A container with an internal anti-collision buffer structure
By installing interception structures and buffer devices inside the container, the problems of squeezing and collision caused by unsecured cargo during container loading and unloading operations are solved, achieving effective isolation and shock absorption of the cargo.
Patent Information
- Application Number
- CN202511211262.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-28
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2045-08-28
AI Technical Summary
During loading and unloading operations, existing containers suffer from problems such as cargo being squeezed or even violently collided when the container shakes due to the unreliable internal cargo securing structure.
An interception structure is installed inside the container, including components such as interception tubes, hook sleeves, storage tubes, and limiting rubber wheels. The cargo is isolated and covered with protective cloth through threaded connections and limiting devices. Multiple interception tubes are used to fix the cargo around its perimeter. Combined with storage cabinets and cushioning pads, a buffer structure is formed to reduce cargo shaking and collision.
It effectively avoids squeezing and collision of goods during the hanging process, improves the protection effect, reduces the shaking of goods in an independent space, enhances the stability of goods, and provides cushioning and shock absorption functions.
Smart Images

Figure CN120717078B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of container technology, and more specifically to a container with an internal anti-collision buffer structure. Background Technology
[0002] A shipping container is a prefabricated container tool that can carry packaged or unpackaged goods for transportation and can be loaded and unloaded by mechanical equipment. Containers have certain strength, rigidity and specifications and are designed for turnover. When using containers to transport goods, goods can be loaded directly in the shipper's warehouse and unloaded in the consignee's warehouse. When changing vehicles or ships en route, there is no need to take the goods out of the container for repackaging.
[0003] Currently, containers are generally loaded and unloaded at the terminal using quay cranes. However, during quay crane container loading and unloading operations, containers often collide with other containers or stacks due to insufficient height, or sway in mid-air due to excessive transfer range. The current internal cargo fixing structure of containers is not reliable, which can lead to internal cargo being squeezed together or even violently colliding in the above situations. Therefore, a container with an internal anti-collision buffer structure is proposed. Summary of the Invention
[0004] The purpose of this invention is to solve the problem that in current container loading and unloading operations, the internal cargo is not securely fixed, which causes the cargo to be squeezed against each other or even collide violently when the container shakes. This invention provides a container with an internal anti-collision buffer structure.
[0005] To achieve the above objectives, the present invention specifically adopts the following technical solution:
[0006] A container with an internal anti-collision buffer structure includes an outer box. A lower pad and an upper pad are fixedly installed at the bottom and top of the outer box, respectively. The top of the lower pad has multiple evenly distributed threaded mounting slots. The bottom of the upper pad has multiple threaded mounting rings located corresponding to the threaded mounting slots. The interior of the outer box is provided with multiple vertically placed interception structures for isolating and protecting the goods stored inside the outer box.
[0007] Furthermore, the interception structure includes an interception tube disposed inside the outer casing. An actuating post is disposed inside the interception tube. An arc-shaped hole is formed on the side wall of the interception tube, the position of which corresponds to the position of the actuating post. A transmission rod is fixedly installed at both ends of the actuating post, and the transmission rods are rotatably installed inside the interception tube. A flower-shaped sliding rod is fixedly installed at the ends of the two transmission rods that are far apart from each other. Threaded cylinders are fixedly installed inside both ends of the interception tube. An assembly threaded rod adapted to the lower threaded assembly groove and the upper threaded assembly ring is screwed into the interior of each threaded cylinder. One end of each assembly threaded rod has a flower-shaped sliding groove adapted to the flower-shaped sliding rod. One end of each of the two flower-shaped sliding rods passes through the two threaded cylinders and is slidably installed inside the two flower-shaped sliding grooves.
[0008] Furthermore, each interceptor tube is fixedly fitted with two hanging sleeves, and each hanging sleeve is rotatably fitted with a hanging bracket. One end of each of the two hanging brackets is fixedly installed with the same storage tube. Both ends of the storage tube are fixedly installed with spring coils. A winding shaft is rotatably installed inside the storage tube. Both ends of the winding shaft extend into the interior of the two spring coils, respectively. A protective cloth is wound around the winding shaft. One end of the protective cloth extends to the outside of the storage tube and is fixedly installed with multiple hanging claws. Each hanging claw is adapted to the interceptor tube.
[0009] Furthermore, the protective fabric includes an outer fabric, and an intercepting net is fixedly installed inside the outer fabric. One end of each of the plurality of hooks extends into the interior of the outer fabric and is fixedly connected to the intercepting net.
[0010] Furthermore, each of the intercepting tubes is slidably fitted with multiple hanging cylinders. Two telescopic rods are fixedly installed on the sidewalls of each hanging cylinder. A wheel frame is fixedly installed at the telescopic end of each telescopic rod. One end of each wheel frame is rotatably fitted with the same limiting rubber wheel. A first limiting screw tube is fixedly installed on the sidewall of the fixed end of each telescopic rod. The first limiting screw tube communicates with the interior of the fixed end of the telescopic rod. A first hand-tightening bolt is screwed into the interior of each first limiting screw tube. A second limiting screw tube is fixedly installed on the sidewall of each hanging cylinder. The second limiting screw tube communicates with the interior of the hanging cylinder. A second hand-tightening bolt is screwed into the interior of the second limiting screw tube.
[0011] Furthermore, protective rubber pads are fixedly installed on the sides of the two wheel frames that are far apart from each other.
[0012] Furthermore, a square positioning sleeve is fixedly sleeved at the bottom end of each intercepting tube, and a plurality of square positioning grooves adapted to the square positioning sleeve are opened on the top of the lower pad. A plurality of lower threaded assembly grooves are respectively opened inside the plurality of square positioning grooves. A positioning rod is fixedly installed inside each of the square positioning grooves, and a positioning insertion hole adapted to the positioning rod is opened at the bottom of the square positioning sleeve.
[0013] Furthermore, each of the square positioning slots contains a square sealing plate, the bottom of which has a clearance groove adapted to the positioning rod, and the bottom of each square sealing plate is fixedly installed with a first magnetic insertion rod adapted to the lower thread assembly slot. The bottom of each upper thread assembly ring has a circular sealing disc, and the top of each circular sealing disc is fixedly installed with a second magnetic insertion rod adapted to the upper thread assembly ring.
[0014] Furthermore, multiple evenly distributed storage cabinets are fixedly installed on the inner walls of both sides of the outer casing. The storage cabinets are used to store the interception structure. A cabinet door is rotatably installed on one side of the storage cabinet. A buffer pad is fixedly installed on the side of the cabinet door away from the storage cabinet. A trapezoidal compression pad is fixedly installed on the side of the storage cabinet away from the cabinet door.
[0015] The beneficial effects of this invention are as follows:
[0016] 1. By setting up an interception structure, after the goods are transported to the outer box and stacked, multiple interception tubes can be fixed between the lower and upper pads according to the position and shape of the stacked goods. After repeating the operation, multiple interception tubes can be used to intercept the goods around each side, separating the goods, greatly reducing the range of movement of the goods, and effectively avoiding the squeezing and collision caused by the goods moving back and forth during the hanging of the outer box.
[0017] 2. By setting up a storage tube, after assembling the corresponding number of intercepting tubes, pulling one side of the hook attaches to the adjacent intercepting tubes, so that the protective cloth covers the gaps between the adjacent intercepting tubes, wrapping and intercepting the goods, further separating the goods, and stacking the goods in independent spaces of various shapes and sizes, preventing small goods from being squeezed out of the gaps between the intercepting tubes, thus improving the protective effect.
[0018] 3. This invention uses limiting rubber wheels to adjust the position of the hanging slide cylinder by sliding it up and down. By rotating the hanging slide cylinder and adjusting the extension length of the telescopic rod, the limiting rubber wheels are pressed against one side of the goods. Then, the first hand-tightening bolt is tightened to lock the telescopic rod, and the second hand-tightening bolt is tightened to lock the position of the hanging slide cylinder. In this way, multiple limiting rubber wheels are used to further limit the goods and reduce the shaking of the goods in the independent space.
[0019] 4. This invention, by setting up a storage cabinet, allows the interior of the cabinet to be used to store components such as interceptor pipes. After the goods are stacked, the cabinet door can be opened to take out the corresponding number of interceptor structures for assembly. When the storage cabinet is closed, it can form a hollow shock-absorbing structure through the front buffer pad and the back trapezoidal compression pad. The trapezoidal compression pad, which is compatible with the outer corrugated shell, can distribute the impact received by the storage cabinet to the outer shell, thus achieving a buffering effect. Attached Figure Description
[0020] Figure 1 This is a first-view three-dimensional structural diagram of the present invention;
[0021] Figure 2 This is the present invention. Figure 1 Schematic diagram of the structure at point A in the middle;
[0022] Figure 3 This is a two-dimensional structural diagram of the present invention from a second perspective;
[0023] Figure 4 This is the present invention. Figure 2 Schematic diagram of the structure at point B;
[0024] Figure 5 This is a schematic diagram of the three-dimensional structure of the assembly of multiple interception structures of the present invention;
[0025] Figure 6 This is a three-dimensional structural diagram of a single interception structure of the present invention;
[0026] Figure 7 This is a schematic diagram of the internal three-dimensional structure of the interceptor tube of the present invention;
[0027] Figure 8 This is a schematic diagram of the three-dimensional structure of the storage tube of the present invention;
[0028] Figure 9 This is a schematic diagram of the internal three-dimensional structure of the protective fabric of the present invention;
[0029] Figure 10 This is a three-dimensional structural diagram of the coupling between the sliding cylinder and the limiting rubber wheel of the present invention;
[0030] Figure 11 This is a schematic diagram of the three-dimensional structure of the square sealing plate of the present invention;
[0031] Figure 12 This is a three-dimensional structural diagram of the circular sealing disc of the present invention;
[0032] Figure 13 This is a schematic diagram of the three-dimensional structure of the storage cabinet of the present invention;
[0033] Attached reference numerals: 1. Outer casing; 2. Lower pad; 201. Lower threaded assembly groove; 202. Square positioning groove; 3. Upper pad; 4. Upper threaded assembly ring; 5. Interception tube; 501. Arc-shaped hole; 6. Actuating post; 7. Transmission rod; 8. Floral slide rod; 9. Threaded cylinder; 10. Assembly threaded rod; 11. Hanging sleeve; 12. Hanging bracket; 13. Storage tube; 14. Spring cylinder; 15. Protective cloth; 1501. Outer cloth; 1502. Interception net; 16. Hanging claw; 17. Hanging slide cylinder; 18. 19. Telescopic rod; 20. First limiting screw tube; 21. First hand-tightening bolt; 22. Wheel frame; 23. Limiting rubber wheel; 24. Second limiting screw tube; 25. Second hand-tightening bolt; 26. Protective rubber pad; 27. Positioning rod; 28. Square sealing plate; 29. Leaving groove; 30. First magnetic insertion rod; 31. Circular sealing disc; 32. Second magnetic insertion rod; 33. Storage cabinet; 34. Cabinet door; 35. Buffer pad; 36. Trapezoidal compression pad; 37. Square positioning sleeve plate; 38. Positioning insertion hole. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0035] Therefore, the following detailed description of the embodiments of the invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the invention without inventive effort are within the scope of protection of the invention.
[0036] It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures. Furthermore, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0037] In the description of the embodiments of the present invention, it should be noted that the terms "inner", "outer", "upper", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the product of the invention is usually placed when in use. They are only for the convenience of describing the present invention 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. Therefore, they should not be construed as limiting the present invention.
[0038] like Figures 1 to 13 As shown, a container with an internal anti-collision buffer structure includes an outer casing 1, such as... Figure 2 , Figure 13 As shown, specifically, multiple evenly distributed storage cabinets 31 are fixedly installed on the inner walls of both sides of the outer box 1. The storage cabinets 31 are used to store the interception structure. A cabinet door 32 is rotatably installed on one side of the storage cabinet 31. A buffer pad 33 is fixedly installed on the side of the cabinet door 32 away from the storage cabinet 31. A trapezoidal compression pad 34 is fixedly installed on the side of the storage cabinet 31 away from the cabinet door 32.
[0039] More specifically, by setting up a storage cabinet 31, the interior of the storage cabinet 31 can be used to store components such as the interceptor tube 5. After the goods are stacked, the cabinet door 32 can be opened to take out the corresponding number of interceptor structures for assembly. When the storage cabinet 31 is closed, it can form a hollow shock-absorbing structure through the front buffer pad 33 and the back trapezoidal compression pad 34. The trapezoidal compression pad 34, which is compatible with the corrugated outer shell of the outer box 1, can distribute the impact received by the storage cabinet 31 to the outer shell of the outer box 1, thus achieving a buffering effect.
[0040] like Figure 1 , Figure 3 As shown, a lower pad 2 and an upper pad 3 are fixedly installed at the bottom and top of the outer casing 1, respectively. Figure 2 , Figure 4 As shown, the top of the lower pad 2 is provided with multiple evenly distributed lower thread assembly grooves 201, and the bottom of the upper pad 3 is fixedly installed with multiple upper thread assembly rings 4 located corresponding to the lower thread assembly grooves 201.
[0041] The outer box 1 has multiple vertically placed interception structures inside. These structures are used to isolate and protect the goods stored inside the outer box 1, such as... Figure 1 , Figure 5 As shown, specifically, the interception structure includes an interception pipe 5 disposed inside the outer casing 1, such as... Figure 7 As shown, the intercepting tube 5 is equipped with a toggle post 6 inside. An arc-shaped hole 501 is opened on the side wall of the intercepting tube 5. The position of the arc-shaped hole 501 corresponds to the position of the toggle post 6. A transmission rod 7 is fixedly installed at both ends of the toggle post 6. The transmission rod 7 is rotatably installed inside the intercepting tube 5. A flower-shaped slide rod 8 is fixedly installed at the ends of the two transmission rods 7 that are far apart from each other. A threaded cylinder 9 is fixedly installed inside both ends of the intercepting tube 5. An assembly threaded rod 10 that is adapted to the lower threaded assembly groove 201 and the upper threaded assembly ring 4 is screwed into the inside of the threaded cylinder 9. A flower-shaped slide groove adapted to the flower-shaped slide rod 8 is opened at one end of the assembly threaded rod 10. One end of the two flower-shaped slide rods 8 passes through the two threaded cylinders 9 and is slidably installed inside the two flower-shaped slide grooves.
[0042] More specifically, when using the container with the internal anti-collision buffer structure, the goods are first moved to the outer box 1 for stacking. Then, according to the position and shape of the stacked goods, the corresponding number of intercepting tubes 5 are selected. The two ends of the first intercepting tube 5 are aligned with the lower threaded assembly groove 201 and the upper threaded assembly ring 4, respectively. The arc-shaped hole 501 is turned, and the flower-shaped slide bar 8 is rotated through the two transmission rods 7, which in turn drives the assembly threaded rod 10 to rotate. Under the threaded guidance of the threaded cylinder 9, the assembly threaded rod 10 is spirally moved outward, so that the two assembly threaded rods 10 are screwed into the lower threaded assembly groove 201 and the upper threaded assembly ring 4, respectively. The intercepting tubes 5 are fixed between the lower pad plate 2 and the upper pad plate 3. After repeating the operation, multiple intercepting tubes 5 can be used to intercept the goods around each side, separating the goods and greatly reducing the range of movement of the goods. This effectively avoids the squeezing and collision of the goods during the hoisting of the outer box 1.
[0043] like Figure 2 , Figure 7 As shown, the bottom end of the interceptor tube 5 is fixedly fitted with a square positioning sleeve 35. Specifically, the top of the lower pad 2 is provided with a plurality of square positioning grooves 202 that are adapted to the square positioning sleeve 35. A plurality of threaded assembly grooves 201 are respectively opened inside the plurality of square positioning grooves 202. A positioning rod 26 is fixedly installed inside the square positioning grooves 202. The bottom of the square positioning sleeve 35 is provided with a positioning insertion hole 3501 that is adapted to the positioning rod 26.
[0044] More specifically, by setting a square positioning sleeve 35, when assembling the interceptor tube 5, the positioning hole 3501 can be aligned with the positioning rod 26, and the square positioning sleeve 35 can be inserted into the square positioning groove 202. The positioning rod 26 and the positioning hole 3501 limit the initial position of the square positioning sleeve 35, thereby ensuring that the threaded rods 10 at both ends are consistent with the thread direction of the lower threaded assembly groove 201 and the upper threaded assembly ring 4, so that the threaded rods 10 can be smoothly screwed into the lower threaded assembly groove 201 and the upper threaded assembly ring 4. At the same time, the square positioning sleeve 35 is in the square positioning groove 202, which makes it convenient for the assembly personnel to step on the square positioning sleeve 35 with their feet and then turn the turning column 6 with one hand to complete the assembly of the interceptor tube 5, simplifying the assembly steps.
[0045] In this embodiment, the height of the intercepting tube 5 is slightly less than the distance between the upper threaded assembly ring 4 and the lower pad 2, and the depth of the lower threaded assembly groove 201 is greater than the length of the upper threaded assembly ring 4, so that the intercepting tube 5 can be smoothly inserted between the square positioning groove 202 and the upper threaded assembly ring 4.
[0046] like Figure 2 , Figure 11As shown, specifically, each of the multiple square positioning slots 202 contains a square sealing plate 27. The bottom of each square sealing plate 27 has a clearance groove 2701 that matches the positioning rod 26. The bottom of each square sealing plate 27 is fixedly fitted with a first magnetic insertion rod 28 that matches the lower threaded assembly slot 201. Figure 4 , Figure 12 As shown, a circular sealing disc 29 is placed at the bottom of each upper threaded assembly ring 4, and a second magnetic insertion rod 30 that is compatible with the upper threaded assembly ring 4 is fixedly installed on the top of each circular sealing disc 29.
[0047] More specifically, by setting up a square sealing plate 27 and a circular sealing disc 29, the first magnetic insertion rod 28 and the second magnetic insertion rod 30 are respectively inserted into the lower threaded assembly groove 201 and the upper threaded assembly ring 4, which are not equipped with the intercepting tube 5. They are magnetically fixed by the square sealing plate 27 and the circular sealing disc 29, so that the square sealing plate 27 and the circular sealing disc 29 play a sealing role and prevent corrosion from occurring inside the idle lower threaded assembly groove 201 and the upper threaded assembly ring 4.
[0048] like Figure 6 , Figure 7 , Figure 8 As shown, each interceptor tube 5 is fixedly fitted with two hanging sleeves 11. Specifically, each hanging sleeve 11 is rotatably fitted with a hanging bracket 12. One end of each hanging bracket 12 is fixedly installed with the same storage tube 13. Both ends of the storage tube 13 are fixedly installed with spring coils 14. A winding shaft is rotatably installed inside the storage tube 13. Both ends of the winding shaft extend into the interior of the two spring coils 14. A protective cloth 15 is wound around the winding shaft. One end of the protective cloth 15 extends to the outside of the storage tube 13 and is fixedly installed with multiple hanging claws 16. The hanging claws 16 are all adapted to the interceptor tube 5.
[0049] In this embodiment, a reset spring is fixedly installed inside each spring cylinder 14, and one end of the winding shaft extending into the spring cylinder 14 is connected to the reset spring. The winding shaft is elastically connected to the spring cylinder 14 through the reset spring. The hook 16 can be a common annular hook, or it can be a spring clip, bolt clip, or other fastener.
[0050] More specifically, by setting up a storage cylinder 13, after assembling the corresponding number of intercepting tubes 5, the hook 16 on one side can be pulled to pull the protective cloth 15 out of the storage cylinder 13. Then, each hook 16 is sequentially hooked onto the adjacent intercepting tubes 5, so that the protective cloth 15 covers the gaps between the adjacent intercepting tubes 5, covering and intercepting the goods, further separating the goods, and stacking the goods in independent spaces of various shapes and sizes that can be adjusted, preventing smaller goods from being squeezed out of the gaps between the intercepting tubes 5, thus improving the protective effect.
[0051] like Figure 9 As shown, specifically, the protective cloth 15 includes an outer cloth 1501, and an intercepting net 1502 is fixedly installed inside the outer cloth 1501. One end of each of the multiple hooks 16 extends into the interior of the outer cloth 1501 and is fixedly connected to the intercepting net 1502.
[0052] More specifically, the setting of the interception net 1502 can improve the overall structural strength of the protective cloth 15 and ensure the effectiveness of the interception. The outer cloth 1501 can cover both sides of the interception net 1502, separating the interception net 1502 from the goods, reducing the pressure when the interception net 1502 comes into contact with the goods, and preventing the interception net 1502 from scratching the surface of the outer packaging of the goods.
[0053] like Figure 6 , Figure 10 As shown, multiple hanging cylinders 17 are slidably sleeved on the interceptor pipe 5. Specifically, two telescopic rods 18 are fixedly installed on the side wall of each hanging cylinder 17. A wheel frame 21 is fixedly installed on the telescopic end of each telescopic rod 18. The same limiting rubber wheel 22 is rotatably installed on one end of each wheel frame 21. A first limiting screw tube 19 is fixedly installed on the side wall of the fixed end of each telescopic rod 18. The first limiting screw tube 19 is connected to the inside of the fixed end of the telescopic rod 18. A first hand-tightening bolt 20 is screwed into the inside of each first limiting screw tube 19. A second limiting screw tube 23 is fixedly installed on the side wall of each hanging cylinder 17. The second limiting screw tube 23 is connected to the inside of the hanging cylinder 17. A second hand-tightening bolt 24 is screwed into the inside of the second limiting screw tube 23.
[0054] In this embodiment, the telescopic rod 18 is divided into a hollow fixed end and a solid telescopic end. The fixed end is fixedly connected to the hanging slide cylinder 17, and the telescopic end is slidably installed inside the fixed end. The first limiting screw tube 19 is installed on the fixed end and communicates with the inside of the fixed end. One end of the first hand-tightening bolt 20 can pass through the first limiting screw tube 19 and extend to the inside of the fixed end to contact the telescopic end, thereby locking the telescopic end. In addition to adopting an integral structure to directly fit onto the intercepting pipe 5, the hanging frame 12 and the hanging slide cylinder 17 can also adopt a separate assembly structure, so that the hanging frame 12 and the hanging slide cylinder 17 can be assembled from separate parts into a complete component by means of bolts or other connection methods, which facilitates the disassembly and replacement of the hanging frame 12 and the hanging slide cylinder 17.
[0055] More specifically, by setting the limiting rubber wheel 22, the position of the hanging slide cylinder 17 can be adjusted up and down before the protective cloth 15 is opened. The hanging slide cylinder 17 is rotated and the extension length of the telescopic rod 18 is adjusted so that the limiting rubber wheel 22 presses against one side of the goods. Then, the first hand-tightening bolt 20 is tightened to lock the telescopic rod 18. Then, the second hand-tightening bolt 24 is tightened so that one end of the second hand-tightening bolt 24 presses against the intercepting pipe 5, thereby locking the position of the hanging slide cylinder 17. In this way, multiple limiting rubber wheels 22 are used to further limit the goods and reduce the shaking of the goods in the independent space.
[0056] like Figure 10 As shown, specifically, protective rubber pads 25 are fixedly installed on the sides of the two wheel frames 21 that are far apart from each other.
[0057] More specifically, by setting up the protective rubber pad 25, the hooking slide 17 can also be moved above the goods, so that the bottom protective rubber pad 25 contacts and presses against the upper surface of the goods. Then, the telescopic rod 18 and the hooking slide 17 are locked in sequence, so that the protective rubber pad 25 is positioned at the top of the goods to limit the movement of the goods.
[0058] In summary: When using this container with an internal anti-collision buffer structure, first, the goods are moved to the outer box 1 for stacking. Then, according to the position and shape of the stacked goods, select the corresponding number of intercepting tubes 5. Align the two ends of the first intercepting tube 5 with the lower threaded assembly groove 201 and the upper threaded assembly ring 4 respectively. Move the arc-shaped hole 501, and the two transmission rods 7 drive the flower-shaped slide rod 8 to rotate, which in turn drives the assembly thread rod 10 to rotate. Under the threaded guidance of the threaded cylinder 9, the assembly thread rod 10 moves outward spirally, so that the two assembly thread rods 10 are screwed into the lower threaded assembly groove 201 and the upper threaded assembly ring 4 respectively, fixing the intercepting tubes 5 between the lower pad 2 and the upper pad 3. Repeat the operation to use multiple intercepting tubes 5 to intercept goods. By separating the goods around each side, the movable range of the goods is significantly reduced, effectively preventing the goods from being squeezed and collided during the hanging of the outer box 1. By setting up the storage cylinder 13, after assembling the corresponding number of intercepting tubes 5, the hook 16 on one side can be pulled to pull the protective cloth 15 out of the storage cylinder 13. Then, each hook 16 is sequentially hooked onto the adjacent intercepting tubes 5, so that the protective cloth 15 covers the gaps between the adjacent intercepting tubes 5, covering and intercepting the goods, further separating the goods, and stacking them in independent spaces of various shapes and sizes that can be adjusted, preventing smaller goods from being squeezed out of the gaps between the intercepting tubes 5, thus improving the protective effect. The setting of the intercepting net 1502 can improve... The overall structural strength of the protective cloth 15 ensures the effectiveness of the interception. The outer cloth 1501 can cover both sides of the interception net 1502, separating the interception net 1502 from the goods, reducing the pressure when the interception net 1502 comes into contact with the goods, and preventing the interception net 1502 from scratching the surface of the goods' outer packaging. By setting the limiting rubber wheel 22, the position of the hanging slide cylinder 17 can be adjusted up and down before the protective cloth 15 is opened. The hanging slide cylinder 17 is rotated, and the extension length of the telescopic rod 18 is adjusted so that the limiting rubber wheel 22 presses against one side of the goods. Then, the first hand-tightened bolt 20 is tightened to lock the telescopic rod 18, and then the second hand-tightened bolt 24 is tightened so that one end of the second hand-tightened bolt 24 presses against the interception tube 5, thereby adjusting the position of the hanging slide cylinder 17. The system is locked, thereby using multiple limiting rubber wheels 22 to further limit the goods and reduce their swaying in the independent space. By setting protective rubber pads 25, the hanging slide cylinder 17 can also be moved above the goods, so that the bottom protective rubber pads 25 contact and press against the upper surface of the goods. Then, the telescopic rod 18 and the hanging slide cylinder 17 are locked in sequence, so that the protective rubber pads 25 are positioned at the top of the goods to limit them and prevent the goods from moving up and down. By setting a square positioning sleeve 35, when assembling the intercepting tube 5, the positioning hole 3501 can be aligned with the positioning rod 26, and the square positioning sleeve 35 can be inserted into the square positioning groove 202. The positioning rod 26 and the positioning hole 3501 limit the initial position of the square positioning sleeve 35.This ensures that the threaded rods 10 at both ends are aligned with the thread direction of the lower threaded assembly groove 201 and the upper threaded assembly ring 4, allowing the threaded rods 10 to be smoothly screwed into the lower threaded assembly groove 201 and the upper threaded assembly ring 4. Simultaneously, the square positioning sleeve 35 is positioned within the square positioning groove 202, allowing the assembler to easily complete the assembly of the interceptor tube 5 by stepping on the square positioning sleeve 35 and then turning the actuating column 6 with one hand. This simplifies the assembly process. By setting up the square sealing plate 27 and the circular sealing disc 29, the first magnetic insertion rod 28 and the second magnetic insertion rod 30 are respectively inserted into the lower threaded assembly groove 201 and the upper threaded assembly ring 4, where the interceptor tube 5 is not installed, and are then connected through the square sealing plate 27. The square sealing plate 27 and the circular sealing disc 29 are magnetically fixed, so that the square sealing plate 27 and the circular sealing disc 29 play a sealing role, preventing corrosion of the unused lower threaded assembly groove 201 and the interior of the upper threaded assembly ring 4. By setting up the storage cabinet 31, the interior of the storage cabinet 31 can be used to store components such as the intercepting pipe 5. After the goods are stacked, the cabinet door 32 can be opened to take out the corresponding number of intercepting structures for assembly. In the closed state, the storage cabinet 31 can form a hollow shock-absorbing structure through the front buffer pad 33 and the back trapezoidal compression pad 34. The trapezoidal compression pad 34, which is adapted to the corrugated outer shell of the outer box 1, can distribute the impact received by the storage cabinet 31 to the outer shell of the outer box 1, thus achieving a cushioning effect.
[0059] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed invention. The scope of protection claimed by the appended claims and their equivalents is defined.
Claims
1. A container with an internal anti-collision buffer structure, characterized in that, The outer box (1) includes a lower pad (2) and an upper pad (3) fixedly installed at the bottom and top of the outer box (1), respectively. The top of the lower pad (2) is provided with a plurality of evenly distributed lower thread assembly grooves (201), and the bottom of the upper pad (3) is fixedly installed with a plurality of upper thread assembly rings (4) located corresponding to the lower thread assembly grooves (201). The interior of the outer box (1) is provided with a plurality of vertically placed interception structures, which are used to isolate and protect the goods stored inside the outer box (1). The interception structure includes an interception tube (5) disposed inside the outer casing (1). A toggle post (6) is disposed inside the interception tube (5). An arc-shaped hole (501) is opened on the side wall of the interception tube (5). The position of the arc-shaped hole (501) corresponds to the position of the toggle post (6). A transmission rod (7) is fixedly installed at both ends of the toggle post (6). The transmission rod (7) is rotatably installed inside the interception tube (5). A flower-shaped slide rod (8) is fixedly installed at the ends of the two transmission rods (7) that are far apart from each other. A threaded cylinder (9) is fixedly installed inside both ends of the interception tube (5). An assembly thread rod (10) that is adapted to the lower threaded assembly groove (201) and the upper threaded assembly ring (4) is screwed into the inside of the threaded cylinder (9). One end of the assembly thread rod (10) is opened with a flower-shaped slide rod (8). The two flower-shaped sliding rods (8) are respectively inserted through the two threaded cylinders (9) and slidably installed inside the two flower-shaped sliding grooves. Two hanging sleeves (11) are fixedly sleeved on the intercepting tube (5). Hanging brackets (12) are rotatably sleeved on the hanging sleeves (11). The same storage tube (13) is fixedly installed at one end of the two hanging brackets (12). Spring cylinders (14) are fixedly installed at both ends of the storage tube (13). A winding shaft is rotatably installed inside the storage tube (13). The two ends of the winding shaft extend into the interior of the two spring cylinders (14). A protective cloth (15) is wound on the winding shaft. One end of the protective cloth (15) extends to the outside of the storage tube (13) and is fixedly installed with multiple hanging claws (16). The hanging claws (16) are all adapted to the intercepting tube (5).
2. A container with an internal anti-collision buffer structure according to claim 1, characterized in that, The protective fabric (15) includes an outer fabric (1501), and an intercepting net (1502) is fixedly installed inside the outer fabric (1501). One end of each of the multiple hooks (16) extends into the interior of the outer fabric (1501) and is fixedly connected to the intercepting net (1502).
3. A container with an internal anti-collision buffer structure according to claim 1, characterized in that, Multiple hanging cylinders (17) are slidably sleeved on the intercepting pipe (5). Two telescopic rods (18) are fixedly installed on the side wall of each hanging cylinder (17). A wheel frame (21) is fixedly installed on the telescopic end of each telescopic rod (18). The same limiting rubber wheel (22) is rotatably installed on one end of each of the two wheel frames (21). A first limiting screw tube (19) is fixedly installed on the side wall of the fixed end of each telescopic rod (18). The first limiting screw tube (19) is connected to the inside of the fixed end of the telescopic rod (18). A first hand-tightening bolt (20) is screwed into the inside of each first limiting screw tube (19). A second limiting screw tube (23) is fixedly installed on the side wall of each hanging cylinder (17). The second limiting screw tube (23) is connected to the inside of the hanging cylinder (17). A second hand-tightening bolt (24) is screwed into the inside of the second limiting screw tube (23).
4. A container with an internal anti-collision buffer structure according to claim 3, characterized in that, Protective rubber pads (25) are fixedly installed on the opposite sides of the two wheel frames (21).
5. A container with an internal anti-collision buffer structure according to claim 1, characterized in that, The bottom end of the interceptor tube (5) is fixedly fitted with a square positioning sleeve (35). The top of the lower pad (2) is provided with a plurality of square positioning grooves (202) that are adapted to the square positioning sleeve (35). A plurality of lower thread assembly grooves (201) are respectively opened inside the plurality of square positioning grooves (202). A positioning rod (26) is fixedly installed inside the square positioning groove (202). The bottom of the square positioning sleeve (35) is provided with a positioning insertion hole (3501) that is adapted to the positioning rod (26).
6. A container with an internal anti-collision buffer structure according to claim 5, characterized in that, Square sealing plates (27) are placed inside the square positioning grooves (202). The bottom of the square sealing plates (27) is provided with a relief groove (2701) that is compatible with the positioning rod (26). The bottom of the square sealing plates (27) is fixedly installed with a first magnetic insertion rod (28) that is compatible with the lower thread assembly groove (201). The bottom of the upper thread assembly ring (4) is provided with a circular sealing plate (29). The top of the circular sealing plate (29) is fixedly installed with a second magnetic insertion rod (30) that is compatible with the upper thread assembly ring (4).
7. A container with an internal anti-collision buffer structure according to claim 1, characterized in that, Multiple evenly distributed storage cabinets (31) are fixedly installed on the inner walls of both sides of the outer box (1). The storage cabinets (31) are used to store the interception structure. A cabinet door (32) is rotatably installed on one side of the storage cabinet (31). A buffer pad (33) is fixedly installed on the side of the cabinet door (32) away from the storage cabinet (31). A trapezoidal compression pad (34) is fixedly installed on the side of the storage cabinet (31) away from the cabinet door (32).
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