Parameter control method for industrial production and electrode bar centrifugal casting parameter control system

By collecting and analyzing the characteristic data of electrode rod processing products, scientifically matching centrifugal casting molds and machine models, the problem of inaccurate artificial matching in the existing technology is solved, and the processing quality and efficiency of electrode rods are improved.

CN120178802AInactive Publication Date: 2025-06-20JIANGSU HENGYANG METALLURGICAL SCI & TECH CO LTD
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Patent Information

Application Number
CN202510194852.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-06-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the production process of existing electrode rods using centrifugal casting, it is necessary to artificially base the specifications of the processing electrode rods, the centrifugal casting mold model and the centrifugal model selected according to the specifications of the processing electrode rods, the material, resulting in the inability to ensure accurate matching, which reduces the quality and efficiency of the electrode rod processing.

Method used

By collecting the characteristic data of electrode rod processing products, performing data preprocessing and analysis, scientifically matching the model of electrode rod processing centrifugal casting mold and centrifugal model, intelligently generating the industrial parameters of electrode rod processing centrifugal casting machines, and accurately controlling the electrode rod processing operation.

Benefits of technology

The precise matching of electrode rod processing parameters is achieved, the quality and efficiency of electrode rod processing are improved, and the uniformity and purity of electrode rods are ensured.

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Abstract

The invention relates to the technical field of industrial production control systems, and discloses a parameter control method for industrial production and an electrode bar centrifugal casting parameter control system. The system comprises an electrode bar centrifugal casting industrial production parameter acquisition module, an electrode bar centrifugal casting industrial production parameter analysis module and an electrode bar centrifugal casting industrial production operation control module. Electrode bar machining centrifugal machine model identification processing is conducted by scientifically presetting centrifugal machine model parameters corresponding to different centrifugal rotating speed intervals in combination with an intelligent search algorithm and the centrifugal rotating speed intervals needed by electrode bar machining, and the optimal centrifugal casting mold models of different types of electrode bar machining products are accurately analyzed; intelligent and standardized control over production parameters of the electrode bar centrifugal casting industry is achieved, and the yield and quality of electrode bar centrifugal casting are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of industrial production control systems, and specifically to a parameter control method for industrial production and an electrode bar centrifugal casting parameter control system. Background Art

[0002] Electroslag remelting is a method of smelting using the resistance heat generated when an electric current passes through a molten slag as a heat source. Its working principle is that the lower end of the electrode is immersed in the molten slag. When an alternating current passes through the high-resistance slag pool, a large amount of heat is generated. This heat causes the end of the electrode immersed in the molten slag to melt. The molten metal droplets generated after melting pass through the slag pool and drip into the metal melt pool, and then are cooled by a water-cooled mold and solidified into an ingot. During this process, the molten metal droplets are in full contact with the high-temperature and high-alkalinity molten slag, resulting in a strong metallurgical chemical reaction, which refines the metal. This process can purify the metal and obtain a clean, uniformly structured and dense steel ingot. The steel melted by electroslag remelting has high purity, low sulfur content, few non-metallic inclusions, a smooth, clean and uniformly dense surface of the steel ingot, and uniform metallographic structure and chemical composition. Electrode bars are manufactured using the centrifugal casting process to produce electrode bars for electroslag remelting. Currently, a centrifuge and a mold are used to make a thick-walled tube from molten steel. This process utilizes centrifugal force, which can make the molten steel evenly distributed in the mold, thereby obtaining an electrode bar with a uniform structure. Finally, the thick-walled tube is machined into an electrode bar. The centrifugal casting mold has no mold joint line, so there is no problem of water vapor at the mold joint line. Centrifugal casting uses centrifugal force to throw the high-density molten steel to the outer layer of the thick-walled tube, and the loose layer composed of impurities and the like is on the inner wall, which can be removed by machining. In this way, the obtained electrode bar is more uniform and pure. This process can effectively remove impurities in the electrode bar, thereby improving the electrical conductivity and heat resistance of the electrode bar. However, in the existing production and manufacturing process of electrode bars using the centrifugal casting process, it is necessary to manually select the centrifugal casting mold model and the centrifuge model according to the specifications and materials of the processed electrode bars. Manual selection cannot ensure precise processing of the electrode bar to precisely match the optimal centrifugal casting mold model and centrifuge model, reducing the quality and efficiency of electrode bar processing.

[0003] A Chinese invention patent application with the publication number CN116009496A discloses a method, system, device, and storage medium for controlling a product processing machine tool. Among them, the production management subsystem determines the priority order of the at least one processing machine tool according to the machine tool information of each processing machine tool in the at least one processing machine tool; the production management subsystem determines the target machine tool number according to the preset number of processing tasks to be processed and the priority order of the at least one processing machine tool; the production management subsystem sends the target machine tool number to the machine tool dispatching subsystem; the machine tool dispatching subsystem controls the target processing machine tool to execute the product processing task. Using the above method can improve the efficiency when using the processing machine tool for product processing. However, the above technical solution cannot accurately adjust the processing parameters of the processing machine tool according to the product processing task. Summary of the Invention

[0004] (1) Technical problems to be solved

[0005] To solve the problem that in the existing production and manufacturing process of electrode rods using the centrifugal casting process, it is necessary to manually select the centrifugal casting mold model and centrifuge model according to the specifications and materials of the processed electrode rods. Manual selection cannot ensure the precise processing of electrode rods to accurately match the best centrifugal casting mold model and centrifuge model, reducing the quality and efficiency of electrode rod processing. The purpose is to realize online collection of characteristic parameters of electrode rod processing products, scientifically match the centrifugal casting mold models for electrode rod processing, accurately match the centrifuge models for electrode rod processing, intelligently generate the industrial parameters of the centrifugal casting machine for electrode rod processing, and precisely control the electrode rod processing operation to improve the quality of electrode rod processing.

[0006] (2) Technical solutions

[0007] The present invention is realized through the following technical solutions: A parameter control method for industrial production, the method includes the following steps:

[0008] S1. Collect characteristic data of industrial processing products;

[0009] S2. Perform data preprocessing on the characteristic data of industrial processing products to generate and output standard characteristic data of industrial processing products;

[0010] S3. Analyze the centrifugal casting mold models for industrial product processing based on the standard characteristic data of industrial processing products and the centrifugal casting mold model data corresponding to different industrial processing products, and construct the centrifugal casting mold model data required for industrial product processing;

[0011] S4. Perform a search process on the centrifugal speed range for industrial product processing based on the standard characteristic data of industrial processing products and the corresponding centrifugal speed intervals of different industrial processing products to generate the centrifugal speed interval required for industrial product processing;

[0012] S5. Identify the centrifuge model for industrial product processing based on the required centrifuge speed range for industrial product processing and the centrifuge model data corresponding to different centrifuge speed ranges, and construct the centrifuge model data required for industrial product processing.

[0013] S6. Construct the industrial production control data for centrifugal casting of industrial processed products and perform the industrial production operation of centrifugal casting of industrial processed products.

[0014] Preferably, the industrial processed products include electrode bar processed products.

[0015] Preferably, the operation steps for collecting the characteristic data of industrial processed products are as follows:

[0016] S11. Online collect the characteristics of industrial processed products produced by centrifugal casting process through the ERP material management platform and generate the characteristic data A of industrial processed products. The characteristic data of industrial processed products includes the specification size data, quality data, processing material data and appearance data of industrial processed products.

[0017] The present invention accurately collects the characteristic parameters of industrial processed products through the ERP material management platform, achieving the effect of improving the collection efficiency of the industrial production parameters of centrifugal casting of industrial processed products.

[0018] Preferably, the operation steps for performing data preprocessing on the characteristic data of industrial processed products, generating standard characteristic data of industrial processed products and outputting are as follows:

[0019] S21. Use the wavelet transform method to perform data denoising processing on the characteristic data A of industrial processed products and generate a set of standard characteristic data of industrial processed products A'=(a'1,…,a' m ,…,a' α ), m = 1, 2, 3,…,α; where a' m represents the mth standard characteristic data of industrial processed products corresponding to the collected industrial processed products, and α represents the maximum value of the number of standard characteristic data of industrial processed products;

[0020] S22. Output the set of standard characteristic data of industrial processed products A'.

[0021] The present invention performs data denoising preprocessing on the characteristic parameters of industrial processed products to generate and output standard characteristic parameters of industrial processed products, achieving the effect of improving the authenticity of the collection of industrial production parameters of centrifugal casting of industrial processed products.

[0022] Preferably, the steps of analyzing the centrifugal casting mold model for industrial product processing based on the standard industrial processing product characteristic data and the centrifugal casting mold model data corresponding to different industrial processing products and constructing the centrifugal casting mold model data required for industrial product processing are as follows:

[0023] S31. Establish a data set B of centrifugal casting mold models corresponding to different industrial processing products = (b1,…,b u ,…,b β ), u=1,2,3,…,β; where b u The centrifugal casting mold model data corresponding to different industrial processing products matching the u-th industrial processing product feature are represented, and β represents the maximum number of industrial processing product feature types; the centrifugal casting mold model data corresponding to different industrial processing products represent the centrifugal casting mold model data with the best centrifugal casting process for different types of industrial processing product features;

[0024] S32, using a data recognition algorithm to identify the standard industrial processing product feature data a' in the standard industrial processing product feature data set A' m The centrifugal casting mold model data set B corresponding to different industrial processing products The centrifugal casting mold model data set B corresponding to different industrial processing products u Perform industrial processing product feature character analysis to search for the centrifugal casting mold model data b corresponding to the different industrial processing products corresponding to the standard industrial processing product feature data set A' u , execute the search to find the centrifugal casting mold model data b corresponding to the different industrial processing products corresponding to the standard industrial processing product feature data set A' u The specific steps are as follows:

[0025] S321, initialization, update centrifugal casting mold model search pigeon population number N and maximum iteration number T;

[0026] S322, in stage 1, it is necessary to search for the position of the pigeon in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products according to the centrifugal casting mold model and search for the centrifugal casting mold model data set B corresponding to different industrial processing products that matches the standard industrial processing product feature data set A' u Objective: Calculate the speed of the centrifugal casting mold model search pigeon in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products. The current position of the centrifugal casting mold model search pigeon in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products plus the speed will get the new position of the centrifugal casting mold model search pigeon in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products. The speed calculation formula of the centrifugal casting mold model search pigeon is as follows: Among them represents the new velocity of the centrifugal casting die model search pigeon i in the j-dimensional space, that is represents the new velocity of the centrifugal casting die model search pigeon i within the search space B of the centrifugal casting die models corresponding to different industrial processing products with a dimension of β; represents the original velocity of the centrifugal casting die model search pigeon i in the j-dimensional space, that is, the original velocity of the centrifugal casting die model search pigeon i within the search space B of the centrifugal casting die models corresponding to different industrial processing products with a dimension of β; θ is a constant and its value is 0.2, t represents the current iteration number of the algorithm, e -θ×t represents the power function with base e and exponent -θ×t, rand represents a random number within the range [0, 1], represents the best position of the centrifugal casting die model search pigeon in the j-dimensional space, that is, within the search space B of the centrifugal casting die models corresponding to different industrial processing products with a dimension of β, the centrifugal casting die model search pigeon searches for the centrifugal casting die model data b m that best matches the standard industrial processing product feature data a' in the standard industrial processing product feature data set A'; u of the best position; represents the original position of the centrifugal casting die model search pigeon i in the j-dimensional space, that is, within the search space B of the centrifugal casting die models corresponding to different industrial processing products with a dimension of β, the centrifugal casting die model search pigeon searches for the centrifugal casting die model data b m that matches the standard industrial processing product feature data a' in the standard industrial processing product feature data set A'; u of the original position; The calculation formula for the new position of the centrifugal casting die model search pigeon is as follows: Among them represents the new position of the centrifugal casting die model search pigeon i in the j-dimensional space, that is, within the search space B of the centrifugal casting die models corresponding to different industrial processing products with a dimension of β, the centrifugal casting die model search pigeon searches for the centrifugal casting die model data b m that matches the standard industrial processing product feature data a' in the standard industrial processing product feature data set A'; u of the new position;

[0027] S323. Stage 2. The iteration count within the range of [t1, T] is Stage 2. First, it is necessary to sort the pigeon population searching for centrifugal casting die models in the search space of the data set B of centrifugal casting die models corresponding to different industrial processing products. The pigeon population searching for centrifugal casting die models is evenly divided into two groups. The data b of the centrifugal casting die models corresponding to different industrial processing products searched by the pigeons searching for centrifugal casting die models u The group of pigeons searching for centrifugal casting die models with a larger fitness value compared to the standard industrial processing product feature data set A' keeps its position unchanged. At the same time, provide its position in the search space of the data set B of centrifugal casting die models corresponding to different industrial processing products to assist the data b of the centrifugal casting die models corresponding to different industrial processing products searched by the pigeons searching for centrifugal casting die models u The group of pigeons searching for centrifugal casting die models with a smaller fitness value compared to the standard industrial processing product feature data set A' determines their new positions in the search space of the data set B of centrifugal casting die models corresponding to different industrial processing products. The calculation formula for the new positions of the pigeon population searching for centrifugal casting die models with a smaller fitness value is as follows: Where represents the new position of the pigeon i searching for a centrifugal casting die model with a smaller fitness value in the j - dimensional space in Stage 2, that is, the pigeon i searching for a centrifugal casting die model with a smaller fitness value searches in the search space of the data set B of centrifugal casting die models corresponding to different industrial processing products with dimension β and finds the data b of the centrifugal casting die models corresponding to different industrial processing products that matches the standard industrial processing product feature data a' in the standard industrial processing product feature data set A' m matched u new position; represents the centroid position of the group of pigeons searching for centrifugal casting die models with a larger fitness value in the j - dimensional space, that is, the centroid position of the group of pigeons searching for centrifugal casting die models with a larger fitness value in the search space of the data set B of centrifugal casting die models corresponding to different industrial processing products with dimension β;

[0028] S324. When the algorithm meets the maximum number of iterations, output the data b of the centrifugal casting die models corresponding to different industrial processing products that matches the standard industrial processing product feature data set A' u ;

[0029] S33. Construct the data b of the centrifugal casting die models corresponding to different industrial processing products output in Step S324 u into the data b of the centrifugal casting die models required for industrial product processing A .

[0030] The present invention accurately stores the model parameters of the centrifugal casting molds corresponding to different industrial processing products, combines the pigeon flock optimization algorithm with the characteristics of standard industrial processing products, and accurately analyzes the model data of the centrifugal casting molds required for industrial product processing, achieving the effect of scientifically matching the best centrifugal casting mold models for different types of industrial processing products.

[0031] Preferably, according to the characteristic data of the standard industrial processing products and the corresponding centrifugal speed intervals of different industrial processing products, the following steps are taken to search for the centrifugal speed range required for industrial product processing:

[0032] S41. Establish a set C = (c1, …, c u , …, c β ) of the corresponding centrifugal speed intervals of different industrial processing products; where c u represents the corresponding centrifugal speed interval of different industrial processing products matched by the characteristics of the u-th industrial processing product; c u = [V u1 , V u2 , where V u1 represents the minimum centrifugal speed in the centrifugal speed interval c u corresponding to different industrial processing products, and V u2 represents the maximum centrifugal speed in the centrifugal speed interval c u corresponding to different industrial processing products; the corresponding centrifugal speed intervals of different industrial processing products represent the best centrifugal speed intervals for the characteristics of different types of industrial processing products using the centrifugal casting process.

[0033] S42. Use the iterative deepening search algorithm to search for the keywords of industrial processing product characteristics between the standard industrial processing product characteristic data a' m in the standard industrial processing product characteristic data set A' and the corresponding centrifugal speed intervals c u of different industrial processing products in the set C of the corresponding centrifugal speed intervals of different industrial processing products, search for the corresponding centrifugal speed intervals c u of different industrial processing products corresponding to the standard industrial processing product characteristic data set A', and mark and generate the centrifugal speed interval c A required for industrial product processing.

[0034] The present invention accurately sets the corresponding centrifugal speed intervals of different industrial processing products, combines the iterative deepening search algorithm with the characteristic parameters of standard industrial processing products, reliably searches for the centrifugal speed range required for industrial product processing, and achieves the effect of autonomously and efficiently analyzing the best centrifugal speed intervals for different types of industrial processing products.

[0035] Preferably, the operation steps for identifying the centrifuge model data required for industrial product processing according to the centrifuge speed range required for industrial product processing and the centrifuge model data corresponding to different centrifuge speed ranges are as follows:

[0036] S51. Establish a set D of centrifuge model data corresponding to different centrifuge speed ranges, D = (d1, …, d o , …, d χ ), o = 1, 2, 3, …, χ; where d o represents the centrifuge model data corresponding to different centrifuge speed ranges that match the o-th centrifuge speed range for industrial product processing, and χ represents the maximum value of the number of types of centrifuge speed ranges for industrial product processing; the centrifuge model data corresponding to different centrifuge speed ranges represents the centrifuge model data corresponding to different types of centrifuge speed ranges required for industrial product processing;

[0037] S52. Use the uniform cost search algorithm to perform numerical analysis on the left and right end values of the centrifuge speeds in the centrifuge speed range of the centrifuge speed range required for industrial product processing c A and the centrifuge model data d o corresponding to different centrifuge speed ranges in the set D of centrifuge model data corresponding to different centrifuge speed ranges, and identify the centrifuge model data d A corresponding to the centrifuge speed range required for industrial product processing c o and construct it into the centrifuge model data d A required for industrial product processing.

[0038] Through scientific presetting of the centrifuge model parameters corresponding to different centrifuge speed ranges, combined with the uniform cost search algorithm and the centrifuge speed range required for industrial product processing, the present invention performs intelligent analysis on the centrifuge model identification for industrial product processing, and intelligently analyzes the centrifuge model data required for industrial product processing, achieving the effect of realizing the intelligent and standardized control of the centrifugal casting industrial production parameters of industrial processed products.

[0039] Preferably, the operation steps for constructing the centrifugal casting industrial production control data for industrial processed products and performing the centrifugal casting industrial production operation for industrial processed products are as follows:

[0040] S61. Obtain the centrifuge casting mold model data b A required for industrial product processing and the centrifuge model data d A required for industrial product processing;

[0041] S62. Use the centrifuge casting mold model data b A required for industrial product processing and the centrifuge model data d APerform data combination to construct the industrial production control data E of centrifugal casting for industrial processing products E = (b A , d A );

[0042] S63. The centrifugal casting control platform for industrial products controls the centrifugal casting equipment of the corresponding model to perform the industrial production operation of centrifugal casting for industrial processing products according to the centrifugal casting mold model data and centrifuge model data in the industrial production control data E of centrifugal casting for industrial processing products.

[0043] The present invention scientifically constructs the industrial production control parameters of centrifugal casting for industrial processing products through data combination and controls the centrifugal casting equipment of the corresponding model, accurately and intelligently performing the industrial production operation of centrifugal casting for industrial processing products, achieving the effect of improving the accuracy and reliability of the control of industrial production parameters of centrifugal casting for industrial processing products.

[0044] The present invention also discloses a parameter control system for centrifugal casting of electrode rods, which is used to implement the parameter control method for industrial production. The system includes a parameter acquisition module for centrifugal casting of electrode rods in industrial production, a parameter analysis module for centrifugal casting of electrode rods in industrial production, and an operation control module for centrifugal casting of industrial processing products.

[0045] The parameter acquisition module for centrifugal casting of electrode rods in industrial production includes a feature information acquisition unit for electrode rod processed products, a feature information preprocessing unit for electrode rod processed products, and a feature information output unit for electrode rod processed products.

[0046] The feature information acquisition unit for electrode rod processed products acquires the feature data of electrode rod processed products through the ERP material management platform; the feature information preprocessing unit for electrode rod processed products performs data preprocessing on the feature data of electrode rod processed products to generate standard feature data of electrode rod processed products; the feature information output unit for electrode rod processed products is used to output the standard feature data of electrode rod processed products.

[0047] The parameter analysis module for centrifugal casting of electrode rods in industrial production includes a storage unit for centrifugal casting mold models corresponding to different electrode rod processed products, a matching unit for centrifugal casting mold models required for electrode rod processing, a storage unit for centrifugal rotation speed ranges corresponding to different electrode rod processed products, a search unit for centrifugal rotation speed ranges required for electrode rod processing, a storage unit for centrifuge models corresponding to different centrifugal rotation speed ranges, and an identification unit for centrifuge models required for electrode rod processing.

[0048] The storage unit for the centrifugal casting die models corresponding to different electrode bar processing products is used to store the data of the centrifugal casting die models corresponding to different electrode bar processing products; the matching unit for the centrifugal casting die models required for electrode bar processing analyzes the centrifugal casting die models for electrode bar processing based on the characteristic data of the standard electrode bar processing products and the data of the centrifugal casting die models corresponding to different electrode bar processing products, and constructs the data of the centrifugal casting die models required for electrode bar processing; the storage unit for the centrifugal speed ranges corresponding to different electrode bar processing products is used to store the centrifugal speed ranges corresponding to different electrode bar processing products; the searching unit for the centrifugal speed ranges required for electrode bar processing performs a search process on the centrifugal speed range for electrode bar processing based on the characteristic data of the standard electrode bar processing products and the centrifugal speed ranges corresponding to different electrode bar processing products, and generates the centrifugal speed ranges required for electrode bar processing; the storage unit for the centrifuge models corresponding to different centrifugal speed ranges is used to store the data of the centrifuge models corresponding to different centrifugal speed ranges; the identifying unit for the centrifuge models required for electrode bar processing performs an identification process on the centrifuge models for electrode bar processing based on the centrifugal speed ranges required for electrode bar processing and the data of the centrifuge models corresponding to different centrifugal speed ranges, and constructs the data of the centrifuge models required for electrode bar processing.

[0049] The industrial production operation control module for electrode bar centrifugal casting includes an industrial production parameter generation unit for electrode bar centrifugal casting and an industrial production operation execution unit for electrode bar centrifugal casting.

[0050] The industrial production parameter generation unit for electrode bar centrifugal casting constructs industrial production control data for electrode bar centrifugal casting through data combination based on the data of the centrifugal casting die models required for electrode bar processing and the data of the centrifuge models required for electrode bar processing; the industrial production operation execution unit for electrode bar centrifugal casting controls the centrifugal casting equipment of the corresponding models to execute the industrial production operation of electrode bar centrifugal casting according to the centrifugal casting die model data and the centrifuge model data in the industrial production control data for electrode bar centrifugal casting on the electrode bar centrifugal casting control platform.

[0051] (III) Beneficial effects

[0052] The present invention provides a parameter control method for industrial production and a parameter control system for electrode bar centrifugal casting. The following beneficial effects are achieved:

[0053] 1. The product feature information acquisition unit for electrode bar processing accurately acquires the characteristic parameters of electrode bar processed products through the ERP material management platform, improving the efficiency of parameter acquisition in the centrifugal casting industry of electrode bars. The product feature information preprocessing unit and the product feature information output unit for electrode bar processing cooperate with each other to perform data noise reduction preprocessing on the characteristic parameters of electrode bar processed products to generate standard characteristic parameters of electrode bar processed products and output them, improving the authenticity of parameter acquisition in the centrifugal casting industry of electrode bars and providing data support for the selection of centrifugal casting molds and centrifuge models for electrode bars.

[0054] 2. Through the cooperation of the centrifugal casting mold model storage unit corresponding to different electrode bar processed products and the centrifugal casting mold model matching unit required for electrode bar processing, accurately store the centrifugal casting mold model parameters corresponding to different electrode bar processed products, combine intelligent recognition algorithms with the standard characteristics of electrode bar processed products for the analysis of centrifugal casting mold models for electrode bar processing, and scientifically match the best centrifugal casting mold models for different types of electrode bar processed products; the centrifugal speed range storage unit corresponding to different electrode bar processed products and the centrifugal speed range search unit required for electrode bar processing cooperate with each other, accurately set the centrifugal speed ranges corresponding to different electrode bar processed products, combine intelligent search algorithms with the characteristic parameters of standard electrode bar processed products for the search processing of the centrifugal speed range for electrode bar processing, and autonomously and efficiently analyze the best centrifugal speed ranges for different types of electrode bar processed products; the centrifuge model storage unit corresponding to different centrifugal speed ranges and the centrifuge model identification unit required for electrode bar processing cooperate with each other, scientifically preset the centrifuge model parameters corresponding to different centrifugal speed ranges, combine intelligent search algorithms with the required centrifugal speed range for electrode bar processing for the centrifuge model identification processing of electrode bar processing, and accurately analyze the best centrifugal casting mold models for different types of electrode bar processed products, realizing the intelligent and standardized control of the industrial production parameters of electrode bar centrifugal casting and improving the output and quality of electrode bar centrifugal casting.

[0055] 3. Through the cooperation of the industrial production parameter generation unit for electrode bar centrifugal casting and the industrial production operation execution unit for electrode bar centrifugal casting, scientifically construct the industrial production control parameters for electrode bar centrifugal casting through data combination and control the corresponding types of centrifugal casting equipment, accurately and intelligently execute the industrial production operation of electrode bar centrifugal casting, and improve the accuracy and reliability of the control of industrial production parameters for electrode bar centrifugal casting. BRIEF DESCRIPTION OF THE DRAWINGS

[0056] Figure 1 It is a schematic diagram of the modules of the centrifugal casting parameter control system for electrode bars provided by the present invention;

[0057] Figure 2 It is a flowchart of the parameter control method for industrial production provided by the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0058] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0059] The embodiments of the parameter control method for industrial production and the centrifugal casting parameter control system of electrode rods are as follows:

[0060] Please refer to Figure 1 - Figure 2 , for the parameter control method for industrial production, in this embodiment, the processing of electrode rod products is taken as an example of industrial processing products for introduction;

[0061] The method includes the following steps:

[0062] S1. Collect the characteristic data of the electrode rod processed products;

[0063] S2. Perform data preprocessing on the characteristic data of the electrode rod processed products to generate and output the standard characteristic data of the electrode rod processed products;

[0064] S3. Analyze the centrifugal casting mold model data corresponding to different electrode rod processed products based on the standard characteristic data of the electrode rod processed products, and construct the centrifugal casting mold model data required for electrode rod processing;

[0065] S4. Perform a search process on the centrifugal speed range for electrode rod processing based on the standard characteristic data of the electrode rod processed products and the corresponding centrifugal speed range of different electrode rod processed products, and generate the required centrifugal speed range for electrode rod processing;

[0066] S5. Identify the centrifuge model data for electrode rod processing based on the required centrifugal speed range for electrode rod processing and the corresponding centrifuge model data of different centrifugal speed ranges, and construct the required centrifuge model data for electrode rod processing;

[0067] S6. Construct the industrial production control data for electrode rod centrifugal casting and execute the industrial production operation of electrode rod centrifugal casting.

[0068] Furthermore, please refer to Figure 1 - Figure 2 , the operation steps for collecting the characteristic data of the electrode rod processed products are as follows:

[0069] S11. Online collect the characteristics of the electrode bar processed products produced by the centrifugal casting process through the ERP material management platform and generate the electrode bar processed product characteristic data A. The electrode bar processed product characteristic data includes the specification dimension data, quality data, processing material data, and external shape data of the electrode bar processed products.

[0070] The operation steps for data preprocessing of the electrode bar processed product characteristic data, generating standard electrode bar processed product characteristic data, and outputting are as follows:

[0071] S21. Use the wavelet transform method to perform data noise reduction processing on the electrode bar processed product characteristic data A and generate a set of standard electrode bar processed product characteristic data A'=(a'1,…,a' m ,…,a' α ), m = 1, 2, 3, …, α; where a' m represents the m-th standard electrode bar processed product characteristic data corresponding to the collected electrode bar processed product, and α represents the maximum value of the number of standard electrode bar processed product characteristic data;

[0072] S22. Output the standard electrode bar processed product characteristic data set A'.

[0073] Through the electrode bar processed product characteristic information collection unit, accurately collect the electrode bar processed product characteristic parameters using the ERP material management platform, improving the efficiency of collecting the centrifugal casting industrial production parameters of the electrode bar; the electrode bar processed product characteristic information preprocessing unit and the electrode bar processed product characteristic information output unit cooperate with each other to perform data noise reduction preprocessing on the electrode bar processed product characteristic parameters, generate standard electrode bar processed product characteristic parameters, and output them, improving the authenticity of collecting the centrifugal casting industrial production parameters of the electrode bar, and providing data support for the selection of the centrifugal casting die and centrifuge models for the electrode bar.

[0074] Further, please refer to Figure 1 - Figure 2 , and the operation steps for analyzing the centrifugal casting die models for the electrode bar processing based on the standard electrode bar processed product characteristic data and the centrifugal casting die model data corresponding to different electrode bar processed products, and constructing the centrifugal casting die model data required for the electrode bar processing are as follows:

[0075] S31. Establish a set of centrifugal casting die model data B=(b1,…,b u ,…,b β ), u = 1, 2, 3, …, β; where b uIt represents the data of the centrifugal casting die models corresponding to different electrode bar processing products that match the characteristics of the u-th electrode bar processing product. β represents the maximum value of the number of types of electrode bar processing product characteristics. The data of the centrifugal casting die models corresponding to different electrode bar processing products represents the data of the best centrifugal casting die models for different types of electrode bar processing product characteristics using the centrifugal casting process.

[0076] S32. Use the data recognition algorithm to process the standard electrode bar processing product characteristic data a' in the standard electrode bar processing product characteristic data set A' m and the data of the centrifugal casting die models corresponding to different electrode bar processing products b in the data set B of the centrifugal casting die models corresponding to different electrode bar processing products u for character analysis of the electrode bar processing product characteristics, and search for the data b of the centrifugal casting die models corresponding to different electrode bar processing products that match the standard electrode bar processing product characteristic data set A' u . The specific operation steps for executing the search for the data b of the centrifugal casting die models corresponding to different electrode bar processing products that match the standard electrode bar processing product characteristic data set A' u are as follows:

[0077] S321. Initialize and update the population size N of the pigeon flock for searching the centrifugal casting die models and the maximum number of iterations T.

[0078] S322. In the first stage, it is necessary to calculate the velocity of the pigeon for searching the centrifugal casting die models in the search space of the data set B of the centrifugal casting die models corresponding to different electrode bar processing products according to the position of the pigeon for searching the centrifugal casting die models in the search space of the data set B of the centrifugal casting die models corresponding to different electrode bar processing products and the target of searching for the data b of the centrifugal casting die models corresponding to different electrode bar processing products that match the standard electrode bar processing product characteristic data set A'. The new position of the pigeon for searching the centrifugal casting die models in the search space of the data set B of the centrifugal casting die models corresponding to different electrode bar processing products is obtained by adding the current position of the pigeon for searching the centrifugal casting die models in the search space of the data set B of the centrifugal casting die models corresponding to different electrode bar processing products to the velocity. The velocity calculation formula of the pigeon for searching the centrifugal casting die models is as follows: u where represents the new velocity of the pigeon i for searching the centrifugal casting die models in the j-dimensional space, that is, represents the new velocity of the pigeon i for searching the centrifugal casting die models in the search space of the data set B of the centrifugal casting die models corresponding to different electrode bar processing products with the dimension of β; ​represents the original velocity of the centrifugal casting die model search pigeon i in the j-dimensional space, that is, the original velocity of the centrifugal casting die model search pigeon i in the search space of the centrifugal casting die model data set B corresponding to the products processed by different electrode rods with the dimension of β; θ is a constant and its value is 0.2, t represents the current iteration number of the algorithm, e -θ×t represents the power function with the base e and the exponent -θ×t, rand represents a random number in the range of [0, 1], represents the best position of the centrifugal casting die model search pigeon in the j-dimensional space, that is, among the centrifugal casting die model search pigeons, in the search space of the centrifugal casting die model data set B corresponding to the products processed by different electrode rods with the dimension of β, the centrifugal casting die model data b m that best matches the standard electrode rod processed product feature data a' in the standard electrode rod processed product feature data set A' u of the best position; represents the original position of the centrifugal casting die model search pigeon i in the j-dimensional space, that is, among the centrifugal casting die model search pigeons, in the search space of the centrifugal casting die model data set B corresponding to the products processed by different electrode rods with the dimension of β, the centrifugal casting die model data b m that matches the standard electrode rod processed product feature data a' u of the original position; The calculation formula for the new position of the centrifugal casting die model search pigeon is as follows: where represents the new position of the centrifugal casting die model search pigeon i in the j-dimensional space, that is, among the centrifugal casting die model search pigeons, in the search space of the centrifugal casting die model data set B corresponding to the products processed by different electrode rods with the dimension of β, the centrifugal casting die model data b m that matches the standard electrode rod processed product feature data a' u of the new position;

[0079] S323. Stage 2. When the iteration number is in the range of [t1, T], it is stage 2. First, it is necessary to sort the group of centrifugal casting die model search pigeons in the search space of the centrifugal casting die model data set B corresponding to the products processed by different electrode rods, and divide the group of centrifugal casting die model search pigeons into two equal groups. The centrifugal casting die model data b corresponding to the products processed by different electrode rods searched by the centrifugal casting die model search pigeons uKeep the positions of the group of centrifugal casting mold models with large fitness values in the search pigeon population for the centrifugal casting mold models that are adapted to the characteristic data set A' of the standard electrode bar processing products unchanged, and at the same time provide their positions in the search space of the centrifugal casting mold model data set B corresponding to different electrode bar processing products, to assist the search pigeons for the centrifugal casting mold models to search for the centrifugal casting mold model data b corresponding to different electrode bar processing products u Determine the new positions of the group of search pigeons for the centrifugal casting mold models with small fitness values in the search space of the centrifugal casting mold model data set B corresponding to different electrode bar processing products. The calculation formula for the new positions of the group of search pigeons for the centrifugal casting mold models with small fitness values is as follows: Where represents the new position of the search pigeon i for the centrifugal casting mold model with a small fitness value in the j-dimensional space in stage two, that is, the search pigeon i for the centrifugal casting mold model with a small fitness value searches in the search space of the centrifugal casting mold model data set B with dimension β corresponding to different electrode bar processing products and finds the centrifugal casting mold model data b m matching the standard electrode bar processing product characteristic data a' in the standard electrode bar processing product characteristic data set A' u of the new position; represents the centroid position of the group of search pigeons for the centrifugal casting mold models with large fitness values in the j-dimensional space, that is, the centroid position of the group of search pigeons for the centrifugal casting mold models with large fitness values in the search space of the centrifugal casting mold model data set B with dimension β corresponding to different electrode bar processing products;

[0080] S324. When the algorithm meets the maximum number of iterations, output the centrifugal casting mold model data b corresponding to different electrode bar processing products that match the standard electrode bar processing product characteristic data set A' u ;

[0081] S33. Construct the centrifugal casting mold model data b corresponding to different electrode bar processing products output in step S324 u into the centrifugal casting mold model data b required for electrode bar processing A .

[0082] The operation steps for searching the centrifugal speed range for electrode bar processing based on the standard electrode bar processing product characteristic data and the centrifugal speed intervals corresponding to different electrode bar processing products to generate the centrifugal speed interval required for electrode bar processing are as follows:

[0083] S41. Establish a set C of centrifugal speed intervals corresponding to different electrode bar processing products = (c1,..., c u ,..., c β ); where c uRepresents the corresponding centrifugal speed range of different electrode rod processing products for the u-th electrode rod processing product feature matching; c u =[V u1 ,V u2 , where V u1 represents the minimum centrifugal speed in the centrifugal speed range c u corresponding to different electrode rod processing products, and V u2 represents the maximum centrifugal speed in the centrifugal speed range c u corresponding to different electrode rod processing products; the centrifugal speed range corresponding to different electrode rod processing products represents the best centrifugal speed range for different types of electrode rod processing product features using the centrifugal casting process;

[0084] S42. Use the iterative deepening search algorithm to search for the keywords of the electrode rod processing product features between the standard electrode rod processing product feature data a' in the standard electrode rod processing product feature data set A' and the centrifugal speed range c of different electrode rod processing products corresponding to the centrifugal speed range set C of different electrode rod processing products, and search out the centrifugal speed range c of different electrode rod processing products corresponding to the standard electrode rod processing product feature data set A' m and mark and generate the required centrifugal speed range c for electrode rod processing u . u A

[0085]

[0086] The operation steps for identifying the centrifuge model data required for electrode rod processing based on the required centrifugal speed range for electrode rod processing and the centrifuge model data corresponding to different centrifugal speed ranges are as follows:

[0087] S51. Establish a set D of centrifuge model data corresponding to different centrifugal speed ranges = (d1,..., d o ,..., d χ ), o = 1, 2, 3,..., χ; where d o represents the centrifuge model data corresponding to different centrifugal speed ranges that match the o-th electrode rod processing centrifugal speed range, and χ represents the maximum value of the number of types of electrode rod processing centrifugal speed ranges; the centrifuge model data corresponding to different centrifugal speed ranges represents the centrifuge model data corresponding to different types of required centrifugal speed ranges for electrode rod processing;

[0087] S52. Use the uniform cost search algorithm to perform numerical analysis on the left and right end values of the centrifugal speed in the centrifugal speed range between the required centrifugal speed range c for electrode rod processing A and the centrifuge model data d corresponding to different centrifugal speed ranges in the set D of centrifuge model data corresponding to different centrifugal speed ranges, and identify the centrifugal speed range c required for electrode rod processing o A ​The corresponding centrifuge model data d for different centrifuge speed ranges o And construct the centrifuge model data d required for the processing of electrode rods A .

[0088] Through the mutual cooperation of the centrifuge casting mold model storage unit corresponding to different electrode rod processed products and the centrifuge casting mold model matching unit required for electrode rod processing, accurately store the centrifuge casting mold model parameters corresponding to different electrode rod processed products. Combine the intelligent recognition algorithm and the characteristics of standard electrode rod processed products to analyze the centrifuge casting mold models for electrode rod processing, and scientifically match the best centrifuge casting mold models for different types of electrode rod processed products; the centrifuge speed range storage unit corresponding to different electrode rod processed products and the centrifuge speed range search unit required for electrode rod processing cooperate with each other. Accurately set the centrifuge speed ranges corresponding to different electrode rod processed products. Combine the intelligent search algorithm and the characteristic parameters of standard electrode rod processed products to perform the centrifuge speed range search process for electrode rod processing, and autonomously and efficiently analyze the best centrifuge speed ranges for different types of electrode rod processed products; the centrifuge model storage unit corresponding to different centrifuge speed ranges and the centrifuge model identification unit required for electrode rod processing cooperate with each other. Scientifically preset the centrifuge model parameters corresponding to different centrifuge speed ranges. Combine the intelligent search algorithm and the centrifuge speed range required for electrode rod processing to perform the centrifuge model identification process for electrode rod processing, and accurately analyze the best centrifuge casting mold models for different types of electrode rod processed products, realizing the intelligent and standardized control of the industrial production parameters of electrode rod centrifugal casting, and improving the output and quality of electrode rod centrifugal casting.

[0089] Further, please refer to Figure 1 - Figure 2 , and the operation steps for constructing the industrial production control data of electrode rod centrifugal casting and performing the industrial production operation of electrode rod centrifugal casting are as follows:

[0090] S61. Obtain the centrifuge casting mold model data b required for electrode rod processing A and the centrifuge model data d required for electrode rod processing A ;

[0091] S62. Combine the centrifuge casting mold model data b required for electrode rod processing A and the centrifuge model data d required for electrode rod processing A to perform data combination to construct the industrial production control data E of electrode rod centrifugal casting = (b A , d A );

[0092] S63. The electrode rod centrifugal casting control platform controls the corresponding model of centrifugal casting equipment to perform the industrial production operation of electrode rod centrifugal casting according to the centrifugal casting mold model data and the centrifuge model data in the industrial production control data E of electrode rod centrifugal casting.

[0093] The industrial production parameter generation unit for electrode bar centrifugal casting and the industrial production operation execution unit for electrode bar centrifugal casting cooperate with each other, and scientifically construct the industrial production control parameters for electrode bar centrifugal casting by combining data, and control the centrifugal casting equipment of corresponding models, accurately and intelligently execute the industrial production operation of electrode bar centrifugal casting, and improve the accuracy and reliability of the control of industrial production parameters for electrode bar centrifugal casting.

[0094] The parameter control system for electrode bar centrifugal casting is used to implement the parameter control method for industrial production. The system includes an industrial production parameter acquisition module for electrode bar centrifugal casting, an industrial production parameter analysis module for electrode bar centrifugal casting, and an industrial production operation control module for electrode bar centrifugal casting;

[0095] The industrial production parameter acquisition module for electrode bar centrifugal casting includes a product feature information acquisition unit for electrode bar processing, a product feature information preprocessing unit for electrode bar processing, and a product feature information output unit for electrode bar processing;

[0096] The product feature information acquisition unit for electrode bar processing collects the product feature data of electrode bar processing through the ERP material management platform; the product feature information preprocessing unit for electrode bar processing performs data preprocessing on the product feature data of electrode bar processing to generate standard product feature data of electrode bar processing; the product feature information output unit for electrode bar processing is used to output the standard product feature data of electrode bar processing;

[0097] The industrial production parameter analysis module for electrode bar centrifugal casting includes a storage unit for the centrifugal casting mold models corresponding to different electrode bar processed products, a matching unit for the centrifugal casting mold models required for electrode bar processing, a storage unit for the centrifugal rotation speed ranges corresponding to different electrode bar processed products, a search unit for the centrifugal rotation speed ranges required for electrode bar processing, a storage unit for the centrifuge models corresponding to different centrifugal rotation speed ranges, and an identification unit for the centrifuge models required for electrode bar processing;

[0098] A storage unit for the centrifuge casting die models corresponding to different electrode rod processed products, which is used to store the data of the centrifuge casting die models corresponding to different electrode rod processed products; a matching unit for the centrifuge casting die models required for electrode rod processing, which analyzes the centrifuge casting die models for electrode rod processing based on the characteristic data of standard electrode rod processed products and the data of the centrifuge casting die models corresponding to different electrode rod processed products, and constructs the data of the centrifuge casting die models required for electrode rod processing; a storage unit for the centrifuge speed ranges corresponding to different electrode rod processed products, which is used to store the centrifuge speed ranges corresponding to different electrode rod processed products; a search unit for the centrifuge speed ranges required for electrode rod processing, which performs a search process on the centrifuge speed range for electrode rod processing based on the characteristic data of standard electrode rod processed products and the centrifuge speed ranges corresponding to different electrode rod processed products, and generates the centrifuge speed range required for electrode rod processing; a storage unit for the centrifuge models corresponding to different centrifuge speed ranges, which is used to store the data of the centrifuge models corresponding to different centrifuge speed ranges; an identification unit for the centrifuge models required for electrode rod processing, which performs an identification process on the centrifuge models for electrode rod processing based on the centrifuge speed range required for electrode rod processing and the data of the centrifuge models corresponding to different centrifuge speed ranges, and constructs the data of the centrifuge models required for electrode rod processing;

[0099] The industrial production operation control module for electrode rod centrifuge casting includes an industrial production parameter generation unit for electrode rod centrifuge casting and an industrial production operation execution unit for electrode rod centrifuge casting;

[0100] The industrial production parameter generation unit for electrode rod centrifuge casting constructs the industrial production control data for electrode rod centrifuge casting through data combination based on the data of the centrifuge casting die models required for electrode rod processing and the data of the centrifuge models required for electrode rod processing; the industrial production operation execution unit for electrode rod centrifuge casting, and the electrode rod centrifuge casting control platform controls the corresponding model of centrifuge casting equipment to execute the industrial production operation of electrode rod centrifuge casting based on the centrifuge casting die model data and the centrifuge model data in the industrial production control data for electrode rod centrifuge casting.

[0101] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A parameter control method for industrial production, characterized in that: The method comprises the following steps: S1. Collect characteristic data of industrial processing products; S2, preprocessing the industrial processing product characteristic data to generate standard industrial processing product characteristic data and outputting it; S3, analyzing the centrifugal casting mold model for industrial product processing based on the standard industrial processing product feature data and the centrifugal casting mold model data corresponding to different industrial processing products, and constructing the centrifugal casting mold model data required for industrial product processing; S4, performing a search process on the centrifugal speed range for industrial product processing based on the characteristic data of the standard industrial processing products and the corresponding centrifugal speed ranges of different industrial processing products, and generating the centrifugal speed range required for industrial product processing; S5, performing centrifuge model identification processing for industrial product processing according to the centrifuge speed range required for industrial product processing and the centrifuge model data corresponding to different centrifuge speed ranges, and constructing the centrifuge model data required for industrial product processing; S6. Construct industrial production control data for centrifugal casting of industrial processed products and execute industrial production operations for centrifugal casting of industrial processed products.

2. The industrial production parameter control method according to claim 1, characterized in that: The S1 comprises the following steps: S11. Collect online the characteristics of industrial processing products produced by centrifugal casting process through the ERP material management platform and generate industrial processing product characteristic data A, wherein the industrial processing product characteristic data includes specification size data, quality data, processing material data and appearance data of the industrial processing products.

3. The parameter control method for industrial production according to claim 2, characterized in that: The S2 comprises the following steps: S21, using wavelet transform method to perform data noise reduction processing on the industrial processing product feature data A and generate a standard industrial processing product feature data set A'=(a'1, ..., a' m ,…,a' α ), m=1,2,3,…,α; where a' m represents the mth standard industrial processing product characteristic data corresponding to the collected industrial processing product, and α represents the maximum number of standard industrial processing product characteristic data; S22. Outputting the standard industrial processing product characteristic data set A'.

4. The industrial production parameter control method according to claim 3, characterized in that: The S3 comprises the following steps: S31. Establish a data set B of centrifugal casting mold models corresponding to different industrial processing products = (b1,…,b u ,…,b β ), u=1,2,3,…,β; where b u The centrifugal casting mold model data corresponding to different industrial processing products matching the u-th industrial processing product feature are represented, and β represents the maximum number of industrial processing product feature types; the centrifugal casting mold model data corresponding to different industrial processing products represent the centrifugal casting mold model data with the best centrifugal casting process for different types of industrial processing product features; S32, using a data recognition algorithm to identify the standard industrial processing product feature data a' in the standard industrial processing product feature data set A' m The centrifugal casting mold model data set B corresponding to different industrial processing products The centrifugal casting mold model data set B corresponding to different industrial processing products u Perform industrial processing product feature character analysis to search for the centrifugal casting mold model data b corresponding to the different industrial processing products corresponding to the standard industrial processing product feature data set A' u , execute the search to find the centrifugal casting mold model data b corresponding to the different industrial processing products corresponding to the standard industrial processing product feature data set A' u The specific steps are as follows: S321, initialization, update centrifugal casting mold model search pigeon population number N and maximum iteration number T; S322, stage 1, the number of iterations in the range [0, t1] is stage 1, where represents a random number in the range of (0.5, 0.8). In the first stage, it is necessary to search for the position of the pigeon in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products according to the centrifugal casting mold model and search for the centrifugal casting mold model data b corresponding to different industrial processing products that match the standard industrial processing product feature data set A'. u Objective: calculate the speed of the centrifugal casting mold model search pigeon in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products. The current position of the centrifugal casting mold model search pigeon in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products plus the speed will get the new position of the centrifugal casting mold model search pigeon in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products. S323, stage 2, the number of iterations in the range of [t1, T] is stage 2, first, it is necessary to sort the centrifugal casting mold model search pigeon group in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products, and divide the centrifugal casting mold model search pigeon group into two groups, the centrifugal casting mold model search pigeon search different industrial processing products corresponding to the centrifugal casting mold model data b u The group of centrifugal casting mold model search pigeons with a large fitness value relative to the standard industrial processing product feature data set A' keeps its position unchanged, and at the same time provides its position in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products, to assist the centrifugal casting mold model search pigeons in searching for different industrial processing products corresponding to the centrifugal casting mold model data b u The group of centrifugal casting mold models that have a smaller fitness value than the standard industrial processing product feature data set A' determines their new position in the search space of the centrifugal casting mold model data set B corresponding to different industrial processing products; S324, when the algorithm meets the maximum number of iterations, output the centrifugal casting mold model data b corresponding to the different industrial processing products that match the standard industrial processing product feature data set A' u ; S33, the centrifugal casting mold model data b corresponding to the different industrial processing products output in step S324 u Construct centrifugal casting mold model data required for industrial product processing A .

5. The industrial production parameter control method according to claim 4, characterized in that: The S4 comprises the following steps: S41. Establish a set of centrifugal speed intervals corresponding to different industrial processing products C = (c1,…,c u ,…,c β );where c u represents the centrifugal speed range corresponding to different industrial processing products matching the characteristics of the u-th industrial processing product; c u =[V u1 ,V u2 ], where V u1 Indicates the centrifugal speed range c corresponding to different industrial processing products u Minimum centrifugal speed, V u2 Indicates the centrifugal speed range c corresponding to different industrial processing products u The maximum value of the centrifugal speed in the centrifugal casting process; the centrifugal speed range corresponding to the different industrial processing products indicates the best centrifugal speed range for different types of industrial processing products; S42, using an iterative deepening search algorithm to search the standard industrial processing product feature data a' in the standard industrial processing product feature data set A' m The centrifugal speed intervals c corresponding to the different industrial processing products in the centrifugal speed interval set C corresponding to the different industrial processing products u Perform an industrial processing product feature keyword search to find out the centrifugal speed range c corresponding to the different industrial processing products corresponding to the standard industrial processing product feature data set A' u And mark the centrifugal speed range c required for industrial product processing A .

6. The industrial production parameter control method according to claim 5, characterized in that: The S5 comprises the following steps: S51, establish a centrifuge model data set D corresponding to different centrifugal speed ranges = (d1, ..., d o ,…,d χ ), o = 1, 2, 3, ..., χ; where d o represents the centrifuge model data corresponding to different centrifugal speed intervals matching the centrifugal speed interval for processing the oth industrial product, and x represents the maximum number of types of centrifugal speed intervals for processing industrial products; the centrifuge model data corresponding to different centrifugal speed intervals represent the centrifuge model data corresponding to different types of centrifugal speed intervals required for industrial product processing; S52, using a unified cost search algorithm to find the centrifugal speed range c required for processing the industrial product A The centrifuge model data set D corresponding to the different centrifuge speed intervals corresponds to the centrifuge model data set D of the different centrifuge speed intervals. o Perform numerical analysis on the left and right extreme values ​​of the centrifugal speed in the centrifugal speed range to identify the centrifugal speed range c required for the processing of the industrial product. A The corresponding centrifuge model data d of the different centrifugal speed intervals o And construct the centrifuge model data required for industrial product processing A .

7. The industrial production parameter control method according to claim 6, characterized in that: The S6 comprises the following steps: S61, obtaining the centrifugal casting mold model data b required for the industrial product processing A Centrifuge model data required for industrial product processing A ; S62, the centrifugal casting mold model data b required for processing the industrial product A Centrifuge model data required for industrial product processing A Combine the data to construct the industrial processing product centrifugal casting industrial production control data E = (b A ,d A ); S63, executing the industrial production operation of centrifugal casting of industrial processing products according to the industrial production control data E of centrifugal casting of industrial processing products.

8. The parameter control method for industrial production according to claim 7, characterized in that: The S63 specifically includes the following steps: the industrial product centrifugal casting control platform controls the corresponding model of centrifugal casting equipment to perform the industrial production operation of centrifugal casting of industrial processing products according to the centrifugal casting mold model data and the centrifuge model data in the industrial production control data E of the industrial processing product centrifugal casting.

9. The parameter control method for industrial production according to claim 1, characterized in that: The industrial processed products include electrode rod processed products.

10. Electrode rod centrifugal casting parameter control system, used to implement the industrial production parameter control method according to any one of claims 1 to 9, characterized in that: The system comprises an electrode rod centrifugal casting industrial production parameter acquisition module, an electrode rod centrifugal casting industrial production parameter analysis module, and an electrode rod centrifugal casting industrial production operation control module.

Citation Information

Patent Citations

  • Product processing machine control method, system and equipment and storage medium

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