Material installation management method, system and equipment and storage medium
By adding installation attributes to the material description information and using digital process systems and preset models to display the installation location of the material, the problem of multiple slots selection in production operations is solved, and fast and accurate installation positioning is achieved, avoiding process delays.
Patent Information
- Application Number
- CN202510848516.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2045-06-24
AI Technical Summary
When production operators have multiple slots to choose from when facing the same material, it is difficult for them to quickly determine their installation location, resulting in a long process that affects material preparation and delivery.
Add installation attributes to the description information of the material, obtain the description information of the material through a digital process system, and use a preset model to display the installation location and form, and generate order information to meet customer customization needs.
Effectively assist production operators in quickly determining the installation location of materials, avoiding delays in traditional technical review processes, and ensuring timely material preparation and delivery.
Smart Images

Figure CN120355377A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of production assembly, and particularly relates to a method, system, device, and storage medium for material installation management. Background Art
[0002] Production process documents are important process guidance documents during the product production and assembly process. Currently, when manufacturing equipment such as servers, production operators need to refer to the assembly instructions of each material in the production process documents for assembly. However, in some special cases, when there are multiple slots available for the same type of material, it is difficult to achieve through process descriptions. For example, a certain external plug-in card can be inserted into the PCIE slot of the switching board in the whole machine or the PCIE slot of the adapter card, which brings difficulties to the work of production operators.
[0003] Currently, for this situation of non-unique installation positions, product information needs to be added through technical reviews. After passing review and evaluation such as pre-sales review and product review by the project team, engineers prepare technical instructions to achieve supplementary instructions based on the actual product requirements, so as to cooperate with the general process to complete customized requirements, and then the front end determines the installation position accordingly. The above process is very long and will affect material preparation and delivery.
[0004] In summary, how to effectively assist production operators to conveniently and quickly determine the installation position of materials without affecting material preparation and delivery is a technical problem that urgently needs to be solved by those skilled in the art at present. Summary of the Invention
[0005] The present application provides a method, system, device, and storage medium for material installation management to effectively assist production operators to conveniently and quickly determine the installation position of materials without affecting material preparation and delivery. The present application provides a method for material installation management, including: For each specified material in the material library, an installation attribute for reflecting the installation position of the material is added to the description information of the material; Obtain a customized requirements document, select materials from the material library according to the customized requirements document, generate order information and send it to the digital process system; wherein, the order information carries the description information of each selected material; When a display instruction for any material in the order information is detected, obtain the description information of the material from the order information through the digital process system; Based on the obtained description information, display the installation position and installation form of the material through a preset model.
[0006] The present application provides a system for material installation management, including: A description information adding module, which is used to add an installation attribute reflecting the installation position of each specified material in the material library to the description information of the material. An order information generating module, which is used to obtain a customization requirement file, select materials from the material library according to the customization requirement file, generate order information and send it to the digital process system; wherein, the order information carries the description information of each selected material. An order loading module, which is used to obtain the description information of the material from the order information through the digital process system when a display instruction for any material in the order information is detected. A display module, which is used to display the installation position and installation form of the material based on the obtained description information through a preset model.
[0007] The present application provides an electronic device, including: A memory, which is used to store a computer program; A processor, which is used to implement the steps of the material installation management method as described above when executing the computer program.
[0008] The present application provides a computer-readable storage medium, in which a computer program is stored, and wherein the computer program implements the steps of the material installation management method as described above when executed by a processor.
[0009] In the solution of this application, by adding module-level descriptions, that is, adding installation attributes to the description information, the transfer of customer customization requirements can be realized, and the installation positions of materials can be effectively determined. Specifically, for each specified material in the material library, installation attributes for reflecting the installation positions of the materials are added to the description information of the materials. Then, a customization requirement file reflecting the customer customization requirements can be obtained, and then materials can be selected from the material library according to the customization requirement file to generate order information reflecting the customer customization requirements and send it to the digital process system. And it can be understood that the description information of each selected material is carried in the order information, and for the specified materials in the order information, the description information has installation attributes reflecting the installation positions of the materials. Subsequently, when a display instruction for any material in the order information is detected, the description information of the material can be obtained from the order information through the digital process system. Furthermore, based on the obtained description information, the installation position of the material can be effectively determined, that is, if the material has multiple installable positions, the installation position of the material can be effectively located through the installation attributes in the description information. And in the solution of this application, the installation position and installation form of the material will be displayed through a preset model, so as to more effectively assist the installation work of production operators. In addition, it can be seen that the solution of this application realizes the determination of the installation position of the material without the need for technical review as in the traditional solution, and there will be no problems such as long processes in the traditional solution that affect material preparation and delivery.
[0010] In summary, in the solution of this application, it can effectively assist production operators to conveniently and quickly determine the installation positions of materials without affecting material preparation and delivery. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] To more clearly illustrate the embodiments of this application, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of this application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings. Figure 1 It is the implementation flowchart of the material installation management method provided by a specific embodiment of this application; Figure 2 It is the structural schematic diagram of the material installation management system provided by a specific embodiment of this application; Figure 3 It is the structural schematic diagram of the electronic device provided by a specific embodiment of this application; Figure 4 It is the structural schematic diagram of the computer-readable storage medium provided by a specific embodiment of this application. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0012] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the protection scope of the present application.
[0013] It should be noted that in the description of the present application, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. The terms "first", "second", etc. in the present application are used to distinguish similar objects and are not used to describe a specific order or sequence.
[0014] To enable those skilled in the art of the present technology to better understand the solution of the present application, the present application will be further described in detail below in conjunction with the accompanying drawings and specific embodiments. Please refer to Figure 1 , Figure 1 FIG. Step S101: For each specified material in the material library, add an installation attribute for reflecting the installation position of the material to the description information of the material.
[0015] The materials described in the present application are usually module-level materials such as network cards and HCA (Host Channel Adapter) cards. Therefore, the description information of the materials is module-level description information. That is to say, in the present application solution, the description of the installation attribute is added to the module-level description information, and this installation attribute can effectively reflect the installation position of the material.
[0016] For some materials, since there are no multiple installation positions, that is, the installation position of such materials is uniquely determined, it is not necessary to add a description of the installation attribute for them. Of course, in some embodiments, if necessary, regardless of whether the installation position of the material is unique, an installation attribute for reflecting the installation position of the material can be added, which does not affect the implementation of the present invention. That is to say, the specified materials in the material library described in step S101 can include all the materials in the material library or can be part of the materials specified by the staff according to actual needs.
[0017] Table 1: Description information table of different materials
[0018]
[0019] For easy understanding, refer to Table 1, which is a description information table for different materials. Taking Network Card 1 in Table 1 as an example, before adding the installation attribute field to its description information, the description information of Network Card 1 is B_NIC_AMODEL_2.5*24_RISER-X16, which includes multiple attribute items. Among them, B is the classification number of the material, NIC is the abbreviation of the English name of the material, AMODEL is the applicable model of the material, and 2.5*24_RISER-X16 is the adapter slot information of the material. The added installation attribute is "RI", indicating that the installation position of the material is the RISER card.
[0020] Similarly, taking Network Card 2 in Table 1 as an example, before adding the installation attribute field to its description information, the description information of Network Card 2 is B_NIC_AMODEL__2.5*24_SW-X16, which includes multiple attribute items. Among them, B is the classification number of the material, NIC is the abbreviation of the English name of the material, AMODEL is the applicable model of the material, and 2.5*24_SW-X16 is the adapter slot information of the material. The added installation attribute is "SW", indicating that the installation position of the material is the Switch board.
[0021] Of course, in other embodiments, the number of attribute items specifically included in the description information of the material, as well as the meaning represented by each attribute item, can be set and adjusted according to actual needs, which does not affect the implementation of the present invention. Table 1 only shows a relatively common implementation method. In the example of Table 1, the description information of the material includes multiple attribute items, which successively represent the classification number of the material, the abbreviation of the English name of the material, the applicable model of the material, the adapter slot information of the material, and the installation attribute of the material.
[0022] Step S102: Obtain a customization requirement file, select materials from the material library according to the customization requirement file, generate order information, and send it to the digital process system. Among them, the order information carries the description information of each selected material.
[0023] To meet the customization requirements of customers, it is necessary to obtain a customization requirement file that can reflect the customization requirements of customers, so as to select materials from the material library according to the customization requirement file, and then generate order information. It can be understood that the generated order information carries each material required for this assembly, that is, each material selected from the material library according to the customization requirements of customers, and the order information also needs to carry the description information of these materials respectively, so that the installation position can be located according to the description information subsequently.
[0024] Step S103: When a display instruction for any material in the order information is detected, obtain the description information of the material from the order information through the digital process system.
[0025] When a display instruction for any material in the order information is detected, it indicates that the production operator is performing assembly, and the material being assembled currently is the material pointed to by the display instruction.
[0026] In practical applications, the production operator can operate the computer by means such as mouse clicking and keyboard input, so that the computer front end can detect a display instruction for a certain material in the order information.
[0027] And in some cases, in order to further assist the work of the production operator and improve work convenience, a display instruction for the material in the order information can be generated by parsing the QR code image, and then the display instruction is sent to the computer front end, so that the computer front end detects a display instruction for a certain material in the order information. That is to say, in this implementation manner, for any material, a QR code image can be pre-pasted on the surface of the material for distinguishing different materials. When the production operator performs the assembly operation, the QR code image of the material can be scanned by a scanning device, so that a display instruction for the material can be automatically generated. It can be seen that compared with methods such as mouse clicking and keyboard input, the scanning operation is more convenient.
[0028] When a display instruction for any material in the order information is detected, it is equivalent to determining what the material that the production operator is currently assembling is. At this time, in the solution of this application, the description information of the material will be obtained from the order information through the digital process system. The specific type of the digital process system can be set and adjusted according to actual needs. For example, it can usually be a TCM digital process system.
[0029] Step S104: Based on the obtained description information, display the installation position and installation form of the material through a preset model.
[0030] After obtaining the description information of the material from the order information through the digital process system, the installation position and installation form of the material can be displayed. For example, in one case, if the material that the production operator is currently assembling is the network card 1 in the above example, through the digital process system, the description information of this material can be obtained as B_NIC_AMODEL_2.5*24_RISER-X16_RI, and then the display can be realized based on this description information. Specifically, the display can be realized through the digital process system. Still taking the TCM digital process system as an example, based on the description information of this material and combining the BOP (feeding rule) and ROP (installation rule) maintained by the TCM digital process system, the model of this material and the models of other surrounding materials that need to be assembled with this material can be determined. Moreover, by analyzing the description information of this material, the TCM digital process system can determine the installation attribute. In this example, the installation attribute of this material can be specifically determined as "RI", that is, it is determined that it needs to be installed on the RISER card. Then, by combining the BOP (feeding rule) and ROP (installation rule) maintained by the TCM digital process system, the installation position and installation form of this material can be automatically determined and displayed through the model, which is more convenient for the production operator to understand.
[0031] In addition, it should be noted that for materials with only a unique installation position, the installation position and installation form of the material can also be displayed through a preset model, which does not affect the implementation of the present invention. For example, in one case, the installation position of a certain material is uniquely determined, and the staff does not add an installation attribute to its description information. Then, when the production operator performs the assembly operation, the two-dimensional code image of this material can also be scanned by a scanning device, so that the digital process system can determine what material the production operator is currently assembling, that is, the description information of this material can be obtained from the order information. After obtaining the description information of this material, the installation position and installation form of this material can also be displayed through a preset model.
[0032] In a specific embodiment of the present invention, step S101 may specifically include: Receiving a description information adjustment instruction and determining the material specified by the description information adjustment instruction; Generating to-be-verified description information based on the description information adjustment instruction; Wherein, the to-be-verified description information carries an installation attribute for reflecting the installation position of the material; Verifying the to-be-verified description information, and after the verification passes, replacing the original description information of the material with the to-be-verified description information.
[0033] This implementation mode takes into account that when a description information adjustment instruction is received, it indicates that the staff currently needs to adjust the description information of a certain material. Therefore, the material specified by the description information adjustment instruction can be determined, and then based on the description information adjustment instruction, a to-be-verified description information is generated. That is, according to the description information adjustment instruction, the original description information is adjusted. However, at this time, it will not directly replace the original description information with it, but use it as the to-be-verified description information, which is equivalent to a temporary file and needs to be verified. And it can be understood that since the solution of this application needs to add installation attributes, therefore, the to-be-verified description information should carry installation attributes for reflecting the installation position of the material.
[0034] Then, the to-be-verified description information needs to be verified. If the verification passes, it indicates that there is no abnormality in the staff's current adjustment. Therefore, the to-be-verified description information can be used to replace the original description information of the material. Of course, if the verification fails, the to-be-verified description information can be discarded, so that the description information of the material remains the original description information. Through verification, this implementation mode can effectively improve the reliability of the obtained description information.
[0035] When verifying the to-be-verified description information, there can be multiple specific implementation manners. For example, in a specific implementation mode of the present invention, verifying the to-be-verified description information may include: Judging whether each pre-specified attribute item is carried in the to-be-verified description information; If each pre-specified attribute item is not carried, it is determined that the verification fails; If each pre-specified attribute item is carried, then judge whether the installation attribute in the to-be-verified description information is consistent with at least one installation attribute expression in the preset installation attribute expression library; If the installation attribute in the to-be-verified description information is consistent with at least one installation attribute expression in the preset installation attribute expression library, it is determined that the verification passes; If the installation attribute in the to-be-verified description information is not consistent with each installation attribute expression in the preset installation attribute expression library, it is determined that the verification fails.
[0036] This implementation mode takes into account that the solution of this application adds installation attributes to the description information. Therefore, generally speaking, in order to avoid errors, when adding installation attributes, other contents in the description information should not be adjusted casually. That is, other contents in the description information can follow the original content to reduce the probability of errors. Therefore, normally, each pre-specified attribute item should be carried in the to-be-verified description information without omission. In this implementation mode, if it is detected during verification that each pre-specified attribute item is not carried in the to-be-verified description information, it can be directly determined that the verification fails and the to-be-verified description information is discarded.
[0037] Only when each of the pre-specified attribute items is carried, will it be further determined whether the installation attribute conforms to the specified expression, that is, to determine whether the installation attribute in the description information to be verified is consistent with at least one installation attribute expression in the preset installation attribute expression library.
[0038] For example, the installation attribute in the description information to be verified is specifically "RI", and the installation attribute expression "RI" is also included in the preset installation attribute expression library. Therefore, it can be determined that the installation attribute in the description information to be verified is consistent with a certain installation attribute expression in the preset installation attribute expression library, and the verification is determined to pass. On the contrary, if the installation attribute in the description information to be verified is inconsistent with each installation attribute expression in the preset installation attribute expression library, it means that the staff has made an incorrect expression of the installation attribute, which does not conform to the previous regulations, and may cause the subsequent failure to successfully identify the installation attribute field. Therefore, the verification will be determined to fail.
[0039] In addition, in practical applications, in order to facilitate the work of the staff, a drop-down selection box for the installation attribute can be provided to the staff, so that the staff can only select the installation attribute from the drop-down selection box, and then automatically generate a description information adjustment instruction. When generating the description information to be verified according to such a description information adjustment instruction, the expression of the installation attribute can be effectively guaranteed to be an expression that can pass the verification, reducing the error probability.
[0040] In a specific implementation manner of the present invention, receiving the description information adjustment instruction and determining the material specified by the description information adjustment instruction may specifically include: Receiving the description information adjustment instruction through the product life cycle management system and determining the material specified by the description information adjustment instruction; Among them, the product life cycle management system is a product life cycle management system with the permission to output the description information adjustment instruction.
[0041] This implementation mode takes into account that adjusting the description information of materials will affect subsequent processes such as material preparation and assembly. Therefore, it is not allowed for staff to adjust the description information at will, but certain restrictions need to be imposed. In this implementation mode, only the description information adjustment instruction can be received through the product life cycle management system. That is to say, the product life cycle management system has the function of outputting the description information adjustment instruction. If the staff needs to adjust the description information of the material, they need to log in to the product life cycle management system and operate in the product life cycle management system to achieve the adjustment of the description information of the material. In other systems, such as the order system and the TCM system, the staff can only view the description information, such as specifically viewing the installation attributes in the description information, but cannot adjust the installation attributes. It can be seen that in this implementation mode, imposing restrictions on the adjustment of the description information is conducive to further ensuring reliability and reducing the probability of errors caused by the description information being modified at will.
[0042] In a specific implementation mode of the present invention, after receiving the description information adjustment instruction and determining the material specified by the description information adjustment instruction, it may further include: Judging whether the material specified by the description information adjustment instruction is currently in a non-occupied state; If not, enter a wait until the material returns to a non-occupied state; If so, set the material to an occupied state, and perform the operation of generating the to-be-verified description information based on the description information adjustment instruction. After replacing the original description information of the material with the to-be-verified description information, or after the to-be-verified description information fails to pass the verification, set the material back to a non-occupied state.
[0043] This implementation mode takes into account that in some cases, it may occur that multiple staff members adjust the description information of a certain material at the same time. Therefore, to avoid errors, after receiving the description information adjustment instruction and determining the material specified by the description information adjustment instruction, this implementation mode will judge whether the material specified by the description information adjustment instruction is currently in a non-occupied state. If not, it means that the material is in an occupied state, that is, at this time, there are other staff members who are adjusting the description information of the material. Therefore, at this time, it is necessary to enter a wait until the material returns to a non-occupied state.
[0044] If it is detected that the material is in a non-occupied state, it indicates that no other staff member is adjusting the description information of the material at this time. Therefore, the material can be set to the occupied state, and then the subsequent operation of generating the to-be-verified description information based on the description information adjustment instruction can be executed. After the adjustment, if the to-be-verified description information is used to replace the original description information of the material, it indicates that the adjustment is completed, and the material can be restored to the non-occupied state. Of course, if the to-be-verified description information fails the verification, it can also be determined that the adjustment is completed, and the material can be restored to the non-occupied state.
[0045] It can be seen that this implementation method takes into account the conflict situation where multiple staff members adjust the description information of a certain material at the same time, and further reduces the error probability of the description information.
[0046] In a specific implementation manner of the present invention, it may further include: After receiving the description information adjustment instruction and determining the material specified by the description information adjustment instruction, receive the explanatory text of the installation attribute in the description information of the material. Correspondingly, verifying the to-be-verified description information includes: verifying the to-be-verified description information based on the explanatory text.
[0047] This implementation method further considers that when adding an installation attribute to the description information of the material, an explanatory text for the installation attribute in the description information of the material can also be added. For example, the last column in Table 1 above is the explanatory text of the installation attribute. The installation attribute can be more easily understood through the explanatory text.
[0048] And in this implementation method, when verifying the to-be-verified description information, the to-be-verified description information can be verified in combination with the explanatory text. For example, it can be determined whether the explanatory text conflicts with the installation attribute. For a specific installation attribute, it can be determined that conflict words are pre-set for this installation attribute, and then it is judged whether such conflict words exist in the explanatory text. If they exist, it can be determined that the to-be-verified description information fails the verification. For example, if the installation attribute of a certain material is RI, then among the conflict words pre-set for this installation attribute, there can be SW and Switch. If such conflict words exist in the explanatory text, it can be regarded that the expression of the explanatory text conflicts with the installation attribute, that is, it can be determined that the to-be-verified description information fails the verification.
[0049] In addition, in this implementation method, since there is an explanatory text, the reviewer can also verify the to-be-verified description information based on the explanatory text.
[0050] As described above, when verifying the description information to be verified, the specific verification method can be set according to actual needs. Multiple verification methods are listed above, and one or a combination of multiple verification methods can be selected according to needs in actual applications. When the description information to be verified passes all verifications, it can be used to replace the original description information.
[0051] In a specific embodiment of the present invention, based on the obtained description information, the installation position and installation form of the material are displayed through a preset model, including: Based on the obtained description information, through a preset three-dimensional model, the installation position and installation form of the material are displayed in a dynamic display manner.
[0052] This embodiment takes into account that when displaying the installation position and installation form of the material through a preset model based on the obtained description information, a three-dimensional model can be specifically used to achieve the display. Since it is the assembly of the material, the display of the three-dimensional model is more conducive to production operators to understand the installation position and installation form of the material compared to the display of two-dimensional images. And in this embodiment, the installation position and installation form of the material are displayed in a dynamic display manner, which can further assist production operators to understand the installation position and installation form of the material.
[0053] Of course, there are multiple specific dynamic display methods. For example, the preset three-dimensional model can automatically rotate slowly. Another example is that for the material being assembled currently, the model of the material and the slot to be installed can both flash or light up, so that production operators can clearly identify the installation position and installation form of the material.
[0054] In the solution of this application, by adding module-level descriptions, that is, adding installation attributes to the description information, the transfer of customer customization requirements can be realized, and the installation positions of materials can be effectively determined. Specifically, for each specified material in the material library, installation attributes for reflecting the installation position of the material are added to the description information of the material. Subsequently, a customization requirement file reflecting the customer's customization requirements can be obtained, and then materials can be selected from the material library according to the customization requirement file to generate order information reflecting the customer's customization requirements and send it to the digital process system. And it can be understood that the order information carries the respective description information of each selected material, and for the specified materials in the order information, the description information has installation attributes reflecting the installation positions of the materials. Subsequently, when a display instruction for any material in the order information is detected, the description information of the material can be obtained from the order information through the digital process system. Furthermore, based on the obtained description information, the installation position of the material can be effectively determined, that is, if the material has multiple installable positions, the installation position of the material can be effectively located through the installation attributes in the description information. And in the solution of this application, the installation position and installation form of the material will be displayed through a preset model, so as to more effectively assist the installation work of production operators. In addition, it can be seen that the solution of this application realizes the determination of the installation position of the material without the need for technical review as in the traditional solution, and there will be no problems such as long processes in the traditional solution, which affect material preparation and delivery.
[0055] In summary, in the solution of this application, it can effectively assist production operators to conveniently and quickly determine the installation positions of materials without affecting material preparation and delivery.
[0056] Corresponding to the above method embodiment, the embodiment of the present invention also provides a material installation management system, which can be mutually corresponding and referred to with the above text.
[0057] See Figure 2 As shown in the figure, it is a schematic structural diagram of a material installation management system in the present invention, including: A description information addition module 201, which is used to add installation attributes for reflecting the installation position of the material to the description information of each specified material in the material library; An order information generation module 202, which is used to obtain a customization requirement file, select materials from the material library according to the customization requirement file, generate order information and send it to the digital process system; wherein, the order information carries the respective description information of each selected material; An order loading module 203, which is used to obtain the description information of the material from the order information through the digital process system when a display instruction for any material in the order information is detected; A display module 204, configured to display the installation position and installation form of the material based on the acquired description information through a preset model.
[0058] In a specific embodiment of the present invention, the description information adding module 201 includes: An adjustment instruction receiving unit, configured to receive a description information adjustment instruction and determine the material specified by the description information adjustment instruction; A to-be-verified description information generating unit, configured to generate to-be-verified description information based on the description information adjustment instruction; wherein, the to-be-verified description information carries an installation attribute for reflecting the installation position of the material; A verification unit, configured to verify the to-be-verified description information, and after the verification passes, replace the original description information of the material with the to-be-verified description information.
[0059] In a specific embodiment of the present invention, verifying the to-be-verified description information includes: Judging whether each pre-specified attribute item is carried in the to-be-verified description information; If not all pre-specified attribute items are carried, it is determined that the verification fails; If each pre-specified attribute item is carried, judging whether the installation attribute in the to-be-verified description information is consistent with at least one installation attribute expression in a preset installation attribute expression library; If the installation attribute in the to-be-verified description information is consistent with at least one installation attribute expression in the preset installation attribute expression library, it is determined that the verification passes; If the installation attribute in the to-be-verified description information is inconsistent with each installation attribute expression in the preset installation attribute expression library, it is determined that the verification fails.
[0060] In a specific embodiment of the present invention, the adjustment instruction receiving unit is specifically configured to: Receive the description information adjustment instruction through a product life cycle management system and determine the material specified by the description information adjustment instruction; wherein, the product life cycle management system is a product life cycle management system with the permission to output the description information adjustment instruction.
[0061] In a specific embodiment of the present invention, it further includes an occupancy status determination unit, configured to: After the adjustment instruction receiving unit receives the description information adjustment instruction and determines the material specified by the description information adjustment instruction, judge whether the material specified by the description information adjustment instruction is currently in a non-occupied state; If not, enter a waiting state until the material resumes to a non-occupied state; If so, set the material to the occupied state, trigger the unit for generating the description information to be verified, and after replacing the original description information of the material with the description information to be verified, or after the description information to be verified fails the verification, restore the material to the non-occupied state.
[0062] In a specific embodiment of the present invention, it further includes an explanatory text receiving unit for: After receiving the description information adjustment instruction and determining the material specified by the description information adjustment instruction, receive the explanatory text for the installation attributes in the description information of the material; Correspondingly, verifying the description information to be verified includes: Verifying the description information to be verified based on the explanatory text.
[0063] In a specific embodiment of the present invention, the display module 204 is specifically used for: Based on the obtained description information, through a preset three-dimensional model, display the installation position and installation form of the material in a dynamic display manner.
[0064] Corresponding to the above method and system embodiments, the embodiments of the present invention further provide an electronic device, a computer-readable storage medium, and a computer program product, which can be correspondingly referred to above.
[0065] See Figure 3 As shown, the device may include: A memory 301 for storing computer programs; A processor 302 for executing the computer program to implement the steps of the material installation management method in any of the above embodiments.
[0066] The computer program product includes computer programs / instructions, and when the computer programs / instructions are executed by the processor, the steps of the material installation management method in any of the above embodiments are implemented.
[0067] For reference, Figure 4 , a computer program 41 is stored on the computer-readable storage medium 40, and when the computer program 41 is executed by the processor, the steps of the material installation management method in any of the above embodiments are implemented. The computer-readable storage medium 40 mentioned here includes RAM (Random Access Memory), memory, ROM (Read-Only Memory), EEPROM (Electrically Erasable Programmable Read Only Memory), registers, hard disks, removable disks, or any other form of storage medium known in the technical field.
[0068] Those skilled in the art can further realize that the units and algorithm steps of each example described in combination with the embodiments disclosed herein can be implemented by electronic hardware, computer software, or a combination of the two. To clearly illustrate the interchangeability of hardware and software, the composition and steps of each example have been generally described according to functions in the above description. Whether these functions are executed in a hardware or software manner depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered to exceed the scope of this application.
[0069] The above has introduced in detail a method, system, device, and storage medium for material installation management provided by this application. Specific examples are used herein to elaborate on the principle and implementation manner of this application. The description of the above embodiments is only used to help understand the method and its core idea of this application. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of this application, several improvements and modifications can also be made to this application, and these improvements and modifications also fall within the protection scope of this application.
Claims
1. A method for material installation management, characterized in that, Including: For each specified material in the material library, an installation attribute for reflecting the installation position of the material is added to the description information of the material; Obtain a customization requirement file, select materials from the material library according to the customization requirement file, generate order information and send it to the digital process system; wherein, the description information of each selected material is carried in the order information; When a display instruction for any material in the order information is detected, obtain the description information of the material from the order information through the digital process system; Based on the obtained description information, display the installation position and installation form of the material through a preset model.
2. The material installation management method according to claim 1, characterized in that For each specified material in the material library, adding an installation attribute for reflecting the installation position of the material to the description information of the material includes: Receive a description information adjustment instruction and determine the material specified by the description information adjustment instruction; Generate to-be-verified description information based on the description information adjustment instruction; Wherein, an installation attribute for reflecting the installation position of the material is carried in the to-be-verified description information; Verify the to-be-verified description information, and after the verification passes, use the to-be-verified description information to replace the original description information of the material.
3. The material installation management method according to claim 2, wherein Verifying the to-be-verified description information includes: Judge whether each pre-specified attribute item is carried in the to-be-verified description information; If not all pre-specified attribute items are carried, it is determined that the verification fails; If all pre-specified attribute items are carried, judge whether the installation attribute in the to-be-verified description information is consistent with at least one installation attribute expression in a preset installation attribute expression library; If the installation attribute in the to-be-verified description information is consistent with at least one installation attribute expression in the preset installation attribute expression library, it is determined that the verification passes; If the installation attribute in the to-be-verified description information is inconsistent with each installation attribute expression in the preset installation attribute expression library, it is determined that the verification fails.
4. The material installation management method according to claim 2, wherein Receiving a description information adjustment instruction and determining the material specified by the description information adjustment instruction includes: Receive a description information adjustment instruction through a product life cycle management system and determine the material specified by the description information adjustment instruction; Wherein, the product life cycle management system is a product life cycle management system with the permission to output the description information adjustment instruction.
5. The material installation management method according to claim 2, characterized in that After receiving the description information adjustment instruction and determining the material specified by the description information adjustment instruction, it further includes: Judge whether the material specified by the description information adjustment instruction is currently in a non-occupied state; If not, enter a waiting state until the material returns to a non-occupied state; If so, set the material to an occupied state, execute the operation of generating to-be-verified description information based on the description information adjustment instruction, and after using the to-be-verified description information to replace the original description information of the material, or after the to-be-verified description information fails the verification, restore the material to a non-occupied state.
6. The material installation management method according to claim 2, wherein, It also includes: After receiving a description information adjustment instruction and determining the material specified by the description information adjustment instruction, receive an explanatory text for the installation attribute in the description information of the material; Accordingly, verify the to-be-verified description information, including: Verify the to-be-verified description information based on the explanatory text.
7. The material installation management method according to any one of claims 1 to 6, characterized in that, Based on the obtained description information, display the installation position and installation form of the material through a preset model, including: Based on the obtained description information, display the installation position and installation form of the material in a dynamic display manner through a preset three-dimensional model.
8. A material installation management system, characterized in that Including: A description information addition module for adding, in the description information of each specified material in the material library, an installation attribute for reflecting the installation position of the material; An order information generation module for obtaining a customization requirement file, selecting materials from the material library according to the customization requirement file, generating order information and sending it to the digital process system; wherein, the order information carries the description information of each selected material; An order loading module for obtaining the description information of the material from the order information through the digital process system when a display instruction for any material in the order information is detected; A display module for displaying the installation position and installation form of the material through a preset model based on the obtained description information.
9. An electronic device, characterized in that, Including: A memory for storing a computer program; A processor for implementing the steps of the material installation management method according to any one of claims 1 to 7 when executing the computer program.
10. A computer-readable storage medium, characterized in that, A computer program is stored in the computer-readable storage medium, wherein the computer program implements the steps of the material installation management method according to any one of claims 1 to 7 when executed by a processor.
Citation Information
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