Arrangement system of welding line body, electronic device and welding line body

Through the layout system of welding and assembly line bodies, the station building module and layout adjustment module are used to generate a plan sketch, which solves the problem of lack of standardization in the layout of welding and assembly line bodies, and realizes the standardized layout and efficient work of welding and assembly line bodies.

CN116160156BActive Publication Date: 2025-07-29GREAT WALL MOTOR CO LTD
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Patent Information

Application Number
CN202310081064.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-07
Publication Date
2025-07-29
Estimated Expiration
2043-02-07

AI Technical Summary

Technical Problem

The welding line body lacks standardization during the layout process, resulting in poor process smoothness, repeated construction of process flow, out-of-synchronization of the front and back design work, and low work efficiency.

Method used

The layout system of welding wire body is adopted, including station construction module, information input module, station adjustment module and layout adjustment module. By generating plan sketches, 3D layout coordinate adjustment and fence filling, the layout and layout of the standard station library is standardized.

Benefits of technology

It improves the work efficiency of welding and assembly line business, reduces dependence on experienced personnel, simplifies the adjustment of the layout of the subsequent sequence plan, and improves process efficiency and work standardization.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses an arrangement system for a welding line body, an electronic device, and a welding line body. The arrangement system for the welding line body includes: a station construction module for constructing a standard station library; an information input module for inputting product information; a station adjustment module for adjusting the arrangement of the standard station library according to the working capacity of a single automatic welding device and the number of automatic welding devices, and generating a schematic diagram of the solution; and a layout adjustment module for performing 3D layout coordinate adjustment and fence complement according to the schematic diagram of the solution. Thus, by providing a station construction module, an information input module, a station adjustment module, and a layout adjustment module in the arrangement system, the arrangement system can adjust the arrangement of the standard station library, generate a sketch, and perform 3D layout coordinate adjustment and fence complement according to the sketch, so that the layout of the welding line body business can be standardized, and the working efficiency of the welding line body business can be improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of automated production lines, and in particular, to an arrangement system for a welding production line, an electronic device, and a welding production line. Background Art

[0002] With the progress of technology and the development of the manufacturing industry, production lines are widely used in factories. Among them, before the welding production line operates, it is necessary to use different software to perform scheme layout, scheme feasibility verification, and simulation verification according to the received upstream data. After verification without problems, the corresponding forms are sent to subsequent suppliers for production.

[0003] During the verification process before the operation of the welding production line, due to the lack of standardization in the layout and the involvement of multiple different software, the process smoothness in the welding production line business is poor, the process flow needs to be repeatedly built, and after the pre-order product scheme is changed, the subsequent process cannot be updated synchronously, resulting in the out-of-sync of the pre-order and post-order design work and low work efficiency in the welding production line business. Summary of the Invention

[0004] The present invention aims to solve at least one of the technical problems existing in the prior art. For this purpose, the present invention provides an arrangement system for a welding production line, which can improve work efficiency.

[0005] The present invention further provides an electronic device.

[0006] The present invention further provides a welding production line.

[0007] The arrangement system for a welding production line according to an embodiment of the present invention includes: a station construction module for constructing a standard station library; an information input module for inputting product information; a station adjustment module that interacts with the information input module and the station construction module respectively, for obtaining the working ability of a single automatic welding device according to the product information, and obtaining the number of automatic welding devices, and adjusting the arrangement of the standard station library according to the working ability of a single automatic welding device and the number of automatic welding devices, and generating a schematic diagram of the scheme; a layout adjustment module that interacts with the station adjustment module, for performing 3D layout coordinate adjustment and fence complement according to the schematic diagram of the scheme.

[0008] Therefore, by setting a station construction module, an information input module, a station adjustment module, and a layout adjustment module in the arrangement system, the arrangement system can adjust the arrangement of the standard station library, generate a sketch, and perform 3D layout coordinate adjustment and fence complement according to the sketch, so that the layout of the welding production line business can be standardized and the work efficiency of the welding production line business can be improved.

[0009] According to some embodiments of the present invention, the station construction module includes: a parameter input unit for inputting process parameters at the top level of the in-line process; a construction unit for building a standard station library and maintaining standard man-hour information, wherein the standard station library includes a plurality of automatic welding stations and a plurality of manual welding stations; and a confirmation unit for confirming the priorities of the plurality of automatic welding stations and the plurality of manual welding stations in combination with the process parameters, and confirming the station forms of the automatic welding stations and the manual welding stations.

[0010] According to some embodiments of the present invention, the process parameters include at least one of the automation rate and the production capacity. The confirmation unit includes: a priority confirmation subunit for confirming the priorities of the automatic welding stations and the manual welding stations in combination with the automation rate; and a station form confirmation subunit for confirming the station forms of the automatic welding stations and the manual welding stations in combination with the production capacity.

[0011] According to some embodiments of the present invention, the parameter input unit includes: a parameter extraction unit for extracting product parameter information from the product digital model; and a station information confirmation unit for confirming the main layout process information of the stations under different production capacities according to the daily work experience of the welding line process.

[0012] According to some embodiments of the present invention, the product parameter information includes at least one of the product welding classification structure, the number of solder joint information, and the number of stud welding information.

[0013] According to some embodiments of the present invention, the scheme sketch includes at least one of the station name, the quantity configuration of the automatic welding devices, the number of solder joints per station, and the remaining number of solder joints.

[0014] According to some embodiments of the present invention, the layout system of the welding line further includes: a structure construction module for constructing the process plant structure of the welding line; a resource generation module for calculating the line common resources according to the resource data; and a file generation module for interacting with the structure construction module and the resource generation module, and generating an equipment list and a timing diagram according to the process plant structure and the line common resources.

[0015] According to some embodiments of the present invention, the layout system of the welding line further includes: a manual adjustment module for interacting with the station adjustment module and manually adjusting and optimizing the scheme sketch.

[0016] The electronic device according to the present invention includes: a processor, a memory, and a layout program of the welding line stored on the memory and executable on the processor. When the layout program of the welding line is executed by the processor, the above-mentioned layout system of the welding line is implemented.

[0017] The welding line body according to the present invention includes the above-mentioned electronic device.

[0018] Additional aspects and advantages of the present invention will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The above and / or additional aspects and advantages of the present invention will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0020] Figure 1 is a schematic diagram of a welding line body according to an embodiment of the present invention;

[0021] Figure 2 is a schematic diagram of a station construction module according to an embodiment of the present invention;

[0022] Figure 3 is a schematic diagram of a parameter input unit according to an embodiment of the present invention;

[0023] Figure 4 is a schematic diagram of a confirmation unit according to an embodiment of the present invention.

[0024] Reference Signs:

[0025] 100, arrangement system of the welding line body;

[0026] 10, station construction module; 11, parameter input unit; 111, parameter extraction unit; 112, station information confirmation unit; 12, building unit; 13, confirmation unit; 131, priority confirmation subunit; 132, station form confirmation subunit;

[0027] 20, information input module; 30, station adjustment module; 40, layout adjustment module; 50, structure construction module;

[0028] 60, resource generation module; 70, file generation module; 80, manual adjustment module. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] Embodiments of the present invention will be described in detail below. The embodiments described with reference to the drawings are exemplary. Embodiments of the present invention will be described in detail below.

[0030] The following figure is for reference Figures 1 - 4 to describe the arrangement system 100 of the welding line body according to an embodiment of the present invention.

[0031] In the prior art, different software is used in the construction of the welding line body business. After the welding line body receives the upstream data from CATIA-V6, AutoCAD is used to plan the layout of the welding line body, CATIA-V5 is used to verify the feasibility of the plan, and TC or PS is used to verify the simulation of the plan. After the verification is completed without problems, corresponding forms are made and sent to the subsequent suppliers. This process involves at least five different software, resulting in poor smoothness of the front and back processes of the welding line body business. In addition, due to the repeated construction of the technological process of the welding line body, or after the information and plan of the previous product are changed, the subsequent plan and verification work of the welding line body business cannot be updated synchronously. This leads to out-of-sync front and back design work of the welding line body business, inconvenient layout adjustment, high modification frequency, and high work repetition rate during the business adjustment process, resulting in low work efficiency of the welding line body business.

[0032] Combined with Figure 1 As shown in the figure, the arrangement system 100 of the welding line body according to the embodiment of the present invention may mainly include: a station construction module 10, an information input module 20, a station adjustment module 30, and a layout adjustment module 40. Among them, the station construction module 10 can be used to construct a standard station library, the information input module 20 can be used to input product information, and the station adjustment module 30 interacts with the information input module 20 and the station construction module 10. In this way, according to the product information, the working ability of a single automatic welding device can be obtained, the number of automatic welding devices can be obtained, and the arrangement of the standard station library can be adjusted according to the working ability of a single automatic welding device and the number of automatic welding devices, and a schematic plan can be generated. On the one hand, this can not only improve the convenience of arranging and adjusting the standard station library, but also improve the timeliness of generating the schematic plan, effectively improving the work efficiency of the front-end business of the welding line body. On the other hand, it can unify the working standards of the layout and the schematic plan in the welding line body business, not only reducing the dependence on experienced personnel, improving the process efficiency, but also facilitating the adjustment of the subsequent plan layout.

[0033] Furthermore, the layout adjustment module 40 interacts with the station adjustment module 30 and is used to adjust the 3D layout coordinates and complete the fence according to the schematic plan. Specifically, the layout adjustment module 40 interacts with the station adjustment module 30, which can ensure the information flow between the layout adjustment module 40 and the station adjustment module 30. The layout adjustment module 40 is used to adjust the 3D layout coordinates and complete the fence according to the schematic plan. With such a setting, not only can a 3D layout be quickly constructed, facilitating the subsequent verification work of the welding line body, but also when the previous data changes, it can be adjusted in a timely manner, significantly improving the problem of out-of-sync front and back work of the welding line body and effectively improving the work efficiency of the welding line body business.

[0034] Thus, by setting up the workstation construction module 10, information input module 20, workstation adjustment module 30, and layout adjustment module 40 in the layout system, the layout system can adjust the layout of the standard workstation library, generate a sketch, and perform 3D layout coordinate adjustment and fence filling based on the sketch, thereby standardizing the layout of the welding line body business and improving the work efficiency of the welding line body business.

[0035] Combined with Figure 2 As shown, the workstation construction module 10 includes a parameter input unit 11, a construction unit 12, and a confirmation unit 13. The parameter input unit 11 is used to input process parameters at the top layer of the line process. The construction unit 12 is used to construct the standard workstation library for maintaining standard working hour information. Among them, the standard workstation library includes multiple automatic welding workstations and multiple manual welding workstations. The confirmation unit 13 is used to confirm the priority of the automatic welding workstations and manual welding workstations in combination with the process parameters, and confirm the workstation forms of the automatic welding workstations and manual welding workstations.

[0036] Specifically, the parameter input unit 11 is set at the top layer of the line process. When initially constructing the standard workstation library in the layout system 100 of the welding line body, it is necessary to input process parameters through the parameter input unit 11. This can enable the standard workstation library of the layout system 100 of the welding line body to be constructed according to the specific process parameters of the welded product, improve the accuracy and convenience of constructing the standard workstation library, shorten the construction time of the standard workstation library in the layout system 100 of the welding line body, and further improve the construction efficiency of the standard workstation library in the layout system 100 of the welding line body, and improve the work efficiency of the welding line body.

[0037] Furthermore, after the layout system 100 of the welding line body completes inputting the process parameters, the construction unit 12 constructs the standard workstation library and maintains the standard working hour information. Among them, the standard workstation library includes multiple automatic welding workstations and multiple manual welding workstations. Specifically, maintaining the information of the standard working hours is included in constructing the standard workstation library. This can enable the layout system 100 of the welding line body to standardize the working hours of the welding line body, improve the standardization of the working hours of the welding line body by the layout system 100 of the welding line body, be conducive to improving the work standardization of the welding line body. The standard workstation library includes multiple automatic welding workstations and multiple manual welding workstations, and can realize the standardized construction of multiple automatic welding workstations and multiple manual welding workstations by the layout system 100 of the welding line body.

[0038] Further, the confirmation unit 13 combines process parameters to confirm the priorities of multiple automatic welding stations and multiple manual welding stations in the standard station library, and to confirm the station forms of multiple automatic welding stations and multiple manual welding stations. Specifically, after the layout system 100 of the welding line body builds the standard station library, the confirmation unit 13 of the layout system 100 of the welding line body combines process parameters to confirm the priorities of automatic welding stations and manual welding stations, and to confirm the station forms of automatic welding stations and manual welding stations. This enables the layout system 100 of the welding line body to confirm the priorities of automatic welding stations and manual welding stations in the welding line body according to process parameters, as well as the station forms of automatic welding stations and manual welding stations, so that the layout system 100 of the welding line body has the ability to adjust the standard station library according to process parameters.

[0039] In an embodiment of the present invention, the process parameters include at least one of automation rate and production capacity. The confirmation unit 13 includes: a priority confirmation subunit 131 and a station form confirmation subunit 132. Among them, the priority confirmation subunit 131 is used to confirm the priorities of multiple automatic welding stations and multiple manual welding stations in combination with the automation rate; the station form confirmation subunit 132 is used to confirm the station forms of multiple automatic welding stations and multiple manual welding stations in combination with the production capacity.

[0040] Specifically, the process parameters include production capacity and automation rate. The production capacity can represent the number of products that the welding line body can produce within a planned time, or the quantity of raw materials that can be processed. Combining the production capacity to confirm the station form of the standard station library enables the layout system 100 of the welding line body to confirm the station form of the standard station library in the welding line body according to the production capacity, so that the station form of the standard station library of the welding line body can be adjusted according to the planned production capacity, thereby enabling the layout system 100 of the welding line body to improve the working efficiency of the welding line body under the corresponding production capacity.

[0041] Further, the automation rate can represent the ability of the layout system 100 of the welding line body to achieve automated production under the construction of the standard station library. Combining the automation rate to confirm the station form of the standard station library enables the layout system 100 of the welding line body to confirm the station forms of multiple automatic welding stations and multiple manual welding stations in the welding line body according to the automation rate, so that the station forms of multiple automatic welding stations and multiple manual welding stations in the welding line body can be adjusted according to the automation requirements of the welding line body, thereby enabling the layout system 100 of the welding line body to improve the working efficiency of the welding line body and achieve the automation rate of the welding line body.

[0042] Combined with Figure 3As shown in the figure, the parameter input unit 11 includes: a parameter extraction unit 111 and a station information confirmation unit 112. Among them, the parameter extraction unit 111 is used to extract product parameter information from the product digital model; the station information confirmation unit 112 is based on the daily work experience of the welding line process and the main layout process information of the standard station library under different production capacities.

[0043] Specifically, inputting product information to the layout system 100 of the welding line includes extracting product parameter information from the product digital model. In this way, the welding line can directly obtain product information, which can improve the efficiency of inputting product information to the layout system 100 of the welding line, and can enable the layout system 100 of the welding line to construct the standard station library more quickly, thereby improving the working efficiency of the welding line.

[0044] Furthermore, after the layout system 100 of the welding line extracts the product parameter information from the product digital model, it is based on the daily work experience of the welding line process and the main layout process information of the standard station library under different production capacities. Specifically, based on the daily work experience of the welding line process and the main layout process information of the standard station library under different production capacities, such a setting can enable the welding line to quickly confirm the main layout process of the standard station library, improve the confirmation efficiency of the main layout process of the standard station library by the welding line, and further improve the working efficiency of the welding line. In the embodiment of the present invention, the main layout process is a standard process and does not include the repair welding station.

[0045] In the embodiment of the present invention, the product parameter information includes at least one of the product welding grading structure, the number of solder joint information, and the number of stud welding information. Specifically, when the layout system 100 of the welding line extracts the product parameter information from the product digital model, it at least includes extracting the product welding grading structure, the number of solder joint information, and the number of stud welding and other quantity information. In this way, it can facilitate the layout system 100 of the welding line to confirm the working forms of multiple automatic welding stations and multiple manual welding stations in the standard station library of the welding line, and can facilitate the layout system 100 of the welding line to confirm the main layout process of the standard station library under different production capacities according to the daily work experience of the welding line process, making the welding line more precise during operation and improving the working efficiency and working quality of the welding line.

[0046] In an embodiment of the present invention, the schematic layout plan includes at least one of the station name, the configuration of the number of automatic welding and assembling devices, the number of weld points per station, and the remaining number of weld points. Specifically, after the forms of each station in the main layout process are determined, the layout system 100 of the welding line can obtain the working ability of a single automatic welding and assembling device according to the input product information and the beat, and obtain the number of automatic welding and assembling devices at this station. The layout system 100 of the welding line can perform station layout according to the obtained results and generate a schematic layout plan. The sketch information includes at least the station name, the configuration of the number of automatic welding and assembling devices, the number of weld points per station, and the remaining number of weld points. In an embodiment of the present invention, the obtained results of the layout system 100 of the welding line can be optimized manually, so as to prevent errors between the sketch plan generated by the layout system 100 of the welding line and the actual station layout. After manual optimization, the subsequent station parameters of the layout system 100 of the welding line can be adjusted and optimized, which can ensure the timeliness of the welding line process change and improve the working efficiency of the welding line.

[0047] Further, when the layout system 100 of the welding line obtains that the number of automatic welding and assembling devices at this station exceeds the maximum number of automatic welding and assembling devices at this station, the layout system 100 of the welding line sets it according to the full configuration of the station and adds a repair welding station. The principle for the layout system 100 of the welding line to obtain the number of automatic welding and assembling devices at the repair welding station is the same as that for obtaining the number of automatic welding and assembling devices at this station in the main layout process until the remaining number of weld points is 0, and then stop adding repair welding stations.

[0048] Further, when the layout system 100 of the welding line obtains that the number of automatic welding and assembling devices at this station does not exceed the maximum number of automatic welding and assembling devices at this station, the layout system 100 of the welding line confirms the station layout according to the obtained number and generates a sketch. When the layout system 100 of the welding line confirms the station layout, it is confirmed according to the extraction priority of the automatic welding and assembling devices in the standard station library.

[0049] Combined Figure 1 As shown, the layout system 100 of the welding line further includes: a structure construction module 50, a resource generation module 60, and a file generation module 70. The structure construction module 50 is used to construct the process factory structure of the welding line. The resource generation module 60 is used to calculate the line common resources according to the resource data. The file generation module 70 interacts with the structure construction module 50 and the resource generation module 60, and generates an equipment list and a timing diagram according to the process factory structure and the line common resources. In an embodiment of the present invention, the process factory structure of the welding line includes the process structure of the welding line and the factory structure of the welding line.

[0050] Specifically, the layout system 100 of the welding line body further includes a structure construction module 50, a resource generation module 60, and a document generation module 70. The structure construction module 50 can construct the process structure of the welding line body and the factory structure of the welding line body. The resource generation module 60 can calculate the common resources of the line body according to the resource data. In the embodiments of the present invention, the common resources of the line body include, but are not limited to, distribution cabinets and batteries, which can ensure that the layout system 100 of the welding line body is convenient for subsequent production. The document generation module 70 interacts with the structure construction module 50 and the resource generation module 60 to maintain information circulation, and generates an equipment list and a timing diagram according to the process factory structure of the welding line body and the common resources of the line body. The equipment list and the timing diagram can be sent to subsequent suppliers, which is convenient for the operation of the welding line body. With such settings, the layout system 100 of the welding line body can automatically generate report documents, etc., which can improve the document compilation efficiency.

[0051] After the pre-sequence input information or process parameters change, the layout system 100 of the welding line body can re-obtain the common resources of the line body, adjust the 3D layout coordinates and complete the fence according to the generated sketch plan, and can generate an equipment list and a timing diagram according to the generated line body structure and common resource data. This can facilitate the layout system 100 of the welding line body to extract information according to the generated line body structure and common resource data, and generate documents, which can ensure the accuracy of the generated documents.

[0052] Furthermore, the layout system 100 of the welding line body further includes a manual adjustment module 80. The manual adjustment module 80 interacts with the station adjustment module 30 and is used to manually adjust and optimize the sketch plan. Specifically, the manual adjustment module 80 is set in the layout system 100 of the welding line body. The manual adjustment module 80 interacts with the station adjustment module 30 and is used to manually adjust and optimize the sketch plan. This can artificially optimize the layout adjustment of the standard station library, and can reduce the error between the standard station library generated by the layout system 100 of the welding line body, the sketch plan, and the actual layout of the welding line body. After the artificial optimization of the manual adjustment module 80, the subsequent station parameters of the layout system 100 of the welding line body can be adjusted and optimized accordingly, which can ensure the timeliness of the welding line body process change and improve the working efficiency of the welding line body.

[0053] The electronic device according to the embodiments of the present invention may mainly include: a processor, a memory, and a layout program of the welding line body stored on the memory and executable on the processor. When the layout program of the welding line body is executed by the processor, it implements the layout system 100 of the welding line body as described above. Thus, applying the layout program of the welding line body stored on the memory to the processor, under the processing of the processor, the layout program of the welding line body can implement the layout system 100 of the welding line body as described above. To improve the working efficiency of the welding line body, it will not be elaborated here.

[0054] The welding line according to the embodiment of the present invention may mainly include: the above-mentioned electronic device. The electronic device can reduce the personnel's participation in the arrangement of the welding line. In this way, not only can the business standardization of the welding line be improved, and the solution differences caused by different manual levels can be avoided, but also the working efficiency of the welding line can be improved. After the process parameters are adjusted, the welding line can quickly generate new solutions and 3D layouts, which can shorten the R & D time of the whole vehicle and improve the R & D efficiency of the vehicle. In addition, the welding line can generate and update documents such as equipment lists and timing diagrams, which can not only improve the document compilation efficiency, but also improve the accuracy of document compilation.

[0055] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0056] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example.

[0057] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and purposes of the present invention, and the scope of the present invention is defined by the claims and their equivalents.

Claims

1. An arrangement system (100) for a welding line body, characterized in that, Including: A station construction module (10) for constructing a standard station library. The station construction module (10) includes: A parameter input unit (11) for inputting process parameters at the top level of the line process. An erection unit (12) for erecting a standard station library and maintaining standard man-hour information. Among them, the standard station library includes multiple automatic welding stations and multiple manual welding stations. A confirmation unit (13) for confirming the priorities of the automatic welding stations and manual welding stations in combination with the process parameters, and confirming the station forms of the automatic welding stations and manual welding stations. Among them, the parameter input unit (11) includes: A parameter extraction unit (111) for extracting product parameter information from the product digital model. A station information confirmation unit (112) for confirming the main layout process information of the stations under different production capacities according to the daily work experience of the welding line process. An information input module (20) for inputting product parameter information. A station adjustment module (30) that interacts with the information input module (20) and the station construction module (10) respectively, for obtaining the working ability of a single automatic welding device according to the product parameter information, and obtaining the number of the automatic welding devices, and adjusting the layout of the standard station library according to the working ability of a single automatic welding device and the number of the automatic welding devices, and generating a schematic diagram of the solution. A layout adjustment module (40) that interacts with the station adjustment module, for performing 3D layout coordinate adjustment and fence completion according to the schematic diagram of the solution.

2. The arrangement system (100) of the welding line body according to claim 1, characterized in that, The process parameters include at least one of the automation rate and the production capacity. The confirmation unit (13) includes: A priority confirmation subunit (131) for confirming the priorities of the automatic welding stations and manual welding stations in combination with the automation rate. A station form confirmation subunit (132) for confirming the station forms of the automatic welding stations and manual welding stations in combination with the production capacity.

3. The layout system (100) of the welding line body according to claim 1, characterized in that, The product parameter information includes at least one of the product welding grading structure, the number of solder joint information, and the number of stud welding information.

4. The layout system (100) of the welding line body according to claim 1, characterized in that, The schematic diagram of the solution includes at least one of the station name, the configuration of the number of automatic welding devices, the number of solder joints per station, and the remaining number of solder joints.

5. The layout system (100) of the welding line body according to claim 1, characterized in that, The arrangement system (100) of the welding line also includes: A structure construction module (50) for constructing the process factory structure of the welding line. A resource generation module (60) for calculating the line common resources according to the resource data. A file generation module (70) that interacts with the structure construction module (50) and the resource generation module (60), and generates an equipment list and a timing diagram according to the process factory structure and the line common resources.

6. The layout system (100) of the welding line body according to claim 1, characterized in that, It also includes: A manual adjustment module (80) that interacts with the station adjustment module (30) for manually adjusting and optimizing the schematic diagram of the solution.

7. An electronic device, characterized in that, Including: A processor, a memory, and the arrangement system (100) of the welding line according to any one of claims 1-6 stored on the memory and operable on the processor.

8. A welding line body, characterized in that, Including the electronic device according to claim 7.

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