Intelligent logistics sorting box and sorting method

By introducing arc-shaped grooves and elastic straps into the sorting box, combined with RFID chips and information codes, automatic identification of goods information and process traceability are achieved, solving the problems of insufficient intelligence and adaptability of the sorting box, and improving sorting efficiency and convenience.

CN121626544APending Publication Date: 2026-03-10FENGFAN
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-29
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing sorting boxes have low levels of intelligence, insufficient adaptability, and poor convenience, making it difficult to meet the high-efficiency operation requirements of intelligent sorting lines.

Method used

Design an intelligent logistics sorting box that uses arc-shaped grooves and elastic fixing straps, combined with radio frequency identification chips and information codes, to achieve automatic identification and data exchange of goods, adapt to the storage needs of goods of different sizes and types, and efficiently link with the sorting line control system.

Benefits of technology

It improves sorting efficiency and accuracy, enhances adaptability, simplifies cargo loading and unloading processes, and ensures the smoothness and convenience of the sorting system.

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Abstract

The invention provides an intelligent logistics sorting box and a sorting method, and belongs to the technical field of logistics sorting, the intelligent logistics sorting box comprises a box body, a first mounting area, a second mounting area and a fixing bandage; the box body is provided with a containing cavity, an arc-shaped groove, a first installation area and a second installation area are both located on the outer wall of the box body and used for installing a radio frequency identification chip and installing information codes. The fixing bandages are made of elastic materials, the number of the fixing bandages is two, one ends of the fixing bandages are symmetrically installed in the containing cavity, and the other ends of the fixing bandages are used for detachable connection. According to the intelligent logistics sorting box, by means of the double design of the radio frequency identification chip and the information code, the intelligent level is improved; due to the installation design of the pipe fittings of the arc-shaped grooves and the adjustability of the elastic fixing bandages, the sorting box can flexibly adapt to the storage requirements of goods of different sizes and types; due to the detachable design of the elastic fixing bandages, the cargo loading and unloading process is simplified, the loading and unloading time consumption is shortened, and the overall operation smoothness and convenience of the sorting system are guaranteed.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of logistics sorting, and more particularly relates to an intelligent logistics sorting box and a sorting method. BACKGROUND

[0002] With the rapid development of industries such as express logistics, food packaging, and industrial part management, the market has put forward higher and higher requirements for the efficiency, accuracy, and automation level of article sorting. Intelligent sorting systems have become the mainstream development direction of sorting links in various industries due to their core advantages of unmanned, high efficiency, and convenience. As the core carrier unit of intelligent sorting lines, the performance of sorting boxes directly determines the overall operation efficiency of the sorting system. Through standardized design, modular configuration, and intelligent identification technology, the sorting boxes can realize efficient linkage with the control system of the sorting line, which is a key prerequisite for completing automatic classification, temporary storage, and circulation of articles and plays an irreplaceable role in improving sorting efficiency and reducing labor costs.

[0003] However, existing sorting boxes still have many technical shortcomings and cannot meet the efficient operation requirements of current intelligent sorting lines. First, the intelligent level of sorting boxes is generally low. Most traditional sorting boxes lack effective intelligent identification modules and data interaction functions, cannot automatically identify article information in the boxes, and cannot realize real-time linkage with the control system of the sorting line. Therefore, they still need to rely on manual assistance to complete information input and sorting guidance, which not only restricts the improvement of sorting efficiency but also increases the risk of manual operation errors. Second, the adaptability of sorting boxes is poor. Existing products are mostly designed with fixed specifications and lack structural versatility, which cannot flexibly adapt to the storage requirements of articles of different sizes and types. At the same time, they also cannot be compatible with intelligent sorting line equipment of different brands and models, which leads to the need to replace a large number of sorting boxes when enterprises change sorting articles or upgrade sorting equipment, significantly increasing the operating costs of enterprises. Third, the convenience of existing sorting boxes is insufficient. The operation design of sorting boxes in the process of loading, unloading, temporary storage, and circulation is not reasonable. Some sorting boxes lack convenient opening and closing structures and positioning guide mechanisms, which leads to a long time-consuming in article loading and unloading and problems such as jamming and deviation during the circulation process of the sorting line, further affecting the overall smoothness of the sorting system. Therefore, there is an urgent need to develop an intelligent logistics sorting box with high intelligent level, strong adaptability, and high convenience. SUMMARY

[0004] The purpose of the present application is to provide an intelligent logistics sorting box and a sorting method to solve the technical problems of low intelligence, insufficient adaptability, and poor convenience of existing logistics sorting.

[0005] To achieve the above-mentioned purpose, the technical solution adopted by the present application is to provide an intelligent logistics sorting box, which comprises: The box body has a containing cavity for placing goods; two parallel walls of the box body are each provided with an arc-shaped groove for mounting a pipe; A first mounting area is located on the outer wall of the box body; the first mounting area is used for mounting a radio frequency identification chip to realize automatic identification and data exchange of goods; A second mounting area is located on the outer wall of the box body; the second mounting area is used for mounting an information code to carry information required for sorting and tracing; The fixing band is made of elastic material; the fixing band is two groups, and one end of the two fixing bands is symmetrically mounted in the containing cavity, and the other end is used for detachable connection to fix the product or loosen the goods.

[0006] In a possible implementation, the arc-shaped grooves are multiple and two by two form a group; the two arc-shaped grooves in the same group are both provided on the two parallel walls of the box body; the curvatures of the arc-shaped grooves in each group are different, which are used for adapting to pipe fittings of different diameters.

[0007] In a possible implementation, the inner wall of the arc-shaped groove is provided with a buffer pad.

[0008] In a possible implementation, the first mounting area and the second mounting area are both mounting grooves and are arranged on different walls of the box body.

[0009] In a possible implementation, the box body is further provided with multiple protruding parts at the bottom of the containing cavity, and the goods are supported on the multiple protruding parts.

[0010] In a possible implementation, one side of the multiple protruding parts close to each other is provided with an inner concave arc surface, and the multiple inner concave arc surfaces form a circumferentially arranged annular matching surface, which is used for matching the outer side surface of a circular goods.

[0011] In a possible implementation, four clamping grooves two by two form a group are provided on the inner part of the containing cavity, the fixing band is a V-shaped structure, and the two oblique edge end points of the V-shaped structure are provided with plug buckles connected with the corresponding clamping grooves; the bottom end points of the two V-shaped structures are provided with clamping buckles matched and connected.

[0012] The intelligent logistics sorting box provided by the application has the beneficial effects that: compared with the prior art, the intelligent logistics sorting box of the application is composed of a box body, a first mounting area, a second mounting area and a fixed binding belt, and each component cooperates to realize efficient sorting, temporary storage and circulation of goods. Among them, the box body serves as the core bearing structure, and the accommodating cavity opened in the box body provides a stable placement space for the goods. The arc-shaped grooves provided on the two parallel walls of the box body are specially used for installing pipes, and the corresponding support or adaptive pipes can be flexibly assembled according to the storage requirements of goods of different sizes and types or the adaptive requirements of different brands and models of sorting lines, effectively solving the problem of insufficient universality caused by the fixed specification design of traditional sorting boxes.

[0013] The first mounting area and the second mounting area are both arranged on the outer wall of the box body, and form a double intelligent identification and information bearing structure. The radio frequency identification chip installed in the first mounting area can directly realize automatic identification and data exchange of the goods information without manual auxiliary input, making up for the short board of traditional sorting boxes that lack intelligent identification modules and are difficult to realize real-time linkage with the sorting line control system. The information code installed in the second mounting area further carries key information such as sorting path and goods traceability, forming double information guarantee and improving the accuracy of sorting and tracing.

[0014] The fixed binding belt is made of elastic material and is arranged in two groups in a detachable design inside the accommodating cavity, which can flexibly adjust the tightness according to the size of the goods to stably fix the goods and avoid damage caused by shaking of the goods during circulation, and can also quickly detach and loosen the goods to improve the convenience of loading and unloading.

[0015] During operation, first, according to the sorting requirements, the adaptive radio frequency identification chip is assembled in the first mounting area, the information code containing the goods category, destination, traceability code and other information is pasted in the second mounting area, and the corresponding support or adaptive pipe is installed in the arc-shaped groove according to the size of the goods to be sorted or the requirements of the sorting line equipment; secondly, the goods to be sorted are placed in the accommodating cavity of the box body, and the two groups of elastic fixed binding belts are detachably connected at the free ends to make the binding belts tightly fit the surface of the goods to realize stable fixation.

[0016] Subsequently, the sorting box with the assembled goods is placed on the intelligent sorting line, the sorting line control system automatically identifies the goods information and plans the sorting path by reading the real-time data of the radio frequency identification chip in the first mounting area and combining the supplementary information of the information code in the second mounting area, and the pipe in the arc-shaped groove can assist the sorting box to keep stable operation during the circulation of the sorting box on the sorting line, avoiding the problems of jamming and deviation.

[0017] Finally, when the sorting box reaches the specified sorting position, the detachable connection end of the fixed binding belt is untied, the goods in the box are taken out, and the sorting process is completed. The sorting box can be recycled and reused.

[0018] In this way, with the dual design of radio frequency identification chip and information code, automatic identification of goods information, real-time data interaction and full-process tracing are realized, greatly improving the intelligent level; at the same time, it can be efficiently linked with various intelligent sorting line control systems to improve the overall sorting efficiency; and the adjustable elastic fixing band and the adjustable arc-shaped groove pipe installation design enable the sorting box to flexibly adapt to the storage requirements of goods of different sizes and types, and is compatible with intelligent sorting line equipment of different brands and models, significantly enhancing the adaptability; the detachable design of the elastic fixing band simplifies the goods loading and unloading process, shortens the loading and unloading time, and the arc-shaped groove helps the sorting box to remain stable during the transfer process, avoiding jamming and deviation, and ensuring the smoothness and convenience of the overall operation of the sorting system.

[0019] Another object of the present application is to provide an intelligent logistics sorting method using any of the above intelligent logistics sorting boxes, comprising: S1: Before sorting, the state of the intelligent logistics sorting box is self-checked, and the information code and radio frequency identification chip are verified by the sorting line detection module, and the fixed band is checked for normal use; S2: Enter the goods information into the sorting line control system, and the system automatically matches the corresponding placement area in the sorting box according to the size, weight, fragility level, category attribute and target address of the goods; S3: Place the goods according to the system matching result, realize the pre-fixing of the goods through the fixed band, and detect the contact pressure of the goods and the sorting box wall through the built-in pressure sensor after pre-fixing, if the pressure exceeds the preset range, adjust the fixed band until the pressure meets the requirements; S4: After confirming that the goods information is consistent with the sorting target through the double verification of information code identification and radio frequency identification chip identification, the sorting line control system plans the priority transfer path according to the real-time transfer channel congestion, and transfers the sorting box to the target area to complete the sorting.

[0020] In one possible implementation, in S2, the elastic fence is arranged in the sorting box according to the three-dimensional size of the goods, and an independent placement space conforming to the contour of the goods is formed, and an electromagnetic suspension damping support plate is arranged at the bottom of the box body to offset the vibration generated during transfer.

[0021] In one possible implementation, further comprising: S5: After the sorting box arrives at the target area, the system automatically reads the goods unloading state through the radio frequency identification chip, and automatically cancels the sorting task after unloading is completed, and generates a trace code containing the sorting full-process parameters.

[0022] The intelligent logistics sorting method provided in the application adopts the intelligent logistics sorting box, and realizes efficient, accurate and safe sorting of goods through the cooperative linkage of the intelligent components of the sorting box and the sorting line control system.

[0023] The operation process is as follows: before sorting, a state self-checking step is performed, the information code of the sorting box and the radio frequency identification chip are verified by means of a detection module matched with the sorting line to check whether the information code and the radio frequency identification chip can normally read and write interact, and whether the elasticity of the fixed binding belt and the connection structure are intact, so as to ensure that the sorting basic equipment is fault-free.

[0024] Subsequently, attribute information such as the size, weight and fragile level of the goods is input into the sorting line control system, and the system automatically matches the adaptive placement area in the sorting box based on a preset algorithm, so as to ensure the rationality of the placement of the goods.

[0025] Then, the goods are placed according to the system matching result, the pre-fixing is completed through the fixed binding belt of the sorting box, and the contact pressure of the goods and the box wall is detected by using the built-in pressure sensor, and if the pressure is excessive or insufficient, the tightness of the binding belt is adjusted until the pressure meets the preset range, so as to realize the safe and stable fixing of the goods.

[0026] Finally, after the goods information is confirmed to be consistent with the sorting target through the dual cooperative verification of the information code and the radio frequency identification chip, the system plans the optimal transfer path in combination with the real-time transfer channel congestion data, and transfers the sorting box to the target area to complete the sorting.

[0027] In this way, the pre-checking step can exclude equipment faults in advance, avoid sorting interruption or information errors caused by abnormal sorting box components, the system automatically matches the placement area, and the adaptive adjustment of the pressure sensor solves the damage problem caused by improper placement and unstable fixing of goods in traditional sorting, and improves the adaptability to goods with different attributes. The dual identification verification greatly reduces the risk of information misreading and improves the sorting accuracy; the dynamic path planning based on the real-time congestion situation effectively avoids the transfer bottleneck and improves the overall sorting efficiency.

[0028] The whole method realizes the intelligent control of the device state, the attribute of the goods and the sorting process, and fully compensates for the shortcomings of low efficiency, poor accuracy and insufficient adaptability in traditional sorting, so as to ensure the stability, efficiency and safety of the sorting process. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.

[0030] Figure 1 A structural schematic diagram of the intelligent logistics sorting box provided by the embodiment of the present application is shown in the figure. Figure 2 A front view of the intelligent logistics sorting box provided by the embodiment of the present application is shown in the figure.

[0031] In the figure, the reference signs are as follows: 10, box body; 11, accommodating cavity; 12, arc-shaped groove; 13, buffer pad layer; 14, protruding part; 15, clamping groove; 20, first mounting area; 30, second mounting area. DETAILED DESCRIPTION

[0032] In order to make the technical problems, technical solutions and beneficial effects of the present application clearer, the present application will be further described in detail below in combination with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.

[0033] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.

[0034] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0035] In addition, the terms "first" and "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise specifically limited.

[0036] Please refer to Figure 1 and Figure 2The application provides an intelligent logistics sorting box. The intelligent logistics sorting box comprises a box body 10, a first mounting area 20, a second mounting area 30 and a fixing band; the box body 10 has a containing cavity 11 for placing goods; arc-shaped grooves 12 for mounting pipe fittings are arranged on two parallel box walls of the box body 10; the first mounting area 20 is located on the outer wall of the box body 10; the first mounting area 20 is used for mounting a radio frequency identification chip to realize automatic identification and data exchange of the goods; the second mounting area 30 is located on the outer wall of the box body 10; the second mounting area 30 is used for mounting an information code to carry information required for sorting and tracing; the fixing band is made of elastic material; the fixing band is in two groups, one end of the two fixing bands is symmetrically mounted in the containing cavity 11, and the other end is used for detachable connection to fix products or loosen the goods.

[0037] Compared with the prior art, the intelligent logistics sorting box provided by the application is composed of the box body 10, the first mounting area 20, the second mounting area 30 and the fixing band, and each component cooperates to realize efficient sorting, temporary storage and circulation of goods. The box body 10 is a core bearing structure, the containing cavity 11 formed in the box body 10 provides a stable placing space for the goods, and the arc-shaped grooves 12 arranged on the two parallel box walls of the box body 10 are specially used for mounting pipe fittings, which can be flexibly assembled with corresponding supporting or adaptive pipe fittings according to the storage requirements of goods of different sizes and types or the adaptive requirements of different brands and models of sorting lines, thereby effectively solving the problem of insufficient universality caused by the fixed specification design of traditional sorting boxes.

[0038] The first mounting area 20 and the second mounting area 30 are arranged on the outer wall of the box body 10, and form a double intelligent identification and information carrying structure. The radio frequency identification chip mounted on the first mounting area 20 can directly realize automatic identification and data exchange of the goods information without manual auxiliary input, thereby making up for the short board of traditional sorting boxes, i.e., lacking of intelligent identification modules and being difficult to realize real-time linkage with a sorting line control system. The information code mounted on the second mounting area 30 further carries key information such as a sorting path and goods tracing, forms double information guarantee, and improves the accuracy of sorting and tracing.

[0039] The fixing band is made of elastic material and is arranged in two groups, and is detachably arranged symmetrically in the containing cavity 11. The fixing band can flexibly adjust the tightness according to the size of the goods to stably fix the goods and avoid shaking and damage of the goods during circulation, and can also quickly detach and loosen the goods, thereby improving the convenience of loading and unloading.

[0040] In operation, first, according to the sorting requirements, the appropriate radio frequency identification chip is assembled in the first mounting area 20, the information code containing the information of the goods category, destination, traceable code, etc. is pasted in the second mounting area 30, and according to the size of the goods to be sorted or the requirements of the sorting line equipment, the corresponding support or adaptive pipe fitting is installed in the arc-shaped groove 12; secondly, the goods to be sorted are placed in the containing cavity 11 of the box body 10, and the two groups of elastic fixing bands are pulled to detachably connect the free ends, so that the bands are tightly fitted to the surface of the goods to achieve stable fixation.

[0041] Subsequently, the sorting box with the assembled goods is placed on the intelligent sorting line, the sorting line control system automatically identifies the goods information and plans the sorting path by reading the real-time data of the radio frequency identification chip in the first mounting area 20 and combining the supplementary information of the information code in the second mounting area 30, and the pipe fitting in the arc-shaped groove 12 can assist the sorting box to keep stable operation during the circulation process on the sorting line, avoiding the problems of jamming and deviation.

[0042] Finally, when the sorting box reaches the specified sorting position, the detachable connection end of the fixing band is disconnected, and the goods in the box are taken out, completing a sorting process, and the sorting box can be recycled and reused.

[0043] In this way, with the dual design of radio frequency identification chip and information code, automatic identification of goods information, real-time interaction of data and full-process tracing are realized, greatly improving the intelligent level; at the same time, it can be efficiently linked with various intelligent sorting line control systems to improve the overall sorting efficiency; and the installation design of the pipe fitting of the arc-shaped groove 12 and the adjustability of the elastic fixing band make the sorting box flexible and adaptive to the storage requirements of goods of different sizes and types, and compatible with intelligent sorting line equipment of different brands and models, significantly enhancing the adaptability; the detachable design of the elastic fixing band simplifies the goods loading and unloading process, shortens the loading and unloading time, and the arc-shaped groove 12 assists the sorting box to keep stable during the circulation process, avoiding jamming and deviation, and ensuring the smoothness and convenience of the overall operation of the sorting system.

[0044] Please refer to Figure 1 and Figure 2 as a specific embodiment of the intelligent logistics sorting box provided by the present application, the arc-shaped grooves 12 are multiple and two by two are a group; the two arc-shaped grooves 12 in the same group are arranged on the two parallel walls of the box body 10; the curvatures of the arc-shaped grooves 12 in each group are different, which are used to adapt to pipe fittings of different diameters; by setting multiple groups of arc-shaped grooves 12 to optimize the adaptive performance, each group contains two symmetrically arranged arc-shaped grooves 12 on the parallel walls of the box body 10, and the curvatures of each group are different, which can accurately match pipe fittings of different diameters. In operation, first, according to the size of the goods to be sorted or the requirements of the sorting line equipment, the arc-shaped grooves 12 with corresponding curvatures are selected, the pipe fittings with adaptive diameters are installed in the two arc-shaped grooves 12 in the same group to complete the assembly, and then the subsequent operations such as goods placement and fixation are performed.

[0045] The multi-curvature arc-shaped groove 12 design further broadens the pipe fitting range, enabling the sorting box to flexibly adapt to more specifications of support or pipe fittings, and better solving the poor adaptability problem of traditional sorting boxes, and improving the versatility and use flexibility of the sorting box.

[0046] Please refer to Figure 1 and Figure 2 As a specific embodiment of the intelligent logistics sorting box provided in the present application, the inner wall of the arc-shaped groove 12 is provided with a buffer pad layer 13, which optimizes the assembly and fitting effect of the pipe and the arc-shaped groove 12 through the flexible characteristics of the buffer pad layer 13. When operating, without additional complex steps, only need to select the corresponding pipe diameter pipe, directly embed the pipe into the arc-shaped groove 12 with the buffer pad layer 13, the pad layer will adapt to the contour of the pipe, and then complete the subsequent goods placement, fixing and sorting process.

[0047] In this way, the hard contact and friction between the pipe and the inner wall of the arc-shaped groove 12 can be relieved, the wear of the two can be reduced, and the service life of the sorting box and the pipe can be prolonged; at the same time, the stability of the pipe after assembly can be enhanced, the pipe can be prevented from shaking and deviating during the sorting process, and the smooth sorting can be ensured.

[0048] Please refer to Figure 1 and Figure 2 As a specific embodiment of the intelligent logistics sorting box provided in the present application, the first mounting area 20 and the second mounting area 30 are mounting grooves, and are respectively arranged on different walls of the box body 10; the stable assembly of the radio frequency identification chip and the information code is realized through the mounting groove structure, and the layout of different walls can avoid mutual interference during installation and use. When operating, only need to correspondingly embed the radio frequency identification chip into one of the mounting grooves, and paste the information code in the other mounting groove, after fixing, the subsequent sorting process such as goods placement and band fixing can be carried out, and the assembly is simple and efficient.

[0049] The mounting groove can provide protection and stable support for the chip and the information code, reduce the risk of collision damage during sorting, and improve the identification accuracy. At the same time, the mounting groove reduces the assembly difficulty, facilitates the maintenance and replacement of the parts in the later period, and further improves the use reliability and maintenance convenience of the sorting box.

[0050] Please refer to Figure 1 and Figure 2As a specific embodiment of the intelligent logistics sorting box provided in the present application, a plurality of protruding portions 14 are additionally arranged at the bottom of the accommodating cavity 11 of the box body 10, and the goods are supported in the air through the protruding portions 14, so as to optimize the stability and protection effect of the goods. The goods to be sorted are directly placed on the plurality of protruding portions 14 at the bottom of the accommodating cavity 11, and after the goods are stably supported, the connection and fixation of the fixing band and the subsequent sorting process are carried out. In this way, the protruding portions 14 form a gap between the goods and the bottom of the box, which can avoid pollution or damage of the goods caused by moisture or stains on the bottom of the box, and reduce the contact friction between the goods and the bottom of the box, thereby reducing the wear during taking and placing. In addition, the air-supported structure also facilitates ventilation at the bottom of the goods, is suitable for goods that need to be ventilated, and the dispersed support of the plurality of protruding portions 14 can improve the stability of the goods, avoid the deviation of the goods during the process, and further enhance the use adaptability and protection capability of the sorting box.

[0051] Please refer to Figure 1 and Figure 2 As a specific embodiment of the intelligent logistics sorting box provided in the present application, the protruding portions 14 at the bottom of the accommodating cavity 11 are structurally optimized, and an inner concave arc surface is arranged on one side of each of the plurality of protruding portions 14. The inner concave arc surfaces cooperatively form a ring-shaped matching surface arranged in the circumferential direction, which is specially used for precisely matching the outer side surface of the circular goods, so as to solve the problem that the circular goods are easy to roll and deviate in the accommodating cavity 11. During operation, the circular goods are only needed to be placed in the accommodating cavity 11, so that the outer side surface of the goods is naturally matched with the ring-shaped matching surface, and then the goods are fixed by the elastic fixing band, and the subsequent sorting process can be carried out. With the aid of the ring-shaped matching surface, the circumferential rolling of the circular goods can be effectively limited, and the stability of the goods can be greatly improved.

[0052] Please refer to Figure 1 and Figure 2 As a specific embodiment of the intelligent logistics sorting box provided in the present application, four clamping grooves 15 are arranged in the interior of the accommodating cavity 11 in pairs, the fixing band has a V-shaped structure, and the end points of the two inclined edges of the V-shaped structure are respectively provided with an insertion buckle connected with the corresponding clamping groove 15. The bottom end points of the two V-shaped structures are provided with a clasp member connected in cooperation. During operation, the inclined edge insertion buckles of the two groups of V-shaped bands are inserted into the four groups of clamping grooves 15 in correspondence to complete positioning and installation, and then the goods are placed in the accommodating cavity 11, and the bottom clasp members are buckled with each other by pulling the two groups of bands, so as to realize the close fixation of the goods. When the goods are taken out, the clasp members are unfastened, and the insertion buckles are pulled out, so that the band can be taken out.

[0053] In this way, the four sets of slots 15, combined with the V-shaped structure, can adapt to the fixing needs of goods of different sizes, solving the problem of limited fixing range of traditional straps; the connection between the buckle and the slot 15 improves the stability of the strap installation and prevents loosening during circulation; the detachable design takes into account both fixing reliability and operation convenience, while also facilitating the individual maintenance and replacement of the straps, further enhancing the flexibility and practicality of the sorting box.

[0054] Not shown in the figure, this application embodiment also provides an intelligent logistics sorting method, which uses any of the above-mentioned intelligent logistics sorting boxes, including: S1: Before sorting, perform a status self-check on the intelligent logistics sorting box, verify whether the information code and radio frequency identification chip are normal through the detection module of the sorting line, and check whether the fixing straps are used properly. S2: Enter the cargo information into the sorting line control system. The system automatically matches the corresponding placement area in the sorting box according to the cargo's size, weight, fragility level, category attributes and target address. S3: Place the goods according to the system matching results, and pre-fix the goods by fixing straps. After pre-fixing, the contact pressure between the goods and the sorting box wall is detected by the pressure sensor built into the sorting box. If the pressure exceeds the preset range, the fixing straps are adjusted until the pressure meets the requirements. S4: Through dual collaborative verification of information code recognition and radio frequency identification chip recognition, after confirming that the goods information is consistent with the sorting target, the sorting line control system plans a priority transfer route based on the real-time congestion of the transfer channel and transfers the sorting box to the target area to complete the sorting.

[0055] The intelligent logistics sorting method provided in this application adopts the aforementioned intelligent logistics sorting box, and combines the intelligent components of the sorting box with the coordinated linkage of the sorting line control system to achieve efficient, accurate and safe sorting of goods.

[0056] The operation process is as follows: Before sorting, a status self-check step is performed. The information code and radio frequency identification chip of the sorting box are verified by the detection module of the sorting line to ensure that they can be read and written normally. At the same time, the elasticity of the fixing straps and the connection structure are checked to ensure that the sorting basic equipment is fault-free.

[0057] The dimensions, weight, fragility level, and other attributes of the goods are then entered into the sorting line control system. The system automatically matches the appropriate placement area within the sorting box based on a preset algorithm, ensuring the rational placement of the goods.

[0058] Next, the goods are placed according to the system matching results and pre-fixed by the fixing straps of the sorting box. Then, the built-in pressure sensor is used to detect the contact pressure between the goods and the box wall. If the pressure is too high or too low, the tightness of the straps is adjusted until the pressure meets the preset range, so as to achieve safe and stable fixing of the goods.

[0059] Finally, through dual collaborative verification using information codes and RFID chips, the system confirms that the cargo information matches the sorting target. Then, by combining real-time transfer channel congestion data, the system plans the optimal transfer route and transfers the sorting box to the target area to complete the sorting.

[0060] In this way, the pre-inspection step can eliminate equipment malfunctions in advance, avoiding sorting interruptions or information errors caused by abnormal sorting box components. The system automatically matches the placement area, combined with the adaptive adjustment of pressure sensors, which not only solves the damage problems caused by improper placement or insecure fixing of goods in traditional sorting, but also improves the adaptability to goods with different attributes. Dual identification and verification significantly reduce the risk of information misreading and improve sorting accuracy; dynamic path planning based on real-time congestion effectively avoids transfer bottlenecks and improves overall sorting efficiency.

[0061] The entire method achieves intelligent control over the entire chain of equipment status, cargo attributes, and sorting process, fully making up for the shortcomings of traditional sorting such as low efficiency, poor accuracy, and insufficient adaptability, and ensuring that the sorting process is stable, efficient, and safe.

[0062] As a specific implementation of the intelligent logistics sorting method provided in this application, in S2, elastic partitions are arranged inside the sorting box according to the three-dimensional dimensions of the goods to form an independent placement space that conforms to the outline of the goods, and an electromagnetic suspension shock-absorbing tray is set at the bottom of the box body 10 to offset the vibration generated during the transfer process; the second step is optimized for the precise placement and transfer damage prevention requirements of goods of different sizes, and the safety of the goods is ensured by the coordinated setting of the elastic partitions and the electromagnetic suspension shock-absorbing tray.

[0063] During operation, after entering the cargo information, the three-dimensional dimension data is first extracted. Based on this, flexible partitions are placed at corresponding positions inside the sorting box to form an independent placement space that conforms to the outline of the cargo. Then, an electromagnetic levitation shock-absorbing tray is installed at the bottom of the box body 10. The flexible partitions can adapt to cargo of different sizes, preventing movement and collision after placement; the electromagnetic levitation shock-absorbing tray can effectively offset the vibration during transportation, especially suitable for fragile items. The combination of the two not only improves the sorting box's adaptability to a variety of cargo, but also strengthens the protection of cargo during transportation, reduces the risk of damage, and ensures the safety of cargo throughout the entire sorting process.

[0064] As a specific implementation of the intelligent logistics sorting method provided in this application, it also includes: after the sorting box arrives at the target area, the system automatically reads the unloading status of the goods through the radio frequency identification chip, automatically verifies the sorting task after unloading is completed, and generates a traceability code containing parameters of the entire sorting process, thereby realizing automated control and full-process traceability at the end of the sorting process by relying on the radio frequency identification chip.

[0065] During operation, after the sorting bin reaches the target area, the system can automatically read the goods unloading status through the RFID chip without manual intervention. After confirming the completion of unloading, the system automatically cancels the current sorting task and simultaneously generates a traceability code, which contains the full-process parameters of sorting. By adopting this method, the automation of sorting task cancellation is achieved, reducing manual recording errors and time consumption; the traceability code completely retains the process data, facilitating subsequent full-link traceability; the control link at the end of sorting is supplemented to form a complete closed loop of sorting, transfer, unloading, cancellation, and traceability, improving the standardization and traceability of sorting management and reducing the operation management cost.

[0066] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An intelligent logistics sorting box, characterized in that, The box body has a containing cavity for placing goods; two parallel walls of the box body are each provided with an arc-shaped groove for mounting a pipe; A first mounting area is located on the outer wall of the box body; the first mounting area is used for mounting a radio frequency identification chip to realize automatic identification and data exchange of the goods; A second mounting area is located on the outer wall of the box body; the second mounting area is used for mounting an information code to carry information required for sorting and tracing; The fixing band is made of elastic material; the fixing band is two groups, and one end of the two fixing bands is symmetrically mounted in the containing cavity, and the other end is used for detachable connection to fix the product or loosen the goods. The arc-shaped grooves are multiple and two by two are a group; the two arc-shaped grooves in the same group are both provided on the two parallel walls of the box body; the curvatures of the arc-shaped grooves in each group are different, which are used for adapting to pipe fittings of different diameters.

2. The intelligent logistics sortation bin of claim 1, wherein, The inner wall of the arc-shaped groove is provided with a buffer pad.

3. The intelligent logistics sortation bin of claim 2, wherein, The first mounting area and the second mounting area are both mounting grooves, and are respectively arranged on different walls of the box body.

4. The intelligent logistics sortation bin of claim 1, wherein, The box body is also provided with multiple protrusions located at the bottom of the containing cavity, and the goods are supported on the multiple protrusions.

5. The intelligent logistics sortation bin of claim 1, wherein, The side of the multiple protrusions close to each other is provided with an inner concave arc surface, and the multiple inner concave arc surfaces form a circumferentially arranged annular matching surface, which is used for matching with the outer side surface of the circular goods.

6. The intelligent logistics sortation bin of claim 5, wherein, The inside of the containing cavity is provided with four clamping grooves two by two, the fixing band is a V-shaped structure, and the two inclined edge endpoints of the V-shaped structure are provided with plug buckles connected with the corresponding clamping grooves; the bottom endpoints of the two V-shaped structures are provided with clamping buckles matched and connected.

7. The intelligent logistics sortation bin of claim 1, wherein, The intelligent logistics sorting box of any one of claims 1-7 comprises:

8. An intelligent logistics sorting method, characterized in that, S1: before sorting, the state of the intelligent logistics sorting box is self-checked, whether the information code and the radio frequency identification chip are normal is verified through the detection module matched with the sorting line, and whether the fixing band is used normally is checked; S2: the information of the goods is input into the sorting line control system, and the system automatically matches the corresponding placement area in the sorting box according to the size, weight, fragility level, category attribute and target address of the goods; S3: the goods are placed according to the matching result of the system, the pre-fixing of the goods is realized through the fixing band, after pre-fixing, the contact pressure between the goods and the wall of the sorting box is detected through the pressure sensor built in the sorting box, if the pressure exceeds the preset range, the fixing band is adjusted until the pressure meets the requirements; S4: after confirming that the information of the goods is consistent with the sorting target through the double cooperative verification of the information code identification and the radio frequency identification chip identification, the sorting line control system plans the priority transfer path according to the real-time transfer channel congestion, and transfers the sorting box to the target area to complete the sorting. In S2, according to the three-dimensional size of the goods, an elastic coaming is arranged in the sorting box to form an independent placement space conforming to the contour of the goods, and an electromagnetic suspension damping supporting plate is arranged at the bottom of the box body to offset the vibration generated in the transfer process.

9. The intelligent logistics sorting method of claim 8, wherein, Further comprising:

10. The intelligent logistics sorting method of claim 8, wherein, ​ S5: After the sorting box arrives at the target area, the system automatically reads the unloading status of the goods through the radio frequency identification chip. After unloading is completed, the sorting task is automatically checked off, and a trace code containing sorting full-process parameters is generated.