Management method applied to circulating logistics packaging appliance

By using electronic identification tags and preset allocation algorithms in circular logistics packaging utensils, the problems of insufficient information recording and tracking, difficult scheduling and operation, and unreasonable maintenance priorities are solved, and precise management and efficient maintenance of packaging utensils are achieved.

CN120013379AInactive Publication Date: 2025-05-16富日供应链科技有限公司
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Patent Information

Application Number
CN202411991523.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-05-16
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the management of recycled logistics packaging utensils, there are problems such as insufficient information recording and tracking, difficult scheduling and operation, and unreasonable maintenance priorities in the management of recycled logistics packaging utensils, which affects logistics efficiency and customer satisfaction.

Method used

Electronic identification tags are used to mark the packaging utensils, and packaging utensils are allocated according to the demand signaling of the distribution center through a preset configuration algorithm, and the usage information of the packaging utensils is collected by monitoring time intervals to determine maintenance priorities.

Benefits of technology

Accurate identification and information traceability of packaging utensils are realized, the rationality and accuracy of allocation are improved, the blindness of maintenance work is avoided, and resource utilization efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a management method applied to a circulating logistics packaging appliance, and relates to the technical field of logistics packaging management. The method comprises the following steps: in deployment management, according to a demand signaling including a cargo type and a customer type sent by a distribution center, firstly extracting the cargo type, determining a corresponding available packaging appliance type, and screening and counting the number; then, information such as the putting-into-use time point and the turnover efficiency of the packaging appliance is obtained, and the used time length, the turnover efficiency, the matching stability score and the efficiency score are calculated; and then determining a weight coefficient set according to the customer type, calculating a state evaluation index, and finally sorting according to the index and combining with the total weight of the goods to screen a proper packaging appliance for allocation, so that the rationality and accuracy of allocation are ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of logistics packaging management, and in particular to a management method applied to circulating logistics packaging equipment. Background Art

[0002] With the rapid development of the logistics industry and the increasing requirements for environmental protection and resource conservation, the application of recyclable logistics packaging equipment is becoming more and more extensive.

[0003] However, there are many problems in the management of recycled logistics packaging equipment, including:

[0004] Under the traditional management model, the means of recording and tracking information on packaging equipment are limited, and there is a lack of effective identification and data collection methods, making it difficult to accurately grasp the location, status and usage of packaging equipment in real time;

[0005] In addition, there are a large number of packaging equipment of different types and specifications, which makes scheduling operations extremely difficult. It is impossible to scientifically allocate packaging equipment according to the needs of the distribution center and the actual situation of the packaging equipment, resulting in mismatches and delays, affecting logistics efficiency and customer satisfaction.

[0006] When maintaining packaging equipment, it is difficult to accurately judge the degree of maintenance needs of the packaging equipment, and the maintenance work lacks reasonable priority arrangement, which can easily cause waste of resources or excessive wear and tear of equipment.

[0007] To this end, a management method for recyclable logistics packaging equipment is introduced. Summary of the invention

[0008] The purpose of the present invention is to solve the problems mentioned in the background technology and to propose a management method for recycling logistics packaging equipment.

[0009] The object of the present invention can be achieved by the following technical solution: A management method for recycling logistics packaging equipment, comprising:

[0010] Label setting: set a unique electronic identification label for the packaging equipment entering the warehouse;

[0011] Allocation management: When a distribution center sends a packaging equipment demand signal to the warehouse, the corresponding number of packaging equipment is allocated to the current distribution center according to the preset allocation algorithm; the packaging equipment demand signal includes the type of goods and customer type that the distribution center needs to deliver;

[0012] Maintenance management: Based on the preset monitoring time interval, after the preset monitoring time interval is reached, the usage information of the packaging equipment within the set time period is collected and analyzed, so as to determine the maintenance priority corresponding to each group of packaging equipment in the warehouse; the usage information includes: after determining the maintenance priority corresponding to each group of packaging equipment in the warehouse, it is sent to the maintenance personnel, and the maintenance personnel maintain each group of packaging equipment in the warehouse according to the maintenance priority, and determine the usage status during the maintenance process; the usage status includes the damaged repair status and the near scrap status; the usage information includes the usage frequency, the total usage time and the average weight of the load;

[0013] Processing optimization: Execute corresponding steps based on the usage status of each group of packaging equipment in the warehouse.

[0014] As a preferred implementation of the present invention, a corresponding number of packaging tools are allocated to the current distribution center according to a preset allocation algorithm, specifically:

[0015] Extract the types of goods that the distribution center needs to deliver, set the types of available packaging tools corresponding to each type of goods, identify the types of available packaging tools for the types of goods that the distribution center needs to deliver, and screen them in the warehouse, count the number of each type of packaging tools, and accumulate them to get the available number;

[0016] Obtain the time point of use and turnover efficiency of each group of packaging equipment in the available quantity;

[0017] Parse the electronic identification tags of each group of packaging tools in the available quantity to obtain the time point of each group of packaging tools in the available quantity being put into use, calculate the difference between the time point of each group of packaging tools in the available quantity being put into use and the current time point, to obtain the usage time corresponding to each group of packaging tools in the available quantity;

[0018] Parsing the electronic identification tags of each group of packaging tools in the available quantity, thereby obtaining the average turnover time and average idle time of each group of packaging tools in the available quantity within a set time period before the current time point;

[0019] Average turnover time refers to the average length of time it takes for a packaging device to be put into use each time within a set time period and return to a state where it can be redeployed after completing each use task;

[0020] The average idle time refers to the length of time that a packaging device is idle and waiting for the next deployment after completing a turnover task within a set time period, and is calculated by averaging the length of time for each group;

[0021] By substituting the average turnover time and average idle time of each group of packaging tools in the available quantity into the formula average turnover time / (average idle time + average turnover time), the turnover efficiency of each group of packaging tools in the available quantity can be obtained.

[0022] As a preferred embodiment of the present invention, according to a preset allocation algorithm, a corresponding number of packaging tools are allocated to the current distribution center, which also includes:

[0023] Preset the range of values ​​of each group of duration corresponding to the used duration and the interval of each group of efficiency corresponding to the turnover efficiency; set a stability score corresponding to each group of duration value range; set an efficiency score corresponding to each group of efficiency interval;

[0024] Match the used time and turnover efficiency of each group of packaging tools in the available quantity with the corresponding preset value range of each group of time and the interval of each group of efficiency, so as to obtain the stability score and efficiency score of each group of packaging tools in the available quantity;

[0025] Obtain the customer types corresponding to the goods that the distribution center needs to deliver, where the customer types are divided into new customers and old customers; set a set of weight coefficients corresponding to new customers and old customers respectively, where each set of weight coefficients includes weight coefficients corresponding to stability scores and efficiency scores respectively;

[0026] Determine a set of weight coefficients corresponding to the customer types of the goods that the distribution center needs to deliver, then multiply the stability score and efficiency score of each group of packaging equipment in the available quantity by the corresponding determined weight coefficients, and then sum them up to obtain the status evaluation index of each group of packaging equipment in the available quantity;

[0027] Sort each group of packaging equipment in the available quantity from large to small according to the status evaluation index. After the sorting is completed, obtain the total weight of the goods currently required for delivery, and select the packaging equipment corresponding to the total weight from left to right.

[0028] As a preferred implementation of the present invention, the maintenance priority order corresponding to each group of packaging equipment in the warehouse is determined as follows:

[0029] Scan the electronic identification labels of each group of packaging equipment in the warehouse;

[0030] Obtain the usage count corresponding to each group of packaging tools in the warehouse, and divide the usage count by the set time period to obtain the usage frequency q1 corresponding to each group of packaging tools in the warehouse;

[0031] At the same time, the usage time of each group of packaging tools in the warehouse is obtained. The usage time is determined according to the transportation time of each use. The usage time of each use is accumulated to obtain the total usage time q2 of each group of packaging tools in the warehouse;

[0032] Obtain the weight of each load corresponding to each group of packaging equipment in the warehouse; calculate the average of the weight of each load corresponding to each group of packaging equipment in the warehouse, so as to obtain the average weight q3 of each group of packaging equipment in the warehouse within a set time period; extract the stability score of each group of packaging equipment in the warehouse, recorded as q4;

[0033] Preset the normal use frequency, total normal use time, standard load weight and passing stability score of different types of packaging equipment within a set time period;

[0034] According to the formula The use frequency q1, total use time q2, average load weight q3 and pass stability score q4 of each group of packaging equipment in the warehouse are weighted and calculated to obtain the maintenance assessment index kgf of each group of packaging equipment in the current set time period; where g1, g2, g3 and g4 represent the normal use frequency, the normal total use time, the standard load weight and the pass stability score respectively; a1, a2, a3 and a4 are the influence weight factors corresponding to the use frequency q1, the total use time q2, the average load weight q3 and the pass stability score q4 respectively;

[0035] The groups of packaging equipment in the warehouse are sorted from large to small according to the calculated maintenance assessment index kgf. After the sorting is completed, it is used as the maintenance priority order corresponding to the groups of packaging equipment in the warehouse in the current set time period.

[0036] As a preferred embodiment of the present invention, corresponding steps are performed based on the usage status corresponding to each group of packaging tools in the warehouse, specifically:

[0037] Damaged repair status: Count the number of damaged repair status, record it as the repair quantity, and calculate the proportion of the repair quantity in the total number of packaging equipment in the warehouse, record it as the repair proportion; set a reference threshold corresponding to the repair proportion, if the repair proportion is greater than the set reference threshold, trigger the inventory warning signal and send it to the management personnel; after receiving the triggered inventory warning signal, the management personnel obtain the repair personnel who are in working state at the current time point and select X repair personnel to repair the packaging equipment in the damaged repair status;

[0038] Nearing scrap status: The number of items that are nearing scrap status is counted and recorded as scrap quantity. The number is sent to the management staff to remind them to replenish the inventory.

[0039] As a preferred embodiment of the present invention, the specific process of screening X repair personnel is as follows:

[0040] In the process of screening repair personnel, the working years, number of repairs and repair time of each repair personnel are obtained and analyzed to obtain the repair evaluation index of each repair personnel. The repair personnel who are in working status at the current time point are sorted from large to small according to the repair evaluation index. After the sorting is completed, the top X repair personnel are pushed to the management personnel.

[0041] As a preferred implementation of the present invention, the repair evaluation index of each repairman is obtained, specifically:

[0042] Preset the working years corresponding to the value ranges of each group of years, set each group of years value range to correspond to an efficiency additional coefficient; match the working years of the repair personnel with the preset value ranges of each group of years, and obtain the efficiency additional coefficient corresponding to each repair personnel;

[0043] Extract the historical repair times of each repairman, mark the time consumed by each repair as the repair time, calculate the mean of the repair time of each group of repairmen, obtain the average repair time of each repairman, and calculate the average repair time of each repairman;

[0044] The preset mean repair time and the historical repair times correspond to the intervals of the mean repair time and the value ranges of the times of each group, and the intervals of the mean repair time and the value ranges of the times of each group correspond to a repair efficiency score and a score additional coefficient respectively;

[0045] Match the average repair time and historical repair times of each repairman with the corresponding interval of each group average time and the value range of each group number, and obtain the repair efficiency score and score additional coefficient of each repairman;

[0046] The repair evaluation index of each repairman is obtained by multiplying the repair efficiency score of each repairman by the efficiency additional coefficient and the score additional coefficient.

[0047] Compared with the prior art, the present invention has the following beneficial effects:

[0048] The present invention sets a unique electronic identification tag for the packaging equipment entering the warehouse by adopting the tag setting link, and these basic attributes can be quickly obtained through the identification device later, so as to realize the accurate identification and information tracing of the packaging equipment;

[0049] In the allocation management, the present invention first extracts the type of goods, determines the corresponding available packaging equipment types and screens the statistical quantity according to the demand signaling containing the type of goods and the type of customers sent by the distribution center; then obtains the time point of use of the packaging equipment, turnover efficiency and other information, calculates the length of use, turnover efficiency, and matches the stability score and efficiency score. Then, the weight coefficient set is determined according to the customer type, the status evaluation index is calculated, and finally, the appropriate packaging equipment is selected for allocation according to the sorting index and the total weight of the goods, thereby ensuring the rationality and accuracy of the allocation;

[0050] The present invention collects information such as the usage frequency, total usage time, average load weight, etc. of packaging equipment within a set time period through maintenance management based on preset monitoring time intervals, and combines the stability score with a weighted calculation formula to derive a maintenance evaluation index. The packaging equipment is sorted according to the index to determine the maintenance priority, so that maintenance personnel can clearly identify which equipment is in urgent need of maintenance, avoiding the blindness of maintenance work and improving the utilization efficiency of maintenance resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0051] In order to facilitate understanding by those skilled in the art, the present invention is further described below with reference to the accompanying drawings.

[0052] Figure 1 It is a flow chart of the present invention. DETAILED DESCRIPTION

[0053] The technical solution of the present invention will be clearly and completely described below in conjunction with the embodiments. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0054] See also Figure 1 As shown, the management method applied to recycling logistics packaging equipment includes:

[0055] Tag setting: set a unique electronic identification tag for the packaging equipment entering the warehouse; such as using radio frequency identification (RFID) tags or QR code tags;

[0056] The electronic identification tag stores the basic information of the packaging device, including but not limited to the device number, specification, material, production batch, maximum load capacity, etc., so that its basic properties can be quickly obtained through the identification device later;

[0057] Allocation management: When a distribution center sends a packaging equipment demand signal to the warehouse, the corresponding number of packaging equipment is allocated to the current distribution center according to the preset allocation algorithm; the packaging equipment demand signal includes the type of goods and customer type that the distribution center needs to deliver;

[0058] Specifically:

[0059] Extract the types of goods that the distribution center needs to deliver, set the types of available packaging tools corresponding to each type of goods, identify the types of available packaging tools for the types of goods that the distribution center needs to deliver, and screen them in the warehouse, count the number of each type of packaging tools, and accumulate them to get the available number;

[0060] Obtain the time point of use and turnover efficiency of each group of packaging equipment in the available quantity;

[0061] Parse the electronic identification tags of each group of packaging tools in the available quantity to obtain the time point of each group of packaging tools in the available quantity being put into use, calculate the difference between the time point of each group of packaging tools in the available quantity being put into use and the current time point, to obtain the usage time corresponding to each group of packaging tools in the available quantity;

[0062] Parsing the electronic identification tags of each group of packaging tools in the available quantity, thereby obtaining the average turnover time and average idle time of each group of packaging tools in the available quantity within a set time period before the current time point;

[0063] Average turnover time refers to the average length of time it takes for a packaging device to be put into use each time within a set time period and to return to a state where it can be deployed again after completing each use task (such as returning to the warehouse and completing related processes such as inspection and cleaning before waiting for the next deployment);

[0064] The average idle time refers to the length of time that a packaging device is idle and waiting for the next deployment after completing a turnover task within a set time period, and is calculated by averaging the length of time for each group;

[0065] The turnover efficiency of each group of packaging equipment in the available quantity is calculated by substituting the average turnover time and the average idle time of each group of packaging equipment in the available quantity into the formula average turnover time / (average idle time + average turnover time);

[0066] It should be noted that packaging equipment with better turnover efficiency should be given priority to improve the efficiency of packaging equipment in the overall logistics process;

[0067] Preset the range of values ​​of each group of duration corresponding to the used time and the interval of each group of efficiency corresponding to the turnover efficiency; set each group of duration value range to correspond to a stability score; the shorter the used time, the earlier the packaging equipment has been manufactured, and the more stable the quality of each component, and the higher the corresponding stability score; set each group of efficiency interval to correspond to an efficiency score; the higher the turnover efficiency, the higher the corresponding efficiency score;

[0068] Match the used time and turnover efficiency of each group of packaging tools in the available quantity with the corresponding preset value range of each group of time and the interval of each group of efficiency, so as to obtain the stability score and efficiency score of each group of packaging tools in the available quantity;

[0069] Obtain the customer types corresponding to the goods that the distribution center needs to deliver, where the customer types are divided into new customers and old customers; set a set of weight coefficients corresponding to new customers and old customers respectively, where each set of weight coefficients includes weight coefficients corresponding to stability scores and efficiency scores respectively;

[0070] Determine a set of weight coefficients corresponding to the customer types of the goods that the distribution center needs to deliver, then multiply the stability score and efficiency score of each group of packaging equipment in the available quantity by the corresponding determined weight coefficients, and then sum them up to obtain the status evaluation index of each group of packaging equipment in the available quantity;

[0071] It should be noted that different sets of weight coefficients are set for new customers and old customers, and these weight coefficients are determined based on the differences in the key factors of delivery service that different types of customers focus on;

[0072] For new customers, the distribution center hopes to leave a good first impression on them and pays more attention to the stability of the delivery service to ensure that the goods can be delivered accurately, on time and intact, so as to win the long-term trust of customers. At the same time, it also needs to take into account a certain degree of delivery efficiency. Therefore, the weight coefficient of the corresponding stability score is higher. The weight coefficient of the stability score can be set to 1.32, and the weight coefficient of the efficiency score can be set to 1.17;

[0073] Old customers already have a certain understanding and experience of the distribution center's services, which is relatively balanced. The weight coefficient of the stability score can be set to 1.23, and the weight coefficient of the efficiency score can be set to 1.25;

[0074] Sort each group of packaging equipment in the available quantity from large to small according to the status evaluation index. After the sorting is completed, obtain the total weight of the goods currently required for delivery, and select the packaging equipment corresponding to the total weight from left to right;

[0075] It should be noted that by combining the length of use and turnover efficiency, the stability score and efficiency score are matched for the packaging equipment, and then the status assessment index is calculated based on the set of weight coefficients corresponding to different customer types. This multi-dimensional and comprehensive evaluation method can more comprehensively and objectively measure the actual status and applicability of packaging equipment and achieve scientific management.

[0076] Maintenance management: Based on the preset monitoring time interval, after the preset monitoring time interval is reached, the usage information of the packaging equipment within the set time period is collected and analyzed, so as to determine the maintenance priority corresponding to each group of packaging equipment in the warehouse; the usage information includes: after determining the maintenance priority corresponding to each group of packaging equipment in the warehouse, it is sent to the maintenance personnel, and the maintenance personnel maintain each group of packaging equipment in the warehouse according to the maintenance priority, and determine the usage status during the maintenance process; the usage status includes the damaged repair status and the near scrap status; the usage information includes the usage frequency, the total usage time and the average weight of the load;

[0077] Specifically:

[0078] Scan the electronic identification labels of each group of packaging equipment in the warehouse;

[0079] Obtain the usage count corresponding to each group of packaging tools in the warehouse, and divide the usage count by the set time period to obtain the usage frequency q1 corresponding to each group of packaging tools in the warehouse;

[0080] At the same time, the usage time of each group of packaging tools in the warehouse is obtained. The usage time is determined according to the transportation time of each use. The usage time of each use is accumulated to obtain the total usage time q2 of each group of packaging tools in the warehouse;

[0081] Obtain the weight of each load corresponding to each group of packaging equipment in the warehouse; collect it using the weight sensor pre-deployed in the packaging equipment, or obtain it through personnel recording; calculate the average value of the weight of each load corresponding to each group of packaging equipment in the warehouse, so as to obtain the average weight q3 of the load of each group of packaging equipment in the warehouse within the set time period; extract the stability score of each group of packaging equipment in the warehouse, recorded as q4;

[0082] Preset the normal use frequency, total normal use time, standard load weight and passing stability score of different types of packaging equipment within a set time period;

[0083] According to the formula The use frequency q1, total use time q2, average load weight q3 and pass stability score q4 of each group of packaging equipment in the warehouse are weighted and calculated to obtain the maintenance assessment index kgf of each group of packaging equipment in the current set time period; where g1, g2, g3 and g4 represent the normal use frequency, the normal total use time, the standard load weight and the pass stability score respectively; a1, a2, a3 and a4 are the influence weight factors corresponding to the use frequency q1, the total use time q2, the average load weight q3 and the pass stability score q4 respectively;

[0084] Sort each group of packaging equipment in the warehouse from large to small according to the calculated maintenance assessment index kgf, and after the sorting is completed, it will be used as the maintenance priority order corresponding to each group of packaging equipment in the warehouse in the current set time period;

[0085] It should be noted that by collecting usage information such as usage frequency, total usage time, average load weight, and stability score, the usage and performance status of packaging equipment can be comprehensively reflected from different angles; compared with single-dimensional data evaluation, this multi-dimensional evaluation method can more comprehensively and accurately understand the actual status of packaging equipment within a set time period, and provide more reliable data support for subsequent maintenance decisions;

[0086] Weighted calculation of maintenance index: using the preset normal use frequency, total normal use time, standard load weight and passing stability score, combined with the influencing weight factor, weighted calculation of each use information is performed to obtain the maintenance evaluation index; this index comprehensively considers the impact of various factors on the maintenance needs of packaging equipment, making the evaluation results more scientific and reasonable, and can accurately quantify the maintenance needs of each packaging equipment;

[0087] By sorting the packaging equipment according to the maintenance assessment index to form a maintenance priority order, maintenance personnel can clearly understand which packaging equipment needs priority maintenance; this avoids the blindness and randomness of maintenance work, enables maintenance resources to be invested first in packaging equipment with the most urgent maintenance needs, and improves the pertinence and efficiency of maintenance work.

[0088] Processing optimization: Execute corresponding steps based on the usage status of each group of packaging equipment in the warehouse;

[0089] Specifically:

[0090] Damaged repair status: Count the number of damaged repair status, record it as the repair quantity, and calculate the proportion of the repair quantity in the total number of packaging equipment in the warehouse, record it as the repair proportion; set the reference threshold corresponding to the repair proportion. If the repair proportion is greater than the set reference threshold, the inventory warning signal is triggered and sent to the management personnel;

[0091] After receiving the triggered inventory warning signal, the manager obtains the repair personnel who are in working state at the current time point and selects X repair personnel to repair the damaged packaging equipment in the repair state; X is determined by the manager based on the number of repairs;

[0092] In the process of screening repair personnel, obtain the working years, number of repairs and repair duration of each repair personnel;

[0093] The preset working years correspond to the value ranges of each group of years, and each group of years value range is set to correspond to an efficiency additional coefficient; the efficiency additional coefficient range is set to 1.138-1.158, and the higher the working years, the higher the corresponding efficiency additional coefficient; the working years of the repair personnel are matched with the preset value ranges of each group of years, and the efficiency additional coefficient corresponding to each repair personnel is obtained;

[0094] Extract the historical repair times of each repairman, mark the time consumed by each repair as the repair time, calculate the mean of the repair time of each group of repairmen, obtain the average repair time of each repairman, and calculate the average repair time of each repairman;

[0095] The preset mean repair time and the historical repair times correspond to the intervals of the mean time of each group and the range of the number of times of each group, and the intervals of the mean time of each group and the range of the number of times of each group are set to correspond to a repair efficiency score and a score additional coefficient respectively; the repair efficiency score range is set to 1-10 and is a positive integer. The shorter the mean repair time, the higher the corresponding repair efficiency score. The score additional coefficient range is set to 1.127-1.142. The more historical repair times, the corresponding score additional coefficient is matched;

[0096] Match the average repair time and historical repair times of each repairman with the corresponding interval of each group average time and the value range of each group number, and obtain the repair efficiency score and score additional coefficient of each repairman;

[0097] The repair efficiency score of each repairman is multiplied by the efficiency additional coefficient and the score additional coefficient to obtain the repair evaluation index of each repairman. The repairmen who are in working state at the current time point are sorted from large to small according to the repair evaluation index. After the sorting is completed, the top X repairmen are pushed to the management personnel.

[0098] Nearly scrapped: The number of items that are near scrapped is counted and recorded as scrapped. The number is sent to the management staff to remind them to replenish the inventory.

[0099] It should be noted that for damaged packaging equipment that is returned for repair, the repair ratio is calculated and compared with the reference threshold. When the ratio exceeds the threshold, the inventory warning signal is triggered. This mechanism can timely discover the risks that the return of packaging equipment may cause to inventory, allowing managers to know potential inventory shortages in advance so that timely measures can be taken to ensure the adequacy and stability of inventory.

[0100] For packaging equipment that is close to being scrapped, their number is counted and sent to management personnel to remind them to replenish the inventory. This clear way of transmitting information provides managers with a clear basis for decision-making, helping them to reasonably plan the purchase of new packaging equipment according to actual conditions.

[0101] The preferred embodiments of the present invention disclosed above are only used to help explain the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the invention to only specific implementation methods. Obviously, many modifications and changes can be made according to the content of this specification. This specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the present invention, so that those skilled in the art can understand and use the present invention well. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. A management method for recycling logistics packaging equipment, characterized in that: include: Label setting: set a unique electronic identification label for the packaging equipment entering the warehouse; Allocation management: When a distribution center sends a packaging equipment demand signal to the warehouse, the corresponding number of packaging equipment is allocated to the current distribution center according to the preset allocation algorithm; the packaging equipment demand signal includes the type of goods and customer type that the distribution center needs to deliver; Maintenance management: Based on the preset monitoring time interval, the usage information of packaging equipment within the set time period is collected and analyzed after the preset monitoring time interval is reached, so as to determine the maintenance priority corresponding to each group of packaging equipment in the warehouse; The usage information includes: after determining the maintenance priority corresponding to each group of packaging equipment in the warehouse, it is sent to the maintenance personnel, and the maintenance personnel maintain each group of packaging equipment in the warehouse according to the maintenance priority, and determine the usage status during the maintenance process; the usage status includes the damaged repair status and the near scrap status; the usage information includes the usage frequency, the total usage time and the average weight of the load; Processing optimization: Execute corresponding steps based on the usage status of each group of packaging equipment in the warehouse.

2. The management method for recycling logistics packaging equipment according to claim 1 is characterized in that: According to the preset allocation algorithm, the corresponding number of packaging tools is allocated to the current distribution center, specifically: Extract the types of goods that the distribution center needs to deliver, set the types of available packaging tools corresponding to each type of goods, identify the types of available packaging tools for the types of goods that the distribution center needs to deliver, and screen them in the warehouse, count the number of each type of packaging tools, and accumulate them to get the available number; Obtain the time point of use and turnover efficiency of each group of packaging equipment in the available quantity; Parse the electronic identification tags of each group of packaging tools in the available quantity to obtain the time point of each group of packaging tools in the available quantity being put into use, calculate the difference between the time point of each group of packaging tools in the available quantity being put into use and the current time point, to obtain the usage time corresponding to each group of packaging tools in the available quantity; Parsing the electronic identification tags of each group of packaging tools in the available quantity, thereby obtaining the average turnover time and average idle time of each group of packaging tools in the available quantity within a set time period before the current time point; Average turnover time refers to the average length of time it takes for a packaging device to be put into use each time within a set time period and return to a state where it can be redeployed after completing each use task; The average idle time refers to the length of time that a packaging device is idle and waiting for the next deployment after completing a turnover task within a set time period, and is calculated by averaging the length of time for each group; By substituting the average turnover time and average idle time of each group of packaging tools in the available quantity into the formula average turnover time / (average idle time + average turnover time), the turnover efficiency of each group of packaging tools in the available quantity can be obtained.

3. The management method for recycling logistics packaging equipment according to claim 2 is characterized in that: According to the preset allocation algorithm, the corresponding number of packaging tools is allocated to the current distribution center, which also includes: Preset the range of values ​​of each group of duration corresponding to the used duration and the interval of each group of efficiency corresponding to the turnover efficiency; set a stability score corresponding to each group of duration value range; set an efficiency score corresponding to each group of efficiency interval; Match the used time and turnover efficiency of each group of packaging tools in the available quantity with the corresponding preset value range of each group of time and the interval of each group of efficiency, so as to obtain the stability score and efficiency score of each group of packaging tools in the available quantity; Obtain the customer types corresponding to the goods that the distribution center needs to deliver, where the customer types are divided into new customers and old customers; set a set of weight coefficients corresponding to new customers and old customers respectively, where each set of weight coefficients includes weight coefficients corresponding to stability scores and efficiency scores respectively; Determine a set of weight coefficients corresponding to the customer types of the goods that the distribution center needs to deliver, then multiply the stability score and efficiency score of each group of packaging equipment in the available quantity by the corresponding determined weight coefficients, and then sum them up to obtain the status evaluation index of each group of packaging equipment in the available quantity; Sort each group of packaging equipment in the available quantity from large to small according to the status evaluation index. After the sorting is completed, obtain the total weight of the goods currently required for delivery, and select the packaging equipment corresponding to the total weight from left to right.

4. The management method for recycling logistics packaging equipment according to claim 3 is characterized in that: Determine the maintenance priority for each group of packaging equipment in the warehouse, specifically: Scan the electronic identification labels of each group of packaging equipment in the warehouse; Obtain the usage count corresponding to each group of packaging tools in the warehouse, and divide the usage count by the set time period to obtain the usage frequency q1 corresponding to each group of packaging tools in the warehouse; At the same time, the usage time of each group of packaging tools in the warehouse is obtained. The usage time is determined according to the transportation time of each use. The usage time of each use is accumulated to obtain the total usage time q2 of each group of packaging tools in the warehouse; Obtain the load weight corresponding to each group of packaging equipment in the warehouse; Calculate the average weight of each load corresponding to each group of packaging equipment in the warehouse, so as to obtain the average weight q3 of each group of packaging equipment in the warehouse within a set time period; extract the stability score of each group of packaging equipment in the warehouse, recorded as q4; Preset the normal use frequency, total normal use time, standard load weight and passing stability score of different types of packaging equipment within a set time period; According to the formula The use frequency q1, total use time q2, average load weight q3 and pass stability score q4 of each group of packaging equipment in the warehouse are weighted and calculated to obtain the maintenance assessment index kgf of each group of packaging equipment in the current set time period; where g1, g2, g3 and g4 represent the normal use frequency, the normal total use time, the standard load weight and the pass stability score respectively; a1, a2, a3 and a4 are the influence weight factors corresponding to the use frequency q1, the total use time q2, the average load weight q3 and the pass stability score q4 respectively; The groups of packaging equipment in the warehouse are sorted from large to small according to the calculated maintenance assessment index kgf. After the sorting is completed, it is used as the maintenance priority order corresponding to the groups of packaging equipment in the warehouse in the current set time period.

5. The management method for recycling logistics packaging equipment according to claim 4 is characterized in that: Based on the usage status of each group of packaging equipment in the warehouse, execute the corresponding steps, specifically: Damaged repair status: Count the number of damaged repair status, record it as the repair quantity, and calculate the proportion of the repair quantity in the total number of packaging equipment in the warehouse, record it as the repair proportion; set a reference threshold corresponding to the repair proportion, if the repair proportion is greater than the set reference threshold, trigger the inventory warning signal and send it to the management personnel; after receiving the triggered inventory warning signal, the management personnel obtain the repair personnel who are in working state at the current time point and select X repair personnel to repair the packaging equipment in the damaged repair status; Nearing scrap status: The number of items that are nearing scrap status is counted and recorded as scrap quantity. The number is sent to the management staff to remind them to replenish the inventory.

6. The management method for recycling logistics packaging equipment according to claim 5, characterized in that: The specific process of selecting X repair personnel is as follows: In the process of screening repair personnel, the working years, number of repairs and repair time of each repair personnel are obtained and analyzed to obtain the repair evaluation index of each repair personnel. The repair personnel who are in working status at the current time point are sorted from large to small according to the repair evaluation index. After the sorting is completed, the top X repair personnel are pushed to the management personnel.

7. The management method for recycling logistics packaging equipment according to claim 6 is characterized in that: The repair evaluation index of each repairman is obtained, specifically: Preset the working years corresponding to the value ranges of each group of years, set each group of years value range to correspond to an efficiency additional coefficient; match the working years of the repair personnel with the preset value ranges of each group of years, and obtain the efficiency additional coefficient corresponding to each repair personnel; Extract the historical repair times of each repairman, mark the time consumed by each repair as the repair time, calculate the mean of the repair time of each group of repairmen, obtain the average repair time of each repairman, and calculate the average repair time of each repairman; The preset mean repair time and the historical repair times correspond to the intervals of the mean repair time and the value ranges of the times of each group, and the intervals of the mean repair time and the value ranges of the times of each group correspond to a repair efficiency score and a score additional coefficient respectively; Match the average repair time and historical repair times of each repairman with the corresponding interval of each group average time and the value range of each group number, and obtain the repair efficiency score and score additional coefficient of each repairman; The repair evaluation index of each repairman is obtained by multiplying the repair efficiency score of each repairman by the efficiency additional coefficient and the score additional coefficient.