Intelligent control method and system for logistics sorting

By combining intelligent controllers and scanners, and utilizing the design of guiding and rotating components, the problems of package accumulation and falling in logistics sorting systems have been solved, achieving stable sorting and protected transmission, and reducing delay and damage rates.

CN121491031APending Publication Date: 2026-02-10YANGO UNIV
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Patent Information

Application Number
CN202511627627.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-07
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

In existing intelligent control systems for logistics sorting, the accumulation and falling of packages on guide components can easily lead to problems such as misaligned information processing, high delay rates, and increased package damage rates.

Method used

By designing an intelligent controller that works in conjunction with a scanner, and utilizing the guiding components on the transmission device and the tilt adjustment of the placement seat, combined with the reciprocating swing of the rotating components and the linkage rod, stable sorting and protective transmission of packages can be achieved.

Benefits of technology

It effectively reduced the delay and damage rates of packages, improved sorting efficiency, reduced manual intervention, and ensured the accuracy of information processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a logistics sorting intelligent control method and system.The logistics sorting intelligent control system structurally comprises an intelligent controller, a main body, a storage groove, a scanner, a conveying table, a sorting table and a conduction device.When the logistics sorting intelligent control system is used, sorted parcels can be conducted to a placement base on the corresponding conduction device, and then the parcels are placed on the placement base; the bottoms of the guiding assemblies are fixedly connected to the left side and the right side of the main body in parallel, the tops of the guiding assemblies are provided with the containing bases in parallel, the side edges of the containing bases can be attached to the two sides of the sorting table, the positions of the containing bases are flush with the two sides of the sorting table, and the sorting table can quickly sort corresponding packages onto the containing bases in the package sorting process; and a baffle is installed on one side of the containing base and swings in an opening and closing mode under the action of the steering assembly to block and conduct packages on the containing base, so that the packages on the containing base can be stably matched with the guiding assembly under the action of the baffle, and the received packages are guided into the storage groove to be sorted.
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Description

Technical Field

[0001] This invention relates to the field of logistics sorting technology, specifically to an intelligent control method and system for logistics sorting. Background Technology

[0002] With economic development, the logistics industry has evolved from a downstream sector to a leading sector guiding production and promoting consumption. Logistics is the process of organically combining functions such as transportation, storage, procurement, loading and unloading, packaging, distribution processing, delivery, and information processing to meet user requirements during the physical flow of goods from the supply location to the receiving location, based on actual needs. The increasing number and variety of parcels require more information collection, including parcel volume, weight, and barcode data. Areas for improvement when using intelligent logistics sorting control systems include: When using an intelligent logistics sorting control system, a pressure sensor is normally installed. When a package falls onto a rotating roller, it presses the roller downwards, triggering the pressure sensor. This activates a second servo motor, which drives a drive rod to rotate, thus conveying the package onto the roller and allowing it to enter the corresponding sorting slot more quickly and smoothly. During operation, the intelligent logistics sorting control system sorts packages onto a conveyor belt and places them into corresponding guide components. These guide components then guide the packages into storage slots. Because the placement seats on the guide components are parallel to the guide components, individual packages... After being placed in the placement seat, packages without external pushing force will remain on top of it. Therefore, as multiple packages are pushed and stacked, the packages at the front of the placement seat will be pushed down and fall into the storage slot, while the packages at the back will also remain and pile up on the placement seat. Staff need to process the packages on the placement seat in real time, which not only causes information processing errors but also easily leads to package delays. Furthermore, there is a certain distance between the package and the storage slot during the process of the package falling from the placement seat. If the package falls directly from the placement seat, it will be directly impacted, which will easily damage the contents of the package. As a result, the damage rate of the packages continues to increase, resulting in certain losses. Summary of the Invention

[0003] To address the shortcomings of existing technologies, this invention is achieved through the following technical solution: a logistics sorting intelligent control method and system, the structure of which includes an intelligent controller, a main body, storage slots, a scanner, a conveyor, a sorting table, and a transmission device. The back of the intelligent controller is attached to the side of the scanner, and the intelligent controller and the scanner are electrically connected. The scanner is placed on the upper part of the conveyor and the conveyor is connected through the lower part of the scanner. The conveyor and the sorting table are installed parallel to each other on the main body. Multiple transmission devices are provided on both the left and right sides of the sorting table, and each of the multiple transmission devices has a corresponding storage slot at its lower end. The multiple storage slots are arranged parallel to each other on both sides of the lower end of the sorting table.

[0004] As a further optimization of the invention, the transmission device is provided with a steering component, a baffle, a placement seat, and a guide component. The steering component is vertically installed on the side of the placement seat, and a baffle is fixedly connected to one side of the steering component. The baffle is parallel to the upper end of the placement seat, and the lower end of the placement seat is matched and connected to the guide component. The placement seat and the guide component are connected to form an "=" shape.

[0005] As a further optimization of the invention, the guide assembly includes a contact block, a rotating assembly, a plug, a locking plate, a linkage rod, and a support. The contact block is fitted into the side of the support, and the top of the support has four linkage rods connected to it. The four linkage rods are of different lengths and are connected to the curved surface at the lower end of the rotating assembly. The top of the rotating assembly is fixedly connected to the locking plate, and a plug is vertically inserted into the middle of the locking plate. The plug and the locking plate are connected to form a "⊥" shaped structure on the rotating assembly.

[0006] As a further optimization of the invention, the intelligent controller is programmed to sort packages by category or region to ensure accurate and rapid sorting. After receiving information, the intelligent controller conveys the packages to the sorting table via a conveyor belt and sorts them onto the corresponding transmission device. The placement seat on the transmission device receives the packages conveyed by the sorting table. Upon receiving the packages, the guide component adjusts the angle of the placement seat, allowing the packages to be pushed downwards by the baffle. The placement seat is fixedly connected to the card plate via a plug. The rotating component and linkage rod adjust the angle of the card plate to tilt the placement seat and transmit the packages.

[0007] As a further optimization of the invention, the package is transported to the scanner via a conveyor. The intelligent controller works with the scanner to set a program for the sorting category or sorting area of ​​the package, so as to sort the items correctly and quickly. After scanning and identification, the package is transported to the sorting table via the conveyor. The sorting table is equipped with multiple transmission devices, which can classify the package according to the sorting category or sorting area.

[0008] As a further optimization of the invention, the guide components on the transmission device are symmetrically installed on the left and right sides of the main body. The guide components are connected in parallel with the placement seat, and the position of the placement seat is flush with the two sides of the sorting table, so that the package can be sorted onto the placement seat. The placement seat guides the received package into the storage slot for sorting through the guide components.

[0009] As a further optimization of the invention, the bottom of the guide component is fixedly connected to the main body, and the card plate is connected to the placement seat through a plug. The rotating component will drive the placement seat to reciprocate through the card plate. The multiple linkage rods at its lower end will extend and retract with the swing of the rotating component, effectively playing a restraining role.

[0010] As a further optimization of the invention, the rotating assembly includes a reciprocating component, a rotating wheel, a movable seat, a connecting member, a pull rod, and an auxiliary bracket. The reciprocating component is installed in the middle position inside the movable seat, and the middle position of the auxiliary bracket installed inside the movable seat is engaged with the reciprocating component. The auxiliary bracket is connected to rotating wheels on both the left and right sides, and pull rods are connected to both rotating wheels. The ends of the two pull rods away from the rotating wheels are symmetrically connected to the lower ends of the connecting member on both sides. The middle position of the end of the connecting member facing the connecting member is connected to the reciprocating component, and the connecting member is parallel to the reciprocating component on the movable seat.

[0011] As a further optimization of the invention, the top of the connector is fixedly connected to the card plate, the connector swings and adjusts inside the movable seat through the reciprocating assembly, and two pull rods are provided parallel to each other at the lower end of the connector to restrain it.

[0012] As a further optimization of the invention, the reciprocating assembly includes a rotating shaft, support rods, assisting components, guide wheels, swing arc components, limiting slides, and supporting components. The rotating shaft is located in the middle of the swing arc component, and assisting components are inserted into both the upper and lower ends of the rotating shaft. The end of the assisting component away from the rotating shaft is connected to the supporting component, and guide wheels are connected to both the left and right sides of the supporting component. The guide wheels are engaged with the support rods, and each of the four support rods has two guide wheels connected to them. The four support rods are symmetrically arranged on both sides of the two swing arc components, and the upper and lower ends of the four support rods are connected to guide wheels, which are movably connected on the limiting slides on the two swing arc components. The swing arc component has two limiting slides of different sizes inside and outside.

[0013] As a further optimization of the invention, the rotating shaft is engaged and connected in the middle of the auxiliary support, so that the swinging arc component will be symmetrically set on the left and right sides of the rotating shaft. The rotating shaft is connected to the support component through the assist component connected at both the top and bottom ends to drive the support rod to move. The top of the support component will fit and connect with the connecting component, so that the connecting component will move left and right under the action of the support component.

[0014] As a further optimization of the invention, the steering assembly includes a mounting block, a connecting column, an adjusting component, a connecting rod, and a fixing block. The mounting block consists of two blocks, which are symmetrically arranged on both sides inside the connecting column. The end of the mounting block away from the connecting column is fixedly connected to the adjusting component. The adjusting component is located inside the connecting column and can rotate. Two connecting rods are connected through the connecting column, with one end of each connecting rod connected to the mounting block and the other end connected to the fixing block.

[0015] As a further optimization of the invention, the fixing block is fixedly connected to the baffle, and the connecting rod drives the baffle to rotate and adjust inside the connecting column through the fixing block. The two connecting rods are in a triangular structure and are fixedly connected to the adjustment component through the mounting block for movable adjustment.

[0016] As a further optimization of the invention, the adjustment component includes a snap-fit ​​block, a spring pull member, a retaining member, a reset snap-fit ​​member, a limiting rotating member, an elastic member, and a connecting ring. Two snap-fit ​​blocks are provided, and the two snap-fit ​​blocks are equidistantly inserted into the outside of the limiting rotating member. The limiting rotating member is snap-fitted to the reset snap-fit ​​member. The reset snap-fit ​​member has an elastic member connected to it, and the end of the elastic member away from the reset snap-fit ​​member is connected to the snap-fit ​​block. The snap-fit ​​block rotates on the reset snap-fit ​​member via the limiting rotating member. Five spring pull members are provided on the outside of the limiting rotating member, and the five spring pull members are equidistantly inserted into the corresponding retaining members. The five retaining members are equidistantly arranged in a ring inside the connecting ring.

[0017] As a further optimization of the invention, the connecting ring is installed inside the connecting post, and two mounting blocks are fixedly connected to the outside of the connecting ring. The connecting ring is connected to the limiting rotating part through the cooperation of the spring pull member and the retaining member. The limiting rotating part and the connecting ring are connected and rotated and adjusted on the reset card. The reset card limits the movement limit of the limiting rotating part. Beneficial effects

[0018] The present invention provides an intelligent control method and system for logistics sorting, which has the following beneficial effects: 1. In this invention, after sorting, the packages are transferred to the corresponding placement seats on the transfer device. The bottom of the guide component is fixedly connected to the left and right sides of the main body. The top of the guide component is provided with a placement seat, and the side of the placement seat is flush with the sides of the sorting table. The sorting table can quickly sort the corresponding packages onto the placement seats during the sorting process. A baffle is installed on one side of the placement seat. The baffle opens and closes under the action of the steering component to block the transfer of packages on the placement seat. Under the action of the baffle, the packages on the placement seat can be stably guided into the storage slot for sorting under the cooperation of the guide component.

[0019] 2. In this invention, the bottom of the support on the guide assembly is fixedly connected to the main body in parallel. The card plate is connected to the placement seat through a plug. The rotating assembly drives the placement seat to reciprocate through the card plate. Multiple linkage rods at its lower end extend and retract with the swing of the rotating assembly, effectively playing a restraining role. This allows the card plate and the rotating assembly to cooperate stably for swing adjustment. After the card plate swings to a certain tilt angle, its bottom will directly adhere to the inclined surface of the support. The inclined surface of the support is provided with contact blocks. When the card plate moves onto the support, the contact blocks will directly contact and adhere to the card plate, effectively protecting the card plate and preventing it from colliding directly with the inclined surface of the support after swinging, which would affect the transmission of the package. This allows the package to be stably transmitted downward into the storage slot, effectively preventing the package from being directly stuck and piled up on the placement seat, thereby reducing the package delay rate.

[0020] 3. This invention vertically and fixedly inserts a connecting column into the placement base. Two sliders are installed between the connecting column and the adjustment component, and connecting rods inserted into the two sliders are fixed together with a fixing block. The connecting rods drive the baffle to rotate and adjust inside the connecting column through the fixing block. The two connecting rods form a triangular structure and are fixedly connected to the adjustment component through a mounting block to cooperate with the fixing block and the baffle. The fixing block and the connecting rods cooperate to drive the baffle to swing and adjust inside the connecting column, so that the package inside the placement base can slowly move down to the storage slot under the action of the baffle, avoiding the package from falling directly down into the storage slot and being directly impacted, effectively protecting the package and reducing the damage rate of the package. Attached Figure Description

[0021] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a structural diagram of a logistics sorting intelligent control method and system. Figure 2 This is a schematic diagram of a three-dimensional structure of an improved transmission device.

[0022] Figure 3 This is a side view diagram of an improved guide component.

[0023] Figure 4 This is a schematic diagram of the internal structure of an improved rotating component.

[0024] Figure 5 This is a schematic diagram of the internal structure of an improved reciprocating component.

[0025] Figure 6 This is a top-view structural diagram of an improved steering component.

[0026] Figure 7 This is a schematic diagram of the internal structure of an improved adjustment component.

[0027] In the diagram: Intelligent controller-1, main body-2, storage tank-3, scanner-4, conveyor-5, sorting table-6, transmission device-7; Steering assembly-71, baffle-72, mounting base-73, guide assembly-74; Contact block-741, rotating assembly-742, plug-in-743, card plate-744, linkage rod-745, support-746; Reciprocating assembly - 7421, Rotary wheel - 7422, Movable seat - 7423, Connector - 7424, Pull rod - 7425, Auxiliary bracket - 7426; Rotating shaft-4211, support rod-4212, assist component-4213, guide wheel-4214, swing arc component-4215, limit slide-4216, support component-4217; Slider-711, Connecting post-712, Adjusting component-713, Connecting rod-714, Fixing block-715; Snap-fit ​​block-7131, spring pull-out piece-7132, mounting block-7133, reset snap-fit ​​piece-7134, limiting switch piece-7135, elastic piece-7136, connecting ring-7137. Detailed Implementation

[0028] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0029] Example 1 Please see Figures 1-5 , This invention provides an intelligent control method and system for logistics sorting. A logistics sorting intelligent control method and system, the structure of which includes an intelligent controller 1, a main body 2, a storage slot 3, a scanner 4, a conveyor 5, a sorting table 6, and a transmission device 7. The back of the intelligent controller 1 is attached to the side of the scanner 4 and the intelligent controller 1 and the scanner 4 are electrically connected. The scanner 4 is placed on the upper end of the conveyor 5 and the conveyor 5 is connected through the lower end of the scanner 4. The conveyor 5 and the sorting table 6 are installed parallel to each other on the main body 2. Multiple transmission devices 7 are provided on both the left and right sides of the sorting table 6, and the lower ends of the multiple transmission devices 7 correspond one-to-one with the storage slots 3. The multiple storage slots 3 are arranged parallel to each other on both sides of the lower end of the sorting table 6.

[0030] The transmission device 7 is provided with a steering component 71, a baffle 72, a placement seat 73, and a guide component 74. The steering component 71 is vertically installed on the side of the placement seat 73, and the baffle 72 is fixedly connected to one side of the steering component 71. The baffle 72 is parallel to the upper end of the placement seat 73, and the lower end of the placement seat 73 is matched and connected to the guide component 74. The placement seat 73 and the guide component 74 are connected to form an "=" shape.

[0031] The guide assembly 74 includes a contact block 741, a rotating assembly 742, a plug 743, a locking plate 744, a linkage rod 745, and a support 746. The contact block 741 is fitted into the side of the support 746, and the top of the support 746 is provided with four linkage rods 745 connected thereto. The four linkage rods 745 are of different lengths and are connected to the curved surface at the lower end of the rotating assembly 742. The top of the rotating assembly 742 is fixedly connected to the locking plate 744, and the plug 743 is vertically inserted into the middle position of the locking plate 744. The plug 743 and the locking plate 744 are connected to form a "⊥" shaped structure on the rotating assembly 742.

[0032] The intelligent controller 1 is programmed to sort packages by category or region to ensure accurate and rapid sorting. After receiving information, the intelligent controller 1 conveys the packages to the sorting table 6 via the conveyor 5 and sorts them onto the corresponding transmission device 7. The placement seat 73 on the transmission device 7 receives the packages conveyed by the sorting table 6. Upon receiving the packages, the guide component 74 adjusts the angle of the placement seat 73, allowing the packages to be pushed downwards by the baffle 72. The placement seat 73 is fixedly connected to the card plate 744 via the plug 743. The rotating component 742 and the linkage rod 745 adjust the angle of the card plate 744 to tilt the placement seat 73, thus guiding the packages.

[0033] The package is transported to the scanner 4 via the conveyor 5. The intelligent controller 1 works with the scanner 4 to set a program for the sorting category or sorting area of ​​the package so as to sort the items correctly and quickly. After scanning and identification, the package is transported to the sorting table 6 via the conveyor 5. The sorting table 6 is equipped with multiple transmission devices 7, which can classify the package according to the sorting category or sorting area.

[0034] The guide components 74 on the conveying device 7 are symmetrically installed on the left and right sides of the main body 2. The guide components 74 are connected in parallel with the placement seat 73 and the position of the placement seat 73 is flush with the two sides of the sorting table 6, so that the package can be sorted onto the placement seat 73. The placement seat 73 guides the received package into the storage slot 3 for sorting through the guide components 74.

[0035] The bottom of the guide component 74 is fixedly connected to the main body 2. The card plate 744 is connected to the placement seat 73 through the plug 743. The rotating component 742 will drive the placement seat 73 to reciprocate through the card plate 744. The multiple linkage rods 745 at its lower end will extend and retract with the swing of the rotating component 742, effectively playing a restraining role.

[0036] The rotating assembly 742 includes a reciprocating assembly 7421, a rotating wheel 7422, a movable seat 7423, a connecting member 7424, a pull rod 7425, and an auxiliary bracket 7426. The reciprocating assembly 7421 is installed in the middle of the movable seat 7423, and the middle of the auxiliary bracket 7426 installed inside the movable seat 7423 is engaged with the reciprocating assembly 7421. The auxiliary bracket 7426 is connected to the rotating wheel 7422 on both its left and right sides, and the pull rod 7425 is connected to both rotating wheels 7422. The ends of the two pull rods 7425 away from the rotating wheels 7422 are symmetrically connected to the lower ends of the connecting member 7424. The middle of the end of the connecting member 7424 facing the connecting member 7424 is connected to the reciprocating assembly 7421, and the connecting member 7424 is parallel to the reciprocating assembly 7421 on the movable seat 7423.

[0037] The top of the connector 7424 is fixedly connected to the card plate 744. The connector 7424 swings and adjusts inside the movable seat 7423 through the reciprocating component 7421. Two pull rods 7425 are provided parallel to each other at the lower end of the connector 7424 to restrain it.

[0038] The reciprocating assembly 7421 includes a rotating shaft 4211, a support rod 4212, an assist component 4213, a guide wheel 4214, a swing arc component 4215, a limiting slide 4216, and a support component 4217. The rotating shaft 4211 is located in the middle of the swing arc component 4215, and the assist component 4213 is inserted into both the upper and lower ends of the rotating shaft 4211. The end of the assist component 4213 away from the rotating shaft 4211 is connected to the support component 4217, and the support component 4217 is connected to guide wheels on both the left and right sides. 4214, the guide wheel 4214 is engaged with the support rod 4212, and each of the four support rods 4212 is provided with two guide wheels 4214 connected to it. The four support rods 4212 are symmetrically arranged on both sides of the two swing arc members 4215, and the upper and lower ends of the four support rods 4212 are connected with guide wheels 4214, which are movably connected on the limiting slides 4216 on the two swing arc members 4215. The swing arc members 4215 are provided with two limiting slides 4216 of different sizes on both the inner and outer sides.

[0039] The rotating shaft 4211 is engaged with the middle position of the auxiliary bracket 7426, so that the swinging arc component 4215 will be symmetrically set on the left and right sides of the rotating shaft 4211. The rotating shaft 4211 drives the support rod 4212 to move by connecting the assist component 4213 connected at both the upper and lower ends to the support component 4217. The top of the support component 4217 will fit and connect with the connecting component 7424, so that the connecting component 7424 will move left and right under the action of the support component 4217.

[0040] The working principle of the above technical solution is explained below: In use, the intelligent controller 1 electrically controls the main body 2, causing the main body 2 to operate and transport packages to the conveyor table 5. The conveyor table 5 then transports the packages to the scanner 4. The intelligent controller 1 and the scanner 4 work together to set programs for the sorting category or sorting area of ​​the packages, so as to sort items correctly and quickly. After scanning and identification, the packages are transported to the sorting table 6 via the conveyor table 5. The sorting table 6 is equipped with multiple transmission devices 7 on both sides. The multiple transmission devices 7 can classify the packages according to the sorting category or sorting area. The sorted packages are then transported to the placement seat 73 on the corresponding transmission device 7. The bottom of the guide component 74 is fixedly connected to the left and right sides of the main body 2 in parallel. A placement seat 73 is erected parallel to the top of the sorting table 6, and the sides of the placement seat 73 are flush with the sides of the sorting table 6. During sorting, the sorting table 6 can quickly sort corresponding packages onto the placement seat 73. A baffle 72 is installed on one side of the placement seat 73. The baffle 72 opens and closes under the action of the steering component 71 to block and guide the packages on the placement seat 73. This allows the packages on the placement seat 73 to be stably guided into the storage slot 3 for sorting under the action of the baffle 72 and the guide component 74. When the placement seat 73 is mounted on the guide component 74, the bottom of the support 746 on the guide component 74 is fixedly connected parallel to the main body 2. The card plate 744 is connected to the placement seat 73 via the plug 743, allowing the placement seat 73 to be stably placed on the card plate 744. The rotating component 742 drives the placement seat 73 to reciprocate through the card plate 744. The multiple linkage rods 745 at its lower end extend and retract with the swing of the rotating component 742, effectively providing restraint. The multiple linkage rods 745 are elastic, and during restraint, their internal springs provide shock absorption, allowing the card plate 744 to stably drive the placement seat 73 to move and adjust. The rotating component 742 drives the card plate 744 to swing accordingly. After swinging to a certain tilt angle, the bottom of the card plate 744 will directly adhere to the inclined surface of the support 746, allowing the support to... The support 746 provides support for the pallet 744, and a contact block 741 is provided on the inclined surface of the support 746. When the pallet 744 moves onto the support 746, the contact block 741 will directly contact and adhere to the pallet 744, effectively protecting the pallet 744 and preventing it from colliding directly with the inclined surface of the support 746 after swinging. This effectively and stably transmits the package downwards. The pallet 744 drives the placement seat 73 to move on the rotating assembly 742. The top plane of the connector 7424 on the rotating assembly 742 will fit and connect with the pallet 744. The connector 7424 is located inside the movable seat 7423, and an auxiliary bracket 7426 is installed in the middle position inside the movable seat 7423.The auxiliary support 7426 is equipped with two rotating wheels 7422 and a reciprocating assembly 7421. The auxiliary support 7426 can limit the positions of the rotating wheels 7422 and the reciprocating assembly 7421. The top of the reciprocating assembly 7421 and the pull rod 7425 are connected to the bottom of the connector 7424. The two pull rods 7425 are symmetrically connected to the two rotating wheels 7422. The connector 7424 is stably adjusted within the movable seat 7423 under the drive of the reciprocating assembly 7421. The two pull rods 7425 are connected to the lower end of the connector 7424. The pull rod 7425, under the action of the rotating wheel 7422, will exert a restraining effect, allowing the reciprocating assembly 7421 to stably drive the connecting piece 7424 to move. The support member 4217 on the reciprocating assembly 7421 will be connected to the bottom arc surface of the connecting piece 7424. The lower end of the support member 4217 is connected to two support rods 4212 and an auxiliary member 4213. The lower end of the auxiliary member 4213 is vertically inserted into the rotating shaft 4211. Both ends of the two support rods 4212 are connected to guide wheels 4214, and the two support rods 4212... 2. The guide wheel 4214 connects to two limiting slides 4216 on the two swinging arc components 4215. During the swinging process, the support component 4217 connected to the lower end of the connector 7424 will drive the support rod 4212 and the assist component 4213 to slide and adjust on the limiting slides 4216 via the guide wheel 4214. The limiting slides 4216 can effectively limit the range of motion of the support rod 4212, preventing the support rod 4212 from causing the support component 4217 to swing at medium to large amplitudes, which would affect the connector 7424. The reciprocating motion of the connector 7424, through the support 4217, causes the pallet 744 and the placement seat 73 to swing and adjust until they contact the inclined surface of the contact block 741. This allows the packages sorted on the placement seat 73 to be transferred downwards to the corresponding storage slot 3 under inertia, effectively preventing packages from directly accumulating on the placement seat 73, thus reducing the package delay rate. Furthermore, it eliminates the need for staff to constantly process packages on the placement seat, reducing the workload of staff and preventing information processing errors.

[0041] Example 2 Please see Figures 6-7 , This invention provides an intelligent control method and system for logistics sorting. The steering component 71 includes a mounting block 711, a connecting column 712, an adjusting component 713, connecting rods 714, and a fixing block 715. Two mounting blocks 711 are provided and symmetrically arranged on both sides inside the connecting column 712. The end of the mounting block 711 away from the connecting column 712 is fixedly connected to the adjusting component 713. The adjusting component 713 is located inside the connecting column 712 and can rotate. Two connecting rods 714 are connected through the connecting column 712, with one end of the two connecting rods 714 connected to the mounting block 711 and the other end connected to the fixing block 715.

[0042] The fixing block 715 is fixedly connected to the baffle 72. The connecting rod 714 drives the baffle 72 to rotate and adjust inside the connecting column 712 through the fixing block 715. The two connecting rods 714 form a triangular structure and are fixedly connected to the adjusting component 713 through the mounting block 711 for movable adjustment.

[0043] The adjusting assembly 713 includes a snap-fit ​​block 7131, a spring pull member 7132, a retaining member 7133, a reset snap-fit ​​member 7134, a limiting rotating member 7135, an elastic member 7136, and a connecting ring 7137. Two snap-fit ​​blocks 7131 are provided, and the two snap-fit ​​blocks 7131 are equidistantly inserted into the outside of the limiting rotating member 7135. The limiting rotating member 7135 is engaged with the reset snap-fit ​​member 7134. The reset snap-fit ​​member 7134 is provided with an elastic member 7137 that engages with it. 136 and the end of the elastic element 7136 away from the reset card 7134 is connected to the locking block 7131. The locking block 7131 rotates on the reset card 7134 through the limiting rotating element 7135. The limiting rotating element 7135 is provided with five spring pull elements 7132 connected to it. The five spring pull elements 7132 are equidistantly inserted into the corresponding holding elements 7133. The five holding elements 7133 are equidistantly annularly installed inside the connecting ring 7137.

[0044] The connecting ring 7137 is installed inside the connecting post 712. Two mounting blocks 711 are fixedly connected to the outside of the connecting ring 7137. The connecting ring 7137 is connected to the limiting rotating member 7135 through the cooperation of the spring pull member 7132 and the retaining member 7133. When the limiting rotating member 7135 is connected to the connecting ring 7137, it will rotate and adjust on the reset card 7134. The reset card 7134 will limit the movement limit of the limiting rotating member 7135.

[0045] The working principle of the above technical solution is explained below: In use, the connecting post 712 is vertically and fixedly inserted into the placement base 73. Two sliders 711 are installed between the connecting post 712 and the adjusting component 713, and the connecting rods 714 inserted into the two sliders 711 are fixed together with the fixing block 715. One side of the fixing block 715 is fixedly connected to the baffle 72 on the same straight line. The connecting rods 714 drive the baffle 72 to rotate and adjust inside the connecting post 712 through the fixing block 715. The two connecting rods 714 form a triangular structure and are fixedly connected to the adjusting component 713 through the mounting block 711 for movable adjustment, providing good support stability to cooperate with the fixing block 715 and the baffle 72. The fixing block 715 and the connecting rods 714 cooperate to drive the baffle 72 to rotate inside the connecting post 712. The internal swing adjustment is performed. The connecting ring 7137 on the adjusting component 713 is installed inside the connecting post 712. Two mounting blocks 711 are fixedly connected to the outside of the connecting ring 7137. The connecting ring 7137 is connected to the limiting rotating part 7135 through the cooperation of the spring pull member 7132 and the retaining member 7133. The spring pull member 7132 has a certain spring pull function, which can play a restraining linkage role between the connecting ring 7137 and the limiting rotating part 7135, so that the connecting ring 7137 and the limiting rotating part 7135 can move simultaneously. The limiting rotating part 7135 and the connecting ring 7137 are connected to the reset card 7134 for rotation adjustment. The two retaining blocks 7131 on the limiting rotating part 7135 will be driven to the reset card 7134. The internal movement of the locking component 7134 allows for the extension and retraction of an elastic element 7136 on the locking block 7131. This causes the pressure point of the elastic element 7136 to retract inwards, while the unpressured end extends outwards. Under the action of the elastic element 7136, the locking component 7134 limits the movement of the limiting rotating component 7135, allowing the connecting ring 7137 to swing and adjust via the slider 711, which in turn drives the connecting rod 714. The connecting rod 714, through the fixing block 715, moves the baffle 72. The baffle 72 and the fixing block 715 open and close on the placement seat 73 via the connecting post 712. The placement seat 73 then guides the package into the storage slot 3 via a guide assembly. After adjustment to an inclined position, the weight of the package will act directly on it. When the baffle 72 is subjected to force, its weight will be transmitted to the connecting rod 714 through the fixing block 715. The connecting rod 714 will then drive the fixing block 715 to move inside the connecting column 712 and the adjusting component 713. This will cause the baffle 72 to open under the action of the adjusting component 713 and become parallel to the placement seat 73. This will assist the placement seat 73, allowing the package inside the placement seat 73 to slowly move down under the action of the baffle 72 and be transmitted to the storage slot 3. This will prevent the package from falling directly into the storage slot 3 and being directly impacted, effectively protecting the package, preventing damage to the contents, and reducing the damage rate of the package.

[0046] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the scope of the invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0047] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A logistics sorting intelligent control method and system, the structure of which includes an intelligent controller (1), a main body (2), a storage slot (3), a scanner (4), a conveyor (5), a sorting table (6), and a transmission device (7). The back of the intelligent controller (1) is attached to the side of the scanner (4), and the intelligent controller (1) and the scanner (4) are electrically connected. The scanner (4) is placed on the upper end of the conveyor (5), and the conveyor (5) is connected through the lower end of the scanner (4). The conveyor (5) and the sorting table (6) are installed parallel to each other on the main body (2). Multiple transmission devices (7) are provided on both the left and right sides of the sorting table (6), and the lower ends of the multiple transmission devices (7) are corresponding to the storage slots (3). The multiple storage slots (3) are arranged parallel to each other on both sides of the lower end of the sorting table (6). The transmission device (7) is provided with a steering component (71), a baffle (72), a placement seat (73), and a guide component (74). The steering component (71) is vertically installed on the side of the placement seat (73), and a baffle (72) is fixedly connected to one side of the steering component (71). The baffle (72) is parallel to the upper end of the placement seat (73), and the lower end of the placement seat (73) is connected to the guide component (74). The placement seat (73) and the guide component (74) are connected to form an "=" shape. The guide assembly (74) is provided with a contact block (741), a rotating assembly (742), a plug (743), a retaining plate (744), a linkage rod (745), and a support (746). The contact block (741) is fitted into the side of the support (746), and the top of the support (746) is provided with four linkage rods (745) connected thereto. The four linkage rods (745) are of different lengths and are connected to the curved surface at the lower end of the rotating assembly (742). The top of the rotating assembly (742) is fixedly connected to the retaining plate (744), and the plug (743) is vertically inserted into the middle position of the retaining plate (744). The plug (743) and the retaining plate (744) are connected to form a "⊥" shaped structure on the rotating assembly (742). The intelligent controller (1) sets a program for the sorting category or sorting area of ​​the package so as to sort the items correctly and quickly. After the intelligent controller (1) receives the information, it sends the package to the sorting table (6) via the conveyor (5) and sorts it onto the corresponding transmission device (7). The placement seat (73) on the transmission device (7) receives the package sent by the sorting table (6). After receiving the package, the guide component (74) adjusts the angle of the placement seat (73). The package can be sent downward under the action of the baffle (72). The placement seat (73) is fixedly connected to the card plate (744) by the plug (743). The rotating component (742) and the linkage rod (745) move the auxiliary card plate (744) to adjust the angle of the placement seat (73), so that the placement seat (73) is tilted to transmit the package.

2. The intelligent control method and system for logistics sorting according to claim 1, characterized in that: The package is transported to the scanner (4) via the conveyor (5). The intelligent controller (1) works with the scanner (4) to set the program for the sorting category or sorting area of ​​the package so as to sort the items correctly and quickly. After scanning and identification, the package is transported to the sorting table (6) via the conveyor (5). The sorting table (6) is equipped with multiple transmission devices (7). The multiple transmission devices (7) can be classified according to the sorting category or sorting area of ​​the package.

3. The intelligent control method and system for logistics sorting according to claim 1, characterized in that: The guide components (74) on the conveying device (7) are symmetrically installed on the left and right sides of the main body (2). The guide components (74) are connected in parallel with the placement seat (73) and the position of the placement seat (73) is flush with the two sides of the sorting table (6), so that the package can be sorted onto the placement seat (73). The placement seat (73) guides the received package into the storage slot (3) for sorting through the guide components (74).

4. The intelligent control method and system for logistics sorting according to claim 1, characterized in that: The bottom of the guide component (74) is fixedly connected to the main body (2). The card plate (744) is connected to the placement seat (73) through the plug (743). The rotating component (742) will drive the placement seat (73) to swing back and forth through the card plate (744). The multiple linkage rods (745) at its lower end will extend and retract with the swing of the rotating component (742), effectively playing a restraining role.

5. The intelligent control method and system for logistics sorting according to claim 1, characterized in that: The rotating assembly (742) includes a reciprocating assembly (7421), a rotating wheel (7422), a movable seat (7423), a connecting piece (7424), a pull rod (7425), and an auxiliary bracket (7426). The reciprocating assembly (7421) is installed in the middle position inside the movable seat (7423), and the middle position of the auxiliary bracket (7426) installed inside the movable seat (7423) will engage with the reciprocating assembly (7421). The auxiliary bracket (7426) is located on the left and right sides. Both sides are connected to a rotating wheel (7422), and both rotating wheels (7422) are connected to a pull rod (7425). The ends of the two pull rods (7425) away from the rotating wheels (7422) are symmetrically connected to the lower ends of the connector (7424). The middle position of the end of the connector (7424) facing the connector (7424) is connected to the reciprocating assembly (7421), and the connector (7424) is parallel to the movable seat (7423) through the reciprocating assembly (7421). The top of the connector (7424) is fixedly connected to the card plate (744). The connector (7424) swings and adjusts inside the movable seat (7423) through the reciprocating component (7421). Two pull rods (7425) are provided parallel to each other at the lower end of the connector (7424) to restrain it.

6. The intelligent control method and system for logistics sorting according to claim 5, characterized in that: The reciprocating assembly (7421) includes a rotating shaft (4211), a support rod (4212), an assist component (4213), a guide wheel (4214), a swing arc component (4215), a limiting slide (4216), and a support component (4217). The rotating shaft (4211) is located in the middle of the swing arc component (4215), and the assist component (4213) is inserted into both the upper and lower ends of the rotating shaft (4211). The end of the assist component (4213) away from the rotating shaft (4211) is connected to the support component (4217), and the support component (4217) is connected to the left and right sides. There are guide wheels (4214), which are engaged with the support rods (4212). Each of the four support rods (4212) is provided with two guide wheels (4214) connected to it. The four support rods (4212) are symmetrically arranged on both sides of the two swing arc members (4215), and the upper and lower ends of the four support rods (4212) are connected with guide wheels (4214). They are movably connected on the limiting slides (4216) on the two swing arc members (4215). The swing arc members (4215) are provided with two limiting slides (4216) of different sizes on both the inner and outer sides. The pivot (4211) is engaged with the middle position of the auxiliary bracket (7426), so that the swinging arc (4215) will be symmetrically set on the left and right sides of the pivot (4211). The pivot (4211) drives the support rod (4212) to move through the connection of the assisting member (4213) connected at both the upper and lower ends to the support member (4217). The top of the support member (4217) will fit and connect with the connecting member (7424), so that the connecting member (7424) will move left and right under the action of the support member (4217).

7. The intelligent control method and system for logistics sorting according to claim 1, characterized in that: The steering assembly (71) includes a mounting block (711), a connecting column (712), an adjusting assembly (713), a connecting rod (714), and a fixing block (715). There are two mounting blocks (711), which are symmetrically arranged on both sides inside the connecting column (712). The end of the mounting block (711) away from the connecting column (712) is fixedly connected to the adjusting assembly (713). The adjusting assembly (713) is located inside the connecting column (712) and rotates. Two connecting rods (714) are connected through the connecting column (712), with one end of the two connecting rods (714) connected to the mounting block (711) and the other end connected to the fixing block (715). The fixing block (715) is fixedly connected to the baffle (72). The connecting rod (714) drives the baffle (72) to rotate and adjust inside the connecting column (712) through the fixing block (715). The two connecting rods (714) are in a triangular structure and are fixedly connected to the adjusting component (713) through the mounting block (711) for movable adjustment.

8. The intelligent control method and system for logistics sorting according to claim 7, characterized in that: The adjusting assembly (713) includes a snap-fit ​​block (7131), a spring pull member (7132), a retaining member (7133), a reset snap-fit ​​member (7134), a limiting rotating member (7135), an elastic member (7136), and a connecting ring (7137). Two snap-fit ​​blocks (7131) are provided, and the two snap-fit ​​blocks (7131) are equidistantly inserted into the outside of the limiting rotating member (7135). The limiting rotating member (7135) is snapped into connection with the reset snap-fit ​​member (7134). The reset snap-fit ​​member (7134) is provided with an elastic member that engages with it. (7136) and the end of the elastic element (7136) away from the reset card (7134) is connected to the snap block (7131). The snap block (7131) rotates on the reset card (7134) through the limiting rotating element (7135). The limiting rotating element (7135) has five spring pull elements (7132) connected to it. The five spring pull elements (7132) are equidistantly inserted into the corresponding snap holding elements (7133). The five snap holding elements (7133) are equidistantly annularly installed inside the connecting ring (7137). The connecting ring (7137) is installed inside the connecting post (712). Two mounting blocks (711) are fixedly connected to the outside of the connecting ring (7137). The connecting ring (7137) is connected to the limiting rotating part (7135) through the cooperation of the spring pull member (7132) and the retaining member (7133). The limiting rotating part (7135) and the connecting ring (7137) are connected and will rotate and adjust on the reset card (7134). The reset card (7134) will limit the movement limit of the limiting rotating part (7135).