CN111796868A - Method for realizing interaction between CAD (computer-aided design) enhanced attribute block and Excel data - Google Patents

Method for realizing interaction between CAD (computer-aided design) enhanced attribute block and Excel data Download PDF

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CN111796868A
CN111796868A CN202010647290.4A CN202010647290A CN111796868A CN 111796868 A CN111796868 A CN 111796868A CN 202010647290 A CN202010647290 A CN 202010647290A CN 111796868 A CN111796868 A CN 111796868A
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data
attribute
program
excel
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CN111796868B (en
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何凡
翟秀超
陆俐俐
王世宾
李朝波
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Cofco Engineering & Technology Co ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/70Software maintenance or management
    • G06F8/76Adapting program code to run in a different environment; Porting
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/70Software maintenance or management
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/70Software maintenance or management
    • G06F8/72Code refactoring

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Abstract

The invention discloses a method for realizing interaction between a CAD enhanced attribute block and Excel data, which relates to the field of data interaction and analysis, and comprises the following steps: the method comprises the steps of creating an enhanced attribute block in a CAD program as a carrier and a medium for data communication, carrying out secondary development on the CAD program by using VISUAL LISP, and creating an attribute input subprogram and an attribute output subprogram in the CAD program, so that data communication between the CAD program and an Excel program is realized, data in the CAD program can be output to the Excel program for modification and calculation, and meanwhile, data in the modified Excel program can be led back to the enhanced attribute block in the CAD program again, so that timely updating of the data is realized, a method for rapid data analysis and communication is provided for different users, and the working efficiency and the accuracy are improved.

Description

Method for realizing interaction between CAD (computer-aided design) enhanced attribute block and Excel data
Technical Field
The invention relates to the field of data interaction and analysis, in particular to a method for realizing interaction between a CAD enhanced attribute block and Excel data.
Background
The CAD program is drawing software which is often used in the process of process design and production manufacturing, a large amount of data is derived when the CAD program is used for drawing a graph, many of the data need to be utilized through subsequent calculation, but the CAD program itself lacks the capacity of processing a large amount of data, the data is usually imported into an Excel program for processing, many data processed by the Excel program still need to be returned to the CAD program for utilization, and the ordinary method for returning the data to the CAD program is manual input, so that the efficiency is low, and the error rate is high.
Disclosure of Invention
The invention provides a method for realizing interaction between a CAD enhanced attribute block and Excel data aiming at the problems and technical requirements, and the technical scheme of the invention is as follows:
a method for realizing interaction between a CAD enhanced attribute block and Excel data comprises the following steps:
creating enhanced attribute blocks in a CAD program, and acquiring original data in each enhanced attribute block, wherein the original data comprises attribute contents of a plurality of different attribute categories; the CAD program comprises an attribute output subprogram and an attribute input subprogram which are created based on VISUAL LISP secondary development;
the CAD program receives an attribute output instruction, wherein the attribute output instruction at least comprises a target attribute block identifier of an enhanced attribute block to be output;
the CAD program calls the attribute output subprogram according to the attribute output instruction to extract the attribute content in the enhanced attribute block corresponding to the target attribute block identifier, processes the extracted attribute content of each attribute category into corresponding logical structure data according to a preset table structure and guides the corresponding logical structure data into an Excel program, the Excel program creates an Excel table with the preset table structure according to the logical structure data, and modifies the data in the Excel table according to a data modification instruction to obtain modified logical structure data;
and the CAD program receives an attribute input instruction, calls the attribute input subprogram to acquire modified logic structure data from the Excel program according to the attribute input instruction, and processes the modified logic structure data into modified attribute contents of each corresponding attribute type according to the preset table structure to be input into the corresponding enhanced attribute block.
The Excel program further comprises a one-key generation financing table subprogram obtained by secondary development by using a VBA program;
the method further comprises:
the Excel program receives a one-key generation funding table instruction, wherein the one-key generation funding table instruction at least comprises a funding style;
and the Excel program calls the one-key generation and funding table subprogram according to the one-key generation and funding table instruction to recombine the acquired data in the Excel table according to the funding style to form a funding table.
The Excel program further comprises a one-key data clearing subprogram obtained by secondary development by using a VBA program;
the method further comprises:
and the Excel program receives a one-key data clearing instruction and calls a one-key data clearing subprogram to clear all data in the quotation list.
The Excel program further comprises a one-key data clearing subprogram obtained by secondary development by using a VBA program;
the method further comprises:
the Excel program receives a one-key data clearing instruction, wherein the one-key data clearing instruction at least comprises a data identifier of a funding table;
and the Excel program calls the one-key data clearing subprogram to clear the data corresponding to the data identifier of the quotation table in the quotation table according to the one-key data clearing instruction.
A further technical solution is that the obtaining of the original data in each enhanced attribute block includes:
the CAD program directly receives manually input original data in each enhanced attribute block;
or, the original data is stored in an original Excel table, and the CAD program calls the attribute input subprogram to acquire the data in the original Excel table from the Excel program and inputs the data in the corresponding enhanced attribute block as the original data.
The further technical scheme is that the attribute category to which the attribute content of the enhanced attribute block belongs is a key category or a common category, and the enhanced attribute block displays the attribute content of all the key categories and hides the attribute content of all the common categories.
A further technical solution is that the creating of the enhanced attribute block in the CAD program includes:
at least two enhancement attribute blocks of different types are created, a plurality of layers are set, and the enhancement attribute blocks of different types are respectively arranged in different layers.
The further technical scheme is that the original data stored in the enhanced attribute block comprises process and equipment parameters, and the process and equipment parameters comprise at least one of bit number, name, temperature, viscosity, power and sealing form.
The beneficial technical effects of the invention are as follows: the method comprises the steps of establishing an enhanced attribute block in a CAD program as a carrier and a medium for data communication, carrying out secondary development on the CAD program by using VISUAL LISP, establishing an attribute input instruction and an attribute output instruction in the CAD program, realizing data communication between the CAD program and an Excel program, outputting data in the CAD program to the Excel program for modification and calculation, and simultaneously leading data in the modified Excel program back to the enhanced attribute block in the CAD program, so that a method for rapidly analyzing and communicating data is provided for different users, and the working efficiency and the accuracy are improved.
Drawings
FIG. 1 is a flow chart of the method of the present application.
FIG. 2 is a diagram of the enhanced property block output of the present application to the Excel program.
FIG. 3 is a button diagram of a one-key generate filing table command and a one-key clear data command of the development of the present application.
Detailed Description
The following further describes the embodiments of the present invention with reference to the drawings.
As shown in fig. 1, an embodiment of the present invention provides a method for implementing interaction between a CAD-enhanced attribute block and Excel data, where the method includes:
the method comprises the following steps: the method comprises the steps of creating an enhanced attribute block in a CAD program, acquiring original data of each enhanced attribute block, directly editing the enhanced attribute block through the CAD program, achieving the purpose through the CAD program without other program editing software, and achieving a universal function. When a project is implemented, at least two types of enhanced attribute blocks are often required to be created, and layers with the same number are created according to the number of the types of the enhanced attribute blocks, so that later-stage selection is facilitated. The data in the enhanced attribute block includes process and equipment parameters such as bit number, name, temperature, viscosity, power, sealing form, etc., and further, other specialties such as instruments, water specialties, etc. can be applied. When the window in the CAD program is not concise and clear due to excessive data parameters, the attribute categories to which the attribute contents in the enhanced attribute block belong are divided into key categories and common categories, and the enhanced attribute block displays the attribute contents of all the key categories and hides the attribute contents of all the common categories, so that designers can conveniently view key data in the process of looking at the picture, and design time is saved. The related data is stored in the enhanced attribute block, on one hand, the data can be used as a carrier and a medium for storing the data, and on the other hand, the problem that the data is easy to lose in the data capturing process of the CAD program is solved.
Step two: and acquiring original data, wherein two methods are generally adopted for acquiring the original data by the CAD program, one is that the CAD program directly receives the manually input original data in each enhanced attribute block, the other is that the original data is input through an attribute input instruction in the step six, the original data is firstly stored in an Excel table, and the CAD program calls an attribute input subprogram in the step six to acquire the input in the original Excel table from the Excel program and input the input into the corresponding enhanced attribute block to serve as the original data.
Step three: the CAD program comprises an attribute output subprogram and an attribute input subprogram which are created based on VISUAL LISP secondary development, the VISUAL LISP is used for carrying out secondary development on the CAD program, the CAD program calls related subprograms according to an attribute output instruction and an attribute input instruction, and the developed instruction is directly loaded in the CAD program, so that the related instruction calling subprograms can be input in a command line of the CAD program, wherein aout represents an attribute output instruction, and ain represents an attribute input instruction.
Step four: and the CAD program executes an attribute output instruction aout, the aout instruction is input in a command line in the CAD program, the attribute output instruction at least comprises a target attribute block identifier of an enhanced attribute block to be output, and the enhanced attribute block needing to be output is selected.
Step five: the Excel form shown in fig. 2, wherein a part of the predetermined form structure is already created, the CAD program invokes the attribute output subprogram according to the attribute output instruction to extract the attribute content in the enhanced attribute block corresponding to the target attribute block identifier, and processes the extracted attribute content of each attribute category into corresponding logical structure data according to the predetermined form structure and introduces the logical structure data into the Excel program, the Excel program creates the Excel form with the predetermined form structure according to the logical structure data, modifies the data in the Excel form according to the data modification instruction to obtain the modified logical structure data, and introduces the related data in the CAD program into the Excel program, thereby facilitating the calculation of the related data such as batch modification, classification and the like of the data;
if the modified logical structure data needs to be reintroduced back into the CAD program, step six is performed,
if the modified logical structure data does not need to be reintroduced back into the CAD program and can be directly saved, the method is ended.
Step six: the CAD program executes the attribute input program ain, inputs the ain command in the command line in the CAD program, and redirects the modified logical structure data back into the CAD program.
Step seven, the modified logic structure data are led back to the enhanced attribute block in the CAD program, the CAD program receives the attribute input instruction, calls the attribute input subprogram according to the attribute input instruction to obtain the modified logic structure data from the Excel program, processes the modified logic structure data into modified attribute contents of corresponding attribute categories according to a preset table structure and inputs the modified attribute contents into the corresponding enhanced attribute block;
the intercommunication function between the CAD program and the Excel program is realized by the enhanced attribute block, so that on one hand, all data can be uniformly stored in the CAD program to facilitate the management of the data, on the other hand, the CAD program and the Excel form need to be opened simultaneously for data comparison in many times in daily work, and by the mode, only the CAD program needs to be opened, the time for comparing the CAD program and turning over the data in the Excel program is saved, the synchronous update of the data is realized,
after the modified logical structure data is imported back into the enhanced property block in the CAD program,
if the data needs to be imported into the Excel program again, step four is executed,
and if the investment sheet needs to be further generated, performing the step eight.
Step eight: as shown in fig. 3, the Excel program further includes a one-key generation funding table subroutine and a one-key clearing data subroutine, which are obtained by performing secondary development on the VBA program, and the Excel program is secondarily developed by using the VBA programming program.
Step nine: the Excel program calls a key generation and contribution table subprogram according to the one-key generation and contribution table instruction to recombine data in the obtained Excel table to form a contribution table according to the contribution style. And extracting a plurality of data in the enhanced attribute block according to a required format, thereby automatically generating a related quotation table. In the implementation process of engineering projects, collaborative data processing needs to be carried out among different specialties in multiple departments, mutual transmission and mutual conductance of a large number of files are involved in the process, and particularly for technical specialties, the multiple departments need to be paid for funds, so that the generation of a mutually-acknowledged contribution list of the two departments is particularly important. For example, the enhanced attribute blocks are created in the CAD program in each device of different devices, different devices have different enhanced attribute blocks, relevant attribute data are edited in advance through the enhanced attribute blocks, statistics can be carried out more quickly, and searching and checking in windows in the CAD program are not needed, so that the working efficiency among different specialties can be greatly improved, the accuracy of the funding files can be guaranteed, and the working quality is also guaranteed.
Step ten: the Excel program receives a one-key data clearing instruction, on one hand, all data in the quotation list can be cleared, the Excel program receives a one-key data clearing program instruction and calls a one-key data clearing subprogram to clear all data in the quotation list, on the other hand, some important data can be cleared, the one-key data clearing instruction at least comprises a quotation list data identifier, the Excel program calls a one-key data clearing subprogram to clear data corresponding to the quotation list data identifier in the quotation list according to the one-key data clearing instruction, the Excel program ensures that the data instruction is cleared through one key in the Excel program on the premise that an original graphic interface is not changed, and when a file is sent to the outside, core data is protected through clearing key data.
As can be seen from the above description of the embodiments, those skilled in the art can clearly understand that the present application needs to be implemented by means of related software and hardware platforms. Based on such understanding, the technical solutions of the present application may be essentially or partially implemented in the form of a software product, which may be stored in a storage medium, such as a ROM/RAM, a magnetic disk, an optical disk, etc., and includes several instructions to enable a computer device (which may be a personal computer, a server, or a network device, etc.) to execute the method described in the embodiments or some parts of the embodiments of the present application.
What has been described above is only a preferred embodiment of the present application, and the present invention is not limited to the above embodiment. It is to be understood that other modifications and variations directly derivable or suggested by those skilled in the art without departing from the spirit and concept of the present invention are to be considered as included within the scope of the present invention.

Claims (8)

1. A method for realizing interaction between a CAD enhanced attribute block and Excel data is characterized by comprising the following steps:
creating enhanced attribute blocks in a CAD program, and acquiring original data in each enhanced attribute block, wherein the original data comprises attribute contents of a plurality of different attribute categories; the CAD program comprises an attribute output subprogram and an attribute input subprogram which are created based on VISUAL LISP secondary development;
the CAD program receives an attribute output instruction, wherein the attribute output instruction at least comprises a target attribute block identifier of an enhanced attribute block to be output;
the CAD program calls the attribute output subprogram according to the attribute output instruction to extract the attribute content in the enhanced attribute block corresponding to the target attribute block identifier, processes the extracted attribute content of each attribute category into corresponding logical structure data according to a preset table structure and guides the corresponding logical structure data into an Excel program, the Excel program creates an Excel table with the preset table structure according to the logical structure data, and modifies the data in the Excel table according to a data modification instruction to obtain modified logical structure data;
and the CAD program receives an attribute input instruction, calls the attribute input subprogram to acquire modified logic structure data from the Excel program according to the attribute input instruction, and processes the modified logic structure data into modified attribute contents of each corresponding attribute type according to the preset table structure to be input into the corresponding enhanced attribute block.
2. The method according to claim 1, wherein the Excel program further comprises a one-key generation funding table subroutine obtained by secondary development using VBA program;
the method further comprises:
the Excel program receives a one-key generation funding table instruction, wherein the one-key generation funding table instruction at least comprises a funding style;
and the Excel program calls the one-key generation and funding table subprogram according to the one-key generation and funding table instruction to recombine the acquired data in the Excel table according to the funding style to form a funding table.
3. The method according to claim 2, wherein the Excel program further comprises a one-key-clear-data subroutine obtained by secondary development using a VBA program;
the method further comprises:
and the Excel program receives a one-key data clearing instruction and calls a one-key data clearing subprogram to clear all data in the quotation list.
4. The method according to claim 2, wherein the Excel program further comprises a one-key-clear-data subroutine obtained by secondary development using a VBA program;
the method further comprises:
the Excel program receives a one-key data clearing instruction, wherein the one-key data clearing instruction at least comprises a data identifier of a funding table;
and the Excel program calls the one-key data clearing subprogram to clear the data corresponding to the data identifier of the quotation table in the quotation table according to the one-key data clearing instruction.
5. The method of claim 1, wherein the obtaining of the original data in each enhanced property block comprises:
the CAD program directly receives manually input original data in each enhanced attribute block;
or, the original data is stored in an original Excel table, and the CAD program calls the attribute input subprogram to acquire the data in the original Excel table from the Excel program and inputs the data in the corresponding enhanced attribute block as the original data.
6. The method according to claim 1, wherein the attribute category to which the attribute content of the enhanced attribute block belongs is a key category or a general category, and the enhanced attribute block displays the attribute content of all key categories and hides the attribute content of all general categories.
7. The method of claim 1, wherein creating the enhanced properties block in the CAD program comprises:
at least two enhancement attribute blocks of different types are created, a plurality of layers are set, and the enhancement attribute blocks of different types are respectively arranged in different layers.
8. The method of claim 1, wherein the raw data stored by the enhanced properties block includes process and equipment parameters including at least one of a bit number, a name, a temperature, a viscosity, a power, a form of seal.
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