Storage basket and storage equipment

By designing side panels and support legs with switchable positions, the flexibility and stability of the storage basket are enhanced, solving the problem of the storage basket's single function and enabling efficient storage and use in multiple scenarios.

CN121590853APending Publication Date: 2026-03-03QINGDAO HAIER SPECIAL ICEBOX +1
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Patent Information

Application Number
CN202411172960.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Storage baskets have a single function and cannot be used independently after being removed from storage equipment, thus limiting their application scenarios.

Method used

Design a storage basket comprising a basket body, an energy storage component, a basket lid, and movable side panels. The side panels can switch between a first position and a second position. Combined with support legs and storage slots, the basket enhances flexibility and stability, adapting to different usage scenarios and storage needs.

Benefits of technology

It enables flexible use and efficient storage of storage baskets in different scenarios, enhances the practicality and stability of storage baskets, and improves space utilization and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a storage basket and storage equipment, and belongs to the technical field of storage. The storage basket comprises a basket body, an energy storage part, a basket cover and at least one side plate. The basket body forms a storage chamber; the energy storage part is mounted on the basket body; the basket cover is mounted at the open end of the basket body; the side plate is movably installed on the basket body and provided with a first position and a second position, the side plate is contained on the side face of the basket body at the first position, and a supporting table top is formed by the side plate and the basket cover at the second position. According to the technical scheme, through cooperative work of the basket body, the energy storage part, the basket cover and the at least one side plate, the side plate can be switched between the first position and the second position so as to adapt to different use scenes and storage requirements.
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Description

Technical Field

[0001] This application belongs to the field of storage technology, and in particular relates to a storage basket and storage device. Background Technology

[0002] Storage devices are typically divided into multiple sections using partitions or drawers to facilitate storage. In related technologies, storage baskets are used inside storage devices; once removed, they offer no other function besides storage, cannot be used independently of the storage device, have limited functionality and application scenarios, and therefore have room for improvement. Summary of the Invention

[0003] This application aims to at least address the technical problem of limited functionality in existing storage baskets. To this end, this application proposes a storage basket and storage device that can enhance the functionality of the storage basket to adapt to different usage scenarios and storage needs.

[0004] Firstly, this application provides a storage basket, comprising:

[0005] The basket-like structure forms a storage compartment;

[0006] Energy storage device, installed in the basket;

[0007] A basket lid, which is installed at the open end of the basket body;

[0008] At least one side panel is movably mounted to the basket body and has a first position and a second position. In the first position, the side panel is housed in the side of the basket body, and in the second position, the side panel and the basket cover form a support platform.

[0009] Through the coordinated operation of the basket, the energy storage component, the basket cover, and at least one side plate, the side plate can switch between two states, the first position and the second position, to adapt to different usage scenarios and storage needs.

[0010] According to one embodiment of this application, the storage basket further includes: a support leg, the support leg being detachably mounted to the basket body, the support leg being detachably mounted to the side panel, wherein when the support leg is separated from the basket body, the support leg is adapted to be connected to the side panel, and the lower end of the side panel is flush with the lower end of the basket body.

[0011] The design of the support legs allows the storage basket to maintain practicality and stability while also possessing good flexibility and maintainability. The support legs can be easily installed or removed as needed, allowing the side panel to switch between two states, the first position and the second position, to adapt to different usage scenarios and storage needs.

[0012] According to one embodiment of this application, the outer side of the bottom plate of the basket is provided with a storage groove, and the support legs are adapted to be stored in the storage groove.

[0013] The storage slot on the outside of the bottom plate of the basket not only improves the space utilization efficiency of the storage basket, but also provides a more convenient user experience.

[0014] According to one embodiment of this application, the storage slot is provided with a buckle for locking the support leg.

[0015] The storage slot is equipped with buckles for locking the legs, which can improve the stability and convenience of the storage basket and ensure that the storage basket can adapt to different usage scenarios.

[0016] According to one embodiment of this application, the bottom plate of the basket body is provided with an outwardly protruding first boss, and the edge of the bottom plate of the basket body is provided with a downwardly protruding frame, the frame surrounding the first boss, and the storage groove is formed between the frame and the first boss.

[0017] And / or,

[0018] The outrigger is U-shaped.

[0019] The design of the first protrusion on the bottom plate of the basket, the surrounding frame, and the U-shaped support legs can distribute the weight, provide support points, and prevent deformation or damage, thus improving the stability and convenience of the storage basket. At the same time, the storage slot is formed between the surrounding frame and the first protrusion, which can ensure that the support legs can be completely and stably stored therein. The bottom of the storage slot is formed by the first protrusion, and the surrounding frame surrounds it, forming a relatively closed and stable storage environment.

[0020] According to one embodiment of this application, the side plate is provided with a plug-in structure for connecting with the support leg.

[0021] The side panel is provided with the plug-in structure to connect with the support leg, which can improve the stability and flexibility of the storage basket.

[0022] According to one embodiment of this application, the basket has a rotating shaft and a locking shaft spaced apart from the rotating shaft;

[0023] The side plate is provided with a hinge groove and a locking groove. The locking groove is arc-shaped, and the center of the locking groove is located on the axis of the hinge groove.

[0024] The distance between the axis of the locking shaft and the axis of the rotating shaft is equal to the distance between the axis of the hinge groove and the centerline of the locking groove.

[0025] The rotating shaft is adapted to be hinged to the junction groove, and the locking groove is adapted to engage with the junction groove.

[0026] By incorporating the pivot, locking pivot, hinge groove, and locking groove on the side plate into the storage basket, the side plate of the storage basket can be opened flexibly and locked securely.

[0027] According to one embodiment of this application, the side plate is provided with a notch, and both the hinge groove and the locking groove are connected to the notch, so that the side plate can be detachably installed on the basket.

[0028] The notch provided on the side plate, as well as the connection between the hinge groove and the locking groove and the notch, can further enhance the modularity and detachability of the storage basket.

[0029] According to one embodiment of this application, the side panel is detachably mounted to the basket body, and when the side panel is separated from the basket body, the side panel is adapted to be stored in the storage compartment.

[0030] The side panel is detachably installed on the basket body and can be stored in the storage room after being separated from the basket body, which brings higher space utilization to the storage basket and enables the storage basket to perform at its best in different usage scenarios.

[0031] According to one embodiment of this application, a storage compartment is provided on a first side of the side panel, the first side being the side facing the side of the basket when the side panel is in a first position.

[0032] Setting storage compartments on the first side of the side panel not only increases the storage space and practicality of the storage basket, but also provides a more convenient and efficient user experience.

[0033] According to one embodiment of this application, the inner side of the basket is provided with a limiting groove, the energy storage component is installed in the limiting groove, and the storage chamber is divided into multiple sub-chambers;

[0034] The side plate is adapted to support the top surface of the energy storage element.

[0035] The limiting groove inside the basket and the energy storage component installed therein can add functionality and flexibility to the storage basket. At the same time, the second side of the side plate supports the top surface of the energy storage component, which can further enhance the structural stability and practicality of the storage basket.

[0036] According to one embodiment of this application, the inner side of the basket is provided with multiple pairs of support bosses, and the limiting groove is formed between each pair of support bosses. The top surface of the uppermost support boss is at the same height as the top surface of the energy storage component.

[0037] The multiple pairs of support bosses and limiting grooves on the inner side of the basket can provide precise positioning and stable support for the installation of the energy storage component and the division of the storage compartment. At the same time, the top surface of the uppermost support boss is at the same height as the top surface of the energy storage component, which can improve the practicality of the storage basket.

[0038] According to one embodiment of this application, the storage basket further includes a cover plate, the basket body is provided with a ventilation opening, and the cover plate is movably installed on the basket body for selectively opening or closing the ventilation opening.

[0039] The combined effect of the lid and vents in the storage basket can improve its overall performance and practicality.

[0040] Secondly, this application provides a storage device, comprising:

[0041] The box-like structure forms compartments;

[0042] The storage basket as described in any of the preceding claims is detachably installed in the compartment.

[0043] The storage device, through the ingenious combination of the box and the storage basket, can provide a practical and flexible storage solution to achieve orderly storage and efficient management of items.

[0044] According to one embodiment of this application, at least a portion of the sides of the basket are provided with flanges, which are adapted to support the vent of the basket.

[0045] The flange provided on the side of the basket can enhance the connection stability and load-bearing capacity between the storage basket and the box, and also has a certain sealing and dustproof effect.

[0046] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description

[0047] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0048] Figure 1 This is one of the structural schematic diagrams of the storage device provided in the embodiments of this application;

[0049] Figure 2 This is a second schematic diagram of the structure of the storage device provided in the embodiments of this application;

[0050] Figure 3 yes Figure 2 Sectional view at point AA;

[0051] Figure 4 This is a schematic diagram of the structure of the energy storage device and the adapter provided in the embodiments of this application;

[0052] Figure 5 This is one of the structural schematic diagrams of the storage device box provided in the embodiments of this application;

[0053] Figure 6 yes Figure 2 A magnified view of a section at point B in the middle;

[0054] Figure 7 yes Figure 2 A magnified view of a section at point C;

[0055] Figure 8 This is a second schematic diagram of the structure of the storage device housing provided in the embodiments of this application;

[0056] Figure 9 yes Figure 8 Sectional view at point DD;

[0057] Figure 10 This is one of the structural schematic diagrams of the storage basket of the storage device provided in the embodiments of this application;

[0058] Figure 11 This is a second schematic diagram of the structure of the storage basket of the storage device provided in the embodiments of this application;

[0059] Figure 12 This is the third schematic diagram of the structure of the storage basket of the storage device provided in the embodiments of this application;

[0060] Figure 13 yes Figure 12 Sectional view at EE;

[0061] Figure 14 yes Figure 12 Sectional view at FF;

[0062] Figure 15 This is the fourth structural schematic diagram of the storage basket of the storage device provided in the embodiments of this application;

[0063] Figure 16 yes Figure 15 A magnified view of a section at point G in the middle;

[0064] Figure 17 yes Figure 15 A magnified view of a section at point H in the middle;

[0065] Figure 18 This is the fifth schematic diagram of the structure of the storage basket of the storage device provided in the embodiments of this application;

[0066] Figure 19This is the sixth schematic diagram of the structure of the storage basket of the storage device provided in the embodiments of this application;

[0067] Figure 20 yes Figure 19 A magnified view of a section at point I;

[0068] Figure 21 yes Figure 19 A cross-sectional view at point JJ;

[0069] Figure 22 This is the seventh schematic diagram of the structure of the storage basket of the storage device provided in the embodiments of this application;

[0070] Figure 23 yes Figure 20 Sectional view at point KK;

[0071] Figure 24 This is the eighth schematic diagram of the structure of the storage basket of the storage device provided in the embodiments of this application;

[0072] Figure 25 yes Figure 24 A magnified view of a section at point L;

[0073] Figure 26 yes Figure 24 Sectional view at point MM;

[0074] Figure 27 yes Figure 26 A magnified view of a portion of point N in the middle.

[0075] Figure label:

[0076] Storage equipment 1;

[0077] 10 storage baskets;

[0078] Basket body 110, storage slot 111, buckle 112, first protrusion 113, frame 114, pivot 115, locking pivot 116, flange 117, ventilation opening 118.

[0079] Storage compartment 120, sub-chamber 121, limiting groove 122, supporting boss 123, first buckle 124, damping part 125, second guide groove 126, third guide groove 127, second mounting structure 128.

[0080] Basket lid 130;

[0081] Side panel 140, plug-in structure 141, hinge groove 142, locking groove 143, notch 144, storage compartment 145;

[0082] Outrigger 150;

[0083] Cover plate 160, vent hole 161, first guide groove 162, second buckle 163, third buckle 164;

[0084] Energy storage component 20, first slider 211, groove 212, opening 213, cover 214, first slide rail 221;

[0085] Adapter 30;

[0086] Box 40;

[0087] Compartment 410, sub-compartment 411, first mounting structure 412, guide groove 413, hook 414;

[0088] Inner liner 420;

[0089] First direction X, second direction Y. Detailed Implementation

[0090] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.

[0091] This application aims to at least address the technical problem of limited functionality in existing storage baskets. To this end, this application proposes a storage basket and storage device that can enhance the functionality of the storage basket to adapt to different usage scenarios and storage needs.

[0092] The following is for reference. Figures 1-27 The storage device 1 according to an embodiment of this application is described.

[0093] like Figures 1-27 As shown, the storage device 1 includes a box 40 and a storage basket 10. The box 40 forms a compartment 410. A first mounting structure 412 is provided in the compartment 410. The storage basket 10 is detachably installed in the compartment 410. The storage basket 10 includes a basket body 110, a cover plate 160 and at least one energy storage component 20.

[0094] The storage device 1 includes a box 40 and a storage basket 10. The box 40 serves as the basic structure of the storage device 1, and its internal space can form one or more compartments 410. The compartments 410 provide space for the installation and storage of the storage basket 10 and other components. The internal space of the compartments 410 can be divided or adjusted as needed to meet the storage needs of different occasions and items. The box 40 is usually made of sturdy and durable materials, such as metal or plastic, to ensure that it can withstand the weight of the stored items and maintain overall stability. At the same time, the edges and corners of the box 40 may be specially treated to enhance its impact resistance and wear resistance. The box 40 can also be dustproof, moistureproof and insectproof to protect the stored items from the damage of the external environment.

[0095] As an important component of the storage device 1, the storage basket 10 can be easily disassembled and installed in the compartment 410 of the box 40. The storage basket 10 includes a basket body 110 and at least one energy storage component 20. The basket body 110 is the main part of the storage basket 10 and can form a closed storage compartment 120 for storing various items. The material of the basket body 110 can be plastic, metal or composite material to ensure its load-bearing capacity and service life. The basket body 110 is provided with a ventilation opening 118 that connects to the storage compartment 120, which can be used to maintain the air circulation in the storage compartment 120.

[0096] The storage basket 10 can be used in the compartment 410 or independently of the box 40. The cover 160 is movably installed on the basket 110 and is used to selectively open or close the ventilation opening 118, including but not limited to:

[0097] Example 1: Ventilation vent 118 remains closed.

[0098] When the storage basket 10 is applied to the compartment 410, with the basket body 110 installed in the compartment 410 and the cover plate 160 closing the ventilation opening 118, the storage compartment 120 is isolated from the compartment 410, which can achieve independent closed storage, reduce the occurrence of food cross-contamination, and thus maintain the flavor and quality of the food.

[0099] When the storage basket 10 is used for carrying outside, with the vent 118 closed by the cover 160, the storage chamber 120 is isolated from the outside environment, which can slow down the loss of cold air in the storage basket 10, thereby reducing the heating rate in the storage chamber 120 and extending the heat preservation time of the storage chamber 120.

[0100] Example 2: Ventilation vent 118 remains open.

[0101] When the storage basket 10 is applied to the compartment 410, with the basket body 110 installed in the compartment 410 and the cover 160 opening the ventilation port 118, the storage compartment 120 is connected to the compartment 410, which can accelerate the temperature drop of the storage compartment 120 and achieve a rapid cooling effect, thereby maintaining the flavor and quality of the food.

[0102] When the storage basket 10 is used for carrying outside, with the vent 118 of the cover 160 open, the storage chamber 120 is connected to the outside environment, which can accelerate the loss of cold air in the storage basket 10, thereby increasing the heating rate in the storage chamber 120 and achieving the effect of rapid defrosting.

[0103] The first mounting structure 412 is located in the compartment 410, and the second mounting structure 128 is located in the storage compartment 120. Both can be used to detachably install the energy storage component 20. The energy storage component 20 can be a physical cooling device, usually composed of cooling material and various forms of outer casing and fixing devices, such as an ice box or an insulated box. The energy storage component 20 can be detachably installed on the first mounting structure 412 of the box 40 or the second mounting structure 128 of the storage basket 10. The position of the energy storage component 20 can also be adjusted according to actual needs and the layout of the storage equipment 1.

[0104] The energy storage device 20 has various installation methods, including but not limited to:

[0105] Example 1: The energy storage component 20 is installed on the first mounting structure 412 of the housing 40.

[0106] When the energy storage component 20 is installed on the first mounting structure 412 of the housing 40, the energy storage component 20 is located in the compartment 410. The energy storage component 20 is used as a partition to divide the compartment 410 into multiple sub-compartments 411, which can improve the space utilization of the housing 40.

[0107] Example 2: The energy storage component 20 is installed on the second mounting structure 128 of the storage basket 10.

[0108] When the energy storage device 20 is installed in the second mounting structure 128 of the storage basket 10, the energy storage device 20 is located in the storage chamber 120, which can divide the storage chamber 120 into multiple sub-chambers 121, thus playing a role in partitioning. The internal space division of the storage basket 10 can be changed by adjusting the placement of the energy storage device 20, thereby improving the space utilization rate of the storage basket 10. At the same time, when the storage basket 10 is used for carrying outside, in addition to partitioning, the energy storage device 20 can also maintain the low temperature of the storage chamber 120.

[0109] According to the storage device 1 provided in the embodiments of this application, the energy storage component 20 is detachably installed in the first installation structure 412 in the compartment 410 or the second installation structure 128 in the storage room 120. The layout of the storage device 1 can be adjusted at any time to adapt to different usage scenarios and changes in needs. By reasonably installing the energy storage component 20, the internal space of the storage device 1 can be fully utilized to improve storage efficiency and space utilization. At the same time, by providing a ventilation opening 118 on the basket 110 that communicates with the storage room 120, and by movably installing the cover plate 160 on the basket 110, the opening and closing of the ventilation opening 118 can be adjusted to control the communication state between the storage room 120 and the compartment 410, and independent closed storage can be selectively achieved.

[0110] In some embodiments, such as Figures 2-4 As shown, there are multiple energy storage components 20. After the multiple energy storage components 20 are spliced ​​together end to end to form a whole, they are suitable for installation on the first installation structure 412.

[0111] Multiple energy storage components 20 can be spliced ​​together end to end as needed and installed on the first installation structure 412, dividing the compartment 410 into multiple sub-compartments 411. When multiple energy storage components 20 are spliced ​​together end to end as a whole, they can form a stable structure and be installed as a whole on the first installation structure 412 of the housing 40. This whole installation method can simplify the installation process, improve installation efficiency, and also improve the stability of the energy storage components 20 in the storage equipment 1, reducing the risk of shaking or falling off due to individual installation.

[0112] Understandably, the multiple energy storage components 20 are spliced ​​together end to end into a whole and then installed on the first installation structure 412, which can provide the storage device 1 with greater flexibility and scalability, and also improve the stability and convenience of the storage device 1.

[0113] In some embodiments, such as Figures 1-9 As shown, the splicing of multiple energy storage components 20 can take various structural forms, including but not limited to:

[0114] Example 1, such as Figures 5-9 As shown, there are multiple energy storage components 20, and the first end of the energy storage component 20 is provided with a first slider 211, and the second end of the energy storage component 20 is provided with a first slide rail 221. After the multiple energy storage components 20 are spliced ​​together end to end by the first slider 211 and the first slide rail 221, they are suitable for installation on the first mounting structure 412.

[0115] The first end of the energy storage component 20 is provided with a first slider 211, and the second end of the energy storage component 20 is provided with a first slide rail 221. Multiple energy storage components 20 can be connected end to end by the snap-fit ​​method of the slider and the slide rail. That is, the first slider 211 on the first end of the energy storage component 20 snaps with the first slide rail 221 on the second end of the adjacent energy storage component 20, and the first slide rail 221 on the second end of the energy storage component 20 snaps with the first slider 211 on the first end of the adjacent energy storage component 20, thereby forming a stable integral structure. This connection method is not only simple and quick, but also improves the connection tightness between the energy storage components 20.

[0116] The first slider 211 of one energy storage component 20 is engaged with the first slide rail 221 of another energy storage component 20, that is, multiple energy storage components 20 are connected end to end. The relative positions between different energy storage components 20 can be easily adjusted to adapt to different storage needs or space layouts. In addition, when it is necessary to increase or decrease the number of energy storage components 20, the corresponding energy storage components 20 can be simply added or removed and re-engaged.

[0117] In addition to being used for snapping between multiple energy storage components 20, the first slider 211 and the first slide rail 221 can also be snapped with the first mounting structure 412. When multiple energy storage components 20 are spliced ​​into a whole, the first slider 211 and the first slide rail 221 at both ends of the overall structure of the energy storage component 20 are snapped with the first mounting structure 412 respectively, which can simplify the installation process, improve installation efficiency, and improve the stability of the overall structure of the energy storage component 20 in the storage device 1.

[0118] It is understandable that by the snap-fit ​​between the first slider 211 and the first slide rail 221 on different energy storage components 20, and by the snap-fit ​​between the first slider 211 and the first slide rail 221 at both ends of the overall structure of the energy storage component 20 and the first mounting structure 412 respectively, the overall structure of the energy storage component 20 is fully supported and fixed in the storage device 1, which can improve the safety of the overall structure of the energy storage component 20 during use, and at the same time reduce the risk of damage caused by shaking or falling off.

[0119] A groove 212 is provided at the first end of the energy storage component 20. A first slider 211 is provided on both sides of the groove 212. The opening 213 of the energy storage component 20 is located in the groove 212. The groove 212 can protect the opening 213 of the energy storage component 20 and reduce the influence of external factors on the opening 213 and the interior of the energy storage component 20. A cover 214 is installed on the opening 213 of the energy storage component 20 to close the opening 213. When the first slider 211 is engaged with the first slide rail 221, the end face of the first end of the first slider 211 directly abuts against the first slide rail 221. The cover 214 does not protrude from the end face of the first end of the first slider 211, which can make the splicing of multiple energy storage components 20 more stable and facilitates the tight splicing of multiple energy storage components 20.

[0120] It is understandable that by providing a groove 212 at the first end of the energy storage component 20 and providing an opening 213 of the energy storage component 20 in the groove 212, the cover 214 installed on the energy storage component 20 at the opening 213 can be prevented from protruding from the end face of the first end of the first slider 211, thereby enabling the first slider 211 located at the first end of the energy storage component 20 to be used normally.

[0121] Example 2, such as Figures 1-4 As shown, the storage device 1 also includes an adapter 30, and multiple energy storage devices 20 are spliced ​​together end to end through the adapter 30 to form a whole, which is suitable for installation on the first installation structure 412.

[0122] Multiple energy storage components 20 are spliced ​​together end to end by adapter 30 before being installed on the first mounting structure 412. The adapter 30 serves as a connecting bridge between the multiple energy storage components 20, and is spliced ​​to the first and second sides of different energy storage components 20 respectively. When the multiple energy storage components 20 are spliced ​​together end to end as a whole, they can form a stable structure and be installed as a whole on the first mounting structure 412 of the housing 40. This whole installation method can simplify the installation process, improve installation efficiency, and also improve the stability of the energy storage components 20 in the storage equipment 1, reducing the risk of shaking or falling off due to individual installation.

[0123] Understandably, multiple energy storage components 20 are spliced ​​together end to end by adapter 30 and then installed on the first installation structure 412. This can enhance the stability and flexibility of the connection between the multiple energy storage components 20, and also improve the space utilization and storage function of the storage device 1.

[0124] In some embodiments, such as Figure 1 and Figure 4 As shown, the first mounting structure 412 is mounted on the inner wall of the compartment 410 opposite to it, and has a guide groove 413, with the energy storage component 20 engaging with the guide groove 413.

[0125] The first mounting structure 412 is provided with a guide groove 413 for engaging with the energy storage component 20. The guide groove 413 can provide clear positioning and guidance for the installation of the energy storage component 20. When the energy storage component 20 is inserted into the guide groove 413, the energy storage component 20 can move along the guide groove 413 until it reaches the predetermined installation position.

[0126] Installing the first mounting structure 412 on the inner wall of the compartment 410 can make full use of the internal space of the compartment 410 without taking up too much extra space. The guide groove 413 on the first mounting structure 412 can also simplify the installation process of the energy storage component 20, improve the installation efficiency, and reduce the risk of damage due to improper operation. The snap-fit ​​method between the energy storage component 20 and the guide groove 413 can withstand a certain amount of tension and pressure, reducing the risk of displacement or detachment of the energy storage component 20 during use.

[0127] Understandably, the first mounting structure 412 is mounted on the inner wall opposite to the compartment 410 and has a guide groove 413 for engaging with the energy storage unit 20, which can bring higher space utilization to the storage device 1.

[0128] In some embodiments, such as Figures 1-9 As shown, the first mounting structure 412 has various structural forms, including but not limited to:

[0129] Example 1, such as Figures 5-9 As shown, the first mounting structure 412 includes a protrusion that protrudes from the inner wall of the compartment 410.

[0130] The first mounting structure 412 includes a protrusion protruding from the inner wall of the chamber 410, meaning that the first mounting structure 412 is part of the inner wall of the chamber 410. The first mounting structure 412 can be firmly fixed to the inner wall of the chamber 410, providing stable support for components such as the energy storage unit 20 without the need for additional fasteners. The protrusion is directly connected to the inner wall of the chamber 410, which can simplify the installation process, reduce installation difficulty and cost, and improve the stability of the connection.

[0131] Example 2, such as Figures 1-4 As shown, a slot is provided on the inner liner 420 of the box 40, and a hook 414 is provided on the first mounting structure 412, which engages with the slot.

[0132] The first mounting structure 412 is installed on the inner liner 420 of the box 40 by snap-fit. The inner liner 420 of the box 40 is provided with a slot, and the first mounting structure 412 is provided with a matching hook 414. This snap-fit ​​method allows the first mounting structure 412 to be flexibly connected and separated from the inner liner 420 of the box 40. Moreover, the design of the hook 414 and the slot is relatively simple, without the need for complex mechanical structures or fasteners, which helps to reduce production costs and manufacturing difficulty.

[0133] It is understandable that the protrusion protruding from the inner wall of the compartment 410 and the snap-fit ​​between the hook 414 and the slot are two installation methods, each with its own advantages. In practical applications, these two design methods can be flexibly selected or combined according to the specific situation of the storage device 1.

[0134] In some embodiments, such as Figure 10 and Figure 11 As shown, when the energy storage unit 20 is installed on the second mounting structure 128, the energy storage unit 20 divides the storage chamber 120 into multiple sub-chambers 121.

[0135] When the energy storage unit 20 is installed in the second mounting structure 128 of the storage basket 10, the energy storage unit 20 is located in the storage chamber 120, which can divide the storage chamber 120 into multiple sub-chambers 121. At the same time, the size of different sub-chambers 121 can be adjusted as needed to adapt to the storage needs of different items, which helps to improve storage efficiency. The energy storage unit 20 can also improve the storage space utilization rate of the storage device 1 by dividing it into multiple sub-chambers 121.

[0136] Understandably, the energy storage device 20 is installed on the second mounting structure 128 and divides the storage chamber 120 into multiple sub-chambers 121, which can improve storage efficiency and space utilization, and also increase the flexibility of the storage device 1.

[0137] In some embodiments, such as Figure 11 As shown, there are multiple energy storage components 20, and the second mounting structure 128 includes multiple sets. The multiple energy storage components 20 are adapted to be installed in the multiple sets of second mounting structures 128 in a one-to-one correspondence.

[0138] The multiple sub-chambers 121 within the storage chamber 120 can be flexibly configured according to the number and type of the multiple energy storage components 20. Furthermore, the multiple energy storage components 20 are installed one-to-one on multiple sets of second mounting structures 128. This one-to-one installation method simplifies the installation process. At the same time, each set of second mounting structures 128 can stably support and fix the corresponding energy storage component 20, which can reduce the possibility of the energy storage component 20 loosening or falling off during use, thereby improving the safety and reliability of use.

[0139] It is understandable that by rationally arranging multiple sets of second installation structures 128 and installing multiple energy storage components 20 one by one, the space utilization inside the storage basket 10 can be optimized, so that each sub-chamber 121 can be fully utilized, while maintaining the cleanliness and orderliness inside the storage room 120.

[0140] In some embodiments, such as Figure 11 As shown, the inner side of the basket 110 is provided with a limiting groove 122, and the energy storage component 20 is suitable for installation in the limiting groove 122.

[0141] The energy storage component 20 is installed on the second mounting structure 128. The second mounting structure 128 can be a limiting groove 122 provided on the inner side of the housing 110. The limiting groove 122 can provide a clear installation position and path for the energy storage component 20. When the energy storage component 20 is placed into the limiting groove 122, the offset or misalignment phenomenon that occurs during the installation process can be reduced, thereby improving the stability and reliability of the installation of the energy storage component 20 through precise positioning.

[0142] The limiting groove 122 can provide sufficient support for the energy storage component 20 after installation. When the energy storage component 20 is tightly embedded in the limiting groove 122, it can be stably supported in all directions, thereby reducing the risk of displacement or falling off due to shaking or external force. The limiting groove 122 can also simplify the installation process of the energy storage component 20, improve installation efficiency, and reduce the risk of damage due to improper operation.

[0143] The energy storage component 20 can divide the storage chamber 120 of the storage basket 10 into multiple independent sub-chambers 121 to improve the utilization efficiency of the storage basket 10. It can also have an energy storage function, such as maintaining a low temperature when the storage basket 10 is used alone, or buffering or supporting the items in the storage basket 10 to a certain extent to prevent them from being damaged by shaking or collision.

[0144] It is understandable that the limiting groove 122 and the energy storage component 20 are used together to form the internal skeleton structure of the storage basket 10, which can enhance the overall structural stability of the storage basket 10, making the storage basket 10 more stable and less prone to deformation when subjected to heavy objects or external forces.

[0145] In some embodiments, such as Figure 11 As shown, the inner side of the basket 110 is provided with multiple pairs of support bosses 123, and a limiting groove 122 is formed between each pair of support bosses 123.

[0146] Multiple pairs of support bosses 123 are arranged inside the housing 110 at predetermined intervals and positions. Each pair of support bosses 123 can provide a clear installation position and stable support for the energy storage component 20, forming a limiting groove 122. This allows the energy storage component 20 to be accurately placed in the limiting groove 122 during installation. The support bosses 123 can provide a stable support surface for the energy storage component 20. When the energy storage component 20 is installed in the limiting groove 122, the bottom and sides of the energy storage component 20 are tightly fitted with the support bosses 123, which can reduce the shaking and displacement of the energy storage component 20 during installation and use, and improve the accuracy and stability of the installation, thereby improving the stability of the overall structure.

[0147] Through multiple pairs of support bosses 123 and limiting grooves 122, the storage chamber 120 of the storage basket 10 can be divided into multiple independent sub-chambers 121, which to a certain extent prevents the mutual squeezing or collision between items. The top surface of the uppermost support boss 123 is at the same height as the top surface of the energy storage component 20, which can ensure that when the side plate 140 is closed and supported on the top surface of the energy storage component 20, the side plate 140 and the basket body 110 can form a tight fit and sealing effect. At the same time, the support bosses 123 and the energy storage component 20 jointly bear the weight of the items in the storage basket 10, which can enhance the load-bearing capacity of the upper part of the storage basket 10, making the storage basket 10 more stable and reliable when storing heavy items.

[0148] Understandably, the inner side of the basket 110 is designed with multiple pairs of support protrusions 123 and forms a limiting groove 122, which can provide precise positioning and stable support for the installation of the energy storage component 20 and the partitioning of the storage compartment 120.

[0149] In some embodiments, such as Figures 12-15 As shown, the cover plate 160 is provided with a vent 161, and the vent 161 and the air vent 118 have various relative positions, including but not limited to:

[0150] Example 1, such as Figure 14 and Figure 15 As shown, when the cover plate 160 moves to the first position, the vent 161 is connected to the vent 118.

[0151] When the cover 160 moves to the first position, the vent 161 is connected to the vent 118 on the basket 110, allowing outside air to enter the storage chamber 120 through the vent 161, while also allowing air inside the storage chamber 120 to escape. This allows the temperature inside the storage chamber 120 to quickly match the outside temperature and maintains air circulation within the storage chamber 120, reducing the possibility of dampness and mold growth. When the storage chamber 120 is connected to the compartment 410, it can accelerate the temperature drop of the storage chamber 120, achieving a rapid cooling effect, thereby preserving the flavor and quality of the food. When the storage chamber 120 is connected to the external environment, it can accelerate the loss of cold air from the storage basket 10, thereby increasing the heating rate inside the storage chamber 120 and achieving a rapid thawing effect.

[0152] Example 2, such as Figure 13 As shown, when the cover plate 160 moves to the second position, the vent 161 and the ventilation opening 118 are misaligned.

[0153] When the cover 160 moves to the second position, the vent 161 is misaligned with the ventilation opening 118 on the basket 110, meaning the vent 161 is not directly opposite the ventilation opening 118. This blocks the passage of external air into the storage chamber 120, allowing for independent closed storage when the basket 110 is installed in the compartment 410. This reduces the occurrence of food odor mixing, thus maintaining the flavor and quality of the food. When the storage basket 10 is used for carrying outside, closing the storage basket 10 slows down the loss of cold air in the storage chamber 120, prolongs the heat preservation time of the storage chamber 120, maintains the freshness preservation effect of the storage chamber 120, and effectively blocks external debris from entering the storage chamber 120 through the ventilation opening 118.

[0154] Understandably, the ventilation holes 161 on the cover 160 can adjust the ventilation in the storage compartment 120 when needed. By flexibly switching the cover 160 between the first and second positions, the connection or misalignment of the ventilation holes 161 and the vents 118 can be controlled, making the ventilation performance of the storage basket 10 more flexible and controllable, and selectively achieving independent closed storage, thereby improving the practicality of the storage basket 10.

[0155] In some embodiments, such as Figures 13-15 As shown, there are multiple vent holes 161 and multiple ventilation openings 118, with each vent hole 161 corresponding to a different ventilation opening 118.

[0156] Multiple vents 161 correspond to multiple air vents 118, which can independently control the ventilation of different areas within the storage basket 10. It can also optimize the airflow path within the storage basket 10 and improve ventilation efficiency. When the vents 161 and air vents 118 correspond one-to-one and are correctly connected, air can enter and exit the storage chamber 120 more smoothly, reducing dead corners and eddies, thereby keeping the air in the storage chamber 120 fresh and dry.

[0157] When ventilation is not required, the sealing performance of the storage basket 10 can be significantly enhanced by closing the multiple vents 161 and multiple air vents 118 in a staggered manner.

[0158] Understandably, the design of multiple and one-to-one ventilation holes 161 and vents 118 provides greater flexibility and precision to the storage basket 10. It allows for precise control of the ventilation conditions in the storage chamber 120 according to actual needs, while also enhancing the sealing performance and ease of operation of the storage basket 10.

[0159] In some embodiments, such as Figures 13-15 As shown, at least one of the basket 110 and the cover plate 160 is provided with a guide structure that cooperates with the other guide.

[0160] A guide structure is a mechanical structure designed to guide or restrict the relative movement of two or more components. When a guide structure is provided on at least one of the basket 110 and the cover plate 160, the guide structure may include a slide rail, a guide groove 413, a positioning pin, etc. The basket 110 and the cover plate 160 are connected and positioned through the guide structure. The mutually cooperating guide structures enable the cover plate 160 to cooperate smoothly and accurately with the basket 110 during the opening or closing process.

[0161] At least one of the basket 110 and the cover 160 is provided with a guide structure that cooperates with the other guide. That is, in the combination of the basket 110 and the cover 160, at least one component is designed with a guide structure, and the other component cooperates with the guide structure.

[0162] Understandably, by setting a guide structure, the connection stability and ease of use between the basket 110 and the cover 160 can be improved. At the same time, the guide structure can also ensure that the cover 160 fits tightly against the basket 110 when closed, reducing the amount of debris entering the basket 110.

[0163] In some embodiments, such as Figure 13 and Figure 14 As shown, the guide structure includes a plurality of first buckles 124 protruding from the inner wall of the basket 110, and the cover plate 160 is slidably mounted on the first buckles 124.

[0164] The first buckle 124, as part of the guide structure, can provide a stable sliding track for the cover plate 160, so that the cover plate 160 will not deviate from the predetermined path during the sliding process, thereby increasing the stability and safety of use. In addition, the first buckle 124 protrudes from the inner wall of the basket 110 and can withstand a certain amount of pressure and wear, making the combination of the basket 110 and the cover plate 160 more durable and able to withstand long-term use and frequent opening and closing operations.

[0165] The cover plate 160 is slidably installed on the first buckle 124. The cover plate 160 can be easily opened or closed without complicated operation or tools. The first buckle 124 can also make the cover plate 160 accurately positioned on the basket 110 when closed. When the cover plate 160 slides to the position of the first buckle 124, it will be blocked and positioned by the first buckle 124, thereby achieving a tight fit between the cover plate 160 and the basket 110.

[0166] Understandably, the multiple first buckles 124 protruding from the inner wall of the basket 110, as part of the guide structure, can provide a stable and convenient sliding installation method for the cover plate 160.

[0167] In some embodiments, such as Figure 13 As shown, the guide structure includes a damping part 125 protruding from the inner wall of the basket 110 and a first guide groove 162 provided on the cover plate 160, with the damping part 125 cooperating with the first guide groove 162.

[0168] The damping part 125 protruding from the inner wall of the basket 110 can provide a certain resistance to the cover plate 160 during the sliding process, thereby slowing down the movement speed of the cover plate 160 and increasing the smoothness of the sliding. The damping part 125 can also play a certain buffering role. When the cover plate 160 approaches the closed position, the damping part 125 will gradually increase the resistance, thereby slowing down the impact speed of the cover plate 160 and protecting the basket 110 and the cover plate 160 from damage.

[0169] The first guide groove 162 can provide a clear sliding path for the cover plate 160. At the same time, the damping part 125 protruding from the inner wall of the basket 110 closely cooperates with the first guide groove 162 on the cover plate 160, so that the cover plate 160 can move accurately along the predetermined path during the sliding process, thereby improving the positioning accuracy between the cover plate 160 and the basket 110. The damping part 125 and the first guide groove 162 are usually made of wear-resistant and corrosion-resistant materials, which can withstand long-term use and frequent sliding operations, thereby maintaining the long-term stability and reliability of the guide structure.

[0170] It is understandable that the damping part 125 protruding from the inner wall of the basket 110 cooperates with the first guide groove 162 provided on the cover plate 160 to provide a smooth and accurate sliding installation method for the combination of the basket 110 and the cover plate 160.

[0171] In some embodiments, such as Figure 13 and Figure 14 As shown, the damping part 125 has a protrusion on the wall facing the first guide groove 162.

[0172] The protrusions on the damping part 125 can increase the contact area between the damping part 125 and the wall of the first guide groove 162, thereby increasing the friction between the two. The increased friction helps to better control the sliding speed of the cover plate 160, making the sliding process of the cover plate 160 more stable and controllable.

[0173] The protrusions on the damping part 125 can also fit tightly with the wall of the first guide groove 162, providing more precise positioning during the sliding of the cover plate 160. When the cover plate 160 reaches a specific position, the protrusions can interact with the corresponding part of the first guide groove 162, so that the cover plate 160 stops accurately in the predetermined position. The protrusions on the damping part 125 can withstand long-term sliding friction without being easily damaged, thereby enhancing the durability of the damping part 125 and the first guide groove 162, making the entire guide structure more reliable and durable.

[0174] Understandably, the damping part 125 has a protrusion on the wall facing the first guide groove 162, which can further improve the performance and function of the guide structure.

[0175] In some embodiments, such as Figure 15 and Figure 16 As shown, the guide structure includes a second buckle 163 protruding from the inner wall of the cover plate 160 and a second guide groove 126 provided in the basket body 110, with the second buckle 163 and the second guide groove 126 slidingly engaged.

[0176] The second buckle 163 protrudes from the inner wall of the cover plate 160 and forms a sliding engagement with the second guide groove 126 on the basket body 110. It can provide stable guidance for the movement of the cover plate 160. When the cover plate 160 moves along the basket body 110, the second buckle 163 slides along the second guide groove 126, which can improve the smoothness and accuracy of the movement of the cover plate 160.

[0177] The second guide groove 126 also allows the cover plate 160 to be precisely aligned with the corresponding position of the basket 110 during movement. When the second latch 163 is fully slid into the end of the second guide groove 126, the cover plate 160 reaches a fully closed state. The second latch 163 and the second guide groove 126 are usually made of wear-resistant and corrosion-resistant materials, which can withstand long-term use and frequent sliding operations, improve the durability of the guide structure, and extend the service life of the product.

[0178] It is understandable that the second buckle 163 protruding from the inner wall of the cover plate 160 cooperates with the second guide groove 126 provided in the basket 110 to provide a stable, precise and durable sliding guide structure for the combination of the basket 110 and the cover plate 160, thereby improving the overall performance and reliability of the product.

[0179] In some embodiments, such as Figure 15 and Figure 17 As shown, the cover plate 160 is rotatably mounted on the basket 110. The guide structure includes a third guide groove 127 provided on the basket 110 and a third buckle 164 protruding from the inner wall of the cover plate 160. The third buckle 164 is slidably engaged with the third guide groove 127, and the third guide groove 127 is an arc shape around the rotation axis of the cover plate 160.

[0180] When the cover plate 160 is rotatably installed on the basket 110, the guide structure includes a third guide groove 127 provided on the basket 110 and a third buckle 164 protruding from the inner wall of the cover plate 160. The third buckle 164 slides with the third guide groove 127, which can improve the smoothness and stability of the cover plate 160 during rotation, reduce shaking and deviation. The third buckle 164 and the third guide groove 127 are usually made of wear-resistant and corrosion-resistant materials, which can withstand long-term use and frequent rotation operations, thereby improving the durability of the guide structure and extending the service life of the product.

[0181] The third guide groove 127 is arc-shaped around the rotation axis of the cover plate 160, which can provide stable guidance for the rotation of the cover plate 160. The arc-shaped third guide groove 127 can also enable the cover plate 160 to automatically position itself when it rotates to a specific position. When the third buckle 164 slides to a specific position of the arc-shaped third guide groove 127, it will be restricted by the third guide groove 127, so that the cover plate 160 can accurately stop at the required angle or position. At the same time, the smooth transition of the arc-shaped third guide groove 127 can reduce friction and resistance during rotation, making the rotation of the cover plate 160 smoother. In addition, the arc-shaped third guide groove 127 can adapt to different ranges of rotation angles to meet different usage requirements.

[0182] It is understandable that the design of rotating the cover plate 160 onto the basket 110 and achieving guidance through the sliding engagement of the arc-shaped third guide groove 127 and the third buckle 164 can provide a stable and precise rotational guide structure for the combination of the basket 110 and the cover plate 160, thereby improving the performance and reliability of the product.

[0183] In some embodiments, the cover plate 160 is provided with a protruding handle.

[0184] The protruding handle provides a clear and easy-to-grip area, making it easier to open and close the cover 160. The handle also provides sufficient grip and stability during operation, reducing the difficulty of operation.

[0185] In addition to the basic opening and closing functions, the handle can also be designed as a component with other functions, such as a lock hole or latch to increase the security of the cover 160, or a rotatable structure to adapt to different operating angles.

[0186] Understandably, the cover plate 160 has a protruding handle, which can provide sufficient grip and stability during operation, reduce the difficulty of operation, and improve the operability and comfort of the product.

[0187] In some embodiments, such as Figures 18-27 As shown, the storage basket 10 also includes: a basket lid 130, a side panel 140, and support legs 150.

[0188] The basket lid 130 is installed at the open end of the basket body 110, which serves to close and protect the items in the storage compartment 120, protecting the items in the storage compartment 120 from the influence of the external environment. At the same time, the basket lid 130 can also form a certain locking or snap-fit ​​structure with the basket body 110 to increase its stability and safety.

[0189] The side panel 140 is rotatably mounted on the basket 110, and the side panel 140 and the basket 110 have various relative positions, including but not limited to:

[0190] Example 1: The side panel 140 is rotatably mounted on the basket 110 and is located in the first position.

[0191] The side panel 140 is rotatably mounted on the basket body 110 and has two states: a first position and a second position. In the first position, the side panel 140 is stored in the side of the basket body 110, which does not affect the overall appearance and storage function of the storage basket 10. The storage basket 10 can be installed on the box body 40.

[0192] Example 2: The side panel 140 is rotatably mounted on the basket 110 and is located in the second position.

[0193] The side panel 140 is rotatably mounted on the basket body 110 and has two states: a first position and a second position. In the second position, the side panel 140 is unfolded and is on the same plane as the basket cover 130, forming a support surface together. The support surface can be used to place items or as a temporary dining table when the storage basket 10 is used alone detached from the box body 40, thereby increasing the flexibility and versatility of the storage basket 10.

[0194] The basket body 110 is the main body of the storage basket 10, used for storing items. The side panel 140 is the outer side of the basket body 110, usually connected to the top or bottom of one end of the basket body 110, which can form a storage space. The support leg 150 is detachably installed on the basket body 110 or the side panel 140. When the side panel 140 is in the first position, the support leg 150 is detachably stored in the bottom of the basket body 110. When the side panel 140 is in the second position, the support leg 150 is detachably installed on the side panel 140, which can stably support the side panel 140 and the basket body 110, forming a support plane, and the lower end of the side panel 140 is flush with the lower end of the basket body 110.

[0195] The bottom of the basket 110 may be designed with buckles or interfaces for storing the support legs 150, making it easy to remove the support legs 150 from the basket 110. The side plate 140 may be designed with interfaces or mounting holes that match the support legs 150, and be connected to the support legs 150 by bolts, buckles or other fasteners, so that the support legs 150 can stably support the side plate 140 when needed. At the same time, when the support legs 150 are connected to the side plate 140, the lower end of the support legs 150 is flush with the lower end of the basket 110 to avoid tilting or tipping over due to different heights during handling or movement.

[0196] Understandably, through the coordinated operation of the basket cover 130, side panel 140 and support leg 150, the side panel 140 can switch between two states, a first position and a second position, to adapt to different usage scenarios and storage needs.

[0197] In some embodiments, such as Figures 18-20As shown, the bottom plate of the basket 110 is provided with a storage groove 111, and the support leg 150 is suitable for storage in the storage groove 111.

[0198] The storage slot 111 is located on the outside of the bottom plate of the basket 110. The storage slot 111 allows the support leg 150 to be neatly stored when not in use. That is, when the side plate 140 is in the first position, the support leg 150 can be detachably stored at the bottom of the basket 110, avoiding the extra space that the support leg 150 may occupy when stored alone, and making it convenient for storage and transportation. The storage slot 111 is also equipped with a fixing mechanism, such as a buckle, a slot 422 or a magnet, to provide additional stability after the support leg 150 is inserted into the storage slot 111, so as to prevent the support leg 150 from accidentally sliding in the storage slot 111 and ensure that the support leg 150 will not fall off by itself when stored.

[0199] When the side panel 140 is in the first position, the support leg 150 can be detachably stored at the bottom of the basket 110, without taking up too much space, making it lightweight and easy to carry. When the side panel 140 is in the second position, the support leg 150 can be detachably installed on the side panel 140, which can stably support the side panel 140 and the basket 110, forming a support plane, which can be applied to outdoor use scenarios.

[0200] Understandably, the storage slot 111 on the outside of the bottom plate of the basket 110 can not only improve the space utilization efficiency of the storage basket 10, but also provide a more convenient user experience.

[0201] In some embodiments, such as Figure 20 As shown, the storage slot 111 is provided with a buckle 112 for locking the support leg 150.

[0202] In the technical solution of this application, the main function of the buckle 112 is to fix the support leg 150 and reduce the risk of it accidentally sliding or falling off in the storage slot 111. When the support leg 150 is inserted into the storage slot 111 and snapped into the buckle 112, the buckle 112 can provide sufficient resistance to keep the support leg 150 in the correct position. At the same time, the support leg 150 can be easily installed and removed through the buckle 112. When the support leg 150 is aligned with the storage slot 111 and pushed with a little force, the buckle 112 will automatically lock the support leg 150. When the support leg 150 needs to be removed, simply press the buckle 112 gently and pull the support leg 150 outward.

[0203] The buckle 112 is typically made of sturdy and durable materials, such as metal, hard plastic, or composite materials, to withstand repeated installation and disassembly operations. The buckle 112 typically includes an elastic element, such as a spring sheet or elastic plastic, and a locking part. When the support leg 150 is inserted into the storage slot 111, the elastic element is compressed until the corresponding structure on the support leg 150 reaches the locking part. Then, the elastic element returns to its shape and locks the support leg 150. When the storage basket 10 is moved or transported, the buckle 112 can prevent the support leg 150 from falling off due to vibration or bumps, thereby improving the overall stability and safety of the storage basket 10.

[0204] Understandably, the storage slot 111 is equipped with a buckle 112 for locking the support leg 150, which can improve the stability and convenience of the storage basket 10 and make the storage basket 10 adaptable to different usage scenarios.

[0205] In some embodiments, such as Figure 20 As shown, the bottom plate of the basket body 110 is provided with an outwardly protruding first boss 113, and the edge of the bottom plate of the basket body 110 is provided with a downwardly protruding frame 114. The frame 114 surrounds the first boss 113, and the storage groove 111 is formed between the frame 114 and the first boss 113.

[0206] The bottom plate of the basket 110 has an outwardly protruding first boss 113, which can serve as a support point to distribute the weight of the items inside the basket 110, reduce the pressure on the bottom plate itself, and enhance the load-bearing capacity and stability of the bottom plate. It can also provide a basis for the formation of the storage groove 111. The bottom plate of the basket 110 has a downwardly protruding frame 114 around the first boss 113, which can increase the edge strength of the bottom plate and reduce deformation or damage caused by external forces. At the same time, the storage groove 111 can be formed between the frame 114 and the first boss 113 to store the support legs 150.

[0207] Understandably, the first protrusion 113 and the surrounding frame 114 on the bottom plate of the basket 110 can distribute the weight, provide support points and reduce deformation or damage, thus improving the stability and convenience of the storage basket 10. At the same time, the storage slot 111 is formed between the surrounding frame 114 and the first protrusion 113. The bottom of the storage slot 111 is formed by the first protrusion 113 and the surrounding frame 114 surrounds it, which can form a relatively closed and stable storage environment.

[0208] In some embodiments, such as Figure 18 As shown, the outrigger 150 can be designed as a U-shape.

[0209] Understandably, the U-shaped support leg 150 has good stability and load-bearing capacity, which can better distribute the weight of the basket 110 and its contents, reducing the situation of single-point stress. At the same time, the structure of the U-shaped support leg 150 is relatively simple, making it easy to manufacture and install.

[0210] In some embodiments, such as Figure 18 and Figure 20 As shown, the bottom plate of the basket 110 is provided with an outwardly protruding first boss 113, and the edge of the bottom plate of the basket 110 is provided with a downwardly protruding frame 114. The frame 114 surrounds the first boss 113, the storage groove 111 is formed between the frame 114 and the first boss 113, and the support leg 150 can be designed as U-shaped.

[0211] The bottom plate of the basket 110 has an outwardly protruding first boss 113, which can serve as a support point to distribute the weight of the items inside the basket 110, reduce the pressure on the bottom plate itself, and enhance the load-bearing capacity and stability of the bottom plate. It can also provide a basis for the formation of the storage groove 111. The bottom plate of the basket 110 has a downwardly protruding frame 114 around the first boss 113, which can increase the edge strength of the bottom plate and prevent deformation or damage caused by external forces. At the same time, the storage groove 111 is formed between the frame 114 and the first boss 113 for storing the support legs 150.

[0212] The U-shaped support leg 150 has good stability and load-bearing capacity, which can better distribute the weight of the basket 110 and its contents, reducing the situation of single-point stress. At the same time, the structure of the U-shaped support leg 150 is relatively simple, making it easy to manufacture and install.

[0213] Understandably, the design of the first protrusion 113 on the bottom plate of the basket 110, the surrounding frame 114, and the U-shaped support leg 150 can distribute the weight, provide support points, and prevent deformation or damage, thus improving the stability and convenience of the storage basket 10. At the same time, the storage slot 111 is formed between the surrounding frame 114 and the first protrusion 113, which can ensure that the support leg 150 can be completely and stably stored in it. The bottom of the storage slot 111 is formed by the first protrusion 113, and the surrounding frame 114 surrounds it, forming a relatively closed and stable storage environment.

[0214] In some embodiments, such as Figure 23 As shown, the side panel 140 is provided with a plug-in structure 141, which is used to connect with the support leg 150, and can further enhance the flexibility and stability of the storage basket 10.

[0215] In the technical solution of this application, the side panel 140 is provided with a plug-in structure 141 to connect with the support leg 150. The main function of the plug-in structure 141 is to provide a stable connection between the side panel 140 and the support leg 150. Through precise plug-in design, the support leg 150 can be firmly fixed on the side panel 140, thereby ensuring the stability of the entire storage basket 10. At the same time, the plug-in structure 141 makes the installation and removal of the support leg 150 simple and quick. The support leg 150 can be connected to or removed from the side panel 140 without the use of additional tools or complicated steps.

[0216] The plug-in structure 141 is typically located in a suitable position on the side panel 140, such as the bottom edge or side. The shape and size of the plug-in structure 141 also match the corresponding structures on the support leg 150, such as slots, protrusions, etc., to ensure the stability of the connection and improve the ease of installation. The plug-in structure 141 is typically made of strong and durable materials, such as metal, hard plastic or composite materials, to withstand the weight of the support leg 150 and the pressure of items inside the storage basket 10, while maintaining long-term stability and durability.

[0217] Understandably, the side panel 140 is provided with a plug-in structure 141 to connect with the support leg 150, which can improve the stability and flexibility of the storage basket 10.

[0218] In some embodiments, such as Figures 24-27 As shown, the basket 110 has a rotating shaft 115 and a locking shaft 116 spaced apart from the rotating shaft 115; the side plate 140 is provided with a hinge groove 142 and a locking groove 143, the locking groove 143 is arc-shaped, and the center of the locking groove 143 is located on the axis of the hinge groove 142; the distance between the axis of the locking shaft 116 and the axis of the rotating shaft 115 is equal to the distance between the axis of the hinge groove 142 and the center line of the locking groove 143; the rotating shaft 115 is adapted to be hinged with the joint groove, and the locking groove 143 is adapted to be fitted with the joint groove.

[0219] The pivot 115 is a key component in the storage basket 10 used to enable the side panel 140 to rotate and open. It is usually mounted on the basket body 110 and engages with the hinge groove 142 on the side panel 140 to allow the side panel 140 to rotate around the axis of the pivot 115. The locking shaft 116 is spaced apart from the pivot 115 and its function is to provide a stable lock for the side panel 140 in the closed state. When the side panel 140 is rotated to the closed position, the locking shaft 116 engages with the locking groove 143 on the side panel 140 to ensure that the side panel 140 will not open accidentally.

[0220] The hinge groove 142 is located on the side plate 140 and is the part that mates with the rotating shaft 115. It is usually a circular or elliptical groove 212. The axis of the hinge groove 142 coincides with or is parallel to the axis of the rotating shaft 115, allowing the side plate 140 to rotate around this axis. The locking groove 143 is a structure located on the side plate 140, but unlike the hinge groove 142, the locking groove 143 is designed to be arc-shaped, and its center is located on the axis of the hinge groove 142. When the side plate 140 rotates around the rotating shaft 115, the locking groove 143 can move along an arc trajectory centered on the axis of the hinge groove 142. The centerline of the locking groove 143 maintains a certain distance from the axis of the hinge groove 142. This distance is equal to the distance between the locking shaft 116 and the rotating shaft 115 to ensure that the two can be properly mated.

[0221] When the side plate 140 is installed on the housing 110, the rotating shaft 115 is inserted into the hinge slot 142 of the side plate 140 to form a rotatable connection. The side plate 140 can rotate to open or close around the axis of the rotating shaft 115. When the side plate 140 is closed, the locking shaft 116 is inserted into the locking groove 143 and moves along an arc-shaped trajectory. When the side plate 140 is completely closed, the locking shaft 116 will be stuck in a certain position in the locking groove 143, thereby preventing the side plate 140 from continuing to rotate and keeping it in the closed state.

[0222] It is understandable that by introducing structures such as the pivot 115, the locking pivot 116, and the hinge groove 142 and locking groove 143 on the side plate 140 into the storage basket 10, the side plate 140 of the storage basket 10 can be opened flexibly and locked securely.

[0223] In some embodiments, such as Figure 25 As shown, the side plate 140 is provided with a notch 144, and the hinge groove 142 and the locking groove 143 are both connected to the notch 144 so that the side plate 140 can be detachably installed on the basket 110.

[0224] The side panel 140 is provided with a notch 144, which provides a convenient channel for disassembling the side panel 140. When it is necessary to disassemble the side panel 140, the internal structure of the hinge groove 142 and the locking groove 143 can be easily accessed through the notch 144 for disassembly. At the same time, the notch 144 also simplifies the installation process of the side panel 140. When installing the side panel 140, the side panel 140 can be aligned with the rotating shaft 115 and the locking shaft 116 on the basket 110. The hinge groove 142 is fitted onto the rotating shaft 115 through the notch 144, and the locking groove 143 is aligned with the locking shaft 116. Then, the side panel 140 can be rotated or pushed to make it fully in place.

[0225] Both the hinge groove 142 and the locking groove 143 are connected to the notch 144. The hinge groove 142 and the locking groove 143 can be operated simultaneously through the notch 144, making the disassembly and installation of the side panel 140 smoother and enhancing the flexibility of the storage basket 10. Some or all of the side panels 140 can be selectively disassembled as needed to adapt to different usage scenarios and requirements. At the same time, the detachable side panels 140 make it easier to clean and maintain both the inside and outside of the storage basket 10, as well as to check and maintain the working status of components such as the pivot 115 and the locking pivot 116.

[0226] It is understandable that the notch 144 provided on the side panel 140 and the connection between the hinge groove 142 and the locking groove 143 and the notch 144 can further enhance the modularity and detachability of the storage basket 10.

[0227] In some embodiments, such as Figure 21 and Figure 26 As shown, the side panel 140 has various installation methods, including but not limited to:

[0228] Example 1: The side panel 140 is rotatably mounted on the basket 110.

[0229] The side panel 140 is detachably installed on the basket body 110. When the side panel 140 is connected to the basket body 110, the side panel 140 is rotatably installed on the basket body 110. In the first position, the side panel 140 is stored on the side of the basket body 110, without affecting the overall appearance and storage function of the storage basket 10. The storage basket 10 can be installed on the box body 40. In the second position, the side panel 140 is unfolded and is on the same plane as the basket cover 130, forming a support plane together. The support surface can be used to place items or as a temporary dining table when the storage basket 10 is used alone without the box body 40, thereby increasing the flexibility and versatility of the storage basket 10.

[0230] Example 2: Side panel 140 is stored in storage compartment 120.

[0231] The side panel 140 is detachably installed on the basket 110. When the side panel 140 is separated from the basket 110, the side panel 140 can be stored in the storage compartment 120, reducing the extra space occupied by storing the side panel 140 alone. At the same time, the side panel 140 stored in the storage compartment 120 can serve as a storage tool, maximizing the use of the available space in the storage compartment 120.

[0232] Storing the side panel 140 inside the storage compartment 120 also makes the storage basket 10 more compact and lightweight, reducing inconvenience and potential damage risks during transportation. At the same time, it provides a safe storage environment for the side panel 140, protecting it from dust, dirt, or accidental impacts, which helps protect the side panel 140 and extend its service life.

[0233] Storage compartment 120 is usually located inside basket 110. When storing side panel 140, side panel 140 fits tightly against the inner wall of basket 110 without taking up too much extra space. Storage compartment 120 is equipped with appropriate fixing devices, such as slot 422, hook, magnet, etc., which can firmly fix side panel 140 and prevent it from moving accidentally.

[0234] Understandably, the side panel 140 is detachably installed on the basket body 110 and can be stored in the storage compartment 120 after being separated from the basket body 110, which brings higher space utilization to the storage basket 10 and enables the storage basket 10 to perform at its best in different usage scenarios.

[0235] In some embodiments, such as Figure 23 and Figure 24 As shown, the first side of the side panel 140 is provided with a storage compartment 145. The first side is the side facing the side of the basket 110 when the side panel 140 is in the first position.

[0236] When the side panel 140 is in the first position, it can serve as a structural support, and when it is in the second position, it can realize the storage function, further improving the practicality and space utilization of the storage basket 10.

[0237] The storage compartment 145 can provide additional storage space, allowing the storage basket 10 to hold more types of items, making it easier to classify and store items in an orderly manner, and making them easy to access, thus improving efficiency. The storage compartment 145 can also provide some protection for the stored items, preventing them from being squeezed, bumped, or contaminated.

[0238] Storage compartments 145 are evenly distributed on the first side, which can ensure full utilization of storage space. The first side is the side facing the basket 110 when the side panel 140 is in the first position. When the side panel 140 is in the second position, the first side faces the basket cover 130 to realize the storage function.

[0239] Understandably, setting up a storage compartment 145 on the first side of the side panel 140 not only increases the storage space and practicality of the storage basket 10, but also provides a more convenient and efficient user experience.

[0240] In some embodiments, such as Figure 11 and Figure 21 As shown, the inner side of the basket 110 is provided with a limiting groove 122, the energy storage component 20 is installed in the limiting groove 122, and the storage chamber 120 is divided into multiple sub-chambers 121. The second side of the side plate 140 is adapted to support the top surface of the energy storage component 20.

[0241] The limiting groove 122 is located inside the basket body 110 and can be used to install the energy storage component 20. The energy storage component 20 can divide the storage chamber 120 of the storage basket 10 into multiple independent sub-chambers 121 to improve the utilization efficiency of the storage basket 10. It can also have an energy storage function, such as maintaining a lower temperature when the storage basket 10 is used alone, or buffering or supporting the items in the storage basket 10 to a certain extent to prevent them from being damaged by shaking or collision. The limiting groove 122 and the energy storage component 20 are used together to form the internal skeleton structure of the storage basket 10, which can enhance the overall structural stability of the storage basket 10, making the storage basket 10 more stable and less prone to deformation when subjected to heavy objects or external forces.

[0242] The second side of the side panel 140 is adapted to support the top surface of the energy storage component 20, which allows the side panel 140 to distribute the force more evenly when bearing the weight of the items in the storage basket 10. At the same time, the top surface of the energy storage component 20 can also provide some support for the side panel 140, enhancing the load-bearing capacity and stability of the side panel 140. When the side panel 140 is completely closed and supported on the top surface of the energy storage component 20, a certain sealing effect can be formed between the side panel 140 and the energy storage component 20, which helps to prevent the items in the storage basket 10 from being disturbed by external dust, moisture or insects, keeping the storage environment clean and dry. The support relationship between the side panel 140 and the energy storage component 20 can also simplify the installation and disassembly process of the side panel 140.

[0243] Understandably, the limiting groove 122 on the inner side of the basket 110 and the energy storage component 20 installed therein can add functionality and flexibility to the storage basket 10. At the same time, the second side of the side plate 140 is supported on the top surface of the energy storage component 20, which can further enhance the structural stability and practicality of the storage basket 10.

[0244] In some embodiments, such as Figure 11 and Figure 21 As shown, the inner side of the basket 110 is provided with multiple pairs of support bosses 123, and a limiting groove 122 is formed between each pair of support bosses 123. The top surface of the uppermost support boss 123 is at the same height as the top surface of the energy storage component 20.

[0245] Multiple pairs of support bosses 123 are arranged at predetermined intervals and positions inside the basket 110 to form a limiting groove 122, which allows the energy storage component 20 to be accurately placed in the limiting groove 122 during installation, reducing offset or shaking during installation. The support bosses 123 can also provide a stable support surface for the energy storage component 20. When the energy storage component 20 is installed in the limiting groove 122, the bottom and sides of the energy storage component 20 are tightly fitted with the support bosses 123, thereby improving the stability of the energy storage component 20 in the storage basket 10.

[0246] Through multiple pairs of support bosses 123 and limiting grooves 122, the storage chamber 120 of the storage basket 10 can be divided into multiple independent sub-chambers 121, which to a certain extent prevents the mutual squeezing or collision between items. The top surface of the uppermost support boss 123 is at the same height as the top surface of the energy storage component 20, which can ensure that when the side plate 140 is closed and supported on the top surface of the energy storage component 20, the side plate 140 and the basket body 110 can form a tight fit and sealing effect. At the same time, the support bosses 123 and the energy storage component 20 jointly bear the weight of the items in the storage basket 10, which can enhance the load-bearing capacity of the upper part of the storage basket 10, making the storage basket 10 more stable and reliable when storing heavy items.

[0247] Understandably, the design of multiple pairs of support bosses 123 and limiting grooves 122 on the inner side of the basket 110 can provide precise positioning and stable support for the installation of the energy storage component 20 and the division of the storage compartment 120. At the same time, the top surface of the uppermost support boss 123 is at the same height as the top surface of the energy storage component 20, which can improve the practicality of the storage basket 10.

[0248] In some embodiments, such as Figure 1 and Figure 10 As shown, at least a portion of the sides of the basket 110 are provided with flanges 117, which are adapted to support the opening of the box 40.

[0249] The flange 117, as part of the side of the storage basket 10, can match the opening of the inner liner 420 of the box 40. When the storage basket 10 is placed in the compartment 410 of the box 40, the flange 117 will naturally support the opening, forming a stable support point to prevent the storage basket 10 from shaking or moving inside the box 40, thereby improving the safety and stability of the stored items.

[0250] The presence of the flange 117 can also enhance the load-bearing capacity of the storage basket 10. When heavy objects are placed inside the storage basket 10, the flange 117 will bear part of the weight and distribute it to the opening of the inner liner 420 of the box body 40, thereby reducing the burden on the storage basket 10 itself, making the storage basket 10 more durable and reliable, and able to withstand a large weight for a long time without being easily damaged.

[0251] The flange 117 can also form a certain sealing effect with the opening of the inner liner 420 of the box body 40. When the storage basket 10 is fully installed, the tight fit between the flange 117 and the opening can prevent dust, moisture or other debris from entering the storage basket 10, thereby keeping the stored items clean and dry.

[0252] Understandably, the flange 117 on the side of the basket 110 can enhance the connection stability and load-bearing capacity between the storage basket 10 and the box 40, and also has a certain sealing and dustproof effect.

[0253] In some embodiments, such as Figure 1 and Figure 10 As shown, when the storage basket 10 is placed along the first direction X, the flange 117 is adapted to support the inner opening of the box body 40; when the storage basket 10 is placed along the second direction Y, the storage basket 10 is adapted to support the bottom wall of the box body 40, and the second direction Y intersects with the first direction X.

[0254] The first direction X is the width direction of the box 40, and the second direction Y is the length direction of the box 40. The first direction X and the second direction Y are located on the same horizontal plane and are perpendicular to each other.

[0255] When the storage basket 10 is placed along the first direction X, it is supported by the opening of the inner liner 420 of the box body 40. At this time, the bottom of the storage basket 10 does not contact the bottom wall of the box body 40. The flange 117 fits tightly with the opening of the inner liner 420 of the box body 40, providing stable support for the storage basket 10. When the storage basket 10 is placed along the second direction Y, the bottom of the storage basket 10 directly contacts the bottom wall of the box body 40, providing support. At this time, the storage basket 10 is close to the bottom of the box body 40.

[0256] Understandably, the storage basket 10 can maintain stable support with the box body 40 under different placement orientations, which can improve the stability of the storage basket 10.

[0257] The terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and the number of objects is not limited; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0258] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application 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, and therefore should not be construed as a limitation of this application.

[0259] In the description of this application, "first feature" and "second feature" may include one or more of the features.

[0260] In the description of this application, "multiple" means two or more.

[0261] In the description of this application, the first feature being "above" or "below" the second feature may include the first and second features being in direct contact, or it may include the first and second features not being in direct contact but being in contact through another feature between them.

[0262] In the description of this application, the terms "above," "over," and "on top" for the first feature and the second feature include the first feature being directly above or diagonally above the second feature, or simply indicate that the first feature is at a higher horizontal level than the second feature.

[0263] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0264] Although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the claims and their equivalents.

Claims

1. A storage basket, characterized in that, include: The basket-like structure forms a storage compartment; Energy storage device, installed in the basket; A basket lid, which is installed at the open end of the basket body; At least one side panel is movably mounted to the basket body and has a first position and a second position. In the first position, the side panel is housed in the side of the basket body, and in the second position, the side panel and the basket cover form a support platform.

2. The storage basket according to claim 1, characterized in that, Also includes: The support leg is detachably mounted to the basket body and the side plate. When the support leg is separated from the basket body, the support leg is adapted to be connected to the side plate, and the lower end of the side plate is flush with the lower end of the basket body.

3. The storage basket according to claim 2, characterized in that, The bottom plate of the basket is provided with a storage groove on the outside, and the support legs are adapted to be stored in the storage groove.

4. The storage basket according to claim 3, characterized in that, The storage slot is equipped with a buckle for locking the support leg.

5. The storage basket according to claim 3, characterized in that, The bottom plate of the basket body is provided with an outwardly protruding first boss, and the edge of the bottom plate of the basket body is provided with a downwardly protruding frame. The frame surrounds the first boss, and the storage groove is formed between the frame and the first boss. And / or, The outrigger is U-shaped.

6. The storage basket according to claim 2, characterized in that, The side plate is provided with a plug-in structure for connecting with the support leg.

7. The storage basket according to claim 1, characterized in that, The basket has a rotating shaft and a locking shaft spaced apart from the rotating shaft; The side plate is provided with a hinge groove and a locking groove. The locking groove is arc-shaped, and the center of the locking groove is located on the axis of the hinge groove. The distance between the axis of the locking shaft and the axis of the rotating shaft is equal to the distance between the axis of the hinge groove and the centerline of the locking groove. The rotating shaft is adapted to be hinged to the junction groove, and the locking groove is adapted to engage with the junction groove.

8. The storage basket according to claim 7, characterized in that, The side plate has a notch, and both the hinge groove and the locking groove are connected to the notch, so that the side plate can be detachably installed on the basket.

9. The storage basket according to any one of claims 1-8, characterized in that, The side panel is detachably installed on the basket body, and when the side panel is separated from the basket body, the side panel is suitable for storage in the storage compartment.

10. The storage basket according to claim 9, characterized in that, The first side of the side panel is provided with a storage compartment, and the first side is the side facing the side of the basket when the side panel is in the first position.

11. The storage basket according to claim 9, characterized in that, The inner side of the basket is provided with a limiting groove, the energy storage component is installed in the limiting groove, and the storage chamber is divided into multiple sub-chambers; The side plate is adapted to support the top surface of the energy storage element.

12. The storage basket according to claim 11, characterized in that, The inner side of the basket is provided with multiple pairs of support bosses, and the limiting groove is formed between each pair of support bosses. The top surface of the uppermost support boss is at the same height as the top surface of the energy storage component.

13. The storage basket according to any one of claims 1-8, characterized in that, Also includes: The cover plate is provided with a ventilation opening in the basket body. The cover plate is movably installed in the basket body and is used to selectively open or close the ventilation opening.

14. A storage device, characterized in that, include: The box-like structure forms compartments; The storage basket as described in any one of claims 1-13, wherein the storage basket is detachably installed in the compartment.

15. The storage device according to claim 14, characterized in that, At least a portion of the sides of the basket are provided with flanges, which are adapted to support the vent of the basket.