Creation Method, System, Electronic Device and Storage Medium of Square Steel Platform

By obtaining the frame, profile and support leg data of the square steel platform, and automatically building the square steel platform using electronic equipment or storage media, the complex and error-prone problems in the existing technology are solved, and the convenient and automated construction of the square steel platform is realized.

CN116108544BActive Publication Date: 2025-08-01SHANGHAI WAIGAOQIAO SHIP BUILDING CO LTD
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Patent Information

Application Number
CN202310262724.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-17
Publication Date
2025-08-01
Estimated Expiration
2043-03-17

AI Technical Summary

Technical Problem

The construction process of the existing square steel platform is cumbersome and prone to errors, and is time-consuming and labor-intensive.

Method used

By obtaining the frame data, profile data and support leg data of the square steel platform, using electronic equipment or storage media to automatically build the frame, select the type of square steel and build the support leg to achieve automated construction.

Benefits of technology

It improves the convenience of building the Fanggang platform, can better meet diversified needs, reduce manual errors, and improve efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a method for creating a square steel platform, including: step S1, obtaining the border data, profile data, distance data, and support leg data of the square steel platform; step S2, constructing the border of the square steel platform according to the border data of the square steel platform; step S3, selecting square steel of the type of square steel to build a square steel platform within the border of the square steel platform; step S4, constructing support legs according to the support leg data. A system for creating a square steel platform is also disclosed, including: a data acquisition module for obtaining the border data, profile data, distance data, and support leg data of the square steel platform; a square steel platform border construction module for constructing the border of the square steel platform according to the border data of the square steel platform; a square steel platform construction module for building the square steel platform; a support leg construction module for constructing support legs. An electronic device and its storage medium are also disclosed. The present invention saves time and effort and can construct a square steel platform that better meets the diverse needs of users and construction.
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Description

Technical Field

[0001] The present invention relates to the technical field of engineering construction, and specifically to a method, system, electronic device, and storage medium for creating a square steel platform. Background Art

[0002] The square steel platform is made of square steel. The square steel is a long strip structure with a square cross-section and is made of steel. It has a strong and durable structure. The square steel platform is often used in engineering construction and can be used as an operating platform to carry engineering construction and personnel passage, with a wide range of uses. However, the existing square steel platforms need to be constructed manually by designers for each part one by one, which is very cumbersome, time-consuming and laborious, and is very prone to errors. Summary of the Invention

[0003] The purpose of the present invention is to provide a method, system, electronic device, and storage medium for creating a square steel platform to overcome the defect of inconvenient construction of the square steel platform in the prior art.

[0004] The technical solution to achieve the above purpose is:

[0005] The method for creating a square steel platform according to one of the present inventions includes:

[0006] Step S1, obtaining the border data, profile data, distance data, and support leg data of the square steel platform;

[0007] Step S2, constructing the border of the square steel platform according to the border data of the square steel platform;

[0008] Step S3, selecting square steel of the square steel type to build a square steel platform within the border of the square steel platform;

[0009] Step S4, constructing support legs according to the support leg data.

[0010] Preferably, the border data of the square steel platform includes a reference border; the profile data includes the type of square steel; the distance data includes the spacing between square steels and the spacing between the square steel and the border of the square steel platform;

[0011] The spacing between square steels and the spacing between the square steel and the border of the square steel platform both match the distance data, and the square steel forms a predetermined angle with the reference border.

[0012] Preferably, the profile data in step S1 further includes whether the angle steel is turned downwards. At this time, the specific steps of constructing the border of the square steel platform according to the border data of the square steel platform include:

[0013] Step S21, when the profile data indicates that the angle steel is turned downwards, the angle steel of the border of the square steel platform is turned downwards;

[0014] Step S22: When the profile data indicates that the angle steel is turned upwards, turn upwards the angle steel of the square steel platform frame.

[0015] Preferably, the support leg data includes whether the square steel platform has support legs, the type of the support legs being horizontal support legs or vertical support legs, the number of support legs, and the distance between the support legs and the square steel platform frame.

[0016] When the support leg data indicates that the square steel platform has the support legs, set the support legs for the square steel platform according to the type of the support legs, the number of support legs, and the distance between the support legs and the square steel platform frame.

[0017] Preferably, the support leg data further includes the angle of the inclined support legs, and the angle of the inclined support legs is the angle between the inclined support legs and the horizontal support legs.

[0018] The specific step S4 of setting the support legs for the square steel platform according to the type of the support legs, the number of support legs, and the distance between the support legs and the square steel platform frame includes:

[0019] When the support leg data indicates that the type of the support legs is the horizontal support legs, a plurality of the horizontal support legs are parallel to the square steel, and the number of the horizontal support legs is equal to the number of support legs.

[0020] When the angle of the inclined support legs is greater than zero, the number of the inclined support legs is also equal to the number of support legs, and a plurality of the inclined support legs and a plurality of the horizontal support legs are arranged in one-to-one correspondence according to the angle of the inclined support legs, and the common end of each group of the horizontal support legs and the inclined support legs is arranged on the reference frame or the square steel platform frame opposite to the reference frame.

[0021] When the support leg data indicates that the type of the support legs is the vertical support legs, the vertical support legs are vertically arranged on the square steel platform, and a plurality of the vertical support legs are symmetrically arranged in pairs on the reference frame and the square steel platform frame opposite to the reference frame, and the number of the vertical support legs located on the reference frame or the square steel platform frame opposite to the reference frame is equal to the number of support legs.

[0022] The square steel platform creation system according to the second aspect of the present invention includes:

[0023] A data acquisition module for acquiring square steel platform frame data, profile data, distance data, and support leg data;

[0024] A square steel platform frame construction module for constructing the square steel platform frame according to the square steel platform frame data;

[0025] A square steel platform construction module for building a square steel platform;

[0026] A support leg construction module for constructing support legs.

[0027] An electronic device according to the third aspect of the present invention, comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, wherein when the processor executes the computer program, the method for creating a square steel platform according to any one of claims 1-5 is implemented.

[0028] A computer-readable storage medium according to the fourth aspect of the present invention, on which a computer program is stored, and when the computer program is executed by a processor, the method for creating a square steel platform according to any one of claims 1-5 is implemented.

[0029] The beneficial effects of the present invention are as follows: By obtaining the data of the square steel platform border to construct the square steel platform border and using the reference border to build the square steel, the construction of the square steel platform is made more convenient and it is easier to meet the diverse requirements of engineering construction for the square steel platform; By using the profile data to select the type of square steel for building the square steel platform, a square steel platform built with the target type of square steel can be directly created; By using the distance data to set the spacing between square steels at a specified interval and set the spacing between the square steel and the square steel platform border according to the distance data, the position setting between the internal structures of the square steel platform is made easier to meet the needs of users; By obtaining the support leg data to set the support legs, users can set the support legs that meet the requirements according to the actual application scenario of the square steel platform, so that a square steel platform that more conforms to the diverse requirements of users and construction can be constructed. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 is a flowchart of the method for creating a square steel platform of the present invention;

[0031] Figure 2 is another flowchart of the method for creating a square steel platform of the present invention;

[0032] Figure 3 is a schematic diagram of the parameter interface of the method for creating a square steel platform of the present invention;

[0033] Figure 4 is a schematic diagram of the selection of the reference border of the method for creating a square steel platform of the present invention;

[0034] Figure 5 is a schematic diagram of the selection of the border of the method for creating a square steel platform of the present invention;

[0035] Figure 6 is a schematic diagram of the parameters of the vertical support legs of the method for creating a square steel platform of the present invention;

[0036] Figure 7Schematic diagram of the parameters of the three horizontal support legs of the method for creating the square steel platform of the present invention;

[0037] Figure 8 Schematic diagram of the parameters of the two horizontal support legs of the method for creating the square steel platform of the present invention;

[0038] Figure 9 Preview schematic diagram of the method for creating the square steel platform of the present invention;

[0039] Figure 10 Completion schematic diagram of the method for creating the square steel platform of the present invention;

[0040] Figure 11 Module schematic diagram of the system for creating the square steel platform of the present invention;

[0041] Figure 12 Schematic diagram of the structure of the electronic device of the present invention. Detailed implementation manners

[0042] Next, the technical solutions of the present invention will be clearly and completely described in conjunction with the accompanying drawings. In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is 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. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0043] Next, the present invention will be further described in conjunction with the accompanying drawings.

[0044] Embodiment 1

[0045] This embodiment discloses a method for creating a square steel platform. As Figure 1-2 shown, the method for creating the square steel platform includes the following steps:

[0046] Step S1, obtaining the border data, profile data, distance data, and support leg data of the square steel platform.

[0047] As Figure 3 shown, the user can set various parameters according to needs.

[0048] Among them, as Figure 4 and Figure 5As shown, the data of the square steel platform border includes the square steel platform border and the reference border. The square steel platform border is set by the user according to requirements in a certain size. The thick border is the reference border selected by the user. After the reference border is selected, the square steel can be erected perpendicular to the reference border. Then, the user successively selects the remaining sides of the square steel platform according to needs, and the thick border is the border selected by the user.

[0049] The profile data includes whether the angle steel turns down, the type of square steel, the profile standard, the cross-section type, the profile specification, and the profile material. Whether the angle steel turns down indicates whether the angle steel of the square steel platform border turns up or down; the type of square steel is used to indicate the type of square steel used; the profile standard is used to indicate the standard of the profile used; the cross-section type is used to indicate the cross-section of the profile used; the profile specification is used to indicate the size of the cross-section of the profile used; the profile material is used to indicate the material of the profile used.

[0050] Refer to Figure 6 , Figure 7 and Figure 8 , the distance data (i.e., parameter options) includes the spacing between square steels and the spacing between the square steel and the square steel platform border (i.e., the distance between the square steel and the horizontal side, the distance between the square steel and the vertical side).

[0051] The support leg data includes whether the square steel platform has support legs (according to the check box of whether there are legs), the length of the support legs. Optionally, the data of the support legs can also include the type of the support legs being horizontal support legs or vertical support legs (according to the check box of horizontal support legs), the angle of the inclined support legs, the distance between the support legs and the square steel platform border (the distance between the outer legs and the side), the number of support legs (the number of support legs), and the distance between the vertical legs.

[0052] Step S2, construct the square steel platform border according to the square steel platform border data.

[0053] Construct the square steel platform border according to the square steel platform frame with a certain size constructed by the user in the square steel platform border data.

[0054] Step S21, when the profile data indicates that the angle steel turns down, turn down the angle steel of the square steel platform border;

[0055] Step S22, when the profile data indicates that the angle steel turns up, turn up the angle steel of the square steel platform border.

[0056] Step S3, select square steel of the selected type of square steel to build a square steel platform within the square steel platform border.

[0057] Select the type of square steel, profile standard, cross-section type, profile specification, and profile material in the profile data, and build a square steel platform within the frame of the square steel platform. The spacing between the square steels and the spacing between the square steels and the frame of the square steel platform both match the distance data (the spacing between square steels, the distance between the square steel and the horizontal side, and the distance between the square steel and the vertical side), and each square steel is perpendicular to the reference frame.

[0058] Step S4, construct the support legs according to the support leg data.

[0059] When the support leg data indicates that the square steel platform has support legs, further identify the type of support legs. The type of support legs can be defaulted to vertical support legs. When the support legs are vertical support legs, the vertical support legs are vertically arranged on the square steel platform, and the vertical support legs are respectively arranged on the reference frame and the frame of the square steel platform opposite to the reference frame, and the vertical support legs on both sides are symmetrically arranged in pairs.

[0060] The number of vertical support legs arranged on the reference frame and the number of vertical support legs arranged on the frame of the square steel platform opposite to the reference frame are both equal to the number of support legs in the support leg data.

[0061] The horizontal distance from the outermost support leg to the frame of the square steel platform is equal to the distance from the outer leg to the side in the support leg data; the distance between the support legs is evenly set.

[0062] When the support leg data indicates that the type of support legs is horizontal support legs, the number of horizontal support legs is equal to the number of support legs in the support leg data. A number of horizontal support legs are parallel to the square steels of the square steel platform, and a number of horizontal support legs are perpendicular to the reference frame.

[0063] When the support leg data indicates that the type of support legs is horizontal support legs, the angle of the inclined support legs can be set. When the angle of the inclined support legs is greater than zero, the number of inclined support legs and the number of horizontal support legs are both equal to the number of support legs. A number of inclined support legs and a number of horizontal support legs are arranged in one-to-one correspondence according to the angle of the inclined support legs. The common end of each group of horizontal support legs and inclined support legs is arranged on the reference frame or the frame of the square steel platform opposite to the reference frame, and the angle between the horizontal support legs and the inclined support legs is equal to the angle of the inclined support legs in the support leg data.

[0064] Refer to Figure 9 And Figure 10 , click the "Preview" button to generate a preview, and click the "Finish" button to complete the creation of the square steel platform.

[0065] The configuration file path of this method can be restricted to be modifiable only by the administrator.

[0066] In this embodiment, the border data of the square steel platform is obtained to construct the border of the square steel platform, and the square steel is erected by means of the reference border, making the construction of the square steel platform more convenient and easier to meet the diverse requirements of engineering construction for the square steel platform; the type of square steel for building the square steel platform is selected according to the profile data, so that a square steel platform built with the square steel of the target type can be directly created; the distance between the square steels is set according to the specified spacing by the distance data, and the distance between the square steel and the border of the square steel platform is set according to the distance data, making the position setting between the internal structures of the square steel platform easier to meet the needs of users; the support legs are set by obtaining the support leg data, and users can set the support legs that meet the requirements according to the actual application scenario of the square steel platform, so that a square steel platform that better meets the diverse requirements of users and construction can be constructed.

[0067] Embodiment 2

[0068] This embodiment discloses a creation system for a square steel platform, referring to Figure 11 , including a data acquisition module 1, a square steel platform border construction module 2, a square steel platform construction module 3, and a support leg construction module 4.

[0069] The data acquisition module 1 is used to acquire the border data of the square steel platform, profile data, distance data, and support leg data.

[0070] Among them, the border data of the square steel platform includes the border of the square steel platform and the reference border. The border of the square steel platform is set by the user according to the requirements and a certain size. After selecting the reference border, the square steel can be erected perpendicular to the reference border.

[0071] The profile data includes whether the angle steel is turned downwards, the type of square steel, the profile standard, the cross-section type, the profile specification, and the profile material. Whether the angle steel is turned downwards indicates whether the angle steel of the border of the square steel platform is turned upwards or downwards; the type of square steel is used to indicate the type of square steel used; the profile standard is used to indicate the standard of the profile used; the cross-section type is used to indicate the cross-section of the profile used; the profile specification is used to indicate the size of the cross-section of the profile used; the profile material is used to indicate the material of the profile used.

[0072] The distance data (i.e., parameter options) includes the distance between the square steels, and the distance between the square steel and the border of the square steel platform (i.e., the distance of the square steel from the horizontal side and the distance of the square steel from the vertical side).

[0073] The support leg data includes whether the square steel platform has support legs (according to the ticking situation of the checkbox for whether there are legs), the length of the support legs. Optionally, the data of the support legs can also include the type of the support legs, whether they are horizontal support legs or vertical support legs (according to the ticking situation of the checkbox for horizontal support legs), the angle of the inclined support legs, the distance between the support legs and the border of the square steel platform (the distance of the outer legs from the side), the number of support legs (the number of support legs), and the distance between the vertical legs.

[0074] The square steel platform border construction module 2 is used to construct the square steel platform border.

[0075] Construct the square steel platform border according to the square steel platform frame of a certain size constructed by the user in the square steel platform border data. When the profile data indicates that the angle steel turns downwards, the angle steel of the constructed square steel platform border turns downwards; when the profile data indicates that the angle steel turns upwards, the angle steel of the constructed square steel platform border turns upwards.

[0076] The square steel platform construction module 3 is used to build the square steel platform.

[0077] Select the square steel of the selected square steel type, profile standard, cross-section type, profile specification and profile material in the profile data to build the square steel platform within the border of the square steel platform. The spacing between the square steels and the spacing between the square steels and the square steel platform border both match the distance data (square steel spacing, distance from the square steel to the horizontal side, distance from the square steel to the vertical side), and each square steel is perpendicular to the reference border.

[0078] The support leg construction module 4 is used to construct the support legs.

[0079] When the support leg data indicates that the square steel platform has support legs, further identify the type of support legs. The type of support legs can be defaulted to vertical support legs. When the support legs are vertical support legs, the vertical support legs are vertically arranged on the square steel platform. The vertical support legs are respectively arranged on the reference border and the square steel platform border opposite to the reference border, and the vertical support legs on both sides are symmetrically arranged in pairs.

[0080] The number of vertical support legs arranged on the reference border and the number of vertical support legs arranged on the square steel platform border opposite to the reference border are both equal to the number of support legs in the support leg data.

[0081] The horizontal distance from the outermost support leg to the square steel platform border is equal to the distance from the outer leg to the side in the support leg data; the distance between the support legs is evenly set.

[0082] When the support leg data indicates that the type of support legs is horizontal support legs, the number of horizontal support legs is equal to the number of support legs in the support leg data. A number of horizontal support legs are parallel to the square steels of the square steel platform, and a number of horizontal support legs are perpendicular to the reference border.

[0083] When the type of the support leg characterized in the support leg data is a horizontal support leg, the angle of the inclined support leg can be set. When the angle of the inclined support leg is greater than zero, the number of the inclined support legs and the number of the horizontal support legs are both equal to the number of the support legs. A plurality of inclined support legs and a plurality of horizontal support legs are arranged in one-to-one correspondence according to the angle of the inclined support leg. The common end of each group of horizontal support legs and inclined support legs is arranged on the reference frame or the square steel platform frame opposite to the reference frame, and the angle between the horizontal support leg and the inclined support leg is equal to the angle of the inclined support leg in the support leg data.

[0084] In this embodiment, the square steel platform frame is constructed by obtaining the square steel platform frame data, and the square steel is built through the reference frame, making the construction of the square steel platform more convenient and easier to meet the diverse requirements of engineering construction for the square steel platform; the type of the square steel for building the square steel platform is selected through the profile data, so that a square steel platform built with the square steel of the target type can be directly created; the distance between the square steels is set according to the specified spacing through the distance data, and the distance between the square steel and the square steel platform frame is set according to the distance data, making the position setting between the internal structures of the square steel platform easier to meet the needs of users; the support legs are set by obtaining the support leg data, and the user can set the support legs that meet the requirements according to the actual application scenario of the square steel platform, so that a square steel platform that more meets the diverse requirements of users and construction can be constructed.

[0085] Embodiment III

[0086] Figure 12 It is a schematic structural diagram of an electronic device provided in this embodiment. The electronic device includes a memory 32, a processor 31, and a computer program stored on the memory and executable on the processor. When the processor 31 executes the program, the method for creating the square steel platform in Embodiment I is implemented. Figure 12 The displayed electronic device 30 is only an example and should not bring any restrictions to the functions and usage ranges of the embodiments of the present invention.

[0087] As Figure 12 shown, the electronic device 30 can be presented in the form of a general computing device, for example, it can be a server device. The components of the electronic device 30 may include, but are not limited to: at least one of the above-mentioned processors 31, at least one of the above-mentioned memories 32, and a bus 33 connecting different system components (including the memory 32 and the processor 31).

[0088] The bus 33 includes a data bus, an address bus, and a control bus.

[0089] The memory 32 may include volatile memory, such as a random access memory (RAM) 321 and / or a cache memory 322, and may further include a read-only memory (ROM) 323.

[0090] The memory 32 may also include a program / utilities 325 having a set (at least one) of program modules 324. Such program modules 324 include, but are not limited to: an operating system, one or more application programs, other program modules, and program data. Each or some combination of these examples may include the implementation of a network environment.

[0091] The processor 31 executes various functional applications and data processing by running computer programs stored in the memory 32, such as the method for creating a square steel platform according to Embodiment 1 of the present invention.

[0092] The electronic device 30 can also communicate with one or more external devices 34 (such as a keyboard, a pointing device, etc.). Such communication can be carried out through the I / O (input / output) interface 35. Moreover, the device 30 for model generation can also communicate with one or more networks (such as a LAN (local area network), a WAN (wide area network), and / or a public network, such as the Internet) through the network adapter 36. As shown in the figure, the network adapter 36 communicates with other modules of the device 30 for model generation through the bus 33. Not shown in the figure, other hardware and / or software modules can be used in combination with the device 30 for model generation, including but not limited to: microcode, device drivers, redundant processors, external disk drive arrays, RAID (redundant array of independent disks) systems, tape drives, and data backup storage systems, etc.

[0093] In the above, several units / modules or sub-units / modules of the electronic device are mentioned, but this division is merely exemplary and not mandatory. In fact, according to the embodiments of the present invention, the features and functions of the above two or more units / modules can be embodied in one unit / module. Conversely, the features and functions of the above one unit / module can be further divided and embodied by multiple units / modules.

[0094] Embodiment Four

[0095] This embodiment provides a computer-readable storage medium, on which a computer program is stored. When the program is executed by a processor, the steps of the method for creating a square steel platform according to Embodiment 1 are implemented.

[0096] Among them, the readable storage medium can more specifically include, but is not limited to: a portable disk, a hard disk, a random access memory, a read-only memory, an erasable programmable read-only memory, an optical storage device, a magnetic storage device, or any suitable combination of the above.

[0097] In a possible implementation manner, the present invention can also be implemented in the form of a program product, which includes program code. When the program product runs on a terminal device, the program code is used to cause the terminal device to execute the steps of the method for creating a square steel platform according to Embodiment 1.

[0098] Among them, the program code for implementing the present invention can be written in any combination of one or more programming languages, and the program code can be executed entirely on the user device, partially on the user device, executed as an independent software package, partially on the user device and partially on a remote device, or entirely on a remote device.

[0099] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. Method for creating a square steel platform, characterized in that Including: Step S1, obtaining the data of the square steel platform frame, profile data, distance data, and support leg data; Step S2, constructing the square steel platform frame according to the square steel platform frame data; Step S3, selecting square steel of a certain type of square steel to build a square steel platform within the square steel platform frame; Step S4, constructing support legs according to the support leg data; The square steel platform frame data includes a reference frame; the profile data includes the type of square steel; the distance data includes the distance between square steels and the distance between the square steel and the square steel platform frame; The distance between square steels and the distance between the square steel and the square steel platform frame both match the distance data, and the square steel forms a predetermined angle with the reference frame; The profile data in step S1 further includes whether the angle steel is turned downwards. At this time, the specific steps for constructing the frame of the square steel platform according to the square steel platform frame data include: Step S21, when the profile data indicates that the angle steel is turned downwards, the angle steel of the square steel platform frame is turned downwards; Step S22, when the profile data indicates that the angle steel is turned upwards, the angle steel of the square steel platform frame is turned upwards; The support leg data includes whether the square steel platform has support legs, the type of support legs being horizontal support legs or vertical support legs, the number of support legs, and the distance between the support legs and the square steel platform frame; When the support leg data indicates that the square steel platform has the support legs, set support legs for the square steel platform according to the type of support legs, the number of support legs, and the distance between the support legs and the square steel platform frame; The support leg data further includes the angle of the inclined support leg, and the angle of the inclined support leg is the angle between the inclined support leg and the horizontal support leg; The specific step S4 of setting support legs for the square steel platform according to the type of support legs, the number of support legs, and the distance between the support legs and the square steel platform frame includes: When the support leg data indicates that the type of support legs is the horizontal support legs, several horizontal support legs are parallel to the square steel, and the number of horizontal support legs is equal to the number of support legs; When the angle of the inclined support leg is greater than zero, the number of inclined support legs is also equal to the number of support legs, and several inclined support legs and several horizontal support legs are arranged in one-to-one correspondence according to the angle of the inclined support leg. The common end of each group of horizontal support legs and inclined support legs is set on the reference frame or the square steel platform frame opposite to the reference frame; When the support leg data indicates that the type of support legs is the vertical support legs, the vertical support legs are vertically arranged on the square steel platform, and several vertical support legs are symmetrically arranged in pairs on the reference frame and the square steel platform frame opposite to the reference frame, and the number of vertical support legs located on the reference frame or the square steel platform frame opposite to the reference frame is equal to the number of support legs.

2. The creation system of the square steel platform, characterized in that, Including: A data acquisition module for acquiring the data of the square steel platform frame, profile data, distance data, and support leg data; A square steel platform frame construction module for constructing the square steel platform frame according to the square steel platform frame data; A square steel platform construction module for building a square steel platform; A support leg construction module for constructing support legs; The square steel platform border data includes a reference border; the profile data includes the type of square steel; the distance data includes the distance between square steels and the distance between the square steel and the square steel platform border; The distance between square steels and the distance between the square steel and the square steel platform border both match the distance data, and the square steel forms a predetermined angle with the reference border; The profile data further includes whether the angle steel is turned downwards. At this time, constructing the border of the square steel platform according to the square steel platform border data includes: When the profile data indicates that the angle steel is turned downwards, the angle steel of the square steel platform border is turned downwards; When the profile data indicates that the angle steel is turned upwards, the angle steel of the square steel platform border is turned upwards; The support leg data includes whether the square steel platform has support legs, the type of support legs is horizontal support legs or vertical support legs, the number of support legs, and the distance between the support legs and the square steel platform border; When the support leg data indicates that the square steel platform has the support legs, set the support legs for the square steel platform according to the type of support legs, the number of support legs, and the distance between the support legs and the square steel platform border; The support leg data further includes the angle of the inclined support leg, and the angle of the inclined support leg is the angle between the inclined support leg and the horizontal support leg; Setting the support legs for the square steel platform according to the type of support legs, the number of support legs, and the distance between the support legs and the square steel platform border includes: When the support leg data indicates that the type of support legs is the horizontal support legs, several horizontal support legs are parallel to the square steel, and the number of horizontal support legs is equal to the number of support legs; When the angle of the inclined support leg is greater than zero, the number of inclined support legs is also equal to the number of support legs, and several inclined support legs and several horizontal support legs are arranged in one-to-one correspondence according to the angle of the inclined support leg. The common end of each group of horizontal support legs and inclined support legs is set on the reference border or the square steel platform border opposite to the reference border; When the support leg data indicates that the type of support legs is the vertical support legs, the vertical support legs are vertically arranged on the square steel platform, and several vertical support legs are symmetrically arranged in pairs on the reference border and the square steel platform border opposite to the reference border, and the number of vertical support legs located on the reference border or the square steel platform border opposite to the reference border is equal to the number of support legs.

3. An electronic device, comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the method for creating the square steel platform according to any one of claims 1-2.

4. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the method for creating the square steel platform according to any one of claims 1-2.

Citation Information

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