Scrap steel inspection data processing method, device and equipment, storage medium and product

By developing application objects on mobile terminals, obtaining and reviewing scrap steel inspection data, and sending it to the inspection and testing server when the conditions are met, the problem of inaccurate entry of scrap steel inspection data in the existing technology is solved, and the accuracy and timeliness of the data are improved.

CN120218710APending Publication Date: 2025-06-27HUNAN VALIN LIANYUAN IRON & STEEL CO LTD
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Patent Information

Application Number
CN202510251800.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

In the prior art, the input method of scrap steel inspection data mainly relies on paper records, resulting in data errors and it is difficult to effectively distinguish the accuracy of the data.

Method used

By developing an application object on the mobile terminal, obtaining the inspection data, scrap steel pictures and inspection results of the target batch of scrap steel, displaying the inspection data and scrap steel pictures in the display interface, receiving the audit user's audit results, and sending the inspection data to the inspection server if the results are in compliance.

Benefits of technology

This reduces the errors in inspection data, improves the accuracy of scrap steel inspection data, and realizes effective review and timely upload of data.

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Abstract

The invention discloses a waste steel inspection data processing method and device, equipment, a storage medium and a product, and relates to the technical field of quality inspection. The method is applied to a mobile terminal, the mobile terminal comprises an application object, and the method comprises the steps that inspection data, a waste steel picture and an inspection result of a target batch of waste steel are acquired, and the inspection result is used for representing whether the quality of the target batch of waste steel is inspected normally; under the condition that the inspection result shows that the quality inspection of the target batch of scrap steel is normal, displaying inspection data and a scrap steel picture in a display interface of the application object; receiving an auditing result input by an auditing user for auditing the inspection data according to the waste steel picture, wherein the auditing result is used for representing whether the inspection data is consistent with the waste steel picture; and under the condition that the auditing result shows that the inspection data is consistent with the scrap steel picture, the inspection data is sent to an inspection and test server.
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Description

Technical Field

[0001] This application belongs to the technical field of quality inspection, and particularly relates to a method, device, equipment, storage medium and product for processing scrap steel inspection data. Background Art

[0002] When steel enterprises purchase scrap steel externally, they need to enter inspection data. The current entry methods mainly include the traditional paper entry method. That is, after the scrap steel inspector inspects at the unloading site, the inspection results are registered in the paper inspection ledger, and then special data personnel enter the inspection results into the company's inspection system and verify the data accuracy. However, if there are errors in the paper records of the inspection data, the entry personnel cannot effectively identify the accuracy of the data. Summary of the Invention

[0003] The embodiments of this application provide a method, device, equipment, storage medium and product for processing scrap steel inspection data, which can reduce the occurrence of errors in inspection data and improve the accuracy of scrap steel inspection data.

[0004] In a first aspect, the embodiments of this application provide a method for processing scrap steel inspection data, which is applied to a mobile terminal. The mobile terminal includes an application object. The method includes:

[0005] Obtain the inspection data, scrap steel pictures and inspection results of the target batch of scrap steel. The inspection results are used to indicate whether the quality of the target batch of scrap steel is inspected normally;

[0006] When the inspection results indicate that the quality of the target batch of scrap steel is inspected normally, display the inspection data and the scrap steel pictures on the display interface of the application object;

[0007] Receive the audit result input by the audit user for auditing the inspection data according to the scrap steel pictures. The audit result is used to indicate whether the inspection data conforms to the scrap steel pictures;

[0008] When the audit result indicates that the inspection data conforms to the scrap steel pictures, send the inspection data to the inspection and analysis server.

[0009] In a second aspect, the embodiments of this application provide a device for processing scrap steel inspection data, which is applied to a mobile terminal. The mobile terminal includes an application object. The device includes:

[0010] A first acquisition module, configured to obtain the inspection data, scrap steel pictures and inspection results of the target batch of scrap steel. The inspection results are used to indicate whether the quality of the target batch of scrap steel is inspected normally;

[0011] A display module, configured to display the inspection data and the scrap steel picture on the display interface of the application object when the inspection result indicates that the quality inspection of the target batch of scrap steel is normal;

[0012] A receiving module, configured to receive the audit result input by the auditing user for auditing the inspection data according to the scrap steel picture, where the audit result is used to indicate whether the inspection data conforms to the scrap steel picture;

[0013] A first sending module, configured to send the inspection data to the inspection and analysis server when the audit result indicates that the inspection data conforms to the scrap steel picture.

[0014] In a third aspect, an embodiment of the present application provides an electronic device, which includes: a processor and a memory storing computer program instructions; when the processor executes the computer program instructions, the processing method of scrap steel inspection data described in any one of the above is implemented.

[0015] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, on which computer program instructions are stored, and when the computer program instructions are executed by a processor, the processing method of scrap steel inspection data described in any one of the above is implemented.

[0016] In a fifth aspect, an embodiment of the present application provides a computer program product, and when the instructions in the computer program product are executed by a processor of an electronic device, the electronic device is enabled to execute the processing method of scrap steel inspection data described in any one of the above.

[0017] The processing method, device, equipment, storage medium and product of scrap steel inspection data in the embodiments of the present application are applied to a mobile terminal, and the mobile terminal includes an application object, and can obtain the inspection data, scrap steel picture and inspection result of the target batch of scrap steel, and the inspection result is used to indicate whether the quality of the target batch of scrap steel is inspected normally; when the inspection result indicates that the quality inspection of the target batch of scrap steel is normal, the inspection data and the scrap steel picture are displayed on the display interface of the application object; the audit result input by the auditing user for auditing the inspection data according to the scrap steel picture is received, and the audit result is used to indicate whether the inspection data conforms to the scrap steel picture; when the audit result indicates that the inspection data conforms to the scrap steel picture, the inspection data is sent to the inspection and analysis server. In this way, in the embodiments of the present application, the inspection data, scrap steel picture and inspection result of the scrap steel can be input through the application object in the mobile terminal, and the scrap steel picture can be displayed on the display interface of the application object, so as to effectively audit the inspection data, thereby reducing the occurrence of errors in the inspection data, and further improving the accuracy of the scrap steel inspection data. Description of the Drawings

[0018] To more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1 It is a schematic flowchart of a method for processing scrap steel inspection data provided by an embodiment of the present application;

[0020] Figure 2 It is a schematic flowchart of a scenario embodiment provided by an embodiment of the present application;

[0021] Figure 3 It is a schematic structural diagram of a device for processing scrap steel inspection data provided by an embodiment of the present application;

[0022] Figure 4 It is a schematic structural diagram of an electronic device provided by an embodiment of the present application. Detailed implementation manners

[0023] The following will describe in detail the features and exemplary embodiments of various aspects of the present application. To make the purpose, technical solutions and advantages of the present application clearer and more understandable, the following further describes the present application in detail in combination with the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only intended to explain the present application, rather than limiting the present application. For those skilled in the art, the present application can be implemented without some of these specific details. The following description of the embodiments is only to provide a better understanding of the present application by showing examples of the present application.

[0024] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, the elements defined by the statement "including..." do not exclude the existence of additional identical elements in the process, method, article or device including the said elements.

[0025] When steel enterprises purchase scrap steel externally, they need to enter inspection data. The current entry methods mainly include the traditional paper entry method. That is, after the scrap steel inspector inspects at the unloading site, the inspection results are registered in the paper inspection ledger, and then specialized data personnel enter the inspection results into the company's inspection system and verify the data accuracy. However, if there are errors in the paper records of the inspection data, the entry personnel cannot effectively identify the accuracy of the data.

[0026] To solve the problems of the existing technology, the embodiments of the present application provide a method, device, equipment, storage medium and product for processing scrap steel inspection data. First, the method for processing scrap steel inspection data provided by the embodiments of the present application will be introduced below.

[0027] Figure 1 The flowchart of the method for processing scrap steel inspection data provided by an embodiment of the present application is shown. As Figure 1 shown, a method for processing scrap steel inspection data, which is applied to a mobile terminal. The mobile terminal includes an application object. The above method may include the following steps S101 to S104:

[0028] S101. Obtain the inspection data, scrap steel pictures and inspection results of the target batch of scrap steel. The inspection results are used to characterize whether the quality of the target batch of scrap steel is inspected normally;

[0029] S102. When the inspection results characterize that the quality inspection of the target batch of scrap steel is normal, display the inspection data and scrap steel pictures on the display interface of the application object;

[0030] S103. Receive the audit result input by the audit user for auditing the inspection data according to the scrap steel pictures. The audit result is used to characterize whether the inspection data conforms to the scrap steel pictures;

[0031] S104. When the audit result characterizes that the inspection data conforms to the scrap steel pictures, send the inspection data to the inspection and analysis server.

[0032] The method for processing scrap steel inspection data according to the embodiments of the present application is applied to a mobile terminal. The mobile terminal includes an application object and can obtain the inspection data, scrap steel pictures, and inspection results of the target batch of scrap steel. The inspection results are used to indicate whether the quality of the target batch of scrap steel is inspected normally. When the inspection results indicate that the quality of the target batch of scrap steel is inspected normally, the inspection data and scrap steel pictures are displayed on the display interface of the application object. The audit result input by the audit user for auditing the inspection data based on the scrap steel pictures is received. The audit result is used to indicate whether the inspection data conforms to the scrap steel pictures. When the audit result indicates that the inspection data conforms to the scrap steel pictures, the inspection data is sent to the inspection and analysis server. In this way, in the embodiments of the present application, the inspection data, scrap steel pictures, and inspection results of the scrap steel can be input through the application object in the mobile terminal, and the scrap steel pictures can be displayed on the display interface of the application object to effectively audit the inspection data, thereby reducing the occurrence of errors in the inspection data and improving the accuracy of the scrap steel inspection data.

[0033] In S101, the above-mentioned mobile terminal may refer to a computing device that can be used while moving, usually having a wireless communication function, which is convenient to carry and operate. Common mobile terminals include: smart phones, tablet computers, etc. The above-mentioned mobile terminal may include an application object, that is, a core instance or entity object when the application (Application) is running.

[0034] The above-mentioned target batch of scrap steel is the scrap steel to be inspected, where the scrap steel includes bulk scrap steel and briquetted scrap steel.

[0035] The above-mentioned inspection data, exemplarily, may be inspection-related data such as the material type grade and slag and weight deduction of bulk scrap steel, or inspection-related data such as the color and quantity of briquetted scrap steel.

[0036] The above-mentioned scrap steel pictures, exemplarily, may be photos of the cross-section of bulk scrap steel, or photos after the unpacking treatment of briquetted scrap steel.

[0037] The above-mentioned inspection results can be used to indicate whether the quality of the target batch of scrap steel is inspected normally.

[0038] The above-mentioned inspection data, scrap steel pictures, and inspection results of the target batch of scrap steel. Exemplarily, when the material category of the target batch of scrap steel is the bulk material category, the scrap steel pictures of the target batch of scrap steel are obtained; the inspection data and inspection results of the target batch of scrap steel input by the inspection user are received. Or, when the material category of the target batch of scrap steel is the briquette category, the transportation category of the target batch of scrap steel is obtained, and the transportation category includes the automobile category and the train category; when the transportation category of the target batch of scrap steel is the train category, the inspection data of the sample briquette and the first inspection sub-result of the target batch of scrap steel are received. The sample briquette is a briquette randomly grabbed from the target batch of scrap steel. The inspection data includes the sample number, and the sample number is associated with the target batch of scrap steel; the sample number corresponding to the target batch of scrap steel is displayed on the display interface of the application object; the scrap steel picture of the sample briquette corresponding to the sample number is obtained. The scrap steel picture is the picture after the briquette unpacking inspector unpacks the sample briquette; the inspection data, the first inspection sub-result, and the scrap steel picture are displayed on the display interface of the application object; the inspection result of the target batch of scrap steel input by the briquette unpacking inspector is received.

[0039] In S102, when the above-mentioned inspection result indicates that the quality inspection of the target batch of scrap steel is normal, it means that the inspection data can be entered into the company's inspection system. However, in order to reduce the occurrence of errors in the inspection data, it is necessary to display the inspection data and the scrap steel pictures on the display interface of the application object so that the review user can review the inspection data based on the scrap steel pictures.

[0040] In S103, the above-mentioned review result can be used to indicate whether the inspection data conforms to the scrap steel pictures.

[0041] The above-mentioned review result input by the receiving and reviewing user for reviewing the inspection data based on the scrap steel picture. Exemplarily, the inspection user can become the reviewing user again, review the inspection data based on the scrap steel picture in the display interface, and then receive the review result input by the inspection user. Alternatively, it can also be to receive the first review sub-result input by the first reviewing user for reviewing the inspection data based on the scrap steel picture, where the first review sub-result is used to characterize whether the inspection data conforms to the scrap steel picture; in the case where the first review sub-result characterizes that the inspection data conforms to the scrap steel picture, receive the second review sub-result input by the second reviewing user for reviewing the inspection data based on the scrap steel picture, where the second review sub-result is used to characterize whether the inspection data conforms to the scrap steel picture, and the second reviewing user is the superior approval user of the first reviewing user; in the case where the second review sub-result characterizes that the inspection data conforms to the scrap steel picture, receive the third review sub-result input by the third reviewing user for reviewing the inspection data based on the scrap steel picture, where the third review sub-result is used to characterize whether the inspection data conforms to the scrap steel picture, and the third reviewing user is the superior approval user of the second reviewing user, and the review result includes the first review sub-result, the second review sub-result, and the third review sub-result.

[0042] In S104, the above-mentioned inspection and analysis server can be used to perform quality inspection and component analysis on the scrap steel.

[0043] The situation where the above-mentioned review result characterizes that the inspection data conforms to the scrap steel picture means that the inspection data is accurate. At this time, the mobile terminal can send the inspection data to the inspection and analysis server for subsequent processing of the scrap steel.

[0044] As an implementation manner of the present application, in order to further improve the accuracy of the inspection data, the above method may further include:

[0045] In the case where the inspection result characterizes that the quality inspection of the target batch of scrap steel is abnormal, or the review result characterizes that the inspection data does not conform to the scrap steel picture, obtain the first negotiation result of the target batch of scrap steel, where the first negotiation result is used to characterize whether the quality of the target batch of scrap steel is normal or abnormal in the first negotiation;

[0046] In the case where the first negotiation result characterizes that the quality of the target batch of scrap steel is normal in the first negotiation, send the inspection data to the inspection and analysis server.

[0047] The above-mentioned first negotiation result can be used to characterize whether the quality of the target batch of scrap steel is normal or abnormal in the first negotiation.

[0048] The first negotiation result for obtaining the scrap steel of the target batch, exemplarily, can be that the station managers organize the relevant department handlers to conduct on-site inspection and verification of the abnormal batch of scrap steel, jointly negotiate to form a negotiation record, and the station managers take pictures of the negotiation record and input the negotiation result into the application object on the spot.

[0049] In the embodiments of the present application, when the inspection result indicates that the quality inspection of the scrap steel of the target batch is abnormal, or the review result indicates that the inspection data does not match the scrap steel pictures, it is necessary to obtain the first negotiation result of the scrap steel of the target batch. Only when the first negotiation result indicates that the quality of the scrap steel of the target batch is normal in the first negotiation, the inspection data will be sent to the inspection and testing server, further improving the accuracy of the inspection data.

[0050] As another implementation manner of the present application, in order to further improve the accuracy of the inspection data, after obtaining the first negotiation result of the scrap steel of the target batch, the method may further include:

[0051] When the first negotiation result indicates that the quality of the scrap steel of the target batch is abnormal in the first negotiation, obtain the second negotiation result of the scrap steel of the target batch, and the second negotiation result is used to indicate that the quality of the scrap steel of the target batch is normal or abnormal in the second negotiation;

[0052] When the second negotiation result indicates that the quality of the scrap steel of the target batch is normal in the second negotiation, send the inspection data to the inspection and testing server.

[0053] The above second negotiation result can be used to indicate that the quality of the scrap steel of the target batch is normal or abnormal in the second negotiation.

[0054] The above obtaining the second negotiation result of the scrap steel of the target batch, exemplarily, can be that the station managers organize the relevant department handlers different from the first negotiation to conduct on-site inspection and verification of the abnormal batch of scrap steel again, jointly negotiate to form a negotiation record, and the station managers take pictures of the negotiation record and input the negotiation result into the application object on the spot.

[0055] In some embodiments, for the case where the second negotiation result indicates that the quality of the scrap steel of the target batch is abnormal in the second negotiation, conduct abnormal negotiation processing again.

[0056] In the embodiments of the present application, when the first negotiation result indicates that the quality of the scrap steel of the target batch is abnormal in the first negotiation, it is also necessary to obtain the second negotiation result of the scrap steel of the target batch, and only when the second negotiation result indicates that the quality of the scrap steel of the target batch is normal in the second negotiation, the inspection data will be sent to the inspection and testing server, further improving the accuracy of the inspection data.

[0057] As another implementation manner of the present application, in order to meet the inspection data processing of scrap steel of the bulk material category, before the above S101, the above method may further include:

[0058] Obtain the material category of the target batch of scrap steel, where the material category includes the bulk material category and the briquette category;

[0059] The above S101 may specifically include:

[0060] When the material category of the target batch of scrap steel is the bulk material category, obtain the scrap steel picture of the target batch of scrap steel;

[0061] Receive the inspection data and inspection results of the target batch of scrap steel input by the inspection user.

[0062] The above material category may include the bulk material category and the briquette category. Among them, the bulk material category can be used to represent that the scrap steel is bulk scrap steel, and the briquette category can be used to represent that the scrap steel is briquetted scrap steel.

[0063] The above situation where the material category of the target batch of scrap steel is the bulk material category means that the inspection user can directly unload and inspect the received target batch of scrap steel (such as a truckload of scrap steel) on-site, and use the camera module of the mobile terminal to take pictures of the cross-section of the scrap steel of the target batch and upload it to the application object, so that the application object can obtain the scrap steel picture of the target batch of scrap steel.

[0064] The above receiving the inspection data and inspection results of the target batch of scrap steel input by the inspection user, exemplarily, may be that the application object receives the inspection data and inspection results of the target batch of scrap steel input by the inspection user through the operation interface of the mobile terminal.

[0065] In the embodiment of the present application, first obtain the material category of the target batch of scrap steel, and when the material category of the target batch of scrap steel is the bulk material category, obtain the scrap steel picture of the target batch of scrap steel, and then receive the inspection data and inspection results of the target batch of scrap steel input by the inspection user, so as to meet the inspection data processing of scrap steel of the bulk material category.

[0066] As yet another implementation manner of the present application, in order to improve the accuracy of the inspection results of the target batch of scrap steel of the train category, the above S101 may further include:

[0067] When the material category of the target batch of scrap steel is the briquette category, obtain the transportation category of the target batch of scrap steel, where the transportation category includes the car category and the train category;

[0068] In the case where the transportation category of the target batch of scrap steel is the train category, receive the inspection data of the sample briquette input by the inspection user and the first inspection sub-result of the target batch of scrap steel. The sample briquette is a briquette randomly grabbed from the target batch of scrap steel, and the inspection data includes the sample number, which is associated with the target batch of scrap steel;

[0069] Display the sample number corresponding to the target batch of scrap steel in the display interface of the application object;

[0070] Obtain the scrap steel picture of the sample briquette corresponding to the sample number. The scrap steel picture is the picture after the briquette unpacking inspector unpacks the sample briquette;

[0071] Display the inspection data, the first inspection sub-result, and the scrap steel picture in the display interface of the application object;

[0072] Receive the inspection result of the target batch of scrap steel input by the briquette unpacking inspector.

[0073] The above transportation category may include the automobile category and the train category. Among them, the automobile category is used to indicate that the target batch of scrap steel is transported by automobile, and the train category is used to indicate that the target batch of scrap steel is transported by train.

[0074] The above sample briquette is a briquette randomly grabbed from the target batch of scrap steel, where the random position is the sample position drawn by the lottery scheme.

[0075] The inspection data of the above sample briquette may include the sample number, which is associated with the target batch of scrap steel, facilitating the briquette unpacking inspector to find the corresponding sample briquette according to the sample number. In the embodiments of the present application, the inspection data of the sample briquette may also include color, quantity, sampling position, etc.

[0076] The above scrap steel picture may be the picture after the briquette unpacking inspector unpacks the sample briquette.

[0077] The above obtaining the scrap steel picture of the sample briquette corresponding to the sample number. Exemplarily, the briquette unpacking inspector may take a picture of the scrap steel of the sample briquette corresponding to the sample number through the camera module of the mobile terminal and upload it to the application object, so that the application object obtains the scrap steel picture of the sample briquette corresponding to the sample number.

[0078] The above receiving the inspection result of the target batch of scrap steel input by the briquette unpacking inspector. Exemplarily, it may be that the briquette unpacking inspector compares the inspection data, the first inspection sub-result, and the scrap steel picture, and then inputs the inspection result of the target batch of scrap steel to the application object through the operation interface of the mobile terminal.

[0079] In the embodiments of the present application, by identifying the transportation category of the scrap steel of the target batch, due to the particularity of the train category, after the train scrap steel briquettes are unloaded, the sampled briquettes need to be transported to the unpacking point for unpacking inspection. In order to avoid the situation where the inspection data of the sampled briquettes is incorrect compared with the inspection data of the scrap steel of the target batch, the inspection user first inputs the inspection data of the sampled briquettes and the first inspection sub-result of the scrap steel of the target batch into the application object. Only the sample number corresponding to the scrap steel of the target batch is displayed on the display interface of the application object for the briquette unpacking inspector. When the briquette unpacking inspector finds the corresponding sampled briquette according to the sample number and inputs the scrap steel picture to the application object, the briquette unpacking inspector only needs to compare the inspection data, the first inspection sub-result, and the scrap steel picture displayed on the display interface of the application object, reducing the possibility that the inspection data of the sampled briquettes is incorrect compared with the inspection data of the scrap steel of the target batch, and improving the accuracy of the inspection results of the scrap steel of the target batch in the train category.

[0080] In some embodiments, the above S101 may further include:

[0081] When the transportation category of the scrap steel of the target batch is the automobile category, obtain the scrap steel picture after the inspection user unpacks the scrap steel of the target batch;

[0082] Receive the inspection data and inspection results of the scrap steel of the target batch input by the inspection user.

[0083] In the embodiments of the present application, since the briquetted scrap steel in the automobile category is inspected on-site without the situation of transporting the briquettes for inspection, that is, there is no possibility that the inspection data of the sampled briquettes is incorrect compared with the inspection data of the scrap steel of the target batch. Therefore, when the transportation category of the scrap steel of the target batch is the automobile category, the scrap steel picture after the inspection user unpacks the scrap steel of the target batch can be directly obtained, and the inspection data and inspection results of the scrap steel of the target batch input by the inspection user can be received, which can meet the inspection data processing requirements of the briquetted scrap steel in the automobile category.

[0084] In some embodiments, the above review user may include a first review user, a second review user, and a third review user. The above S103 may specifically include:

[0085] Receive the first review sub-result input by the first review user for reviewing the inspection data according to the scrap steel picture. The first review sub-result is used to represent whether the inspection data conforms to the scrap steel picture;

[0086] When the first review sub-result represents that the inspection data conforms to the scrap steel picture, receive the second review sub-result input by the second review user for reviewing the inspection data according to the scrap steel picture. The second review sub-result is used to represent whether the inspection data conforms to the scrap steel picture. The second review user is the superior approval user of the first review user;

[0087] When the second review sub-result characterization test data matches the scrap steel picture, receive the third review sub-result input by the third review user for reviewing the test data based on the scrap steel picture. The third review sub-result is used to characterize whether the test data matches the scrap steel picture. The third review user is the superior approval user of the second review user.

[0088] The review result includes the first review sub-result, the second review sub-result, and the third review sub-result.

[0089] The above-mentioned first review user, second review user, and third review user can be, for example, the input inspection operator (i.e., the inspection user), the station management personnel, and the department management personnel. The second review user is the superior approval user of the first review user, and the third review user is the superior approval user of the second review user.

[0090] In the embodiments of the present application, the first review user, the second review user, and the third review user respectively conduct three reviews on the test data based on the scrap steel picture to obtain the first review sub-result, the second review sub-result, and the third review sub-result, further improving the accuracy of the test data.

[0091] To facilitate the understanding of the method for processing scrap steel test data in the embodiments of the present application, the actual application process of this method for processing scrap steel test data is described as follows:

[0092] This application mainly designs and develops an APP system (equivalent to the above-mentioned application object). The inspection process is as follows: The scrap steel inspector (equivalent to the above-mentioned inspection user) uses the APP to take pictures of the situation of each batch of scrap steel materials at the scrap steel unloading site and enter the inspection results, and then uploads them to the APP; the inspection data and physical pictures can be reviewed online immediately, and once the three-level personnel review is passed, they are uploaded to the company's inspection and analysis system (equivalent to the above-mentioned inspection and analysis server); for batches with abnormal quality or data, the management personnel organize a joint discussion, take pictures of the business records and upload them to the APP, and modify the inspection results according to the business records; realize the one-to-one correspondence between the data results and the physical pictures, and the onlineization of the whole process data, effectively improving the timeliness and accuracy of the data. As Figure 2 shown, the specific method is as follows:

[0093] 1. Develop a new APP according to the design scheme, and the APP is linked to the company's inspection and analysis system.

[0094] 2. During the quality inspection of a carload of scrap steel (equivalent to the above-mentioned target batch of scrap steel) by the inspection personnel at the unloading site, use the built-in camera function of the APP to take pictures of the cross-section of the scrap steel (equivalent to the above-mentioned scrap steel picture). After taking the pictures, immediately enter the inspection data such as the material type grade and slag and weight deduction, form a preliminary judgment result (equivalent to the above-mentioned inspection result), and upload it to the APP system.

[0095] 3. If the quality is determined to be normal on-site, the preliminary judgment result shall be subject to the third-level review (including the input inspector, station management personnel, and department management personnel, equivalent to the above-mentioned review users including the first review user, the second review user, and the third review user) within 6 hours. The above-mentioned personnel can query and review on the APP and computer terminal whether the input inspection data and physical photos are accurate; if data anomalies are found during the review, the anomaly handling process shall be entered; if all three-level reviews are passed normally, the inspection data shall be directly uploaded to the company's inspection and analysis system.

[0096] 4. If the quality is determined to be abnormal on-site, the abnormal batches shall enter the anomaly handling module.

[0097] 5. Anomaly handling process: The station management personnel shall organize relevant department handlers to conduct on-site inspection and verification of the abnormal batches, and jointly discuss and form a business record; the station management personnel shall take a photo of the business record and enter the business result (equivalent to the above-mentioned first negotiation result) on the anomaly handling module on the spot, replacing the preliminary judgment result; after the relevant department handlers review and pass normally on the spot, the inspection result shall be directly uploaded to the company's inspection and analysis system; if the review is abnormal, the anomaly handling process shall be entered again.

[0098] 6. Specifically, for the fire-transported scrap steel briquettes (equivalent to the target batch of scrap steel with the above-mentioned material category being the briquette category and the transportation category being the train category), an additional transfer and unpacking inspection process shall be added:

[0099] 6.1 Before unloading the vehicle, according to the lottery scheme, the sample positions shall be drawn.

[0100] 6.2 During unloading, direct the steel grabber to grab the corresponding briquettes in the carriage and place them aside as samples (equivalent to the above-mentioned sample briquettes).

[0101] 6.3 After unloading the vehicle, the inspection personnel shall paint numbers and take photos of the physical briquettes of each batch, and enter the inspection data (such as numbers, colors, quantities, sampling locations, etc.) and the unloading judgment results of the corresponding samples on the input interface.

[0102] 6.4 Then the samples need to be centrally transferred to the unpacking inspection point. The unpacking inspection personnel shall find the sample briquettes of the corresponding inspection batch according to the information such as the sample numbers to be inspected on the APP unpacking inspection interface.

[0103] 6.5 Under the corresponding inspection batch, take photos of the unpacking situation of the sample briquettes and upload them.

[0104] 6.6 The unpacking inspection personnel shall generate a preliminary judgment result according to the batch unloading judgment result, sample information, and current unpacking situation displayed on the APP interface.

[0105] 6.7 Subsequently, follow the above-mentioned processes 3 - 5.

[0106] 7. Specifically, after the entire process data is digitalized, managers can conveniently conduct big data analysis on the computer side. Currently, statistical analysis reports on the quality of scrap steel supplied by each supplier and statistical analysis reports on the professional levels of all inspectors have been developed.

[0107] Through the design of on-site input of inspection results and APP review function, the application shortens the time for uploading normal results to the company system from more than 36 hours to 6 hours, significantly improving timeliness. Through the design of a three-level (input inspector, station manager, department manager) review function, the accuracy of inspection results has been significantly improved. The application adds an online processing process for batches with quality or data anomalies, realizing the digitalization and transparency of the processing of abnormal batches. The application adds a sampling and unpacking inspection process for scrap steel briquettes transported by rail, realizing the accurate online correspondence of sampling information and unpacking information. After the entire process data is digitalized, managers can conveniently conduct big data analysis on the computer side.

[0108] Based on the method for processing scrap steel inspection data provided in the above embodiments, correspondingly, the application also provides a specific implementation manner of a device for processing scrap steel inspection data. Please refer to the following embodiments.

[0109] As Figure 3 shown, the device 300 for processing scrap steel inspection data provided in the embodiment of the application is applied to a mobile terminal. The mobile terminal includes an application object and may include the following modules: a first acquisition module 301, a display module 302, a receiving module 303, and a first sending module 304.

[0110] The first acquisition module 301 is configured to acquire inspection data, scrap steel pictures, and inspection results of a target batch of scrap steel. The inspection results are used to characterize whether the quality of the target batch of scrap steel is inspected normally;

[0111] The display module 302 is configured to display the inspection data and the scrap steel pictures on the display interface of the application object when the inspection results characterize that the quality inspection of the target batch of scrap steel is normal;

[0112] The receiving module 303 is configured to receive the review results input by the review user for reviewing the inspection data according to the scrap steel pictures. The review results are used to characterize whether the inspection data conforms to the scrap steel pictures;

[0113] The first sending module 304 is configured to send the inspection data to the inspection and analysis server when the review results characterize that the inspection data conforms to the scrap steel pictures.

[0114] The processing device for scrap steel inspection data according to the embodiments of the present application is applied to a mobile terminal. The mobile terminal includes an application object and is capable of acquiring the inspection data, scrap steel pictures, and inspection results of a target batch of scrap steel. The inspection results are used to indicate whether the quality of the target batch of scrap steel is inspected normally. When the inspection results indicate that the quality of the target batch of scrap steel is inspected normally, the inspection data and the scrap steel pictures are displayed on the display interface of the application object. The audit result input by the audit user for auditing the inspection data based on the scrap steel pictures is received. The audit result is used to indicate whether the inspection data conforms to the scrap steel pictures. When the audit result indicates that the inspection data conforms to the scrap steel pictures, the inspection data is sent to the inspection and analysis server. In this way, in the embodiments of the present application, the inspection data, scrap steel pictures, and inspection results of the scrap steel can be input through the application object in the mobile terminal, and the scrap steel pictures are displayed on the display interface of the application object, so as to effectively audit the inspection data, thereby reducing the occurrence of errors in the inspection data, and further improving the accuracy of the scrap steel inspection data.

[0115] As another implementation manner of the present application, in order to further improve the accuracy of the inspection data, the above device 300 may further include:

[0116] When the inspection results indicate that the quality inspection of the target batch of scrap steel is abnormal, or the audit results indicate that the inspection data does not conform to the scrap steel pictures, the first negotiation result of the target batch of scrap steel is obtained. The first negotiation result is used to indicate whether the quality of the target batch of scrap steel is negotiated as normal or abnormal for the first time;

[0117] When the first negotiation result indicates that the quality of the target batch of scrap steel is negotiated as normal for the first time, the inspection data is sent to the inspection and analysis server.

[0118] As yet another implementation manner of the present application, in order to meet the processing of the inspection data of the scrap steel of the bulk material category, the above device 300 may further include:

[0119] A second acquisition module, configured to obtain a second negotiation result of the target batch of scrap steel when the first negotiation result indicates that the quality of the target batch of scrap steel is negotiated as abnormal for the first time. The second negotiation result is used to indicate whether the quality of the target batch of scrap steel is negotiated as normal or abnormal for the second time;

[0120] A second sending module, configured to send the inspection data to the inspection and analysis server when the second negotiation result indicates that the quality of the target batch of scrap steel is negotiated as normal for the second time.

[0121] As yet another implementation manner of the present application, in order to meet the processing of the inspection data of the scrap steel of the bulk material category, the above device 300 may further include:

[0122] An acquisition module, configured to acquire the material category of the target batch of scrap steel, where the material category includes the bulk material category and the briquette category;

[0123] The above first acquisition module 301 may specifically include:

[0124] A first acquisition unit, configured to acquire a scrap steel picture of the target batch of scrap steel when the material category of the target batch of scrap steel is a bulk material category;

[0125] A first receiving unit, configured to receive the inspection data and inspection results of the target batch of scrap steel input by the inspection user.

[0126] As another implementation manner of the present application, in order to improve the accuracy of the inspection result of the target batch of scrap steel of the train category, the above first acquisition module 301 may further include:

[0127] A second acquisition unit, configured to acquire the transportation category of the target batch of scrap steel when the material category of the target batch of scrap steel is a briquette category, and the transportation category includes an automobile category and a train category;

[0128] A second receiving unit, configured to receive the inspection data of the sample briquette and the first inspection sub-result of the target batch of scrap steel input by the inspection user when the transportation category of the target batch of scrap steel is the train category, where the sample briquette is a briquette grabbed at a random position in the target batch of scrap steel, and the inspection data includes a sample number, and the sample number is associated with the target batch of scrap steel;

[0129] A first display unit, configured to display the sample number corresponding to the target batch of scrap steel in the display interface of the application object;

[0130] A third acquisition unit, configured to acquire a scrap steel picture of the sample briquette corresponding to the sample number, where the scrap steel picture is a picture after the briquette unpacking inspector unpacks the sample briquette;

[0131] A second display unit, configured to display the inspection data, the first inspection sub-result, and the scrap steel picture in the display interface of the application object;

[0132] A third receiving unit, configured to receive the inspection result of the target batch of scrap steel input by the briquette unpacking inspector.

[0133] In some embodiments, the above first acquisition module 301 may further include:

[0134] A fourth acquisition unit, configured to acquire a scrap steel picture after the inspection user unpacks the target batch of scrap steel when the transportation category of the target batch of scrap steel is the automobile category;

[0135] A fourth receiving unit, configured to receive the inspection data and inspection results of the target batch of scrap steel input by the inspection user.

[0136] In some embodiments, the above-mentioned auditing users may include a first auditing user, a second auditing user, and a third auditing user. The above-mentioned receiving module 303 may specifically include:

[0137] A fifth receiving unit, configured to receive a first auditing sub-result input by the first auditing user for auditing the inspection data based on the scrap steel picture, where the first auditing sub-result is used to represent whether the inspection data conforms to the scrap steel picture;

[0138] A sixth receiving unit, configured to, when the first auditing sub-result represents that the inspection data conforms to the scrap steel picture, receive a second auditing sub-result input by the second auditing user for auditing the inspection data based on the scrap steel picture, where the second auditing sub-result is used to represent whether the inspection data conforms to the scrap steel picture, and the second auditing user is the superior approval user of the first auditing user;

[0139] A seventh receiving unit, configured to, when the second auditing sub-result represents that the inspection data conforms to the scrap steel picture, receive a third auditing sub-result input by the third auditing user for auditing the inspection data based on the scrap steel picture, where the third auditing sub-result is used to represent whether the inspection data conforms to the scrap steel picture, and the third auditing user is the superior approval user of the second auditing user.

[0140] The auditing result includes the first auditing sub-result, the second auditing sub-result, and the third auditing sub-result.

[0141] Figure 4 The figure shows a schematic hardware structure diagram of an electronic device provided by an embodiment of the present application.

[0142] The electronic device may include a processor 401 and a memory 402 storing computer program instructions.

[0143] Specifically, the above-mentioned processor 401 may include a central processing unit (CPU), or an application specific integrated circuit (ASIC), or one or more integrated circuits configured to implement the embodiments of the present application.

[0144] The memory 402 may include a mass storage for data or instructions. By way of example and not limitation, the memory 402 may include a hard disk drive (HDD), a floppy disk drive, a flash memory, an optical disk, a magneto-optical disk, a magnetic tape, or a universal serial bus (USB) drive, or a combination of two or more of these. Where appropriate, the memory 402 may include removable or non-removable (or fixed) media. Where appropriate, the memory 402 may be internal or external to the integrated gateway disaster recovery device. In a particular embodiment, the memory 402 is a non-volatile solid-state memory.

[0145] In a particular embodiment, the memory 402 may include a read-only memory (ROM), a random access memory (RAM), a magnetic disk storage media device, an optical storage media device, a flash memory device, an electrical, optical, or other physical / tangible memory storage device. Thus, in general, the memory includes one or more tangible (non-transitory) computer-readable storage media (e.g., memory devices) encoded with software including computer-executable instructions, and when the software is executed (e.g., by one or more processors), it is operable to perform the operations described with reference to the method according to one aspect of the present disclosure.

[0146] The processor 401 reads and executes the computer program instructions stored in the memory 402 to implement the processing method of scrap steel inspection data in any of the above embodiments.

[0147] In one example, the electronic device may further include a communication interface 403 and a bus 410. Among them, as Figure 4 shown, the processor 401, the memory 402, and the communication interface 403 are connected through the bus 410 and complete communication with each other.

[0148] The communication interface 403 is mainly used to implement communication between the modules, devices, units, and / or devices in the embodiments of the present application.

[0149] Bus 410 includes hardware, software, or both, and couples components of the electronic device together. By way of example and not limitation, the bus may include an Accelerated Graphics Port (AGP) or other graphics bus, an Enhanced Industry Standard Architecture (EISA) bus, a Front Side Bus (FSB), a HyperTransport (HT) interconnect, an Industry Standard Architecture (ISA) bus, an InfiniBand interconnect, a Low Pin Count (LPC) bus, a memory bus, a MicroChannel Architecture (MCA) bus, a Peripheral Component Interconnect (PCI) bus, a PCI-Express (PCI-X) bus, a Serial Advanced Technology Attachment (SATA) bus, a Video Electronics Standards Association Local (VLB) bus, or other suitable bus or a combination of two or more of these. Where appropriate, bus 410 may include one or more buses. Although embodiments of the present application describe and illustrate specific buses, the present application contemplates any suitable bus or interconnect.

[0150] The electronic device can execute the scrap inspection data processing method in the embodiments of the present application, so as to implement the combination of Figure 1 and Figure 2 the scrap inspection data processing method and device described.

[0151] In addition, in combination with the scrap inspection data processing method in the above embodiments, an embodiment of the present application can provide a computer-readable storage medium to implement. Computer program instructions are stored on the computer-readable storage medium; when the computer program instructions are executed by a processor, any one of the scrap inspection data processing methods in the above embodiments is implemented.

[0152] In combination with the scrap inspection data processing method in the above embodiments, an embodiment of the present application can provide a computer program product. When the instructions in the computer program product are executed by a processor of the electronic device, the electronic device executes the scrap inspection data processing method as described above in any item.

[0153] It should be clear that the present application is not limited to the specific configurations and processes described above and illustrated in the figures. For the sake of brevity, detailed descriptions of known methods are omitted here. In the above embodiments, several specific steps are described and illustrated as examples. However, the method process of the present application is not limited to the specific steps described and illustrated. Those skilled in the art can make various changes, modifications, and additions, or change the order between steps after understanding the spirit of the present application.

[0154] The functional blocks shown in the above-described structural block diagrams can be implemented as hardware, software, firmware, or a combination thereof. When implemented in hardware, it can be, for example, an electronic circuit, an application-specific integrated circuit (ASIC), appropriate firmware, a plug-in, a functional card, and so on. When implemented in software, the elements of the present application are programs or code segments used to perform the required tasks. The program or code segment can be stored in a machine-readable medium or transmitted via a data signal carried in a carrier wave over a transmission medium or a communication link. A "machine-readable medium" can include any medium capable of storing or transmitting information. Examples of machine-readable media include electronic circuits, semiconductor memory devices, ROM, flash memory, erasable ROM (EROM), floppy disks, CD-ROMs, optical discs, hard disks, fiber optic media, radio frequency (RF) links, and so on. The code segment can be downloaded via a computer network such as the Internet, an intranet, and so on.

[0155] It should also be noted that the exemplary embodiments mentioned in the present application describe some methods or systems based on a series of steps or devices. However, the present application is not limited to the order of the above steps, that is, the steps can be executed in the order mentioned in the embodiments, or different from the order in the embodiments, or several steps can be executed simultaneously.

[0156] Aspects of the present disclosure have been described above with reference to the flowcharts and / or block diagrams of methods, apparatuses (systems), and computer program products according to embodiments of the present disclosure. It should be understood that each block in the flowcharts and / or block diagrams, and the combinations of blocks in the flowcharts and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, or other programmable data processing device to produce a machine such that the instructions executed by the processor of the computer or other programmable data processing device enable the implementation of the functions / actions specified in one or more blocks of the flowcharts and / or block diagrams. Such a processor can be, but is not limited to, a general-purpose processor, a special-purpose processor, a special application processor, or a field-programmable logic circuit. It is also understood that each block in the block diagrams and / or flowcharts, and the combinations of blocks in the block diagrams and / or flowcharts, can also be implemented by dedicated hardware that performs the specified functions or actions, or can be implemented by a combination of dedicated hardware and computer instructions.

[0157] The above are only specific embodiments of the present application. Those skilled in the art can clearly understand that for the convenience and brevity of description, the specific working processes of the systems, modules, and units described above can refer to the corresponding processes in the foregoing method embodiments, and will not be elaborated herein. It should be understood that the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of various equivalent modifications or substitutions, and these modifications or substitutions should all be covered within the protection scope of the present application.

Claims

1. A method for processing scrap steel inspection data, characterized in that: Applied to a mobile terminal, the mobile terminal includes an application object, and the method includes: Obtaining inspection data, scrap steel images and inspection results of a target batch of scrap steel, wherein the inspection results are used to indicate whether the quality of the target batch of scrap steel is normal; When the inspection result indicates that the quality inspection of the target batch of scrap steel is normal, displaying the inspection data and the scrap steel picture in the display interface of the application object; receiving a review result input by a review user after reviewing the inspection data according to the scrap steel picture, wherein the review result is used to indicate whether the inspection data is consistent with the scrap steel picture; When the audit result indicates that the inspection data is consistent with the scrap steel image, the inspection data is sent to the inspection and testing server.

2. The method according to claim 1, characterized in that The method further comprises: When the inspection result indicates that the quality inspection of the target batch of scrap steel is abnormal, or the audit result indicates that the inspection data is inconsistent with the scrap steel picture, a first negotiation result of the target batch of scrap steel is obtained, and the first negotiation result is used to indicate whether the first negotiation of the quality of the target batch of scrap steel is normal or abnormal; When the first negotiation result indicates that the quality of the target batch of scrap steel is normal after the first negotiation, the inspection data is sent to the inspection and testing server.

3. The method according to claim 2, characterized in that After obtaining the first negotiation result of the target batch of scrap steel, the method further includes: When the first negotiation result indicates that the quality of the target batch of scrap steel is abnormal after the first negotiation, obtaining a second negotiation result of the target batch of scrap steel, wherein the second negotiation result is used to indicate whether the quality of the target batch of scrap steel is normal or abnormal after the second negotiation; When the second negotiation result indicates that the quality of the target batch of scrap steel is normal for the second negotiation, the inspection data is sent to the inspection and testing server.

4. The method according to claim 1, characterized in that Before obtaining the inspection data, scrap steel images and inspection results of the target batch of scrap steel, the method further includes: Obtaining the material category of the target batch of scrap steel, wherein the material category includes bulk material category and briquette category; The obtaining of the inspection data, scrap steel images and inspection results of the target batch of scrap steel includes: When the material category of the target batch of scrap steel is the bulk material category, obtaining a scrap steel image of the target batch of scrap steel; Receive the inspection data and inspection results of the target batch of scrap steel input by the inspection user.

5. The method according to claim 4, characterized in that The obtaining of inspection data, scrap steel images and inspection results of the target batch of scrap steel also includes: When the material category of the target batch of scrap steel is the briquette category, obtaining the transportation category of the target batch of scrap steel, the transportation category including the automobile category and the train category; In the case where the transport category of the target batch of scrap steel is the train category, receiving inspection data of a sample compact input by the inspection user and a first inspection sub-result of the target batch of scrap steel, wherein the sample compact is a compact grabbed at a random position in the target batch of scrap steel, and the inspection data includes a sample number, and the sample number is associated with the target batch of scrap steel; Displaying the sample number corresponding to the target batch of scrap steel in the display interface of the application object; Obtaining a scrap steel picture of the sample briquette corresponding to the sample number, wherein the scrap steel picture is a picture of the sample briquette after being unpacked by a briquette unpacking inspector; Displaying the inspection data, the first inspection sub-result, and the scrap steel picture in a display interface of the application object; Receive the inspection result of the target batch of scrap steel input by the briquette unpacking inspector.

6. The method according to claim 1, characterized in that The review users include a first review user, a second review user and a third review user, and the review result input by the review user after reviewing the inspection data according to the scrap steel picture includes: receiving a first review sub-result input by the first review user after reviewing the inspection data according to the scrap steel picture, wherein the first review sub-result is used to indicate whether the inspection data is consistent with the scrap steel picture; In the case where the first review sub-result indicates that the inspection data is consistent with the scrap steel picture, receiving a second review sub-result input by the second review user who reviews the inspection data according to the scrap steel picture, the second review sub-result being used to indicate whether the inspection data is consistent with the scrap steel picture, and the second review user being a superior approval user of the first review user; In the case where the second review sub-result indicates that the inspection data is consistent with the scrap steel picture, a third review sub-result input by the third review user who reviews the inspection data according to the scrap steel picture is received, the third review sub-result is used to indicate whether the inspection data is consistent with the scrap steel picture, and the third review user is a superior approval user of the second review user, The audit result includes the first audit sub-result, the second audit sub-result and the third audit sub-result.

7. A device for processing scrap steel inspection data, characterized in that: Applied to a mobile terminal, the mobile terminal includes an application object, and the device includes: A first acquisition module is used to acquire inspection data, scrap steel images and inspection results of a target batch of scrap steel, wherein the inspection results are used to indicate whether the quality of the target batch of scrap steel is inspected normally; A display module, configured to display the inspection data and the scrap steel picture in a display interface of the application object when the inspection result indicates that the quality inspection of the target batch of scrap steel is normal; A receiving module, used for receiving an audit result input by an audit user after auditing the inspection data according to the scrap steel picture, wherein the audit result is used to indicate whether the inspection data is consistent with the scrap steel picture; The first sending module is used to send the inspection data to the inspection server when the audit result indicates that the inspection data is consistent with the scrap steel picture.

8. An electronic device, characterized in that: The device comprises: a processor and a memory storing computer program instructions; when the processor executes the computer program instructions, the method for processing scrap steel inspection data as described in any one of claims 1-6 is implemented.

9. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores computer program instructions, and when the computer program instructions are executed by a processor, the method for processing scrap steel inspection data according to any one of claims 1 to 6 is implemented.

10. A computer program product, characterized in that When the instructions in the computer program product are executed by a processor of an electronic device, the electronic device executes the method for processing scrap steel inspection data as described in any one of claims 1-6.