Conveying device for logistics supply chain

By designing an automated logistics supply chain conveying device, the continuous transportation of goods and automatic loading and unloading of goods is achieved by supporting, transshipping, transporting and promoting components, the problem of low transportation efficiency in the existing technology is solved and the transportation efficiency of the logistics supply chain is improved.

CN120440588APending Publication Date: 2025-08-08SHANGHAI KUAIXING TIANXIA SUPPLY CHAIN MANAGEMENT CO LTD
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Patent Information

Application Number
CN202510664775.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

When transporting and stacking logistics goods, existing logistics supply chain conveyors need to be vertically lifted and transferred through forklifts, resulting in low transportation efficiency and a lot of time.

Method used

Design a logistics supply chain conveyor device, including support components, transfer components, conveying components, loading and unloading components and pushing components, to realize automated loading and unloading and cargo pushing through rotating components, and reduce the use of forklifts.

Benefits of technology

It realizes continuous transportation of goods and automatic loading and unloading, improves transportation efficiency, reduces forklift transfer time, and reduces the demand for manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The conveying device for the logistics supply chain comprises a supporting assembly used for supporting the whole device, a rolling assembly is arranged at the bottom of the supporting assembly and used for controlling the whole conveying device to move, and the supporting assembly is arranged to be of a T-shaped structure in an overhead view; a transfer assembly is arranged at the horizontal position of the T-shaped structure of the supporting assembly, a conveying assembly is arranged at the vertical position of the T-shaped structure of the supporting assembly, and the conveying assembly is used for conveying external logistics goods to the position above the transfer assembly. According to the conveying device for the logistics supply chain, the pushing assembly is matched, the effect of pushing and placing goods can be achieved, in the whole process, the goods can be continuously transported on the conveying assembly, the effect of continuously feeding and placing goods shelves with different heights can be achieved, therefore, the transfer time of a forklift is shortened, and the efficiency is higher.
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Description

Technical Field

[0001] The present invention relates to the technical field related to logistics supply chain, and in particular to a conveying device for logistics supply chain. Background Art

[0002] The logistics supply chain is a functional network structure that revolves around the core enterprise and controls the information flow, logistics flow, and capital flow, starting from the purchase of raw materials, making intermediate products and final products, and finally delivering the products to consumers through the sales network. It connects suppliers, manufacturers, distributors, retailers and end users into an integrated whole. In the logistics supply chain, the horizontal transportation, inclined transportation and vertical stacking of logistics goods can be achieved through conveying devices. In the existing market, the devices for horizontal and vertical transportation of logistics goods through transportation devices are very mature. They all use the motor to transmit power to the drive roller through the reducer. The drive roller drives the conveyor belt through the friction between the drive roller and the conveyor belt to achieve the purpose of transportation and inclined transportation. If you apply for No. 20210492036.1, a conveying method disclosed in a conveying device for a logistics supply chain, but it can only perform the position transfer of logistics goods. However, in the process of the logistics supply chain, the logistics goods also need to be stacked on large logistics racks. In the existing market, when stacking logistics, the stacked batch logistics are generally transferred by a forklift first, and then the logistics goods are transferred and vertically lifted by the forklift. After that, the batch logistics are pushed to the storage board in the middle of the rack to complete the logistics stacking work. However, when transferring and conveying by a forklift, only one batch of goods can be transported in a single trip, and it will also take a lot of time to move on the distance, which leads to low efficiency when transporting goods. Summary of the Invention

[0003] The purpose of the present invention is to provide a conveying device for a logistics supply chain to solve the problem raised in the above-mentioned background technology that the conveying devices currently on the market use forklifts to transfer and vertically lift the logistics goods during transportation and stacking, and then push the batches of logistics onto the storage plate in the middle of the storage rack to complete the logistics stacking work. However, when transferring and conveying by forklifts, only one batch of goods can be transported in a single trip, and a lot of time will be consumed in the movement of the distance, which leads to the problem of low efficiency when transporting goods.

[0004] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a conveying device for a logistics supply chain, comprising a support assembly for supporting the entire device, a rolling assembly being provided at the bottom of the support assembly for controlling the movement of the entire conveying device, the support assembly being arranged in a "T"-shaped structure when viewed from above, a transfer assembly being provided at the horizontal position of the "T"-shaped structure of the support assembly, and a conveying assembly being provided at the vertical position of the "T"-shaped structure of the support assembly, the conveying assembly being used to convey external logistics goods to the top of the transfer assembly, and loading and unloading assemblies connected by a rotating assembly being provided on both sides of the transfer assembly, and the rotating assembly being used to rotate and lift the loading and unloading assemblies so that the loading and unloading assemblies correspond in height to the storage plate on the external cargo rack, and a pushing assembly is also provided at the top of the loading and unloading assemblies, the pushing assembly being used to push the logistics goods on the loading and unloading assemblies to be unloaded and the logistics goods on the storage plate to be loaded.

[0005] Preferably, the support assembly includes a support plate, a fixed column and a lifting cylinder. The support plate has a "T"-shaped structure when viewed from above, and four lifting cylinders are distributed in a rectangular shape on the lateral position of the "T"-shaped structure. Four fixed columns are distributed in a rectangular shape on the longitudinal position of the "T"-shaped structure of the support plate. The top ends of the four lifting cylinders are connected to the bottom of the transfer assembly, and the top ends of the four fixed columns are connected to the bottom of the conveying assembly.

[0006] Preferably, the conveying assembly includes a first motor, a mounting frame and a conveying body, the mounting frames are symmetrically arranged in two groups, and each group is connected to the top of two fixed columns, a conveying body is arranged in the middle of the two symmetrically arranged mounting frames, and the outer side of the conveying body is driven and controlled by the first motor, the first motor and the mounting frame are fixed by bolts, the conveying body includes conveying rollers arranged at equal intervals, and pulleys are coaxially connected to the outer shafts of the conveying rollers, and the pulleys on adjacent conveying rollers are connected by a transmission belt.

[0007] Preferably, the transfer assembly includes a transfer belt, a transfer roller, a fixed rod, a second motor and a connecting bending rod. There are two transfer rollers, and a transfer belt is provided on the outside of the transfer roller. The outer side of the intermediate shaft of the transfer roller is connected to the fixed rod by a bearing. There are four fixed rods connected to the top of the lifting cylinder, and the gap distance between the two fixed rods on the same side is consistent with the size of the conveying assembly. A connecting bending rod is also integrated at the bottom of the outer side of the fixed rod, and a second motor is provided at the top of the intermediate shaft of one of the transfer rollers for drive control.

[0008] Preferably, the loading and unloading components include a fixed roller, a connecting rod, a conveyor belt, an adjustment component, a support rod, a third motor, a movable roller and a tension adjustment component. The fixed roller bearing is connected to the top position on one side of the two connecting rods, and the top of the other side of the two connecting rods are provided with an adjustment component. A movable roller is provided in the middle of the two adjustment components, and a conveyor belt is provided on the outside of the movable roller and the fixed roller. A tension adjustment component is also provided at the bottom of the two connecting rods for controlling the tension of the conveyor belt.

[0009] Preferably, the top end of the intermediate shaft of the movable roller body is coaxially connected to a third motor, and the outer side of the third motor is connected to the outside of the adjustment assembly through a support rod. The adjustment assembly includes a fourth motor, a rotating screw and a moving rod. The fourth motor is bolted to the top end of one side of the connecting rod, and the top end of the fourth motor is coaxially connected to a rotating screw. The top end of the rotating screw is provided with a moving rod threadedly connected thereto, and the moving rod is fixed to the support rod.

[0010] Preferably, the rotating assembly includes a meshing gear, a first rotating rod and a second rotating rod, the meshing gear and the bearing hole at the top end of the first rotating rod are coaxially arranged, the bearing hole at the top end of the first rotating rod is bearing-connected to the shaft in the middle of the transfer roller, and a meshing gear is integrally installed on the outer side of the bearing hole of the first rotating rod, a driving assembly is provided on the outer side of the meshing gear for drive control, the other side top end of the first rotating rod is axially connected to the connecting rod, and the two side top ends of the second rotating rod are respectively axially connected to the outer wall of the tension adjusting assembly and the outer wall of the connecting bending rod.

[0011] Preferably, the pushing assembly includes a connecting cross bar, a connecting vertical bar, a slider, a telescopic cylinder, a rotating assembly and a gear lever. Two connecting cross bars are symmetrically arranged, and a connecting vertical bar is provided at the bottom thereof to connect with the slider. The slider is arranged in a reserved groove at the top of the connecting bar. Telescopic cylinders are provided on both sides of the slider. A rotating assembly is provided at the top of both sides of the connecting cross bar to connect with the gear lever.

[0012] Preferably, the rotating assembly includes a fifth motor, a driving gear and a driven gear, a mounting rod is provided on the outside of the fifth motor and is connected to the connecting cross bar, and the top of the fifth motor is coaxially connected to the driving gear, a driven gear is provided on the outside of the driving gear, and the intermediate shaft of the driven gear is connected to the rotating rod at the top of the gear lever.

[0013] Preferably, the driving assembly includes a sixth motor and a connecting gear. The sixth motor is installed on the outside of the fixing rod, and the connecting gear coaxially connected to the top end of the sixth motor is meshed with the meshing gear.

[0014] Compared with the prior art, the beneficial effects of the present invention are: the conveying device for the logistics supply chain;

[0015] A conveying assembly is provided, which can transport batch-stacked logistics goods, so that the goods can be moved to the top of the transfer assembly, and the goods can be transferred to both sides through the transfer assembly, and then reach the top of the conveying assembly. The conveying assembly can be rotated and lifted under the action of the rotating assembly. When it is lifted to the same height as the storage plate, the top end of the conveying assembly can be made to reach a position of contact with the storage plate through the adjusting assembly. Thereafter, the pushing assembly can be used to achieve the effect of pushing and placing the goods. During the whole process, the goods can be continuously transported on the conveying assembly. With the setting of the transfer assembly and the loading and unloading assembly, the effect of continuously loading and placing the goods on the shelves of different heights can be achieved, thereby reducing the transfer time of the forklift and improving efficiency.

[0016] Since the loading and unloading components can rotate under the action of the rotating component, the loading and unloading components can be rotated and lifted when the entire device is not in use, thereby reducing the space occupied on the horizontal surface and making the storage of the entire device more convenient;

[0017] There are gear levers on the front and rear top ends of the connecting cross bar. Therefore, when transferring the goods on the storage plate, you can push the connecting cross bar to make it enter the interior of the storage plate, and then control the gear lever to rotate, so that the baffle is limited at the rear side of the goods. In conjunction with the contraction of the telescopic cylinder, the gear lever can drive the goods to move to the top of the loading and unloading assembly. In conjunction with the movement of the loading and unloading assembly to the horizontal position of the transfer assembly, the effect of outputting and transporting the goods can be completed. When it is necessary to input the goods, you only need to control the gear lever on the front side of the connecting cross bar to rotate and limit the front side of the goods. After that, the goods will be pushed to the top of the storage plate. The whole process is automated and does not require personnel to operate a forklift for position control. It has a high degree of automation and can also ensure the accuracy of goods output and input. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the top view of the structure of the present invention;

[0019] Figure 2 This is a side structural diagram of the present invention;

[0020] Figure 3 This is a schematic diagram of the structure of the loading and unloading components of the present invention;

[0021] Figure 4 This is a schematic diagram of the connection structure between the transfer component and the conveying component of the present invention;

[0022] Figure 5 This is a partially enlarged structural diagram of the connection between the adjustment assembly and the movable roller body of the present invention;

[0023] Figure 6 This is an enlarged structural diagram of the connection between the drive assembly and the rotating assembly of the present invention;

[0024] Figure 7 This is a schematic diagram of the partially enlarged structure of the top portion of the conveying assembly of the present invention;

[0025] Figure 8 This is an enlarged structural diagram of the connection between the rotating assembly and the loading and unloading assembly of the present invention;

[0026] Figure 9 A schematic diagram of the structure of the propulsion assembly of the present invention;

[0027] Figure 10 This is a partial enlarged structural diagram of the connection between the rotating assembly and the gear lever of the present invention;

[0028] Figure 11 It is a schematic diagram of the back structure of the present invention.

[0029] In the picture:

[0030] 1. Support assembly; 11. Support plate; 12. Fixing column; 13. Lifting cylinder;

[0031] 2. Conveying assembly; 21. First motor; 22. Mounting frame; 23. Conveying body; 231. Conveying roller; 232. Pulley; 233. Conveying belt;

[0032] 3. Transfer assembly; 31. Transfer belt; 32. Transfer roller; 33. Fixing rod; 34. Second motor; 35. Connecting bending rod;

[0033] 4. Loading and unloading assembly; 41. Fixed roller; 42. Connecting rod; 421. Reserved slot; 43. Conveyor belt; 44. Adjustment assembly; 441. Fourth motor; 442. Rotating screw; 443. Moving rod; 45. Support rod; 46. Third motor; 47. Movable roller; 48. Tension adjustment assembly;

[0034] 5. Rotating assembly; 51. Meshing gear; 52. First rotating rod; 53. Second rotating rod;

[0035] 6. Pushing assembly; 61. Connecting crossbar; 62. Connecting vertical bar; 63. Sliding block; 64. Telescopic cylinder; 65. Rotating assembly; 651. Fifth motor; 652. Driving gear; 653. Driven gear; 66. Shift lever;

[0036] 7. Drive assembly; 71. Sixth motor; 72. Connecting gear. DETAILED DESCRIPTION

[0037] Below, the present application is further described in conjunction with specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0038] In the description of this application, it should be noted that for directional words, such as the terms "center", "horizontal", "longitudinal", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and so on, the directions and positional relationships indicated are based on the directions or positional relationships shown in the accompanying drawings, which are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and cannot be understood as limiting the specific scope of protection of this application.

[0039] It should be noted that the terms "first", "second", etc. in the description and claims of this application are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence.

[0040] A conveying device for a logistics supply chain includes a support component 1 for supporting the entire device, a rolling component is provided at the bottom of the support component 1 for controlling the movement of the entire conveying device, the support component 1 is arranged in a "T"-shaped structure when viewed from above, a transfer component 3 is provided at the horizontal position of the "T"-shaped structure of the support component 1, and a conveying component 2 is provided at the vertical position of the "T"-shaped structure of the support component 1, the conveying component 2 is used to convey external logistics goods to the top of the transfer component 3, and loading and unloading components 4 connected by a rotating component 5 are provided on both sides of the transfer component 3, and the rotating component 5 is used to rotate and lift the loading and unloading components 4 so that the loading and unloading components 4 correspond to the height of the storage plate on the external cargo rack, and a pushing component 6 is further provided at the top of the loading and unloading components 4, and the pushing component 6 is used to push the logistics goods on the loading and unloading components 4 to unload and push the logistics goods on the storage plate to load;

[0041] The present application provides a conveying device for a logistics supply chain with an upper and lower material assembly 4. Specifically, when in use, first, the entire device is set in a suitable position under the action of the supporting assembly 1, and then the external goods are transferred to the top of the transfer assembly 3 through the conveying assembly 2. Through the transfer work of the transfer assembly 3, the goods will be transferred to the top of the upper and lower material assemblies 4 on both sides. After that, the rotating assembly 5 is controlled to rotate, which will cause the upper and lower material assemblies 4 to rotate and lift. After reaching the appropriate height, the pushing assembly 6 is controlled to push the goods, which will push the goods on the upper and lower material assemblies 4 to the storage plate in the middle of the storage rack to complete the loading work. When unloading is required, the goods on the storage plate can be pushed to the top of the upper and lower material assembly 4 by the pushing mechanism. As the upper and lower material assembly 4 reaches the height of the transfer assembly 3, it will reach the top of the transfer assembly 3. After that, the pushing cylinder on the back of the push plate on the other side of the transfer assembly 3 is started, so that it drives the push plate to push the goods, so that the goods reach the top of the conveying assembly 2 for output, thereby completing the unloading work;

[0042] At the same time, when the position of the entire device needs to be moved, the self-locking roller in the rolling assembly at the bottom of the support assembly 1 can be unlocked, and then the entire conveying device can be controlled by the rolling assembly to move to the appropriate position and then the roller can be self-locked.

[0043] Among them, according to Figure 1 and Figure 2 As shown, the support assembly 1 includes a support plate 11, a fixed column 12 and a lifting cylinder 13. The support plate 11 has a "T"-shaped structure when viewed from above, and four lifting cylinders 13 are distributed in a rectangular manner in the transverse position of the "T"-shaped structure. Four fixed columns 12 are distributed in a rectangular manner in the longitudinal position of the "T"-shaped structure of the support plate 11. The top ends of the four lifting cylinders 13 are connected to the bottom of the transfer assembly 3, and the top ends of the four fixed columns 12 are connected to the bottom of the conveying assembly 2.

[0044] In this application, the fixed column 12 is used to support the conveying component 2, and the lifting cylinder 13 is used to support the transfer component 3. When the height of the shelf is too high and the height of the loading and unloading component 4 after rotation cannot meet the height of the shelf, the lifting cylinder 13 can be started to lift the entire transfer component 3.

[0045] Further, according to Figure 4 and Figure 7As shown, the conveying assembly 2 includes a first motor 21, a mounting frame 22 and a conveying body 23. The mounting frames 22 are symmetrically arranged in two groups, and each group is connected to the top of two fixed columns 12. The conveying body 23 is arranged in the middle of the two symmetrically arranged mounting frames 22, and the outer side of the conveying body 23 is driven and controlled by the first motor 21. The first motor 21 and the mounting frame 22 are fixed by bolts. The conveying body 23 includes conveying rollers 231 arranged at equal intervals, and the outer shafts of the conveying rollers 231 are coaxially connected to pulleys 232. The pulleys 232 on adjacent conveying rollers 231 are connected by a transmission belt 233.

[0046] Among them, when the conveying component 2 is working, it is necessary to start the first motor 21 so that it drives the conveying roller 231 to rotate. When the conveying roller 231 rotates, the setting of the transmission belt 233 and the pulley 232 will cause each conveying roller 231 to rotate. Therefore, when the goods are placed on the conveying roller 231, as the conveying roller 231 rotates, the purpose of conveying the goods is achieved.

[0047] Further, according to Figure 4 As shown, the transfer assembly 3 includes a transfer belt 31, a transfer roller 32, a fixed rod 33, a second motor 34 and a connecting bending rod 35. There are two transfer rollers 32, and the transfer belt 31 is provided on the outside. The outer side of the intermediate shaft of the transfer roller 32 is connected to the fixed rod 33 by a bearing. The fixed rod 33 is provided with four rods connected to the top of the lifting cylinder 13, and the gap distance between the two fixed rods 33 on the same side is consistent with the size of the conveying assembly 2. The bottom of the fixed rod 33 at the outer side is also integrally installed with a connecting bending rod 35. The top of the intermediate shaft of one of the transfer rollers 32 is provided with a second motor 34 for drive control.

[0048] Specifically, when the transfer component 3 is working, the second motor 34 needs to be started so that it drives the transfer roller 32 at its top to rotate. When the transfer roller 32 rotates, it will drive the transfer belt 31 to move, completing the transfer of the goods transported from the conveying component 2.

[0049] As a further preferred embodiment of the present invention, according to Figure 3 、 Figure 5 、 Figure 6 and Figure 8As shown, the loading and unloading assembly 4 includes a fixed roller body 41, a connecting rod 42, a conveyor belt 43, an adjustment assembly 44, a support rod 45, a third motor 46, a movable roller body 47 and a tension adjustment assembly 48. The fixed roller body 41 is connected to the top position of one side of the two connecting rods 42 with a bearing, and the top of the other side of the two connecting rods 42 is provided with an adjustment assembly 44. A movable roller body 47 is provided in the middle of the two adjustment assemblies 44. The conveyor belt 43 is provided on the outside of the movable roller body 47 and the fixed roller body 41. A tension adjustment assembly 48 is also provided at the bottom of the two connecting rods 42 for controlling the tension of the conveyor belt 43.

[0050] The top end of the intermediate shaft of the movable roller body 47 is coaxially connected to the third motor 46, and the outer side of the third motor 46 is connected to the outside of the adjustment component 44 through the support rod 45. The adjustment component 44 includes a fourth motor 441, a rotating screw 442 and a moving rod 443. The fourth motor 441 is bolted to the top end of one side of the connecting rod 42, and the top end of the fourth motor 441 is coaxially connected to the rotating screw 442. The top end of the rotating screw 442 is provided with a moving rod 443 threadedly connected thereto, and the moving rod 443 is fixed to the support rod 45.

[0051] The rotating assembly 5 includes a meshing gear 51, a first rotating rod 52, and a second rotating rod 53. The meshing gear 51 is coaxially arranged with the bearing hole at the top end of the first rotating rod 52. The bearing hole at the top end of the first rotating rod 52 is connected to the shaft in the middle of the transfer roller 32 by a bearing. The meshing gear 51 is integrally installed on the outer side of the bearing hole of the first rotating rod 52. A driving assembly 7 is provided on the outer side of the meshing gear 51 for drive control. The other end of the first rotating rod 52 is axially connected to the connecting rod 42. The two ends of the second rotating rod 53 are axially connected to the outer wall of the tension adjustment assembly 48 and the outer wall of the connecting bending rod 35 respectively.

[0052] When the goods move to the loading and unloading assembly 4 along with the transfer assembly 3, the driving assembly 7 can be started at this time, so that it drives the meshing gear 51 on the first rotating rod 52 to rotate. When the meshing gear 51 rotates, it will drive the first rotating rod 52 to rotate, so that the top end of the first rotating rod 52 drives the entire loading and unloading assembly 4 to rotate and lift. When the first rotating rod 52 rotates, due to the limit setting of the second rotating rod 53, the second rotating rod 53 will also rotate, thereby achieving the effect of stably lifting the loading and unloading assembly 4. In the present application, the top end of the first rotating rod 52 is connected to the transfer roller 32 by a bearing. Therefore, when the second motor 34 rotates, it has no effect on the first rotating rod 52.

[0053] After the loading and unloading assembly 4 reaches the appropriate height, the third motor 46 can be started to drive the movable roller 47 at its top to rotate. When it rotates, it cooperates with the setting of the fixed roller 41 to rotate the conveyor belt 43, thereby conveying the goods;

[0054] During transportation, when the distance between the loading and unloading assembly 4 and the storage plate is too large, the fourth motor 441 can be started to drive the rotating screw 442 at its top to rotate, thereby threading the rotating screw 442 and the moving rod 443 to be connected with each other, thereby causing the moving rod 443 to drive the movable roller 47 to change its position, and in conjunction with the setting of the tension adjustment assembly 48, the top of the loading and unloading assembly 4 will be extended to reduce the distance between the loading and unloading assembly 4 and the storage plate. As a result, when the conveyor belt 43 on the loading and unloading assembly 4 continues to move, the loading work can be completed;

[0055] After loading is completed, the loading and unloading assembly 4 is controlled to reach the horizontal position with the transfer assembly 3 again, and the transfer and loading work of the next cargo can be carried out again.

[0056] As a further preferred embodiment of the present invention, according to Figure 10 and Figure 11 As shown, the pushing assembly 6 includes a connecting cross bar 61, a connecting vertical bar 62, a slider 63, a telescopic cylinder 64, a rotating assembly 65 and a gear rod 66. There are two symmetrical connecting cross bars 61, and a connecting vertical bar 62 is provided at the bottom thereof to connect with the slider 63. The slider 63 is provided in the reserved groove 421 at the top of the connecting rod 42. Telescopic cylinders 64 are provided on both sides of the slider 63. Rotating assemblies 65 are provided at the top of both sides of the connecting cross bar 61 to connect with the gear rod 66.

[0057] The rotating assembly 65 includes a fifth motor 651, a driving gear 652, and a driven gear 653. A mounting rod is provided on the outside of the fifth motor 651 and connected to the connecting crossbar 61. The top of the fifth motor 651 is coaxially connected to the driving gear 652. A driven gear 653 is provided on the outside of the driving gear 652. The intermediate shaft of the driven gear 653 is connected to the rotating rod at the top of the gear lever 66.

[0058] Among them, when it is necessary to control the loading of goods by pushing component 6, the rotating component 65 connecting the cross bar 61 to the side of the transfer component 3 can be started, and the fifth motor 651 can be started so that it drives the driven gear 653 to rotate through the driving gear 652. When the driven gear 653 rotates, the shift rod 66 on the side of the transfer component 3 will rotate to a horizontal state. Therefore, starting the telescopic cylinder 64 will drive the connecting cross bar 61 and the shift rod 66 to move toward one side of the storage plate. Since the shift rod 66 is at the rear side of the goods at this time, it will push the goods to move toward the position of the storage plate, completing the loading work;

[0059] When unloading, it is necessary to move the connecting cross bar 61 to the inside of the storage plate under the action of the telescopic cylinder 64, and then control the rotating component 65 biased toward the side of the storage plate to drive the gear lever 66 biased toward the side of the storage plate to rotate to a horizontal state. After that, the telescopic cylinder 64 is controlled again to move toward the position of the transfer component 3. At this time, the gear lever 66 limits the front side of the goods, and will drive the goods to move toward the position of the transfer component 3, and then reach the top of the loading and unloading component 4 to complete the unloading work.

[0060] Specifically, according to Figure 6 As shown, the driving assembly 7 includes a sixth motor 71 and a connecting gear 72. The sixth motor 71 is mounted on the outside of the fixing rod 33, and the connecting gear 72 coaxially connected to the top end of the sixth motor 71 is meshed with the meshing gear 51.

[0061] Specifically, it is necessary to first start the sixth motor 71 so that it drives the connecting gear 72 to rotate, and the connecting gear 72 drives the meshing gear 51 to rotate, thereby causing the meshing gear 51 to drive the first rotating rod 52 to rotate around the intermediate axis of the second motor 34, thereby achieving the effect of controlling the loading and unloading components 4 to rotate and lift.

[0062] The contents not described in detail in this specification belong to the prior art known to those skilled in the art.

[0063] The above describes the basic principles, main features, and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-described embodiments. The above-described embodiments and the specification merely illustrate the principles of the present application. Various changes and improvements may be made to the present application without departing from the spirit and scope of the present application. These changes and improvements fall within the scope of the present application for which protection is sought. The scope of protection claimed by the present application is defined by the appended claims and their equivalents.

Claims

1. A conveying device for a logistics supply chain, comprising a support assembly (1) for supporting the entire device, wherein a rolling assembly is provided at the bottom of the support assembly (1) for controlling the entire conveying device to move, characterized in that: The support component (1) is arranged in a "T"-shaped structure when viewed from above. A transfer component (3) is arranged at a horizontal position of the "T"-shaped structure of the support component (1), and a conveying component (2) is arranged at a vertical position of the "T"-shaped structure of the support component (1). The conveying component (2) is used to convey external logistics goods to the top of the transfer component (3). Loading and unloading components (4) connected by rotating components (5) are arranged on both sides of the transfer component (3), and the rotating components (5) are used to rotate and lift the loading and unloading components (4) so that the loading and unloading components (4) correspond to the height of the storage plate on the external cargo rack. A pushing component (6) is also arranged at the top of the loading and unloading components (4). The pushing component (6) is used to push the logistics goods on the loading and unloading components (4) to be unloaded and push the logistics goods on the storage plate to be loaded.

2. A conveying device for a logistics supply chain according to claim 1, characterized in that: The support assembly (1) includes a support plate (11), a fixed column (12) and a lifting cylinder (13). The support plate (11) is a "T"-shaped structure when viewed from above, and four lifting cylinders (13) are distributed in a rectangular manner on the transverse position of the "T"-shaped structure. Four fixed columns (12) are distributed in a rectangular manner on the longitudinal position of the "T"-shaped structure of the support plate (11). The top ends of the four lifting cylinders (13) are connected to the bottom of the transfer assembly (3), and the top ends of the four fixed columns (12) are connected to the bottom of the conveying assembly (2).

3. The conveying device for logistics supply chain according to claim 1, characterized in that: The conveying assembly (2) comprises a first motor (21), a mounting frame (22) and a conveying body (23); the mounting frame (22) is symmetrically provided with two groups, and each group is connected to the top of two fixed columns (12); a conveying body (23) is provided in the middle of the two symmetrically provided mounting frames (22), and the outer side of the conveying body (23) is driven and controlled by the first motor (21); the first motor (21) and the mounting frame (22) are fixed by bolts; the conveying body (23) comprises conveying rollers (231) arranged at equal intervals, and pulleys (232) are coaxially connected to the outer shafts of the conveying rollers (231); the pulleys (232) on adjacent conveying rollers (231) are connected by a transmission belt (233).

4. The conveying device for logistics supply chain according to claim 1, characterized in that: The transfer assembly (3) includes a transfer belt (31), a transfer roller (32), a fixed rod (33), a second motor (34) and a connecting bending rod (35). Two transfer rollers (32) are provided, and a transfer belt (31) is provided on the outside of the transfer roller (32). The outer side of the intermediate shaft of the transfer roller (32) is connected to the fixed rod (33) by a bearing. The fixed rod (33) is provided with four connecting rods connected to the top of the lifting cylinder (13), and the gap distance between the two fixed rods (33) on the same side is consistent with the size of the conveying assembly (2). The bottom of the fixed rod (33) at the outer side is also integrally installed with a connecting bending rod (35). The top of the intermediate shaft of one of the transfer rollers (32) is provided with a second motor (34) for driving control.

5. The conveying device for logistics supply chain according to claim 4, characterized in that: The loading and unloading assembly (4) includes a fixed roller (41), a connecting rod (42), a conveying belt (43), an adjusting assembly (44), a supporting rod (45), a third motor (46), a movable roller (47) and a tension adjusting assembly (48). The fixed roller (41) is connected to the top position of one side of the two connecting rods (42) by a bearing, and the top positions of the other sides of the two connecting rods (42) are both provided with an adjusting assembly (44). A movable roller (47) is provided in the middle of the two adjusting assemblies (44). The conveying belt (43) is provided outside the movable roller (47) and the fixed roller (41). A tension adjusting assembly (48) is also provided at the bottom of the two connecting rods (42) for controlling the tension of the conveying belt (43).

6. The conveying device for logistics supply chain according to claim 5, characterized in that: The top end of the intermediate shaft of the movable roller body (47) is coaxially connected to a third motor (46), and the outer side of the third motor (46) is connected to the outer side of the adjustment component (44) through a support rod (45). The adjustment component (44) includes a fourth motor (441), a rotating screw rod (442) and a moving rod (443). The fourth motor (441) is bolted to the top end of one side of the connecting rod (42), and the top end of the fourth motor (441) is coaxially connected to the rotating screw rod (442). The top end of the rotating screw rod (442) is provided with a moving rod (443) threadedly connected thereto, and the moving rod (443) is fixed to the support rod (45).

7. The conveying device for logistics supply chain according to claim 5, characterized in that: The rotating assembly (5) includes a meshing gear (51), a first rotating rod (52) and a second rotating rod (53), wherein the meshing gear (51) is coaxially arranged with a bearing hole at the top end of the first rotating rod (52), the bearing hole at the top end of the first rotating rod (52) is bearing-connected with the shaft in the middle of the transfer roller (32), and a meshing gear (51) is integrally installed on the outer side of the bearing hole of the first rotating rod (52), and a driving assembly (7) is provided on the outer side of the meshing gear (51) for driving control, the top end of the other side of the first rotating rod (52) is axially connected to the connecting rod (42), and the top ends of both sides of the second rotating rod (53) are respectively axially connected to the outer wall of the tension adjustment assembly (48) and the outer wall of the connecting bending rod (35).

8. The conveying device for logistics supply chain according to claim 5, characterized in that: The pushing assembly (6) comprises a connecting crossbar (61), a connecting vertical bar (62), a slider (63), a telescopic cylinder (64), a rotating assembly (65) and a shift rod (66). Two connecting crossbars (61) are symmetrically arranged, and a connecting vertical bar (62) is arranged at the bottom thereof to connect with the slider (63). The slider (63) is arranged in a reserved groove (421) at the top of the connecting rod (42). Telescopic cylinders (64) are arranged on both sides of the slider (63). The top of both sides of the connecting crossbar (61) is provided with a rotating assembly (65) connected to the shift rod (66).

9. The conveying device for logistics supply chain according to claim 8, characterized in that: The rotating assembly (65) includes a fifth motor (651), a driving gear (652) and a driven gear (653). The outer side of the fifth motor (651) is provided with a mounting rod connected to the connecting crossbar (61), and the top end of the fifth motor (651) is coaxially connected to the driving gear (652). The outer side of the driving gear (652) is provided with a driven gear (653), and the intermediate shaft of the driven gear (653) is connected to the rotating rod at the top end of the gear lever (66).

10. The conveying device for logistics supply chain according to claim 7, characterized in that: The driving assembly (7) comprises a sixth motor (71) and a connecting gear (72). The sixth motor (71) is mounted on the outside of the fixing rod (33), and the connecting gear (72) coaxially connected at the top end of the sixth motor (71) is meshed with the meshing gear (51).