Garment intelligent version system
By designing a clothing intelligent version system in the clothing manufacturing industry, using historical databases and data collection and processing systems, the problem of low efficiency in plate making work is solved, and more efficient versioning and garment production is achieved.
Patent Information
- Application Number
- CN202510252957.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2025-06-13
AI Technical Summary
The work efficiency of the printing plates in the existing technology is low and the data accumulated in previous work cannot be effectively utilized, which leads to the need for re-printing of the printing plates every time there are new customers or style requirements, which is time-consuming and labor-intensive, and cannot adapt to the rapid changes in the garment industry.
Design a clothing intelligent version system, including historical database, drawing software and data collection and processing system. The historical database stores commonly used clothing cutting style layouts and is associated with the drawing software through numbering. The data collection processing system matches the historical database, and the drawing software generates or modifies the layout based on the matching results.
Through the use of historical databases, the plate making process steps are simplified, the plate making efficiency and speed are improved, the plate making process is optimized, and the overall garment production efficiency is improved.
Abstract
Description
Technical Field
[0001] The present invention relates to a smart clothing pattern-making system, belonging to the field of clothing manufacturing. Background Art
[0002] In conventional pattern-making work, garment-making data is generally collected manually or with the assistance of equipment, and then the pattern-making drawing, grading drawing, and layout drawing are manually drawn through drawing software. Whenever there is a new customer with new clothing styles and size requirements, the pattern maker needs to make a new pattern, which is time-consuming and laborious, and the data accumulated in previous work cannot be effectively utilized. The garment-making industry in China has developed rapidly, with an increasing number of orders and a sharp increase in the workload of pattern makers. However, pattern-making is a job that requires a lot of experience, and it often takes several years to train a new qualified pattern maker, which cannot effectively adapt to the changes in the industry. Therefore, how to improve the work efficiency of pattern makers and help them complete pattern-making work faster and more easily is of decisive significance for improving the efficiency of the garment-making industry. Summary of the Invention
[0003] According to the problems described in the background, the problem to be solved by the present invention is:
[0004] How to improve the efficiency and speed of pattern-making work.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A smart clothing pattern-making system, which includes a historical database, drawing software, and a data acquisition and processing system; the historical database is set up, and the pattern-making drawings of the clothing cut-piece styles in previous years and commonly used are compiled into the historical database and numbered; the historical database is associated with the drawing software, and by inputting the number in the historical database, the corresponding pattern-making drawing can be formed in the drawing software; the data acquisition and processing system is associated with the historical database and the drawing software, the data collected by the data acquisition and processing system can be matched with the data in the historical database, and the drawing software generates and modifies the clothing cut-pieces according to the data provided by the data acquisition and processing system, and can output the generated picture to the data acquisition and processing system.
[0007] Preferably, the working method of the system includes the following steps:
[0008] (1) Data integration: The garment-making data and sample clothes provided by the customer are collected through the data acquisition and processing system to generate pictures and data of the clothing cut-pieces.
[0009] (2) Matching of clothing cut-piece style data: The pictures and data of the clothing cut-pieces are matched with the historical database. If the matching is successful, the corresponding number in the historical database is output to the drawing software to form a preliminary pattern-making drawing; if the matching is unsuccessful, traditional pattern-making means are used to draw the preliminary pattern-making drawing of the clothing cut-piece style, and the clothing cut-piece style is compiled into the historical database.
[0010] (3) Data analysis of clothing piece sizes: The pattern maker adjusts the sizes of the preliminary pattern drawings of each clothing piece according to the size and fabric information of the clothing required by the customer to obtain the pattern drawings of each clothing piece.
[0011] (4) Formulation of garment manufacturing process data: If the customer has garment manufacturing process requirements, the manufacturing requirements are manually input into the data acquisition and processing system, and the system then generates garment manufacturing process data according to the operation conditions of the factory; if the customer has no process requirements, the data acquisition and processing system directly generates garment manufacturing process data according to the operation conditions of the factory.
[0012] (5) Pattern grading: Through the drafting software, the pattern drawings of each clothing piece are graded according to the process design data to obtain the graded pattern drawings of each clothing piece.
[0013] (6) Intelligent group ratio layout: After generating the graded pattern drawings, the drafting software intelligently generates the group ratio layout drawings; then the group ratio layout drawings are input into the data acquisition and processing system.
[0014] (7) Data output: The data acquisition and processing system outputs the garment manufacturing process data and the group ratio layout drawings to the garment manufacturing workshop of the factory. The garment manufacturing workshop grabs the fabric and arranges it according to the garment manufacturing process data and the group ratio layout drawings, and completes garment manufacturing according to the garment manufacturing process.
[0015] Preferably, the data acquisition and processing system uses 3D scanning or cameras to collect the garment manufacturing data of the sample garment.
[0016] Preferably, the method adopted by the traditional pattern making means is: input the numbers of the conventional clothing pieces with similar styles in the historical database into the drafting software, and obtain the pattern drawings of the required clothing pieces by modifying the shape data of the pattern drawings of the conventional clothing pieces.
[0017] Preferably, the data acquisition and processing system is intelligently connected to each production equipment in the garment manufacturing workshop of the factory, and can observe and control each production equipment in real time.
[0018] Preferably, the numbers of the conventional clothing pieces are set fixed clothing piece numbers or the clothing piece numbers with the highest matching degree.
[0019] The numbers of the clothing pieces are composed of piece type numbers, material numbers and process adjustment numbers.
[0020] The beneficial effects of the present invention are:
[0021] The present invention simplifies the pattern-making process steps by setting up a historical database. With the continuous supplementation of the historical database, the pattern-making efficiency will also steadily increase. By adopting a more efficient and intelligent data acquisition and processing system, the acquisition efficiency of the graphics and data of clothing cut pieces is improved. The pattern-making process is optimized, the regulation and control of the downstream garment manufacturing by the pattern-making department are enhanced, and the overall garment manufacturing production efficiency is improved. Detailed implementation mode
[0022] Embodiment 1
[0023] A smart pattern-making system for clothing, the system includes a historical database, a drafting software, and a data acquisition and processing system; a historical database is set up, and the pattern-making drawings of the cut piece styles of clothes in previous years and commonly used are incorporated into the historical database and numbered; the historical database is associated with the drafting software, and by inputting the number in the historical database, the corresponding pattern-making drawing can be formed in the drafting software; the data acquisition and processing system is associated with the historical database and the drafting software, the data collected by the data acquisition and processing system can be matched with the data in the historical database, and the drafting software generates and modifies the clothing cut pieces according to the data provided by the data acquisition and processing system, and can output the generated picture to the data acquisition and processing system.
[0024] The working method of the system includes the following steps:
[0025] (1) Data integration: The clothing-making data and sample clothes provided by the customer are collected through the data acquisition and processing system and the pictures and data of the clothing cut pieces are generated.
[0026] (2) Matching of clothing cut piece style data: The pictures and data of the clothing cut pieces are matched with the historical database. If the matching is successful, the corresponding number in the historical database is output to the drafting software to form a preliminary pattern-making drawing; if the matching is unsuccessful, traditional pattern-making means are adopted to draw the preliminary pattern-making drawing of the clothing cut piece style and incorporate the clothing cut piece style into the historical database.
[0027] (3) Analysis of clothing cut piece size data: The pattern-maker adjusts the size of the preliminary pattern-making drawing of each clothing cut piece according to the size and fabric information of the clothes required by the customer to obtain the pattern-making drawing of each clothing cut piece.
[0028] (4) Formulation of clothing-making process data: If the customer has clothing-making process requirements, the clothing-making requirements are manually input into the data acquisition and processing system, and the system then generates clothing-making process data according to the operation situation of the factory; if the customer has no process requirements, the data acquisition and processing system directly generates clothing-making process data according to the operation situation of the factory.
[0029] (5) Pattern grading: Through the drafting software, the pattern-making drawings of each clothing cut piece are graded according to the process design data to obtain the graded pattern-making drawings of each clothing cut piece.
[0030] (6) Intelligent group ratio layout: After the push layout is generated, the mapping software intelligently generates a group ratio layout map; then the group ratio layout map is input into the data acquisition and processing system;
[0031] (7) Data output: The data acquisition and processing system outputs the garment manufacturing process data and the group ratio layout diagram to the factory garment manufacturing workshop. The garment manufacturing workshop grabs the fabrics and arranges them according to the garment manufacturing process data and the group ratio layout diagram, and completes the garment manufacturing according to the garment manufacturing process.
[0032] The data acquisition and processing system uses 3D scanning or a camera to acquire the garment making data of the sample garment.
[0033] The method adopted by the traditional pattern making means is: inputting the numbers of conventional clothing pieces of similar styles in the historical database into the drawing software, and obtaining the required clothing piece pattern making drawing by modifying the shape data of the conventional clothing piece pattern making drawing.
[0034] The data acquisition and processing system is intelligently connected to each production equipment in the factory's garment workshop, and can observe and control each production equipment in real time.
[0035] The conventional clothing piece number is a set fixed clothing piece number or a clothing piece number with the highest matching degree.
[0036] A piece of clothing with an extremely niche style often only has a few parts that are different from common styles; the same parts can be reused. Therefore, we designed a historical database to store the style of the patterns of each part of the clothing. During the pattern making process, it is necessary to consider the influence of clothing style, materials and process factors, such as the impact of the shrinkage rate of clothing materials on clothing size, the impact of different sewing methods on seam length, and the impact of different styles of the same style of clothing on piece data. During the pattern making process, the pattern maker needs to use his own experience to accurately and efficiently draw the pattern making diagram. The present invention reduces the workload and difficulty of work by matching the historical database and according to the numbering.
[0037] Example 2
[0038] A clothing intelligent pattern system, the system includes a historical database, mapping software and a data acquisition and processing system; a historical database is set up, and the pattern making drawings of previous years and common and commonly used clothing cutting pieces are compiled into the historical database and numbered; the historical database is associated with the mapping software, and by inputting the number in the historical database, a corresponding pattern making drawing can be formed in the mapping software; the data acquisition and processing system is associated with the historical database and the mapping software, the data collected by the data acquisition and processing system can be matched with the data in the historical database, and the mapping software can generate and modify clothing cutting pieces according to the data provided by the data acquisition and processing system, and the generated pictures can be output to the data acquisition and processing system.
[0039] The working method of the system includes the following steps:
[0040] (1) Data integration: Collect the garment-making data and sample garments provided by the customer through the data acquisition and processing system, and generate pictures and data of the clothing pieces.
[0041] (2) Matching of clothing piece style data: Match the pictures and data of the clothing pieces with the historical database. If the match is successful, output the corresponding number in the historical database to the drafting software to form a preliminary layout; if the match is unsuccessful, use traditional drafting methods to draw the preliminary layout of the clothing piece style and incorporate the clothing piece style into the historical database.
[0042] (3) Analysis of clothing piece size data: The pattern maker adjusts the sizes of the preliminary layouts of each clothing piece according to the size and fabric information of the clothing required by the customer to obtain the layout of each clothing piece.
[0043] (4) Formulation of garment-making process data: If the customer has garment-making process requirements, manually input the process requirements into the data acquisition and processing system, and the system then generates garment-making process data according to the operation of the factory; if the customer has no process requirements, the data acquisition and processing system directly generates garment-making process data according to the operation of the factory.
[0044] (5) Pattern grading: Through the drafting software, grade the layouts of each clothing piece according to the process design data to obtain the graded layouts of each clothing piece.
[0045] (6) Intelligent grouping and proportional layout: After generating the graded layouts, the drafting software intelligently generates a grouped proportional layout diagram; then input the grouped proportional layout diagram into the data acquisition and processing system.
[0046] (7) Data output: The data acquisition and processing system outputs the garment-making process data and the grouped proportional layout diagram to the factory garment-making workshop. The garment-making workshop grabs the fabric and arranges it according to the garment-making process data and the grouped proportional layout diagram, and completes garment-making according to the garment-making process.
[0047] The data acquisition and processing system uses 3D scanning or cameras to collect the garment-making data of the sample garments.
[0048] The method adopted by the traditional drafting means is: Input the numbers of the regular clothing pieces of similar styles in the historical database into the drafting software, and obtain the layout of the required clothing pieces by modifying the shape data of the regular clothing piece layout.
[0049] The data acquisition and processing system is intelligently connected to each production device in the factory garment-making workshop, and can observe and control each production device in real time.
[0050] The numbers of the regular clothing pieces are set fixed clothing piece numbers or the clothing piece numbers with the highest matching degree.
[0051] Compared with Embodiment 1, in this embodiment, the numbering of the clothing cut pieces is logically sorted out and a numbering specification is formed. The clothing cut piece numbering consists of a pattern number, a material number, and a process adjustment number. Other types of numbers can also be added according to actual needs. By combining the numbers, the cut piece styles in the historical database can be better distinguished, enabling the pattern maker to capture the cut piece style they need or the most similar cut piece style more quickly.
Claims
1. A clothing intelligent version system, characterized in that: The system includes a historical database, mapping software and a data acquisition and processing system; a historical database is set up, and the pattern making drawings of previous years and common and commonly used clothing cutting styles are compiled into the historical database and numbered; the historical database is associated with the mapping software, and by inputting the numbers in the historical database, the corresponding pattern making drawings can be formed in the mapping software; the data acquisition and processing system is associated with the historical database and the mapping software, and the data collected by the data acquisition and processing system can be matched with the data in the historical database, and the mapping software generates and modifies clothing cutting pieces according to the data provided by the data acquisition and processing system, and can output the generated pictures to the data acquisition and processing system.
2. A clothing intelligent version system according to claim 1, characterized in that: The working method of the system includes the following steps: (1) Data integration: The clothing data and samples provided by the customer are collected through the data acquisition and processing system to generate pictures and data of clothing pieces. (2) Matching clothing piece pattern data: Match the pictures and data of clothing pieces with the historical database. If the match is successful, the corresponding number in the historical database is output to the mapping software to form a preliminary pattern drawing. If the match is unsuccessful, the traditional pattern drawing method is used to draw a preliminary pattern drawing of the clothing piece style, and the clothing piece style is compiled into the historical database; (3) Analysis of clothing piece size data: The pattern maker adjusts the size of the preliminary pattern drawing of each clothing piece according to the size and fabric information of the clothing required by the customer to obtain the pattern drawing of each clothing piece; (4) Preparation of garment manufacturing process data: If the customer has garment manufacturing process requirements, the garment manufacturing requirements are manually input into the data acquisition and processing system, and the system then generates garment manufacturing process data based on the factory operation status; if the customer has no process requirements, the data acquisition and processing system directly generates garment manufacturing process data based on the factory operation status; (5) Pushing the plate: Pushing the plate drawing of each garment piece according to the process design data through the drawing software to obtain the pushing plate drawing of each garment piece; (6) Intelligent group ratio layout: After the push layout is generated, the mapping software intelligently generates a group ratio layout map; then the group ratio layout map is input into the data acquisition and processing system; (7) Data output: The data acquisition and processing system outputs the garment manufacturing process data and the group ratio layout diagram to the factory garment manufacturing workshop. The garment manufacturing workshop grabs the fabrics and arranges them according to the garment manufacturing process data and the group ratio layout diagram, and completes the garment manufacturing according to the garment manufacturing process.
3. A clothing intelligent version system according to claim 1, characterized in that: The data acquisition and processing system uses 3D scanning or a camera to acquire the garment making data of the sample garment.
4. A clothing intelligent version system according to claim 2, characterized in that: The method adopted by the traditional pattern making means is: inputting the numbers of conventional clothing pieces of similar styles in the historical database into the drawing software, and obtaining the required clothing piece pattern making drawing by modifying the shape data of the conventional clothing piece pattern making drawing.
5. The clothing intelligent version system according to claim 1, characterized in that: The data acquisition and processing system is intelligently connected to each production equipment in the factory's garment workshop, and can observe and control each production equipment in real time.
6. A clothing intelligent version system according to claim 4, characterized in that: The conventional clothing piece number is a set fixed clothing piece number or a clothing piece number with the highest matching degree.