Production scheduling method and equipment for airbag pump and medium

By determining order information and priorities in the production and scheduling system of the air bag pump, formulating production tasks and processes, and carrying out quality inspection and process adjustments, the problem of the existing system being unable to be continuously used after on-site operating conditions is changed, the orderliness and efficiency of the production process is achieved, and the improvement of product quality and production efficiency is ensured.

CN120106475APending Publication Date: 2025-06-06QINGDAO BESLAN SEMICONDUCTOR TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510178356.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The production and scheduling system of the existing air bag pump cannot be used continuously after the on-site operating conditions change, and the scheduling results do not match the actual operating conditions, resulting in low production efficiency and product quality problems.

Method used

By determining the order information and priorities of the air bag pump, production tasks and production processes are formulated, and production schedules are adjusted according to the shared process and planned production time. At the same time, quality inspection is carried out, and after unqualified products are found, the problem process is stopped and the production schedule is adjusted.

Benefits of technology

The orderly and efficient production process is achieved, the stability of product quality and the improvement of production efficiency are ensured, and production interruptions and waste are reduced.

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Abstract

The invention discloses a production scheduling method and device of an air bag pump and a medium, and relates to the technical field of production management, and the method comprises the following steps: determining order information of the air bag pump, determining a priority according to the order information, determining a production task according to the priority, and determining a production process of the air bag pump according to the production task; a sharing process is determined according to the production processes of the multiple air bag pumps, multiple planned production times of the sharing process are determined, and a production scheduling plan corresponding to the production processes is determined according to the multiple planned production times and the priorities; inspection items of the air bag pumps are determined, quality inspection is conducted on the produced air bag pumps according to the inspection items, and whether unqualified products exist in the produced air bag pumps or not is determined; and if unqualified products exist in the produced air bag pumps, corresponding problem procedures are determined, the problem procedures are stopped, and the production scheduling plan is adjusted. The orderliness and high efficiency of the production process are ensured by formulating the production task and the production process.
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Description

Technical Field

[0001] The present application relates to the technical field of production management, and in particular to a production scheduling method, equipment and medium for a bellows pump. Background Art

[0002] The bellows pump, also known as the pneumatic diaphragm pump, works mainly based on the pneumatic principle. With the continuous development of industrial automation, bellows pumps are used more and more widely in various fields. Especially in the semiconductor, photovoltaic, chemical, food and other industries, bellows pumps are favored for their unique performance and advantages. Therefore, the market demand for bellows pumps shows a growing trend. Due to the complex and multi-constrained production site, the complex production mode of multi-variety small batches, the dynamically changing production environment, the multi-variety mixed scheduling mode of lean production, etc., after the production scheduling system in the relevant technology is put into operation, it will not be able to be used continuously after a slight change in the on-site working conditions, or the scheduling results cannot match the on-site working conditions, and the planned scheduling results are far from the manual scheduling results, which cannot meet the on-site working conditions. Summary of the invention

[0003] In order to solve the above problems, the present application proposes a production scheduling method for a bellows pump, comprising: determining order information of the bellows pump, determining a priority according to the order information, determining a production task according to the priority, and determining a production process of the bellows pump according to the production task; determining a shared process according to a plurality of production processes of the bellows pump, and determining a plurality of planned production times of the shared process, and determining a production scheduling plan corresponding to the production process according to the plurality of planned production times and the priority; determining inspection items of the bellows pump, and performing quality inspection on the produced bellows pump according to the inspection items to determine whether there are unqualified products in the produced bellows pump; if there are unqualified products in the produced bellows pump, determining the corresponding problem process, stopping the problem process, and adjusting the production scheduling plan.

[0004] In one example, adjusting the production schedule specifically includes: determining a similar process corresponding to the problematic process, and adjusting the production schedule according to the production process to replace the production items of the problematic process with the production items of the similar process.

[0005] In one example, the method also includes: determining multiple original production items corresponding to the same type of process, and determining multiple priorities corresponding to the multiple original production items, and determining the minimum priority of the same type of process based on the multiple priorities; determining multiple problem production items corresponding to the problem process, and determining multiple original priorities corresponding to the multiple problem production items; updating the multiple original priorities based on the minimum priority to determine multiple new priorities, and scheduling the same type of process based on the multiple new priorities.

[0006] In one example, the inspection items include any one or more of the following: flow test, pressure test, sealing test, corrosion resistance test.

[0007] In one example, the method further includes: performing quality inspection on the produced bellows pump according to the inspection items to obtain multiple inspection results; and comparing the multiple inspection results according to multiple predetermined inspection standards to determine whether the bellows pump is an unqualified product.

[0008] In one example, the method further includes: determining a plurality of unqualified production items corresponding to the unqualified product according to the inspection result, and determining a plurality of corresponding problematic processes according to the plurality of unqualified production items.

[0009] In one example, before adjusting the production schedule, the method also includes: determining whether the problematic process is the shared process; if the problematic process is the shared process, determining all production schedules corresponding to the shared process, and determining whether there are qualified products among the multiple air bag pumps produced corresponding to all production schedules.

[0010] In one example, after determining whether there are qualified products among the multiple air bag pumps produced corresponding to the entire production schedule, the method also includes: if there are qualified products among the multiple air bag pumps produced corresponding to the entire production schedule, the production schedule corresponding to the problematic process is stopped; if there are no qualified products among the multiple air bag pumps produced corresponding to the entire production schedule, the multiple production items corresponding to the shared process are stopped, and the shared process is repaired.

[0011] On the other hand, the present application also proposes a production scheduling device for a wind bladder pump, comprising: at least one processor; and a memory communicatively connected to the at least one processor; wherein the memory stores instructions executable by the at least one processor, and the instructions are executed by the at least one processor so that the production scheduling device for the wind bladder pump can execute: determining order information for the wind bladder pump, determining a priority based on the order information, determining a production task based on the priority, and determining a production process for the wind bladder pump based on the production task; determining a shared process based on a plurality of production processes for the wind bladder pumps, and determining a plurality of planned production times for the shared process, and determining a production scheduling plan corresponding to the production process based on the plurality of planned production times and the priority; determining inspection items for the wind bladder pump, and performing quality inspection on the produced wind bladder pumps based on the inspection items to determine whether there are unqualified products in the produced wind bladder pumps; if there are unqualified products in the produced wind bladder pumps, determining the corresponding problem process, stopping the problem process, and adjusting the production scheduling plan.

[0012] On the other hand, the present application also proposes a non-volatile computer storage medium storing computer executable instructions, wherein the computer executable instructions are configured to: determine order information of a bellows pump, determine a priority based on the order information, determine a production task based on the priority, and determine a production process of the bellows pump based on the production task; determine a shared process based on multiple production processes of the bellows pumps, and determine multiple planned production times for the shared process, and determine a production scheduling plan corresponding to the production process based on the multiple planned production times and the priority; determine inspection items for the bellows pump, and perform quality inspection on the produced bellows pumps based on the inspection items to determine whether there are unqualified products in the produced bellows pumps; if there are unqualified products in the produced bellows pumps, determine the corresponding problem process, stop the problem process, and adjust the production scheduling plan.

[0013] This application formulates production tasks and production processes by determining the priority of order information, ensuring the orderliness and efficiency of the production process, helping to better meet customer needs and improve production efficiency. By determining shared processes and planned production times, the production scheduling plan can be further optimized to reduce waste and delays in the production process. At the same time, adjusting the production process according to priority can ensure the priority production of key products and improve the market competitiveness of enterprises. This application ensures product quality by setting a variety of inspection items. Once unqualified products are found, the problem process can be quickly located and adjusted to avoid further expansion of quality problems. When adjusting the production scheduling plan, the substitutability of similar processes is considered, and production is rescheduled by updating the priority, reducing production interruptions and losses. At the same time, a comprehensive analysis and processing of the problem of shared processes is also carried out to ensure the stability and reliability of the entire production process. Through detailed inspection and comparison processes, this application can accurately judge the qualification of products and avoid the outflow of unqualified products. According to the inspection results, the problem process and unqualified production items are determined, which helps enterprises to continuously improve production processes and improve product quality. This application has the advantages of high efficiency, orderliness, reliability and continuous improvement, which will help enterprises improve production efficiency, reduce costs, enhance product quality and market competitiveness. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0015] Figure 1 A schematic diagram of a production scheduling method for a bellows pump in an embodiment of the present application;

[0016] Figure 2 It is a schematic diagram of a production scheduling equipment for a bellows pump in an embodiment of the present application. DETAILED DESCRIPTION

[0017] In order to make the purpose, technical solution and advantages of the present application clearer, the technical solution of the present application will be clearly and completely described below in combination with the specific embodiments of the present application and the corresponding drawings. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present application.

[0018] The technical solutions provided by various embodiments of the present application are described in detail below in conjunction with the accompanying drawings.

[0019] like Figure 1As shown, in order to solve the above problems, an embodiment of the present application provides a production scheduling method for a bellows pump, the method comprising:

[0020] S101. Determine order information of a bellows pump, determine a priority according to the order information, determine a production task according to the priority, and determine a production process of the bellows pump according to the production task.

[0021] Enterprises collect all order information about bladder pumps, which usually includes key elements such as order quantity, delivery date, and customer requirements. This information is the basis for subsequent production planning. According to the urgency and importance of the order information, enterprises will set the priority of each order. Urgency is a key factor in measuring the demand for order processing speed. When an order has a high urgency, it means that the customer expects to receive the product or service in a short time. Such orders may involve projects that are about to expire, emergencies, or changes in customer needs. In order to meet these urgent needs, enterprises usually give these orders a higher priority to ensure that they can be processed and delivered quickly. Importance is considered from the perspective of the value of the order to the enterprise or customer relationship. Some orders may be particularly important because of their huge amount, long-term partnership, or strategic significance. When processing these orders, enterprises need to ensure quality and accuracy to maintain good customer relationships and corporate reputation. Therefore, these orders will also be given a higher priority. In actual operation, enterprises use a weighted scoring system to score each order according to urgency and importance, and sort them according to the score. With the development of technology, many companies have begun to use advanced order management systems (OMS) to automate this process. These systems can automatically calculate the priority of orders based on preset rules and algorithms, and send processing instructions to relevant departments. For example, orders with urgent delivery dates or from important customers are usually given higher priority. Once the priorities are determined, companies can assign production tasks based on these priorities. High-priority orders will be prioritized for production to ensure on-time delivery and meet customer needs. Based on the production tasks, companies will further refine the production processes. This includes determining the resources such as materials, equipment, manpower and time required for each process, as well as developing detailed process flows and operating specifications. Through such a process, companies can ensure that the production process of bellows pumps is both efficient and orderly, thereby meeting customer needs and improving market competitiveness.

[0022] S102, determining a shared process according to the multiple production processes of the bellows pumps, and determining multiple planned production times of the shared process, and determining a production scheduling plan corresponding to the production process according to the multiple planned production times and the priority.

[0023] Analyze the production process of each bellows pump to find out which processes are required for multiple orders or products. These shared processes may include material preparation, pretreatment, common assembly steps, etc. For each shared process, estimate the time required to complete the process based on the order volume, process complexity, and available resources. Considering the priority of different orders, it is necessary to reserve shorter process time for urgent orders or schedule production in advance. Develop multiple possible planned production times to deal with uncertainties in the production process, such as equipment failures, material delays, etc.

[0024] Combine the order priority and the planned production time of the shared process to develop a detailed production schedule to ensure that high-priority orders can get the required resources first and complete the shared process according to the planned time. Consider the balance of the production line in the production schedule to prevent certain processes from becoming bottlenecks and affecting overall production efficiency, and arrange appropriate buffer time to deal with possible delays or emergencies.

[0025] In one embodiment, before adjusting the production schedule, check whether the problem process is a shared process that serves multiple production projects or production schedules at the same time. List all production schedules that use the shared process, and perform quality inspections on the air bag pumps that have been produced in these production schedules to determine whether there are qualified products. If there are qualified products in all production schedules, only those production schedules that produce unqualified products will be stopped, and these schedules will be further analyzed to find out the specific reasons for the unqualified products, and take corresponding corrective measures. If there are no qualified products in all production schedules, that is, these batches or products are unqualified, it means that there is a problem with the shared process, stop all production projects that use the shared process, conduct a comprehensive inspection and maintenance of the shared process, find out the root cause of the problem, and repair or replace the damaged equipment or parts. After the maintenance is completed, perform necessary tests to ensure that the process can operate normally and produce qualified products.

[0026] S103, determining the inspection items of the bellows pump, and performing quality inspection on the produced bellows pump according to the inspection items to determine whether there are unqualified products in the produced bellows pump.

[0027] Inspection items for bellows pumps usually include flow test, pressure test, sealing test, corrosion resistance test, etc. During the flow test, the flow data of the pump under different conditions is measured, including the maximum flow, minimum flow, and the change of flow with pressure, etc., to evaluate the flow performance of the pump. During the pressure test, check the pressure performance of the pump during operation, including the maximum working pressure, minimum working pressure, and pressure stability, etc., to ensure that the pump can work stably within the specified pressure range. During the sealing performance test, the sealing performance of the pump is checked by the test pressure to ensure that the pump has no leakage under the test pressure to maintain the working efficiency and safety of the pump. During the corrosion resistance test, for bellows pumps that may be used in corrosive environments, corrosion resistance tests are required to evaluate the stability and durability of the pump when it is exposed to corrosive media for a long time.

[0028] According to the determined inspection items, prepare the corresponding inspection equipment and tools, such as flow meter, pressure gauge, sealing tester, etc. In accordance with the inspection standards and requirements, inspect the produced bellows pumps one by one. Record the test results of each inspection item and compare them with the preset inspection standard value. According to the test results, evaluate the quality of the bellows pump. If the test results meet the preset inspection standard value, it is judged as a qualified product; if the test results do not meet the standard value, it is judged as an unqualified product and needs further analysis and processing.

[0029] S104. If there are unqualified products in the produced bellows pumps, the corresponding problematic process is determined, the problematic process is stopped, and the production scheduling plan is adjusted.

[0030] Conduct detailed inspection and analysis of unqualified products to determine the specific reasons and manifestations of their unqualifiedness. According to the production batch and number of unqualified products, trace back various records in the production process, including production process, operators, materials and equipment used, etc. Through comparative analysis, find out the problem process that is most likely to cause unqualified products. Once the problem process is determined, the production of the process should be stopped immediately to prevent the production of more unqualified products. Isolate the products that have been produced and may be affected by the problem process for subsequent inspection and treatment. Notify production personnel, technical personnel and quality management personnel in a timely manner to ensure that they understand the situation of the problem process and can take appropriate measures. Analyze the impact of the problem process on the production scheduling plan, including production progress, delivery date, resource utilization, etc. According to the evaluation results, formulate an adjustment plan for the production scheduling plan, including rescheduling the production order, adjusting production resources, and extending the time of certain processes. Communicate with relevant departments such as the production department, procurement department, and sales department to ensure that they understand the adjustment of the production scheduling plan and can cooperate in implementation. Implement and adjust the production scheduling plan according to the adjustment plan. At the same time, pay close attention to changes in the production process and adjust and optimize the production scheduling plan in a timely manner.

[0031] In one embodiment, based on the production flow chart and process description, similar processes of the problem process are identified. Similar processes generally refer to processes that perform similar functions or operations in the production process. All original production projects currently undertaken by similar processes are listed, and the corresponding priority of each original production project is determined. All priorities are sorted to find the project with the lowest priority, and its priority is used as the minimum priority of similar processes. All production projects currently undertaken by the problem process are identified, and these projects will need to be replaced. For each problem production project, its original priority is obtained from the previous production plan. For each problem production project, its original priority is adjusted to the original priority plus the minimum priority of the similar process, so that all replaced problem production projects will have a new priority in the similar process. Similar processes are scheduled according to the updated priority. High-priority production projects are arranged first to ensure production efficiency and delivery time.

[0032] In one embodiment, multiple unqualified production items corresponding to the unqualified products are determined according to the inspection results, and multiple corresponding problematic processes are determined according to the multiple unqualified production items.

[0033] like Figure 2 As shown, the embodiment of the present application also provides a production scheduling device for a bellows pump, comprising:

[0034] at least one processor; and,

[0035] a memory communicatively connected to at least one processor; wherein,

[0036] The memory stores instructions that can be executed by at least one processor, and the instructions are executed by at least one processor to enable a production scheduling device for a bellows pump to execute:

[0037] Determine order information of the bellows pump, determine a priority according to the order information, determine a production task according to the priority, and determine a production process of the bellows pump according to the production task;

[0038] Determine a shared process according to the production processes of the plurality of bellows pumps, determine a plurality of planned production times for the shared process, and determine a production scheduling plan corresponding to the production process according to the plurality of planned production times and the priority;

[0039] Determine the inspection items of the bellows pump, and perform quality inspection on the produced bellows pump according to the inspection items to determine whether there are unqualified products in the produced bellows pump;

[0040] If there are unqualified products in the produced bellows pumps, the corresponding problematic process is determined, the problematic process is stopped, and the production scheduling plan is adjusted.

[0041] The embodiment of the present application further provides a non-volatile computer storage medium storing computer executable instructions, wherein the computer executable instructions are configured as follows:

[0042] Determine order information of the bellows pump, determine a priority according to the order information, determine a production task according to the priority, and determine a production process of the bellows pump according to the production task;

[0043] Determine a shared process according to the production processes of the plurality of bellows pumps, determine a plurality of planned production times for the shared process, and determine a production scheduling plan corresponding to the production process according to the plurality of planned production times and the priority;

[0044] Determine the inspection items of the bellows pump, and perform quality inspection on the produced bellows pump according to the inspection items to determine whether there are unqualified products in the produced bellows pump;

[0045] If there are unqualified products in the produced bellows pumps, the corresponding problematic process is determined, the problematic process is stopped, and the production scheduling plan is adjusted.

[0046] In the 1990s, improvements to a technology could be clearly distinguished as hardware improvements (for example, improvements to the circuit structure of diodes, transistors, switches, etc.) or software improvements (improvements to the method flow). However, with the development of technology, many improvements to the method flow today can be regarded as direct improvements to the hardware circuit structure. Designers almost always obtain the corresponding hardware circuit structure by programming the improved method flow into the hardware circuit. Therefore, it cannot be said that an improvement in a method flow cannot be implemented using a hardware entity module. For example, a programmable logic device (PLD) (such as a field programmable gate array (FPGA)) is such an integrated circuit whose logical function is determined by the user's programming of the device. Designers can "integrate" a digital system on a PLD by programming it themselves, without having to ask a chip manufacturer to design and produce a dedicated integrated circuit chip. Moreover, nowadays, instead of manually making integrated circuit chips, this kind of programming is mostly implemented by "logic compiler" software, which is similar to the software compiler used when developing and writing programs, and the original code before compilation must also be written in a specific programming language, which is called hardware description language (HDL). There is not only one HDL, but many kinds, such as ABEL (Advanced Boolean Expression Language), AHDL (Altera Hardware Description Language), Confluence, CUPL (Cornell University Programming Language), HDCal, JHDL (Java Hardware Description Language), Lava, Lola, MyHDL, PALASM, RHDL (Ruby Hardware Description Language), etc. The most commonly used ones are VHDL (Very-High-Speed ​​Integrated Circuit Hardware Description Language) and Verilog. Those skilled in the art should also know that it is only necessary to program the method flow slightly in the above-mentioned hardware description languages ​​and program it into the integrated circuit, and then it is easy to obtain the hardware circuit that implements the logic method flow.

[0047] The controller can be implemented in any appropriate manner, for example, the controller can take the form of a microprocessor or processor and a computer-readable medium storing a computer-readable program code (such as software or firmware) that can be executed by the (micro)processor, a logic gate, a switch, an application-specific integrated circuit (ASIC), a programmable logic controller, and an embedded microcontroller. Examples of controllers include, but are not limited to, the following microcontrollers: ARC 625D, Atmel AT91SAM, Microchip PIC18F26K20, and Silicone Labs C8051F320. The memory controller can also be implemented as part of the control logic of the memory. Those skilled in the art also know that in addition to implementing the controller in a purely computer-readable program code manner, the controller can be implemented in the form of a logic gate, a switch, an application-specific integrated circuit, a programmable logic controller, and an embedded microcontroller by logically programming the method steps. Therefore, this controller can be considered as a hardware component, and the devices included therein for implementing various functions can also be regarded as structures within the hardware component. Or even, the devices for implementing various functions can be regarded as both software modules for implementing the method and structures within the hardware component.

[0048] The systems, devices, modules or units described in the above embodiments may be implemented by computer chips or entities, or by products with certain functions. A typical implementation device is a computer. Specifically, the computer may be, for example, a personal computer, a laptop computer, a cellular phone, a camera phone, a smart phone, a personal digital assistant, a media player, a navigation device, an email device, a game console, a tablet computer, a wearable device, or a combination of any of these devices.

[0049] For the convenience of description, the above device is described in various units according to their functions. Of course, when implementing this specification, the functions of each unit can be implemented in the same or multiple software and / or hardware.

[0050] Each embodiment in this application is described in a progressive manner, and the same or similar parts between the embodiments can be referred to each other, and each embodiment focuses on the differences from other embodiments. In particular, for the device and medium embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can be referred to the partial description of the method embodiments.

[0051] The devices and media provided in the embodiments of the present application correspond one-to-one to the methods. Therefore, the devices and media also have similar beneficial technical effects as the corresponding methods. Since the beneficial technical effects of the methods have been described in detail above, the beneficial technical effects of the devices and media will not be repeated here.

[0052] Those skilled in the art will appreciate that the embodiments of the present application may be provided as methods, systems, or computer program products. Therefore, the present application may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment in combination with software and hardware. Moreover, the present application may adopt the form of a computer program product implemented in one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) that include computer-usable program code.

[0053] The present application is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to generate a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 A process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0054] These computer program instructions may also be stored in a computer-readable memory capable of directing a computer or other programmable data processing device to operate in a specific manner, so that the instructions stored in the computer-readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 A process or multiple processes and / or boxes Figure 1 A function specified in one or more boxes.

[0055] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operating steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing instructions for implementing the process. Figure 1 A process or multiple processes and / or boxes Figure 1 The steps for the functions specified in one or more boxes.

[0056] In a typical configuration, a computing device includes one or more processors (CPU), input / output interfaces, network interfaces, and memory.

[0057] The memory may include non-permanent storage in a computer-readable medium, random access memory (RAM) and / or non-volatile memory in the form of read-only memory (ROM) or flash RAM. The memory is an example of a computer-readable medium.

[0058] Computer readable media include permanent and non-permanent, removable and non-removable media that can be implemented by any method or technology to store information. Information can be computer readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technology, compact disk read-only memory (CD-ROM), digital versatile disk (DVD) or other optical storage, magnetic cassettes, magnetic tape magnetic disk storage or other magnetic storage devices or any other non-transmission media that can be used to store information that can be accessed by a computing device. As defined herein, computer readable media does not include temporary computer readable media (transitory media), such as modulated data signals and carrier waves.

[0059] It should also be noted that the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, commodity or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, commodity or device. In the absence of more restrictions, the elements defined by the sentence "comprises a ..." do not exclude the existence of other identical elements in the process, method, commodity or device including the elements.

[0060] The above are only embodiments of the present application and are not intended to limit the present application. For those skilled in the art, the present application may have various changes and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included within the scope of the claims of the present application.

Claims

1. A method for scheduling the production of a bellows pump, characterized in that: include: Determine order information of the bellows pump, determine a priority according to the order information, determine a production task according to the priority, and determine a production process of the bellows pump according to the production task; Determine a shared process according to the production processes of the plurality of bellows pumps, determine a plurality of planned production times for the shared process, and determine a production scheduling plan corresponding to the production process according to the plurality of planned production times and the priority; Determine the inspection items of the bellows pump, and perform quality inspection on the produced bellows pump according to the inspection items to determine whether there are unqualified products in the produced bellows pump; If there are unqualified products in the produced bellows pumps, the corresponding problematic process is determined, the problematic process is stopped, and the production scheduling plan is adjusted.

2. The method according to claim 1, characterized in that Adjust the production schedule, including: Determine a similar process corresponding to the problematic process, and adjust the production scheduling plan according to the production process to replace the production items of the problematic process with the production items of the similar process.

3. The method according to claim 2, characterized in that The method further comprises: Determine a plurality of original production items corresponding to the same type of processes, determine a plurality of priorities corresponding to the plurality of original production items, and determine a minimum priority of the same type of processes according to the plurality of priorities; Determine a plurality of problematic production items corresponding to the problematic process, and determine a plurality of original priorities corresponding to the plurality of problematic production items; The multiple original priorities are updated according to the minimum priority to determine multiple new priorities, and the same type of processes are scheduled according to the multiple new priorities.

4. The method according to claim 1, characterized in that: The inspection items include any one or more of the following: flow test, pressure test, sealing test, and corrosion resistance test.

5. The method according to claim 1, characterized in that The method further comprises: Perform quality inspection on the produced bellows pumps according to the inspection items to obtain multiple inspection results; The multiple inspection results are compared according to multiple predetermined inspection standards to determine whether the bellows pump is a substandard product.

6. The method according to claim 1, characterized in that The method further comprises: A plurality of unqualified production items corresponding to the unqualified product are determined according to the inspection result, and a plurality of corresponding problematic processes are determined according to the plurality of unqualified production items.

7. The method according to claim 1, characterized in that Before adjusting the production scheduling plan, the method further includes: Determining whether the problematic process is the shared process; If the problematic process is the shared process, all production schedules corresponding to the shared process are determined, and it is determined whether there are qualified products among the multiple bellows pumps produced corresponding to the all production schedules.

8. The method according to claim 7, characterized in that After determining whether there are qualified products among the plurality of bellows pumps produced corresponding to the entire production scheduling plan, the method further includes: If there are qualified products among the multiple bellows pumps produced in the entire production schedule, the production schedule corresponding to the problematic process is stopped; If there are no qualified products among the multiple bellows pumps produced in accordance with the entire production schedule, the multiple production projects corresponding to the shared process will be stopped, and the shared process will be repaired.

9. A production scheduling device for a bellows pump, characterized in that: include: at least one processor; as well as, a memory communicatively connected to the at least one processor; wherein, The memory stores instructions that can be executed by the at least one processor, and the instructions are executed by the at least one processor to enable the production scheduling device of the bellows pump to execute: Determine order information of the bellows pump, determine a priority according to the order information, determine a production task according to the priority, and determine a production process of the bellows pump according to the production task; Determine a shared process according to the production processes of the plurality of bellows pumps, determine a plurality of planned production times for the shared process, and determine a production scheduling plan corresponding to the production process according to the plurality of planned production times and the priority; Determine the inspection items of the bellows pump, and perform quality inspection on the produced bellows pump according to the inspection items to determine whether there are unqualified products in the produced bellows pump; If there are unqualified products in the produced bellows pumps, the corresponding problematic process is determined, the problematic process is stopped, and the production scheduling plan is adjusted.

10. A non-volatile computer storage medium storing computer executable instructions, characterized in that: The computer executable instructions are configured to: Determine order information of the bellows pump, determine a priority according to the order information, determine a production task according to the priority, and determine a production process of the bellows pump according to the production task; Determine a shared process according to the production processes of the plurality of bellows pumps, determine a plurality of planned production times for the shared process, and determine a production scheduling plan corresponding to the production process according to the plurality of planned production times and the priority; Determine the inspection items of the bellows pump, and perform quality inspection on the produced bellows pump according to the inspection items to determine whether there are unqualified products in the produced bellows pump; If there are unqualified products in the produced bellows pumps, the corresponding problematic process is determined, the problematic process is stopped, and the production scheduling plan is adjusted.

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