A tool management method, computer readable storage medium, system and device

By using an automated tooling management method, based on product identification information and preset relationships, the system determines whether there are sufficient toolings in the warehouse, generates a list file or prompts, and solves the problems of low efficiency and errors caused by manual intervention in existing technologies, thus achieving efficient tooling allocation and stockout management.

CN115641060BActive Publication Date: 2025-12-05INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202211103177.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-09
Publication Date
2025-12-05
Estimated Expiration
2042-09-09

AI Technical Summary

Technical Problem

In existing technologies, when server components are missing after production, manual identification and retrieval are required, resulting in low efficiency, a high probability of errors, slow information transmission, and an inability to promptly understand warehouse stockouts.

Method used

By receiving tooling call instructions, the system automatically determines product identification information and selected tooling. Utilizing the preset correspondence between identification information and theoretically selected tooling, it judges whether the actual required tooling is in the warehouse, generates a list file, or issues a prompt message, thus achieving automated management.

Benefits of technology

It improved the work efficiency of warehouse and testing personnel, reduced the probability of errors, and ensured the timely transmission and automated processing of warehouse out-of-stock information.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a tool management method, a computer readable storage medium, a system and a device, relates to the management field, and when a tool calling instruction is received, determines the identification information of a product and a selected tool according to the tool calling instruction, determines the theoretically selected tool of the product according to the identification information of the product and a preset product identification information-theoretically selected tool corresponding relationship, determines the actual required tool according to the theoretically selected tool and the selected tool, and then judges whether the actual required tool is completely contained in the existing tool of the warehouse or not, if yes, generates a first tool list file corresponding to the actual required tool so as to facilitate the warehouse personnel to call the actual required tool, and if not, controls a prompt module to send prompt information to remind the test personnel and the warehouse personnel that the existing tool of the current warehouse does not satisfy the present test, improves the efficiency, and makes the warehouse personnel and the test personnel know the warehouse shortage situation faster, the whole process is automatically carried out, and the automation degree of the scheme is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the management field, in particular to a tool management method, a computer readable storage medium, a system and a device. BACKGROUND

[0002] The internal components of the server as a product include processors, memories, hard disks, cables, expansion cards, etc., which can be referred to as tooling. When the server as a product is sold, some users have their own dedicated memory, processor or hard disk, so when purchasing a server, they may not need the attached memory, processor or hard disk. Therefore, after the production of the server product, the internal structure that the user does not need will not be included. However, after production, the reliability of the connection link of the memory, processor or hard disk components still needs to be tested. However, these server products do not have internal memory, processor or hard disk components, and when components are missing, the components in the warehouse need to be called to install the components before the connection link reliability test can be performed.

[0003] In the prior art, the test personnel first manually determine the components required by the user in the server product, and then manually find the components required by the server product for testing and hand them over to the warehouse personnel. The warehouse personnel manually search for the components required by the test personnel in the warehouse. However, there may be a situation where the components are insufficient in the warehouse. In this case, the test personnel cannot timely learn about the situation. The entire process involves many manual intervention steps, which increases the possibility of errors. At the same time, the information transfer of whether the components are found needs to be manually informed, which is relatively slow, and the overall work efficiency is reduced. SUMMARY

[0004] The purpose of the present application is to provide a tool management method, a computer readable storage medium, a system and a device to improve efficiency and enable the warehouse personnel and test personnel to learn about the warehouse shortage situation faster, and the entire process is automatically performed, which improves the automation degree of the scheme and reduces the probability of errors.

[0005] To solve the above technical problems, the present application provides a tool management method, comprising:

[0006] Upon receiving the tool calling instruction, the identification information of the product and the selected tooling are determined according to the tool calling instruction, and the selected tooling is the tooling determined by the user for the product to contain;

[0007] The theoretical selection tooling of the product is determined according to the identification information of the product and the preset product identification information-theoretical selection tooling correspondence, and the theoretical selection tooling is the tooling required by the product to complete the test theoretically;

[0008] determining the actual required tooling according to the theoretically selected tooling and the selected tooling, wherein the actual required tooling is tooling actually required by the product to complete the test;

[0009] determining whether the actual required tooling is completely contained in the existing tooling of the warehouse;

[0010] if yes, generating a first tooling list file corresponding to the actual required tooling so as to facilitate warehouse personnel to retrieve the actual required tooling;

[0011] if no, controlling the prompt module to issue prompt information.

[0012] Preferably, the method for determining the actual required tooling according to the theoretically selected tooling and the selected tooling comprises:

[0013] obtaining identification information of tooling contained in the theoretically selected tooling;

[0014] obtaining identification information of tooling contained in the selected tooling;

[0015] determining identical identification information from the identification information of tooling contained in the theoretically selected tooling and the identification information of tooling contained in the selected tooling;

[0016] deleting tooling corresponding to the identical identification information from the theoretically selected tooling to obtain the actual required tooling.

[0017] Preferably, the method further comprises:

[0018] when it is determined that the actual required tooling is not completely contained in the existing tooling of the warehouse, determining tooling contained in the actual required tooling and contained in the existing tooling of the warehouse;

[0019] generating a second tooling list file of tooling contained in the existing tooling of the warehouse.

[0020] Preferably, after the second tooling list file of tooling contained in the existing tooling of the warehouse is generated, the method further comprises:

[0021] determining to-be-warehoused tooling according to the tooling contained in the existing tooling of the warehouse and the actual required tooling, wherein the to-be-warehoused tooling is tooling that cannot be provided by the warehouse from among the tooling actually required by the product to complete the test;

[0022] controlling the prompt module to prompt information that the to-be-warehoused tooling currently exists.

[0023] Preferably, the method for determining the selected tooling according to the tooling calling instruction comprises:

[0024] obtaining identification information of the selected tooling contained in the tooling calling instruction;

[0025] According to the identification information of the selected tool contained in the tool calling instruction, the selected tool is determined.

[0026] Preferably, the warehouse is a tool warehouse, and the tool warehouse only contains tools used for product testing.

[0027] Preferably, after the actual required tool is retrieved by the warehouse personnel according to the first tool list file corresponding to the actual required tool, the method further comprises:

[0028] When the warehouse personnel receives the tool out instruction contained in the first tool list file, the identification information of the tool is obtained and stored.

[0029] When the product detection completion instruction of the tool is received, it is determined whether the identification information of the tool is stored.

[0030] If the identification information of the tool is stored, the prompt module is controlled to issue information prompting that the tool has not been disassembled.

[0031] When the tool storage instruction of the tool contained in the first tool list file is received, the stored identification information corresponding to the tool is deleted.

[0032] To solve the above technical problems, the application further provides a computer readable storage medium, wherein the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the steps of the tool management method.

[0033] To solve the above technical problems, the application further provides a tool management system, comprising:

[0034] A first determination unit is configured to determine the identification information of a product and a selected tool according to a tool calling instruction when the tool calling instruction is received, wherein the selected tool is a tool determined by a user for the product.

[0035] A second determination unit is configured to determine a theoretical selected tool of the product according to the identification information of the product and a preset product identification information-theoretical selected tool corresponding relationship, wherein the theoretical selected tool is a tool required by the product for completing testing theoretically.

[0036] A third determination unit is configured to determine an actual required tool according to the theoretical selected tool and the selected tool, wherein the actual required tool is a tool required by the product for completing testing actually.

[0037] The judgment unit judges whether the actual required tooling is completely contained in the existing tooling of the warehouse, if yes, triggers the first tooling list file generation unit, if no, triggers the prompting unit;

[0038] The first tooling list file generation unit is used for generating a first tooling list file corresponding to the actual required tooling so as to facilitate the warehouse personnel to call the actual required tooling.

[0039] The prompting unit is used for controlling the prompting module to send prompt information.

[0040] To solve the above technical problems, the application further provides a tooling management device, which comprises:

[0041] The memory is used for storing a computer program.

[0042] The processor is used for executing the computer program to realize the steps of the tooling management method.

[0043] The application provides a tooling management method, a computer readable storage medium, a system and a device. When receiving a tooling calling instruction, the application determines the identification information of a product and selected tooling according to the tooling calling instruction. The selected tooling is the tooling determined by a user for the product. At this time, the components of the product determined by the user are determined. The theoretical selected tooling of the product is determined according to the identification information of the product and a preset product identification information-theoretical selected tooling corresponding relationship. The theoretical selected tooling is the tooling required by the product to complete a test. The actual required tooling is determined according to the theoretical selected tooling and the selected tooling. The actual required tooling is the tooling required by the product to complete a test. At this time, it can be known which tooling is actually required. Then it is judged whether the actual required tooling is completely contained in the existing tooling of the warehouse. If yes, it is indicated that the tooling can be called from the warehouse. A first tooling list file corresponding to the actual required tooling is generated so as to facilitate the warehouse personnel to call the actual required tooling. If no, the prompting module is controlled to send prompt information to remind the test personnel and the warehouse personnel that the existing tooling of the current warehouse does not meet the test. The efficiency is improved, and the warehouse personnel and the test personnel can know the out-of-stock situation of the warehouse more quickly. The whole process is automatically performed, the automation degree of the scheme is improved, and the error probability is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0044] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the prior art and the embodiments. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0045] Figure 1A flow chart of a tool management method provided by the present application;

[0046] Figure 2 A schematic diagram of a first tool list file provided by the present application;

[0047] Figure 3 A page schematic diagram of a warehouse category provided by the present application;

[0048] Figure 4 A page schematic diagram of tool warehousing provided by the present application;

[0049] Figure 5 A structural schematic diagram of a tool management system provided by the present application;

[0050] Figure 6 A structural schematic diagram of a tool management device provided by the present application. DETAILED DESCRIPTION

[0051] The core of the present application is to provide a tool management method, a computer readable storage medium, a system and a device, to improve efficiency and make the warehouse personnel and the test personnel know the warehouse out-of-stock situation faster, to make the whole process automatic, to improve the automation degree of the scheme, and to reduce the error probability.

[0052] To make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.

[0053] Please refer to Figure 1 and Figure 2 , Figure 1 A flow chart of a tool management method provided by the present application, Figure 2 A schematic diagram of a first tool list file provided by the present application. The method comprises:

[0054] S11: when receiving a tool calling instruction, determining the identification information of a product and the selected tool according to the tool calling instruction, the selected tool being the tool determined by the user for the product;

[0055] Since the prior art needs manual determination of whether the product selected by the user has certain unnecessary components when detecting the product such as a server, and then determines which tooling needs to be called from the warehouse when detecting, the whole process has many steps of manual intervention, and the tester first lists the list of required tooling, and then the warehouse personnel select the tooling to be called, but since the tester does not know whether the required tooling exists in the current warehouse when listing the list, the tooling selected by the warehouse personnel may not exist in the current warehouse. In order to solve the above problems, the present scheme provides a tooling management method, which first receives a tooling calling instruction, determines the identification information of the product and the selected tooling according to the tooling calling instruction, and inputs the corresponding selection in the ERP (Enterprise Resource Planning, enterprise resource planning system). If the user selects to call a part of the tooling in the selected category, that is, the product required by the user can not include certain components, the tooling calling instruction is received, the instruction includes the tooling selected by the user, and the identification information of the product is also included. At this time, it can be determined which product is required by the user and the tooling that needs to be called additionally is determined, thereby improving the reliability of the scheme.

[0056] S12: determining the theoretical selection tooling of the product according to the identification information of the product and the preset product identification information-theoretical selection tooling correspondence, the theoretical selection tooling being the tooling required by the product to complete the test theoretically;

[0057] After obtaining the identification information of the product in the last step, the theoretical selection tooling of the product can be determined according to the identification information and the preset product identification information-theoretical selection tooling correspondence, that is, all tooling that should be selected under the product. Specifically, the preset product identification information-theoretical selection tooling correspondence is a pre-stored tooling information table, which includes the identification information of the product and the types of components and the number of tooling required by each component. The tooling information table is pre-stored information and can be modified and adjusted according to the actual situation, thereby improving the flexibility and reliability of the scheme.

[0058] Table 1

[0059]

[0060] As shown in Table 1, a type of tooling information table is provided, the product model can be different identification information of the product, there are multiple components inside, and there is specific information of the tooling required for testing corresponding to an identification information. If insufficient, there can be alternative products. Among them, “X” or “XXXX” represents the number of the product corresponding to the identification information, which is not unique, thereby improving the reliability of the scheme.

[0061] S13: Based on the theoretical selection of tooling and the selected tooling, determine the actual required tooling. The actual required tooling is the tooling actually needed to complete the test of this product.

[0062] Then, based on the theoretically selected tooling and the already selected tooling, the actual required tooling is determined. Some tooling required by certain users does not need to be called again. Therefore, the tooling actually needed for the testing of this product can be determined. The actual required tooling is the tooling actually needed to complete the testing of this product. The number of tooling included is less than the number of tooling theoretically selected. Based on this, the information on the tooling required for the testing of this product is obtained, so as to facilitate the normal progress of subsequent steps and improve the reliability of the solution.

[0063] S14: Determine whether the actual required tooling is fully included in the existing tooling in the warehouse. If yes, proceed to S15; otherwise, proceed to S16.

[0064] However, the existing tooling in the warehouse may not be sufficient, so a judgment needs to be made to determine whether the actual required tooling is fully included in the existing tooling in the warehouse. Then, appropriate actions are taken based on the judgment result. The whole process is automated, which improves the automation level of the solution.

[0065] S15: Generate the first tooling list file corresponding to the actual tooling required so that warehouse personnel can retrieve the actual tooling needed;

[0066] If it is determined that the actual required tooling is fully contained in the existing tooling in the warehouse, it means that the current warehouse has sufficient tooling to meet the needs of this call. Then, a first tooling list file corresponding to the actual required tooling is generated. This list includes all the actual required tooling. Warehouse personnel can then complete the call based on this list. The entire process is automated. Furthermore, the process of generating the list is based on the premise that the warehouse has sufficient tooling, and therefore, testing can be performed directly without additional waiting, which improves the feasibility of the solution.

[0067] like Figure 2 As shown, the specific first tooling list file can be a product production task sheet. After the product is produced, the product name is the identification information. The identification of 00002L6 indicates that the tooling needs to be called for this part for testing.

[0068] S16: The control prompt module issues a prompt message.

[0069] If it is determined that the actual required tooling is not fully contained in the existing tooling in the warehouse, it means that the tooling in the current warehouse cannot meet the requirements of this call test. Therefore, the control prompt module will issue a prompt message, which can inform the testers or warehouse personnel of the situation as soon as possible, thus improving the processing efficiency of the solution.

[0070] In general, the application provides a tool management method. When receiving a tool calling instruction, the application determines the identification information of a product and selected tools according to the tool calling instruction. The selected tools are the tools determined by a user for the product. At this time, the components of the product determined by the user are determined. The theoretical selected tools of the product are determined according to the identification information of the product and a preset product identification information-theoretical selected tool correspondence. The theoretical selected tools are the tools required by the product to complete a test. The actual required tools are determined according to the theoretical selected tools and the selected tools. The actual required tools are the tools required by the product to complete the test. At this time, it can be known which tools are the actual required tools. Then, it is judged whether the actual required tools are completely contained in the existing tools in a warehouse. If yes, it is indicated that the tools can be called from the warehouse. A first tool list file corresponding to the actual required tools is generated to facilitate a warehouse personnel to call the actual required tools. If no, a control prompt module sends prompt information to remind a test personnel and the warehouse personnel that the existing tools in the current warehouse do not meet the test. The efficiency is improved, and the warehouse personnel and the test personnel can know the out-of-stock situation of the warehouse more quickly. The whole process is automatically performed, the automation degree of the scheme is improved, and the error probability is reduced.

[0071] On the basis of the above embodiment,

[0072] Please refer to Figure 3 and Figure 4 , Figure 3 a page schematic view of a warehouse type provided by the application, Figure 4 a page schematic view of tool storage provided by the application.

[0073] As a preferred embodiment, the actual required tools are determined according to the theoretical selected tools and the selected tools, including:

[0074] obtaining the identification information of the tools contained in the theoretical selected tools;

[0075] obtaining the identification information of the tools contained in the selected tools;

[0076] determining the same identification information in the identification information of the tools contained in the theoretical selected tools and the identification information of the tools contained in the selected tools;

[0077] deleting the tools corresponding to the same identification information from the theoretical selected tools to obtain the actual required tools.

[0078] According to the theoretical selection tool and the selected tool to determine the actual need tool, the respective identification information can be obtained, and the tool contained in the theoretical selection tool is more than the tool contained in the selected tool, so the intersection of the tools contained in the two is determined, and the tool corresponding to the same identification information is deleted from the theoretical selection tool to obtain the actual need tool, and the whole process is automatically carried out, and the reliability of the scheme is improved.

[0079] As a preferred embodiment, it further comprises:

[0080] When it is determined that the actual need tool is not completely contained in the existing tool of the warehouse, the tool contained in the existing tool of the warehouse is determined;

[0081] A second tool list file of the tool contained in the existing tool of the warehouse is generated.

[0082] When it is determined that the actual need tool is not completely contained in the existing tool of the warehouse, it indicates that the existing tool of the warehouse at this time is insufficient to support the tool required for this test, so the part of the actual need tool included in the warehouse is determined at this time, and then the tool of the part is called, so it is not that when the warehouse does not meet the calling this time, the tool list is not generated directly, at this time, the second tool list file can be generated according to the tool contained in the existing tool of the warehouse, that is, if 100 tools need to be called, but only 50 tools are in the warehouse, then the 50 tools are called out, a part is called first, so that the tester can test the part first, and the reliability of the scheme is improved.

[0083] As a preferred embodiment, after the second tool list file of the tool contained in the existing tool of the warehouse is generated, it further comprises:

[0084] According to the tool contained in the existing tool of the warehouse and the actual need tool, the tool to be taken out of the warehouse is determined, and the tool to be taken out of the warehouse is the tool that the warehouse cannot provide among the tool actually required for product test;

[0085] The prompt module is controlled to prompt the information that the tool to be taken out of the warehouse currently exists.

[0086] When it is determined that the stock of the tool required for part of product test is insufficient in the warehouse, the tool to be taken out of the warehouse is determined, and the tool to be taken out of the warehouse is the tool that the warehouse cannot provide among the tool actually required for product test, then the prompt module is controlled to prompt the tool to be taken out of the warehouse currently exists, and the information of the tool to be taken out of the warehouse is sent to inform the tester and the warehouse personnel, so that the warehouse personnel can timely prepare goods, and the tester can know the situation of waiting, and the reliability of the scheme is improved.

[0087] As a preferred embodiment, determining the selected tool according to the tool calling instruction comprises:

[0088] Obtaining the identification information of the selected tool contained in the tool calling instruction;

[0089] Determining the selected tool according to the identification information of the selected tool contained in the tool calling instruction.

[0090] When determining the selected tool of the user, the user inputs the corresponding option in the ERP system, and then according to the selection of the user, the system detects the corresponding identification information in the instruction. The identification information can be a name or a number, which can be set according to the actual situation to improve the user experience and the reliability of the scheme.

[0091] As a preferred embodiment, the warehouse is a tool warehouse, and the tool warehouse only contains tools used for product testing.

[0092] The warehouse is specially placed for product testing, and does not conflict with other tools. In fact, the priority of the test tool is lower than that of other tools to be shipped or to constitute a complete product. Therefore, in order to call the test tool without conflict with other tools, a test tool warehouse is established, which includes test tools and does not conflict with other tools. If other tools are not needed, the tool warehouse can be used to call other tools when the tool warehouse is insufficient, which improves the reliability of the scheme.

[0093] As shown in Figure 3 , a special warehouse for test tools can be set in the system to facilitate the execution of special test tool calling, which improves the reliability of the scheme.

[0094] As a preferred embodiment, after generating the first tool list file corresponding to the actual required tool to facilitate the warehouse personnel to retrieve the actual required tool, the method further comprises:

[0095] When receiving the warehouse-out instruction of the tool contained in the first tool list file, obtaining the identification information of the tool and storing it;

[0096] When receiving the detection completion instruction of the product corresponding to the tool, determining whether the identification information of the tool is stored;

[0097] If the identification information of the tool is stored, controlling the prompt module to issue information prompting that the tool has not been disassembled;

[0098] When receiving the warehouse-in instruction of the tool contained in the first tool list file, deleting the stored identification information corresponding to the tool.

[0099] In the prior art, the components of a certain product are not required by the customer, but the components or fixtures are added during the test process. When the test is completed, the fixtures used for testing are often forgotten to be removed and delivered to the user, which requires subsequent communication to take back the fixtures, etc., reducing the user experience. Therefore, all fixtures in the present application need to be scanned and entered into the MES system to generate a product file for traceability (the product file includes the product BOM). After production testing, the fixtures with fixture identification need to be removed, and the next step cannot be performed without removal, and the control prompt module prompts. This way is not controlled by manual identification, but by system identification, and the MES system program language is designed. When the material with fixture identification is in the product file, the inspection station cannot pass, and this informationization method prevents production from missing fixtures and improves the reliability of the scheme.

[0100] Specifically, when the fixture is called, it is scanned and entered into the system, and the system receives the out-of-stock instruction of the fixture contained in the first fixture list file. At this time, the identification information of the fixture is obtained and stored. When the detection of the product corresponding to the fixture is completed, it is judged whether the identification information of the fixture is stored. If so, it means that the fixture has not been removed, and the tester is prompted to remove it. After removal, the fixture is stored, and the scanning and entering operation is performed again. At this time, it is the storage operation of the fixture, and when the storage instruction of the fixture contained in the first fixture list file is received, the stored identification information corresponding to the fixture is deleted. At this time, it is determined that the fixture has been removed, improving the reliability of the scheme, as shown in Figure 4 When the stored identification information corresponding to the fixture is deleted, the data information corresponding to the material name cannot be found, indicating that the fixture has been removed, improving the reliability of the scheme.

[0101] The ERP system production task single function module adds L6 product identification: 0002. When the ERP performs production according to the production BOM (BOM is a summary list of all parts and materials required for a whole machine), the 0002 identification is recognized, and then it is confirmed whether there is a hard disk, processor, memory, etc. Then, according to the fixture information table, it is automatically determined how many fixture types and quantities are required for this order, and then it is further determined whether the type and quantity of the fixture in the L6 fixture warehouse can meet the requirements. The L6 fixture warehouse is the above-mentioned fixture warehouse, which is specially used for storing test fixtures. Then, it is determined how many quantities can be met, and how many production orders can be placed according to the met quantities, such as 30 sets for a customer demand of 100 sets, but the L6 fixture warehouse only has a quantity of 30 sets, then 30 sets are ordered, and if it does not meet the requirements, it cannot be ordered, and an alarm is triggered, improving the reliability of the scheme.

[0102] The application further provides a computer readable storage medium, wherein a computer program is stored on the computer readable storage medium, and the computer program is executed by a processor to implement the steps of the tool management method.

[0103] The computer readable storage medium provided in the application is described in the above embodiment of the tool management method, and thus is not described herein.

[0104] Please refer to Figure 5 , Figure 5 A structural diagram of a tool management system provided in the application.

[0105] The application further provides a tool management system, comprising:

[0106] A first determining unit 10 is configured to determine the identification information of a product and selected tools according to a tool calling instruction when the tool calling instruction is received, wherein the selected tools are tools determined by a user and contained in the product.

[0107] A second determining unit 11 is configured to determine the theoretically selected tools of the product according to the identification information of the product and a preset identification information of a product-theoretically selected tool corresponding relationship, wherein the theoretically selected tools are tools required by the product to complete a test theoretically.

[0108] A third determining unit 12 is configured to determine the actually required tools according to the theoretically selected tools and the selected tools, wherein the actually required tools are tools required by the product to complete a test actually.

[0109] A judging unit 13 is configured to judge whether the actually required tools are completely contained in the existing tools in a warehouse, and if yes, trigger a first tool list file generating unit, and if not, trigger a prompting unit.

[0110] The first tool list file generating unit 14 is configured to generate a first tool list file corresponding to the actually required tools so as to facilitate a warehouse worker to call the actually required tools.

[0111] The prompting unit 15 is configured to control a prompting module to send a prompt information.

[0112] The third determining unit comprises:

[0113] A first identification information obtaining unit is configured to obtain the identification information of the tools contained in the theoretically selected tools.

[0114] A second identification information obtaining unit is configured to obtain the identification information of the tools contained in the selected tools.

[0115] identical identification information determining unit, configured to determine identical identification information from identification information of a tool contained in the theoretical selection tool and identification information of a tool contained in the selected tool;

[0116] a first deleting unit, configured to delete the tool corresponding to the identical identification information from the theoretical selection tool to obtain the actual required tool.

[0117] The judging unit further comprises:

[0118] a first processing unit, configured to determine the tool contained in the actual required tool and in the existing tool of the warehouse when the actual required tool is not completely contained in the existing tool of the warehouse;

[0119] a second tool list file generating unit, configured to generate a second tool list file of the tool contained in the existing tool of the warehouse.

[0120] The second tool list file generating unit further comprises:

[0121] a to-be-shipped tool determining unit, configured to determine a to-be-shipped tool according to the tool contained in the existing tool of the warehouse and the actual required tool, the to-be-shipped tool being a tool that cannot be provided by the warehouse in the tool actually required by the product for completing the test;

[0122] a to-be-shipped tool information prompting unit, configured to control the prompting module to prompt information that the to-be-shipped tool currently exists.

[0123] The first determining unit comprises:

[0124] a selected tool identification information obtaining unit, configured to obtain identification information of the selected tool contained in the tool calling instruction;

[0125] a selected tool determining unit, configured to determine the selected tool according to the identification information of the selected tool contained in the tool calling instruction.

[0126] The warehouse is a tool warehouse, and the tool warehouse only contains tools used for testing the product.

[0127] The first tool list file generating unit further comprises:

[0128] a second processing unit, configured to obtain identification information of the tool contained in the first tool list file and store the tool when receiving a shipping instruction of the tool.

[0129] The storage judging unit is configured to, when receiving a detection completion instruction of a product corresponding to the tooling, judge whether the tooling identification information is stored, and if yes, trigger the undismounted prompting unit;

[0130] The undismounted prompting unit is configured to control the prompting module to issue information prompting that the tooling is not dismounted.

[0131] The second deleting unit is configured to, when receiving a storage instruction of the tooling contained in the first tooling list file, delete the already stored identification information corresponding to the tooling.

[0132] For the introduction of the tooling management system provided in the present application, please refer to the above-mentioned embodiments of the tooling management method, which will not be repeated here.

[0133] For the introduction of the tooling management system provided in the present application, please refer to the above-mentioned embodiments of the tooling management method, which will not be repeated here. Figure 5 Figure 5 A structural schematic diagram of a tooling management system provided in the present application

[0134] The present application further provides a tooling management device, comprising:

[0135] The memory 1 is configured to store a computer program.

[0136] The processor 2 is configured to execute the computer program to realize the steps of the above-mentioned tooling management method.

[0137] For the introduction of the tooling management device provided in the present application, please refer to the above-mentioned embodiments of the tooling management method, which will not be repeated here.

[0138] It should be further noted that, in the present application, the relationship 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 such actual relationship or sequence between the entities or operations. Moreover, the terms “include”, “contain” or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or device. Without more limitations, the element defined by the statement “including a…” does not exclude the presence of other identical elements in the process, method, article or device including the element.

[0139] ​Those skilled in the art will further realize that the mechanisms of the various examples described herein are capable of being implemented using any number of combinations of the described features. Accordingly, these examples are not limited to the mechanisms described herein, but rather, the intent is to cover all modifications and alternatives equivalent thereto. The preceding description of the examples is illustrative, and not restrictive. Many other examples will be apparent to those of skill in the art upon reviewing the above description. The scope of the examples should, therefore, be determined not with reference to the above description, but instead should be given to the appended claims, along with their full scope of equivalents.

[0140] The above description of disclosed examples is intended to be illustrative, and not restrictive. Many other examples will be apparent to those of skill in the art upon reviewing the above description. The scope of examples should, therefore, be determined not with reference to the above description, but instead should be given to the appended claims, along with their full scope of equivalents.

Claims

1. A tool management method characterized by, The method comprises the following steps: Upon receiving a tool calling instruction, determining the identification information of a product and a selected tool according to the tool calling instruction, wherein the selected tool is a tool determined by a user and contained in the product, and the tool is a component inside a server; Determining a theoretically selected tool of the product according to the identification information of the product and a preset identification information-theoretically selected tool corresponding relationship, wherein the theoretically selected tool is a tool required by the product for completing a test in theory, and the corresponding relationship is stored in a tool information table, and the tool information table comprises identification information of a product, a component, whether a tool is required for a test, a tool quantity, a tool part number, and a tool replacement part; Determining an actually required tool according to the theoretically selected tool and the selected tool, wherein the actually required tool is a tool required by the product for completing a test in practice; Determining whether the actually required tool is completely contained in existing tools in a warehouse; If yes, generating a first tool list file corresponding to the actually required tool so as to facilitate a warehouse staff to call the actually required tool; If no, controlling a prompt module to issue prompt information to remind a test staff and the warehouse staff that the existing tools in the current warehouse cannot meet the current test, and determining a tool contained in the actually required tool and in the existing tools in the warehouse; Generating a second tool list file of the tool contained in the existing tools in the warehouse; Determining a tool to be sent out of the warehouse according to the tool contained in the existing tools in the warehouse and the actually required tool, wherein the tool to be sent out of the warehouse is a tool that cannot be provided by the warehouse at present among the tools required by the product for completing the test in practice; Controlling the prompt module to prompt information that the tool to be sent out of the warehouse currently exists; The method for determining the actually required tool according to the theoretically selected tool and the selected tool comprises the following steps: Obtaining identification information of a tool contained in the theoretically selected tool; Obtaining identification information of a tool contained in the selected tool; Determining the same identification information among the identification information of the tool contained in the theoretically selected tool and the identification information of the tool contained in the selected tool; Deleting the tool corresponding to the same identification information from the theoretically selected tool to obtain the actually required tool.

2. The tool management method according to Claim 1, wherein The method for determining the selected tool according to the tool calling instruction comprises the following steps: Obtaining identification information of the selected tool contained in the tool calling instruction; Determining the selected tool according to the identification information of the selected tool contained in the tool calling instruction.

3. The tool management method according to Claim 1, wherein The warehouse is a tool warehouse, and the tool warehouse only contains tools used for testing the product.

4. The tool management method according to any one of claims 1 to 3, characterized by, After generating the first tool list file corresponding to the actually required tool so as to facilitate the warehouse staff to call the actually required tool, the method further comprises the following steps: Upon receiving a sending-out instruction of a tool contained in the first tool list file, obtaining identification information of the tool and storing the identification information; Upon receiving a detection completion instruction of a product corresponding to the tool, determining whether the identification information of the tool is stored; If the identification information of the tool is stored, controlling a prompt module to issue information that the tool has not been disassembled. When the storage instruction of the tool included in the first tool list file is received, the stored identification information corresponding to the tool is deleted.

5. A computer readable storage medium, characterized in that, The computer readable storage medium stores a computer program, and the computer program is executed by the processor to implement the steps of the tool management method in any one of claims 1 to 4.

6. A tool management system characterized by, Comprise: The first determination unit is configured to, when a tool calling instruction is received, determine the identification information of a product and selected tools according to the tool calling instruction, the selected tools being tools determined by a user for the product; and the tools being components inside a server; The second determination unit is configured to determine the theoretically selected tools of the product according to the identification information of the product and a preset identification information-theoretically selected tool correspondence of the product, the theoretically selected tools being tools required by the product for completing a test in theory; wherein the correspondence is stored in a tool information table, and the tool information table includes the identification information of the product, components, whether the tool is required for testing, the number of tools, tool part numbers, and tool replacement parts; The third determination unit is configured to determine the actually required tools according to the theoretically selected tools and the selected tools, the actually required tools being tools required by the product for completing a test in practice; The judging unit is configured to judge whether the actually required tools are completely included in existing tools in a warehouse, and if so, trigger the first tool list file generation unit, and if not, trigger the prompting unit; The first tool list file generation unit is configured to generate a first tool list file corresponding to the actually required tools so as to facilitate warehouse personnel to call the actually required tools; The prompting unit is configured to control a prompting module to issue prompt information to remind test personnel and warehouse personnel that existing tools in the current warehouse do not meet the current test; The judging unit further comprises: The first processing unit is configured to, when the actually required tools are not completely included in the existing tools in the warehouse, determine the tools included in the actually required tools in the existing tools in the warehouse; The second tool list file generation unit is configured to generate a second tool list file including the tools included in the existing tools in the warehouse; The second tool list file generation unit further comprises: The to-be-delivered tool determination unit is configured to determine to-be-delivered tools according to the tools included in the existing tools in the warehouse and the actually required tools, the to-be-delivered tools being tools that cannot be provided by the warehouse among the tools required by the product for completing a test in practice; The information prompting unit of the to-be-delivered tool is configured to control the prompting module to prompt information about the to-be-delivered tools currently existing; The third determination unit is specifically configured to acquire the identification information of the tools included in the theoretically selected tools, acquire the identification information of the tools included in the selected tools, determine the same identification information from the identification information of the tools included in the theoretically selected tools and the identification information of the tools included in the selected tools, and delete the tools corresponding to the same identification information from the theoretically selected tools to obtain the actually required tools.

7. A tool management device characterized by comprising: Comprise: The memory is configured to store a computer program; A processor for executing the computer program to implement the steps of the tool management method of any one of claims 1 to 4.

Citation Information

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