off due to external forces during use. The engagement of the positioning slot 6 and positioning post 220 ensures a tight fit between lid 200 and container 100, reducing gaps and improving the sealing performance of the storage box. Good sealing performance prevents dust and moisture from entering the storage box, extending its service life.
[0053] In another embodiment of this utility model, both the outer peripheral surfaces of the container 100 and the lid 200 are provided with an anti-slip layer. The presence of an anti-slip layer on the outer peripheral surfaces of both the container 100 and the lid 200 significantly improves the stability of the user's grip, reduces the risk of dropping due to slippage, and enhances safety. The anti-slip layer can be made of rubber, silicone, or other materials with a high coefficient of friction to ensure a good grip in various environments. The anti-slip layer design makes it more convenient for users to use the storage box, especially when frequently opening and closing the lid 200. The anti-slip layer provides a better grip, allowing the storage box to maintain a good grip even with wet or oily hands, thus improving the product's applicability.
[0054] To further improve the connection stability between the cover 200 and the container 100, please refer to [link / reference needed]. Figure 1 and Figure 3 In one embodiment, the cross-sectional area of the positioning post 220 gradually decreases from the end furthest from the container 100 to the end closest to the container 100, and the cross-sectional area of the positioning slot 6 gradually decreases from the end closest to the cover 200 to the end furthest from the cover 200. The gradually decreasing cross-sectional areas of the positioning post 220 and the positioning slot 6 form a tapered structure. This design ensures that the positioning post 220 can be smoothly inserted into the positioning slot 6 and provides a stable connection after insertion. The tapered structure gradually tightens during insertion, providing a self-locking function and reducing loosening or detachment caused by external forces. In practical applications, the gradually decreasing cross-sectional area design allows the positioning post 220 to be smoothly inserted into the positioning slot 6, reducing installation steps and time, and improving installation convenience. The gradually decreasing cross-sectional area of the positioning post 220 and the positioning slot 6 allows for a better fit, reducing gaps and improving the sealing performance between the cover 200 and the container 100. Good sealing performance prevents dust and moisture from entering the storage box, extending its service life.
[0055] To facilitate storage of the storage box, in another embodiment, the side of the cover 200 facing away from the container 100 is recessed inward along the extending direction of the positioning post 220 to form a positioning groove. Specifically, the formation of the positioning groove makes the positioning post 220 hollow, and the shape of the positioning groove matches that of the positioning post 220. When the storage box is not in use, multiple covers 200 can be stacked, with the positioning post 220 of one cover 200 inserted into the positioning groove of another cover 200. Multiple containers 100 can be nested together for storage, with the upper container 100 tightly nested inside the lower container 100. After multiple covers 200 and containers 100 are stacked, the lowermost cover 200 covers the uppermost container 100, achieving storage and saving space.
[0056] Please see Figure 3In one embodiment, the side wall of the cover 200 is provided with a hanging part 230. The hanging part 230 on the side wall of the cover 200 allows the storage box to be conveniently hung on hooks, nails, or other supporting structures, reducing the space occupied on the desktop or floor. Users can also easily hang the storage box where needed, improving ease of use. The hanging part 230 can also serve as a handle for assisting in opening the cover. Users can easily grasp the hanging part 230 to open or close the cover 200. The design of the hanging part 230 provides a more stable grip point when opening the cover, reducing inconvenience caused by slipping or the cover being too tight, improving the user experience, and making the storage box more convenient and efficient to use.
[0057] To further enhance the stable connection between the cover 200 and the container 100, please refer to [link / reference]. Figure 3 In one embodiment, a surrounding plate 240 is formed around the periphery of the cover 200, and a vertical retaining plate 250 and an inclined retaining plate 260 are formed on the side of the cover 200 facing the container 100. The distance between the inclined retaining plate 260 and the surrounding plate 240 gradually increases from the side closer to the cover 200 to the side farther away from the cover 200. A surrounding plate 240 is formed around the periphery of the lid 200. The surrounding plate 240 provides additional structural support and enhances the stability of the lid 200. The surrounding plate 240 can fit tightly against the periphery of the opening of the container 100, improving the sealing performance and preventing dust and moisture from entering. A vertical retaining plate 250 is formed on the side of the lid 200 facing the container 100. The vertical retaining plate 250 provides stable support and ensures a tight connection between the lid 200 and the container 100, reducing loosening or falling off due to external forces. The gradually increasing spacing of the inclined retaining plates 260 makes the connection between the container 100 and the lid 200 increasingly tight, providing a self-locking function and reducing loosening or falling off due to external forces. The design of the inclined retaining plates 260 can further improve the sealing performance and prevent dust and moisture from entering.
[0058] This utility model also proposes a bicycle, including the storage box and frame described in any of the above embodiments. The storage box is snapped onto the frame via the snap-fit groove 1. The design of the snap-fit groove 1 allows the storage box to be easily snapped onto the frame without the need for additional fasteners such as screws or bolts, simplifying the installation process. The design of the snap-fit groove 1 can adapt to frames of different sizes and shapes, improving the versatility and flexibility of the storage box. The tight fit between the snap-fit groove 1 and the frame provides a stable connection, reducing loosening or detachment caused by external forces. The bicycle described above can be a bicycle, an electric-assisted bicycle, or a folding bicycle; this utility model does not limit this. Furthermore, the outer peripheral wall of the storage box can be adaptively adjusted according to different bicycle models to reduce installation interference between the storage box and the bicycle, and extend the service life of both the storage box and the bicycle.
[0059] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A container, characterized in that, The outer wall of the container is formed with a snap-fit groove, which is used to install and fix the container. The snap-fit groove has a first groove area and a second groove area that are connected to each other. The second groove area has an inner circumferential surface that is arc-shaped. The first groove area is located at the opening of the second groove area. The first groove area has two vertical surfaces that are respectively connected to the two ends of the inner circumferential surface of the second groove area. The opening of the snap-fit groove is formed between the ends of the two vertical surfaces that are away from the second groove area.
2. The container as described in claim 1, characterized in that, The snap-fit groove extends from the opening of the container to the bottom wall of the container.
3. The container as described in claim 1, characterized in that, The snap-fit groove divides the container into a first receiving cavity and a second receiving cavity that are connected; the volume of the first receiving cavity is larger than the volume of the second receiving cavity, and the first receiving cavity has an inclined side wall surface with reinforcing ribs; and / or The container has a bottom plate and a plurality of side plates connected to the bottom plate, at least one of the side plates being inclined; the outer peripheral surface of at least one of the side plates is an arc surface.
4. The container as claimed in claim 1, characterized in that, The inner wall of the snap-fit groove is provided with an elastic gasket, and the elastic gasket surrounds and forms a through hole; and / or The bottom wall of the container has at least one through hole.
5. The container as claimed in claim 1, characterized in that, The container is made of an elastic material; and / or The container is a one-piece molded structure.
6. A storage box, characterized in that, include: The container as described in any one of claims 1 to 5; and A lid, which is detachably placed on the container, has a snap-fit notch that is connected to a snap-fit groove.
7. The storage box as described in claim 6, characterized in that, The container has a positioning slot formed on its side wall, and the lid has a positioning post formed on the side facing the container, the positioning post being inserted into the positioning slot; and / or Both the outer circumferential surfaces of the container and the lid are provided with an anti-slip layer.
8. The storage box as described in claim 7, characterized in that, The cross-sectional area of the positioning post gradually decreases from the end furthest from the container to the end closest to the container, and the cross-sectional area of the positioning slot gradually decreases from the end closest to the lid to the end furthest from the lid; and / or The side of the cover facing away from the container has a recessed positioning groove formed along the extension direction of the positioning post at the corresponding positioning post.
9. The storage box as described in claim 6, characterized in that, The side wall of the cover is provided with a hanging part; and / or A surrounding plate is formed around the perimeter of the cover, and a vertical retaining plate and an inclined retaining plate are formed on the side of the cover facing the container. The distance between the inclined retaining plate and the surrounding plate gradually increases from the side closer to the cover to the side farther away from the cover.
10. A bicycle, characterized in that, include: The storage box as described in any one of claims 6 to 9; and The storage box is attached to the frame via the snap-fit slot.