CN112541649A - Scheduling method of part cutting material, storage medium and electronic device - Google Patents

Scheduling method of part cutting material, storage medium and electronic device Download PDF

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CN112541649A
CN112541649A CN201910901632.8A CN201910901632A CN112541649A CN 112541649 A CN112541649 A CN 112541649A CN 201910901632 A CN201910901632 A CN 201910901632A CN 112541649 A CN112541649 A CN 112541649A
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information
cutting
materials
stock
type
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刘淼泉
陈高
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Gree Electric Appliances Inc of Zhuhai
Zhuhai Lianyun Technology Co Ltd
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Zhuhai Lianyun Technology Co Ltd
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Abstract

The utility model provides a dispatching method, storage medium and electronic equipment of part cutting material, this method includes: the method comprises the steps of generating a cutting scheme of a part to be produced according to cutting information of the part to be produced and specification information of various types of materials in stock, generating scheduling indication information of the cutting scheme according to stock information of the various types of materials, wherein the scheduling indication information is used for indicating the type of materials which need to be scheduled preferentially when the cutting scheme is executed, scheduling corresponding type of materials according to the scheduling indication information, and cutting the type of materials according to the cutting scheme to obtain the materials needed for producing the part to be produced. Through the arrangement, the problem that the material utilization rate is low due to the fact that a cutting scheme is manually made in the part production process is solved, and the problems that the material is lost and the excess material is wasted due to the fact that stock overstock is avoided are solved, so that the utilization rate of the material is effectively improved.

Description

Scheduling method of part cutting material, storage medium and electronic device
Technical Field
The disclosure relates to the technical field of automatic cutting management, and in particular relates to a scheduling method of a part cutting material, a storage medium and an electronic device.
Background
Aiming at manufacturing enterprises, in the production and manufacturing process of products, management methods of a plurality of production flows are involved, and the production and processing of product parts are an important link. In the process of producing and processing parts, for the process flow of the cutting procedure of the parts, the cutting scheme corresponding to the parts is purely manually made by workers on a production line in a rough calculation mode, and the cutting scheme is input into cutting equipment after being made, so that the cutting equipment cuts materials according to the made cutting scheme. In order to avoid the overstock of the stock, the following three major stock management rules need to be observed when managing the stock of the materials: 1. continuous material-the material used in the production field can not be obtained; 2. no-material-no-temporary-unused material is allowed to stand in the warehouse to form a material; 3. no stock-proper feed does not make excessive stock. However, in the actual production process, a certain amount of remaining materials and remainders are still generated, and only the remaining materials and the remainders can be wasted without violating the stock rules.
Disclosure of Invention
The disclosure provides a scheduling method of a part cutting material, a storage medium and an electronic device, which are used for solving the problems of low material utilization rate caused by manually formulating a cutting scheme and stock overstock caused by generating a dead material and a residual material in the part production process.
In order to achieve the above object, in a first aspect of the embodiments of the present disclosure, a scheduling method of a part cutting material is provided:
step S110, generating a cutting scheme of the part to be produced according to cutting information of the part to be produced and specification information of various types of materials in stock, wherein the cutting information comprises size information, shape information and required material information of the part to be produced;
step S120, according to the inventory information of various types of materials, generating scheduling indication information of the cutting scheme, wherein the scheduling indication information is used for indicating the type of materials which need to be scheduled preferentially when the cutting scheme is executed;
step S130, corresponding type materials are dispatched according to the dispatching indication information, the type materials are cut according to the cutting scheme to obtain materials needed by the parts to be produced, and inventory information of the type materials is updated.
Optionally, the method further includes:
and step S140, confirming whether the inventory information of the type materials scheduled in the step S130 meets the cutting scheme after updating, and if not, returning to execute the step S120 and the step S130 until the inventory information of the various types of materials does not meet the cutting scheme or the production plan of the part to be produced is finished.
Optionally, the type material includes a material surplus material and a material idle material, and the scheduling instruction information of the cutting plan is generated according to inventory information of various types of materials, including:
acquiring inventory information of the surplus materials of the materials and inventory information of the remaining materials of the materials;
determining whether the inventory information of the surplus materials or the inventory information of the idle materials meets the cutting scheme;
and when the type of the material is met, obtaining scheduling indication information for indicating that the type of the material needing to be preferentially scheduled in the cutting scheme is the material excess material or the material remaining material.
Optionally, the type material further includes a raw material remainder and a raw material blank, and when the stock information of the material remainder and the stock information of the material blank do not satisfy the cutting scheme, the method further includes:
acquiring inventory information of raw material excess stock and inventory information of raw material remaining stock;
confirming whether the stock information of the raw material excess stock or the stock information of the raw material remaining stock meets the cutting scheme;
and when the type of the material is met, obtaining scheduling indication information for indicating that the type of the material needing to be preferentially scheduled in the cutting scheme is the raw material excess material or the raw material remaining material.
Optionally, the type of material further includes a raw material, and when the stock information of the raw material excess and the raw material remaining does not satisfy the cutting scheme, the method further includes:
acquiring stock information of raw materials;
confirming whether the stock information of the raw material meets the cutting scheme;
and when the type of the raw material is met, obtaining scheduling indication information for indicating that the type of the raw material which needs to be scheduled preferentially is the raw material.
Optionally, the method further includes:
and outputting the raw material scheduling information when the stock information of the raw material does not meet the cutting scheme.
Optionally, updating the inventory information for the type of material includes:
when the corresponding type material is scheduled by the scheduling indication information according to the cutting scheme for cutting, acquiring consumption information of the type material in the cutting process;
and updating the stock information of the type material according to the consumption information.
Optionally, the generating the cutting plan of the part to be produced according to the cutting information of the part to be produced and specification information of various types of materials in the stock includes:
generating an optional cutting scheme set through a preset algorithm according to the cutting information of the part to be produced and specification information of various types of materials in stock;
and determining an alternative cutting scheme from the alternative cutting scheme set as the cutting scheme.
In a second aspect of the embodiments of the present disclosure, there is provided a storage medium, which is executable by one or more processors to implement the scheduling method of the part cut material according to any one of the above first aspects.
In a third aspect of the embodiments of the present disclosure, there is provided an electronic device, which includes a memory, a processor, and a program code stored on the memory and executable on the processor, and when executed by the processor, the program code implements the scheduling method of the part cutting material according to any one of the above first aspects.
By adopting the technical scheme, the following technical effects can be at least achieved:
the method comprises the steps of generating a cutting scheme of a part to be produced according to cutting information of the part to be produced and specification information of various types of materials in stock, generating scheduling indication information of the cutting scheme according to the stock information of the various types of materials, wherein the scheduling indication information is used for indicating the type of materials which need to be scheduled preferentially to execute the cutting scheme, scheduling the corresponding type of materials according to the scheduling indication information, cutting the type of materials according to the cutting scheme to obtain the materials needed by the part to be produced, and updating the stock information of the type of materials. Through the arrangement, the problem that the material utilization rate is low due to the fact that a cutting scheme is manually made in the part production process is solved, the problems that a material is lost and excess materials are wasted due to the fact that stock overstock is avoided are solved, and the utilization rate of the materials is effectively improved.
Drawings
The present disclosure will be described in more detail below based on embodiments and with reference to the accompanying drawings.
Fig. 1 is a schematic flow chart of a scheduling method of a part cutting material provided by the present disclosure.
Fig. 2 is another schematic flow chart of a scheduling method of a part cutting material provided by the present disclosure.
Fig. 3 is a schematic flowchart of acquiring scheduling indication information according to the present disclosure.
In the drawings, like parts are designated with like reference numerals, and the drawings are not drawn to scale.
Detailed Description
Embodiments of the present disclosure will be described in detail with reference to the accompanying drawings and examples, so that how to apply technical means to solve technical problems and achieve the corresponding technical effects can be fully understood and implemented. Various modifications may be made and equivalents may be substituted for elements thereof without departing from the scope of the disclosure. The embodiments and various features in the embodiments of the present application can be combined with each other without conflict, and the formed technical solutions are all within the protection scope of the present disclosure.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.
In the related art, a worker purely manually formulates a cutting scheme of a part in a rough calculation mode so as to realize automatic cutting of cutting equipment, and the overstock of the stock is avoided by formulating rules of 'continuous material', 'no stock accumulation' and 'no stock staying' during material stock management.
The inventor of the present disclosure finds that if a cutting scheme of a part is only manually formulated through some calculations, the cutting of a material may not be the cutting scheme with the highest utilization rate, which inevitably causes material waste, and although a related rule is formulated in inventory management to prevent a dead stock and a residual stock from entering a warehouse, thereby avoiding overstock of the inventory, the dead stock and the residual stock are not fully utilized in the manner of solving the overstock problem of the inventory, which causes material waste. Therefore, the cutting scheme needs to be optimized, and the problem of stock overstock caused by canceling the two rules of 'no stock' and 'no stock storage' is solved, so that the utilization rate of various materials is effectively improved.
Example one
Referring to fig. 1 and fig. 2, the present disclosure provides a dispatching method for a cutting material of a part, so as to solve the problem of stock backlog caused by the cutting scheme in the prior art after the cutting scheme has low material utilization rate and cancels two rules of "no material staying" and "no material stock accumulation". The scheduling method of the part cutting material comprises steps S110 to S140.
In step S110, a cutting plan of the part to be produced is generated according to the cutting information of the part to be produced and specification information of various types of materials in the stock.
The method comprises the steps of obtaining a production plan and specification information of various types of materials in a database, and obtaining cutting information of parts to be generated according to the production plan. And generating an optional cutting scheme set corresponding to the part to be generated by referring to the cutting information and specification information of various types of materials through a preset algorithm, wherein the preset algorithm can be an intelligent optimization algorithm, and according to selection information input by a user, determining an optional cutting scheme from the optional cutting scheme set as a cutting scheme, and the cutting scheme is used for enabling a cutting device to cut the materials according to the cutting scheme.
The optional cutting scheme can be manually established, so that when the equipment cannot normally perform the optional cutting scheme establishment due to some accidents, the equipment can receive some optional cutting schemes input by a user, the production line shutdown operation caused by part of equipment is avoided, and the stability of the production line is effectively guaranteed.
It should be noted that the specification information of various types of materials is used as reference information for making the optional cutting schemes, and for example, there are a raw material a with a specification of 1000mm × 1000mm, a raw material b with a specification of 1000mm × 1200mm, a raw material c with a specification of 800mm × 1000mm, a material d with a specification of 320mm × 1000mm, and a material e with a specification of 800mm × 600 mm. Where it is desired to produce a part of size 320mm 600mm, then the description of the alternative cutting scheme may be: selecting a raw material a for cutting, and cutting the raw material a into a material A with the specification of 320mm x 1000mm and a material B with the specification of 600mm x 1000mm, wherein the part can be obtained from any type of materials of the raw material a, the material A and the material B.
The type of the material can be, but is not limited to, a material remaining material, a material excess material, a raw material remaining material, a raw material excess material, a raw material and a waste material, and is not specifically limited herein and can be set according to actual requirements.
In this embodiment, the types of the material include a raw material, a residual material, and a raw material.
The information of the selectable cutting scheme comprises raw material coding information, raw material name information, raw material specification information, raw material surface material (coating) information, material name information, material type information, material coding information, material quantity information, material specification information and raw material utilization rate information.
The material refers to smaller-sized materials obtained by further cutting the complete raw materials, and the smaller materials are called materials, the materials are further cut into parts to be produced, and in the embodiment of the disclosure, each raw material can only cut materials with the same or two sizes.
The part to be generated is a part of a product formed by materials with certain specifications, the materials with certain specifications are obtained by cutting raw materials with certain specifications, and the part to be generated can not be separated into single components, namely the most basic unit of the mechanical product.
The cutting information comprises dimension information, shape information and required material information of the part to be produced.
The required material information may include a material type, a material specification, a material quantity, and a material name.
The material excess refers to the material remaining after a certain production plan is finished in the production process.
The material is not expected to circulate in a short period, and the remaining material is not used for production and can be called as the material.
The raw material excess refers to the complete raw material left after a certain production plan is finished in the production process.
The raw material is not expected to circulate in a short period, and the remaining material is not used for production and can be called as raw material.
The raw materials refer to materials which are not disassembled and have different specifications and different materials, and the specification and the material of the same bundle of materials are the same.
For example, if there is a part to be produced with a material name a, and the material specification for material a is 320mm by 600mm, a cutting scheme can be described as: to produce the material a, a certain bundle of steel coil raw material with the raw material specification of 1000mm × 1000mm is selected for cutting, the raw material is cut into the material a with the specification of 320mm × 1000mm and the material B with the specification of 600mm × 1000mm, the utilization rate of the raw material is (320+600)/1000 ═ 0.92, and the rest raw material with the width of 80mm is waste. If the cutting scheme is used as the cutting scheme, the cutting equipment cuts the raw materials according to the cutting scheme to obtain a material A with the specification of 320mm x 1000mm and a material B with the specification of 600mm x 1000mm, the vertex of a certain corner of the material A and the material B is used as the starting point of cutting, the material A corresponding to the material A is cut to obtain a material with the specification of 320mm x 600mm and a material with the specification of 320mm x 400mm, the material B corresponding to the material B is cut to obtain three materials with the specification of 600mm x 320mm and a material with the specification of 600mm x 40mm, then the total of four materials with the specification of 600mm x 320mm can be obtained, the rest materials with the specification are treated as waste materials, and the four materials are required parts after being finely ground. Or the material remaining materials and the material excess materials with the same specification as the material A exist, and the cutting of the material remaining materials and the material excess materials with the same specification as the material A is directly considered.
In step S120, scheduling indication information of the cutting plan is generated according to inventory information of various types of materials, wherein the scheduling indication information is used for indicating the type of materials which need to be scheduled preferentially to execute the cutting plan.
The method comprises the steps of obtaining real-time inventory information of a material idle material, a material surplus material, a raw material idle material, a raw material surplus material and a raw material, selecting a type material of which the type and the specification meet the requirements of the optimal scheme from the inventory information, wherein the type of the material needs to be consistent when the material is selected, the specification of the type material needs to be larger than or equal to the specification of the optimal scheme, and using the type information of the selected type material as scheduling indication information for indicating the type material which needs to be preferentially scheduled to execute the cutting scheme.
For example, the stock information includes raw material dead stock a with the specification of 1000mm × 1000mm, raw material dead stock B with the specification of 1200mm × 100mm, raw material dead stock C with the specification of 330mm × 1000mm, and material surplus material with the specification of 600mm × 1000 mm; the cutting protocol is described as: in order to obtain material with the specification of 320mm x 600mm for parts, the material with the specification of 320mm x 600mm can be cut into material with the specification of 320mm x 1000mm from raw material with the specification of 1000mm x 1000mm, or directly cut into material with the specification of 320mm x 600mm from material with the specification of 320mm x 1000 mm. Then, at this time, according to the inventory information, as long as the material with the specification greater than or equal to that of the material for making the part can be selected for cutting to obtain the material with the specification of 320mm × 1000mm, the raw material dead material a or the material dead material C can be selected for cutting, and in consideration of the priority of material consumption, the material dead material C with the specification of 330mm × 1000mm is finally determined as scheduling indication information to indicate that the material dead material C needs to be preferentially scheduled for cutting when the type material is cut according to the cutting scheme.
In this embodiment, the priority of the material consumption is: the raw material is consumed first, then the raw material excess or the raw material dead material is consumed, and finally the raw material is consumed.
Referring to fig. 3, when the type material includes the material surplus and the material idle material, acquiring the scheduling indication information may include steps S1201 to S1210.
In step S1201, the inventory information of the excess material and the inventory information of the remaining material are obtained.
In step S1202, it is determined whether the stock information of the excess material or the stock information of the material blank satisfies the cutting scheme.
Determining whether the inventory information of the surplus materials or the inventory information of the solid materials meets the cutting scheme, wherein in the embodiment, the meeting condition comprises that the types and the specifications of the surplus materials or the solid materials meet the material types and the specifications required by the cutting scheme; when satisfied, step S1203 is next executed, and when not satisfied, step S1204 is next executed.
In step S1203, scheduling indication information for indicating that the type material that needs to be preferentially scheduled by the cutting plan is the material surplus material or the material remaining material is obtained.
And taking the material information of the surplus materials or the dead materials meeting the cutting scheme as scheduling indication information for indicating the type materials needing to be preferentially scheduled for executing the cutting scheme.
In step S1204, stock information of stock of the raw material oddments and stock information of stock of raw materials are acquired.
In step S1205, it is determined whether the stock information of the raw material remainder or the stock information of the raw material blank satisfies the cutting plan.
Determining whether the stock information of the raw material excess or the stock information of the raw material remaining meets the cutting scheme, wherein in the embodiment, the meeting condition includes that the type and the specification of the raw material excess or the raw material remaining meet the material type and the specification required by the cutting scheme; when satisfied, step S1206 is then performed, and when not satisfied, step S1207 is then performed.
In step S1206, scheduling indication information for indicating that the type material that needs to be preferentially scheduled in the cutting plan is the raw material surplus material or the raw material remaining material is obtained.
And taking the material information of the raw material excess material or the raw material dead material meeting the cutting scheme as scheduling indication information for indicating the type of material needing to be scheduled preferentially for executing the cutting scheme.
In step S1207, stock information of the raw material is acquired.
In step S1208, it is confirmed whether the stock information of the raw material satisfies the cutting plan.
Confirming whether the stock information of the raw materials meets the cutting scheme, wherein in the embodiment, the met conditions comprise that the type and the specification of the raw materials meet the material type and the specification required by the cutting scheme; when satisfied, step S1209 is then performed, and when not satisfied, step S1210 is then performed.
In step S1209, scheduling indication information for indicating that the type material that the cutting plan needs to be preferentially scheduled is the raw material is obtained.
In step S1310, raw material scheduling information is output.
And if the type material which can meet the requirements of the cutting scheme does not exist in the stock information of the raw materials, outputting raw material scheduling information to prompt an upstream department in an ERP system to replenish the stock of the raw materials, and updating the stock information of the raw materials after the raw materials are replenished.
Therefore, the appropriate type material can be obtained according to the priority of the material, the information of the type material meeting the cutting scheme is used as scheduling indication information, the appropriate type material can be accurately and clearly scheduled for the cutting equipment, and unreasonable utilization of the material is avoided.
In step S140, it is confirmed whether the inventory information of the type material scheduled in step S130 satisfies the cutting plan after updating, and if not, the execution of step S120 and step S130 is returned until the inventory information of the various types of materials does not satisfy the cutting plan or the production plan of the part to be produced is completed.
Cutting the type material corresponding to the scheduling indication information according to the cutting scheme, and acquiring consumption information of the type material corresponding to the scheduling indication information when the cutting scheme is executed after the cutting is finished; updating the inventory information of the type material corresponding to the scheduling indication information according to the consumption information; and confirming whether the type of the material and the specification of the material which can meet the requirement of the cutting scheme exist in the latest type material inventory information.
For example, the same type of the material blank a and the material blank B with different specifications are available, and the specification and the type of the material blank a and the material blank B both meet the requirements of the cutting scheme, so that the material blank a and the material blank B are cut, the material inventory corresponding to the consumption of the material blank a and the material blank B is updated until the material blank a and the material blank B are consumed, and at this time, it is determined whether the material meeting the requirements of the cutting scheme still exists in the latest material inventory information.
Next, step S140 is executed to confirm whether the inventory information of the type material scheduled in step S130 satisfies the cutting plan after updating, and if not, step S120 and step S130 are executed again until the inventory information of the various types of materials does not satisfy the cutting plan or the production plan of the part to be produced is completed.
And if the updated scheduling indication information schedules that the type material which can meet the requirements of the cutting scheme does not exist in the corresponding type material inventory information, returning to execute the step S120 and the step S130 until the inventory information of the various types of materials does not meet the cutting scheme or the production plan of the part to be produced is finished. If the type material meeting the requirement of the cutting plan still exists in the updated scheduling indication information scheduling corresponding type material inventory information, it can be understood that, because the requirement of the production quantity required by the part is already completed at this time, it is not necessary to continue to inquire other type materials for cutting, and the cutting plan is finished.
For example, assuming that the type material corresponding to the scheduling indication information is a material, and there is no material that can meet the requirements of the cutting plan in the latest material inventory information, then returning to execute step S120 and step S130, obtaining inventory information of various types of materials, inquiring inventory information of raw material excess or raw material remaining because the material that can meet the requirements of the cutting plan has been consumed, determining whether there is a raw material excess or raw material remaining that can meet the requirements of the specification of the cutting plan in the inventory information of the raw material excess or raw material remaining, if so, continuing to cut the selected raw material excess or raw material remaining, and continuing to determine whether there is a raw material that can meet the cutting requirements of the optimal plan until the raw material excess or raw material remaining that meets the requirements of the cutting plan in the inventory is consumed, and repeating the steps until the requirement of the number of parts in the production plan or the material inventory information is met, and the material meeting the requirement of the cutting scheme cannot be selected any more.
The scheduling method of the part cutting material can generate the cutting scheme of the part to be produced according to the cutting information of the part to be produced and the specification information of various types of materials in the stock, and then generate the scheduling indication information of the cutting scheme according to the stock information of various types of materials, wherein the scheduling indication information is used for indicating the type of materials which need to be scheduled preferentially for executing the cutting scheme, the corresponding type of materials are scheduled according to the scheduling indication information, the type of materials are cut according to the cutting scheme to obtain the materials needed for producing the part to be produced, the stock information of the type of materials is updated, when the stock information of the materials corresponding to the indication information is confirmed to be not satisfied with the cutting scheme after being updated, the scheduling indication information of the cutting scheme is generated by returning to the execution according to the stock information of various types of materials, the scheduling indication information is used for indicating the step of executing the type materials needing to be scheduled preferentially in the cutting scheme so as to complete the production plan of the part to be produced, thereby solving the problem of low material utilization rate caused by manually formulating the cutting scheme in the production process of the part, avoiding waste of dead materials and excess materials and effectively improving the utilization rate of the materials.
Example two
The present embodiment provides a storage medium, on which a computer program is stored, where the computer program can be executed by one or more processors to implement the scheduling method of the part cutting material according to the first embodiment.
The method implemented when the computer program of the scheduling method for part cut materials run on the processor is executed may refer to the specific embodiment of the scheduling method for part cut materials of the present disclosure, and is not described herein again.
EXAMPLE III
The present embodiment provides an electronic device, which includes a memory, a processor, and a program code stored on the memory and executable on the processor, wherein the program code, when executed by the processor, implements the steps of the scheduling method for part cutting material according to any one of the above-mentioned optional embodiments.
The method implemented when the computer program of the scheduling method for part cut materials run on the processor is executed may refer to the specific embodiment of the scheduling method for part cut materials of the present disclosure, and is not described herein again.
The processor may be an integrated circuit chip having information processing capabilities. The Processor may be a general-purpose Processor including a Central Processing Unit (CPU), a Network Processor (NP), and the like.
It should be understood that the disclosed methods and apparatus may be implemented in other ways. The apparatus embodiments described above are merely illustrative, and for example, the flowchart and block diagrams in the figures illustrate the architecture, functionality, and operation of possible implementations of apparatus, methods and computer program products according to embodiments of the present disclosure. In this regard, each block in the flowchart or block diagrams may represent a module, segment, or portion of code, which comprises one or more executable instructions for implementing the specified logical function(s). It should also be noted that, in some alternative implementations, the functions noted in the block may occur out of the order noted in the figures. For example, two blocks shown in succession may, in fact, be executed substantially concurrently, or the blocks may sometimes be executed in the reverse order, depending upon the functionality involved. It will also be noted that each block of the block diagrams and/or flowchart illustration, and combinations of blocks in the block diagrams and/or flowchart illustration, can be implemented by special purpose hardware-based systems which perform the specified functions or acts, or combinations of special purpose hardware and computer instructions.
Although the embodiments disclosed in the present disclosure are described above, the descriptions are only for the convenience of understanding the present disclosure, and are not intended to limit the present disclosure. It will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the disclosure, and that the scope of the disclosure is to be limited only by the appended claims.

Claims (10)

1. A method of scheduling a part cut material, the method comprising:
step S110, generating a cutting scheme of the part to be produced according to cutting information of the part to be produced and specification information of various types of materials in stock, wherein the cutting information comprises size information, shape information and required material information of the part to be produced;
step S120, according to the inventory information of various types of materials, generating scheduling indication information of the cutting scheme, wherein the scheduling indication information is used for indicating the type of materials which need to be scheduled preferentially when the cutting scheme is executed;
step S130, corresponding type materials are dispatched according to the dispatching indication information, the type materials are cut according to the cutting scheme to obtain materials needed by the parts to be produced, and inventory information of the type materials is updated.
2. The method of scheduling of part cut material as claimed in claim 1, further comprising:
and step S140, confirming whether the inventory information of the type materials scheduled in the step S130 meets the cutting scheme after updating, and if not, returning to execute the step S120 and the step S130 until the inventory information of the various types of materials does not meet the cutting scheme or the production plan of the part to be produced is finished.
3. The method for dispatching the part cutting materials according to claim 1, wherein the type materials comprise surplus materials and dead materials, and the dispatching indication information of the cutting scheme is generated according to the inventory information of the various types of materials, and comprises the following steps:
acquiring inventory information of the surplus materials of the materials and inventory information of the remaining materials of the materials;
determining whether the inventory information of the surplus materials or the inventory information of the idle materials meets the cutting scheme;
and when the type of the material is met, obtaining scheduling indication information for indicating that the type of the material needing to be preferentially scheduled in the cutting scheme is the material excess material or the material remaining material.
4. The scheduling method of parts cutting material according to claim 3, wherein the type of material further includes a raw material surplus and a raw material stock, and when neither the stock information of the material surplus nor the stock information of the material stock satisfies the cutting plan, further comprising:
acquiring inventory information of raw material excess stock and inventory information of raw material remaining stock;
confirming whether the stock information of the raw material excess stock or the stock information of the raw material remaining stock meets the cutting scheme;
and when the type of the material is met, obtaining scheduling indication information for indicating that the type of the material needing to be preferentially scheduled in the cutting scheme is the raw material excess material or the raw material remaining material.
5. The method for dispatching parts cutting material according to claim 4, wherein the type of material further comprises raw material, and when the stock information of the raw material surplus material and the raw material dead material do not satisfy the cutting scheme, the method further comprises:
acquiring stock information of raw materials;
confirming whether the stock information of the raw material meets the cutting scheme;
and when the type of the raw material is met, obtaining scheduling indication information for indicating that the type of the raw material which needs to be scheduled preferentially is the raw material.
6. The method of scheduling of part cut material as claimed in claim 5, further comprising:
and outputting the raw material scheduling information when the stock information of the raw material does not meet the cutting scheme.
7. The method for dispatching of part cutting material according to any of claims 3 to 6, wherein updating the stock information of the type of material comprises:
when the corresponding type material is scheduled by the scheduling indication information according to the cutting scheme for cutting, acquiring consumption information of the type material in the cutting process;
and updating the stock information of the type material according to the consumption information.
8. The scheduling method of the part cutting material according to claim 1, wherein generating the cutting plan of the part to be produced according to the cutting information of the part to be produced and specification information of various types of materials in stock comprises:
generating an optional cutting scheme set through a preset algorithm according to the cutting information of the part to be produced and specification information of various types of materials in stock;
and determining an alternative cutting scheme from the alternative cutting scheme set as the cutting scheme.
9. A storage medium having stored thereon a computer program executable by one or more processors to implement a method of scheduling a part cut material as claimed in any one of claims 1 to 8.
10. An electronic device, comprising a memory, a processor, and program code stored on the memory and executable on the processor, the program code implementing the method of dispatching of part cut material of any of claims 1 to 8 when executed by the processor.
CN201910901632.8A 2019-09-23 2019-09-23 Scheduling method of part cutting material, storage medium and electronic device Withdrawn CN112541649A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113283864A (en) * 2021-05-24 2021-08-20 山东浪潮通软信息科技有限公司 Material cutting and blanking method, device and equipment

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103136429A (en) * 2013-03-13 2013-06-05 合肥未来计算机技术开发有限公司 Method for wire rod cutting
CN105631543A (en) * 2015-12-23 2016-06-01 武汉宝钢华中贸易有限公司 Automatic volume matching management information model based on customer data analysis and processing technology
CN109559070A (en) * 2018-09-21 2019-04-02 中建科技有限公司深圳分公司 The equipment production information management method and device of assembled architecture platform

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103136429A (en) * 2013-03-13 2013-06-05 合肥未来计算机技术开发有限公司 Method for wire rod cutting
CN105631543A (en) * 2015-12-23 2016-06-01 武汉宝钢华中贸易有限公司 Automatic volume matching management information model based on customer data analysis and processing technology
CN109559070A (en) * 2018-09-21 2019-04-02 中建科技有限公司深圳分公司 The equipment production information management method and device of assembled architecture platform

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
刘宇芳等: "基于多元线性规划模型的木板最优切割", 《现代计算机》, no. 22, pages 27 - 32 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113283864A (en) * 2021-05-24 2021-08-20 山东浪潮通软信息科技有限公司 Material cutting and blanking method, device and equipment

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