A logistics transport box

By using a linked locking and unlocking mechanism and intelligent container monitoring, the safety hazards and insufficient monitoring in tobacco cargo transportation have been resolved, achieving an efficient and safe transportation process.

CN120942763BActive Publication Date: 2025-12-16NANTONG ZHIXING FUTURE INTERNET OF VEHICLES INNOVATION CENT CO LTD
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Patent Information

Application Number
CN202511478334.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-16
Publication Date
2025-12-16
Estimated Expiration
2045-10-16

AI Technical Summary

Technical Problem

In the transportation of tobacco goods, there are safety hazards in the loading and unloading of containers. Existing locking methods are inefficient and have poor compatibility, making it impossible to monitor the status of goods in real time, which leads to damage or loss of goods during transportation. Manual verification of the quantity of goods also results in large errors.

Method used

Design a logistics transport box that uses a linked convex bar pin locking mechanism, rope lifting rod unlocking mechanism, and rotating shaft unlocking mechanism to achieve automatic locking and unlocking, and is equipped with an intelligent container unit to monitor the status of goods in real time.

Benefits of technology

It improves the safety and efficiency of the transportation process, reduces labor costs, reduces the risk of cargo damage and loss, and enhances the accuracy of cargo monitoring and the safety of the transportation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a kind of logistics transport box, including box, frame fixed to box and convex pole lock locking mechanism, rope sling unlocking mechanism and rotating shaft unlocking mechanism fixed to the frame, convex pole lock locking mechanism includes the convex pole of the pin hole in the top of box and the lock pin in the bottom of box suitable for inserting the pin hole when transport box is stacked, rope sling unlocking mechanism includes hoisting rope and traction rope for pulling lock pin out of pin hole when lifting transport box in linkage with hoisting rope;Rotating shaft unlocking mechanism includes the forklift baffle of rotation setting in the bottom of box, the pull rope for pulling lock pin out of pin hole when forklift baffle is pushed in linkage with forklift baffle and fixed to the tail end of lock pin.The present application is conducive to guarantee the safety of container, tobacco goods and operating personnel during transportation, and effectively improve the work efficiency of tobacco goods transportation delivery.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of logistics assembly body, in particular to a logistics transport box. BACKGROUND

[0002] In the transportation of tobacco goods, it is often in the form of a container. Since the container is a semi-closed box structure made of metal, when loading goods inside, the container will be heavy and stacked. When it arrives at the destination factory, there will be a great safety hazard in the unloading process. At present, some large-scale factories have unmanned forklifts or unmanned container transport vehicles, which have improved transportation efficiency, but the inevitable stacking of containers during transportation still poses a safety hazard.

[0003] The existing locking methods mostly rely on manual locks or simple buckle structures: on the one hand, manual locking requires workers to climb to the top or side of the box to operate, which is not only inefficient (it can take up to 5-10 minutes to lock a single group of boxes), but also poses a safety hazard of falling from a great height or tool collision; on the other hand, unlocking operations need to be coordinated with loading and unloading equipment (such as cranes and forklifts). The traditional structure needs to be unlocked before starting the loading and unloading equipment, which causes a gap in the operation connection, and some locks need to be additionally disassembled in the forklift bottom unloading scene, further prolonging the operation cycle. At the same time, the existing locking structure has poor compatibility: for the two main loading and unloading methods of crane lifting and forklift bottom unloading, different types of locks or auxiliary tools often need to be equipped, increasing the cost of equipment procurement and maintenance difficulty; and some electric locking mechanisms rely on external power supply and cannot be used in outdoor storage scenes without power supply, limiting their applicability.

[0004] In addition, the status of the goods cannot be monitored in real time during delivery, leading to the possibility of damage or loss of goods during transportation. After unloading the tobacco, the goods are transported in batches and quantities, which requires manual verification of the quantity of tobacco goods, resulting in a large error in manual verification of goods, further affecting the accuracy and efficiency of logistics, and posing a safety hazard.

[0005] Chinese utility model patent CN202138635U discloses a storage tank group for storing liquid fuel or hazardous chemicals, which is composed of a plurality of stackable containers. An embedding column is arranged on the top of the container, and an embedding groove is arranged on the bottom of the container to form an embedding device. The embedding device realizes the stacking of multiple containers. However, this scheme cannot guarantee the stability and safety of stacking through simple embedding. The upper and lower containers are not locked, and there is a possibility of disengaging the embedding and even toppling over. SUMMARY

[0006] The present application aims to overcome the problems of the prior art, such as the safety hazard of container loading and unloading of tobacco goods during transportation and the difficulty in ensuring the safety of goods, and provides a logistics transportation box which can be automatically locked during stacking, unlocked synchronously during lifting and unloading by a forklift, thereby ensuring the safety of operators and goods and improving work efficiency.

[0007] To achieve the above-mentioned purpose, the present application provides the following technical solution: a logistics transportation box, characterized in that it comprises a box body, a frame fixed to the box body, a convex lever pin locking mechanism fixed to the frame, a rope lifting rod unlocking mechanism and a rotating shaft unlocking mechanism; the convex lever pin locking mechanism comprises a convex lever provided with a pin hole at the top of the box body and a pin suitable for being inserted into the pin hole for locking during stacking of the transportation box at the bottom of the box body; the rope lifting rod unlocking mechanism comprises a lifting rope and a traction rope connected with the lifting rope and used for pulling the pin out of the pin hole during lifting of the transportation box; and the rotating shaft unlocking mechanism comprises a forklift baffle rotatably arranged at the bottom of the box body, a pulling rope fixed to the tail end of the pin and connected with the forklift baffle and used for pulling the pin out of the pin hole when the forklift baffle is pushed.

[0008] Further, the pin can slide in the horizontal direction and is elastically supported at the bottom of the box body; the bottom of the box body is provided with a guide sleeve suitable for vertical insertion of the convex lever; and the pin hole of the convex lever is arranged on the side wall of the convex lever, and the side of the convex lever facing the pin is provided with a guide inclined surface used for guiding the pin to align with the entrance of the pin hole during stacking of the transportation box.

[0009] Further, the convex lever pin locking mechanism further comprises a limiting seat fixed to the bottom of the box body and an elastic element used for elastically supporting the pin in the pin hole of the convex lever; the pin is slidingly arranged in the limiting seat; one end of the elastic element is connected with the pin, and the other end is connected with the frame.

[0010] Further, a guide limiting shaft is fixed to the surface of the pin; the front end of the guide limiting shaft is used for abutting against the outer wall of the guide sleeve and limiting the depth of insertion of the pin into the pin hole of the convex lever.

[0011] Further, the lifting rope is arranged at the top of the box body; the traction rope is connected with the pin and extends upwards around the bottom and side of the box body and is connected with the lifting rope.

[0012] Further, the rope lifting rod unlocking mechanism further comprises a lifting rod; the lifting rod is arranged in the frame of the side of the box body; one end of the lifting rope extends into the frame of the side of the box body and is connected with the lifting rod; the end of the traction rope is connected with the lifting rod; the rope lifting rod unlocking mechanism further comprises a lifting rod supporting seat fixed to the frame of the side of the box body and used for supporting the lifting rod when it is not lifted, and a lifting load bearing seat used for abutting against the lifting rod when it is lifted.

[0013] Further, the rotating shaft unlocking mechanism further comprises a rotating shaft mounting plate fixed to the bottom of the box body and a first rotating shaft rotatably arranged on the rotating shaft mounting plate, one end of the forklift baffle is fixedly connected with the first rotating shaft, and the first rotating shaft is provided with a swing assembly for pulling the pull rope between the first rotating shaft and the pull rope.

[0014] Further, the swing assembly comprises a swing rod fixedly arranged on the first rotating shaft, a second rotating shaft rotatably arranged on the rotating shaft mounting plate and located at the front end of the first rotating shaft, and a groove-shaped plate fixedly connected with the second rotating shaft, a sliding groove is formed at the rear end of the groove-shaped plate, a sliding rod is arranged at the front end of the swing rod and slidably arranged in the sliding groove, the sliding rod is used for driving the groove-shaped plate to rotate, the front end of the groove-shaped plate is connected with the pull rope, the swing assembly further comprises a cam plate fixedly arranged on the upper end of the first rotating shaft, a first working contour is arranged at the front end of the cam plate, a second working contour is formed at the rear end of the groove-shaped plate, and the cam plate drives the groove-shaped plate to rotate through cooperation of the first working contour and the second working contour.

[0015] Further, the box body is provided with an intelligent goods cabinet unit and a control module on both sides, the control module is electrically connected with the intelligent goods cabinet unit and is used for controlling the storage and taking operation of the intelligent goods cabinet unit. The intelligent goods cabinet unit comprises a plurality of goods cabinets arranged on both sides of the box body, the goods cabinet comprises an independently arranged electronic lock and a goods storage bin, the electronic lock is electrically connected with the control module, and the control module comprises an operation screen and a code scanning module, a face recognition module, a video monitoring module and a remote communication module connected with the operation screen.

[0016] The beneficial effects of the present application are:

[0017] 1、The convex lever bolt locking mechanism, the rope suspender unlocking mechanism and the rotating shaft unlocking mechanism arranged in linkage can realize automatic locking during stacking, synchronous unlocking during lifting and synchronous unlocking during forklift unloading. Compared with the prior art which needs manual operation for locking and unlocking, the present application significantly improves the operation efficiency and reduces the labor cost. The present application does not need manual contact operation throughout the whole process, eliminates the operation safety hazards, improves the operation safety, and the convex lever bolt locking mechanism can effectively prevent the stacked container from falling, thereby reducing the risk of goods damage during storage and transportation. The present application designs two kinds of linkage unlocking modes, which can adapt to various loading and unloading scenes and improve the compatibility of the equipment.

[0018] 2, The application sets the intelligent goods cabinet unit and the control module electrically connected with the intelligent goods cabinet unit to control the access goods operation of the intelligent goods cabinet unit. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0020] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0021] Figure 2 It is a schematic diagram of the convex lever bolt locking mechanism and the rotating shaft unlocking mechanism of the present application.

[0022] Figure 3 It is a sectional view of the convex lever bolt locking mechanism of the present application.

[0023] Figure 4 It is a top view of the convex lever bolt locking mechanism and the rotating shaft unlocking mechanism of the present application.

[0024] Figure 5 It is a schematic diagram of the rope suspender unlocking mechanism of the present application.

[0025] Figure 6 It is a schematic diagram of the goods cabinet related function structure of the present application.

[0026] BRIEF DESCRIPTION OF DRAWINGS

[0027] 1, hoisting rope; 2, hoisting bearing seat; 3, boom support seat; 4, boom support seat; 5, boom; 6, first threaded lifting ring; 7, traction rope; 8, second threaded lifting ring; 9, threaded lifting ring seat; 10, roller assembly; 11, bolt; 12, guide mounting plate; 13, guide sleeve; 14, cam; 15, forklift fender; 16, first rotating shaft; 17, cam plate; 18, swing plate; 19, second rotating shaft; 20, extension; 21, pull rope; 22, elastic element; 23, tension spring; 24, microphone; 25, video monitoring camera; 26, light; 27, operation screen; 28, flap; 29, code scanning delivery camera; 30, pull round rod mechanism; 31, intelligent container unit; 32, container; 33, frame; 34, box; 35, fork groove; 36, cover plate; 37, slot plate; 38, rotating shaft mounting plate; 39, lifting ring; 40, rear stop seat; 41, third rotating shaft; 42, roller mounting plate; 43, limiting guide key; 44, guide limiting shaft; 45, limiting seat mounting plate; 46, limiting seat, 47, lifting ring mounting seat. DETAILED DESCRIPTION

[0028] In order to make the technical problems to be solved by the present application, technical solutions and beneficial effects more clear, the present application will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and do not limit the present application.

[0029] Please refer to Figures 1 to 6 The embodiment of the present application is a kind of logistics transport box, and the transport box is a container 32, the container 32 is assembled by a box 34 and a frame 33, the box 34 and the frame 33 are both made of reinforced sheet metal and then assembled. The frame 33 is fixedly arranged on the box 34, and the frame 33 is fixedly provided with a cam bolt locking mechanism, a rope boom unlocking mechanism and a rotating shaft unlocking mechanism. The cam bolt locking mechanism is used to automatically lock the upper and lower boxes 34 when the transport box is assembled, the rope boom unlocking mechanism is connected with the cam bolt locking mechanism and is used to unlock the cam bolt locking mechanism synchronously when the transport box is lifted, and the rotating shaft unlocking mechanism is connected with the cam bolt locking mechanism and is used to unlock the cam bolt locking mechanism synchronously when the forklift is inserted into the bottom of the transport box for unloading. The whole process does not need manual contact operation, eliminates the operation safety hazard and improves the operation safety.

[0030] The convex lever and the pin lock mechanism are divided into two parts, including the convex lever 14 fixedly arranged on the top frame 33 of the box 34 and the part fixedly arranged on the corresponding position of the bottom frame 33 of the box 34 and cooperating with the convex lever 14. The convex lever 14 is a cylinder with a conical top, and the side wall of the convex lever 14 is provided with a pin hole. The bottom frame 33 of the box 34 is fixedly provided with a guide mounting plate 12 and a guide sleeve 13 suitable for the insertion of the convex lever 14 at the corresponding position, and the side wall of the guide sleeve 13 is provided with a through hole corresponding to the pin hole of the convex lever 14, and the pin hole and the through hole are coaxially arranged. The through hole is provided with a limiting seat mounting plate 45 fixedly arranged on the frame 33, and the limiting seat mounting plate 45 is provided with a limiting seat 46 arranged through a bolt. The limiting seat 46 is provided with a sliding hole, and the sliding hole is slidably provided with a pin 11. The pin 11 penetrates the through hole of the guide sleeve 13 and is elastically supported in the pin hole of the convex lever 14 in the horizontal direction to lock the upper and lower boxes 34. The conical top of the convex lever 14 and the side wall thereof constitute a guide slope for guiding the pin 11 to align with the entrance of the pin hole when the transport box is assembled. The tail end of the pin 11 is provided with a circular groove, and the circular groove is provided with an elastic element 22. The elastic element 22 is a return spring, and the rear end of the return spring is provided with a rear stop seat 40 fixedly arranged on the frame 33. The front end of the return spring is supported on the groove bottom of the circular groove, and the rear end is supported on the rear stop seat 40. In another embodiment, the pin 11 can also be inserted into the pin hole by a return tension spring. The surface of the pin 11 is provided with a guide limiting shaft 44 and a limiting guide key 43 fixedly arranged through a bolt. The front end of the guide limiting shaft 44 is used to abut against the outer wall of the guide sleeve 13 when the pin 11 is inserted into the pin hole of the convex lever 14, and the front end of the limiting guide key 43 is used to abut against the rear end surface of the limiting seat 46 when the pin 11 is inserted into the pin hole of the convex lever 14, thereby limiting the depth of the pin 11 inserted into the pin hole of the convex lever 14. The convex lever and the pin lock mechanism are provided with two sets, which are respectively arranged on the left and right sides of the top and bottom frames 33 of the transport box.

[0031] When the transport box needs to be assembled, the convex lever 14 is aligned with the guide sleeve 13 at the bottom of the upper transport box, and the pin 11 is inserted and driven to slide on the guide slope of the convex lever 14 by gravity, and the elastic element 22 is compressed, until the guide slope is aligned with the pin hole, and the elastic element 22 presses the pin 11 into the pin hole to complete the locking.

[0032] The rope hoist unlocking mechanism includes a lifting ring mounting seat 47 connected to the rear end of the latch 11 in turn, a lifting ring 39, a traction rope 7, a hoist 5 and a hoisting rope 1. The lifting ring mounting seat 47 is fixed to the tail of the latch 11, and the lifting ring 39 is fixed to the rear end face of the lifting ring mounting seat 47. The traction rope 7 is a mountain climbing rope, one end of which is connected to the lifting ring 39, and the other end is wound around the box body 34 and the side of the box body 34 and connected to the hoist 5. The hoist 5 is arranged in the frame 33 on the side of the box body 34. The hoisting rope 1 is a steel wire rope and is installed at the four corner positions on the top of the box body 34, one end of the hoisting rope 1 extends into the frame 33 on the side of the box body 34 and is connected to the hoist. The hoist 5 is fixedly provided with a first threaded lifting ring 6, and the traction rope 7 is connected to the hoist 5 through the first threaded lifting ring 6. The threaded lifting ring seat 9 is fixedly arranged below the hoist 5 and at the connecting position between the side of the box body 34 and the bottom of the box body 34, and the second threaded lifting ring 8 is fixedly installed on the threaded lifting ring seat 9. The rear end of the lifting ring 39 is provided with a roller mounting plate 42 fixedly installed on the frame 33, the upper surface of the roller mounting plate 42 is riveted with a third rotating shaft 41, and the roller assembly 10 is rotatably installed on the third rotating shaft 41. The traction rope 7 passes through the lower second threaded lifting ring 8, changes direction to the bottom of the box body 34, and then changes direction through the roller assembly 10 and is connected to the lifting ring 39 behind the latch 11. The rope hoist unlocking mechanism further includes hoist support seats 3 fixed at both ends of the hoist 5, and hoist support seats 4 and hoisting load bearing seats 2 fixed in the frame 33 on the side of the box body 34. The hoist support seat 4 is located below the hoisting load bearing seat 2, and the hoist support seat 4 is in contact with the lower end face of the hoist support seat 3 when the hoist is not lifted to support the hoist 5. The hoisting load bearing seat 2 is in contact with the upper end face of the hoist support seat 3 when the hoist is lifted, and resists the hoist 5 and supports the weight of the entire transport box to complete the lifting.

[0033] When the hoist is needed to be lifted and unloaded, the hoist pulls the hoisting rope 1, the hoisting rope 1 drives the hoist 5 to rise, the hoist 5 synchronously drives the traction rope 7 to pull the lifting ring 39 at the rear end of the latch 11 through the second threaded lifting ring 8 and the roller assembly 10, and then pulls the latch 11 to disengage from the pin hole of the convex lever 14 to complete the unlocking; after the hoist 5 abuts against the hoisting load bearing seat 2, the hoisting load bearing seat 2 supports the entire transport box to complete the lifting.

[0034] The rotating shaft unlocking mechanism includes a rotating shaft mounting plate 38, a forklift baffle 15, a swing assembly and a pull rope 21. The bottom of the box body 34 is provided with a fork groove 35 on both sides, the forklift baffle 15 is located in the fork groove 35, and the tail end of the forklift baffle 15 is rotatably arranged on the rotating shaft mounting plate 38. The rotating shaft mounting plate 38 is fixedly arranged on the bottom frame 33 of the box body 34, and the rotating shaft mounting plate 38 is rotatably provided with a first rotating shaft 16, the first rotating shaft 16 is riveted and installed on the rotating shaft mounting plate 38, the first rotating shaft 16 is provided with a cover plate 36, and the tail end of the forklift baffle 15 is fixed to the first rotating shaft 16. The pull rope 21 is a steel wire rope, and the pull rope 21 passes through a rear baffle seat 40 and an elastic element 22 and is fixed to the inside of the latch 11. The first rotating shaft 16 and the pull rope 21 are provided with a swing assembly for pulling the pull rope 21.

[0035] The swing assembly comprises a swing rod 18, a slot-shaped plate 37 and a second rotating shaft 19. The swing rod 18 is fixedly arranged on the first rotating shaft 16, and the swing rod 18 is provided with a sliding rod at the front end. The second rotating shaft 19 is rotatably arranged on the rotating shaft mounting plate 38 and is riveted with the rotating shaft mounting plate 38. The slot-shaped plate 37 is fixedly connected with the second rotating shaft 19. The slot-shaped plate 37 is provided with a sliding groove at the rear end, and the slot-shaped plate 37 is provided with an extension 20 connected with the pull rope 21 at the front end. The sliding rod of the swing rod 18 is slidably arranged in the sliding groove of the slot-shaped plate 37. When the forklift baffle 15 is pushed, the first rotating shaft 16 drives the swing rod 18 to swing. The swing rod 18 drives the slot-shaped plate 37 to swing through the cooperation of the sliding rod and the sliding groove. The extension 20 at the front end of the slot-shaped plate 37 drives the pull rope 21 to pull the bolt 11 out of the pin hole to achieve unlocking. The swing assembly further comprises a cam plate 17 fixedly arranged on the upper end of the first rotating shaft 16. The cam plate 17 is provided with a first working contour at the front end. The slot-shaped plate 37 is provided with a left-right symmetrical second working contour at the rear end. The cam plate 17 drives the slot-shaped plate 37 to rotate through the cooperation of the first working contour and the second working contour, so that the action of the swing assembly is more stable, and the reliability of the structure is improved.

[0036] The rotating shaft unlocking mechanism further comprises a reset assembly arranged between the forklift baffle 15 and the bottom of the box body 34 for resetting the forklift baffle 15. The reset assembly comprises a connecting rod and a tension spring 23. The connecting rod is fixedly arranged on the first rotating shaft 16. The tension spring 23 is fixedly arranged on the bottom frame 33 of the box body 34 and is connected with the connecting rod. After the forklift exits the fork groove 35, the tension spring 23 pulls the connecting rod to complete the resetting of the forklift baffle 15.

[0037] The box 34 is provided with a smart cabinet unit 31 and a control module on both sides, and the control module is electrically connected with the smart cabinet unit 31 for controlling the access operation of the smart cabinet unit 31. The smart cabinet unit 31 comprises a plurality of cabinets arranged on both sides of the box 34, the cabinets are arranged in two rows, and the cabinet comprises an electronic lock and a goods storage bin arranged independently, and the electronic lock is electrically connected with the control module. The control module comprises an operation screen 27 and a code scanning module, a face recognition module, a video monitoring module and a remote communication module connected with the operation screen 27. The operation screen 27 is of TP700 type, and the operation screen 27 can control the electronic lock to access the cabinet according to the user operation instruction. Wherein, a pull round rod mechanism 30 familiar to those skilled in the art is arranged below each column of cabinets, and the pull round rod mechanism 30 is mechanically connected with the electronic lock, if the electronic unlocking fails, the pull rod is contacted with the mechanical lock in the cabinet by being pulled upward, so that the inside is unlocked. A microphone 24, a video monitoring camera 25 and a lighting lamp 26 are arranged above the operation screen 27, and a flap 28 is arranged below the operation screen 27, and video monitoring cameras 25 are arranged at four corners of the box 34. The lighting lamp 26 provides illumination. The microphone 24 is of MIC3.5 type, and the microphone 24 is electrically connected with the remote communication module for remote communication between the person taking goods and the background operator. The camera 25 is electrically connected with the video monitoring module and the face recognition module, realizes the monitoring of the container taking area and the whole process monitoring of taking goods, and strengthens the safety of tobacco goods transportation. The flap 28 is internally provided with a code scanning and taking-out camera 29, and the electronic taking-out can be realized.

[0038] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A logistics shipping box, characterized by: The box (34), the frame (33) fixed to the box (34), the convex lever plug locking mechanism fixed to the frame (33), the rope crane unlocking mechanism and the rotating shaft unlocking mechanism, the convex lever plug locking mechanism includes the convex lever (14) provided with the pin hole at the top of the box (34) and the plug (11) suitable for being inserted into the pin hole for locking when the transport box is stacked at the bottom of the box (34), the rope crane unlocking mechanism includes the hoisting rope (1) and the traction rope (7) linked with the hoisting rope (1) for pulling the plug (11) out of the pin hole when the transport box is lifted, and the rotating shaft unlocking mechanism includes the forklift baffle (15) rotatably arranged at the bottom of the box (34), the pull rope (21) fixed to the tail end of the plug (11) and linked with the forklift baffle (15) for pulling the plug (11) out of the pin hole when the forklift baffle (15) is pushed. The plug (11) can slide in the horizontal direction and be elastically supported at the bottom of the box (34), the box (34) is provided with the guide sleeve (13) suitable for the vertical insertion of the convex lever (14) at the bottom of the box (34), the pin hole of the convex lever (14) is opened in the side wall of the convex lever (14), and the side of the convex lever (14) facing the plug (11) is provided with the guide inclined surface for guiding the plug (11) to align with the entrance of the pin hole when the transport box is stacked. The convex lever plug locking mechanism further includes the limiting seat (46) fixed to the bottom of the box (34) and the elastic element (22) for elastically supporting the plug (11) in the pin hole of the convex lever (14), the plug (11) is slidingly arranged in the limiting seat (46), one end of the elastic element (22) is connected with the plug (11), and the other end is connected with the frame (33). The hoisting rope (1) is arranged at the top of the box (34), the traction rope (7) is connected with the plug (11) and extends upward around the bottom of the box (34) and the side of the box (34) and is connected with the hoisting rope (1). The rope crane unlocking mechanism further includes the crane (5) arranged in the frame (33) of the side of the box (34), one end of the hoisting rope (1) extends into the frame (33) of the side of the box (34) and is connected with the crane (5), the end of the traction rope (7) is connected with the crane (5), the rope crane unlocking mechanism further includes the crane support seat (4) fixed to the frame (33) of the side of the box (34) for supporting the crane (5) when it is not lifted and the hoisting load bearing seat (2) abutting against the crane (5) when it is lifted.

2. The logistics transport case of claim 1, wherein, The guide limiting shaft (44) is fixed to the surface of the plug (11), the front end of the guide limiting shaft (44) is used for abutting against the outer wall of the guide sleeve (13) and limiting the depth of the plug (11) inserted into the pin hole of the convex lever (14).

3. The logistics transport box according to claim 1, wherein, The rotating shaft unlocking mechanism further comprises a rotating shaft mounting plate (38) fixed to the bottom of the box (34) and a first rotating shaft (16) rotatably arranged on the rotating shaft mounting plate (38), one end of the forklift baffle (15) is fixedly connected with the first rotating shaft (16), and the first rotating shaft (16) is provided with an oscillating assembly for pulling the pull rope (21) between the first rotating shaft (16) and the pull rope (21).

4. The logistics transport case of claim 3, wherein, The oscillating assembly comprises an oscillating rod (18) fixedly arranged on the first rotating shaft (16), a second rotating shaft (19) rotatably arranged on the rotating shaft mounting plate (38) and located at the front end of the first rotating shaft (16), and a groove-shaped plate (37) fixedly connected with the second rotating shaft (19), a sliding groove is formed at the rear end of the groove-shaped plate (37), a sliding rod is arranged at the front end of the oscillating rod (18) and slidably arranged in the sliding groove for driving the groove-shaped plate (37) to rotate, the front end of the groove-shaped plate (37) is connected with the pull rope (21), and the oscillating assembly further comprises a cam plate (17) fixedly arranged on the upper end of the first rotating shaft (16), a first working contour is arranged at the front end of the cam plate (17), a second working contour is formed at the rear end of the groove-shaped plate (37), and the cam plate (17) drives the groove-shaped plate (37) to rotate through cooperation of the first working contour and the second working contour.

5. The logistics transport case of claim 3, wherein, The rotating shaft unlocking mechanism further comprises a reset assembly arranged between the forklift baffle (15) and the bottom of the box (34) for resetting the forklift baffle (15), the reset assembly comprises a connecting rod fixed to the first rotating shaft (16) and a tension spring (23) connected with the connecting rod and fixed to the bottom of the box (34).

6. The logistics transport case of claim 1, wherein, The box (34) is provided with an intelligent goods cabinet unit (31) and a control module on both sides, the control module is electrically connected with the intelligent goods cabinet unit (31) for controlling the storage and retrieval operations of the intelligent goods cabinet unit (31), the intelligent goods cabinet unit (31) comprises a plurality of goods cabinets arranged on both sides of the box (34), the goods cabinet comprises an independently arranged electronic lock and a goods storage bin, the electronic lock is electrically connected with the control module, and the control module comprises an operation screen (27) and a code scanning module, a face recognition module, a video monitoring module and a remote communication module connected with the operation screen (27).

Citation Information

Patent Citations

  • Storage tank group used for storing liquid fuel or hazardous chemicals

    CN202138635U

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    CN112478478A

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    CN117208369A