Storage box with dynamically reconfigurable internal space
The design of adjustable isolation modules and support sections enables dynamic reconstruction of the internal space of the storage box, solving the problem of inflexible space utilization caused by fixed isolation panels and providing flexible space adjustment and desiccant bag positioning functions.
Patent Information
- Application Number
- CN202512018139.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-30
- Publication Date
- 2026-02-24
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The partitions of existing storage boxes have fixed dimensions, making it impossible to re-divide the internal space according to changes in the type or quantity of items, resulting in the problem of "large items not fitting and small items wasting space".
An adjustable isolation module panel was designed. Through structures such as telescopic supports, elastic telescopic baffles, and positioning sockets, the length of the isolation module panel can be flexibly adjusted, and it can be locked by elastic clips to achieve dynamic reconstruction of the internal space.
Users can flexibly adjust the division of the internal space according to their needs, which solves the problem of inflexible space utilization caused by fixed partitions, and limits the drying package by supporting part to prevent it from shaking inside the box or shifting when being taken out or put in.
Smart Images

Figure CN121553520A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of storage box technology, specifically a storage box with dynamically reconfigurable internal space. Background Technology
[0002] Storage boxes are containers used to store everyday or office items. They are usually made of plastic, non-woven fabric, metal, or wood. Their basic structure includes a base, side walls, and a top cover, forming an internal cavity to hold items. They are widely used in homes, warehouses, logistics, and commercial displays.
[0003] Existing storage boxes typically incorporate several partitions of varying sizes along the X or Y direction to store different types of items simultaneously. These partitions divide the internal space into fixed-size compartments. Since the dimensions of these partitions are fixed and cannot be altered, the size and shape of each area are predetermined. Users cannot re-divide the internal space according to seasonal changes, changes in the type or quantity of items, frequently resulting in situations where "large items cannot fit and small items are wasted space." This makes it difficult to achieve true dynamic reconfiguration of the internal space. Therefore, based on the above, a storage box with dynamically reconfigurable internal space is proposed. Summary of the Invention
[0004] The purpose of this invention is to provide a storage box with dynamically reconfigurable internal space, in order to solve the problem that existing storage boxes, due to the fixed size of the partition panels, prevent users from re-dividing the internal space according to changes in the type or quantity of items.
[0005] To achieve the above objectives, the present invention provides the following technical solution: A storage box with dynamically reconfigurable internal space includes a box body, the box body including a box shell, and a storage cavity with an upward opening on the inner side of the box shell. A rubber positioning pad is fixedly connected to the lower inner wall of the storage cavity. Several adjustable isolation module plates arranged in the X and Y directions are installed on the upper side of the rubber positioning pad, and all adjustable isolation module plates are located inside the storage cavity. Each adjustable isolation module plate includes a pair of ends located on both sides of the upper part of the rubber positioning pad, and a telescopic support is provided between the pair of ends. Each end includes a back strip, and an end plate is fixedly connected to the side of the back strip near the telescopic support. Both sides of the end plate are provided with recessed grooves, and the upper and lower sides of the end plate are provided with guide grooves between a pair of recessed grooves. The telescopic support includes a central support bar between a pair of ends. Both sides of the central support bar are fixedly connected to shaft blocks. The outer sides of the shaft blocks are rotatably connected to rotating bars. The two ends of the rotating bars on both sides are staggered vertically. Both ends of the rotating bars are fixedly connected to guide blocks located inside the guide grooves. Both sides of the telescopic support are provided with elastic telescopic baffles. Both ends of the elastic telescopic baffles are fixedly connected to back strips. The lower side of the end plate is fixedly connected to positioning sockets into which rubber positioning pads are inserted.
[0006] Preferably, a lid is installed on the upper side of the box shell, and a transparent observation plate is fixedly connected to the inner side of the opening of the lid. The transparent observation plate is located on the upper side of the storage cavity and the adjustable isolation module plate.
[0007] Preferably, a cloth pad is fixedly connected to the upper side of the rubber positioning pad, the cloth pad is disposed on the lower side of the adjustable isolation module plate, and the positioning socket consists of a pad plate and several positioning pins fixed on the lower side of the pad plate. The positioning pins of the positioning socket all pass through the cloth pad and are inserted into the rubber positioning pad.
[0008] Preferably, each guide groove has an elastic card frame fixedly connected to its inner side. The elastic card frame consists of an elastic metal frame and a gourd-shaped card slot opened inside the elastic metal frame. Each guide block is set inside the gourd-shaped card slot of the elastic metal frame.
[0009] Preferably, the depth of the settling trough is the same as the thickness of the rotating bar, the ends of the rotating bar are all located on the inner side of the settling trough, the elastic telescopic baffles are all in contact with the outer end face of the end plate and the rotating bar, and the back face of a pair of elastic telescopic baffles is smoothly transitioned to the two end faces of the back bar.
[0010] Preferably, each telescopic support is equipped with a support portion, which includes a frame fitted on the outer side of the upper part of the central support bar. The frame has grooves on both sides of its middle section and rotating grooves communicating with the grooves on both sides of its lower section. Each groove has a channel on its upper side, and each rotating groove has a rotatable connector rotatably connected to its inner side. Each connector has a support bar fixedly connected to its upper side, located inside the groove. Each groove has elastic blocks fixed to both sides of the frame on its upper side. An elastic pad is fixedly connected to the upper side of the frame, and a push rod is fixedly connected to the upper side of the elastic pad. A pair of push rods passing through the elastic pad and inserted into the channel are fixedly connected to the lower side of the push rod.
[0011] Preferably, the lower half of the elastic stop block is in contact with the outer end face of the support strip, the push rod is disposed on the upper side of the support strip, the support strips are disposed between a pair of elastic telescopic baffles, and the support strips are disposed between a pair of end plates.
[0012] Compared with the prior art, the beneficial effects of the present invention are: 1. In this invention, the structure of the end, telescopic support, elastic telescopic baffle, and positioning socket ensures that the telescopic support of the adjustable isolation module plate can always keep the two ends aligned during the adjustment process. After the end adjustment is completed, the telescopic support can be locked in place by the elastic clip to lock the current length. At the same time as the end displacement, the elastic telescopic baffle can simultaneously retract or extend. The positioning socket is used to firmly fix the entire adjustable isolation module plate in the storage cavity of the box shell. By flexibly adjusting the length of each adjustable isolation module plate, the user can divide the storage cavity into the required areas according to actual needs. This realizes a storage box with dynamically reconfigurable internal space, allowing the user to divide the internal space at any time according to their own needs. This solves the problem that existing storage boxes cannot re-divide the internal space according to changes in the type or quantity of items because the size of the isolation plate is fixed. 2. In this invention, the adjustable isolation module plate and the supporting part are designed so that the supporting part can be installed inside the adjustable isolation module plate. The cooperation between the supporting part and the adjustable isolation module plate can limit the position of the desiccant pack, so that the desiccant pack will not be displaced due to shaking of the box or the handling of items. When the desiccant pack needs to be removed, the user only needs to lift the supporting part upward to remove the desiccant pack from the adjustable isolation module plate, avoiding the inconvenience of replacing the desiccant pack caused by the lack of a limiting position and the pack being directly scattered in the storage box. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 For the present invention Figure 1 A sectional view of the split structure of the middle part; Figure 3 This is a schematic diagram of the split structure at the adjustable isolation module board of the present invention; Figure 4 This is a schematic diagram of the end structure of the present invention; Figure 5 This is a schematic diagram of the telescopic support frame of the present invention; Figure 6 This is a schematic diagram of the cross-sectional structure of the support portion of the present invention; Figure 7 For the present invention Figure 3 A schematic diagram of the structure after the supporting part of the middle structure is activated.
[0014] In the diagram: 1. Main body of the box; 11. Box shell; 12. Storage cavity; 13. Rubber positioning pad; 14. Cloth pad; 15. Box lid; 16. Transparent observation plate; 2. Adjustable isolation module plate; 21. End; 211. Back strip; 212. End plate; 213. Slot; 214. Guide slot; 215. Elastic frame; 22. Telescopic support; 221. Middle support strip; 222. Shaft block; 223. Rotating strip; 224. Guide block; 23. Elastic telescopic baffle; 24. Positioning socket; 3. Support part; 301. Frame; 302. Slot; 303. Rotating slot; 304. Channel; 305. Adapter; 306. Support strip; 307. Elastic stop block; 308. Elastic pad; 309. Push rod; 310. Push bar. Detailed Implementation
[0015] Please see Figure 1-7 The present invention provides a technical solution: A storage box with dynamically reconfigurable internal space includes a box body 1, which includes a box shell 11. The inner side of the box shell 11 has an upwardly opening storage cavity 12. A rubber positioning pad 13 is fixedly connected to the lower inner wall of the storage cavity 12. Several adjustable isolation module plates 2 arranged in the X and Y directions are installed on the upper side of the rubber positioning pad 13, and all adjustable isolation module plates 2 are located inside the storage cavity 12. Each adjustable isolation module plate 2 includes a pair of end plates 21 located on both sides of the upper part of the rubber positioning pad 13. A telescopic support frame 22 is provided between the pair of end plates 21. Each end plate 21 includes a back strip 211. An end plate 212 is fixedly connected to the side of the back strip 211 closest to the telescopic support frame 22. Both sides of the end plate 212 are provided with recessed grooves 213. The upper and lower sides of the end plate 212 are provided with guide grooves 214 located between a pair of recessed grooves 213. The telescopic support frame 22 includes a central support bar 221 located between a pair of end plates 21. Shaft blocks 222 are fixedly connected to both sides of the central support bar 221. Rotary bars 223 are rotatably connected to the outer sides of the shaft blocks 222. The two ends of the rotating bars 223 are staggered vertically. Guide blocks 224 located inside the guide grooves 214 are fixedly connected to both ends of the rotating bars 223. Elastic telescopic baffles 23 are provided on both sides of the telescopic support frame 22. Both ends of the elastic telescopic baffles 23 are fixedly connected to the back strips 211. Inserted rubber positioning pads 1 are fixedly connected to the lower side of the end plate 212. The positioning socket 24 of the housing 11 is as follows: A cover 15 is installed on the upper side of the housing 11, and a transparent observation plate 16 is fixedly connected to the inner side of the opening of the cover 15. The transparent observation plate 16 is located on the upper side of the storage cavity 12 and the adjustable isolation module plate 2. This setting allows the user to directly observe the items in the storage cavity 12 divided into different areas by the adjustable isolation module plates 2. A cloth pad 14 is fixedly connected to the upper side of the rubber positioning pad 13. The cloth pad 14 is located on the lower side of the adjustable isolation module plate 2. The positioning socket 24 consists of a pad and several positioning pins fixed on the lower side of the pad. The positioning pins of the positioning socket 24 all pass through the cloth pad 14 and are inserted into the rubber positioning pad 13. This setting allows the positioning socket 24 to... The entire adjustable isolation module plate 2 can be positioned by inserting the rubber positioning pad 13. The cloth pad 14 is set so that when the positioning socket 24 is removed from the rubber positioning pad 13, the insertion hole of the cloth pad 14 is automatically reset under the pressure of other textile threads, which can cover the insertion hole of the rubber positioning pad 13. The inner side of the guide groove 214 is fixedly connected with an elastic frame 215. The elastic frame 215 is composed of an elastic metal frame and a gourd-shaped slot opened on the inner side of the elastic metal frame. The guide block 224 is set inside the gourd-shaped slot of the elastic metal frame. With this setting, after the adjustment action of the end 21 is completed, the telescopic support 22 can be locked in place immediately by means of the elastic frame 215 to lock the current length.The depth of the groove 213 is the same as the thickness of the rotating bar 223. The ends 21 of the rotating bar 223 are all located inside the groove 213. The elastic telescopic baffles 23 are all in contact with the outer end faces of the end plate 212 and the rotating bar 223. The back faces of a pair of elastic telescopic baffles 23 are smoothly transitioned to the two end faces of the back bar 211. This design ensures that the adjustable isolation module plate 2 does not have any protrusions and remains a regular plate shape.
[0016] like Figures 2-4 , Figures 6-7 As shown, each of the telescopic support frames 22 is equipped with a support part 3. The support part 3 includes a frame 301 sleeved on the upper outer side of the middle support bar 221. Grooves 302 are formed on both sides of the middle part of the frame 301. Rotary grooves 303 communicating with the grooves 302 are formed on both sides of the lower part of the frame 301. A channel 304 is provided on the upper side of each groove 302, which is located on the upper side of the frame 301. An adapter 305 is rotatably connected to the inner side of each rotary groove 303. A support bar 306 located inside the groove 302 is fixedly connected to the upper side of each adapter 305. Elastic blocks 307 fixed to both sides of the frame 301 are provided on the upper side of each groove 302. An elastic pad 308 is fixedly connected to the upper side of the frame 301. A push bar 3 is fixedly connected to the upper side of the elastic pad 308. 10. A pair of push rods 309 are fixedly connected to the lower side of the push bar 310, passing through the elastic pad 308 and inserted into the hole 304; the lower half of the elastic stop 307 is in contact with the outer end face of the support bar 306. This setting allows the elastic stop 307 to limit the support bar 306 in the groove 302. The push rods 309 are set on the upper side of the support bar 306. The support bars 306 are all set between a pair of elastic telescopic baffles 23 and between a pair of end plates 212. This setting allows the support bars 306 of the support part 3 to be installed on the inner side of the adjustable isolation module plate 2. The cooperation between the support part 3 and the adjustable isolation module plate 2 can limit the position of the dry bag, so that the dry bag will not be displaced due to the shaking of the shell 11 or the taking and putting of items.
[0017] Workflow: The space reconstruction process of the storage box with dynamically reconfigurable internal space is as follows: If it is necessary to re-divide the space inside the storage cavity 12, the length of all adjustable isolation module plates 2 must first be adjusted according to the size of the area to be divided; First, remove the adjustable isolation module plate 2 from the storage cavity 12 so that its positioning socket 24 is detached from the rubber positioning pad 13. At this time, the user can pinch the two ends 21 of the adjustable isolation module plate 2 in the length direction with both hands and apply opposite or opposite displacement forces; The displacement pressure of the two ends 21 is transmitted to the guide block 224 of the telescopic support frame 22 through the end plate 212, guide groove 214 and elastic clip frame 215. During the continuous squeezing process, the gourd-shaped clip grooves of each elastic clip frame 215... The elastic deformation allows each guide block 224 to temporarily slide within the slot; the sliding of the guide block 224 causes each rotating bar 223 to rotate around the shaft block 222 on the central support bar 221 as the rotation center, thereby causing the two ends 21 to complete synchronous displacement towards or away from each other; as the ends 21 displace, the elastic telescopic baffle 23 contracts or extends accordingly, allowing the length of the entire adjustable isolation module plate 2 to change continuously; when the adjustable isolation module plate 2 is adjusted to the required size, the user removes the force applied to the ends 21, and the gourd-shaped slots of the elastic clips 215 in each guide groove 214 immediately elastically reset, re-locking all the guide blocks 224 of the telescopic support frame 22, so that each rotating bar 223 maintains the adjusted angle. This ensures that the adjustable isolation module 2 stably maintains its adjusted length. After adjusting the length of each adjustable isolation module 2 according to the above steps, each adjustable isolation module 2 is then placed into its corresponding position in the storage cavity 12 according to the division requirements. The positioning socket 24 of each adjustable isolation module 2 passes through the cloth pad 14 and is inserted into the rubber positioning pad 13, thus completing the installation of all adjustable isolation module 2. Through the above operations, the internal space of the storage cavity 12 is re-divided, realizing a storage box with dynamically reconfigurable internal space. This allows users to divide the internal space according to their own needs at any time, solving the problem that existing storage boxes, due to the fixed size of the isolation plates, prevent users from dividing the space according to the type or number of items. The issue of re-dividing the internal space due to changes in quantity; after all the adjustable isolation module plates 2 are installed, if the user needs to place a desiccant pack inside the box, they can press down on the push bar 310 of the support part 3 to make the push bar 310 move downward; the downward movement of the push bar 310 simultaneously drives the pair of push rods 309 connected to it to move downward, and the lower end of the push rod 309 then applies a downward squeezing force to the support bar 306 in the groove 302, causing the two support bars 306 to rotate outward around the adapter 305 as the rotation center and disengage from the groove 302; during the above rotation process, the support bar 306 squeezes the elastic stop 307, causing the elastic stop 307 to undergo elastic deformation and temporarily release the restriction on the support bar 306;Subsequently, the rotating side support strips 306 rest at an angle on the end plates 212 on both sides of the adjustable isolation module plate 2. At this point, the user can place the drying bag between a pair of elastic telescopic straps 23 of the adjustable isolation module plate 2. The falling drying bag will be supported by the inclined support strips 306, thus stably suspending it within the space enclosed by the adjustable isolation module plate 2. This drying bag allows for continuous drying of items stored in the storage cavity 12. Simultaneously, the drying bag itself is restrained by the support strips 306 and the adjustable isolation module plate 2, preventing displacement due to shaking of the box shell 11 or the handling of items. When the drying bag needs to be removed, the user simply pulls upwards on the support part 3, causing the push rod 309 to rise and remove the drying bag from the adjustable isolation module plate 2. This structure avoids the inconvenience of replacing drying bags that are simply scattered inside the storage box due to a lack of restraint.
[0018] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only for the purpose of helping to understand the method and core ideas of the present invention. The above descriptions are only preferred embodiments of the present invention. It should be noted that due to the limitations of textual expression, while there are objectively infinite specific structures, those skilled in the art can make several improvements, modifications, or changes without departing from the principles of the present invention, and can also combine the above technical features in an appropriate manner. These improvements, modifications, changes, or combinations, or the direct application of the inventive concept and technical solution to other situations without modification, should all be considered within the scope of protection of the present invention.
Claims
1. A storage box with dynamically reconfigurable internal space, comprising a box body (1), characterized in that: The main body (1) of the box includes a box shell (11). The inner side of the box shell (11) has a storage cavity (12) with an upward opening. A rubber positioning pad (13) is fixedly connected to the lower inner wall of the storage cavity (12). Several adjustable isolation module plates (2) arranged in the X and Y directions are installed on the upper side of the rubber positioning pad (13). The adjustable isolation module plates (2) are all located inside the storage cavity (12). Each adjustable isolation module plate (2) includes a pair of end plates (21) located on both sides of the upper part of the rubber positioning pad (13). A telescopic support frame (22) is provided between the pair of end plates (21). Each end plate (21) includes a back strip (211). An end plate (212) is fixedly connected to the side of the back strip (211) near the telescopic support frame (22). A groove (213) is provided on both sides of the end plate (212). The end plate (212) has guide grooves (214) on both the upper and lower sides of the interior, which are located between a pair of recessed grooves (213). The telescopic support (22) includes a middle support bar (221) between a pair of ends (21). A shaft block (222) is fixedly connected to both sides of the middle support bar (221). A rotating bar (223) is rotatably connected to the outer side of the shaft block (222). The two ends of the rotating bar (223) on both sides are staggered vertically. A guide block (224) located inside the guide groove (214) is fixedly connected to both ends of the rotating bar (223). An elastic telescopic baffle (23) is provided on both sides of the telescopic support (22). The two ends of the elastic telescopic baffle (23) are fixedly connected to the back bar (211). A positioning socket (24) for inserting a rubber positioning pad (13) is fixedly connected to the lower side of the end plate (212).
2. The storage box with dynamically reconfigurable internal space according to claim 1, characterized in that: A lid (15) is installed on the upper side of the box shell (11), and a transparent observation plate (16) is fixedly connected to the inner side of the opening of the lid (15). The transparent observation plate (16) is located on the upper side of the storage cavity (12) and the adjustable isolation module plate (2).
3. The storage box with dynamically reconfigurable internal space according to claim 1, characterized in that: A cloth pad (14) is fixedly connected to the upper side of the rubber positioning pad (13). The cloth pad (14) is set on the lower side of the adjustable isolation module plate (2). The positioning socket (24) consists of a pad and several positioning pins fixed on the lower side of the pad. The positioning pins of the positioning socket (24) all pass through the cloth pad (14) and are inserted into the rubber positioning pad (13).
4. A storage box with dynamically reconfigurable internal space according to claim 1, characterized in that: The inner side of each guide groove (214) is fixedly connected with an elastic card frame (215). The elastic card frame (215) consists of an elastic metal frame and a gourd-shaped card slot opened inside the elastic metal frame. The guide blocks (224) are all set inside the gourd-shaped card slot of the elastic metal frame.
5. A storage box with dynamically reconfigurable internal space according to claim 1, characterized in that: The depth of the sink (213) is the same as the thickness of the rotating bar (223). The ends (21) of the rotating bar (223) are all located inside the sink (213). The elastic telescopic baffles (23) are all in contact with the outer end faces of the end plate (212) and the rotating bar (223). The back faces of a pair of elastic telescopic baffles (23) are smoothly transitioned to the two end faces of the back strip (211).
6. A storage box with dynamically reconfigurable internal space according to claim 1, characterized in that: Each telescopic support (22) is equipped with a support part (3), which includes a frame (301) sleeved on the upper outer side of the middle support bar (221). The frame (301) has grooves (302) on both sides of its middle section, and rotating grooves (303) communicating with the grooves (302) on both sides of its lower section. Each groove (302) has a channel (304) on its upper side, which is located on the upper side of the frame (301). Each rotating groove (303) has a rotatable connector (304) rotatably connected to its inner side. 5) The upper side of each adapter (305) is fixedly connected with a support strip (306) located inside the groove (302). The upper side of each groove (302) is provided with elastic blocks (307) fixed on both sides of the frame (301). The upper side of the frame (301) is fixedly connected with an elastic pad (308). The upper side of the elastic pad (308) is fixedly connected with a pusher (310). The lower side of the pusher (310) is fixedly connected with a pair of push rods (309) that pass through the elastic pad (308) and are inserted into the channel (304).
7. A storage box with dynamically reconfigurable internal space according to claim 6, characterized in that: The lower half of the elastic stop (307) is in contact with the outer end face of the support strip (306), the push rod (309) is located on the upper side of the support strip (306), the support strip (306) is located between a pair of elastic telescopic baffles (23), and the support strip (306) is located between a pair of end plates (212).