Modular storage integrated container
By designing deployment and fixing mechanisms and auxiliary loading mechanisms on the container, the problems of complex loading and safety hazards of long, rod-shaped goods have been solved, enabling fast, safe, and efficient cargo loading.
Patent Information
- Application Number
- CN202511605836.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-05
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2045-11-05
AI Technical Summary
Existing modular storage integrated containers require large lifting equipment and multiple people to assist in loading long, rod-shaped cargo, which is complex to operate and poses safety hazards.
An unfolding and fixing mechanism and an auxiliary loading mechanism were designed. The unfolding and fixing mechanism is used to fix the top cover to the top of the container, and the auxiliary loading mechanism can quickly load long rod-shaped goods without lifting equipment. Combined with the inclined design of the first and second support frames, stability and convenience are provided.
It enables a small number of workers to quickly load bundled long rod-shaped goods without the need for hoisting equipment, improving loading efficiency, reducing manpower requirements, ensuring safety, and reducing friction and wear.
Smart Images

Figure CN121044185B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of container technology, and in particular to an integrated container for modular storage. Background Technology
[0002] Modular integrated containers use shipping containers as their base, retaining the advantages of shipping containers such as convenient transportation and weather resistance, while also allowing for flexible internal modifications. The space is divided into adjustable modular storage units, such as partitions that can be added or removed, and replaceable shelves, which can be configured as needed. At the same time, it also integrates various practical functions, such as temperature control equipment and intelligent systems that can be remotely monitored, configured according to the goods being transported.
[0003] Modular storage integrated containers can flexibly adapt to the shape and transportation needs of specific goods. They can be used to transport long rod-shaped goods such as steel pipes, steel bars, utility poles, long shafts for engineering, and timber. When transporting these long rod-shaped goods, they need to be loaded into the container. These long rod-shaped goods are usually bundled together in groups of dozens. Because the long rod-shaped goods themselves are long, the volume and weight of the bundled long rod-shaped goods are also larger, which makes loading the goods more troublesome. Currently, cranes are generally used in conjunction with trolleys inside the container to load the goods. Manual labor is required to stand inside the container to assist in adjusting the placement of the goods. However, this operation method requires large lifting equipment and a large number of workers to complete, resulting in high loading costs. In addition, workers assisting in loading inside the container not only occupy the space inside the container, but also cause accidental collisions that may result in injuries to workers. Therefore, this application provides a modular storage integrated container to meet the needs. Summary of the Invention
[0004] The technical problem to be solved by this invention is to provide an integrated container for modular storage. By setting up an unfolding and fixing mechanism and an auxiliary loading mechanism, the unfolding and fixing mechanism can not only fix the top cover vertically to the top of the container body, allowing the top of the container body to be fully unfolded, which facilitates loading goods into the container body from the top, but also, after the top cover is stably fixed, the auxiliary loading mechanism can be used to quickly load bundled long rod-shaped goods into the container body without lifting equipment and with a small number of workers. The above settings can solve the problem that the current loading operation of bundled long rod-shaped goods is relatively cumbersome.
[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution:
[0006] An integrated modular storage container includes a container body, a door installed on one side of the container body, a top cover installed on the top of the container body, a first support frame installed on the top of the top cover, a second support frame installed on one side of the container body, and a fixing rod fixedly connected to the top of the container body; an unfolding and fixing mechanism for fixing the unfolded top cover to the top of the container body, the unfolding and fixing mechanism being connected to the container body; and an auxiliary loading mechanism for assisting manual loading of goods into the interior of the container body, the auxiliary loading mechanism being connected to the container body.
[0007] Optionally, the unfolding and fixing mechanism includes a first mounting block and a second mounting block installed on the container body and the top cover. A sleeve is fixedly connected to both the side of the first support frame away from the second support frame and the side of the second support frame away from the first support frame. A first mounting screw is installed inside the sleeve. A through groove adapted to the shape of the first mounting screw is formed on the sleeve. A first fixing block is fixedly connected to both the side of the first support frame and the side of the second support frame away from the sleeve. A mounting hole body is formed on the first fixing block. A second fixing block is fixedly connected to the side of the first support frame near the second support frame. A rotating shaft body is fixedly connected to the end of the second support frame near the first support frame. A rotating groove is formed on the rotating shaft body, and a second mounting screw is inserted into the rotating groove. A mounting groove adapted to the shape of the second mounting screw is formed on the second fixing block. A third mounting screw is installed on the first fixing block.
[0008] Optionally, a connecting rope is installed on the first fixing block, a locking block is fixedly connected to the side of the first support frame near the second support frame, and a slot adapted to the shape of the locking block is opened on the side of the second support frame near the first support frame.
[0009] Optionally, both the card block and the card slot have square cross-sections, and both sides of the first support frame and the second support frame are inclined.
[0010] Optionally, the auxiliary loading mechanism includes a first mounting plate installed on the container body, a second mounting plate rotatably connected to one side of the first mounting plate, a first motor mounted on the second mounting plate, a rotating rod fixedly connected to the output end of the first motor, the end of the rotating rod away from the first motor mounted on the second mounting plate, a steel wire mounted on the rotating rod, and a hook fixedly connected to the end of the steel wire away from the rotating rod.
[0011] Optionally, a first roller is installed on one side of the top cover, a groove adapted to the shape of the steel wire is opened on the first fixing block, and a second roller is installed on the first fixing block.
[0012] Optionally, a movable rod is installed on the top of the container body, and a first roller is installed on the movable rod.
[0013] Optionally, both the container body and the fixed rod are provided with movable slots, and movable blocks are provided in the movable slots. The movable blocks are fixedly connected to the movable rods. A screw sleeve is provided in the movable blocks, and a screw rod is inserted into the screw sleeve. A second motor is installed at one end of the screw rod, and a mounting bracket is provided at the bottom of the second motor.
[0014] Optionally, a side rail is rotatably connected to one side of the container body, rollers are installed on both sides of the side rail, connecting rods are fixedly connected to both sides of the bottom of the side rail, and a second roller is installed on the top of the side of the container body near the side rail.
[0015] Optionally, a connecting piece is fixedly connected to the connecting rod, the connecting piece has an installation hole, a screw is provided in the installation hole, the container body has a threaded hole that matches the shape of the screw near the connecting piece, the bottom of the container body has a storage groove that matches the shape of the connecting rod on both sides, and a movable piece is installed on the bottom side of the container body near the connecting rod.
[0016] Compared with the prior art, the present invention has at least the following beneficial effects:
[0017] In the above scheme, by setting up an unfolding and fixing mechanism and an auxiliary loading mechanism, not only can the unfolding and fixing mechanism be used to fix the top cover vertically to the top of the container body, allowing the top of the container body to be fully unfolded, facilitating the loading of goods into the container body from the top, but also, after the top cover is stably fixed, the auxiliary loading mechanism can be used to quickly load bundles of long rod-shaped goods into the container body without the need for hoisting equipment and with a small number of workers. Moreover, the structure of this device is relatively simple, the work efficiency of loading goods is high, a lot of manpower is saved, and the safety of workers is ensured at the same time.
[0018] By incorporating a first support frame and a second support frame within the unfolding and fixing mechanism, the top cover can be quickly switched between closed and unfolded states, facilitating subsequent use with auxiliary loading mechanisms to rapidly load bundled long rod-shaped goods into the container body for transportation and storage. Furthermore, the fact that both sides of the first and second support frames are inclined allows for further stability when the top cover is unfolded, thanks to the combined use of the first and second support frames.
[0019] By incorporating a first mounting plate, a second mounting plate, a first motor, a rotating rod, and steel wire within the auxiliary loading mechanism, the first and second mounting plates can be bent at 90 degrees and placed inside the container body. This allows the first motor and its structure to be neatly stored within the separate space formed by the container body and the first and second mounting plates. Furthermore, the flat surface formed by the bending of the first and second mounting plates has dual practical functions: it can be used to place lighter goods and as a support surface when workers need to take short breaks inside the container body, further enhancing the device's practicality. When the first motor is removed from the container body, it can also be used to smoothly lift goods and stably load them into the container body without the need for a crane, in conjunction with the various structures within the device.
[0020] By incorporating a movable slot, movable rod, and a second motor within the auxiliary loading mechanism, the lateral position of the goods can be adjusted to ensure accurate placement within the container body, resulting in neater cargo arrangement. Furthermore, the entire loading operation requires no manual intervention near the work area, effectively guaranteeing personnel safety. Simultaneously, through the coordinated operation of each structure, long, rod-shaped goods can be quickly and neatly loaded into the container body, significantly improving the efficiency of the device during operation.
[0021] By incorporating side rails, rollers, and connecting rods within the device, not only can the rollers and connecting rods provide reinforced protection for one side of the container's outer wall, but the first and second support frames, when retracted, also provide reinforced protection for the other side of the container. This reduces friction and wear. For example, in multimodal transport, such as transferring goods from trucks to container ships or during stacking storage, it isolates direct contact between adjacent containers, preventing wear on the side panel paint and reducing the risk of rust. It also prevents sharp goods, such as metal parts of other equipment, from scratching the container. Furthermore, when loading goods, the side rails, connecting rods, and the container body form a stable triangular structure, preventing wear caused by goods hitting the container's side wall during upward movement. This ensures the stability of the goods during upward movement, and the rolling friction reduces the resistance to the upward movement of goods, thus lessening the tension exerted on the goods by the steel wires and further improving loading efficiency.
[0022] In summary, this device utilizes an unfolding and fixing mechanism to fully unfold the top of the container body for easy loading. The auxiliary loading mechanism requires no hoisting equipment and minimal manpower to quickly load bundles of long, rod-shaped goods. It can also adjust the cargo position to ensure neat placement. Furthermore, the side rails, rollers, connecting rods, and the retractable first and second support frames provide reinforced protection for the container body, reducing wear and damage during multimodal transport or storage. This device eliminates the need for manual labor near the work area during loading, ensures stable upward movement of goods with minimal resistance, and guarantees personnel safety and cargo integrity. Attached Figure Description
[0023] The accompanying drawings, which are incorporated herein and form part of the specification, illustrate embodiments of the invention and, together with the specification, further serve to explain the principles of the invention and enable those skilled in the art to practice and use the invention.
[0024] Figure 1 A first-person perspective 3D structural diagram of an integrated container for modular storage;
[0025] Figure 2 for Figure 1 Enlarged structural diagram at point A in the middle;
[0026] Figure 3 for Figure 1 Enlarged structural diagram at point B;
[0027] Figure 4 for Figure 1 Enlarged structural diagram at point C;
[0028] Figure 5 A second-view 3D structural diagram of an integrated container for modular storage;
[0029] Figure 6 for Figure 5 Enlarged structural diagram at point D;
[0030] Figure 7 A three-dimensional cross-sectional diagram of an integrated container for modular storage;
[0031] Figure 8 A schematic diagram of the unfolded structure of an integrated container for modular storage;
[0032] Figure 9 for Figure 8 Enlarged structural diagram at point E;
[0033] Figure 10 A first-person perspective 3D structural diagram of an integrated container for modular storage;
[0034] Figure 11 for Figure 10 Enlarged structural diagram at point F;
[0035] Figure 12 for Figure 10 Enlarged structural diagram at point G;
[0036] Figure 13 A second-view 3D structural diagram of an integrated container for modular storage.
[0037] Figure label:
[0038] 1. Container body; 2. Door; 3. Top cover; 4. First support frame; 5. Second support frame; 6. Sleeve; 7. First mounting block; 8. First mounting screw; 9. Second mounting block; 10. First fixing block; 11. Mounting hole body; 12. Connecting rope; 13. Locking block; 14. Locking groove; 15. Rotating shaft body; 16. Second fixing block; 17. Rotating groove; 18. Second mounting screw; 19. Mounting groove; 20. Side railing 21. Roller; 22. Connecting rod; 23. Connecting piece; 24. Movable piece; 25. First mounting plate; 26. Second mounting plate; 27. First motor; 28. Rotating rod; 29. Steel wire; 30. Movable groove; 31. Movable rod; 32. First roller; 33. Second motor; 34. Mounting frame; 35. First roller shaft; 36. Second roller shaft; 37. Third mounting screw; 38. Second roller shaft; 39. Hook; 40. Fixing rod.
[0039] As shown in the figure, specific structures and devices are marked in the figure to clearly illustrate the structure of the embodiments of the present invention. However, this is only for illustrative purposes and is not intended to limit the present invention to this specific structure, device and environment. Those skilled in the art can adjust or modify these devices and environments according to specific needs. Detailed Implementation
[0040] The modular storage integrated container provided by the present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, to make the embodiments more detailed, the following embodiments are the best and preferred embodiments, and those skilled in the art can use other alternative methods to implement some well-known technologies; moreover, the accompanying drawings are only for more specific description of the embodiments and are not intended to specifically limit the present invention.
[0041] It should be noted that the use of terms such as "an embodiment," "an embodiment," "an exemplary embodiment," and "some embodiments" in the specification indicates that the described embodiment may include a specific feature, structure, or characteristic, but not every embodiment necessarily includes that specific feature, structure, or characteristic. Furthermore, when describing a specific feature, structure, or characteristic in conjunction with embodiments, the implementation of such feature, structure, or characteristic in conjunction with other embodiments, whether or not explicitly described, should be within the knowledge of those skilled in the art.
[0042] Generally, terms can be understood at least partly from their use in context. For example, depending at least partly on the context, the term "one or more" as used herein can be used to describe any feature, structure, or characteristic in a singular sense, or a combination of features, structures, or characteristics in a plural sense. Additionally, the term "based on" can be understood not necessarily to convey an exclusive set of factors, but rather, alternatively, depending at least partly on the context, to allow for the presence of other factors that are not necessarily explicitly described.
[0043] It is understood that the meanings of “on”, “above”, and “above” in this invention should be interpreted in the broadest manner, such that “on” means not only “directly on” something, but also includes the meaning of being “on” something with an intervening feature or layer, and that “above” or “above” means not only “on” something, but also includes the meaning of being “on” something without an intervening feature or layer.
[0044] Furthermore, spatially related terms such as “below,” “under,” “lower,” “above,” and “upper” are used herein for convenience to describe the relationship of one element or feature to one or more other elements or features, as illustrated in the accompanying drawings. Spatially related terms are intended to cover different orientations in the use or operation of the device other than those depicted in the accompanying drawings. The device may be oriented in other ways, and the spatially related descriptive terms used herein can be interpreted similarly.
[0045] like Figure 1 , Figure 5 and Figure 7As shown, an embodiment of the present invention provides a modular storage integrated container, including a container body 1, a door 2 installed on one side of the container body 1, a top cover 3 installed on the top of the container body 1, a first support frame 4 installed on the top of the top cover 3, a second support frame 5 installed on one side of the container body 1, and a fixing rod 40 fixedly connected to the top of the container body 1; an unfolding and fixing mechanism for fixing the unfolded top cover 3 to the top of the container body 1, and the unfolding and fixing mechanism is connected to the container body 1; and an auxiliary loading mechanism for assisting manual loading of goods into the container body 1, the auxiliary loading mechanism being connected to the container body 1. The container body 1, door 2, top cover 3, and mounting and connecting components are all existing mature technologies, therefore... The working principle and specific structure are not detailed here. The container body 1, the door 2, and the top cover 3 are used for loading and transporting long rod-shaped goods. This device can use an unfolding and fixing mechanism to fix the top cover 3 vertically to the top of the container body 1, so that the top of the container body 1 can be fully unfolded, making it convenient for goods to be loaded into the container body 1 from the top. After the top cover 3 is stably fixed, the auxiliary loading mechanism can be used to quickly load bundles of long rod-shaped goods into the container body 1 without lifting equipment and with a small number of workers. The working principle of the unfolding and fixing mechanism and the auxiliary loading mechanism are detailed below. The structure of this device is relatively simple, the loading efficiency is high, and a lot of manpower is saved, while ensuring the safety of the workers.
[0046] like Figure 1 , Figures 3 to 7 and Figure 12 As shown, the unfolding and fixing mechanism includes a first mounting block 7 and a second mounting block 9 installed on the container body 1 and the top cover 3. Sleeves 6 are fixedly connected to both the side of the first support frame 4 away from the second support frame 5 and the side of the second support frame 5 away from the first support frame 4. The sleeves 6 are detachably connected to the first mounting block 7 and the second mounting block 9. A first mounting screw 8 is installed inside the sleeve 6, and a through groove adapted to the shape of the first mounting screw 8 is provided on the sleeve 6. Figure 1 and Figure 5As shown, there are two first mounting blocks 7 and two second mounting blocks 9. One first mounting block 7 and the other second mounting block 9 are installed on the top cover 3, and the other first mounting block 7 and the other second mounting block 9 are installed on the container body 1. During operation, first adjust the positions of the first support frame 4 and the second support frame 5 so that the sleeves 6 on the first support frame 4 and the second support frame 5 are aligned with the first mounting block 7 or the second mounting block 9. This will initially position the first support frame 4 and the second support frame 5 in different installation positions. After adjusting the positions, pass the first mounting screw 8 through the sleeve 6 and fix it to the first mounting block 7 or the second mounting block 9. This will allow the first support frame 4 and the second support frame 5 to be rotatably installed on the top cover 3 and the container. Specifically, on the main body 1, when the top cover 3 is closed, the sleeve 6 is fixed at the corresponding position of the first mounting block 7. When the top cover 3 is open, the sleeve 6 is installed at the corresponding position of the second mounting block 9. The first supporting frame 4 and the second supporting frame 5 are both fixedly connected to the side away from the sleeve 6 by a first fixing block 10. The first fixing block 10 has a mounting hole body 11 and a connecting rope 12. The side of the first supporting frame 4 closest to the second supporting frame 5 is fixedly connected to a second fixing block 16. The end of the second supporting frame 5 closest to the first supporting frame 4 is fixedly connected to a rotating shaft body 15. The second fixing block 16 and the rotating shaft body 15 are rotatably connected. The rotating shaft body 15 has a rotating groove 17. A second mounting screw 18 is inserted into the slot 17. A mounting groove 19, matching the shape of the second mounting screw 18, is provided on the second fixing block 16. A third mounting screw 37 is installed on the first fixing block 10. With the container body 1 closed, by passing two connecting ropes 12 through the mounting holes 11 on the two first fixing blocks 10 and tightening them, the side of the first support frame 4 closest to the second support frame 5 and the side of the second support frame 5 closest to the first support frame 4 can be fixedly connected together. This ensures that the first support frame 4 and the second support frame 5 on the container body 1 remain stable during transportation. When the top cover 3 needs to be unfolded, the connecting ropes 12 are first untied and removed. After adjusting the installation positions of the first support frame 4 and the second support frame 5, the two first fixing blocks 10 are brought closer to each other, and the second fixing block 16 is aligned with and attached to the rotating shaft body 15. Then, the second mounting screw 18 is rotated to fix the second mounting screw 18 in the mounting groove 19, so that the sides of the first support frame 4 and the second support frame 5 that are close to each other are rotated and connected together. After the top cover 3 is unfolded to be flush with the side wall of the container body 1, the two sides of the first support frame 4 and the second support frame 5 that are close to each other are aligned and attached, and the first fixing blocks 10 on them are aligned and attached. Then, the third mounting screw 37 is installed and fixed in the first fixing block 10, so that the two first fixing blocks 10 are fixed together.Through the above operations, the container body 1, the first support frame 4, the second support frame 5, and the top cover 3 can maintain a stable triangular structure. Utilizing the coordination between these structures, the top cover 3 can quickly switch between closed and open states, facilitating subsequent use with auxiliary loading mechanisms to quickly load bundled long, rod-shaped goods into the container body 1 for transportation and storage.
[0047] Furthermore, such as Figure 12 As shown, a locking block 13 is fixedly connected to the side of the first support frame 4 near the second support frame 5. A slot 14 matching the shape of the locking block 13 is provided on the side of the second support frame 5 near the first support frame 4. The locking block 13 is made of rubber, and both the locking block 13 and the slot 14 have square cross-sections. When the top cover 3 is unfolded, the two first fixing blocks 10 approach each other, and the locking block 13 is locked in the slot 14. This further ensures that the two first fixing blocks 10 are stably connected together, thereby further ensuring the stability of the installation of the first support frame 4 and the second support frame 5. Both sides of the first support frame 4 and the second support frame 5 are inclined. When the top cover 3 is unfolded, the two inclined surfaces of the first support frame 4 and the second support frame 5 that approach each other abut against each other, while the two inclined surfaces of the first support frame 4 and the second support frame 5 that move away from each other abut against the top cover 3 and the container body 1, respectively. This allows the top cover 3 to maintain stability when unfolded by using the cooperation of the first support frame 4 and the second support frame 5. Moreover, the above structure is relatively simple and easy to use.
[0048] like Figures 7 to 13As shown, the auxiliary loading mechanism includes a first mounting plate 25 installed on the container body 1. A second mounting plate 26 is rotatably connected to one side of the first mounting plate 25. A first motor 27 is mounted on the second mounting plate 26. Mounting plates are provided on the opposite sides of the first mounting plate 25 and the second mounting plate 26, and screws are mounted on the mounting plates. Correspondingly, mounting holes adapted to the shape of the screws are opened on the inner wall of the container body 1. In use, the first mounting plate 25 and the second mounting plate 26 are bent at ninety degrees and placed inside the container body 1, and then placed on the container body 1. Inside the container body 1, the first mounting plate 25 and the second mounting plate 26 can be fixed inside the container body 1 by tightening the screws with the mounting holes. At this time, the first motor 27 and its structure are stored in the separate space formed by the container body 1, the first mounting plate 25 and the second mounting plate 26, achieving orderly storage. Meanwhile, the flat surface formed by bending the first mounting plate 25 and the second mounting plate 26 has a dual practical function: on the one hand, it can be used to place lighter goods, and on the other hand, it can be used as a support surface when the staff needs to take a short rest inside the container body 1. This design further enhances the practicality of the device and makes operation more convenient. The first motor 27 is a mature existing technology, and its working principle and specific structure will not be described in detail here. The output end of the first motor 27 is fixedly connected to a rotating rod 28. The end of the rotating rod 28 away from the first motor 27 is mounted on the second mounting plate 26. A steel wire 29 is installed on the rotating rod 28, and a hook 39 is fixedly connected to the end of the steel wire 29 away from the rotating rod 28. When hoisting goods, the first mounting plate 25 and the second mounting plate 26 are removed from the inner wall of the container body 1. Then, the first mounting plate 25, the second mounting plate 26, and their components are removed and fixed to the container body 1. Then, one end of the steel wire 29 is wrapped around the rotating rod 28. There are two steel wires 29. After hanging both steel wires 29 on the top cover 3 and hooking the bundled long rod-shaped goods with the hook 39, the first motor 27 is started to make the rotating rod 28 rotate. The rotating rod 28 winds up the steel wire 29. As the length of the steel wire 29 gradually shortens, the goods are lifted steadily. After the goods are lifted to a height exceeding the overall height of the container body 1, the goods are moved to the top of the container body 1. Then, the first motor 27 is controlled to reverse so that the rotating rod 28 stops winding and simultaneously releases the steel wire 29. At this time, the goods descend steadily with the slow descent of the steel wire 29 and are stably loaded into the container body 1.
[0049] Furthermore, a first roller shaft 35 is installed on one side of the top cover 3. The first roller shaft 35 is rotatably connected to the top cover 3. The steel wire 29 is hung on the first roller shaft 35. When the steel wire 29 moves with the lifting action of the goods, the first roller shaft 35 forms a movable pulley, which not only reduces the friction between the top cover 3 and the steel wire 29, but also saves the force required when the first motor 27 drives the rotating rod 28 to rewind by utilizing the mechanical characteristics of the movable pulley, thereby improving the labor-saving and efficiency of the lifting operation. The first fixing block 10 has a groove that matches the shape of the steel wire 29. A second roller shaft 36 is installed on the first fixing block 10. A section of the steel wire 29 close to the first fixing block 10 is in close contact with the second roller shaft 36. This allows the steel wire 29 to form rolling friction with the second roller shaft 36 when it moves, which can greatly reduce the resistance compared to sliding friction. At the same time, this matching structure and the first roller shaft 35 together form another set of movable pulleys. The dual design further enhances the flexibility of the steel wire 29 during movement, reducing jamming during hoisting and thus providing support for further ensuring the efficiency of cargo loading. A movable rod 31 is installed on the top of the container body 1, and a first roller 32 is installed on the movable rod 31. The first roller 32 is rotatably connected to the movable rod 31. Movable slots 30 are provided on both the container body 1 and the fixed rod 40. Movable blocks are provided within the movable slots 30, and the movable blocks are fixedly connected to the movable rod 31. A screw sleeve is provided within the movable block, and a screw rod is inserted into the screw sleeve. A second motor 33 is installed at one end of the screw rod, and a mounting bracket 34 is provided at the bottom of the second motor 33. The second motor 33 is a mature existing technology, and its working principle and specific structure will not be elaborated here. The second motor 33 can control the lateral position of the movable rod 31 and the first roller 32 through the screw rod, screw sleeve, and movable block in conjunction with the movable slot 30. After the cargo is hoisted to the top of the container body 1 using the steel wire 29, the cargo and the first roller 32... 2. When the goods are in contact with the first motor 27 and tend to move closer to it, the second motor 33 is started to rotate the screw. The screw drives the screw sleeve and the movable block to move within the movable groove 30, which allows the movable rod 31 to drive the first roller 32 to move slowly. During the movement of the movable rod 31 and the first roller 32, the goods move together, thus adjusting the lateral position of the goods. After the position is adjusted, the steel wire 29 is loosened, allowing the goods to slowly descend into the container body 1. This ensures that the goods are accurately placed in the required position within the container body 1, making the goods more neatly arranged. During the descent of the goods, the steel wire 29 remains in contact with the first roller 32, and the first roller 32 can rotate accordingly when the steel wire 29 moves. The entire cargo loading operation does not require manual approach to the work area, effectively ensuring personnel safety. At the same time, through the coordinated cooperation of various structures, long rod-shaped goods can be quickly and neatly loaded into the container body 1, significantly improving the working efficiency of the device.
[0050] like Figure 1 , Figure 2 , Figure 7 , Figure 8 and Figure 10 As shown, a side railing 20 is rotatably connected to one side of the container body 1. Rollers 21 are installed on both sides of the side railing 20, and the rollers 21 are rotatably connected to the side railing 20. Connecting rods 22 are fixedly connected to both sides of the bottom of the side railing 20. A second roller 38 is installed on the top of the side of the container body 1 near the side railing 20, and the second roller 38 is rotatably connected to the container body 1. A connecting piece 23 is fixedly connected to the connecting rod 22, and the connecting piece 23 has mounting holes with screws inside. A threaded hole matching the shape of the screw is opened near the connecting piece 23 on the container body 1. Storage slots matching the shape of the connecting rod 22 are opened on both sides of the bottom of the container body 1. A movable piece 24 is installed on the bottom of the side of the container body 1 near the connecting rod 22. Figure 2 As shown, the movable piece 24 has limiting blocks on both sides, and the bottom of the container body 1 has a limiting groove that matches the shape of the connecting piece 23. During the retraction operation, the side rail 20 and roller 21 are first attached to one side of the outer wall of the container body 1, and then the connecting rod 22 is passed through the storage opening at the bottom of the container body 1 and retracted to the bottom of the container body 1. At the same time, the movable piece 24 is retracted to the bottom of the connecting rod 22. Then, the connecting piece 23 is attached to the corresponding position of the container body 1 and fixed with screws. This achieves stable retraction of the side rail 20 and roller 21 on one side of the container body 1. This allows the roller 21 and connecting rod 22 to provide enhanced protection for one side of the outer wall of the container body 1. In conjunction with the first support frame 4 and the second support frame 5 in the retracted state, they can provide enhanced protection for the other side of the container body 1. This reduces friction and wear of the device. For example, in multimodal transport such as transfer from truck to container ship or stacked storage, it can isolate direct contact between adjacent containers, avoid wear on the side panel paint, and reduce rust. To prevent corrosion hazards or scratches from sharp goods such as metal parts of other equipment, when loading goods, the connecting piece 23 is separated from the container body 1, the connecting rod 22 is removed from the bottom of the container body 1, the side rails 20 and rollers 21 are unfolded, and the movable piece 24 is moved towards the bottom of the container body 1 to cover the storage opening. At the same time, the rollers 21 are adjusted to be tilted. At this time, the side rails 20, the connecting rod 22 and the container body 1 together form a stable triangular structure. When the steel wire 29 pulls the goods up, the goods can move along the inclined plane formed by the side rails 20 and rollers 21. During the movement, the rollers 21 will rotate on the side rails 20, causing rolling friction between the goods and the rollers 21. The combined use of the above structures can prevent the goods from hitting the side wall of the container body 1 during the upward movement and cause wear. It also ensures the stability of the goods during the upward movement. The rolling friction reduces the resistance of the goods rising and reduces the tension of the steel wire 29 on the goods to a certain extent, further improving the loading efficiency of the goods.
[0051] Furthermore, the side walls and top cover 3 of the container body 1 are equipped with reinforcing frames to ensure that the container body 1 and top cover 3 have stable support. Optionally, in actual use, additional reinforcing frames can be added to support the side walls and top cover 3 of the container body 1, thereby improving the stability of the cargo loading device. During hoisting, it is necessary to assess whether the cargo exceeds the load-bearing capacity of the device before proceeding with the hoisting operation. The aforementioned reinforcing frames and their installation structures are existing mature technologies, so their specific structures and arrangements will not be elaborated on here.
[0052] The working principle of the technical solution provided by this invention is as follows:
[0053] In use, first attach the side railing 20 and roller 21 to one side of the outer wall, then pass the connecting rod 22 through the storage opening at the bottom and retract it to the bottom. At the same time, retract the movable piece 24 to the bottom of the connecting rod 22. Finally, attach the connecting piece 23 to the corresponding position and fix it with screws, so that the side railing 20 and roller 21 are stably retracted to one side, forming enhanced protection for that side of the outer wall. The other side is protected by the closing and fixing of the first support frame 4 and the second support frame 5. In the closed state, first adjust the position of the first support frame 4 and the second support frame 5 so that the sleeves 6 on them are aligned with the first mounting block 7, and then tighten the first mounting screw 8. After passing through the sleeve 6 and fixing it to the first mounting block 7, the first support frame 4 and the second support frame 5 are initially positioned on the main frame and the top cover 3. Then, the two connecting ropes 12 are passed through the holes on the two first fixing blocks 10 and tied tightly, so that the side of the first support frame 4 close to the second support frame 5 and the side of the second support frame 5 close to the first support frame 4 are fixedly connected together, so that the first support frame 4 and the second support frame 5 remain stable, thereby forming protection on the other side and preventing the device from being worn or corroded by the side panel paint or scratched by sharp goods due to direct contact between adjacent containers during multimodal transport.
[0054] When loading bundles of long, rod-shaped goods, the components must first be unfolded and tested to prepare for the hoisting operation. First, untie and remove the connecting rope 12, adjust the installation positions of the first support frame 4 and the second support frame 5 so that the sleeves 6 on them are aligned with the second mounting block 9, and bring the two first fixing blocks 10 closer together. At this time, the locking block 13 will be locked in the locking groove 14, enhancing the stability of the connection between the two first fixing blocks 10, and at the same time, align and fit the second fixing block 16 with the rotating shaft body 15. Next, rotate the second mounting screw 18 to install and fix it in the mounting groove 19, so that the sides of the first support frame 4 and the second support frame 5 that are close to each other are rotated and connected. Then, unfold the top cover 3 to be flush with the side wall of the main frame. At this time, the two inclined surfaces of the first support frame 4 and the second support frame 5 that are close to each other will abut against each other, and the two inclined surfaces that are far apart from each other will abut against the top cover 3 and the main frame respectively. Then, install and fix the third mounting screw 37 in the first fixing block 10, so that the two first fixing blocks 10 are completely fixed. Finally, the main frame, the first support frame 4, the second support frame 5 and the top cover 3 form a stable triangular structure, providing solid support for subsequent hoisting. At the same time, the protective guide structure on one side also needs to be unfolded: separate the connecting piece 23 from the main frame, take out the connecting rod 22 at the bottom, unfold the side railing 20 and roller 21, move the movable piece 24 to the bottom to cover the storage opening, and adjust the side railing 20 and roller 21 to be tilted so that the side railing 20, connecting rod 22 and the main frame form a stable triangular structure. This structure can guide the goods to move along the slope and avoid the goods from colliding with the side wall of the main frame and causing wear when moving upwards.
[0055] During the cargo hoisting stage, the smooth lifting and positioning of the cargo is achieved through the coordination of the power components and auxiliary structures. First, the first mounting plate 25 and the second mounting plate 26 are removed from the container body 1 and installed on the outside of the container body 1. One end of each of the two steel wires 29 is fixed to both ends of the rotating rod 28. Then, the two steel wires 29 are hung on the first roller shaft 35 on the top cover 3, and the section of the steel wire 29 that is close to the first fixing block 10 is pressed against the second roller shaft 36. The first roller shaft 35 is rotatably connected to the top cover 3. When the steel wires 29 move with the cargo, they form a movable pulley, which can reduce the friction between the top cover 3 and the steel wires 29 and save the driving force of the first motor 27. The close fit between the steel wires 29 and the second roller shaft 36 can form rolling friction, which greatly reduces resistance compared to sliding friction. Together, they form another set of movable pulleys, further improving the flexibility of the steel wires 29 and reducing hoisting jams. Then, the first motor 27 is started to rotate the rotating rod 28, which winds up the steel wire 29. As the length of the steel wire 29 shortens, the goods are lifted smoothly. When the height of the goods exceeds the overall height of the main frame and moves to the top of the main frame, the goods come into contact with the first roller 32 and tend to move closer to the first motor 27 due to their own characteristics. At this time, the second motor 33 is started to rotate the screw. The screw drives the screw sleeve and the movable block to move in the movable groove 30, which in turn allows the movable rod 31 to drive the first roller 32 to move slowly. The goods move together with the first roller 32, realizing lateral position adjustment. After the position adjustment is completed, the first motor 27 is controlled to reverse, so that the rotating rod 28 stops winding and simultaneously releases the steel wire 29. The goods are slowly lowered with the steel wire 29. During this period, the steel wire 29 is always in contact with the first roller 32, and the first roller 32 can move and rotate with the steel wire 29. Finally, the goods are stably loaded into the main frame. The entire loading process does not require manual access to the work area, ensuring personnel safety. Through the coordinated operation of various structures, long rod-shaped goods can be loaded quickly and neatly, significantly improving work efficiency. After the goods are loaded, the steel wire 29 is completely wrapped around the rotating rod 28. Then, the first mounting plate 25 and the second mounting plate 26 are removed from the outside of the container body 1. The first mounting plate 25 and the second mounting plate 26, along with their respective components, are then installed into the container body 1 and stably placed on top of the goods. They can be removed and used after the goods are transported to the destination. This method also facilitates the unloading of bundled long rod-shaped goods.
[0056] This invention encompasses any substitutions, modifications, equivalent methods, and solutions made within the spirit and scope of this invention. To provide the public with a thorough understanding of this invention, specific details are described in detail in the following preferred embodiments; however, those skilled in the art will fully understand the invention even without these details. Furthermore, to avoid unnecessary misunderstanding of the essence of this invention, well-known methods, processes, procedures, components, and circuits are not described in detail.
[0057] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. An integrated container for modular storage, comprising a container body, characterized in that, A door is installed on one side of the container body, a top cover is installed on the top of the container body, a first support frame is installed on the top of the top cover, a second support frame is installed on one side of the container body, and a fixing rod is fixedly connected to the top of the container body. An unfolding and fixing mechanism is used to fix the unfolded top cover to the top of the container body, and the unfolding and fixing mechanism is connected to the container body; An auxiliary loading mechanism is used to assist manual loading of goods into the interior of the container body, and the auxiliary loading mechanism is connected to the container body; The deployment and fixing mechanism includes a first mounting block and a second mounting block installed on the container body and top cover. A sleeve is fixedly connected to both the side of the first support frame away from the second support frame and the side of the second support frame away from the first support frame. A first fixing block is fixedly connected to both the side of the first support frame and the side of the second support frame away from the sleeve. The sleeve is detachably connected to the first mounting block and the second mounting block. A second fixing block is fixedly connected to the side of the first support frame close to the second support frame. A rotating shaft body is fixedly connected to the end of the second support frame close to the first support frame. The second fixing block and the rotating shaft body are rotatably connected. A connecting rope is installed on the first fixing block. The auxiliary loading mechanism includes a first mounting plate installed on the container body, a second mounting plate rotatably connected to one side of the first mounting plate, a first motor mounted on the second mounting plate, a rotating rod fixedly connected to the output end of the first motor, the end of the rotating rod away from the first motor mounted on the second mounting plate, a steel wire mounted on the rotating rod, and a hook fixedly connected to the end of the steel wire away from the rotating rod.
2. The modular storage integrated container according to claim 1, characterized in that, A first mounting screw is installed inside the sleeve. A through groove adapted to the shape of the first mounting screw is formed on the sleeve. A mounting hole body is formed on the first fixing block. A rotating groove is formed on the rotating shaft body. A second mounting screw is inserted into the rotating groove. A mounting slot adapted to the shape of the second mounting screw is formed on the second fixing block. A third mounting screw is installed on the first fixing block. A locking block is fixedly connected to the side of the first support frame near the second support frame. A locking groove adapted to the shape of the locking block is formed on the side of the second support frame near the first support frame. The cross-section of the locking block and the locking groove are both square. Both sides of the first support frame and the second support frame are inclined.
3. The modular storage integrated container according to claim 1, characterized in that, A first roller is installed on one side of the top cover, a groove adapted to the shape of the steel wire is opened on the first fixing block, and a second roller is installed on the first fixing block.
4. The modular storage integrated container according to claim 1, characterized in that, A movable rod is installed on the top of the container body, and a first roller is installed on the movable rod.
5. The modular storage integrated container according to claim 4, characterized in that, Both the container body and the fixed rod are provided with movable slots. Movable blocks are provided in the movable slots. The movable blocks are fixedly connected to the movable rods. Screw sleeves are provided in the movable blocks. Screw rods are inserted into the screw sleeves. A second motor is installed at one end of the screw rod. A mounting bracket is provided at the bottom of the second motor.
6. The modular storage integrated container according to claim 1, characterized in that, A side railing is rotatably connected to one side of the container body. Rollers are installed on both sides of the side railing. Connecting rods are fixedly connected to both sides of the bottom of the side railing. A second roller is installed on the top of the side of the container body near the side railing.
7. The modular storage integrated container according to claim 6, characterized in that, A connecting piece is fixedly connected to the connecting rod. The connecting piece has an installation hole and a screw is installed in the installation hole. The container body has a threaded hole that matches the shape of the screw near the connecting piece. The bottom of the container body has storage slots that match the shape of the connecting rod on both sides. A movable piece is installed on the bottom side of the container body near the connecting rod.
Citation Information
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Highly integrated intelligent container
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Container group convenient to expand
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