Cosmetics Smart Manufacturing Solution Provision System

KR103012256B1Active Publication Date: 2026-09-02EGEMCO CO LTD
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Patent Information

Application Number
KR1020250106806
Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-09-02
Estimated Expiration
2045-08-04

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Abstract

The present invention relates to a system for providing a smart manufacturing solution for cosmetics, and more specifically, comprises: a formula delivery unit that receives formulation data for manufacturing cosmetics from a customer terminal or a manufacturer terminal and transmits it to the manufacturer terminal or the customer terminal; a planning unit that receives and stores production planning data from the manufacturer terminal and receives and stores raw material delivery data from a supplier terminal or the manufacturer terminal that supplies raw materials; a process management unit that receives raw material weighing data from a weighing device and receives manufacturing process data from manufacturing equipment and transmits it to the customer terminal and the manufacturer terminal; a filling and packaging management unit that receives filling and packaging data from filling and packaging equipment and transmits it to the customer client and the manufacturer terminal; a quality control unit that receives and stores inspection data from an inspection device; and an inflow and outflow management unit that receives and stores warehouse inflow and outflow data of manufactured cosmetics from the manufacturer terminal and transmits it to the customer terminal.
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Description

Technology Field

[0001] The present invention relates to a system for providing smart manufacturing solutions for cosmetics. Background Technology

[0003] Cosmetics is a collective term for products used for makeup, such as creams, powders, and perfumes; generally, client companies, acting as brand owners, commission manufacturers to produce these products, which are then distributed and sold.

[0004] Brand companies (clients) can identify consumer needs and, based on this, develop cosmetic formulations (recipes, blends, formulas) through research, or provide these needs to manufacturers to request the production of cosmetic formulations. Additionally, there is also an ODM model where the manufacturer directly plans and develops the product.

[0005] These cosmetic formulations are delivered to the manufacturer, who manufactures the cosmetics based on the aforementioned formulations. The brand company then sells these cosmetics to wholesalers and retailers, where they are distributed in the market.

[0006] Registered Patent No. 10-2784908 (hereinafter referred to as prior art) is an invention for matching a brand company with a manufacturer, and more specifically, includes a configuration for searching for a manufacturer capable of manufacturing cosmetics that a brand company intends to manufacture.

[0007] However, these conventional technologies had the problem that it was difficult for the manufacturer to monitor and manage matters such as the manufacturing process, the supply of raw materials, the weighing of raw materials, packaging of cosmetics, and the receipt and shipment of cosmetics in real time.

[0008] In addition, there are issues such as the risk of information leakage to the outside due to inadequate security management of cosmetic formulations provided by brands or developed in-house by manufacturers. Prior art literature

[0010] Korean Registered Patent No. 10-2784908 The problem to be solved

[0011] The problem to be solved by the present invention is that the present invention aims to support automated enterprise-wide business operation management for all processes, such as cosmetic formulation (recipe), research and development, weighing of raw materials, manufacturing and filling / packaging processes of cosmetics, inbound and outbound shipments, and quality inspection, and to provide security that safely protects the manufacturer's information.

[0012] In addition, the present invention has another objective of strengthening manufacturers' compliance with regulations and realizing overall quality improvement and smart manufacturing sites by monitoring continuously revised cosmetic-related laws and strengthened domestic and international regulations (CGMP, ISO 22716) and reflecting them in the system. means of solving the problem

[0014] The present invention for solving the above problem comprises: a formulation delivery unit that receives and stores formulation data for manufacturing cosmetics produced by a customer or manufacturer from a manufacturer terminal; a planning unit that receives and stores production plan data from the manufacturer terminal and receives and stores raw material delivery data from a supplier terminal or the manufacturer terminal that supplies raw materials; a process management unit that receives raw material weighing data from a weighing device and receives manufacturing process data from a manufacturing facility and transmits it to the manufacturer terminal; a filling and packaging management unit that receives filling and packaging data from a filling and packaging facility and transmits it to the manufacturer terminal; a quality control unit that receives and stores inspection data from an inspection device or a manufacturer client; and an inflow and outflow management unit that receives and stores warehouse inflow and outflow data of the manufactured cosmetics from the manufacturer terminal.

[0015] Additionally, the formulation data includes a raw material name and a formulation ratio, and when the formulation transmission unit stores the formulation data, it further includes an output unit that transmits an output interface for outputting the formulation data to the manufacturer terminal, and when the manufacturer terminal selects the output interface, the output unit can transmit output request data including code information matching the raw material name and the formulation ratio of the formulation data to an output module.

[0016] In addition, the output unit can transmit a password input window into which a pre-set password is entered to the manufacturer's terminal when the output interface is selected two or more times, and transmit the output request data to the output module when the pre-set password is entered into the password input window.

[0017] Additionally, the apparatus may further include: a file generation unit that receives the formulation data from the prescription delivery unit, encrypts the formulation data, converts it into a file with a dedicated extension, and stores it; a user authentication unit that transmits a dedicated input window to the manufacturer's terminal for inputting a dedicated ID and a dedicated password for viewing the file with the dedicated extension; and a viewer unit that, when the dedicated ID and the dedicated password are entered into the dedicated input window, receives the file with the dedicated extension from the file generation unit, decrypts the file with the dedicated extension, and transmits it to the manufacturer's terminal.

[0018] In addition, the planning unit may receive the formulation data from the prescription delivery unit, calculate the estimated material requirement using the quantity of the production planning data and the formulation data, and generate estimated requirement data including the estimated material requirement.

[0019] Additionally, the system further includes a delivery management unit that transmits an ID and password input window to the manufacturer's terminal and stores the ID and password entered in the ID and password input window. The delivery management unit transmits an account information input window to the supplier's terminal for inputting account information, and if the account information entered in the account information input window corresponds to the ID and password, transmits a delivery schedule input page equipped with an input window for inputting order data and delivery schedule data to the supplier's terminal. When the supplier's terminal inputs delivery schedule data into the input window, the delivery schedule input page with the delivery schedule data entered and a reservation interface can be transmitted to the manufacturer's terminal.

[0020] If the above-mentioned manufacturer client selects the reservation interface, the reservation data can be transmitted to the above-mentioned supplier terminal.

[0021] Additionally, the process management unit may further include a label request unit that, when the scanner recognizes a barcode provided on a receiving member in which the raw material is received, receives raw material recognition data from the scanner, matches and stores it with the raw material weighing data, and transmits it to the manufacturer's terminal, and when the weighing device completes weighing the raw material, receives a weighing completion signal from the weighing device and transmits a label output signal to an output device to output a label attached to the receiving member and containing weighing completion information.

[0022] Additionally, the system may further include a text comparison unit that stores cosmetic packaging text data in accordance with the Cosmetics Act, receives image data of a packaging material containing the cosmetic or an attached illustration from the manufacturer's terminal, compares it with the text data, transmits matching data to the manufacturer's terminal if the image data and the text data correspond, and generates and transmits mismatched data to the manufacturer's terminal if they do not correspond.

[0023] Additionally, the packaging material comparison unit may further include receiving first image data of an illustration attached to a packaging material packaging a cosmetic at a first time point from the manufacturer terminal, receiving second image data of an illustration attached to a packaging material packaging a cosmetic at a second time point after the first time point, setting a change area including a different part by comparing the first image data and the second image data, and generating mapping data by mapping a mark line displayed along the perimeter of the change area to the first image data or the second image data.

[0024] In addition, the quality control unit includes one or more inspection items and an input field into which the inspection result for the inspection item is entered, and stores document data with a form structure corresponding to a standard specification document, and the inspection data includes item data corresponding to the inspection item and result data that matches the item data, and the quality control unit can generate standard form document data by automatically entering the result data that matches the item data corresponding to the inspection item into the input field that matches the inspection item. Effects of the invention

[0026] According to an embodiment of the present invention, the present invention supports automated enterprise-wide business operation management for all processes, such as cosmetic formulation research and development, weighing of raw materials, manufacturing and filling / packaging of cosmetics, receiving and shipping, and quality inspection, and has the effect of safely protecting the manufacturer's information.

[0027] In addition, the present invention has the effect of strengthening manufacturers' compliance with regulations and realizing overall quality improvement and smart manufacturing sites by monitoring continuously revised cosmetic-related laws and strengthened domestic and international regulations (CGMP, ISO 22716) and reflecting them in the system. Brief explanation of the drawing

[0029] FIG. 1 is a schematic block diagram illustrating a system for providing a smart cosmetic manufacturing solution according to one embodiment of the present invention. Figure 2 is a diagram illustrating the configurations of the main server. FIG. 3 is a drawing for explaining additional embodiments of the present invention. Figures 4 and 5 are drawings to illustrate examples of OPC-UA application. Specific details for implementing the invention

[0030] The advantages and features of the present invention and the methods for achieving them will become clear by referring to the embodiments described below in detail together with the accompanying drawings. However, the present invention is not limited to the embodiments disclosed below but may be implemented in various different forms. These embodiments are provided merely to ensure that the disclosure of the present invention is complete and to fully inform those skilled in the art of the scope of the invention, and the present invention is defined only by the scope of the claims.

[0031] Throughout the entire specification, when a part is described as being "connected" to another part, this includes not only cases where they are "directly connected (including electrical connections)," but also cases where they are "indirectly connected (including electrical connections)" with other elements interposed between them.

[0033] FIG. 1 is a schematic block diagram for explaining a system for providing a smart cosmetic manufacturing solution according to one embodiment of the present invention, and FIG. 2 is a diagram for explaining the configurations of a main server.

[0034] A cosmetic smart manufacturing solution providing system (S) according to one embodiment of the present invention is a system for managing a process for a manufacturer to manufacture cosmetics, and for convenience of explanation, it will be referred to as "the system" below.

[0035] Referring to FIGS. 1 and 2, the system may include a prescription delivery unit, a planning unit, a process control unit, a packaging control unit, a quality control unit, and an inbound / outbound control unit.

[0036] The above prescription delivery unit, planning unit, process control unit, packaging control unit, quality control unit, and inbound / outbound control unit may be components included in the main server (1).

[0037] The main server (1) may be configured with various control configurations or computing devices known to a person of ordinary skill (e.g., various electronic devices or electronic modules such as computers, processors, etc.). For example, the main server (1) may be configured to transmit signals, data, or commands generated according to a program or algorithm included therein to the manufacturer terminal (3) and supplier terminal (4), output module, output device, etc. described later. For example, the main server (1) may be configured to be connected via wired or wireless connection to the manufacturer terminal (3) and supplier terminal (4), scanner, weighing device, manufacturing equipment, filling and packaging equipment, inspection device, imaging module, output module, output device, etc. described later.

[0038] The system may include the main server (1) described above, and the main server (1) may include, in addition to the prescription delivery unit, planning unit, process management unit, packaging management unit, quality management unit, and input / output management unit, an output unit, account creation unit, delivery management unit, text comparison unit, packaging material comparison unit, etc. described later.

[0039] One or more of the components included in the main server (1) may be servers.

[0040] The above prescription delivery unit can be produced by a customer or manufacturer and receive and store formulation data for cosmetic manufacturing from a manufacturer terminal (3).

[0041] The manufacturer's terminal (3) may be a PC, smartphone, etc. owned by the manufacturer.

[0042] The system may include a manufacturer's terminal (3).

[0043] The customer, who is a brand company, can identify customer needs and generate the above formulation data, which is a cosmetic formulation, through a concept for manufacturing cosmetics. In this case, the customer terminal (2) can transmit the above formulation data to the manufacturer terminal (3).

[0044] The customer terminal (2) can be the customer's PC, smartphone, etc.

[0045] In another exemplary case, the above-mentioned customer company may transmit the above-mentioned concept to the manufacturer's terminal (3), and in this case, the manufacturer may generate the above-mentioned formulation data based on the above-mentioned concept.

[0046] As described above, the prescription delivery unit can receive the formulation data from the manufacturer terminal (3).

[0047] The above formulation data may include raw material names and formulation ratios.

[0048] For example, the above formulation data may include raw material names such as raw material A and raw material B, and the mixing ratio of raw material A and raw material B.

[0049] For example, the formulation data may include a data table in which the raw material name and the formulation amount are matched, and the regulatory data may likewise be in the form of a data table in which the raw material name and the formulation amount are matched.

[0050] The above regulatory comparison unit can compare the data tables of the formulation data and the regulatory data, and can compare whether each ingredient name is prohibited from use or exceeds the formulation amount limit.

[0052] In addition, the regulatory comparison unit compares the mixing amount that matches the raw material name of the mixing data with the mixing limit amount that matches the raw material name of the regulatory data, and if the mixing amount exceeds the mixing limit amount, it can transmit the excess limit data that matches the raw material name of the mixing data to the customer terminal (2) or the manufacturer terminal (4).

[0053] Through this, the system can provide customers and manufacturers with real-time updated information on whether specific ingredients are banned from use and usage limits by country, and can automatically compare this with formulation data to identify whether regulatory data has been violated and provide this information to customers and manufacturers.

[0054] Referring to FIGS. 1 and 2, when the prescription delivery unit stores the formulation data, it may include an output unit that transmits an output interface for outputting the formulation data to the manufacturer terminal (3).

[0055] The above output interface may be, for example, a graphical user interface, and the manufacturer terminal (3) can select the graphical user interface through the user interface.

[0056] When the manufacturer terminal (3) selects the output interface, the output unit can transmit output request data, including code information matching the raw material name of the blending data and the blending ratio of the blending data, to an output module (e.g., a printer, a printing machine).

[0057] The above output unit can receive and store code information that matches each of the raw material names from a manager client or a manufacturer terminal (3), etc., and can provide only the code degree and mixing ratio that match the raw material name of the mixing data to the output module (excluding raw material name).

[0058] In other words, the raw material name is blinded in the output, allowing for the maintenance of confidentiality.

[0059] Additionally, the output unit can transmit a password input window in which a pre-set password is entered to the manufacturer terminal (3) when the output interface is selected two or more times, and transmit the output request data to the output module when the pre-set password is entered into the password input window.

[0060] In other words, if you print more than twice, there will be multiple printouts and there may be issues with maintaining security. Therefore, if you want to print the formulation data more than twice, the manufacturer has made it possible to print the formulation data only when a password is entered.

[0061] The main server (1) may include a file creation unit that receives the formulation data from the prescription delivery unit, encrypts the formulation data, converts it into a dedicated file extension (e.g., .cep extension), and saves it.

[0062] For example, the above file generation unit can serialize the above mixture data into a JSON structure, encrypt it using the AES265 method, convert it into a file with a dedicated extension that includes the encrypted data, and save it.

[0063] Encrypting the above mixture data is described as an example and is not limited to the above method (AES265), and can be encrypted in various ways.

[0064] The main server (1) may include a user authentication unit that transmits a dedicated input window to the manufacturer terminal (3) for viewing (inquiry or output via screen) the dedicated extension file, in which a dedicated ID and a dedicated password are entered.

[0065] Additionally, the main server (1) may include a viewer unit that receives the dedicated extension file from the file creation unit when the dedicated ID and dedicated password are entered into the dedicated input window, decrypts the encrypted data of the dedicated extension file, and transmits it to the manufacturer terminal (3).

[0066] For example, the viewer section may be a screen (UI) that decrypts and displays an encrypted file of the above-mentioned dedicated extension.

[0067] In this way, the present system includes a file storage unit, a user authentication unit, and a viewer unit, thereby enhancing security functions by allowing only authenticated users utilizing the present system (the present solution) to access the formulation data.

[0068] Referring to FIGS. 1 and 2, the planning unit may receive and store production planning data from the manufacturer terminal (3), and receive and store raw material delivery data from the supplier terminal (4) that supplies raw materials or the manufacturer terminal (3).

[0069] First, it was stated that the planning department receives and stores production planning data. The planning department can transmit a production planning page into which production planning data is entered to the manufacturer terminal (3), and the manufacturer terminal (3) can input production planning data into the production planning page through a user interface (e.g., keyboard, touchscreen, etc.).

[0070] The above supplier terminal (4) may be a PC, smartphone, etc., possessed by the supplier of raw materials (raw materials (e.g., raw materials) and auxiliary materials). The present system may include the above supplier terminal (4).

[0071] As described above, the planning department receives and stores raw material delivery data from the supplier terminal (4) or the manufacturer terminal (3) that supplies raw materials.

[0072] To explain more specifically, the main server (1) may include a delivery management unit that transmits an ID and password input window to the manufacturer terminal (3) and stores the ID and password entered in the ID and password input window.

[0073] The above manufacturer terminal (3) can input an ID and password into the ID and password input window through the user interface, and the above delivery management unit can store the ID and password entered into the ID and password input window.

[0074] The delivery management department can transmit an account information input window to the above-mentioned delivery terminal (4) to which account information is entered.

[0075] Each of the above supplier terminals (4) can input account information into the account information input window through the user interface.

[0076] At this time, the delivery management department can transmit a delivery schedule input page equipped with an input window for inputting order data and delivery schedule data to the delivery company terminal (4) when the account information entered in the account information input window corresponds to the ID and password entered in the ID and password input window and the ID and password stored previously.

[0077] When the delivery management department inputs delivery schedule data into the input window of the delivery terminal (4), it can transmit the delivery schedule input page containing the delivery schedule data and the reservation interface to the manufacturer terminal (3).

[0078] The above reservation interface (or confirmation interface) may be, for example, a graphical user interface (GUI), and the manufacturer terminal (3) can select the reservation interface through the user interface.

[0079] The above delivery management unit can transmit the delivery schedule data and reservation data to the above delivery company terminal (4) when the above manufacturer terminal (3) selects the above reservation interface.

[0080] The above planning unit can transmit an incoming raw material page, into which the incoming raw material (the above raw material delivery data) is entered, to the above manufacturer terminal (3) or supplier terminal (4), and the above manufacturer terminal (3) or supplier terminal (4) can input the above raw material delivery data to the incoming raw material page through a user interface.

[0081] Through this, the manufacturer can receive the delivery schedule data requested by the manufacturer when the supplier provides an ID and password for accessing this system or to the supplier who intends to supply raw materials, and the supplier enters account information corresponding to the ID and password.

[0082] If a supplier wishes to deliver raw materials according to the delivery schedule requested by the customer, they can select a reservation interface to transmit reservation data to the manufacturer.

[0083] Meanwhile, the planning unit receives the formulation data from the prescription delivery unit, calculates the estimated material requirement using the quantity of the production planning data and the formulation data, and generates and stores estimated requirement data including the estimated material requirement.

[0084] The planning department can generate the estimated required amount data by calculating the required amount of each ingredient and the amount of packaging material, etc., by multiplying the quantity (quantity of cosmetics) by the composition ratio of each ingredient in the above mixing data.

[0085] The above planning unit can transmit the above estimated consumption data to the manufacturer's terminal.

[0086] Referring to FIGS. 1 and 2, the main server (1) may include a process management unit that receives raw material weighing data from a weighing device and receives manufacturing process data from a manufacturing facility and transmits it to a manufacturer terminal (3).

[0087] The weighing device may include, for example, a scale for measuring the weight of the raw material and a control module (for example, a kiosk) that receives raw material weighing data from the scale and transmits it to the process management unit.

[0088] The above manufacturing facility may, for example, include a mixer (a stirring device (100) described later) and a control module that generates control data for controlling the mixer and transmits manufacturing process data including said control data to the process management unit.

[0089] As described above, the process management department transmits raw material weighing data and manufacturing process data to the manufacturer, so that the manufacturer can identify the raw material weighing data and manufacturing process in real time.

[0090] Meanwhile, the above raw material is contained in a receiving member (e.g., a bag or a box), and a barcode may be attached to the receiving member.

[0091] At this time, when the barcode scanner recognizes the barcode attached to the receiving member in which the raw material is received, the process management unit receives raw material recognition data from the scanner, matches it with the raw material weighing data and stores it, and transmits the raw material recognition data and the raw material weighing data to the manufacturer terminal (3).

[0092] In other words, the entire process from weighing to manufacturing can be tracked and identified for each raw material.

[0093] The main server (1) may include a label request unit that, when the weighing device completes weighing of the raw material, receives a weighing completion signal from the weighing device and transmits a label output signal to an output device (printing device) to output a label attached to the receiving member and containing weighing completion information.

[0094] Through this, the operator can check whether the raw material is a raw material before weighing or a raw material that has been weighed.

[0095] Referring to FIGS. 1 and 2, the main server (1) may include a filling and packaging management unit that receives filling and packaging data from a filling and packaging facility and transmits it to a manufacturer terminal (3).

[0096] The filling equipment is equipment for filling manufactured cosmetics into packaging materials, and the packaging equipment may be equipment for sealing the said packaging materials to complete packaging, etc. As this is a known fact, a more detailed explanation will be omitted.

[0097] The filling and packaging equipment may each include a control module and can transmit filling data and packaging data to the filling and packaging management unit.

[0098] Meanwhile, the main server (1) may include a text comparison unit that stores cosmetic packaging text data in accordance with the Cosmetics Act.

[0099] The above text data may include one or more of the cosmetic's name, trade name and address, manufacturing number, expiration date, period of use, price, ingredients, volume of contents, and weight.

[0100] The above text comparison unit may receive the text data from, for example, an external server or the above administrator client or manufacturer client (3).

[0101] The text comparison unit receives image data (draft) of an illustration attached to a packaging material on which cosmetics are packaged from the manufacturer terminal (3), compares it with the text data, and if the image data and the text data correspond, transmits matching data to the manufacturer terminal, and if they do not match, generates mismatch data and transmits it to the manufacturer terminal.

[0102] The above text comparison unit may include, for example, Tesseract OCR, Google Cloud Vision API, Naver CLOVA OCR, Kakao OCR, etc., for extracting text from image data, and may generate the matching data or mismatched data by determining whether the text extracted from the image data matches the text of the display data (for example, comparison via Phyton).

[0103] Through this, it is possible to automatically determine whether the information listed on the packaging meets the text data requirements under the Cosmetics Act.

[0104] Referring to FIGS. 1 and 2, the present system may include a packaging comparison unit that receives first image data of an illustration attached to a packaging material that packages cosmetics at a first time point from a manufacturer terminal (3), receives second image data of an illustration attached to a packaging material that packages cosmetics at a second time point after the first time point, and sets a change area including a different part by comparing the first image data and the second image data.

[0105] The above packaging material comparison unit may include known image comparison analysis tools such as Diffchecker - Image Diff, ImageMagick, etc., and may compare the first image data and the second image data pixel by pixel and set the differing parts as the above change area.

[0106] At this time, the packaging material comparison unit can generate mapping data by mapping the marking line displayed along the perimeter of the change area to the first image data or the second image data and transmit it to the manufacturer terminal (3).

[0107] The design of the packaging material may change due to design changes or changes in ingredients, and therefore, the differences between the two packaging materials can be more easily identified through mapping data comparing images of the packaging materials at a first time point and a second time point.

[0108] Referring to FIGS. 1 and 2, the main server (1) may include a quality control unit that receives and stores inspection data from an inspection device (e.g., a metal detector) or a manufacturer terminal (3) and transmits it to the manufacturer terminal (3).

[0109] The quality control unit can transmit an inspection page equipped with an input window for inputting the inspection data to the manufacturer terminal (3), and the manufacturer terminal (3) can input inspection data into the input window through a user interface. The quality control unit can receive and store the inspection data entered into the inspection page.

[0110] In addition, since it is known that the inspection device inspects cosmetics or packaging materials to generate and transmit inspection data, a more detailed explanation will be omitted.

[0111] Meanwhile, the quality control department may include one or more inspection items (pH, foreign substance detection, etc.) and an input field into which the inspection results for the inspection items are entered, and may store document data with a simplified structure corresponding to standard specification documents (e.g., CGMP, ISO22716, etc.).

[0112] At this time, the inspection data may include item data corresponding to the inspection item (pH, foreign substance detection, etc.) and result data that matches the item data (pH, presence / absence of foreign substance detection, etc.).

[0113] The above inspection data may additionally include, for example, inspector data, etc.

[0114] At this time, the quality control department can generate standard form document data by automatically inputting result data matched with the item data corresponding to the inspection item into the input field matched with the inspection item.

[0115] The above standard form document data is data in which the above result data is entered into the above document data.

[0116] The above-mentioned quality control department stores a mapping table containing the correspondence relationship between each inspection item and input field, and between each item data and result data of the inspection data, and can automatically input result data into the input field using the mapping table. Since this is a known technology, a more detailed explanation will be omitted.

[0117] The main server (1) may include an inbound / outbound management unit that receives and stores warehouse inbound / outbound data of manufactured cosmetics from a manufacturer terminal (3).

[0118] As described above, the packaging material is equipped with a barcode, and the manufacturer terminal (3) can generate warehouse inbound / outbound data by recognizing the barcode and transmit it to the inbound / outbound management unit.

[0120] In addition, the main server (1) can control access by using artificial intelligence to perform facial recognition, QR code barcode authentication, mobile access card, RFID card, etc. when a worker from the manufacturer enters and exits the workplace.

[0121] The process control department can perform accurate weighing by setting upper and lower error limit standards for raw material weighing data.

[0122] The regulatory comparison department can perform revision management for text information (the above regulatory data).

[0123] The main server (1) may include a issuing unit that issues an e-label when the readability of the information written on the packaging material is poor.

[0124] When a client (terminal) scans an e-label, the issuing unit can transmit the previously stored information to the client.

[0125] Each of the equipment and the main server (1) of this system can implement interoperability by applying OPC-UA, an industrial communication protocol that follows the international standard IEC 62541. Through OPC-UA-based data interoperability, communication compatibility and security between heterogeneous equipment can be secured, and data visibility and integrated management of the manufacturing site for the implementation of a smart factory can be realized.

[0126] The main server (1) can provide information such as item standard unit price information, level progress status information, purchase order status, internal inventory status, bulk inspection status, and sales status to each client (terminal).

[0127] The main server (1) can provide each client with a dashboard that displays key production indicators such as product analysis information, order status, and inflow / outflow amounts.

[0128] The main server (1) can perform computerized management of packaging specifications, provide an export management system, and calculate costs through raw material costs, etc. and provide them to each client.

[0129] The main server (1) can receive temperature and humidity data provided by a measurement module equipped at the manufacturer and provide it to each client.

[0130] FIGS. 4 and 5 are drawings illustrating an example of OPC-UA application. Referring to FIGS. 4 and 5, the security function of the system is further enhanced by the fact that each facility and the main server (1), etc., exchange data using the OPC-UA protocol.

[0131] As these are already known technologies, a more detailed explanation will be omitted.

[0133] FIG. 3 is a drawing for explaining additional embodiments of the present invention.

[0134] Hereinafter, additional embodiments of the present invention will be described with reference to FIG. 3.

[0135] The above manufacturing facility may include a stirring device (100) that stirs raw materials to manufacture cosmetics.

[0136] The stirring device (100) may include a receiving container (101) in which the raw materials are received.

[0137] The above-mentioned receiving container (101) may include a bottom portion, a side wall portion extending upward from the perimeter of the bottom portion, a receiving space formed by the bottom portion and the side wall portion and in which raw materials are received, and an upper opening formed by the top of the side wall portion.

[0138] The stirring device (100) may include a cover member (102) that covers the upper opening of the receiving container (101).

[0139] The stirring device (100) may include an upper pivot shaft (103) that penetrates the cover member (102) and has its lower portion inserted into the internal receiving space of the receiving container (101), and a driving motor (104) that is provided on the upper portion of the cover member (102) and connected to the upper pivot shaft (103) to rotate the upper pivot shaft (103).

[0140] The stirring device (100) may include an upper stirring blade (105) having a zigzag shape and provided on the outer surface of the upper rotating shaft (103).

[0141] The stirring device (100) may include a first gear (106) that is provided on the outer surface of the lower end of the upper pivot shaft (103) and is axially coupled with the upper pivot shaft (103).

[0142] The first gear (106) can be positioned below the upper stirring blade (105).

[0143] The stirring device (100) may include a lower pivot shaft (107) positioned to the right (to the right based on FIG. 3) of the upper pivot shaft (103) and positioned below the lower end of the upper pivot shaft (103).

[0144] The stirring device (100) may include a second gear (108) that is provided on the outer surface of the upper part of the lower pivot shaft (107), is axially coupled with the lower pivot shaft (107), and meshes with the first gear (106).

[0145] The stirring device (100) may include a lower stirring blade (109) that is provided on the outer surface of the lower pivot shaft (107), is positioned below the second gear (108), and has a zigzag shape.

[0146] The stirring device (100) may include a heating wire (111) installed in each of the upper stirring blade (105) and the lower stirring blade (109).

[0147] The heating element (111) may be, for example, an electric resistor and may generate resistance heat by receiving power from a power supply unit.

[0148] When the upper pivot shaft (103) rotates by the drive motor (104), the first gear (109) also rotates, and the second gear (108) that meshes with the first gear (109) rotates.

[0149] At this time, as the second gear (108) rotates, the lower pivot shaft (107) rotates.

[0150] When the first gear (109) rotates clockwise when viewed in a plane, the second gear (108) rotates counterclockwise when viewed in a plane, so that the upper rotation shaft (103) and the lower rotation shaft (104) rotate in opposite directions to each other, and as described above, the lower rotation shaft (107) is positioned lower than the upper rotation shaft (103).

[0151] That is, the upper stirring blade (105) rotates clockwise on the upper side inside the receiving container (101), and the lower stirring blade (109), which is positioned below the upper stirring blade (105), rotates counterclockwise on the lower side inside the receiving container (101).

[0152] Therefore, the upper and lower parts of the raw materials inside the receiving container (101) are rotated in different directions, causing the fluid to collide and inducing turbulence, which can improve the mixing speed and the degree of dispersion.

[0153] At this time, as described above, a heating element (111) is embedded in the stirring blades, and by supplying heat to control the viscosity of the raw materials, the mixing ability can be further improved. Additionally, the upper stirring blade (105) and the lower stirring blade (109) are in a zigzag shape, so the contact area with the raw materials is increased, allowing for more effective heat exchange.

[0154] The stirring device (100) may include a screw groove (110) formed on the right outer surface of the lower part of the upper pivot shaft (103).

[0155] The stirring device (100) may include a supporting means (120) comprising a fastening part (212) that is inserted into the screw groove (110) and has screw threads on its outer surface to be screw-fastened with the screw groove (110), and a supporting part (122) that is protruded to the right from the right end of the fastening part (212), is positioned below the second gear (108), and supports the lower part of the second gear (108).

[0156] Additionally, it may include a vertical part (131) protruding downward from the bottom of the cover member (102) and positioned to the right of the lower pivot shaft (107), a fitting groove (132) formed by being recessed from the left to the right of the lower part of the vertical part (131), a horizontal part (133) positioned to the right of the vertical part (131) and positioned to the lower side of the second gear (108) and supporting the lower part of the second gear (108), and a fitting projection (134) protruding to the right from the right of the horizontal part (133) so as to be inserted into and fitted into the fitting groove (132).

[0157] That is, the support means (120) and the additional support means (130) are positioned with the lower pivot shaft (107) in between to support the lower part of the second gear (108), respectively, thereby maintaining the state in which the second gear (108) and the first gear (106) are engaged.

[0158] At this time, the above-mentioned fastening part (121) is screw-fastened to the screw groove (110), so that the support means (120) can be separated from the upper pivot shaft (107), and when the above-mentioned fitting protrusion (134) also comes out of the fitting groove (132), the horizontal part (133) can be separated from the vertical part (131).

[0159] Since the horizontal part (133) and the support part (122) each support the lower pivot shaft (109) and the second gear (108), they may be damaged or deformed during long-term use, so they are separated from the vertical part (131) and the upper pivot shaft (103) respectively to allow for replacement and maintenance.

[0161] Although embodiments of the present invention have been described above with reference to the attached drawings, those skilled in the art will understand that the present invention may be implemented in other specific forms without changing the technical concept or essential features thereof. Therefore, the embodiments described above should be understood as illustrative in all respects and not restrictive. Explanation of the symbols

[0163] S: Cosmetics Smart Manufacturing Solution Provision System 1: Main Server 2: Client terminal 3: Manufacturer's device 4: Supplier Terminal

Claims

Claim 1 A formulation transmission unit that receives and stores formulation data for the manufacture of cosmetics produced by a client or manufacturer from a manufacturer's terminal; a planning unit that receives and stores production plan data from the manufacturer's terminal and receives and stores raw material delivery data from a supplier's terminal or the manufacturer's terminal that supplies raw materials; a process management unit that receives raw material weighing data from a weighing device and manufacturing process data from manufacturing equipment and transmits it to the manufacturer's terminal; a filling and packaging management unit that receives filling and packaging data from filling and packaging equipment and transmits it to the manufacturer's terminal; and a quality control unit that receives and stores inspection data from an inspection device or the manufacturer's terminal. The system includes an input / output management unit that receives and stores warehouse input / output data of cosmetics manufactured from the manufacturer's terminal, and the formulation data includes raw material names and formulation ratios. When the prescription delivery unit stores the formulation data, the system further includes an output unit that transmits an output interface for outputting the formulation data to the manufacturer's terminal. When the manufacturer's terminal selects the output interface, the output unit transmits output request data to an output module that includes code information matching the raw material name and the formulation ratio of the formulation data so that the raw material name is blinded. When the output interface is selected two or more times, the output unit transmits a password input window to the manufacturer's terminal for entering a pre-set password. When the pre-set password is entered into the password input window, the output request data is transmitted to the output module. The system also includes a file creation unit that receives the formulation data from the prescription delivery unit, encrypts the formulation data, converts it into a file with a dedicated extension, and saves it. Additionally, the system includes a user authentication unit that transmits a dedicated input window to the manufacturer's terminal for entering a dedicated ID and a dedicated password for viewing the file with the dedicated extension. and when the dedicated ID and the dedicated password are entered into the dedicated input window,The system further includes a viewer unit that receives the dedicated extension file from the file generation unit, decrypts the dedicated extension file, and transmits it to the manufacturer terminal; the planning unit receives the formulation data from the prescription transmission unit, calculates the estimated material requirement using the quantity of the production planning data and the formulation data, generates estimated requirement data including the estimated material requirement, transmits an ID and password input window to the manufacturer terminal, and further includes a delivery management unit that stores the ID and password entered in the ID and password input window; the delivery management unit transmits an account information input window to the supplier terminal for inputting account information, and if the account information entered in the account information input window corresponds to the ID and password, transmits a delivery schedule input page equipped with an input window for inputting order data and delivery schedule data to the supplier terminal; if the supplier terminal inputs delivery schedule data into the input window, transmits the delivery schedule input page with the delivery schedule data entered and a reservation interface to the manufacturer terminal, and if the manufacturer terminal selects the reservation interface through a user interface, transmits the reservation data to the supplier terminal; and the process management unit, wherein the scanner is the The system further includes a label request unit that, when recognizing a barcode provided on a receiving member in which a raw material is received, receives raw material recognition data from the scanner, matches and stores it with the raw material weighing data, and transmits it to the manufacturer's terminal; and when the weighing device completes weighing the raw material, receives a weighing completion signal from the weighing device and transmits a label output signal to an output device to output a label attached to the receiving member and containing weighing completion information; stores cosmetic packaging text data in accordance with the Cosmetics Act; receives image data of an illustration attached to a packaging material containing the cosmetic from the manufacturer's terminal and compares it with the text data;The system further includes a text comparison unit that transmits matching data to the manufacturer terminal when the image data and text data correspond, and generates and transmits mismatched data to the manufacturer terminal when they do not correspond; the system further includes a packaging material comparison unit that receives first image data of an illustration attached to a packaging material packaging a cosmetic at a first time point from the manufacturer terminal, receives second image data of an illustration attached to a packaging material packaging a cosmetic at a second time point after the first time point, compares the first image data and the second image data to set a change area including a different part, and maps a mark line displayed along the perimeter of the change area to the first image data or the second image data to generate mapping data and transmits it to the manufacturer terminal; the quality control unit includes one or more inspection items and an input field into which the inspection result for the inspection item is entered, and stores document data having a form structure corresponding to a standard specification document; the inspection data includes item data corresponding to the inspection item and result data that matches the item data; and the quality control unit automatically inputs the result data matched with the item data corresponding to the inspection item into the input field matched with the inspection item to obtain standard form document data A system for providing smart cosmetic manufacturing solutions characterized by generating. Claim 2 delete Claim 3 delete Claim 4 delete Claim 5 delete Claim 6 delete Claim 7 delete Claim 8 delete Claim 9 delete Claim 10 delete Claim 11 In claim 1, the stirring device for manufacturing cosmetics by stirring raw materials further comprises: a receiving container in which the raw materials are received; a cover member covering an upper opening of the receiving container; an upper pivot shaft penetrating the cover member and having its lower portion inserted into the receiving container; a driving motor provided on the upper portion of the cover member and connected to the upper pivot shaft to rotate the upper pivot shaft; an upper stirring blade having a zigzag shape provided on the outer surface of the upper pivot shaft; a first gear provided on the outer surface of the lower portion of the upper pivot shaft; a lower pivot shaft positioned to the right of the upper pivot shaft and having its lower portion positioned below the lower portion of the upper pivot shaft; a second gear provided on the outer surface of the upper portion of the lower pivot shaft and meshing with the first gear; a lower stirring blade having a zigzag shape provided on the outer surface of the lower pivot shaft; a heating wire embedded and installed in each of the upper stirring blade and the lower stirring blade; and the right side of the lower portion of the upper pivot shaft A system for providing a smart cosmetic manufacturing solution, characterized by comprising: a screw groove formed on an outer surface; a fastening part inserted into the screw groove and having screw threads on its outer surface to be screw-fastened with the screw groove, and a supporting part protruding to the right from the right end of the fastening part and positioned below the second gear and supporting the lower part of the second gear; and additional supporting means including a vertical part protruding downward from the bottom of the cover member and positioned to the right of the lower pivot shaft, a fitting groove formed on the left side of the lower end of the vertical part, a horizontal part positioned to the right of the vertical part and positioned below the second gear and supporting the lower side of the second gear, and a fitting projection protruding to the right from the right side of the horizontal part so as to be inserted into and fitted into the fitting groove.

Citation Information

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