Novel detachable container
By introducing structures such as columns, disassembly doors, rotary bars, fixed blocks, gears, etc. into the container, the cumbersome problems of existing container disassembly are solved, rapid disassembly and multiple locking are achieved, and the efficiency and stability of the container are improved.
Patent Information
- Application Number
- CN202511002321.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-21
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2045-07-21
AI Technical Summary
The detachable design of existing containers usually uses building block overlapping, and multiple parts need to be removed to achieve the disassembly of the wall panel. The operation is cumbersome and the efficiency of use needs to be improved.
A new type of detachable container is designed, using columns and a removable door that can move up and down. Combined with rotary bars, fixed blocks, gears, racks, sliders and insert rods, it realizes rapid disassembly and multiple locking, ensuring the inlet and exit of large equipment, and improving operating stability through springs and guide wheels.
It realizes rapid disassembly and multiple locking, ensures the inlet and exit of large equipment, improves the efficiency and stability of containers, and reduces operational complexity and equipment usage costs.
Smart Images

Figure CN120504065A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of containers, in particular to a novel detachable container. Background Art
[0002] Containers are a group of tools that can be loaded with packaged or unpackaged goods for transportation and are easy to load and unload with mechanical equipment. However, with the development of container technology and the rise of social needs, the application areas of containers are becoming more and more extensive, such as being used as mobile homes.
[0003] After the container is installed, there is still a need to move large equipment in or out. However, equipment that is slightly larger than the side door of the container cannot be used, and a detachable container is needed. In the existing technology, the detachable design of the container usually adopts building block-style overlap and mortise and tenon joints, which often require the removal of many parts to realize the removal of the wall panels. The operation is cumbersome and the efficiency of use needs to be improved.
[0004] Therefore, it is necessary to propose a new type of detachable container to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a new type of detachable container to solve the problem in the prior art that the detachable design of the container usually adopts building block-style overlap and mortise and tenon joints, which often requires the removal of many parts to realize the disassembly of the wall panels, resulting in cumbersome operation and the need to improve the efficiency of use.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a novel detachable container, comprising a box body, a column installed on the side of the box body, a detachable door that can be moved up and down is provided on the column, a vertical plate is provided inside the column, and the vertical plate divides the interior of the column into a blocking chamber and a guide chamber; a plurality of flip-and-reset turning bars are distributed in the vertical direction in the blocking chamber, a first spring is provided at the top of the turning bar for assisting its resetting, a fixing block is fixedly installed at the bottom of the detachable door, the fixing block can contact the turning bar and drive it to flip and stagger upward, and can abut against the turning bar when it is reset to a horizontal state; The disassembly door is provided with a sliding channel, a slide is slidably arranged in the sliding channel, a rack is mounted on the slide, and a gear is provided in the blocking chamber that is linked to the rotating bar and can selectively mesh with the rack; The slide can drive the rack to move in a direction close to or away from the stopping chamber so that the rack and the gear are selectively engaged or disengaged; the disassembly door is provided with a driving member for driving the slide to move, and a plug rod is installed on the side of the slide facing away from the stopping chamber, and a plurality of triangular grooves for inserting the plug rod are distributed in the vertical direction on the inner wall of the guide chamber.
[0007] Preferably, there are two upright posts, the disassembly door is located between the two upright posts, and guide wheels are installed on both sides of the disassembly door, and the guide wheels are attached to the inner walls of the corresponding guide chambers.
[0008] Preferably, a circular groove is formed at the top of the rotating bar, the bottom end of the first spring is fixedly connected in the circular groove, a vertical rod is fixedly connected in the circular groove, and the first spring surrounds the outside of the vertical rod.
[0009] Preferably, the top of the fixed block is fixedly connected to an ear plate, the ear plate is fixedly connected to a round rod, the round rod is rotatably connected to a rotating plate, the rotating plate is L-shaped, and a through hole for the vertical rod to pass through is opened on the fixed block, and the top of the vertical rod abuts against the rotating plate.
[0010] Preferably, the driving member includes a pull rod and a sliding rod, the disassembly door is provided with a connecting hole connected to the sliding channel, the sliding rod is slidably arranged inside the connecting hole, the sliding rod is fixedly connected to the slide plate, the pull rod is fixedly connected to the end of the sliding rod away from the slide plate, and a second spring is mounted on the outside of the sliding rod.
[0011] Preferably, a handle is fixedly connected to the outer wall of the disassembly door.
[0012] Preferably, a locking groove is provided at the bottom end of the inner wall of the guide chamber, and the insertion rod is plugged into and fitted into the locking groove.
[0013] Preferably, the side of the triangular groove opposite to the slide plate is an inclined surface.
[0014] Technical effects and advantages of the present invention: 1. The present invention provides a rotating bar, a fixed block and other structures for quick disassembly, ensuring a large passage area, facilitating the entry and exit of large equipment, and having a multiple locking effect. At the same time, it does not affect the rapid up and down movement of the disassembly door, thereby improving the utilization efficiency of the new detachable container. 2. Set up gears, racks and other structures, use the movement of the disassembly door as the power, and when the disassembly door is reset from top to bottom, drive the rotating bar to swing upward starting from the horizontal state, so that the rotating bar and the fixed block are staggered; 3. By setting up structures such as a slide plate and a second spring, the coordination between the rack and the gear can be controlled, and the machine can be automatically stopped in case of an emergency. 4. By setting up structures such as insertion rods and triangular grooves, the disassembly door is limited to reduce the pressure of structures such as turning strips. When the disassembly door moves from bottom to top, the insertion rod can slide adaptively. 5. By setting up structures such as slide plates, pull rods, and sliding rods, the coordination between the rack and the gear, the insertion rod and the triangular groove, and the insertion rod and the locking groove can be controlled, thereby improving the control efficiency and reducing the cost of equipment use; 6. A first spring is provided to reduce the impact force on the position of the rotating bar and to assist the rotating bar in quickly returning to a horizontal state; 7. By setting up structures such as vertical rods and rotating plates, the first spring is ensured to stably contract and buffer the force, while at the same time squeezing and supporting the disassembly door, further reducing the pressure on the rotating strip and other structures; 8. Simultaneously realize the limit support of the turning bar, the limit support of the insertion rod and the locking groove, and the extrusion support of the turning plate to achieve the purpose of triple protection, and cooperate with each other to ensure the stability of the use of the new detachable container. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a structural schematic diagram of the new detachable container from one perspective of the present invention.
[0016] Figure 2 This is a structural schematic diagram of the new detachable container from another perspective of the present invention.
[0017] Figure 3 For the present invention Figure 2 A magnified schematic diagram of the structure in the middle.
[0018] Figure 4 It is a schematic diagram of the box and column structure of the present invention.
[0019] Figure 5 For the present invention Figure 4 Enlarged schematic diagram of the structure at point B in the middle.
[0020] Figure 6 This is a schematic diagram of the rotating shaft, rotating bar and gear structure of the present invention.
[0021] Figure 7 This is a schematic diagram of the box body and disassembly door structure of the present invention.
[0022] Figure 8 For the present invention Figure 7 Enlarged schematic diagram of the structure at point C in the middle.
[0023] Figure 9 It is a schematic diagram of the box structure of the present invention.
[0024] Figure 10 For the present invention Figure 9 Enlarged schematic diagram of the structure at point D in the middle.
[0025] Figure 11 It is a schematic diagram of the box body and locking groove structure of the present invention.
[0026] Figure 12 For the present invention Figure 11 Enlarged schematic diagram of the structure at E in the middle.
[0027] Figure 13 This is a schematic diagram of the disassembly door and sliding channel structure of the present invention.
[0028] Figure 14 For the present invention Figure 13 Enlarged schematic diagram of the structure at F in the middle.
[0029] Figure 15 This is a schematic diagram of the disassembly door and pull rod structure of the present invention.
[0030] Figure 16 For the present invention Figure 15 Enlarged schematic diagram of the structure at G in the middle.
[0031] In the figure: 1. Box body; 2. Pillar; 3. Disassembly door; 4. Vertical plate; 401. Stop chamber; 402. Guide chamber; 5. Rotating shaft; 6. Rotating bar; 7. Gear; 8. Rack; 9. Fixed block; 10. Through hole; 11. Circular groove; 12. First spring; 13. Vertical rod; 14. Ear plate; 15. Circular rod; 16. Rotating plate; 17. Locking groove; 18. Sliding channel; 19. Slide plate; 20. Insert rod; 21. Triangular groove; 22. Second spring; 23. Pull rod; 24. Handle; 25. Guide wheel; 26. Recovery groove; 27. Connecting hole; 28. Sliding rod. DETAILED DESCRIPTION
[0032] The present invention provides Figures 1 to 16 A new type of detachable container shown in the figure includes a box body 1, one end of which is provided with an opening, and a slightly smaller side door (not shown in the figure) is provided on the side wall of the box body 1 to facilitate the entry and exit of personnel, small equipment, etc.
[0033] Considering that after the container is installed, there is still a need to move large equipment in or out, but equipment that is slightly larger than the side door cannot be moved in or out, in order to achieve quick disassembly and facilitate the entry and exit of large equipment, a column 2 is fixedly installed at the opening of the box body 1. There are two columns 2, and a disassembly door 3 for closing the opening of the box body 1 is slidably set between the two columns 2.
[0034] A handle 24 is fixedly connected to the outer wall of the disassembly door 3. The handle 24 is U-shaped and is for an operator to hold.
[0035] During actual use, the bottom end of the disassembly door 3 abuts against the bottom of the box body 1 to close the opening of the box body 1. If only personnel, small equipment, etc. enter and exit, a slightly smaller side door can be used; if large equipment needs to be moved in or out, the operator pushes the disassembly door 3 through the handle 24, so that the disassembly door 3 moves from bottom to top, opening the box body 1. At this time, there is a larger passing area, which is convenient for large equipment to enter and exit.
[0036] In order to position the disassembly door 3 and deal with some emergencies, a vertical plate 4 is provided inside the column 2. The vertical plate 4 divides the interior of the column 2 into a blocking chamber 401 and a guide chamber 402, wherein the guide chamber 402 is located between the blocking chamber 401 and the inner cavity of the box body 1.
[0037] There are multiple flip-and-reset turning bars 6 distributed in the vertical direction in the stopping chamber 401. The turning bars 6 are staggered with the disassembly door 3 to prevent collision. Fixed blocks 9 are fixedly installed on the bottom of both sides of the disassembly door 3. The fixed blocks 9 can contact the turning bars 6 and drive them to flip upward and stagger, and can abut against the turning bars 6 when they are reset to a horizontal state.
[0038] A sliding channel 18 is provided on the disassembly door 3, which passes through both sides of the disassembly door 3. The sliding channel 18 is located at the bottom end of the disassembly door 3. A slide plate 19 is provided inside the sliding channel 18 for sliding. A rack 8 is fixedly installed on one end of the slide plate 19 extending into the guide chamber 402.
[0039] The bottom end of the rack 8 is lower than the bottom end of the disassembly door 3 . A recovery groove 26 for recovering the rack 8 is provided at the bottom of the box body 1 . When the disassembly door 3 is reset downward, the rack 8 is recovered into the recovery groove 26 .
[0040] A gear 7 is provided in the stopping chamber 401, which is linked to the turning bar 6 and can selectively mesh with the rack 8. A rotating shaft 5 is fixedly connected between the turning bar 6 and the gear 7. The rotating shaft 5 is rotatably connected to the vertical plate 4. The turning bar 6, the rotating shaft 5 and the gear 7 rotate synchronously.
[0041] The rotating shaft 5 and the rotating bar 6 can be made of high-strength materials such as stainless steel.
[0042] The turning bar 6 rotates with the rotating shaft 5 as the axis, wherein the turning bar 6 is away from the end of the disassembly door 3 (refer to Figure 12 The arc portion is located above the right-angled portion, so that the turning bar 6 can only swing upward starting from the horizontal state and then reset, but will not swing downward starting from the horizontal state.
[0043] Specifically, when the operator pushes the disassembly door 3 to move upward, the top of the fixed block 9 first contacts the bottom of the nearest turn bar 6 above it, driving the turn bar 6 to flip upward, so that the turn bar 6 and the fixed block 9 are staggered, which does not affect the disassembly door 3 and the turn bar 6 to continue to move upward; after the fixed block 9 is out of contact with the turn bar 6, the turn bar 6 is restored to a horizontal state. Even if the disassembly door 3 falls due to the operator's hand slipping, etc., when the fixed block 9 abuts against the turn bar 6, it can stop falling further downward.
[0044] The length of the fixing block 9 is less than half of the length of the turning bar 6 , and the contact position between the fixing block 9 and the turning bar 6 is located at one end of the turning bar 6 close to the disassembly door 3 , ensuring that the turning bar 6 can flip stably.
[0045] A slide 19 is provided to control the horizontal position of the rack 8. When the disassembly door 3 moves from bottom to top, the slide 19 drives the rack 8 to move away from the stopping chamber 401. At this time, the gear 7 and the rack 8 are staggered, and there will be no meshing. When the disassembly door 3 is reset from top to bottom, the slide 19 drives the rack 8 to move toward the stopping chamber 401. At this time, the gear 7 and the rack 8 are in the same vertical plane, and there will be meshing, and the rack 8 is located on the side of the gear 7 facing away from the disassembly door 3.
[0046] Specifically, when it is necessary to control the disassembly door 3 to reset from top to bottom, first control the slide 19 to drive the rack 8 to move toward the blocking chamber 401, and the disassembly door 3 moves downward to drive the slide 19 and the rack 8 to move downward synchronously. Since the bottom end of the rack 8 is lower than the bottom end of the disassembly door 3, the rack 8 first contacts and engages with the corresponding gear 7. Figure 10 When the rack 8 is engaged with the gear 7, the rack 8 moves downward, the gear 7 rotates clockwise, and the turn bar 6 swings upward from the horizontal state, so that the turn bar 6 is staggered with the fixed block 9. When the turn bar 6 swings to the highest position, the fixed block 9 passes by the turn bar 6 and continues to move downward; after the rack 8 is staggered with the gear 7, the turn bar 6 is restored to the horizontal state; and is staggered with the turn bars 6 at other places according to the above steps.
[0047] In order to control the position of the slide 19 and the rack 8, the disassembly door 3 is provided with a driving member for driving the slide 19 to move, and the driving member includes a pull rod 23 and a slide rod 28. The disassembly door 3 is provided with a connecting hole 27 connected to the sliding channel 18, and the slide rod 28 is slidably arranged inside the connecting hole 27. The slide rod 28 is fixedly connected to the slide 19, and the pull rod 23 is fixedly connected to the end of the slide rod 28 away from the slide 19, and a second spring 22 is mounted on the outside of the slide rod 28, one end of the second spring 22 is fixedly connected to the slide 19, and the other end of the second spring 22 is fixedly connected to the inner wall of the sliding channel 18.
[0048] When the pull rod 23 is not subjected to external tension, it is supported by the elastic force of the second spring 22, the slide 19 remains stationary, and there is a certain gap between the pull rod 23 and the outer wall of the disassembly door 3 for the operator's fingers to pass through, making it easier to control the position of the pull rod 23.
[0049] The slide plate 19 is made of high-strength material, such as stainless steel, and has a certain thickness. The top and bottom of the slide plate 19 are respectively attached to the upper and lower ends of the sliding channel 18. At the same time, with the limiting cooperation of the slide rod 28, the slide plate 19 can move stably along the axial direction of the slide rod 28 without shaking, ensuring that the rack 8 always remains in a vertical state and can be stably matched with the gear 7.
[0050] Specifically, when the disassembly door 3 is controlled to move from bottom to top, the rack 8 and the gear 7 are staggered.
[0051] Furthermore, when controlling the disassembly door 3 to reset from top to bottom, the operator holds the pull rod 23 and drives it away from the disassembly door 3. The pull rod 23 is attached to the handle 24, and then the pull rod 23 and the handle 24 are held at the same time. The second spring 22 contracts, and with the cooperation of the slide rod 28, the slide plate 19 drives the rack 8 to move toward the stopping chamber 401. At this time, the gear 7 and the rack 8 are in the same vertical plane, and a meshing fit will occur.
[0052] When the operator's hand slips or loses control of the handle 24 due to other emergencies, the slide plate 19, the pull rod 23, and the slide bar 28 are reset under the reset force of the second spring 22, and the rack 8 is reset synchronously. The rack 8 and the gear 7 are staggered, the turning bar 6 can remain in a horizontal state, and the fixed block 9 abuts against the nearest turning bar 6 below it, and can stop further downward descent.
[0053] Structures such as gears 7 and racks 8 are set up, and the movement of the disassembly door 3 is used as power. When the disassembly door 3 is reset from top to bottom, the turning bar 6 is driven to swing upward starting from a horizontal state, so that the turning bar 6 is staggered with the fixed block 9.
[0054] By providing structures such as the slide plate 19 and the second spring 22, the matching state of the rack 8 and the gear 7 is controlled, and the purpose of automatic stopping can be achieved when an emergency occurs.
[0055] In order to reduce the pressure of the structure such as the turning strip 6, a rod 20 is fixedly installed on the side of the slide 19 facing away from the blocking chamber 401. The inner wall of the guide chamber 402 has a triangular groove 21 for inserting the rod 20. The side of the triangular groove 21 opposite to the slide 19 is an inclined surface ( Figure 8 The bottom end of the triangular groove 21 is a plane.
[0056] There are multiple triangular grooves 21 , and each triangular groove 21 is located above the corresponding turning bar 6 . When the fixing block 9 abuts against the turning bar 6 , the insertion rod 20 can abut against the bottom end of the triangular groove 21 .
[0057] When the disassembly door 3 moves from bottom to top, the insertion rod 20 enters the inside of the triangular groove 21 and then continues to move upward along the inclined surface of the triangular groove 21. During this process, the slide 19 and the rack 8 adaptively move toward the stopping chamber 401, but the rack 8 will not contact the gear 7.
[0058] When the disassembly door 3 moves downward, the operator holds the pull rod 23 and drives it in a direction away from the disassembly door 3. The gear 7 and the rack 8 are in the same vertical plane, and the insertion rod 20 does not contact the triangular groove 21.
[0059] When the operator's hand slips or loses control of the handle 24 due to other emergencies, the insertion rod 20 enters the interior of the triangular groove 21 under the restoring elastic force of the second spring 22 and its inclined surface continues to move downward. After abutting the bottom end of the triangular groove 21, it cannot move downward any further, achieving the purpose of limiting the disassembly door 3, and cooperating with the turn bar 6 and other structures to reduce the pressure on the turn bar 6 and other structures.
[0060] If it is necessary to control the disassembly door 3 to move downward from top to bottom again, the operator holds the pull rod 23 and drives it away from the disassembly door 3, and the insertion rod 20 is pulled out from the inside of the triangular groove 21. The disassembly door 3 can also be controlled to move upward a small distance and then move downward to facilitate the engagement of the gear 7 and the rack 8.
[0061] By providing structures such as the insertion rod 20 and the triangular groove 21, the disassembly door 3 is limited, and the pressure of the turning bar 6 and other structures is reduced. When the disassembly door 3 moves from bottom to top, the insertion rod 20 can slide adaptively.
[0062] The present invention provides structures such as a turning bar 6 and a fixing block 9 for quick disassembly, thereby ensuring a large passing area, facilitating the entry and exit of large equipment, and having a multiple locking effect. At the same time, it does not affect the rapid up and down movement of the disassembly door 3, thereby improving the utilization efficiency of the new detachable container.
[0063] Considering that after the opening of the box body 1 is closed by the disassembly door 3, the disassembly door 3 is prone to swing up and down due to bumps on the road during transportation, if external latches or other tools are used to limit it, the operation will be cumbersome. In order to quickly lock the disassembly door 3, a locking groove 17 is opened at the bottom end of the inner wall of the guide chamber 402, and the insertion rod 20 is plugged into the locking groove 17.
[0064] Specifically, when the disassembly door 3 moves from top to bottom and abuts against the bottom of the box body 1, the insertion rod 20 first slides on the inner wall of the guide chamber 402. After the insertion rod 20 corresponds to the locking groove 17, the insertion rod 20 is inserted into the inside of the locking groove 17 under the action of the reset elastic force of the second spring 22, and the disassembly door 3 is quickly locked.
[0065] When it is necessary to control the disassembly door 3 to move from bottom to top and open the opening of the box body 1, the operator holds the pull rod 23 and drives it away from the disassembly door 3. With the cooperation of the slide rod 28, the slide plate 19 drives the rack 8 to move toward the blocking chamber 401, and the insertion rod 20 is pulled out from the inside of the locking groove 17 without affecting the movement of the disassembly door 3 from bottom to top.
[0066] By setting up structures such as the slide plate 19, the pull rod 23, the slide rod 28, etc., the coordination between the rack 8 and the gear 7, the insertion rod 20 and the triangular groove 21, and the insertion rod 20 and the locking groove 17 can be controlled, thereby improving the control efficiency and reducing the equipment use cost.
[0067] Guide wheels 25 are installed on both sides of the disassembly door 3. There can be multiple guide wheels 25. The guide wheels 25 are attached to the inner walls of the corresponding guide chambers 402. The guide wheels 25 are provided so that the disassembly door 3 can move up and down stably, thereby improving the stability and smoothness of the up and down movement of the disassembly door 3.
[0068] To achieve a force-relieving and buffering effect, a circular groove 11 is formed at the top of the turn bar 6, into which a first spring 12 is fixedly connected. When the disassembly door 3 is lowered due to, for example, operator slippage, the fixed block 9 first contacts the top of the first spring 12 during its descent, compressing and contracting the first spring 12. This acts as a force-relieving and buffering mechanism, reducing the impact on the position of the turn bar 6. The first spring 12 then retracts into the circular groove 11, maintaining contact between the fixed block 9 and the turn bar 6 and ensuring a large contact area.
[0069] Furthermore, when the operator pushes the disassembly door 3 to move from bottom to top, the fixed block 9 drives the turning bar 6 to flip upward, and the top of the first spring 12 will contact the inner wall of the stopping chamber 401. After the turning bar 6 is offset from the fixed block 9, the reset force of the first spring 12 can assist the turning bar 6 to quickly reset to a horizontal state.
[0070] The first spring 12 is provided to reduce the impact force on the position of the turning bar 6 and at the same time assist the turning bar 6 to quickly return to a horizontal state.
[0071] In order to further reduce the pressure on structures such as the turning bar 6, an ear plate 14 is fixedly connected to the top of the fixed block 9, and a round rod 15 is fixedly connected to the ear plate 14. A turn plate 16 is rotatably connected to the round rod 15. When not squeezed by external force, the turn plate 16 tilts downward near the end of the disassembly door 3, and a torsion spring can be installed on the outside of the round rod 15, one end of the torsion spring is fixedly connected to the round rod 15, and one end of the torsion spring is fixedly connected to the turn plate 16, which is used to assist the turn plate 16 in resetting and can be adjusted according to specific usage.
[0072] The rotating plate 16 is L-shaped, and the width of the position corresponding to the stopping chamber 401 is small. When the fixed block 9 moves from bottom to top, the rotating plate 16 will contact the bottom of the rotating bar 6. Since the width of the position corresponding to the stopping chamber 401 is small, even if it contacts the bottom of the rotating bar 6, the rotating plate 16 will not flip over.
[0073] In order to realize the flipping of the turning plate 16, a vertical rod 13 is fixedly connected to the top of the turning bar 6, and the first spring 12 is wrapped around the outside of the vertical rod 13 to ensure that the first spring 12 is stably contracted. When no external force is applied, the top of the first spring 12 is higher than the top of the vertical rod 13, ensuring that when the turning bar 6 flips upward, the top of the first spring 12 can contact the inner wall of the stopping chamber 401, assisting the turning bar 6 to quickly return to a horizontal state. A through hole 10 is provided on the fixed block 9 for the vertical rod 13 to pass through, and the top of the vertical rod 13 abuts against the bottom of the end of the turning plate 16 close to the disassembly door 3.
[0074] During actual use, when the disassembly door 3 falls due to the operator's hand slipping, the vertical rod 13 passes through the through hole 10 and abuts against the bottom of the rotating plate 16 at one end close to the disassembly door 3 during the descending process of the fixed block 9. When the fixed block 9 contacts the rotating bar 6, the rotating plate 16 flips downward away from the end of the disassembly door 3 and is squeezed on the vertical plate 4. The rotating plates 16 on both sides are synchronously squeezed and supported to ensure the stability of the disassembly door 3.
[0075] By providing structures such as the vertical rod 13 and the rotating plate 16 , the first spring 12 is ensured to stably contract to relieve force and buffer the pressure, while the disassembly door 3 is squeezed and supported, further reducing the pressure on the rotating bar 6 and other structures.
[0076] At the same time, the limiting support of the turning bar 6, the limiting support of the insertion rod 20 and the locking groove 17, and the extrusion support of the turning plate 16 are realized to achieve the purpose of triple protection, and cooperate with each other to ensure the stability of the use of the new detachable container.
Claims
1. A novel detachable container, comprising a box body (1), a column (2) installed on the side of the box body (1), and a detachable door (3) that can move up and down is provided on the column (2), characterized in that: A vertical plate (4) is provided inside the column (2), and the vertical plate (4) divides the interior of the column (2) into a blocking chamber (401) and a guide chamber (402); a plurality of reversible and resetting turning bars (6) are distributed in the vertical direction inside the blocking chamber (401), and a first spring (12) is provided at the top of the turning bar (6) for assisting its resetting; a fixed block (9) is fixedly installed at the bottom of the disassembly door (3), and the fixed block (9) can contact the turning bar (6) and drive it to flip upward and stagger, and can abut against the turning bar (6) when the turning bar (6) is reset to a horizontal state; The disassembly door (3) is provided with a sliding channel (18), a slide plate (19) is slidably provided in the sliding channel (18), a rack (8) is mounted on the slide plate (19), and a gear (7) is provided in the blocking chamber (401) that is linked to the rotating bar (6) and can selectively mesh with the rack (8); The slide (19) can drive the rack (8) to move in a direction close to or away from the blocking chamber (401), so that the rack (8) and the gear (7) are selectively engaged or separated; the disassembly door (3) is provided with a driving member for driving the slide (19) to move, and an insertion rod (20) is installed on the side of the slide (19) facing away from the blocking chamber (401), and a plurality of triangular grooves (21) for inserting the insertion rod (20) are distributed in a vertical direction on the inner wall of the guide chamber (402).
2. A new type of detachable container according to claim 1, characterized in that: Two upright posts (2) are provided, and the disassembly door (3) is located between the two upright posts (2). Guide wheels (25) are installed on both sides of the disassembly door (3), and the guide wheels (25) are fitted on the inner wall of the corresponding guide chamber (402).
3. The novel detachable container according to claim 1, characterized in that: A circular groove (11) is formed at the top of the rotating bar (6), the bottom end of the first spring (12) is fixedly connected in the circular groove (11), a vertical rod (13) is fixedly connected in the circular groove (11), and the first spring (12) surrounds the outside of the vertical rod (13).
4. A new type of detachable container according to claim 3, characterized in that: The top of the fixed block (9) is fixedly connected to an ear plate (14), the ear plate (14) is fixedly connected to a round rod (15), the round rod (15) is rotatably connected to a rotating plate (16), the rotating plate (16) is L-shaped, and the fixed block (9) is provided with a through hole (10) for the vertical rod (13) to pass through, and the top of the vertical rod (13) is in contact with the rotating plate (16).
5. The novel detachable container according to claim 1, characterized in that: The driving member includes a pull rod (23) and a slide rod (28). A connecting hole (27) communicating with the sliding channel (18) is provided on the disassembly door (3). The slide rod (28) is slidably arranged inside the connecting hole (27). The slide rod (28) is fixedly connected to the slide plate (19). The pull rod (23) is fixedly connected to the end of the slide rod (28) away from the slide plate (19), and a second spring (22) is sleeved on the outside of the slide rod (28).
6. The novel detachable container according to claim 1, characterized in that: A handle (24) is fixedly connected to the outer wall of the disassembly door (3).
7. The novel detachable container according to claim 1, characterized in that: A locking groove (17) is provided at the bottom end of the inner wall of the guide chamber (402), and the insertion rod (20) is plugged into and engaged with the locking groove (17).
8. The novel detachable container according to claim 1, characterized in that: The side of the triangular groove (21) that is opposite to the slide plate (19) is an inclined surface.
Citation Information
Patent Citations
Multifunctional integrated energy-saving refrigerated container
CN118753668A
Detachable container
CN119389617A
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CN218705593U
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CN222755426U
Interchangeable container for transporting goods, and interchangeable-container system
WO2019097042A1