Textile fabric production management system

By designing a textile fabric production management system, the problem of insufficient automation and collaborative management in traditional systems is solved, efficient production and raw material management are achieved, and production efficiency is improved.

CN120278843APending Publication Date: 2025-07-08WUXI YISMAJIKE TEXTILE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510350317.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

Traditional textile fabric production management systems cannot achieve high automation and collaborative management, resulting in fragmented processes, untimely order delivery, insufficient raw materials, etc., affecting production efficiency.

Method used

A textile fabric production management system is designed, including production planning, production execution, quality management, inventory management, equipment management and external coordination contact modules, to realize the functions of order information statistics, raw material allocation, production priority adjustment, product sampling inspection, raw material traceability and order transfer.

Benefits of technology

Improve production efficiency, reduce fragmentation and insufficient coordination, ensure sufficient raw materials, reduce unqualified product rates, and increase the manufacturer's profits.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of production management, and particularly discloses a textile fabric production management system which comprises a production planning module, a production execution module, a quality management module, an inventory management module, an equipment management module and an external coordination contact module. The production planning module is used for inputting a production plan, counting raw materials and scheduling production tasks; the production execution module is used for production plan receiving, task allocation, raw material use and task follow-up conditions; under the action of the production planning end, information statistics and raw material distribution can be carried out on orders of clients, so that the subsequent production efficiency is improved, secondly, real-time follow-up can be carried out on fabric production under the action of the production execution end, the production priority can be adjusted in time, and in addition, the production efficiency is improved. And under the action of the quality management end, the products can be sampled and checked, and unqualified products can be returned to a factory according to the proportion.
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Description

Technical Field

[0001] The present invention relates to the technical field of production management, and in particular to a textile fabric production management system. Background Art

[0002] With the continuous development and progress of information technology and the rise of the intelligent manufacturing industry, the traditional textile fabric production method is undergoing a fundamental change. The rapid development in fields such as digital technology, artificial intelligence, mobile Internet technology, and data analysis provides an opportunity for the change of textile fabric production. In the traditional production process, textile fabric production often involves a large amount of manual operations, complex supply chain processes, and reprocessing links prone to errors.

[0003] Among them, textile fabric production requires a highly coordinated production process, covering multiple links such as demand planning, procurement, production, quality inspection, and statistics. It is difficult to achieve a high degree of automation and collaborative management throughout the process in the prior art, resulting in a certain degree of fragmentation and incoordination in the process.

[0004] In addition, the traditional management systems on the market cannot reasonably allocate the proportion of orders, resulting in multiple production lines operating simultaneously, and then causing subsequent important orders unable to be delivered according to the required time. Secondly, regarding the use of raw materials, it is impossible to allocate them according to the order requirements, resulting in a shortage of raw materials for important orders during the operation process, and then affecting the delivery date of the orders.

[0005] Secondly, a single manufacturer may be unable to deliver on time when facing orders with large quantities and specific requirements, resulting in subsequent manufacturers having to cancel orders or pay a certain amount of fines to customers, thus reducing the production efficiency of the manufacturers.

[0006] Therefore, we specifically propose a textile fabric production management system. Summary of the Invention

[0007] The purpose of the present invention is to provide a textile fabric production management system to solve the problems raised in the above background art.

[0008] To achieve the above purpose, the present invention provides the following technical solution: A textile fabric production management system, the system includes a production planning module, a production execution module, a quality management module, an inventory management module, an equipment management module, and an external coordination and communication module;

[0009] The production planning module is used for inputting production plans, raw material statistics, and scheduling of production tasks;

[0010] The production execution module is used for receiving production plans, task allocation, raw material use, and follow-up of tasks;

[0011] The quality management module is used for the inspection and analysis of products and the traceability of unqualified products;

[0012] The inventory management module is used for the verification of raw material procurement, warehousing, outbound and raw material return;

[0013] The equipment management module is used for the maintenance record and maintenance of production equipment;

[0014] The external coordination and contact module is used to contact customers and dock with manufacturers of the same products.

[0015] Preferably, the production planning module includes a customer order placement terminal, a raw material statistics terminal and a task scheduling terminal;

[0016] The customer order placement terminal is used for customers to place orders and determine the name, style, material, raw material and process of the products to be produced;

[0017] The raw material statistics terminal receives the information from the customer order placement terminal and is used to count the style, material, raw material and process to be used;

[0018] The task scheduling terminal is used to allocate task ratios for style, material, raw material and process.

[0019] Preferably, the production execution module includes a task receiving terminal, a task allocation terminal, a raw material usage terminal and a task follow-up terminal;

[0020] The task receiving terminal is used to receive the information from the task scheduling terminal and allocate the important ratio of tasks for the style, material, raw material and process;

[0021] The task allocation terminal is used to set the production priority according to the important ratio of style, material, raw material and process.

[0022] Preferably, the raw material usage terminal is used to record the usage of raw materials and the scrapping of raw materials. The formula for scrapped raw materials is as follows:

[0023]

[0024] Among them, C1 represents the raw material loss rate, T1 represents the raw material loss amount, and T2 represents the raw material input amount;

[0025] And record the utilization rate of raw materials. The formula for its utilization rate is as follows:

[0026]

[0027] Among them, C2 represents the raw material utilization rate, T3 represents the amount of finished product raw materials, and T4 represents the total amount of raw materials;

[0028] The task follow-up end is used to follow up the current status of the task, including the start time of the task, the completed workload, the uncompleted workload, and the estimated completion time.

[0029] Preferably, the quality management module includes a product inspection end;

[0030] The product inspection end is used to conduct sampling inspections on the style, material, raw materials, and process of the product, and upload the detected data to the inspection data unit; the calculation formula for the sample sampling ratio is as follows:

[0031] n = N × K;

[0032] Where, n represents the sample size, N represents the total amount of products, and K represents the sampling ratio;

[0033] The product inspection end includes an inspection data unit;

[0034] The inspection data unit is used to store the data after sampling inspection.

[0035] Preferably, the quality management module further includes a product analysis end and a product traceability end;

[0036] The product analysis end is used to analyze the style, material, raw materials, and process defects of the unqualified products in the product inspection end, and save the analyzed data;

[0037] The product traceability end is used to conduct reverse tracing on the unqualified style, material, raw materials, and process.

[0038] Preferably, the inventory management module includes a raw material warehousing end and a raw material outbound end;

[0039] The raw material warehousing end is used to record the warehousing situation of raw materials and the data of the warehoused raw materials;

[0040] The raw material outbound end is used to record the usage situation of raw materials and the data of the outbound raw materials.

[0041] Preferably, the inventory management module further includes a raw material return end and a raw material procurement end;

[0042] The raw material return end is used to record the situation of unqualified raw materials, the raw material procurement end is used to purchase the required raw material data, and the best raw material procurement calculation formula is as follows:

[0043]

[0044] Among them, Q represents the optimal procurement quantity, D represents the total annual demand, which is obtained through production demand forecasting, S represents the order cost per time, H represents the holding cost per unit product, F1 represents the price adjustment factor, F2 represents the supply stability factor, and F3 represents the transportation cost factor;

[0045]

[0046] Among them, P α represents the average market price in the past time period, P c represents the current market price, S r represents the supplier's on-time delivery rate, C tm represents the lowest transportation cost, C t represents the cost of the currently selected transportation mode.

[0047] Preferably, the equipment management module includes an equipment maintenance record terminal, an equipment maintenance plan terminal, and an equipment failure alarm terminal;

[0048] The equipment maintenance record terminal is used to record the number of times and time of equipment maintenance, as well as the location of maintenance;

[0049] The equipment maintenance plan terminal is used to determine the time for equipment maintenance and the items of equipment maintenance;

[0050] The equipment failure alarm terminal is used to give a prompt when the equipment fails.

[0051] Preferably, the external coordination and contact module is used to confirm orders with customers and contact manufacturers of the same product.

[0052] Compared with the prior art, the beneficial effects of the present invention are:

[0053] 1. In the present invention, under the action of the production plan terminal, it can statistically analyze the information of customer orders and allocate raw materials, thereby improving the efficiency of subsequent production. Secondly, under the action of the production execution terminal, it can follow up the production of fabrics in real time and timely adjust the production priority. In addition, under the action of the quality management terminal, it can conduct sampling inspections on products and return the unqualified product ratio to the factory. Finally, under the action of the inventory management terminal, it can update the used raw materials and return situation in real time, thereby ensuring the sufficiency of raw materials; Therefore, with the cooperation of the above system, it can improve the production of fabrics, avoid the production of fabrics with low priority, improve the efficiency of the manufacturer, and reduce the fragmentation and lack of coordination.

[0054] 2. In the present invention, through the customer order placement terminal, customers can select the required fabrics by themselves, avoiding errors in fabric production and the inability to divide responsibilities, thereby improving the production status. Secondly, under the action of the production planning terminal, the important ratio and the raw material usage ratio after the customer places an order can be divided, thereby effectively producing important fabrics and improving the efficiency of subsequent production. Secondly, under the action of the production execution terminal, the received tasks can be assigned, thereby giving priority to the production of important fabrics and being able to follow up on the time and orders for the production of important and unimportant fabrics.

[0055] 3. In the present invention, under the action of the product traceability module, unqualified products can be traced back, so as to improve unqualified production lines, and improve the raw materials, the raw material usage ratio, and whether there are other problems in the situation of unqualified products, thereby reducing the unqualified rate of subsequent products.

[0056] 4. In the present invention, under the action of the external coordination and contact terminal, the manufacturer can contact manufacturers of the same product. When facing a large number of orders that cannot be delivered on time, the orders can be transferred, and a certain commission can be drawn from the transferred orders, thereby avoiding the situation of not being able to deliver on time and increasing the manufacturer's income. BRIEF DESCRIPTION OF THE DRAWINGS

[0057] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. Obviously, the following drawings are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0058] Figure 1 It is a framework diagram of a textile fabric production management system of the present invention;

[0059] Figure 2 It is a schematic diagram of the framework of the production planning terminal of a textile fabric production management system of the present invention;

[0060] Figure 3 It is a schematic diagram of the framework of the production execution terminal of a textile fabric production management system of the present invention;

[0061] Figure 4 It is a schematic diagram of the framework of the quality management terminal of a textile fabric production management system of the present invention;

[0062] Figure 5 It is a schematic diagram of the framework of the inventory management terminal of a textile fabric production management system of the present invention;

[0063] Figure 6Schematic diagram of the device management terminal framework of a textile fabric production management system according to the present invention. Detailed implementation manners

[0064] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0065] Please refer to Figures 1 to 6 , the present invention provides a technical solution:

[0066] Embodiment 1

[0067] Please refer to Figures 1 - 2 As shown, a textile fabric production management system includes a production plan module, a production execution module, a quality management module, an inventory management module, an equipment management module, and an external coordination and contact module;

[0068] The production plan module is used for inputting production plans, raw material statistics, and scheduling of production tasks;

[0069] The production execution module is used for receiving production plans, task allocation, raw material use, and task follow-up;

[0070] The quality management module is used for product inspection, analysis, and traceability of unqualified products;

[0071] The inventory management module is used for verification of raw material procurement, warehousing, outbound, and raw material returns;

[0072] The equipment management module is used for maintenance records and maintenance of production equipment;

[0073] The external coordination and contact module is used for contacting customers and docking with manufacturers of the same products.

[0074] The production plan module includes a customer order placement terminal, a raw material statistics terminal, and a task scheduling terminal;

[0075] The customer order placement terminal is used for customers to place orders and determine the name, style, material, raw materials, and processes of the products to be produced; among them, the customer order placement terminal can modify the order information that has been placed in real time to meet the needs of customers;

[0076] The raw material statistics terminal receives information from the customer order placement terminal and is used to count the styles, materials, raw materials, and processes to be used. After receiving the modified order from the customer, the raw material statistics terminal needs to re-count the raw materials in the warehouse to obtain the statistics of the optimal production styles, materials, raw materials, and processes, so as to meet the subsequent production requirements.

[0077] The task scheduling terminal is used to allocate task ratios for styles, materials, raw materials, and processes. After receiving the new statistics of styles, materials, raw materials, and processes, the task scheduling terminal allocates the ratios again to improve production efficiency.

[0078] The production execution module includes a task receiving end, a task distribution end, a raw material usage end, and a task follow-up end.

[0079] The task receiving end is used to receive information from the task scheduling terminal and allocate the important task ratios for styles, materials, raw materials, and processes.

[0080] The task distribution end is used to set production priorities according to the important ratios of styles, materials, raw materials, and processes. After receiving the production ratios, it can give priority to the production of important orders and batches according to the inventory situation of raw materials, so as to reduce the risk of subsequent non-delivery and ensure that products that are not urgent can wait for raw materials under the same batch, so as to ensure that they can still be delivered on time after subsequent raw materials are purchased.

[0081] Under the action of the production planning terminal, it can count the information of customer orders and allocate raw materials, thereby improving the efficiency of subsequent production. Secondly, under the action of the production execution terminal, it can track the production of fabrics in real time and adjust the production priorities in a timely manner. In addition, under the action of the quality management terminal, it can conduct sampling inspections on products and return the unqualified product ratios to the factory. Finally, under the action of the inventory management terminal, it can update the used raw materials and return situations in real time to ensure an adequate supply of raw materials. Therefore, with the cooperation of the above system, it can improve the production of fabrics, prioritize the production of fabrics with high production priorities, improve the efficiency of the manufacturer, and reduce fragmentation and lack of coordination. Through the customer order placement terminal, customers can select the fabrics they need by themselves, avoiding errors in fabric production and the inability to divide responsibilities, thereby improving the production status. Secondly, under the action of the production planning terminal, it can divide the important ratios and raw material usage ratios after customer order placement, and then effectively produce important fabrics, improving the efficiency of subsequent production. Secondly, under the action of the production execution terminal, it can allocate the received tasks, give priority to the production of important fabrics, and follow up the time and orders of the production of important and unimportant fabrics.

[0082] Embodiment 2

[0083] Please refer to Figures 3 - 4 as shown, the raw material usage end is used to record the usage and scrapping of raw materials. The formula for calculating scrapped raw materials is as follows:

[0084]

[0085] where C1 represents the raw material loss rate, T1 represents the raw material loss amount, and T2 represents the raw material input amount;

[0086] And record the utilization rate of raw materials. The formula for its utilization rate is as follows:

[0087]

[0088] where C2 represents the raw material utilization rate, T3 represents the amount of finished product raw materials, and T4 represents the total amount of raw materials;

[0089] The task follow-up end is used to follow up the current status of tasks, including the start time of tasks, the amount of work completed, the amount of work remaining, and the estimated completion time. Among them, the task follow-up end also includes the tasks that have been delivered, so as to reduce the cumbersome situation of subsequent deliveries.

[0090] The quality management module includes a product inspection end;

[0091] The product inspection end is used to conduct sampling inspections on the style, material, raw materials, and process of products, and upload the detected data to the inspection data unit. The formula for calculating the sample sampling ratio is as follows:

[0092] n = N × K;

[0093] where n represents the sample size, N represents the total amount of products, and K represents the sampling ratio;

[0094] The product inspection end includes an inspection data unit;

[0095] The inspection data unit is used to store the data after sampling inspection, and the stored data will be received by the product analysis end, so that the unqualified situation of products can be statistically analyzed during subsequent analysis operations.

[0096] The quality management module also includes a product analysis end and a product traceability end;

[0097] The product analysis end is used to analyze the style, material, raw materials, and process defects of unqualified products in the product inspection end, and save the analyzed data;

[0098] The product traceability terminal is used to trace back the unqualified styles, materials, raw materials and processes. The product traceability terminal traces back based on the unqualified products, so that in the process of reverse tracing, it can be obtained which specific aspects are problematic during production, and thus the equipment, raw materials, processes and styles can be improved during subsequent production to improve the product qualification rate.

[0099] Under the action of the product traceability module, the unqualified products can be traced back, so that the unqualified production lines can be improved, and the raw materials, the usage ratio of raw materials and whether there are other problems in the situation of unqualified products can be improved, thereby reducing the unqualified rate of subsequent products.

[0100] Embodiment III

[0101] Please refer to Figures 5 - 6 As shown, the inventory management module includes a raw material warehousing end and a raw material outbound end;

[0102] The raw material warehousing end is used to record the warehousing situation of raw materials and the data of the warehoused raw materials; the warehousing of raw materials includes single-batch and multi-batch warehousing situations, and the real-time data of different raw materials are updated according to different situations, so as to ensure that the inventory can meet the production requirements within a short period of time;

[0103] The raw material outbound end is used to record the usage situation of raw materials and the data of the outbound raw materials. During the use of raw materials, it includes single-batch outbound and multi-batch outbound. According to the different outbound quantities and the number of outbound batches, the outbound of the inventory is statistically analyzed in real time. When the inventory quantity drops to a predetermined value (the predetermined value is taken as 20% of the received inventory), the inventory management module issues an alarm to prompt the raw material procurement end to purchase raw materials.

[0104] The inventory management module also includes a raw material return end and a raw material procurement end;

[0105] The raw material return end is used to record the situation of unqualified raw materials, and the raw material procurement end is used to purchase the required raw material data. The best raw material procurement calculation formula is as follows:

[0106]

[0107] Among them, Q represents the best purchase quantity, D represents the annual total demand, which is obtained through production demand forecasting, S represents the cost per order, H represents the holding cost per unit product, F1 represents the price adjustment factor, F2 represents the supply stability factor, and F3 represents the transportation cost factor;

[0108]

[0109] Among them, P α represents the average market price in the past time period, Pc It represents the current market price. When the current price is lower than the average price, the purchase quantity is appropriately increased; otherwise, it is decreased.

[0110] S r It represents the supplier's on-time delivery rate (the value range is 0 - 1). The lower the on-time delivery rate, the larger F2 is, and the purchase quantity needs to be increased to cope with supply risks.

[0111] C tm It represents the minimum transportation cost, C t It represents the cost of the currently selected transportation mode. The higher the transportation cost, the smaller F3 is, and the purchase quantity is appropriately decreased.

[0112] The equipment management module includes an equipment maintenance record terminal, an equipment maintenance plan terminal, and an equipment failure alarm terminal.

[0113] The equipment maintenance record terminal is used to record the number of times of equipment maintenance, the maintenance time, and the maintenance location.

[0114] The equipment maintenance plan terminal is used to determine the time for equipment maintenance and the items of equipment maintenance.

[0115] The equipment failure alarm terminal is used to send a prompt when the equipment fails. During the production process, alarm devices are installed on the equipment on the production line to send an alarm when the equipment fails, so that the production line can stop operating and then the equipment can be repaired.

[0116] The external coordination and contact module is used to confirm orders with customers and contact manufacturers of the same product. Under the action of the external coordination module, it can communicate with the ordering customers in real time, let them know the order situation and whether it can be delivered on time. Secondly, it can contact the same manufacturers to distribute orders, thereby improving the risk response ability of this manufacturer.

[0117] Under the action of the external coordination and contact terminal, this manufacturer can contact manufacturers of the same product. When facing more orders that cannot be delivered on time, the orders can be transferred, and a certain commission can be extracted from the transferred orders, thereby avoiding the situation of not being able to deliver on time and increasing the manufacturer's income.

[0118] The present invention can, under the action of the production planning end, conduct information statistics on customer orders and allocate raw materials, thereby improving the efficiency of subsequent production. Secondly, under the action of the production execution end, it can conduct real-time follow-up on the production of fabrics and adjust the production priority in a timely manner. Additionally, under the action of the quality management end, it can conduct sampling inspections on products and return the unqualified product ratio to the factory. Finally, under the action of the inventory management end, it can update the used raw materials and return situation in real time to ensure an adequate supply of raw materials. Therefore, with the cooperation of the above system, the production of fabrics can be improved, the fabrics with high production priority can be produced while avoiding the less important ones, the benefits of the manufacturer can be increased, and the fragmentation and lack of coordination can be reduced. Through the customer order placement end, customers can select the fabrics they need by themselves, avoiding the misalignment of fabric production and the resulting inability to divide responsibilities, thereby improving the production status. Secondly, under the action of the production planning end, the important ratio and the usage ratio of raw materials after customer order placement can be divided, so as to effectively produce important fabrics and improve the efficiency of subsequent production. Secondly, under the action of the production execution end, the received tasks can be allocated, so as to give priority to the production of important fabrics, and the production of important and unimportant fabrics can be followed up in terms of time and orders. Under the action of the product traceability module, unqualified products can be traced back, so as to improve the unqualified production line, and the raw materials, the usage ratio of raw materials and whether there are other problems in the unqualified product situation can be improved, thereby reducing the unqualified rate of subsequent products. Under the action of the external coordination and contact end, the manufacturer can contact other manufacturers producing the same products. When facing a large number of orders that cannot be delivered on time, the orders can be transferred, and a certain commission can be extracted from the transferred orders, thereby avoiding the situation of not being able to deliver on time and increasing the manufacturer's income.

[0119] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; 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 make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A textile fabric production management system, characterized in that: The system includes a production planning module, a production execution module, a quality management module, an inventory management module, an equipment management module, and an external coordination and liaison module; The production planning module is used for entering production plans, raw material statistics, and scheduling of production tasks; The production execution module is used for receiving production plans, task allocation, raw material usage, and task follow-up; The quality management module is used for product inspection, analysis, and traceability of unqualified products; The inventory management module is used for verification of raw material procurement, warehousing, outbound, and raw material returns; The equipment management module is used for maintenance records and maintenance of production equipment; The external coordination and liaison module is used for contacting customers and docking with manufacturers of the same products.

2. The textile fabric production management system according to claim 1, characterized in that: The production planning module includes a customer order placement terminal, a raw material statistics terminal, and a task scheduling terminal; The customer order placement terminal is used for customers to place orders and determine the name, style, material, raw material, and process of the products to be produced; The raw material statistics terminal receives information from the customer order placement terminal and is used for statistics of the styles, materials, raw materials, and processes to be used; The task scheduling terminal is used for task proportion allocation of styles, materials, raw materials, and processes.

3. A textile fabric production management system according to claim 1, characterized in that: The production execution module includes a task receiving terminal, a task allocation terminal, a raw material usage terminal, and a task follow-up terminal; The task receiving terminal is used for receiving information from the task scheduling terminal and receiving styles, materials, raw materials, and processes for task importance proportion allocation; The task allocation terminal is used for setting production priorities according to the importance proportions of styles, materials, raw materials, and processes.

4. A textile fabric production management system according to claim 3, characterized in that: The raw material usage terminal is used for recording the usage of raw materials and the scrapping of raw materials. The formula for scrapped raw materials is as follows: Where C1 represents the raw material loss rate, T1 represents the raw material loss amount, and T2 represents the raw material input amount; And record the utilization rate of raw materials. The formula for its utilization rate is as follows: Where C2 represents the raw material utilization rate, T3 represents the amount of finished product raw materials, and T4 represents the total amount of raw materials; The task follow-up terminal is used for following up the current status of tasks, including the start time of tasks, the amount of work completed, the amount of work not completed, and the estimated completion time.

5. A textile fabric production management system according to claim 1, characterized in that: The quality management module includes a product inspection terminal; The product inspection terminal is used for sampling inspection of the styles, materials, raw materials, and processes of products and uploading the detected data to the inspection data unit; The formula for calculating the sample sampling ratio is as follows: n = N × K; Where n represents the sample size, N represents the total amount of products, and K represents the sampling ratio; The product inspection terminal includes an inspection data unit; The inspection data unit is used for storing the data after sampling inspection.

6. A textile fabric production management system according to claim 5, characterized in that: The quality management module also includes a product analysis terminal and a product traceability terminal; The product analysis terminal is used for analyzing the defects of styles, materials, raw materials, and processes of unqualified products in the product inspection terminal and saving the analyzed data; The product traceability terminal is used for reverse tracing of unqualified styles, materials, raw materials, and processes.

7. A textile fabric production management system according to claim 1, characterized in that: The inventory management module includes a raw material warehousing terminal and a raw material outbound terminal; The raw material warehousing terminal is used for recording the warehousing situation of raw materials and the data of warehoused raw materials; The raw material outbound end is used to record the usage of raw materials and the data of the outbound raw materials.

8. A textile fabric production management system according to claim 7, characterized in that: The inventory management module further includes a raw material return end and a raw material procurement end; The raw material return end is used to record the situation of unqualified raw materials, and the raw material procurement end is used to procure the required raw material data. The best raw material procurement calculation formula is as follows: Where Q represents the optimal procurement quantity, D represents the annual total demand, which is obtained through production demand forecasting, S represents the order cost per time, H represents the holding cost per unit product, F1 represents the price adjustment factor, F2 represents the supply stability factor, and F3 represents the transportation cost factor; Among them, P α represents the average market price in the past time period, P c represents the current market price, S r represents the supplier's on-time delivery rate, C tm represents the lowest transportation cost, C t represents the cost of the currently selected transportation mode.

9. A textile fabric production management system according to claim 1, characterized in that: The equipment management module includes an equipment maintenance record end, an equipment maintenance plan end, and an equipment failure alarm end; The equipment maintenance record end is used to record the number of times and time of equipment maintenance, as well as the location of maintenance; The equipment maintenance plan end is used to determine the time for equipment maintenance and the items of equipment maintenance; The equipment failure alarm end is used to give a prompt when the equipment fails.

10. A textile fabric production management system according to claim 1, characterized in that: The external coordination and contact module is used to confirm orders with customers and contact manufacturers of the same product.

Citation Information

Patent Citations

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