Digitalized design system for winding drum group
Through the digital design system, the visual parameter driving module and part database are used to automatically generate the roll group engineering drawings, which solves the problems of low design efficiency and insufficient standardization in the existing technology, and realizes the digital and serial design of the roll group.
Patent Information
- Application Number
- CN202510247695.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2025-06-10
AI Technical Summary
The existing reel set design process is inefficient, error-prone, lack of standardization and serialization, resulting in high time costs and design effectiveness depends on the designer's level.
It adopts a digital design system, including client and remote server, uses visual parameter driver module, UI control data manager and part database to realize the digital design of the reel group, and automatically generates engineering drawings through logical calculations.
The digitalization, standardization and serialization of roll group design is realized, the design efficiency is improved, and the generation process of engineering drawings is simplified.
Smart Images

Figure CN120123014A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of drum design, and in particular to a digital design system for a drum group. Background Art
[0002] As is well known, the drum group is an important load-bearing component in the hoisting mechanism of a crane. The use of the drum group is almost indispensable in various occasions where material hoisting, equipment installation, and maintenance are required. In different usage scenarios, the structural forms of the drum group are different, and non-standard design of the engineering drawings of the drum group is often required. Currently, the common practice is for design engineers to perform manual proportional lofting of the drum group and then draw the engineering drawings of the drum group according to the lofting results. However, manual proportional lofting and drawing of the engineering drawings of the drum group often waste a considerable amount of time, have low efficiency, are prone to errors, and have relatively low standardization. The drawing effect completely depends on the design level and efficiency of the designer, which is not conducive to the standardization and serialization of the drum group. With the increasingly fierce market competition and the progress of science and technology, the requirements for the design efficiency and interchangeability of non-standard drum groups are getting higher and higher. Drawing the engineering drawings of the drum group in the existing design method requires a considerable amount of time cost. Therefore, how to simplify the design process of the drum group and the generation process of the engineering drawings is an urgent problem to be solved in the industry. Summary of the Invention
[0003] In order to overcome the deficiencies in the background art and solve the existing technical problems, the present invention discloses a digital design system for a drum group, which can digitalize, standardize, and serialize the drum group design based on software logic calculation and system modules, and improve the design efficiency of the drum group.
[0004] To achieve the above object, the present invention adopts the following technical solutions: A digital design system for a drum set, comprising a client and a remote server that are signal-connected to each other; the client includes a digital design unit for human-computer interaction visualization, a display device for displaying the digital design unit, and a drawing module driven by the digital design unit to draw engineering drawings of each component of the drum set; the remote server includes a drum set design module, a visualization parameter driving module, a UI control data manager, and a parameter file, the parameter file is used to store the part parameters in the drum set design module, the visualization parameter driving module includes a visualization object set for drawing visualization graphics in the digital design unit, and the UI control data manager is used to display the visualization object set in the digital design unit; the drum set design module includes a part database, dynamic block elements, and a calculation and processing module, the part database stores the dimension parameters, structure parameters, and material information of each part of the drum set, and the dynamic block elements are used to draw the graphics of the engineering drawings of each component of the drum set; the digital design unit can transfer the part data inside the part database to the visualization parameter driving module, and the visualization parameter driving module can feedback the visualization object set to the drum set design module through the UI control data manager, and after passing through the calculation and processing module, it is displayed in the digital design unit of the display device in the form of dynamic block elements.
[0005] Further, the visualization parameter driving module further includes a parameter monitoring module, the parameter monitoring module can transfer the parameters inside the parameter file to the drum set design module, the drum set design module compares and analyzes the parameters of each component in the parameter file with the part database, makes a logical judgment through the calculation and processing module, and displays the final result in the digital design unit through the display device, so as to ensure that the drum set design module can obtain the part parameters transferred from the digital design unit during operation.
[0006] Further, the digital design unit can display the component data inside the part database in the form of visualization graphics in the drawing area of the digital design unit.
[0007] Further, the digital design unit has the functions of parameter reading and parameter saving, can read the design parameters in the form of a text file into the digital design unit and assign them to the corresponding design parameters, and can also save the design parameters of the drum set into a text file for application to subsequent drum designs.
[0008] Further, the digital design unit has a real-time visualization parameter driving function, modifying the dimensions on the visualization parameter driving graphics can drive the visualization parameter driving graphics to change accordingly, so as to realize the parametric design of the drum set graphics and drawings.
[0009] Further, the digital design unit can drive the graphics according to the design parameters and visualization parameters, and drive the drawing module to draw the engineering drawings and Bom detail information of the reel group and each component.
[0010] Further, the dynamic block primitive includes graphic elements, annotation elements, and Bom detail elements required for drawing each component of the reel group.
[0011] Further, the visualization object set includes straight lines, curves, and dimension lines required for visual drawing.
[0012] Due to the above-mentioned technical solution, the present invention has the following beneficial effects: In the reel group digital design system disclosed by the present invention, only the design engineer needs to operate the digital design unit and the corresponding drawing module on the client side, input the design parameters in the digital design unit, and the system of the present invention can automatically generate the visualization parameter-driven graphics of the reel group according to the internally encapsulated database and calculation logic, modify the structure and size of the visualization parameter-driven graphics according to the design requirements, and automatically call the drawing module to generate the engineering drawings of the reel group and its components, simplifying the process of the design engineer drawing the engineering drawings, making the design of the reel group digital, standardized, and serialized, and improving the design efficiency of the reel group. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a schematic block diagram of the implementation structure of the present invention; Figure 2 is the first display schematic diagram of the digital design unit; Figure 3 is the second display schematic diagram of the digital design unit; Figure 4 is the third display schematic diagram of the digital design unit.
[0014] In the figure: 11, client; 12, remote server; 13, reel group design module; 14, UI control data manager; 15, parameter file; 16, visualization parameter drive module; 17, visualization object set; 18, parameter monitoring module; 19, calculation processing module; 20, dynamic block primitive; 21, part database; 22, digital design unit; 23, drawing module; 24, display device. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0015] Next, the technical solutions of the present invention will be described in conjunction with the accompanying drawings in the embodiments of the present invention.
[0016] Combined with the attached Figure 1The described digital design system for a drum group includes a client 11 and a remote server 12 that are connected by signals, that is, the client 11 can be operated to be networked to the remote server 12; the client 11 includes a digital design unit 22 for human-computer interaction visualization, a display device 24 for displaying the digital design unit 22, and a drawing module 23 driven by the digital design unit 22 to draw engineering drawings of each component of the drum group; the remote server 12 includes a drum group design module 13, a visualization parameter driving module 16, a UI control data manager 14, and a parameter file 15. The parameter file 15 is used to store the part parameters in the drum group design module 13. The visualization parameter driving module 16 includes a visualization object set 17 for drawing visualization graphics in the digital design unit 22. The visualization object set 17 includes straight lines, curves, and dimension lines required for drawing visualization graphics and is stored in a class library. The UI control data manager 14 is used to accurately display the parameters in the visualization parameter driving module and the visualization object set 17 in the digital design unit 22 through the drum group design module 13; the drum group design module 13 includes a part database 21, dynamic block primitives 20, and a calculation and processing module 19. The part database 21 stores the dimension parameters, structural parameters, and material information of each part and each part of the drum group. The dynamic block primitives 20 include graphic elements, annotation elements, and Bom detail elements required for drawing each component of the drum group and are stored in a template file for drawing the graphics of the engineering drawings of each component of the drum group. The digital design unit 22 can transfer the data of each part inside the part database 21 to the visualization parameter driving module 16. The visualization parameter driving module 16 can feedback the visualization object set 17 to the drum group design module 13 through the UI control data manager 14, and after passing through the calculation and processing module 19, it is displayed in the digital design unit 22 of the display device 24 in the form of dynamic block primitives 20. As needed, the visualization parameter driving module 16 further includes a parameter monitoring module 18. The parameter monitoring module 18 can transfer the parameters inside the parameter file 15 to the drum group design module 13. The drum group design module 13 compares and analyzes the parameters of each component in the parameter file 15 with the part database 21, makes a logical judgment through the calculation and processing module 19, and displays the final result in the digital design unit 22 through the display device 24 to ensure that the drum group design module 13 can obtain the part parameters transferred from the digital design unit 22 during operation.
[0017] As needed, the digital design unit 22 can display the component data inside the component database 21 in the form of visual graphics in the drawing area of the digital design unit 22; after the parameters in the design parameter table of the digital design unit 22 are determined, the drum group design module 13 can screen out the required component design parameters from the component database 21 according to the determined parameters and convert them into visual graphics for display in the drawing area of the digital design unit 22; the digital design unit 22 has the functions of parameter reading and parameter saving, can read the design parameters in the form of text files into the digital design unit 22 and assign them to the corresponding design parameters, and can also save the design parameters of the drum group into text files for application to subsequent drum designs; the digital design unit 22 has a real-time visual parameter driving function, and modifying the dimensions on the visual parameter driving graphics can drive the visual parameter driving graphics to change accordingly to achieve parametric design of the drum group graphics and drawings; the digital design unit 22 can drive the drawing module 23 to draw the engineering drawings and Bom detailed information of the drum group and each component according to the design parameters and the visual parameter driving graphics.
[0018] Implementing the drum group digital design system of the present invention, as shown in the appendix Figures 2 - 4As shown in the figure, the digital design unit 22 includes a drawing area for the reel group, reading parameter d, saving parameter e, engineering drawing f, and component display list g. When the component name corresponding to the component display list g is selected, its color turns red, and at the same time, the visualization parameter-driven graph a, engineering drawing b, and design parameter table c of the reel group are displayed in the drawing area of the reel group. The design parameter table c consists of design parameters, codes, and values. Design engineers can select and modify the design parameters of the reel group and its components according to design requirements. According to the parameters in the selected design parameter table c, the reel group design module 13 converts them into the parameters of the corresponding parts, so as to screen the data parameters of each component inside the part database 21 and display them in the visualization parameter-driven graph a in the form of a visualization graph. Its parameter drive is distributed on the dimension markings or text remarks of the visualization parameter-driven graph a and is displayed on the visualization graph in the form of a red frame. By modifying the dimension graph in the red frame, the shape and size of the corresponding graph can be changed in real time, so as to achieve the purpose of real-time display of the graph structure and size of the reel group. There are buttons for reading parameter d and saving parameter e in the upper right corner of the drawing area of the reel group. Clicking "Read Parameter" can read the original saved design parameters of the reel group into the digital design unit 22, and then continue the design of the reel group. Clicking "Save Parameter" can save the current design parameters of the reel group to a text document for application to future reel group designs. Select the drawing list: The component display list g includes components such as the reel group, reel, reel body, connecting plate, end panel, lining plate, reel short shaft, reinforcing plate, coupling flange assembly, etc. Clicking on the corresponding name in the component display list g automatically switches the visualization parameter-driven graph a, engineering drawing b, and design parameter table c of the drawn component in the drawing area of the reel group. Select the square box in front of the corresponding component name in the component display list g to record the components for which engineering drawings are to be drawn. Draw engineering drawings: After determining the basic parameters and design parameters of the reel group, according to the selected component display list g, the reel group design module 13 calls the drawing module 23 to draw the corresponding engineering drawing b according to the parameters called by the UI control data manager 14 through the part family table.
[0019] The parts not detailed in the present invention are prior art. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the above embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention, and any reference signs in the claims should not be regarded as limiting the content of the claims involved.
Claims
1. A reel group digital design system, characterized by: The invention comprises a client (11) and a remote server (12) which are connected to each other by signals; the client (11) comprises a digital design unit (22) for visualizing human-computer interaction, a display device (24) for displaying the digital design unit (22), and a drawing module (23) driven by the digital design unit (22) for drawing engineering drawings of various parts of a reel assembly; the remote server (12) comprises a reel assembly design module (13), a visualization parameter driving module (16), a UI control data manager (14) and a parameter file (15); the parameter file (15) is used to store the part parameters in the reel assembly design module (13); the visualization parameter driving module (16) comprises a visualization object set (17) for drawing visualization graphics in the digital design unit (22); and the UI control data manager (14) is used to display the visualization object set (17) in the digital design unit (22); The reel assembly design module (13) comprises a parts database (21), a dynamic block graphic element (20) and a calculation processing module (19), wherein the parts database (21) stores the size parameters, structural parameters and material information of each part of the reel assembly, and the dynamic block graphic element (20) is used to draw the graphics of the engineering drawings of each component of the reel assembly; The digital design unit (22) is capable of transmitting each part data in the part database (21) to the visualization parameter driving module (16), and the visualization parameter driving module (16) is capable of feeding back the visualization object set (17) to the reel group design module (13) through the UI control data manager (14), and after passing through the calculation processing module (19), displaying it in the form of dynamic block graphics (20) in the digital design unit (22) of the display device (24).
2. The reel assembly digital design system according to claim 1, characterized in that: The visual parameter driving module (16) further comprises a parameter monitoring module (18), wherein the parameter monitoring module (18) is capable of transmitting the parameters in the parameter file (15) to the reel group design module (13), wherein the reel group design module (13) compares and analyzes the parameters of each component in the parameter file (15) with the component database (21), performs logical judgment through the calculation processing module (19), and displays the final result in the digital design unit (22) through the display device (24), so as to ensure that the reel group design module (13) can obtain the component parameters transmitted by the digital design unit (22) during operation.
3. The reel assembly digital design system according to claim 1, characterized in that: The digital design unit (22) can display the data of each component in the component database (21) in the form of a visual graphic in a drawing area of the digital design unit (22).
4. The reel assembly digital design system according to claim 1, characterized in that: The digital design unit (22) has parameter reading and parameter saving functions, and can read design parameters in the form of a text file into the digital design unit (22) and assign values to corresponding design parameters, and can also save the design parameters of the reel group into a text file for application in subsequent reel design.
5. The reel group digital design system according to claim 1 is characterized in that: The digital design unit (22) has a real-time visual parameter driving function. Modifying the size of the visual parameter driving graphic can drive the visual parameter driving graphic to change accordingly, thereby realizing the parametric design of the reel group graphic and the drawing.
6. The reel assembly digital design system according to claim 1, characterized in that: The digital design unit (22) can drive graphics according to design parameters and visualization parameters, and drive the drawing module (23) to draw engineering drawings and Bom detailed information of the reel group and each component.
7. The reel assembly digital design system according to claim 1, characterized in that: The dynamic block graphic element (20) comprises graphic elements, annotation elements and Bom detail elements required for drawing various components of the reel assembly.
8. The reel assembly digital design system according to claim 1, characterized in that: The visualization object set (17) includes straight lines, curves and dimension lines required for visually drawing graphics.