Non-ferrous metal sorting and distribution control method and system
By obtaining the composition and proportion of non-ferrous metal waste through testing equipment, and then classifying and temporarily storing it, the problems of low recycling rate and high processing cost of non-ferrous metal waste are solved, achieving efficient recycling and cost savings.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2026-03-27
AI Technical Summary
The recycling process for non-ferrous metal scrap suffers from low recovery rates and high processing costs.
The composition and percentage of non-ferrous metal waste are obtained through testing equipment, classified, matched with corresponding recycling and distribution routes, and then temporarily stored and smelted.
It improves the accuracy of non-ferrous metal recycling and saves on raw material costs in the smelting process.
Smart Images

Figure CN119456433B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of non-ferrous metal recycling, and more particularly to a non-ferrous metal classification and distribution control method and system. BACKGROUND
[0002] In recent years, the non-ferrous metal industry has developed rapidly and provides essential basic materials for modern economic construction. In this process, non-ferrous metal waste has also increased. At present, there are problems such as low recovery rate and high processing cost in the recycling process of non-ferrous metal waste.
[0003] Therefore, the prior art has defects and needs to be improved. SUMMARY
[0004] In view of the above problems, the present application aims to provide a non-ferrous metal classification and distribution control method and system, which can reduce the processing cost of non-ferrous metal waste and improve the recovery efficiency.
[0005] The first aspect of the present application provides a non-ferrous metal classification and distribution control method, comprising:
[0006] obtaining non-ferrous metal waste information;
[0007] extracting the composition of the non-ferrous metal waste and the proportion of each component based on a preset detection device;
[0008] classifying the non-ferrous metal waste according to the composition of the non-ferrous metal waste and the proportion of each component, to obtain the classification type of the corresponding non-ferrous metal waste;
[0009] matching the recovery and distribution route of the corresponding classification type based on the classification type of the non-ferrous metal waste;
[0010] storing the non-ferrous metal waste according to the recovery and distribution route of the corresponding classification type.
[0011] In the present application, the step of classifying the non-ferrous metal waste according to the composition of the non-ferrous metal waste and the proportion of each component specifically comprises:
[0012] if the proportion of the component of the non-ferrous metal waste is greater than the preset proportion threshold of the corresponding component, the corresponding component is set as a classification factor;
[0013] arranging the proportion of the components of the classification factor in descending order to obtain the classification factor with the largest proportion;
[0014] The classification factor with the maximum proportion value is set as a main classification factor, the main classification factor proportion value is divided into multiple main classification factor proportion range intervals based on a preset main classification factor proportion range base, each main classification factor proportion range interval corresponds to a main classification type, and the main classification factor proportion values are numbered from large to small to obtain the number corresponding to the main classification type;
[0015] If there are multiple classification factors, other classification factors that are not the main classification factor are set as secondary classification factors;
[0016] The secondary classification factor proportion value is divided into multiple secondary classification factor proportion range intervals based on a preset secondary classification factor proportion range base, each secondary classification factor proportion range interval corresponds to a secondary classification type, and the secondary classification factor proportion values are numbered from large to small to obtain the number corresponding to the secondary classification type;
[0017] The number of the main classification type and the number of the secondary classification type are combined to obtain the classification type number corresponding to the non-ferrous metal waste.
[0018] In this scheme, it also includes:
[0019] If the component proportion value of the non-ferrous metal waste is less than the preset proportion threshold value of the corresponding component, the distribution of the extracted component of the non-ferrous metal waste in the non-ferrous metal waste is obtained.
[0020] Based on the distribution of the components of the non-ferrous metal waste in the non-ferrous metal waste, a cutting route of the non-ferrous metal waste is constructed.
[0021] Based on the cutting route of the non-ferrous metal waste, the corresponding non-ferrous metal waste is divided into multiple non-ferrous metal sub-waste.
[0022] If the component proportion value of the non-ferrous metal sub-waste is less than the preset proportion threshold value of the corresponding component, the non-ferrous metal sub-waste is continuously cut.
[0023] In this scheme, it also includes:
[0024] The weight value of the non-ferrous metal waste in the classification temporary storage is obtained.
[0025] If the weight value of the non-ferrous metal waste in the classification temporary storage is greater than a preset first weight threshold value, the weight value of the smelting burden is obtained according to the weight value of the non-ferrous metal waste in the classification temporary storage and a preset burden weight coefficient.
[0026] The non-ferrous metal waste in the classification temporary storage and the corresponding weight value of the smelting burden are transported to the corresponding smelting furnace for smelting.
[0027] In this scheme, it also includes:
[0028] When non-ferrous metal waste is classified and temporarily stored, the time node corresponding to the classified and temporarily stored non-ferrous metal waste is recorded;
[0029] The current time node is extracted;
[0030] The current time node and the time node corresponding to the classified and temporarily stored non-ferrous metal waste are calculated to obtain a time difference value;
[0031] If the time difference value is greater than or equal to a preset first time difference threshold, a classified and temporarily stored non-ferrous metal waste smelting prompt information corresponding to the time difference value is triggered;
[0032] Based on the corresponding classified and temporarily stored non-ferrous metal waste smelting prompt information, it is determined whether the weight value of the non-ferrous metal waste in the corresponding classified and temporarily stored warehouse is greater than or equal to a preset second weight threshold. If yes, the classified and temporarily stored non-ferrous metal waste and the corresponding weight value are smelted by being delivered to the corresponding smelting furnace;
[0033] If no, the classification type number corresponding to the classified and temporarily stored is extracted and identified to obtain an identified classification type number;
[0034] The identified classification type number is sent to a preset management end for prompting.
[0035] In the scheme, after the identified classification type number is sent to the preset management end for prompting, the scheme further includes:
[0036] The last adjacent number of the identified classification type number is extracted;
[0037] The identified classification type number and the last adjacent number of the identified classification type number are first combined, and the non-ferrous metal waste in the corresponding classified and temporarily stored warehouse is combined to obtain a weight value of the first combined and temporarily stored non-ferrous metal waste;
[0038] If the weight value of the first combined and temporarily stored non-ferrous metal waste is still less than the preset second weight threshold, the first adjacent number of the identified classification type number is extracted;
[0039] The classification type number after the first combination and the first adjacent number of the identified classification type number are second combined, and the non-ferrous metal waste in the corresponding classified and temporarily stored warehouse is combined to obtain a weight value of the second combined and temporarily stored non-ferrous metal waste;
[0040] If the weight value of the second combined and temporarily stored non-ferrous metal waste is greater than or equal to the preset second weight threshold, the combination of the classification type number is stopped;
[0041] If the weight value of the second combined temporary non-ferrous metal waste is still less than the preset second weight threshold, the adjacent number of the identified classification type number is extracted in turn according to the adjacent next and adjacent previous round robin, until the weight value of the second combined temporary non-ferrous metal waste is greater than or equal to the preset second weight threshold.
[0042] In the scheme, after obtaining the classification type corresponding to the non-ferrous metal waste, the following steps are included:
[0043] The composition of the non-ferrous metal waste is compared and analyzed with the preset first composition, and if there is a same composition, the proportion value of all the same compositions is extracted;
[0044] If the proportion value of all the same compositions is greater than the preset first proportion threshold, the non-ferrous metal waste corresponding to the non-ferrous metal waste is sent to the preset cleaning warehouse for cleaning to obtain the non-ferrous metal waste after cleaning;
[0045] If the proportion value of all the same compositions in the non-ferrous metal waste after cleaning is greater than the preset first proportion threshold, the non-ferrous metal waste corresponding to the non-ferrous metal waste is sent to the preset temporary storage warehouse for temporary storage.
[0046] The second aspect of the present application provides a non-ferrous metal classification and distribution control system, comprising a memory and a processor, the memory stores a non-ferrous metal classification and distribution control method program, and the non-ferrous metal classification and distribution control method program is executed by the processor to realize the following steps:
[0047] Obtain non-ferrous metal waste information;
[0048] Based on the preset detection equipment, the composition of the non-ferrous metal waste and the proportion value of each composition are extracted;
[0049] According to the composition of the non-ferrous metal waste and the proportion value of each composition, the non-ferrous metal waste is classified to obtain the classification type corresponding to the non-ferrous metal waste;
[0050] Based on the classification type of the non-ferrous metal waste, the recycling and distribution route corresponding to the classification type is matched;
[0051] The non-ferrous metal waste is classified and temporarily stored according to the recycling and distribution route corresponding to the classification type.
[0052] In the scheme, the step of classifying the non-ferrous metal waste according to the composition of the non-ferrous metal waste and the proportion value of each composition specifically includes:
[0053] If the composition proportion value of the non-ferrous metal waste is greater than the preset proportion threshold of the corresponding composition, the corresponding composition is set as a classification factor;
[0054] The composition proportion value of the classification factor is arranged in descending order to obtain the classification factor with the maximum proportion value.
[0055] Set the classification factor with the maximum proportion value as the main classification factor, divide the main classification factor proportion value into multiple main classification factor proportion range intervals based on a preset main classification factor proportion range base, and each main classification factor proportion range interval corresponds to a main classification type, and the main classification factor proportion value is numbered from large to small, to obtain the number corresponding to the main classification type;
[0056] If there are multiple classification factors, set the other classification factors as secondary classification factors;
[0057] Divide the secondary classification factor proportion value into multiple secondary classification factor proportion range intervals based on a preset secondary classification factor proportion range base, and each secondary classification factor proportion range interval corresponds to a secondary classification type, and the secondary classification factor proportion value is numbered from large to small, to obtain the number corresponding to the secondary classification type;
[0058] Combine the number of the main classification type and the number of the secondary classification type to obtain the classification type number corresponding to the non-ferrous metal waste.
[0059] In this scheme, it also includes:
[0060] If the component proportion value of the non-ferrous metal waste is less than the preset proportion threshold value of the corresponding component, the distribution of the extracted component in the non-ferrous metal waste is obtained.
[0061] Based on the distribution of the components of the non-ferrous metal waste in the non-ferrous metal waste, a cutting route of the non-ferrous metal waste is constructed;
[0062] Based on the cutting route of the non-ferrous metal waste, the corresponding non-ferrous metal waste is divided into multiple non-ferrous metal sub-waste;
[0063] If the component proportion value of the non-ferrous metal sub-waste is less than the preset proportion threshold value of the corresponding component, the non-ferrous metal sub-waste is continuously cut.
[0064] The application discloses a non-ferrous metal classification and distribution control method and system, which classifies and temporarily stores non-ferrous metal waste, and then uniformly distributes it to a smelting furnace for recycling, thereby improving the accuracy of non-ferrous metal recycling and saving the batching cost in the non-ferrous metal smelting process. BRIEF DESCRIPTION OF DRAWINGS
[0065] Figure 1 A flowchart of a non-ferrous metal classification and distribution control method is shown;
[0066] Figure 2 A block diagram of a non-ferrous metal classification and distribution control system is shown. DETAILED DESCRIPTION
[0067] In order to enable a more clear understanding of the above-mentioned objects, features and advantages of the present application, the present application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0068] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, however, the present application can also be implemented in other manners different from those described herein, and therefore, the scope of protection of the present application is not limited to the specific embodiments disclosed below.
[0069] Figure 1 A flowchart of a non-ferrous metal classified distribution control method is shown.
[0070] As Figure 1 shown, the present application discloses a non-ferrous metal classified distribution control method, comprising:
[0071] S101, obtaining non-ferrous metal scrap information;
[0072] S102, based on a preset detection device, extracting the composition of the non-ferrous metal scrap and the proportion value of each component;
[0073] S103, classifying the non-ferrous metal scrap according to the composition of the non-ferrous metal scrap and the proportion value of each component, to obtain the classification type corresponding to the non-ferrous metal scrap;
[0074] S104, based on the classification type of the non-ferrous metal scrap, matching the recycling distribution route corresponding to the classification type;
[0075] S105, classifying and temporarily storing the non-ferrous metal scrap according to the recycling distribution route corresponding to the classification type.
[0076] According to the embodiment of the present application, after the recycling site uniformly recycles the non-ferrous metal scrap, the non-ferrous metal scrap is detected by a preset detection device to determine the composition of the non-ferrous metal scrap and the proportion value of each component, such as the composition of the non-ferrous metal scrap including aluminum, iron, carbon, etc., then the non-ferrous metal scrap is classified and the classification type corresponding to the non-ferrous metal scrap is determined, and the recycling site sets multiple temporary storage warehouses in advance to temporarily store non-ferrous metal scrap of different classification types, and each temporary storage warehouse corresponds to non-ferrous metal scrap of one classification type.
[0077] According to the embodiment of the present application, the step of classifying the non-ferrous metal scrap according to the composition of the non-ferrous metal scrap and the proportion value of each component specifically comprises:
[0078] If the proportion value of the component of the non-ferrous metal scrap is greater than the preset proportion threshold value of the corresponding component, the corresponding component is set as a classification factor.
[0079] arranging the component proportion values of the classification factors in descending order to obtain a classification factor with the maximum proportion value;
[0080] setting the classification factor with the maximum proportion value as a main classification factor, dividing the main classification factor proportion value into a plurality of main classification factor proportion range intervals based on a preset main classification factor proportion range base, and each main classification factor proportion range interval corresponding to a main classification type, and numbering the main classification factor proportion values from large to small to obtain the number corresponding to the main classification type;
[0081] If there are multiple classification factors, the other classification factors that are not the main classification factor are set as secondary classification factors;
[0082] Dividing the secondary classification factor proportion value into a plurality of secondary classification factor proportion range intervals based on a preset secondary classification factor proportion range base, and each secondary classification factor proportion range interval corresponding to a secondary classification type, and numbering the secondary classification factor proportion values from large to small to obtain the number corresponding to the secondary classification type;
[0083] Combining the number of the main classification type and the number of the secondary classification type to obtain the classification type number corresponding to the non-ferrous metal waste.
[0084] It should be noted that, for example, the proportion value of iron and the proportion value of aluminum in the component proportion value of the non-ferrous metal waste are both greater than the preset proportion threshold value of the corresponding component, then the corresponding iron component and aluminum component are both set as classification factors, if the component proportion value of iron is greater than the component proportion value of aluminum, then the iron component is set as the main classification factor and the aluminum component is set as the secondary classification factor, if the preset iron component proportion range base is 10%, then 10% is an interval, for example, (50%, 60%] is a main classification factor proportion range interval, and the non-ferrous metal waste with the main classification factor proportion value in the interval (50%, 60%] is set as the same main classification type number.
[0085] According to the embodiment of the application, further comprising:
[0086] If the component proportion value of the non-ferrous metal waste is less than the preset proportion threshold value of the corresponding component, the distribution of the extracted component of the non-ferrous metal waste in the non-ferrous metal waste is obtained;
[0087] Based on the distribution of the components of the non-ferrous metal waste in the non-ferrous metal waste, a cutting route of the non-ferrous metal waste is constructed;
[0088] Based on the cutting route of the non-ferrous metal waste, the corresponding non-ferrous metal waste is divided into a plurality of non-ferrous metal sub-waste;
[0089] If the proportion of each component of the non-ferrous metal sub-waste is less than the preset proportion threshold of the corresponding component, the non-ferrous metal sub-waste is continuously cut.
[0090] It should be noted that when the proportion of each component of the non-ferrous metal waste is less than the preset proportion threshold of the corresponding component, it means that the components existing in the corresponding non-ferrous metal waste are relatively complex and diverse. The distribution diagram of the components in the non-ferrous metal waste is used to determine the connection gap between the components, and then the corresponding non-ferrous metal waste is divided into a plurality of non-ferrous metal sub-wastes according to the connection gap between the components as the cutting route.
[0091] According to the embodiment of the present application, further comprising:
[0092] The weight value of the non-ferrous metal waste in the classification temporary storage is obtained.
[0093] If the weight value of the non-ferrous metal waste in the classification temporary storage is greater than the preset first weight threshold, the weight value of the smelting burden is obtained according to the weight value of the non-ferrous metal waste in the classification temporary storage and the preset burden weight coefficient.
[0094] The non-ferrous metal waste in the classification temporary storage and the corresponding weight value of the smelting burden are transported to the corresponding smelting furnace for smelting.
[0095] It should be noted that when the non-ferrous metal waste in the classification temporary storage accumulates to a certain weight value, the non-ferrous metal waste in the corresponding classification temporary storage is uniformly smelted and recycled, and the weight value of the smelting burden is the product of the weight value of the non-ferrous metal waste in the corresponding classification temporary storage and the preset burden weight coefficient.
[0096] According to the embodiment of the present application, further comprising:
[0097] When the non-ferrous metal waste is classified and temporarily stored, the time node at which the corresponding non-ferrous metal waste is classified and temporarily stored is recorded.
[0098] The current time node is extracted.
[0099] The current time node and the time node at which the corresponding non-ferrous metal waste is classified and temporarily stored are calculated to obtain a time difference value.
[0100] If the time difference value is greater than or equal to the preset first time difference threshold, the classification temporary storage non-ferrous metal waste corresponding to the time difference value is triggered to smelt the prompt information;
[0101] Based on the corresponding classification temporary storage non-ferrous metal waste smelting prompt information, it is judged whether the weight value of the non-ferrous metal waste in the corresponding classification temporary storage is greater than or equal to the preset second weight threshold, if yes, the non-ferrous metal waste in the classification temporary storage and the corresponding weight value of the smelting burden are transported to the corresponding smelting furnace for smelting.
[0102] If no, the classification type number corresponding to the temporary storage is extracted and identified, and the identified classification type number is obtained;
[0103] The identified classification type number is sent to the preset management terminal for prompting.
[0104] It should be noted that, for example, the time for the classification and temporary storage of non-ferrous metal waste is 9:00 on November 11, the time node for the classification and temporary storage of non-ferrous metal waste is 9:00 on November 11, if the current time node is 9:00 on November 12, the corresponding time difference is 1 day and 1 hour, if the preset first time difference threshold is 2 days, the corresponding classification and temporary storage non-ferrous metal waste smelting prompt information is not triggered; if the preset first time difference threshold is 1 day, the corresponding classification and temporary storage non-ferrous metal waste smelting prompt information is triggered.
[0105] According to the embodiment of the application, after the identified classification type number is sent to the preset management terminal for prompting, the method further comprises:
[0106] The last adjacent number of the identified classification type number is extracted;
[0107] The identified classification type number and the last adjacent number of the identified classification type number are merged for the first time, the non-ferrous metal waste in the corresponding temporary storage library is merged, and the weight value of the first-time-merged and temporarily-stored non-ferrous metal waste is obtained;
[0108] If the weight value of the first-time-merged and temporarily-stored non-ferrous metal waste is still less than the preset second weight threshold, the first adjacent number of the identified classification type number is extracted;
[0109] The classification type number after the first-time-merge and the first adjacent number of the identified classification type number are merged for the second time, the non-ferrous metal waste in the corresponding temporary storage library is merged, and the weight value of the second-time-merged and temporarily-stored non-ferrous metal waste is obtained;
[0110] If the weight value of the second-time-merged and temporarily-stored non-ferrous metal waste is greater than or equal to the preset second weight threshold, the merging of the classification type number is stopped;
[0111] If the weight value of the second-time-merged and temporarily-stored non-ferrous metal waste is still less than the preset second weight threshold, the adjacent numbers of the identified classification type number are continuously extracted and merged in turn according to the last adjacent and the first adjacent, until the weight value of the second-time-merged and temporarily-stored non-ferrous metal waste is greater than or equal to the preset second weight threshold.
[0112] It should be noted that when there is a secondary classification type number, the classification type number is merged first, and after all the secondary classification type numbers are merged, if the weight value of the merged temporary storage non-ferrous metal waste is still less than the preset second weight threshold, the main classification type number is merged, such as the existing classification type numbers a-1, a-2, a-3, b-1, b-2 and b-3, the main classification type number is a and b respectively, and the secondary classification type number is 1, 2 and 3. First, the secondary classification type numbers a-1, a-2 and a-3 are merged, for example, taking a-3 as an example, if the identified classification type number is a-3, the first number a-4 adjacent to a-3 is extracted, and the non-ferrous metal waste in the classification temporary storage of a-3 and a-4 is merged to obtain the weight value of the first merged temporary storage non-ferrous metal waste. If the weight value of the first merged temporary storage non-ferrous metal waste is still less than the preset second weight threshold, the first number a-2 adjacent to a-3 is extracted, and the non-ferrous metal waste in the classification temporary storage of a-2, a-3 and a-4 is merged to obtain the weight value of the second merged temporary storage non-ferrous metal waste. If the weight value of the second merged temporary storage non-ferrous metal waste is still less than the preset second weight threshold, the adjacent number of the identified classification type number is extracted in turn according to the adjacent and the adjacent, and if there is no number adjacent to or adjacent to, the number is merged in turn in the direction of the number, until the weight value of the merged temporary storage non-ferrous metal waste is greater than or equal to the preset second weight threshold or all the classification type numbers are merged.
[0113] According to the embodiment of the present application, after the classification type corresponding to the non-ferrous metal waste is obtained, the following steps are included:
[0114] The composition of the non-ferrous metal waste is compared and analyzed with the preset first composition, and if there is the same, the proportion of all the same composition is extracted;
[0115] If the proportion of all the same composition is greater than the preset first proportion threshold, the corresponding non-ferrous metal waste is sent to the preset cleaning library for cleaning to obtain the non-ferrous metal waste after cleaning;
[0116] If the proportion of all the same composition in the non-ferrous metal waste after cleaning is greater than the preset first proportion threshold, the corresponding non-ferrous metal waste is sent to the preset equipment library for temporary storage.
[0117] It should be noted that the preset first composition includes mud, wood and other non-ferrous metal sundries, when the proportion of all the same composition is greater than the preset first proportion threshold, the mud and other sundries are cleaned by the preset cleaning library, and if the proportion of the same composition in the non-ferrous metal waste after cleaning is still greater than the preset first proportion threshold, the corresponding non-ferrous metal waste is sent to the preset equipment library for temporary storage.
[0118] Figure 2A block diagram of a non-ferrous metal classified distribution control system is shown.
[0119] As Figure 2 shown, the second aspect of the present application provides a non-ferrous metal classified distribution control system 2, comprising a memory 21 and a processor 22, wherein the memory stores a non-ferrous metal classified distribution control method program, and the non-ferrous metal classified distribution control method program is executed by the processor to implement the following steps:
[0120] Obtaining non-ferrous metal scrap information;
[0121] Based on the preset detection equipment, extracting the composition of the non-ferrous metal scrap and the proportion value of each component;
[0122] According to the composition of the non-ferrous metal scrap and the proportion value of each component, classifying the non-ferrous metal scrap to obtain the classification type corresponding to the non-ferrous metal scrap;
[0123] Based on the classification type of the non-ferrous metal scrap, matching the recycling and distribution route corresponding to the classification type;
[0124] According to the recycling and distribution route corresponding to the classification type, the non-ferrous metal scrap is classified and temporarily stored.
[0125] According to the embodiment of the present application, the step of classifying the non-ferrous metal scrap according to the composition of the non-ferrous metal scrap and the proportion value of each component specifically includes:
[0126] If the component proportion value of the non-ferrous metal scrap is greater than the preset proportion threshold value of the corresponding component, the corresponding component is set as a classification factor;
[0127] Arranging the component proportion value of the classification factor in descending order to obtain the classification factor with the maximum proportion value;
[0128] Setting the classification factor with the maximum proportion value as the main classification factor, dividing the main classification factor proportion value into multiple main classification factor proportion range intervals based on the preset main classification factor proportion range base, and each main classification factor proportion range interval corresponds to a main classification type, and the main classification factor proportion value is numbered in descending order to obtain the number corresponding to the main classification type;
[0129] If there are multiple classification factors, the other classification factors that are not main classification factors are set as secondary classification factors;
[0130] Based on the preset secondary classification factor proportion range base, the secondary classification factor proportion value is divided into multiple secondary classification factor proportion range intervals, and each secondary classification factor proportion range interval corresponds to a secondary classification type, and the secondary classification factor proportion value is numbered in descending order to obtain the number corresponding to the secondary classification type;
[0131] Combining the number of the primary classification type and the number of the secondary classification type obtains the classification type number corresponding to the non-ferrous metal waste.
[0132] According to the embodiment of the present application, further comprising:
[0133] If the component proportion values of the non-ferrous metal waste are all less than the preset proportion threshold values of the corresponding components, the distribution diagram of the components of the non-ferrous metal waste in the non-ferrous metal waste is extracted.
[0134] Based on the distribution diagram of the components of the non-ferrous metal waste in the non-ferrous metal waste, a cutting route of the non-ferrous metal waste is constructed.
[0135] Based on the cutting route of the non-ferrous metal waste, the non-ferrous metal waste is divided into a plurality of non-ferrous metal sub-waste.
[0136] If the component proportion values of the non-ferrous metal sub-waste are all less than the preset proportion threshold values of the corresponding components, the non-ferrous metal sub-waste is continuously cut.
[0137] The present application discloses a non-ferrous metal classification and distribution control method and system, which classifies and temporarily stores non-ferrous metal waste, and then uniformly distributes it to a smelting furnace for recycling, thereby improving the accuracy of non-ferrous metal recycling and saving the batching cost in the non-ferrous metal smelting process.
[0138] In several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other manners. The above described device embodiments are only schematic. For example, the division of the units is only a logical function division. There can be another division manner for the actual implementation, for example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the displayed or discussed coupling, direct coupling or communication connection between the components can be indirect coupling or communication connection through some interfaces, devices or units, and can be electrical, mechanical or other forms.
[0139] The units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units; they can be located in one place, or distributed on multiple network units; some or all of the units can be selected according to actual needs to achieve the purpose of the present embodiment.
[0140] In addition, each function unit in each embodiment of the present application can be integrated in one processing unit, or each unit can be separately taken as one unit, or two or more units can be integrated in one unit; the integrated unit can be realized in the form of hardware or in the form of hardware plus software function unit.
[0141] Those skilled in the art can understand that all or part of the steps of the above-mentioned method embodiments can be completed by program instruction related hardware, and the foregoing program can be stored in a computer readable storage medium, and the program executes the steps including the above-mentioned method embodiments when executed; and the foregoing storage medium includes a mobile storage device, a read-only memory (ROM), a random access memory (RAM), a magnetic disc or an optical disc, and various storage medium capable of storing program codes.
[0142] Alternatively, when the integrated unit of the present application is realized in the form of a software function module and sold or used as an independent product, it can also be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the embodiments of the present application can be embodied in the form of a software product, and the computer software product is stored in a storage medium, includes several instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the methods described in the embodiments of the present application. The foregoing storage medium includes a mobile storage device, a ROM, a RAM, a magnetic disc or an optical disc, and various storage medium capable of storing program codes.
Claims
1. A non-ferrous metal sorting and dispensing control method, characterized by, The method comprises the following steps: acquiring non-ferrous metal scrap information; extracting the components and proportion of each component of the non-ferrous metal scrap based on a preset detection device; classifying the non-ferrous metal scrap according to the components and proportion of each component of the non-ferrous metal scrap to obtain a classification type corresponding to the non-ferrous metal scrap; matching a recycling and distribution route corresponding to the classification type of the non-ferrous metal scrap based on the classification type of the non-ferrous metal scrap; temporarily storing the non-ferrous metal scrap according to the recycling and distribution route corresponding to the classification type; the step of classifying the non-ferrous metal scrap according to the components and proportion of each component of the non-ferrous metal scrap specifically comprises: if the proportion of a component of the non-ferrous metal scrap is greater than a preset proportion threshold value of the corresponding component, the corresponding component is set as a classification factor; arranging the proportion of each component of the classification factor in descending order to obtain a classification factor with the maximum proportion; setting the classification factor with the maximum proportion as a main classification factor, dividing the proportion of the main classification factor into a plurality of main classification factor proportion range intervals based on a preset main classification factor proportion range base, and each main classification factor proportion range interval corresponds to a main classification type, and the main classification types are numbered in descending order of the proportion of the main classification factor to obtain the number of the main classification type corresponding to the main classification type; if there are a plurality of classification factors, other classification factors that are not main classification factors are set as secondary classification factors; dividing the proportion of the secondary classification factor into a plurality of secondary classification factor proportion range intervals based on a preset secondary classification factor proportion range base, and each secondary classification factor proportion range interval corresponds to a secondary classification type, and the secondary classification types are numbered in descending order of the proportion of the secondary classification factor to obtain the number of the secondary classification type corresponding to the secondary classification type; combining the number of the main classification type and the number of the secondary classification type to obtain the classification type number corresponding to the non-ferrous metal scrap; the method further comprises the following steps: when the non-ferrous metal scrap is temporarily stored, recording the time node of temporarily storing the non-ferrous metal scrap; extracting the current time node; calculating the difference between the current time node and the time node of temporarily storing the non-ferrous metal scrap to obtain a time difference value; if the time difference value is greater than or equal to a preset first time difference threshold value, triggering a smelting prompt information of the classification temporarily stored non-ferrous metal scrap corresponding to the time difference value; based on the corresponding smelting prompt information of the classification temporarily stored non-ferrous metal scrap, judging whether the weight value of the non-ferrous metal scrap in the corresponding classification temporary storage is greater than or equal to a preset second weight threshold value, if yes, smelting the non-ferrous metal scrap and the corresponding weight value in the classification temporary storage to a corresponding smelting furnace for smelting; if no, extracting the classification type number of the corresponding classification temporary storage and identifying to obtain an identified classification type number; sending the identified classification type number to a preset management end for prompting; after the identified classification type number is sent to the preset management end for prompting, the method further comprises the following steps: extracting the adjacent next number of the identified classification type number; performing a first merging on the non-ferrous metal scrap in the corresponding classification temporary storage by first merging the identified classification type number and the adjacent next number of the identified classification type number to obtain a weight value of the first merged and temporarily stored non-ferrous metal scrap; If the weight value of the first combined temporary stored non-ferrous metal waste is still less than the preset second weight threshold, the adjacent first number of the identified classification type number is extracted; The classification type number after the first combination and the adjacent first number of the identified classification type number are combined for the second time, and the non-ferrous metal waste in the corresponding classification temporary storage is combined to obtain the weight value of the second combined temporary stored non-ferrous metal waste; If the weight value of the second combined temporary stored non-ferrous metal waste is greater than or equal to the preset second weight threshold, the combination of the classification type number is stopped; If the weight value of the second combined temporary stored non-ferrous metal waste is still less than the preset second weight threshold, the adjacent number of the identified classification type number is continuously extracted and combined in turn according to the adjacent rear and adjacent front round until the weight value of the second combined temporary stored non-ferrous metal waste is greater than or equal to the preset second weight threshold.
2. The colored metal sorting and dispensing control method according to claim 1, wherein Also includes: If the component proportion value of the non-ferrous metal waste is less than the preset proportion threshold of the corresponding component, the distribution diagram of the component of the non-ferrous metal waste in the non-ferrous metal waste is extracted; Based on the distribution diagram of the component of the non-ferrous metal waste in the non-ferrous metal waste, a cutting route of the non-ferrous metal waste is constructed; Based on the cutting route of the non-ferrous metal waste, the corresponding non-ferrous metal waste is divided into a plurality of non-ferrous metal sub-waste; If the component proportion value of the non-ferrous metal sub-waste is less than the preset proportion threshold of the corresponding component, the non-ferrous metal sub-waste is continuously cut.
3. The method according to claim 1, wherein Also includes: Obtain the weight value of the non-ferrous metal waste in the classification temporary storage; If the weight value of the non-ferrous metal waste in the classification temporary storage is greater than the preset first weight threshold, the weight value of the smelting burden is obtained according to the weight value of the non-ferrous metal waste in the classification temporary storage and the preset burden weight coefficient; The non-ferrous metal waste in the classification temporary storage and the corresponding weight value of the smelting burden are transported to the corresponding smelting furnace for smelting.
4. The colored metal sorting and dispensing control method according to claim 1, wherein After obtaining the classification type of the corresponding non-ferrous metal waste, it includes: Comparative analysis is performed on the component of the non-ferrous metal waste and the preset first component, and if there is a same, the proportion value of all the same components is extracted; If the proportion value of all the same components is greater than the preset first proportion threshold, the corresponding non-ferrous metal waste is sent to the preset cleaning warehouse for cleaning to obtain the non-ferrous metal waste after cleaning; If the proportion value of all the same components in the non-ferrous metal waste after cleaning is greater than the preset first proportion threshold, the corresponding non-ferrous metal waste is sent to the preset storage warehouse for temporary storage.
5. A non-ferrous metal sorting and dispensing control system, characterized by, A memory and a processor are included, the memory stores a non-ferrous metal classification and distribution control method program, and the non-ferrous metal classification and distribution control method program is executed by the processor to realize the following steps: Obtain non-ferrous metal waste information; Based on the preset detection equipment, the components of the non-ferrous metal waste and the proportion value of each component are extracted; According to the components of the non-ferrous metal waste and the proportion value of each component, the non-ferrous metal waste is classified to obtain the classification type of the corresponding non-ferrous metal waste; Based on the classification type of the non-ferrous metal waste, the recycling and distribution route of the corresponding classification type is matched; The non-ferrous metal waste is temporarily stored according to the recycling and distribution route of the corresponding classification type; The step of classifying the non-ferrous metal waste according to the components of the non-ferrous metal waste and the proportion of each component, specifically comprises: If the proportion of a component of the non-ferrous metal waste is greater than the preset proportion threshold of the corresponding component, the corresponding component is set as a classification factor; Arranging the proportion of the component of the classification factor in descending order to obtain the classification factor with the maximum proportion; Setting the classification factor with the maximum proportion as the main classification factor, dividing the proportion of the main classification factor into a plurality of main classification factor proportion range intervals based on the preset main classification factor proportion range base, and each main classification factor proportion range interval corresponds to a main classification type, and the main classification factor proportion is numbered in descending order to obtain the number of the corresponding main classification type; If there are multiple classification factors, the other classification factors that are not the main classification factor are set as the secondary classification factor; Dividing the proportion of the secondary classification factor into a plurality of secondary classification factor proportion range intervals based on the preset secondary classification factor proportion range base, and each secondary classification factor proportion range interval corresponds to a secondary classification type, and the secondary classification factor proportion is numbered in descending order to obtain the number of the corresponding secondary classification type; Combining the number of the main classification type and the number of the secondary classification type to obtain the classification type number corresponding to the non-ferrous metal waste; Further comprising: When the non-ferrous metal waste is classified and temporarily stored, record the time node of the corresponding non-ferrous metal waste classified and temporarily stored; Extract the current time node; Calculate the time difference between the current time node and the time node of the corresponding non-ferrous metal waste classified and temporarily stored to obtain the time difference; If the time difference is greater than or equal to the preset first time difference threshold, trigger the classification and temporary storage of the non-ferrous metal waste corresponding to the time difference; Based on the corresponding classification and temporary storage of the non-ferrous metal waste smelting prompt information, judge whether the weight value of the non-ferrous metal waste in the corresponding classification and temporary storage is greater than or equal to the preset second weight threshold, if yes, the classification and temporary storage of the non-ferrous metal waste and the corresponding weight value are smelted and delivered to the corresponding smelting furnace for smelting; If not, extract the classification type number of the corresponding classification and temporary storage, and identify to obtain the identified classification type number; Send the identified classification type number to the preset management end for prompting; After the identified classification type number is sent to the preset management end for prompting, further comprising: Extract the adjacent first number after the identified classification type number; Merge the identified classification type number and the adjacent first number after the identified classification type number for the first time to merge the non-ferrous metal waste in the corresponding classification and temporary storage to obtain the weight value of the first time of the non-ferrous metal waste temporarily stored; If the weight value of the first time of the non-ferrous metal waste temporarily stored is still less than the preset second weight threshold, extract the adjacent first number before the identified classification type number; Merge the classification type number after the first time and the adjacent first number before the identified classification type number for the second time to merge the non-ferrous metal waste in the corresponding classification and temporary storage to obtain the weight value of the second time of the non-ferrous metal waste temporarily stored; If the weight value of the second time of merging the temporarily stored non-ferrous metal waste is greater than or equal to the preset second weight threshold, the merging of the classification type numbers is stopped; If the weight value of the second time of merging the temporarily stored non-ferrous metal waste is still less than the preset second weight threshold, the adjacent numbers of the identified classification type numbers are sequentially merged in turn according to the adjacent next and adjacent previous round robin until the weight value of the second time of merging the temporarily stored non-ferrous metal waste is greater than or equal to the preset second weight threshold.
6. The non-ferrous metal sorting and distribution control system according to claim 5, wherein, Also comprising: If the component proportion value of the non-ferrous metal waste is less than the preset proportion threshold of the corresponding component, the distribution diagram of the component of the non-ferrous metal waste in the non-ferrous metal waste is extracted; Based on the distribution diagram of the component of the non-ferrous metal waste in the non-ferrous metal waste, a cutting route of the non-ferrous metal waste is constructed; Based on the cutting route of the non-ferrous metal waste, the corresponding non-ferrous metal waste is divided into a plurality of non-ferrous metal sub-waste; If the component proportion value of the non-ferrous metal sub-waste is less than the preset proportion threshold of the corresponding component, the non-ferrous metal sub-waste is continuously cut.
Citation Information
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