Material management method and system
Through material management methods and systems, the binding between material data and warehousing data is realized, and combined with the formula data generation task operation process, the information island problem in material management is solved, and the reliability and operation accuracy of material management are improved.
Patent Information
- Application Number
- CN202510234546.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2025-07-29
AI Technical Summary
In the factory mass production mode, there is an island problem of information in material management, cross-department information transmission is lagging, manual transcription error rate is high, and new employees or cross-job personnel are prone to errors in material collection and misallocation of process parameters.
Through material management methods and systems, the binding of material data, container data and warehouse data is realized, and the material process information is called in combination with formula data to generate task operation processes, and visual guidance is provided.
It improves the reliability of material management, simplifies formula process management, reduces operational errors, and realizes joint management of multiple parties.
Smart Images

Figure CN120387767A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of material management, and particularly relates to a material management method and system. Background Art
[0002] In the factory mass production mode, material management involves collaborative operations of multiple departments such as procurement, warehousing, process matching, and formula research and development. In the traditional management mode, data in each link is scattered among different responsible entities, forming information islands and lacking a dynamic association mechanism. Operators need to rely on paper documents or independent systems for material registration, bin location searching, and formula verification. There are not only problems such as lag in cross-departmental information transmission and high manual transcription error rates, but also operation errors such as incorrect material picking and incorrect process parameter matching are likely to occur due to insufficient understanding of complex process standards by newly recruited or cross-posted personnel. Summary of the Invention
[0003] The present invention aims to at least solve one of the technical problems existing in the prior art. For this purpose, the present invention provides a material management method and system, which can perform multi-party joint management of materials and improve the reliability of material management.
[0004] On the one hand, an embodiment of the present invention provides a material management method, including: Based on the operation of a first interaction interface, adding material data and container data and binding the material data and the container data, where the material data includes a material code and process information of the material; Based on the operation of a second interaction interface, binding the material data and bin location data of a material cabinet; Based on the operation of a third interaction interface, configuring product data and formula data of a product, and the formula data calls the material data; Based on the operation of a fourth interaction interface, establishing a production task and displaying a plurality of task operation controls of the production task, the production task calls at least one of the product data and the formula data and generates a task operation process according to the process information of the material data, and part of the plurality of task operation controls is adapted to the task operation process.
[0005] According to some embodiments of the present invention, the first interaction interface displays a first interaction control and a material list. The adding material data and container data and binding the material data and the container data based on the operation of the first interaction interface includes: Clicking the first interaction control to display a fourth interaction interface, and the fourth interaction interface displays a first material code input control, a process information adjustment control of the material, and a second interaction control; Enter the material code of the newly added material through the first material code input control, and enter the process information of the newly added material through the process information adjustment control; Click the second interaction control to close the fourth interaction interface and display the data of the newly added material in the material list.
[0006] According to some embodiments of the present invention, the first interaction interface further displays a third interaction control, a fourth interaction control, and a container list. Based on the operation of the first interaction interface, adding material data and container data and binding the material data and the container data further includes: Select the target item in the material list and click the third interaction control to display the fifth interaction interface, which displays the material code corresponding to the target item and the first container editing control; Enter the container data through the first container editing control and close the fifth interaction interface to add the corresponding container code item in the container list, where the serial number of the container code item is the same as the serial number of the target item; Click the fourth interaction control to print the container data corresponding to the target item.
[0007] According to some embodiments of the present invention, the first interaction interface displays a first interaction control and a material list. Based on the operation of the first interaction interface, adding material data and container data and binding the material data and the container data includes: Click the first interaction control to display the fourth interaction interface, which displays a first material code input control, a process information adjustment control for the material, a second container editing control, and a second interaction control; Enter the material code of the newly added material through the first material code input control, and enter the process information of the newly added material through the process information adjustment control; Enter the container data through the second container editing control; Click the second interaction control to close the fourth interaction interface and display the material data and the container data of the newly added material in the material list.
[0008] According to some embodiments of the present invention, the second interaction interface displays a fifth interaction control and a bin list. Based on the operation of the second interaction interface, binding the material data and the bin data of the material cabinet includes: Click the fifth interaction control on the second interaction interface to display the sixth interaction interface, which displays a bin editing control, a second material code input control, and a sixth interaction control; Edit the bin data of the material cabinet through the bin editing control, and input the material code through the second material code input control; Click the sixth interaction control to close the sixth interaction interface and add the bin data and the material code to the same item in the bin list to bind the bin data and the material data.
[0009] According to some embodiments of the present invention, the third interaction interface displays a seventh interaction control, a formula list, and a formula editing unit. Based on the operation of the third interaction interface, configure the product data and the formula data of the product. The formula data calls the material data, including: Click the seventh interaction control to add a new formula item to the formula list. The new formula item displays the product code and the formula code; Select the new formula item and edit the formula content through the formula editing unit.
[0010] According to some embodiments of the present invention, the formula editing unit displays a first output quantity editing box and a plurality of ingredient lists adapted to different types of materials. Each ingredient list is configured with an eighth interaction control. The selecting the new formula item and editing the formula content through the formula editing unit includes: Select the new formula item and input the first output quantity data corresponding to the formula in the first output quantity editing box; Click the eighth interaction control to display the seventh interaction interface. The seventh interaction interface displays a third material code input control, an ingredient dosage input control, a dosage error input control, and a ninth interaction control; Input the material code through the third material code input control, input the ingredient dosage data through the ingredient dosage input control, and input the dosage error data through the dosage error input control; Click the ninth interaction control to close the seventh interaction interface and add a new ingredient item to the corresponding ingredient list.
[0011] According to some embodiments of the present invention, the fourth interaction interface displays a tenth interaction control and a task list. Based on the operation of the fourth interaction interface, establish a production task and display a plurality of task operation controls for the generated task, including: Click the tenth interaction control to display the eighth interaction interface. The eighth interaction interface displays at least one of a product information editing control and a formula information editing control, a task information editing control, and an eleventh interaction control; Input task information through the task information editing control; Entering a product code through the product information editing control, and / or entering a recipe code through the recipe information editing control; Click the eleventh interactive control to close the eighth interactive interface and establish a production task in the task list and display multiple task operation controls of the production task. The generated task calls at least one of the product data and the formula data according to the product code or the formula code and generates a task operation process according to the process information of the material data. Some of the multiple task operation controls are adapted to the task operation process.
[0012] According to some embodiments of the present invention, the eighth interactive interface further displays a second output edit box, and clicking the eleventh interactive control closes the eighth interactive interface and creates a production task in the task list and displays multiple task operation controls for the production task, and the process also includes: Enter target production data through the second production edit box, where the target production data is an integer multiple of the first production data.
[0013] On the other hand, an embodiment of the present invention provides a material management system, including a main control module, a human-computer interaction module, an identification code reading module and a material cabinet, wherein the material cabinet is provided with multiple bins, each bin is equipped with an electric-controlled bin door, and the main control module is electrically connected to the human-computer interaction module, the identification code reading module and the electric-controlled bin door, respectively, and is used to implement the above-mentioned material management method.
[0014] The embodiments of the present invention have at least the following beneficial effects: By binding material data, container data and warehouse data, the automatic association of purchase and warehousing data, material storage location data and production material collection containers is achieved. Material data is called through recipe data, and the material data contains the material's process information. Based on the material's process information, the task operation process is automatically generated in the production task, which simplifies the recipe's process management, generates task operation controls to adapt to the task operation process, and realizes visual guidance of task operations. It can carry out multi-party joint management of materials, which is conducive to improving the reliability of material management.
[0015] Additional aspects and advantages of the present invention will be given in part in the following description and in part will be obvious from the following description, or will be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments with reference to the accompanying drawings, in which: Figure 1 A flow chart of the steps of the material management method according to an embodiment of the present invention; Figure 2Schematic block diagram of the material management system according to an embodiment of the present invention; Figure 3 Example diagrams of the first interaction interface and the fourth interaction interface according to an embodiment of the present invention; Figure 4 One of the example diagrams of the second interaction interface and the sixth interaction interface according to an embodiment of the present invention; Figure 5 Example diagram of the third interaction interface according to an embodiment of the present invention; Figure 6 Example diagram of the fourth interaction interface according to an embodiment of the present invention; Figure 7 Example diagram of the fifth interaction interface according to an embodiment of the present invention; Figure 8 Another example diagram of the second interaction interface and the sixth interaction interface according to an embodiment of the present invention; Figure 9 Example diagram of the seventh interaction interface according to an embodiment of the present invention; Figure 10 Example diagram of the eighth interaction interface according to an embodiment of the present invention.
[0017] Reference numerals: Main control module 10, human-machine interaction module 20, identification code reading module 30, weighing module 40, material cabinet 50, storage bin 51, electrically controlled bin door 52, first interaction interface 101, second interaction interface 102, third interaction interface 103, fourth interaction interface 104, fifth interaction interface 105, sixth interaction interface 106, seventh interaction interface 107, eighth interaction interface 108, formula editing unit 113. Detailed implementation manners
[0018] The embodiments of the present invention will be described in detail below. The examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present invention, and should not be construed as a limitation to the present invention.
[0019] In the description of the present invention, it should be understood that the orientation descriptions, such as up, down, front, back, left, right, etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present invention.
[0020] In the description of the present invention, "several" means one or more, "multiple" means more than two. Understandings such as "greater than", "less than", and "exceeding" do not include the corresponding number, while understandings such as "above", "below", and "within" include the corresponding number. If there is a description of "first", "second", etc., it is only for the purpose of distinguishing technical features and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or the sequence relationship of the indicated technical features.
[0021] In the description of the present invention, unless otherwise clearly defined, terms such as "set", "installed", and "connected" should be understood in a broad sense. Those skilled in the art can reasonably determine the specific meanings of the above terms in the present invention in combination with the specific content of the technical solution.
[0022] Please refer to Figure 1 , this embodiment discloses a material management method, including steps S100 to S400. It should be noted that the steps of this embodiment are numbered for the convenience of review and understanding. Before detailing the material management method of this embodiment, the hardware environment (material management system) for implementing the material management method is described: Please refer to Figure 2 , the material management system includes a main control module 10, a human-machine interaction module 20, an identification code reading module 30, a weighing module 40, and a material cabinet 50. The material cabinet 50 is provided with a plurality of storage positions 51, and each storage position 51 is installed with an electric control bin door 52. The main control module 10 is electrically connected to the human-machine interaction module 20, the identification code reading module 30, the weighing module 40, and the electric control bin door 52 respectively. The human-machine interaction module 20 can adopt a touch display screen, or a combination of a keyboard, a mouse, and a common display screen. The number of the human-machine interaction modules 20 can be one or more, and multiple human-machine interaction modules 20 are deployed at different positions to realize different content interactions. The electric control bin door 52 can adopt a bin door installed with an electromagnetic lock or a bin door controlled by a relay. The main control module 10 can send an opening signal to the electric control bin door 52 to open the bin door. The main control module 10 can be a server or a computer host. The number of computer hosts can be one or more, and multiple computer hosts can be networked through a wide area network or a local area network to realize network communication and collaborative work among multiple computer hosts. The number of the material cabinets 50 can be one group or multiple groups. The number of each group of material cabinets 50 can be one or more, and multiple groups of material cabinets 50 are deployed at different positions in the production workshop to realize the storage or retrieval of materials in different processes. For example, in the material warehouse, materials are stored in different storage positions 51 of the material cabinet 50 in batches; for another example, in the batching workshop, materials are weighed by the weighing module 40 according to the requirements of the process formula and then stored in different storage positions 51 of the material cabinet 50. The identification code reading module 30 is used to read identification codes such as material codes or container codes in a scanning manner.
[0023] The content of each step is described in detail below: S100. Based on the operation on the first interaction interface 101, add material data and container data and bind the material data and the container data. The material data includes a material code and process information of the material; S200. Based on the operation on the second interaction interface 102, bind the material data and the bin location data of the material cabinet 50; S300. Based on the operation on the third interaction interface 103, configure product data and formula data of the product. The formula data calls the material data; S400. Based on the operation on the fourth interaction interface 104, establish a production task and display multiple task operation controls of the production task. The production task calls at least one of the product data and the formula data and generates a task operation process according to the process information of the material data. Some of the multiple task operation controls are adapted to the task operation process.
[0024] Exemplarily, please refer to Figures 3 to 6 , taking Figure 3 the material information interaction interface shown therein as an example of the first interaction interface 101, taking Figure 4 the bin location information interaction interface shown therein as an example of the second interaction interface 102, taking Figure 5 the formula management interaction interface shown therein as an example of the third interaction interface 103, taking Figure 6 the task management interaction interface shown therein as an example of the fourth interaction interface 104.
[0025] In the related art, for the management of materials, usually after the procurement of materials, the materials are registered and stored waiting for production requisition, and the storage method of materials is usually to store the same kind of materials together. In this embodiment, the material data includes the material code and the process information of the material, and the material code can be associated with the process information to realize the association between the material and the process. It is worth mentioning that in this embodiment, the material code is associated with the process information, and the materials are classified and stored according to the material code. Different material codes can correspond to the same kind of material or different kinds of materials, so as to realize the application of the same kind of material to different processes or different kinds of materials to the same process. The process information of the material can be derived from the user manual of the material, or from the process control personnel of production, or from the R & D personnel of the product formula. For example, as described above, the number of the material cabinets 50 can be one group or multiple groups, and multiple groups of material cabinets 50 can be deployed at different positions. Here, two groups of material cabinets 50 are taken as an example. One group of material cabinets 50 (referred to as the warehouse cabinet for short) is deployed in the material warehouse, and the other group of material cabinets 50 (referred to as the pre - preparation cabinet for short) is deployed in the pre - preparation workshop. For the warehouse cabinet, in the stage of material procurement and warehousing, the warehouse management personnel can, based on the operation of the first interaction interface 101, add the material data and the container data and bind the material data and the container data, and, based on the operation of the second interaction interface 102, bind the material data and the bin location data of the warehouse cabinet, so as to facilitate storing the materials in the designated position of the warehouse cabinet. In this stage, the warehouse management personnel can input part or all of the process information of the material. For example, according to the user manual, the material needs to be dried before batching, then the "drying" process can be input into the process information of the material; the warehouse management personnel can also not input the process information. For example, when the R & D personnel of the formula design a new product and need to use the same kind of material in different processes (with different dosages in different processes), at this time, different material codes can be configured to distinguish the same kind of material applied to different processes. The R & D personnel of the formula can, based on the operation of the first interaction interface 101, add the material data and the container data and bind the material data and the container data, and, based on the operation of the second interaction interface 102, bind the material data and the bin location data of the pre - preparation cabinet, so as to store the same kind of material separately from the warehouse cabinet to different positions of the pre - preparation cabinet waiting for production use.
[0026] For a mass - producible product, its formula is usually fixed. Based on the operation of the third interaction interface 103, the formula R & D personnel can configure the product data and the formula data of the product. They can pre - configure the formula data of the product for production call. When it is necessary to produce a certain product, the management personnel in the production workshop can establish a production task based on the operation of the fourth interaction interface 104. The production task calls at least one of the product data and the formula data. For example, when the product data and the formula data are in a one - to - one correspondence, the production task can call the product data or the formula data. Also, for example, when the product data and the formula data are in a one - to - many or many - to - one relationship, the production task can call both the product data and the formula data to ensure the correctness of the formula call. Among them, the formula data calls the material data, and the material data includes the process information of the material. In this way, the corresponding process flow can be generated according to the process information of the used material. Each process flow is one link of the task operation process, and the task operation process is displayed in the form of task operation controls to facilitate the operation guidance for the operators. The task operation process also includes non - process flows such as material requisition and loading.
[0027] In this way, through the binding of the material data, container data and storage location data, the automatic association of the purchase - in data, the material storage location data and the production material - requisition containers is realized. The formula data calls the material data, and the material data contains the process information of the material. According to the process information of the material, the task operation process is automatically generated in the production task, simplifying the process management of the formula, generating task operation controls to adapt to the task operation process, realizing the visual guidance of the task operation, and enabling the multi - party joint management of the materials, which is conducive to improving the reliability of the material management.
[0028] The first interaction interface 101 displays the first interaction control and the material list. Step S100: Based on the operation of the first interaction interface 101, add the material data and the container data and bind the material data and the container data, including: Click the first interaction control to display the fourth interaction interface 104. The fourth interaction interface 104 displays the first material code input control, the process information adjustment control of the material and the second interaction control; Input the material code of the newly added material through the first material code input control and input the process information of the newly added material through the process information adjustment control; Click the second interaction control to close the fourth interaction interface 104 and display the data of the newly added material in the material list.
[0029] Exemplarily, please refer to Figure 3 to Figure 3The material information interaction interface shown is used as an example of the first interaction interface 101. The "New" control shown on the left side (facing the interaction interface) of the material information interaction interface is used as an example of the first interaction control. The list where material codes such as "M14010015, M14010017, M14010018" are shown in the material information interaction interface is used as an example of the material list. Click the first interaction control to display the fourth interaction interface 104, as shown in Figure 3 the new material interaction interface shown, in which an example of the first material code input control is shown in Figure 3 the control corresponding to the "Material Code:" field shown; an example of the process information adjustment control for the material is shown in Figure 3 the controls corresponding to fields such as "Need to mix:", "Whether to dry the material:", and "Process type:" shown, and an example of the second interaction control is shown in Figure 3 the "Submit" control shown. Input corresponding information through the corresponding controls, such as the material code and process information; click the second interaction control to close the fourth interaction interface 104 and display the data of the newly added material in the material list. In this way, by entering the material code and the process information of the material in the same interaction interface, the material code and the process information can be associated, which is convenient for managing the materials according to the process information, realizing multi-party collaboration, and improving the reliability of material management. Of course, in order to facilitate the classification management of different materials, the fourth interaction interface 104 can also have a material type editing control, such as Figure 3 the control corresponding to "Material type: Spherical material" shown.
[0030] In some application examples, the first interaction interface 101 also displays a third interaction control, a fourth interaction control, and a container list. Step S100, based on the operation on the first interaction interface 101, adding material data and container data and binding the material data and the container data, further includes: Select the target item in the material list and click the third interaction control to display the fifth interaction interface 105, which displays the material code corresponding to the target item and the first container editing control; Input container data through the first container editing control and close the fifth interaction interface 105 to add the corresponding container code item in the container list, where the serial number of the container code item is the same as that of the target item; Click the fourth interaction control to print the container data corresponding to the target item.
[0031] Exemplarily, the "New" control shown on the right side in Figure 3 is used as an example of the third interaction control, the "Print barcode" control shown on the right side in Figure 3 is used as an example of the fourth interaction control, and in Figure 3The list containing container codes such as "SJ015, SJ017, SJ018" shown in Figure 7 is used as an example of the container list. When it is necessary to bind material data with container data, select the target item in the material list. For example, select the first item where the material code is M14010015 as the target item, and click the third interaction control to display the fifth interaction interface 105, as Figure 7 shown. Enter container data, such as container code and container tare weight, through the first container code editing control on the fifth interaction interface 105. The fifth interaction interface 105 can also automatically display the material code of the target item to facilitate manual verification. Click the Figure 3 "Submit" control shown in
[0032] to close the fifth interaction interface 105 and add the corresponding container code item to the container list on the first interaction interface 101. For example, Figure 3 the first item corresponding to the container code "SJ015" on the left. The serial number of the container code item is the same as that of the target item, both being the first item. This can facilitate the operator to view the correspondence between material data and container data. Then click the fourth interaction control to print the container data corresponding to the target item, such as the container code, or the container code and container tare weight, so as to attach the printed container data to the container for easy tracking and management.
[0032] In some other application examples, the first interaction interface 101 displays the first interaction control and the material list. Step S100, based on the operation of the first interaction interface 101, adding material data and container data and binding the material data and container data, includes: Click the first interaction control to display the fourth interaction interface 104. The fourth interaction interface 104 displays the first material code input control, the process information adjustment control for the material, the second container editing control, and the second interaction control; Enter the material code of the newly added material through the first material code input control, and enter the process information of the newly added material through the process information adjustment control; Enter container data through the second container editing control; Click the second interaction control to close the fourth interaction interface 104 and display the material data and container data of the newly added material in the material list.
[0033] Different from the above application example, a second container editing control (not shown) is also displayed on the fourth interaction interface 104. In this way, based on the operation of the fourth interaction interface 104, container data can be input, and the synchronization input of material data and container data can be realized. When the second interaction control is clicked, the fourth interaction interface 104 is closed and the material data and container data of the newly added material are displayed in the material list. For specific examples of the first material code input control, the process information adjustment control of the material, and the second interaction control, reference can be made to the above application example.
[0034] A fifth interaction control and a bin list are displayed on the second interaction interface 102. Step S200: Based on the operation of the second interaction interface 102, bind the material data and the bin data of the material cabinet 50, including: Click the fifth interaction control on the second interaction interface 102 to display the sixth interaction interface 106. The sixth interaction interface 106 displays a bin editing control, a second material code input control, and a sixth interaction control; Edit the bin data of the material cabinet 50 through the bin editing control, and input the material code through the second material code input control; Click the sixth interaction control to close the sixth interaction interface 106 and add the bin data and the material code in the same item of the bin list to bind the bin data and the material data.
[0035] Exemplarily, please refer to Figure 4 to Figure 4 Take the bin information interaction interface shown in Figure 4 as an example of the second interaction interface 102, take the "Add" control shown on the left side of the bin information interaction interface as an example of the fifth interaction control, and take the list where bin numbers such as "0, 1" are located as an example of the bin list. When it is necessary to bind the material data with the bin data of the material cabinet 50, click the fifth interaction control on the second interaction interface 102 to display the sixth interaction interface 106, Figure 4 the "Add Bin Configuration" interaction interface shown in Figure 8 where the "Add Bin Configuration" interaction interface shown in Figure 4 is displayed in the form of a pop-up window, while Figure 4 the "Add Bin Configuration" interaction interface shown in Figure 4 is displayed adjacent to the second interaction interface 102. The bin editing control of the sixth interaction interface 106 is like Figure 4"0, M14010015, Material A" shown in [[]] is used to bind bin location data and material data.
[0036] The third interaction interface 103 displays a seventh interaction control, a formula list, and a formula editing unit 113. Step S300: Based on the operations on the third interaction interface 103, configure product data and the formula data of the product. The formula data calls the material data, including: Click the seventh interaction control to add a new formula item to the formula list. The new formula item displays a product code and a formula code; select the new formula item and edit the formula content through the formula editing unit 113.
[0037] Exemplarily, Figure 5 taking the formula management interaction interface shown in [[]] as an example of the third interaction interface 103, and taking the "New" control on the left side of the formula management interaction interface as an example of the seventh interaction control. An example of the formula list is Figure 5 the list where "CP01, PF01" shown on the left side is located. When a new formula needs to be added, click the seventh interaction control to add a new formula item to the formula list. The new formula item displays a product code (such as Figure 5 "CP01" shown on the left side in [[]]) and a formula code (such as Figure 5 "PF01" shown on the left side in [[]]). When adding a new formula item, the new formula item can be automatically selected or manually selected by the operator, so as to edit the formula content through Figure 5 the formula editing unit 113 shown on the right side in [[]].
[0038] The formula editing unit 113 displays a first production quantity editing box and multiple ingredient lists adapted to different types of materials. Each ingredient list is configured with an eighth interaction control. The above steps: select the new formula item and edit the formula content through the formula editing unit 113, including: Select the new formula item and enter the first production quantity data corresponding to the formula in the first production quantity editing box; Click the eighth interaction control to display the seventh interaction interface 107. The seventh interaction interface 107 displays a third material code input control, an ingredient dosage input control, a dosage error input control, and a ninth interaction control; Enter the material code through the third material code input control, enter the ingredient dosage data through the ingredient dosage input control, and enter the dosage error data through the dosage error input control; Click the ninth interaction control to close the seventh interaction interface 107 and add an ingredient item to the corresponding ingredient list.
[0039] Exemplarily, Figure 5The control corresponding to "Total weight: 200.00g" shown on the right side is taken as an example of the first production quantity edit box. With weight as the measurement method of production quantity, the single - portion production quantity of each formula can be set through the first production quantity edit box. When multiple products are required, adjustment can be made according to an integer multiple of the single - portion production quantity set by the formula. Figure 5 shows the batching lists of different types of materials such as "ball materials", "powder materials" and "liquids". Each batching list is configured with a corresponding eighth interaction control, such as Figure 5 the "Add" control shown in the upper right corner of each batching list on the right side in. Clicking the eighth interaction control displays the seventh interaction interface 107, such as Figure 9 the "Add formula material" interaction interface shown in. The seventh interaction interface 107 displays a third material code input control, such as Figure 9 the input box corresponding to "Material code:" shown in. The corresponding material data is called by inputting the material code through the third material code input control, where the third material code input control calls the previously entered material data in the form of a drop - down list. The seventh interaction interface 107 also displays a batching dosage input control, such as Figure 9 the control corresponding to "Weight: 0.000g" shown in. The dosage error input control, such as Figure 9 the control corresponding to "Error: 0.000g" shown in. In some application examples, the seventh interaction interface 107 also displays a solvent input control, such as Figure 9 the control corresponding to "Solvent:" shown in. In this way, the material data of the formula can be set based on the operation of the seventh interaction interface 107. Clicking the ninth interaction control, such as Figure 9 the "Submit" control shown in, closes the seventh interaction interface 107 and adds a batching item to the corresponding batching list. Repeating the above steps, the corresponding material data can be added to the batching lists of different types of materials to achieve the free combination of formulas.
[0040] The fourth interaction interface 104 displays a tenth interaction control and a task list. Based on the operation of the fourth interaction interface 104, a production task is established and multiple task operation controls for generating the task are displayed, including: Clicking the tenth interaction control displays the eighth interaction interface 108. The eighth interaction interface 108 displays at least one of a product information edit control and a formula information edit control, as well as a task information edit control and an eleventh interaction control; Input task information through the task information edit control; Input a product code through the product information edit control, and / or input a formula code through the formula information edit control; Click on the eleventh interaction control to close the eighth interaction interface 108, create a production task in the task list, and display multiple task operation controls for the production task. The generated task calls at least one of the product data and the recipe data according to the product code or the recipe code, and generates a task operation process according to the process information of the material data. Some of the multiple task operation controls are adapted to the task operation process.
[0041] Exemplarily, Figure 6 taking the shown task management interaction interface as an example of the fourth interaction interface 104, the tenth interaction control displayed on the fourth interaction interface 104 is like Figure 6 the "New Task" control shown in, and the task list is like Figure 6 the list where task codes such as "RW120301, RW120302" are shown in. When a certain product needs to be processed, click on the tenth interaction control in the fourth interaction interface 104 to display the eighth interaction interface 108, as Figure 10 shown. The eighth interaction interface 108 displays a product information editing control (such as Figure 10 the control corresponding to "Product: CP01" shown in) and a recipe information editing control (such as the control corresponding to "Recipe: PF01" shown in the figure). In some application examples, the product information editing control and the recipe information editing control can be selectively displayed. In addition, the eighth interaction interface 108 also displays a task information editing control, such as Figure 10 the controls corresponding to "Task Code:" and "Task Name:" shown in. Edit the corresponding information through the corresponding controls, such as at least one of the product code and the recipe code and the task information, and then click on the eleventh interaction control, such as Figure 10 the "Submit" control shown in, to close the eighth interaction interface 108, create a production task in the task list, and display multiple task operation controls for the production task, such as Figure 6Task operation controls such as "material requisition form", "material drying", "material feeding", "primary batching", and "secondary batching" shown in "Task 1". By displaying the corresponding task operations in a single task, operators (especially those with less experience) can intuitively understand the specific task operation process. And by displaying the task operation process in the form of task operation controls, when operators execute the corresponding task operations, they can click on the task operation controls to obtain more detailed operation guidelines. Among them, the production task calls relevant data according to the product code or formula code. For example, if the product data and formula data have been bound in the previous steps, by using the product code as the index item for table lookup, the corresponding product data or formula data can be found. Similarly, by using the formula code as the index item, the corresponding product data or formula data can also be found. In this way, at least one of the product data and formula data can be called, and different material data are configured for the formula data. The material data includes the process information of the materials. Thus, when the formula data is called, the process flow can be automatically constructed according to the process information of all materials, and the process flow is used as one or more links of the task operation process. For example, the materials need to be dried before use and primary batching and secondary batching are required. The process flow constructed in this way is as Figure 6 shown in "Task 1" in which the process flow includes "material drying", "primary batching", and "secondary batching". If the materials called by the formula do not require material drying and secondary batching, then as Figure 6 shown in "Task 2" in which the process flow only includes "primary batching". Of course, the task operation process also includes other necessary operation processes such as "material requisition form" and "material feeding". In this way, the process management of the formula can be simplified, the production task operation controls are adapted to the task operation process, and the visual guidance of the task operation is realized, so as to jointly manage the materials in multiple aspects, which is beneficial to improving the reliability of material management.
[0042] The eighth interaction interface 108 also displays a second output edit box. The above steps: click the eleventh interaction control to close the eighth interaction interface 108 and create a production task in the task list and display multiple task operation controls of the production task. Before that, it also includes: Input the target output data through the second output edit box, and the target output data is an integer multiple of the first output data.
[0043] Exemplarily, please refer to Figure 10 to Figure 10The control corresponding to "Weight: 200.00g" shown in [figure] is taken as an example of the second product edit box. After setting product data or formula data, the first output data in the called formula data is displayed in the second output edit box. An operator can input target output data through the second output edit box. If the quotient of the target output data input by the operator and the first output data is not an integer, the target product data is adjusted to an integer multiple of the first output data by rounding up or down, so as to ensure that production can be carried out in portions according to the single-portion usage set in the formula. In some other application examples, the first output data defaultly displayed in the second output edit box can be used, and products with multiple identical formulas can be produced by creating multiple identical tasks.
[0044] This embodiment provides a material management system, which includes a main control module 10, a human-machine interaction module 20, an identification code reading module 30, and a material cabinet 50. The material cabinet 50 is provided with a plurality of storage positions 51, and each storage position 51 is equipped with an electronically controlled warehouse door 52. The main control module 10 is electrically connected to the human-machine interaction module 20, the identification code reading module 30, and the electronically controlled warehouse door 52 respectively, and is used to implement the above-mentioned material management method. Through the binding of material data, container data, and storage position data, the automatic association of purchase-in warehouse data, material storage position data, and production material-taking containers is realized. The material data is called through the formula data, and the material data contains the process information of the material. According to the process information of the material, a task operation process is automatically generated in the production task, simplifying the process management of the formula. Task operation controls are generated to adapt to the task operation process, realizing the visual guidance of task operations, and enabling the multi-party joint management of materials, which is beneficial to improving the reliability of material management.
[0045] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art, various changes can be made without departing from the gist of the present invention.
Claims
1. A material management method, characterized in that, Including: Based on the operation of the first interaction interface (101), adding material data and container data and binding the material data and the container data, where the material data includes a material code and process information of the material; Based on the operation of the second interaction interface (102), binding the material data and the bin location data of the material cabinet (50); Based on the operation of the third interaction interface (103), configuring product data and formula data of the product, where the formula data calls the material data; Based on the operation of the fourth interaction interface (104), establishing a production task and displaying a plurality of task operation controls of the production task, where the production task calls at least one of the product data and the formula data and generates a task operation process according to the process information of the material data, and a part of the plurality of task operation controls is adapted to the task operation process.
2. The material management method according to claim 1, characterized in that The first interaction interface (101) displays a first interaction control and a material list. The operation based on the first interaction interface (101) to add material data and container data and bind the material data and the container data includes: Clicking the first interaction control to display the fourth interaction interface (104), where the fourth interaction interface (104) displays a first material code input control, a process information adjustment control of the material, and a second interaction control; Inputting the material code of the newly added material through the first material code input control and inputting the process information of the newly added material through the process information adjustment control; Clicking the second interaction control to close the fourth interaction interface (104) and display the data of the newly added material in the material list.
3. The material management method according to claim 2, wherein The first interaction interface (101) also displays a third interaction control, a fourth interaction control, and a container list. The operation based on the first interaction interface (101) to add material data and container data and bind the material data and the container data further includes: Selecting a target item in the material list and clicking the third interaction control to display the fifth interaction interface (105), where the fifth interaction interface (105) displays the material code corresponding to the target item and a first container editing control; Inputting container data through the first container editing control and closing the fifth interaction interface (105) to add a corresponding container code item in the container list, where the serial number of the container code item is the same as the serial number of the target item; Clicking the fourth interaction control to print the container data corresponding to the target item.
4. The material management method according to claim 1, wherein The first interaction interface (101) displays a first interaction control and a material list. The operation based on the first interaction interface (101) to add material data and container data and bind the material data and the container data includes: Clicking the first interaction control to display the fourth interaction interface (104), where the fourth interaction interface (104) displays a first material code input control, a process information adjustment control of the material, a second container editing control, and a second interaction control; Input the material code of the newly added material through the first material code input control, and input the process information of the newly added material through the process information adjustment control; Input the container data through the second container editing control; Click the second interaction control to close the fourth interaction interface (104) and display the material data of the newly added material and the container data in the material list.
5. The material management method according to claim 1, characterized in that The second interaction interface (102) displays a fifth interaction control and a bin list. Based on the operation of the second interaction interface (102), binding the material data and the bin data of the material cabinet (50) includes: Click the fifth interaction control on the second interaction interface (102) to display the sixth interaction interface (106). The sixth interaction interface (106) displays a bin editing control, a second material code input control, and a sixth interaction control; Edit the bin data of the material cabinet (50) through the bin editing control, and input the material code through the second material code input control; Click the sixth interaction control to close the sixth interaction interface (106) and add the bin data and the material code in the same item of the bin list to bind the bin data and the material data.
6. The material management method according to claim 1, wherein The third interaction interface (103) displays a seventh interaction control, a recipe list, and a recipe editing unit (113). Based on the operation of the third interaction interface (103), configuring the product data and the recipe data of the product, and the recipe data calls the material data, including: Click the seventh interaction control to add a new recipe item in the recipe list. The new recipe item displays the product code and the recipe code; Select the new recipe item and edit the recipe content through the recipe editing unit (113).
7. The material management method according to claim 6, wherein The recipe editing unit (113) displays a first output editing box and a plurality of ingredient lists adapted to different types of materials. Each ingredient list is configured with an eighth interaction control. Selecting the new recipe item and editing the recipe content through the recipe editing unit (113) includes: Select the new recipe item and input the first output data corresponding to the recipe in the first output editing box; Click the eighth interaction control to display the seventh interaction interface (107). The seventh interaction interface (107) displays a third material code input control, an ingredient dosage input control, a dosage error input control, and a ninth interaction control; Input the material code through the third material code input control, input the ingredient dosage data through the ingredient dosage input control, and input the dosage error data through the dosage error input control; Click the ninth interaction control to close the seventh interaction interface (107) and add an ingredient item in the corresponding ingredient list.
8. The material management method according to claim 7, characterized in that The fourth interaction interface (104) displays a tenth interaction control and a task list. Based on the operation of the fourth interaction interface (104), establishing a production task and displaying a plurality of task operation controls of the generated task, including: Click on the tenth interaction control to display the eighth interaction interface (108). The eighth interaction interface (108) displays at least one of a product information editing control and a recipe information editing control, as well as a task information editing control and an eleventh interaction control; Input task information through the task information editing control; Input a product code through the product information editing control and / or input a recipe code through the recipe information editing control; Click on the eleventh interaction control to close the eighth interaction interface (108), create a production task in the task list, and display multiple task operation controls for the production task. The generated task calls at least one of the product data and the recipe data according to the product code or the recipe code, and generates a task operation process according to the process information of the material data. Some of the multiple task operation controls are adapted to the task operation process.
9. The material management method according to claim 8, characterized in that, The eighth interaction interface (108) also displays a second output editing box. Before clicking on the eleventh interaction control to close the eighth interaction interface (108), create a production task in the task list, and display multiple task operation controls for the production task, it further includes: Input target output data through the second output editing box. The target output data is an integer multiple of the first output data.
10. A material management system, characterized in that, It includes a main control module (10), a human-computer interaction module (20), an identification code reading module (30), and a material cabinet (50). The material cabinet (50) is provided with multiple storage positions (51), and each storage position (51) is equipped with an electronically controlled cabinet door (52). The main control module (10) is electrically connected to the human-computer interaction module (20), the identification code reading module (30), and the electronically controlled cabinet door (52), and is used to implement the material management method according to any one of claims 1 to 9.