An alloy production control system

CN121680295BActive Publication Date: 2026-08-18JIANGSU XIHU SPECIAL STEEL
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Patent Information

Application Number
CN202511425370.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-08-18
Estimated Expiration
2045-09-30

AI Technical Summary

Technical Problem

[0003]针对现有技术中存在的对多条合金生产线或多个合金生产设备单独进行生产设置操作繁琐,且无法直接获取合金产品生产总量,使用不够方便的问题,本发明提供一种合金生产控制系统

Benefits of technology

[0011] Compared with the prior art, the alloy production control system of the present invention acquires the alloy production specifications, target quantity, and priority information of preset alloy products through the central control input module of the central control unit. The central control storage module stores the alloy production specifications and target quantity information according to the priority information. The central control recording module records the alloy production quantity information of each production unit corresponding to each alloy production specification, as well as the total alloy production quantity information corresponding to each alloy production specification. The central control judgment module transmits the alloy production specifications with the highest priority to the production control module of each production unit. This system can simultaneously preset the production information of multiple sets of alloy products according to production priority, and can also simultaneously control multiple production units to produce alloy products sequentially according to production priority. The system is simple to operate, reduces frequent operations by staff, and is more convenient to use.

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Abstract

The application provides an alloy production control system, wherein alloy production specification information, alloy production target quantity information and alloy production priority information of preset alloy products are acquired through a total control input module of a total control unit; alloy production specification information and alloy production target quantity information are stored according to the alloy production priority information through a total control storage module of the total control unit; alloy production quantity information of each production unit corresponding to each alloy production specification information and alloy production total quantity information corresponding to each alloy production specification information are recorded through a total control recording module of the total control unit; and the alloy production specification information with the highest current priority is transmitted to a production control module of a production unit through a total control judgment module, so that production information of multiple groups of alloy products can be preset simultaneously according to production priorities, and multiple production units can be simultaneously controlled to produce alloy products according to production priorities in sequence, the operation is simple, and the frequent operation of workers is reduced.
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Description

Technical Field

[0001] This invention relates to the field of alloy production technology, and in particular to an alloy production control system. Background Technology

[0002] Currently, for multiple alloy production lines or equipment in a production workshop, staff often need to configure each line or piece of equipment individually, which is cumbersome. Furthermore, because these lines or equipment operate independently, it's impossible to obtain the total production volume in a timely manner. Staff must sum the production volumes of each line or equipment to arrive at the total, which is inconvenient. Summary of the Invention

[0003] To address the problems of cumbersome operation of setting up production for multiple alloy production lines or multiple alloy production equipment individually in existing technologies, the inability to directly obtain the total production volume of alloy products, and the inconvenience of use, this invention provides an alloy production control system.

[0004] This invention discloses an alloy production control system, comprising a central control unit and multiple production units. The central control unit includes a central control input module, a central control storage module, a central control recording module, and a central control judgment module. The central control input module is used to acquire alloy production specification information, alloy production target quantity information, and alloy production priority information. The input end of the central control storage module is data-connected to the output end of the central control input module to store alloy production specification information and alloy production target quantity information according to the alloy production priority information. The central control recording module is used to record the alloy production quantity information of each production unit corresponding to each alloy production specification information, and the total alloy production quantity information corresponding to each alloy production specification information. The input end of the central control judgment module is data-connected to the output end of the central control storage module, and the input end of the central control judgment module is data-connected to the output end of the central control recording module to determine the alloy production specification information to be produced based on the acquired alloy production specification information with the highest alloy production priority, the alloy production target quantity information, and the total alloy production quantity information corresponding to the alloy production specification information with the highest alloy production priority. Each of the multiple production units includes a production control module and a production... The production action module and the production control module are connected at their inputs to the output of the central control judgment module to obtain the alloy production specifications information to be produced. The production action module is also connected at its input to the output of the production control module belonging to the same production unit to obtain the alloy production specifications information to be produced and to produce the alloy according to the alloy production specifications information. The production action module is connected at its output to the input of the central control recording module to transmit the production unit identification information and alloy production specifications information to the central control recording module after each alloy product production is completed. The central control recording module updates the alloy production quantity information and the total alloy production quantity information of the corresponding production unit according to the received production unit identification information and alloy production specifications information. The central control recording module is connected at its output to the input of the central control judgment module to transmit the production unit identification information to the central control judgment module after the update is completed. After receiving the production unit identification information, the central control judgment module determines the alloy production specifications information to be produced and transmits the alloy production specifications information to the production control module of the production unit corresponding to the production unit identification information.

[0005] Preferably, the output of the overall control judgment module is connected to the input of the overall control storage module to transmit priority change information to the overall control storage module when the target quantity of alloy production is not greater than the total quantity of alloy production. After receiving the priority change information, the overall control storage module deletes the alloy production specification information and the target quantity information of alloy production with the highest priority.

[0006] Preferably, the central control unit also includes a central control display module. The input end of the central control display module is connected to the output end of the central control recording module to obtain and display the alloy production quantity information of each production unit corresponding to each alloy production specification information, as well as the total alloy production quantity information corresponding to each alloy production specification information.

[0007] Preferably, the central control unit also includes a central control alarm module. The output of the central control judgment module is connected to the input of the central control alarm module to send an alarm message to the central control alarm module when the difference between the alloy production target quantity information corresponding to the alloy production specification information with the highest priority of alloy production and the total alloy production quantity information is less than a set threshold. After receiving the alarm message, the central control alarm module issues an alarm signal.

[0008] Preferably, each production unit also includes a production evaluation module. The input of the production evaluation module is connected to the output of the production control module belonging to the same production unit to obtain the alloy production specification information to be produced, and evaluates the alloy products produced by the production action module based on the alloy production specification information. The output of the production evaluation module is connected to the input of the central control recording module to transmit the production unit identification information, alloy production specification information, and evaluation result information to the central control recording module. The central control recording module updates the alloy production non-conforming quantity information of the corresponding production unit based on the received production unit identification information, alloy production specification information, and evaluation result information. The input of the central control judgment module is connected to the output of the central control recording module to obtain the alloy production quantity information and alloy production non-conforming quantity information of each production unit, and gives a warning message when the alloy production non-conforming quantity or the proportion of alloy production non-conforming quantity of each production unit reaches a threshold.

[0009] Preferably, the central control storage module includes a priority judgment submodule and a storage submodule. The input of the priority judgment submodule is connected to the output of the central control input module to obtain the alloy production priority information, alloy production specification information, and alloy production target quantity information to be stored. The input of the priority judgment submodule is connected to the output of the storage submodule to obtain the alloy production specification information and alloy production target quantity information corresponding to each alloy production priority information that has been stored. The alloy production specification information and alloy production target quantity information corresponding to each alloy production priority information that have been stored are recorded as stored information. If the alloy production specification information in the stored information that corresponds to the alloy production priority information to be stored is not the same as the alloy production priority information to be stored, the priority judgment submodule... The output terminal is connected to the input terminal of the central control input module to transmit priority modification information to the central control input module. After receiving the priority modification information, the central control input module obtains the user-modified priority information and passes it to the priority judgment submodule. If the user-modified priority information is different from the alloy production priority information to be stored, the priority judgment submodule determines that the alloy production priority information to be stored is the user-modified priority information. The priority judgment submodule passes the alloy production priority information to be stored, alloy production specification information, and alloy production target quantity information to the storage submodule. The storage submodule stores the alloy production specification information and alloy production target quantity information according to the alloy production priority information to be stored. The output terminal of the storage submodule is connected to the input terminal of the central control judgment module.

[0010] Preferably, each production unit also includes a production input module and a quantity statistics module. The production input module is used to acquire alloy production specification information and alloy production target quantity information to be independently produced. The input end of the production control module is data-connected to the output end of the production input module belonging to the same production unit to acquire alloy production specification information and alloy production target quantity information to be independently produced. The output end of the production control module is data-connected to the input end of the production action module belonging to the same production unit so that after acquiring the alloy production specification information and alloy production target quantity information transmitted by the production input module, it transmits alloy production specification information and independent working state information to the production action module. The production action module then calculates the alloy production specification information and enters independent working state information according to the production target quantity information to be produced. Alloy production is carried out based on alloy production specifications. The output of the production action module is connected to the input of the data statistics module belonging to the same production unit. After receiving the information to enter the independent working state, the module sends product completion information to the data statistics module every time an alloy product is produced. After receiving the product completion information, the data statistics module counts the products. The output of the data statistics module is connected to the input of the production control module to transmit the product completion quantity to the production control module. When the received product completion quantity is equal to the alloy production target quantity, the production control module sends the information to release the independent working state and the alloy production specifications information to be produced transmitted by the overall control judgment module to the production action module.

[0011] Compared with the prior art, the alloy production control system of the present invention acquires the alloy production specifications, target quantity, and priority information of preset alloy products through the central control input module of the central control unit. The central control storage module stores the alloy production specifications and target quantity information according to the priority information. The central control recording module records the alloy production quantity information of each production unit corresponding to each alloy production specification, as well as the total alloy production quantity information corresponding to each alloy production specification. The central control judgment module transmits the alloy production specifications with the highest priority to the production control module of each production unit. This system can simultaneously preset the production information of multiple sets of alloy products according to production priority, and can also simultaneously control multiple production units to produce alloy products sequentially according to production priority. The system is simple to operate, reduces frequent operations by staff, and is more convenient to use. Attached Figure Description

[0012] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0013] Figure 1 This is a schematic diagram of the structure of an alloy production control system according to an embodiment of the present invention.

[0014] Figure 2 This is a schematic diagram of the structure of an alloy production control system according to another embodiment of the present invention.

[0015] Figure 3 This is a schematic diagram of the structure of the master control storage module according to an embodiment of the present invention.

[0016] Figure 4 This is a schematic diagram of the structure of an alloy production control system according to another embodiment of the present invention. Detailed Implementation

[0017] To provide a further understanding of the purpose, structure, features, and functions of the present invention, detailed descriptions are provided below with reference to specific embodiments.

[0018] In the description of this invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0019] Please see Figure 1 The present invention provides an alloy production control system, comprising a central control unit 10 and multiple production units 20.

[0020] The central control unit 10 includes a central control input module 11, a central control storage module 12, a central control recording module 13, and a central control judgment module 14. The central control input module 11 is used to acquire alloy production specification information, alloy production target quantity information, and alloy production priority information. The input end of the central control storage module 12 is data-connected to the output end of the central control input module 11 to store alloy production specification information and alloy production target quantity information according to alloy production priority information. The central control recording module 13 is used to record the alloy production quantity information of each production unit 20 corresponding to each alloy production specification information, as well as the total alloy production quantity information corresponding to each alloy production specification information. The input end of the central control judgment module 14 is data-connected to the output end of the central control storage module 12, and the input end of the central control judgment module 14 is data-connected to the output end of the central control recording module 13 to determine the alloy production specification information to be produced based on the alloy production specification information and alloy production target quantity information with the highest alloy production priority, as well as the total alloy production quantity information corresponding to the alloy production specification information with the highest alloy production priority.

[0021] Multiple production units 20 each include a production control module 21 and a production action module 22. The input of the production control module 21 is connected to the output of the central control judgment module 14 to obtain the alloy production specification information to be produced. The input of the production action module 22 is connected to the output of the production control module 21 belonging to the same production unit 20 to obtain the alloy production specification information to be produced, and performs alloy production according to the alloy production specification information. The output of the production action module 22 is connected to the input of the central control recording module 13 to record the production unit identification information and alloy production specification information each time an alloy product is produced. The information is transmitted to the central control recording module 13. The central control recording module 13 updates the alloy production quantity information and the total alloy production quantity information of the corresponding production unit 20 according to the received production unit identification information and alloy production specification information. The output end of the central control recording module 13 is connected to the input end of the central control judgment module 14 so that the production unit identification information is transmitted to the central control judgment module 14 after the update is completed. After receiving the production identification information, the central control judgment module 14 determines the alloy production specification information to be produced and transmits the alloy production specification information to be produced to the production control module 21 of the production unit 20 corresponding to the production unit identification information.

[0022] Work process: Figure 1 For example, initially, the staff inputs the alloy production specifications, target quantity, and priority information of the alloy products to be produced through the central control input module 11. The central control storage module 12 stores the alloy production specifications and target quantity information according to the alloy production priority information. The central control record module is empty. The central control judgment module 14 determines the alloy production specifications with the highest priority as the alloy production specifications to be produced and transmits it to the production control module 21 of the two production units 20.

[0023] by Figure 1Taking the production unit on the left of the two production units 20 as an example, the production control module 21 transmits the alloy production specification information to the production action module 22. The production action module 22 performs alloy production according to the alloy production specification information and transmits the production unit identification information and alloy production specification information to the central control record module 13 after each alloy product production is completed. The central control record module 13 updates the alloy production quantity information and the total alloy production quantity information of the corresponding production unit 20 according to the received production unit identification information and alloy production specification information. After the update is completed, the central control record module 13 transmits the production unit identification information to the central control judgment module 14. After receiving the production unit identification information, the central control judgment module 14 determines the alloy production specification information to be produced according to the alloy production specification information and alloy production target quantity information with the highest alloy production priority stored in the central control storage module 12 and the total alloy production quantity information corresponding to the alloy production specification information with the highest alloy production priority recorded in the central control record module 13, and transmits the alloy production specification information to be produced to the production control module 21 of the left production unit 20.

[0024] The process by which the master control judgment module 14 determines the alloy production specification information to be produced is as follows: First, it obtains the alloy production specification information with the highest priority and the alloy production target quantity information stored in the master control storage module 12; then, it obtains the total alloy production quantity recorded by the master control record module 13 based on the alloy production specification information with the highest priority; finally, if the alloy production target quantity is greater than the total alloy production quantity, the alloy production specification information with the highest priority is determined as the alloy production specification information to be produced; otherwise, the alloy production specification information with the second highest priority is the current highest priority alloy production specification information, and the alloy production specification information with the second highest priority is determined as the alloy production specification information to be produced.

[0025] This process ensures that other alloy products can be produced first when their production is suddenly interrupted.

[0026] In order to update the information stored in the master control storage module 12 when the target quantity of alloy production is not greater than the total quantity of alloy production, the output of the master control judgment module 14 is connected to the input of the master control storage module 12 to transmit priority change information to the master control storage module 12. After receiving the priority change information, the master control storage module 12 deletes the alloy production specification information and the alloy production target quantity information with the highest priority of alloy production.

[0027] In practical use, the central control storage module 12 can store alloy production specification information and alloy production target quantity information according to the alloy production priority order. The alloy production specification information and alloy production target quantity information corresponding to the newly input alloy production priority information must be of a higher level than the alloy production specification information and alloy production target quantity information already stored in the central control storage module 12 at the storage position corresponding to the newly input alloy production priority information. Taking the newly input alloy production priority information as 2 as an example, the alloy production specification information and alloy production target quantity information corresponding to the newly input alloy production priority information will be inserted before the original second stored information in the central control storage module 12.

[0028] The alloy production control system of this embodiment obtains the alloy production specification information, alloy production target quantity information, and alloy production priority information of the preset alloy products through the total control input module 11 of the total control unit 10. The total control storage module 12 of the total control unit 10 stores the alloy production specification information and alloy production target quantity information according to the alloy production priority information. The total control recording module 13 of the total control unit 10 records the alloy production quantity information of each production unit corresponding to each alloy production specification information, as well as the total alloy production quantity information corresponding to each alloy production specification information. The total control judgment module 14 transmits the alloy production specification information with the highest current priority to the production control module 21 of the production unit 20. It can simultaneously preset the production information of multiple sets of alloy products according to production priority, and can also simultaneously control multiple sets of production units 20 to produce alloy products in sequence according to production priority. The operation is simple, reduces the frequent operation of the staff, and is more convenient to use.

[0029] Please see Figure 2 , Figure 2 This is a schematic diagram of an alloy production control system according to another embodiment of the present invention. Figure 1 Compared to the previous embodiment, in this embodiment, in order to facilitate staff to know the total production volume of the alloy products currently being produced in a timely manner, the central control unit 10 also includes a central control display module 15. The input end of the central control display module 15 is connected to the output end of the central control recording module 13 to obtain and display the alloy production quantity information of each production unit 20 corresponding to each alloy production specification information, as well as the total alloy production quantity information corresponding to each alloy production specification information.

[0030] In order to promptly remind staff before the completion of production of the highest priority alloy products, the central control unit 10 also includes a central control alarm module 16. The output of the central control judgment module 14 is connected to the input of the central control alarm module 16 to send an alarm message to the central control alarm module 16 when the difference between the alloy production target quantity information corresponding to the alloy production specification information with the highest alloy production priority and the total alloy production quantity information is less than a set threshold. After receiving the alarm message, the central control alarm module 16 issues sound, light, and electrical alarm signals.

[0031] To ensure the production quality of alloy products, each production unit 20 also includes a production evaluation module 23. The input of the production evaluation module 23 is connected to the output of the production control module 21 belonging to the same production unit 20 to obtain the alloy production specification information to be produced. Based on the alloy production specification information, the production action module 22 evaluates the alloy products produced. The output of the production evaluation module 23 is connected to the input of the central control recording module 13 to transmit the production unit identification information, alloy production specification information, and evaluation result information to the central control recording module 13. The central control recording module 13 updates the alloy production non-conforming quantity information of the corresponding production unit 20 based on the received production unit identification information, alloy production specification information, and evaluation result information. The input of the central control judgment module 14 is connected to the output of the central control recording module 13 to obtain the alloy production quantity information and alloy production non-conforming quantity information of each production unit. When the alloy production non-conforming quantity or the proportion of alloy production non-conforming quantity in each production unit reaches a threshold, a warning message is given.

[0032] To ensure the confirmation of other alloy products with the same production priority that are entered later, and to avoid impacting the production of alloy products already in progress, as well as to prevent insufficient preparation for the production of other alloy products that are entered later from affecting the smooth progress of production, please refer to [link to relevant documentation]. Figure 3The central control storage module 12 includes a priority judgment submodule 121 and a storage submodule 122. The input of the priority judgment submodule 121 is connected to the output of the central control input module 11 to obtain the alloy production priority information, alloy production specification information, and alloy production target quantity information to be stored. The input of the priority judgment submodule 121 is connected to the output of the storage submodule 122 to obtain the alloy production specification information and alloy production target quantity information corresponding to each alloy production priority information that have been stored. The alloy production specification information and alloy production target quantity information corresponding to each alloy production priority information that have been stored are recorded as stored information. If the alloy production specification information in the stored information that corresponds to the alloy production priority information to be stored is not the same as the alloy production specification information corresponding to the alloy production priority information to be stored, the output of the priority judgment submodule 121 is not recorded. The system connects to the input terminal of the master control input module 11 to transmit priority modification information to the master control input module 11. After receiving the priority modification information, the master control input module 11 obtains the user's modified priority information and passes it to the priority judgment submodule 121. If the user's modified priority information is different from the alloy production priority information to be stored, the priority judgment submodule 121 determines that the alloy production priority information to be stored is the user's modified priority information. The priority judgment submodule 121 passes the alloy production priority information to be stored, alloy production specification information, and alloy production target quantity information to the storage submodule 122. The storage submodule 122 stores the alloy production specification information and alloy production target quantity information according to the alloy production priority information to be stored. The output terminal of the storage submodule 122 is connected to the input terminal of the master control judgment module 14.

[0033] To ensure that each production unit 20 does not lose its ability to independently perform alloy production, thereby enabling priority production of small batches of alloy products, please refer to [link to relevant documentation]. Figure 4 , Figure 4 This is a schematic diagram of an alloy production control system according to another embodiment of the present invention. Figure 1Compared to the previous embodiment, in this embodiment, each production unit 20 further includes a production input module 24 and a data statistics module 25. The production input module 24 is used to acquire alloy production specification information and alloy production target quantity information to be independently produced. The input end of the production control module 21 is data-connected to the output end of the production input module 24 belonging to the same production unit 20 to acquire alloy production specification information and alloy production target quantity information to be independently produced. The output end of the production control module 21 is data-connected to the input end of the production action module 22 belonging to the same production unit so that after acquiring the alloy production specification information and alloy production target quantity information transmitted by the production input module 24, it transmits alloy production specification information and information to enter independent working state to the production action module 22. Block 22 produces alloy according to the alloy production specifications information to be produced. The output of the production action module 22 is connected to the input of the data statistics module 25 belonging to the same production unit. After receiving the information to enter the independent working state, it sends product completion information to the data statistics module 25 every time an alloy product is produced. After receiving the product completion information, the data statistics module 25 counts. The output of the data statistics module 25 is connected to the input of the production control module 21 to transmit the product completion quantity to the production control module 21. When the received product completion quantity is equal to the alloy production target quantity, the production control module 21 sends the information to release the independent working state and the alloy production specifications information to be produced transmitted by the overall control judgment module 14 to the production action module.

[0034] In this embodiment, the alloy production specification information and alloy production target quantity information input by the production input module 24 have a higher priority than the alloy production specification information transmitted by the overall control judgment module 14.

[0035] This invention discloses an alloy production control system. The system acquires preset alloy production specifications, target quantity, and priority information for alloy products through a central control input module. It stores these information using a central control storage module based on the priority information. A central control recording module records the alloy production quantity for each production unit corresponding to each alloy production specification, as well as the total alloy production quantity for each specification. A central control judgment module transmits the highest-priority alloy production specification to the production control module of each production unit. This system allows for the simultaneous preset production information for multiple alloy products according to production priority, and also enables the simultaneous control of multiple production units to produce alloy products sequentially according to their production priorities. The system is simple to operate, reduces frequent manual intervention, and is more convenient to use.

[0036] The present invention has been described by the above-described embodiments; however, these embodiments are merely examples for implementing the present invention. Furthermore, the technical features involved in the different embodiments of the present invention described above can be combined with each other as long as they do not conflict with each other. It must be pointed out that the disclosed embodiments do not limit the scope of the present invention. On the contrary, any modifications and refinements made without departing from the spirit and scope of the present invention are within the scope of patent protection of the present invention.

Claims

1. An alloy production control system, characterized in that, Includes a central control unit and multiple production units. The overall control unit includes an overall control input module, an overall control storage module, an overall control recording module, and an overall control judgment module. The overall control input module is used to acquire alloy production specification information, alloy production target quantity information, and alloy production priority information. The input end of the overall control storage module is data-connected to the output end of the overall control input module to store alloy production specification information and alloy production target quantity information according to alloy production priority information. The overall control recording module is used to record the alloy production quantity information of each production unit corresponding to each alloy production specification information, and the total alloy production quantity information corresponding to each alloy production specification information. The input end of the overall control judgment module is data-connected to the output end of the overall control storage module, and the input end of the overall control judgment module is data-connected to the output end of the overall control recording module to determine the alloy production specification information to be produced based on the alloy production specification information and alloy production target quantity information with the highest alloy production priority, and the total alloy production quantity information corresponding to the alloy production specification information with the highest alloy production priority. Each of the multiple production units includes a production control module and a production action module. The input of the production control module is connected to the output of the overall control judgment module to obtain the alloy production specification information to be produced. The input of the production action module is connected to the output of the production control module belonging to the same production unit to obtain the alloy production specification information to be produced, and performs alloy production according to the alloy production specification information. The output of the production action module is connected to the input of the overall control recording module to transmit the production unit identification information and alloy production specification information to the overall control recording module after each alloy product production is completed. The overall control recording module updates the alloy production quantity information and the total alloy production quantity information of the corresponding production unit according to the received production unit identification information and alloy production specification information. The output of the overall control recording module is connected to the input of the overall control judgment module to transmit the production unit identification information to the overall control judgment module after the update is completed. After receiving the production unit identification information, the overall control judgment module determines the alloy production specification information to be produced and transmits the alloy production specification information to the production control module of the production unit corresponding to the production unit identification information.

2. The alloy production control system as described in claim 1, characterized in that, The output of the overall control judgment module is connected to the input of the overall control storage module to transmit priority change information to the overall control storage module when the target quantity of alloy production is not greater than the total quantity of alloy production. After receiving the priority change information, the overall control storage module deletes the alloy production specification information and the target quantity information of alloy production with the highest priority.

3. The alloy production control system as described in claim 1, characterized in that, The overall control unit also includes an overall control display module. The input end of the overall control display module is connected to the output end of the overall control recording module to obtain and display the alloy production quantity information of each production unit corresponding to each alloy production specification information, as well as the total alloy production quantity information corresponding to each alloy production specification information.

4. The alloy production control system as described in claim 1, characterized in that, The overall control unit also includes an overall control alarm module. The output of the overall control judgment module is connected to the input of the overall control alarm module to send an alarm message to the overall control alarm module when the difference between the alloy production target quantity information corresponding to the alloy production specification information with the highest priority of alloy production and the total alloy production quantity information is less than a set threshold. After receiving the alarm message, the overall control alarm module issues an alarm signal.

5. The alloy production control system as described in claim 1, characterized in that, Each production unit also includes a production evaluation module. The input of the production evaluation module is connected to the output of the production control module belonging to the same production unit to obtain the alloy production specification information to be produced. Based on the alloy production specification information, the module evaluates the alloy products produced by the production action module. The output of the production evaluation module is connected to the input of the central control recording module to transmit the production unit identification information, alloy production specification information, and evaluation result information to the central control recording module. The central control recording module updates the alloy production defect quantity information of the corresponding production unit based on the received production unit identification information, alloy production specification information, and evaluation result information. The input of the central control judgment module is connected to the output of the central control recording module to obtain the alloy production quantity information and alloy production defect quantity information of each production unit. When the alloy production defect quantity or the percentage of alloy production defect quantity in each production unit reaches a threshold, a warning message is given.

6. The alloy production control system as described in claim 1, characterized in that, The overall control storage module includes a priority judgment submodule and a storage submodule. The input of the priority judgment submodule is connected to the output of the overall control input module to obtain the alloy production priority information, alloy production specification information, and alloy production target quantity information to be stored. The input of the priority judgment submodule is connected to the output of the storage submodule to obtain the alloy production specification information and alloy production target quantity information corresponding to each alloy production priority information that have been stored. The alloy production specification information and alloy production target quantity information corresponding to each alloy production priority information that have been stored are recorded as stored information. If the alloy production specification information in the stored information that corresponds to the alloy production priority information to be stored is not the same as the alloy production priority information to be stored, the output of the priority judgment submodule is connected to... The input terminal of the central control input module is connected to transmit priority modification information to the central control input module. After receiving the priority modification information, the central control input module obtains the user-modified priority information and passes it to the priority judgment submodule. If the user-modified priority information is different from the alloy production priority information to be stored, the priority judgment submodule determines that the alloy production priority information to be stored is the user-modified priority information. The priority judgment submodule passes the alloy production priority information to be stored, alloy production specification information, and alloy production target quantity information to the storage submodule. The storage submodule stores the alloy production specification information and alloy production target quantity information according to the alloy production priority information to be stored. The output terminal of the storage submodule is connected to the input terminal of the central control judgment module.

7. The alloy production control system as described in claim 1, characterized in that, Each production unit also includes a production input module and a quantity statistics module. The production input module is used to acquire alloy production specifications and target quantity information for independent production. The input terminal of the production control module is data-connected to the output terminal of the production input module belonging to the same production unit to acquire alloy production specifications and target quantity information for independent production. The output terminal of the production control module is data-connected to the input terminal of the production action module belonging to the same production unit so that after acquiring the alloy production specifications and target quantity information transmitted by the production input module, it transmits alloy production specifications and information to enter independent working state to the production action module. The production action module then determines the alloy production specifications and enters independent working state information based on the alloy production specifications to be produced. Alloy production is carried out based on specification information. The output of the production action module is connected to the input of the data statistics module belonging to the same production unit. After receiving the information to enter the independent working state, the module sends product completion information to the data statistics module every time an alloy product is produced. The data statistics module counts the products after receiving the product completion information. The output of the data statistics module is connected to the input of the production control module to transmit the product completion quantity to the production control module. When the received product completion quantity is equal to the alloy production target quantity, the production control module sends the information to release the independent working state and the alloy production specification information to be produced transmitted by the overall control judgment module to the production action module.

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