Strip steel detection method, device, medium, and electronic equipment

By obtaining the thickness information of the zinc layer and the edge zinc layer of the strip and calculating the difference range in combination with the detection rules, the problems of low efficiency and insufficient accuracy of strip detection in the existing technology are solved, and higher-precision strip detection is achieved.

CN116242293BActive Publication Date: 2025-09-30SHOUGANG JINGTANG IRON & STEEL CO LTD
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Patent Information

Application Number
CN202310079768.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-06
Publication Date
2025-09-30
Estimated Expiration
2043-02-06

AI Technical Summary

Technical Problem

Existing methods for detecting the thickness of the zinc layer on steel strips are inefficient and lack accuracy, and are unable to effectively detect the specifications of the steel strips.

Method used

By obtaining the dimensional information of the steel strip, especially the zinc layer thickness and the edge zinc layer thickness information, combined with the preset detection rules, the difference range is calculated to determine whether the steel strip exceeds the standard, a steel strip detection method and device are provided to improve the detection accuracy.

Benefits of technology

The accuracy of strip steel detection has been improved, and it can more accurately determine whether the strip steel meets the specification requirements, reducing the production of substandard products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of strip steel specification detection, and discloses a strip steel detection method, device, medium, and electronic device. The strip steel detection method includes: obtaining the size information of the strip steel; obtaining the zinc layer thickness information of the strip steel and the edge zinc layer thickness information of the strip steel based on the size information; detecting the strip steel based on the zinc layer thickness information and the edge zinc layer thickness information to obtain a detection result; and judging the strip steel as normal strip steel / exceeding the standard strip steel according to the detection result. By obtaining the zinc layer thickness information of the strip steel and the edge zinc layer thickness information of the strip steel, the specifications of the strip steel can be detected from the edge zinc layer thickness information and the zinc layer thickness information. Based on the edge zinc layer thickness information of the strip steel, the specifications of the strip steel can be detected more accurately and then it can be determined whether the current strip steel is an exceeding standard strip steel. The strip steel detection method provided by the present application can improve the accuracy of strip steel detection.
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Description

Technical Field

[0001] The present application relates to the technical field of strip steel specification detection, and in particular, to a strip steel detection method, device, medium, and electronic equipment. Background Art

[0002] With the advancement of industrial automation, requirements for strip shape have become more stringent. Strip flatness and wave height have become crucial indicators that manufacturers must ensure. Quality control issues such as galvanized edge curl and edge ridges are all related to the thickness of the zinc layer. Therefore, to prevent issues such as edge curl caused by excessive zinc layer thickness, strip regularity testing is necessary. However, existing methods that rely on manual measurement of the overall zinc layer thickness of steel strips are inefficient and lack accuracy. Summary of the Invention

[0003] The present application provides a strip steel detection method, device, medium, and electronic equipment, which can improve the accuracy of strip steel detection results.

[0004] Other features and advantages of the present application will become apparent from the following detailed description, or may be learned in part by practice of the present application.

[0005] According to one aspect of an embodiment of the present application, a strip steel detection method is provided, the method comprising:

[0006] Get the size information of the strip;

[0007] Acquire the zinc layer thickness information of the steel strip and the zinc layer thickness information of the edge of the steel strip based on the size information;

[0008] Detecting the steel strip based on the zinc layer thickness information and the edge zinc layer thickness information to obtain a detection result;

[0009] The steel strip is determined to be normal steel strip or out-of-standard steel strip according to the detection result.

[0010] In one embodiment of the present application, based on the aforementioned solution, the test result includes a first test result and a second test result; the test result obtained by testing the strip based on the zinc layer thickness information and the edge zinc layer thickness information includes:

[0011] If the zinc layer thickness information is within a preset first size range, the strip steel is inspected based on the zinc layer thickness information, the edge zinc layer thickness information, and a preset first inspection rule to obtain a first inspection result;

[0012] If the zinc layer thickness information is within a preset second size range, the strip is inspected based on the zinc layer thickness information, the edge zinc layer thickness information and a preset second detection rule to obtain the second detection result.

[0013] In one embodiment of the present application, based on the aforementioned solution, the strip steel is detected based on the zinc layer thickness information, the edge zinc layer thickness information, and a preset first detection rule to obtain the first detection result, including:

[0014] Acquiring first target thickness information of the steel strip;

[0015] Calculating a first target difference between the edge zinc layer thickness information and the zinc layer thickness information;

[0016] The strip steel is inspected based on the first target difference and the first target thickness information to obtain the first inspection result.

[0017] In one embodiment of the present application, based on the above solution, the step of detecting the steel strip based on the first target difference and the first target thickness information to obtain the first detection result includes:

[0018] If the target thickness information is within a preset first thickness range and the difference is greater than the first preset difference, determining that the first detection result is in an over-standard state;

[0019] If the target thickness information is within a preset second thickness range and the difference is greater than a second preset difference, determining that the first detection result is in an over-standard state;

[0020] If the target thickness information is within a preset third thickness range and the difference is greater than the third preset difference, determining that the first detection result is in an over-standard state;

[0021] If the target thickness information is within a preset fourth thickness range and the difference is greater than a fourth preset difference, determining that the first detection result is in an over-standard state;

[0022] If the target thickness information is within a preset fifth thickness range and the difference is greater than a fifth preset difference, it is determined that the first detection result is in an over-standard state.

[0023] In one embodiment of the present application, based on the aforementioned solution, the strip steel is detected based on the zinc layer thickness information, the edge zinc layer thickness information, and a preset second detection rule to obtain the second detection result, including:

[0024] obtaining second target thickness information of the steel strip;

[0025] Calculating a second target difference between the edge zinc layer thickness information and the zinc layer thickness information;

[0026] The strip steel is inspected based on the second target difference and the second target thickness information to obtain the second inspection result.

[0027] In one embodiment of the present application, based on the above solution, the strip steel is detected based on the second target difference and the second target thickness information to obtain the second detection result, including:

[0028] If the target thickness information is within a preset sixth thickness range and the difference is greater than the sixth preset difference, determining that the second detection result is in an over-standard state;

[0029] If the target thickness information is within a preset seventh thickness range and the difference is greater than the seventh preset difference, determining that the second detection result is in an over-standard state;

[0030] If the target thickness information is within a preset eighth thickness range and the difference is greater than the eighth preset difference, determining that the second detection result is in an over-standard state;

[0031] If the target thickness information is within a ninth preset thickness range and the difference is greater than the ninth preset difference, determining that the second detection result is in an over-standard state;

[0032] If the target thickness information is within a preset tenth thickness range and the difference is greater than a tenth preset difference, it is determined that the second detection result is in an over-standard state.

[0033] In one embodiment of the present application, based on the above solution, after determining the steel strip as normal steel strip / exceeding the standard steel strip according to the detection result, the method further includes:

[0034] If the steel strip is determined to be normal, a prompt message corresponding to the normal steel strip is sent to the terminal;

[0035] If the steel strip is determined to be an excessive steel strip, prompt information corresponding to the excessive steel strip is sent to the terminal.

[0036] According to one aspect of an embodiment of the present application, a strip steel detection device is provided, the device comprising: a first acquisition unit, used to acquire size information of the strip steel; a second acquisition unit, used to acquire zinc layer thickness information of the strip steel and edge zinc layer thickness information of the strip steel based on the size information; a detection unit, used to detect the strip steel based on the zinc layer thickness information and the edge zinc layer thickness information to obtain a detection result; and a judgment unit, used to judge the strip steel as normal strip steel / exceeding-standard strip steel according to the detection result.

[0037] According to one aspect of an embodiment of the present application, a computer program product or computer program is provided. The computer program product or computer program includes computer instructions stored in a computer-readable storage medium. A processor of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the computer device to perform the strip steel detection method described in the above embodiment.

[0038] According to one aspect of an embodiment of the present application, a computer-readable storage medium is provided, on which a computer program is stored. The computer program includes executable instructions. When the executable instructions are executed by a processor, the strip steel detection method described in the above embodiment is implemented.

[0039] According to one aspect of an embodiment of the present application, an electronic device is provided, comprising: one or more processors; and a memory for storing executable instructions of the processors, wherein when the executable instructions are executed by the one or more processors, the one or more processors implement the strip steel detection method as described in the above embodiments.

[0040] In the technical solution of the embodiments of the present application, by obtaining information about the zinc layer thickness of the steel strip and the zinc layer thickness of the edge of the steel strip, the specifications of the steel strip can be detected based on the edge zinc layer thickness information and the zinc layer thickness information. Based on the zinc layer thickness information of the steel strip edge, the specifications of the steel strip can be more accurately detected, thereby determining whether the current steel strip exceeds the standard. Existing detection methods only test the zinc layer of the entire steel strip, which has low accuracy. The steel strip detection method provided by the present application can improve the accuracy of steel strip detection.

[0041] It should be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0042] The accompanying drawings are incorporated into and constitute a part of the specification, illustrating embodiments consistent with the present application and, together with the specification, explaining the principles of the present application. Obviously, the drawings described below are only some embodiments of the present application, and those skilled in the art can derive other drawings based on these drawings without inventive effort. In the drawings:

[0043] Figure 1 Flowchart of a strip steel detection method according to an embodiment of the present application;

[0044] Figure 2 1 is a block diagram of a strip steel detection device according to an embodiment of the present application;

[0045] Figure 3 Schematic diagram of the system structure of an electronic device according to an embodiment of the present application. DETAILED DESCRIPTION

[0046] Example embodiments will now be described more fully with reference to the accompanying drawings. However, example embodiments can be implemented in many forms and should not be construed as limited to the examples set forth herein; rather, these embodiments are provided so that this application will be thorough and complete and will fully convey the concepts of the example embodiments to those skilled in the art.

[0047] In addition, described feature, structure or characteristic can be combined in one or more embodiments in any suitable manner.In the following description, many specific details are provided so as to provide a full understanding of the embodiments of the present application. However, it will be appreciated by those skilled in the art that the technical scheme of the present application can be put into practice without one or more of the specific details, or other methods, components, devices, steps etc. can be adopted. In other cases, known methods, devices, implementations or operations are not shown or described in detail to avoid blurring the various aspects of the application.

[0048] The block diagrams shown in the accompanying drawings are merely functional entities and do not necessarily correspond to physically separate entities. That is, these functional entities may be implemented in software, in one or more hardware modules or integrated circuits, or in different networks and / or processor devices and / or micro-controller node devices.

[0049] The flowcharts shown in the accompanying drawings are for illustrative purposes only and do not necessarily include all contents and operations / steps, nor must they be executed in the order described. For example, some operations / steps may be decomposed, while others may be combined or partially combined. Therefore, the actual execution order may vary depending on the actual situation.

[0050] It should be noted that the term "plurality" used in this document refers to two or more. "And / or" describes a relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A alone, A and B together, or B alone. The character " / " generally indicates an "or" relationship between the associated objects.

[0051] The following is a detailed description of the implementation details of the technical solution of the embodiment of the present application:

[0052] First, it should be noted that the strip steel inspection solution proposed in this application can be applied to related technical fields related to strip steel specification inspection. Existing strip steel specification inspections typically rely on manual measurement of the overall zinc coating thickness. This inspection method is not only inefficient but also lacks accuracy, making it ineffective for inspecting the dimensions of the produced strip steel. This application, by inspecting the edge coating thickness of the strip steel and combining it with the overall coating thickness, further improves the accuracy of strip steel inspections.

[0053] According to one aspect of the present application, a strip steel detection method is provided. Figure 1 This is a flow chart of a strip steel detection method according to an embodiment of the present application. The strip steel detection method includes at least steps 110 to 140, which are described in detail as follows:

[0054] In step 110, the dimension information of the steel strip is obtained.

[0055] In this application, after the strip steel is produced, the size information of the strip steel is first obtained. The obtained size information can be used to know various specific size information of the strip steel, such as the zinc layer thickness information of the strip steel, the edge zinc layer thickness information of the strip steel, etc.

[0056] Multiple detection points are set on the steel strip to be tested. The number of detection points can be 4, 8, 12, etc., and there is no limit to the number of detection points. Additional zinc layer thickness detection points are set at the upper surface OS (operating side) edge, the upper surface DS (driving side) edge, the lower surface OS (operating side) edge, and the lower surface DS (driving side) edge, and the average of the strip edge thickness at the above four detection points is calculated.

[0057] By performing difference calculation between the calculated mean value and the zinc layer thickness information of the strip and comparing it with the preset difference range, it can be determined whether the currently produced strip exceeds the standard.

[0058] Continue to refer to Figure 1 In step 120, the zinc layer thickness information of the steel strip and the zinc layer thickness information of the edge of the steel strip are obtained based on the size information.

[0059] In the present application, the zinc layer thickness information of the steel strip and the edge zinc layer thickness information of the steel strip are obtained from the size information, and then the edge zinc layer thickness information of the steel strip can be used to detect the currently produced steel strip, thereby further improving the accuracy of the steel strip detection.

[0060] Continue to refer to Figure 1 In step 130, the strip steel is inspected based on the zinc layer thickness information and the edge zinc layer thickness information to obtain an inspection result.

[0061] In one embodiment of the present application, the detection result includes a first detection result and a second detection result. Step 130 may be performed according to steps S1 and S2:

[0062] Step S1: If the zinc layer thickness information is within a preset first size range, the strip steel is inspected based on the zinc layer thickness information, the edge zinc layer thickness information and a preset first inspection rule to obtain the first inspection result.

[0063] Step S2: If the zinc layer thickness information is within a preset second size range, the strip steel is inspected based on the zinc layer thickness information, the edge zinc layer thickness information and a preset second detection rule to obtain the second detection result.

[0064] In this application, the preset first size range can be specifically that the galvanized layer is less than 110g / m 2 In other words, if the desired strip is one with a zinc coating of less than 110 g / m², the strip can be tested using a preset first test rule to obtain the first test result. The preset first test rule states that if the difference between the edge zinc coating thickness information and the zinc coating thickness information is greater than a certain value, the strip will be determined to be exceeding the standard.

[0065] In the present application, the preset second size range can specifically be a range where the zinc coating is greater than 110g / m². That is, if the desired steel strip is one with a zinc coating greater than 110g / m², the steel strip can be tested using the preset second detection rule to obtain the second detection result. The preset second detection rule states that if the difference between the edge zinc coating thickness information and the zinc coating thickness information is greater than a certain value, the steel strip will be determined to be exceeding the standard.

[0066] In one embodiment of the present application, the strip steel is detected based on the zinc layer thickness information, the edge zinc layer thickness information, and a preset first detection rule to obtain the first detection result, including:

[0067] Acquiring first target thickness information of the steel strip;

[0068] Calculating a first target difference between the edge zinc layer thickness information and the zinc layer thickness information;

[0069] The strip steel is inspected based on the first target difference and the first target thickness information to obtain the first inspection result.

[0070] Specifically, the first target thickness information can be a target thickness derived from production requirements, such as the current requirement for the zinc layer thickness of the strip to be less than 110g / m2 , then this is lower than 110g / m 2 It is the current first target thickness information. The preset first detection rule can refer to the following table 1:

[0071]

[0072] Table 1

[0073] In one embodiment of the present application, the detecting the steel strip based on the first target difference and the first target thickness information to obtain the first detection result includes:

[0074] If the target thickness information is within a preset first thickness range and the difference is greater than the first preset difference, determining that the first detection result is in an over-standard state;

[0075] If the target thickness information is within a preset second thickness range and the difference is greater than a second preset difference, determining that the first detection result is in an over-standard state;

[0076] If the target thickness information is within a preset third thickness range and the difference is greater than the third preset difference, determining that the first detection result is in an over-standard state;

[0077] If the target thickness information is within a preset fourth thickness range and the difference is greater than a fourth preset difference, determining that the first detection result is in an over-standard state;

[0078] If the target thickness information is within a preset fifth thickness range and the difference is greater than a fifth preset difference, it is determined that the first detection result is in an over-standard state.

[0079] Specifically, as shown in Table 1, the preset first thickness range can be less than 0.5 meters. That is, when the first target thickness information is less than 0.5 meters, if the mean value of the edge zinc layer minus the mean value of the zinc layer is greater than 12, the current strip will be marked as exceeding the standard. In this case, 12 is the first preset difference mentioned above.

[0080] The preset second thickness range may be greater than 0.5 meters and less than 0.7 meters. If the average value of the edge zinc layer minus the average value of the zinc layer is greater than 14, the current strip will be marked as exceeding the standard. In this case, 14 is the second preset difference mentioned above.

[0081] The preset third thickness range may be greater than 0.7 meters and less than 0.8 meters. If the average value of the edge zinc layer minus the average value of the zinc layer is greater than 16, the current strip will be marked as exceeding the standard. In this case, 16 is the third preset difference mentioned above.

[0082] The fourth preset thickness range may be greater than 0.8 meters and less than 1.3 meters. If the average value of the edge zinc layer minus the average value of the zinc layer is greater than 20, the current strip will be marked as exceeding the standard. In this case, 20 is the fourth preset difference mentioned above.

[0083] The preset fifth thickness range may be greater than 1.3 meters. If the average value of the edge zinc layer minus the average value of the zinc layer is greater than 22, the current strip will be marked as exceeding the standard. In this case, 22 is the fifth preset difference mentioned above.

[0084] In one embodiment of the present application, the strip steel is detected based on the zinc layer thickness information, the edge zinc layer thickness information, and a preset second detection rule to obtain the second detection result, including:

[0085] obtaining second target thickness information of the steel strip;

[0086] Calculating a second target difference between the edge zinc layer thickness information and the zinc layer thickness information;

[0087] The strip steel is inspected based on the second target difference and the second target thickness information to obtain the second inspection result.

[0088] In one embodiment of the present application, the detecting the steel strip based on the second target difference and the second target thickness information to obtain the second detection result includes:

[0089] If the target thickness information is within a preset sixth thickness range and the difference is greater than the sixth preset difference, determining that the second detection result is in an over-standard state;

[0090] If the target thickness information is within a preset seventh thickness range and the difference is greater than the seventh preset difference, determining that the second detection result is in an over-standard state;

[0091] If the target thickness information is within a preset eighth thickness range and the difference is greater than the eighth preset difference, determining that the second detection result is in an over-standard state;

[0092] If the target thickness information is within a ninth preset thickness range and the difference is greater than the ninth preset difference, determining that the second detection result is in an over-standard state;

[0093] If the target thickness information is within a preset tenth thickness range and the difference is greater than a tenth preset difference, it is determined that the second detection result is in an over-standard state.

[0094] Specifically, the second target thickness information can be a target thickness obtained according to production requirements, such as the current requirement for the zinc layer thickness of the strip to be higher than 110g / m2 , then this is higher than 110g / m 2 It is the current second target thickness information. The preset second detection rule can refer to the following Table 2:

[0095]

[0096] Table 2

[0097] Specifically, as shown in Table 2, the preset sixth thickness range can also be less than 0.5 meters. In this case, if the average value of the edge zinc layer minus the average value of the zinc layer is greater than 10, the current strip will be marked as exceeding the standard. In this case, 10 is the sixth preset difference mentioned above.

[0098] The seventh preset thickness range may be greater than 0.5 meters and less than 0.7 meters. If the average value of the edge zinc layer minus the average value of the zinc layer is greater than 12, the current strip will be marked as exceeding the standard. In this case, 12 is the seventh preset difference mentioned above.

[0099] The eighth preset thickness range may be greater than 0.7 meters and less than 0.8 meters. If the average value of the edge zinc layer minus the average value of the zinc layer is greater than 14, the current strip will be marked as exceeding the standard. In this case, 14 is the eighth preset difference mentioned above.

[0100] The ninth preset thickness range may be greater than 0.8 meters and less than 1.3 meters. If the average value of the edge zinc layer minus the average value of the zinc layer is greater than 18, the current strip will be marked as exceeding the standard. In this case, 18 is the eighth preset difference mentioned above.

[0101] The preset tenth thickness range may be greater than 1.3 meters. If the average value of the edge zinc layer minus the average value of the zinc layer is greater than 20, the current strip will be marked as exceeding the standard. In this case, 20 is the tenth preset difference mentioned above.

[0102] In one embodiment of the present application, after step 140, the following steps 150 to 160 may be further performed:

[0103] In step 150, if the steel strip is determined to be a normal steel strip, prompt information corresponding to the normal steel strip is sent to the terminal.

[0104] In step 160, if the steel strip is determined to be an excessive steel strip, a prompt message corresponding to the excessive steel strip is sent to the terminal.

[0105] Specifically, if the currently produced steel strip is determined to be normal, a prompt message indicating that the steel strip is normal will be sent to the terminal, indicating that the current steel strip meets the specification requirements. If the currently produced steel strip is determined to be substandard, a prompt message indicating that the steel strip does not meet the specification requirements will be sent to the terminal.

[0106] Figure 2 This is a block diagram of a strip steel detection device according to an embodiment of the present application, referring to Figure 2 As shown, according to an embodiment of the present application, a strip steel detection device 200 includes: a first acquisition unit 201 , a second acquisition unit 202 , a detection unit 203 , and a determination unit 204 .

[0107] The first acquisition unit 201 is used to obtain the size information of the steel strip;

[0108] The second acquiring unit 202 is configured to acquire the zinc layer thickness information of the steel strip and the zinc layer thickness information of the edge of the steel strip based on the size information;

[0109] The detection unit 203 is used to detect the strip steel based on the zinc layer thickness information and the edge zinc layer thickness information to obtain a detection result;

[0110] The determination unit 204 is used to determine whether the steel strip is a normal steel strip or an excessive steel strip according to the detection result.

[0111] As another aspect, the present application further provides a computer-readable storage medium storing a program product capable of implementing the strip steel inspection method described above. In some possible implementations, various aspects of the present application may also be implemented in the form of a program product comprising program code. When the program product is executed on a terminal device, the program code is configured to cause the terminal device to execute the steps described in the "Example Method" section above according to various exemplary embodiments of the present application.

[0112] According to an embodiment of the present application, a program product for implementing the above method can be a portable compact disc read-only memory (CD-ROM) and include program code, and can be run on a terminal device, such as a personal computer. However, the program product of the present application is not limited thereto. In this document, a readable storage medium can be any tangible medium containing or storing a program, which can be used by or in conjunction with an instruction execution system, apparatus, or device.

[0113] The program product may be implemented in any combination of one or more readable media. The readable medium may be a readable signal medium or a readable storage medium. The readable storage medium may be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device, or component, or any combination thereof. More specific examples (a non-exhaustive list) of readable storage media include: an electrical connection with one or more wires, a portable disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination thereof.

[0114] A computer-readable signal medium may include a data signal propagated in baseband or as part of a carrier wave, which carries readable program code. Such propagated data signals may take a variety of forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination thereof. A readable signal medium may also be any readable medium other than a readable storage medium that can transmit, propagate, or transfer a program for use by or in conjunction with an instruction execution system, apparatus, or device.

[0115] The program code embodied on the readable medium may be transmitted using any appropriate medium, including but not limited to wireless, wireline, optical fiber cable, RF, etc., or any suitable combination of the foregoing.

[0116] The program code for performing the operations of the present application can be written in any combination of one or more programming languages, including object-oriented programming languages ​​such as Java, C++, etc., and conventional procedural programming languages ​​such as "C" or similar programming languages. The program code can be executed entirely on the user computing device, partially on the user device, as a separate software package, partially on the user computing device and partially on a remote computing device, or entirely on a remote computing device or server. In the case of a remote computing device, the remote computing device can be connected to the user computing device through any type of network, including a local area network (LAN) or a wide area network (WAN), or can be connected to an external computing device (e.g., via the Internet using an Internet service provider).

[0117] As another aspect, the present application also provides an electronic device capable of implementing the above method.

[0118] Those skilled in the art will appreciate that various aspects of the present application can be implemented as systems, methods, or program products. Therefore, various aspects of the present application can be specifically implemented in the following forms: a complete hardware implementation, a complete software implementation (including firmware, microcode, etc.), or an implementation that combines hardware and software aspects, which may be collectively referred to herein as a "circuit," "module," or "system."

[0119] Refer to the following Figure 3 hereinafter, an electronic device 300 according to this embodiment of the present application is described. Figure 3 The electronic device 300 shown is merely an example and should not limit the functions and scope of use of the embodiments of the present application.

[0120] like Figure 3 As shown, electronic device 300 is implemented as a general-purpose computing device. Components of electronic device 300 may include, but are not limited to, the aforementioned at least one processing unit 310, the aforementioned at least one storage unit 320, and a bus 330 connecting various system components (including storage unit 320 and processing unit 310).

[0121] The storage unit stores program code, which can be executed by the processing unit 310, so that the processing unit 310 performs the steps described in the above "Example Method" section of this specification according to various exemplary embodiments of the present application.

[0122] The storage unit 320 may include a readable medium in the form of a volatile storage unit, such as a random access memory unit (RAM) 321 and / or a cache memory unit 322 , and may further include a read-only memory unit (ROM) 323 .

[0123] The storage unit 320 may also include a program / utility 324 having a set (at least one) of program modules 325, such program modules 325 including but not limited to: an operating system, one or more application programs, other program modules, and program data, each of which or some combination may include an implementation of a network environment.

[0124] Bus 330 may represent one or more of several types of bus structures, including a memory unit bus or memory unit controller node, a peripheral bus, an accelerated graphics port, a processing unit, or a local bus using any of a variety of bus architectures.

[0125] The electronic device 300 can also communicate with one or more external devices 1200 (e.g., a keyboard, a pointing device, a Bluetooth device, etc.), one or more devices that enable a user to interact with the electronic device 300, and / or any device that enables the electronic device 300 to communicate with one or more other computing devices (e.g., a router, a modem, etc.). Such communication can occur via an input / output (I / O) interface 350. Furthermore, the electronic device 300 can also communicate with one or more networks (e.g., a local area network (LAN), a wide area network (WAN), and / or a public network such as the Internet) via a network adapter 360. As shown, the network adapter 360 communicates with other modules of the electronic device 300 via a bus 330. It should be understood that, although not shown in the figure, other hardware and / or software modules can be used in conjunction with the electronic device 300, including but not limited to microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup storage systems.

[0126] Through the description of the above embodiments, it is easy for those skilled in the art to understand that the example embodiments described herein can be implemented by software or by combining software with necessary hardware. Therefore, the technical solution according to the embodiments of the present application can be embodied in the form of a software product, which can be stored in a non-volatile storage medium (which can be a CD-ROM, a USB flash drive, a mobile hard disk, etc.) or on a network, including instructions to enable a computing device (which can be a personal computer, a server, a terminal device, or a network device, etc.) to execute the method according to the embodiments of the present application.

[0127] Furthermore, the above-mentioned figures are merely illustrative of the processes included in the methods according to exemplary embodiments of the present application and are not intended to be limiting. It is readily understood that the processes illustrated in the above-mentioned figures do not indicate or limit the temporal order of these processes. Furthermore, it is readily understood that these processes may be executed synchronously or asynchronously, for example, in multiple modules.

[0128] It should be understood that the present application is not limited to the exact structures that have been described above and shown in the drawings, and that various modifications and changes can be performed without departing from the scope thereof. The scope of the present application is limited only by the appended claims.

Claims

1. A strip steel detection method, characterized in that: include: Get the size information of the strip; Acquire the zinc layer thickness information of the steel strip and the zinc layer thickness information of the edge of the steel strip based on the size information; Detecting the steel strip based on the zinc layer thickness information and the edge zinc layer thickness information to obtain a detection result; Determining the steel strip as normal steel strip or exceeding the standard steel strip according to the detection result; The test results include a first test result and a second test result; The detecting of the strip steel based on the zinc layer thickness information and the edge zinc layer thickness information to obtain a detection result includes: If the zinc layer thickness information is within a preset first size range, the strip steel is inspected based on the zinc layer thickness information, the edge zinc layer thickness information, and a preset first inspection rule to obtain a first inspection result; If the zinc layer thickness information is within a preset second size range, the strip is inspected based on the zinc layer thickness information, the edge zinc layer thickness information and a preset second detection rule to obtain the second detection result.

2. The strip steel detection method according to claim 1, characterized in that: The detecting the steel strip based on the zinc layer thickness information, the edge zinc layer thickness information, and a preset first detection rule to obtain the first detection result includes: Acquiring first target thickness information of the steel strip; Calculating a first target difference between the edge zinc layer thickness information and the zinc layer thickness information; The strip steel is inspected based on the first target difference and the first target thickness information to obtain the first inspection result.

3. The strip steel detection method according to claim 2, characterized in that: The detecting the steel strip based on the first target difference and the first target thickness information to obtain the first detection result includes: If the target thickness information is within a preset first thickness range and the difference is greater than the first preset difference, determining that the first detection result is in an over-standard state; If the target thickness information is within a preset second thickness range and the difference is greater than a second preset difference, determining that the first detection result is in an over-standard state; If the target thickness information is within a preset third thickness range and the difference is greater than the third preset difference, determining that the first detection result is in an over-standard state; If the target thickness information is within a preset fourth thickness range and the difference is greater than a fourth preset difference, determining that the first detection result is in an over-standard state; If the target thickness information is within a preset fifth thickness range and the difference is greater than a fifth preset difference, it is determined that the first detection result is in an over-standard state.

4. The strip steel detection method according to claim 1, characterized in that: The detecting the steel strip based on the zinc layer thickness information, the edge zinc layer thickness information and a preset second detection rule to obtain the second detection result includes: obtaining second target thickness information of the steel strip; Calculating a second target difference between the edge zinc layer thickness information and the zinc layer thickness information; The strip steel is inspected based on the second target difference and the second target thickness information to obtain the second inspection result.

5. The strip steel detection method according to claim 4, characterized in that: The detecting the steel strip based on the second target difference and the second target thickness information to obtain the second detection result includes: If the target thickness information is within a preset sixth thickness range and the difference is greater than the sixth preset difference, determining that the second detection result is in an over-standard state; If the target thickness information is within a preset seventh thickness range and the difference is greater than the seventh preset difference, determining that the second detection result is in an over-standard state; If the target thickness information is within a preset eighth thickness range and the difference is greater than the eighth preset difference, determining that the second detection result is in an over-standard state; If the target thickness information is within a ninth preset thickness range and the difference is greater than the ninth preset difference, determining that the second detection result is in an over-standard state; If the target thickness information is within a preset tenth thickness range and the difference is greater than a tenth preset difference, it is determined that the second detection result is in an over-standard state.

6. The strip steel detection method according to claim 1, characterized in that: After determining the steel strip as normal steel strip or exceeding the standard steel strip according to the detection result, the method further includes: If the steel strip is determined to be normal, a prompt message corresponding to the normal steel strip is sent to the terminal; If the steel strip is determined to be an excessive steel strip, prompt information corresponding to the excessive steel strip is sent to the terminal.

7. A strip steel detection device, characterized in that: The device comprises: The first acquisition unit is used to acquire the size information of the steel strip; a second acquiring unit, configured to acquire the zinc layer thickness information of the steel strip and the zinc layer thickness information of the edge of the steel strip based on the size information; A detection unit is used to detect the strip steel based on the zinc layer thickness information and the edge zinc layer thickness information to obtain a detection result; a determination unit, configured to determine whether the steel strip is normal or exceeds the standard according to the detection result; The test result includes a first test result and a second test result; the test result obtained by testing the strip based on the zinc layer thickness information and the edge zinc layer thickness information includes: If the zinc layer thickness information is within a preset first size range, the strip steel is inspected based on the zinc layer thickness information, the edge zinc layer thickness information, and a preset first inspection rule to obtain a first inspection result; If the zinc layer thickness information is within a preset second size range, the strip is inspected based on the zinc layer thickness information, the edge zinc layer thickness information and a preset second detection rule to obtain the second detection result.

8. A computer-readable storage medium, characterized in that The computer-readable storage medium stores at least one program code, and the at least one program code is loaded and executed by a processor to implement the operations performed by the method according to any one of claims 1 to 6.

9. An electronic device, characterized in that: The electronic device includes one or more processors and one or more memories, wherein at least one program code is stored in the one or more memories, and the at least one program code is loaded and executed by the one or more processors to implement the operations performed by the method according to any one of claims 1 to 6.