Production Precision Control Method for Door Structure and Related Device

By defining and comparing the standard appearance and actual appearance of each process node, calculating the appearance difference and determining the modification amount, the problem of difficulty in accuracy control during door structure processing is solved, and real-time accuracy control of door structure processing is achieved.

CN119148625BActive Publication Date: 2025-06-17GUANGDONG YUFENG IND (GRP) CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202411066777.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-06-17
Estimated Expiration
2044-08-06

AI Technical Summary

Technical Problem

The prior art cannot effectively control the interaction between various process nodes during the processing of the door structure, which makes it difficult to ensure the accuracy of the door structure.

Method used

By defining the standard appearance of each process node, and calculating the appearance difference based on the comparison between the actual appearance and the standard appearance, the modification amount and modification level of the next process node are determined, real-time control of door structure processing is achieved.

Benefits of technology

Real-time accuracy control of the door structure processing process is realized to ensure that the final accuracy of the door structure meets the preset standards.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119148625B_ABST
    Figure CN119148625B_ABST
Patent Text Reader

Abstract

The present invention discloses a method for controlling the production precision of a door structure and its related device. According to the production drawing of the door structure, the outer shape and production process of the door structure are determined. For the outer shape of the door structure and each process node in the production process, the standard outer shape output by each process node is defined, thereby introducing the standard outer shape of each process node to facilitate the comparison of the outer shape between the standard outer shape and the actual outer shape, and then defining the corresponding outer shape difference amount. At the same time, according to the outer shape difference amount, the modification amount of the next process node is defined, and the modification level is defined according to the modification amount of the next process node to facilitate the corresponding modification at the next process node, so as to timely and real-time control the processing of the door structure. At the same time, based on the repair level and the preliminary outer shape of the door structure, the repair logic is triggered, and the precision of the door structure is collected in real time in the repair logic until the precision of the door structure meets the preset precision.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of production precision control of door structures, and particularly to a method for controlling the production precision of door structures and related devices thereof. Background Art

[0002] With the development of technology, the door structure, as a part of the door, is processed in furniture processing equipment. At this time, a raw material piece is collected, and the raw material piece undergoes multiple processing procedures in the furniture processing equipment, such as cutting, punching, groove processing, surface processing, etc. In the prior art, the raw material piece is processed through multiple processing procedures, and the processing precision is not controlled during the processing procedures. Only the precision is controlled in the last procedure. However, the interaction between each processing node cannot be fully utilized, resulting in the inability to make corresponding modifications at the next processing node, affecting the precision of the door structure. Summary of the Invention

[0003] The purpose of the present invention is to overcome the deficiencies of the prior art. The present invention provides a method for controlling the production precision of door structures and related devices thereof. According to the production drawing of the door structure, the shape and production process of the door structure are determined. For each process node in the shape and production process of the door structure, the standard shape output by each process node is defined, thereby introducing the standard shape of each process node to facilitate the comparison of the shape between the standard shape and the actual shape, and then defining the corresponding shape difference amount. At the same time, according to the shape difference amount, the modification amount of the next process node is defined, and according to the modification amount of the next process node, the modification level is defined to facilitate corresponding modifications at the next process node, so as to timely and real-time control the processing of the door structure. At the same time, based on the repair level and the preliminary shape of the door structure, the repair logic is triggered, and the precision of the door structure is collected in real time in the repair logic to real-time control the precision of the door structure until the precision of the door structure meets the preset precision.

[0004] To solve the above technical problems, an embodiment of the present invention provides a method for controlling the production precision of door structures, which is applied to the production scenario of door structures;

[0005] The method for controlling the production precision of the door structure includes:

[0006] Collect the production model of the door structure, and match the corresponding production drawing of the door structure according to the production model of the door structure;

[0007] Determine the shape and production process of the door structure according to the production drawing of the door structure, and define the standard shape output by each process node for each process node in the shape and production process of the door structure;

[0008] Compare the outer shape based on the standard outer shape and the actual outer shape output by each process node, and define the corresponding outer shape difference; at the same time, define the modification amount of the next process node according to the outer shape difference, and define the modification level according to the modification amount of the next process node;

[0009] Define the processing accuracy level of the next process node according to the modification level and the processing level of the next process node;

[0010] Match the corresponding processing logic according to the processing accuracy level of the next process node, process the incoming parts under this processing logic, and control the processing effect of the incoming parts at this process node;

[0011] Collect the processing accuracy levels of each process node, construct a set of processing accuracy levels, and define the repair level of the door structure according to the set of processing accuracy levels and the outer shape type of the door structure;

[0012] Trigger the repair logic based on the repair level and the preliminary outer shape of the door structure, and collect the accuracy of the door structure in real time in the repair logic to control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy.

[0013] Optionally, collect the production model of the door structure, and match the corresponding production drawing of the door structure according to the production model of the door structure, including:

[0014] Collect the production model of the door structure;

[0015] Match the information database of the door structure based on the production model of the door structure;

[0016] Define the core information of the door structure according to the information database and the production model of the door structure;

[0017] Match the corresponding production drawing of the door structure according to the core information of the door structure. At this time, the production drawing includes the outer shape of the door structure, the processing accuracy requirements of the door structure, and the processing process nodes of the door structure.

[0018] Optionally, determine the outer shape and production process of the door structure according to the production drawing of the door structure, and define the standard outer shape output by each process node for each process node in the outer shape and production process of the door structure, including:

[0019] Freeze the production drawing of the door structure;

[0020] Divide different feature regions based on the production drawing of the door structure;

[0021] Determine the outer shape region and production process region based on the identification of each feature region;

[0022] Determine the shape of the door structure based on the shape area. Meanwhile, determine the production process of the door structure based on the production process area;

[0023] Divide multiple process nodes according to the production process of the door structure, and define the process types of multiple process nodes;

[0024] Associate the process type and the door structure, and output the first reference shape according to the process type and the door structure;

[0025] Collect the shape of the door structure, and associate the first reference shape and the shape of the door structure;

[0026] Define the standard shape according to the synthesis of the first reference shape and the shape of the door structure, so as to clarify the standard shape output by each process node.

[0027] Optionally, compare the shape based on the standard shape and the actual shape output by each process node, and define the corresponding shape difference amount; meanwhile, define the modification amount of the next process node according to the shape difference amount, and define the modification level according to the modification amount of the next process node, including:

[0028] Collect the standard shape and the actual shape output by each process node;

[0029] Associate the standard shape and the actual shape output by each process node, and compare the shape according to the standard shape and the actual shape output by each process node;

[0030] Define the corresponding shape difference amount based on the shape comparison between the standard shape and the actual shape output by each process node;

[0031] Define the shape difference level according to the shape difference amount and the accuracy level of the corresponding process node;

[0032] Define the modification amount of the next process node according to the shape difference amount;

[0033] Associate the modification amount of the next process node and the accuracy level of the next process node;

[0034] Define the modification level based on the modification amount of the next process node, the accuracy level of the next process node and the shape difference level.

[0035] Optionally, define the processing accuracy level of the next process node according to the modification level and the processing level of the next process node, including:

[0036] Collect the modification level of the next process node;

[0037] Associate the modification level of the next process node and the processing level of the next process node, and construct a level combination for the modification level and the processing level;

[0038] Define the machining precision level of the next process node based on the level combination and the combination table. At this time, define the correlation coefficient in the level combination, and output the machining precision level of the process node based on the correlation coefficient and the mapping relationship in the combination table.

[0039] Optionally, match the corresponding machining logic according to the machining precision level of the next process node, machine the incoming parts under this machining logic, and control the machining effect of the incoming parts at this process node, including:

[0040] Fix the machining precision level of the next process node;

[0041] Define the machining type and machining precision of the next process node according to the machining precision level of the next process node;

[0042] Match the corresponding machining logic based on the machining type and machining precision of the next process node. At this time, the machining logic matches the machining precision level of the next process node;

[0043] Trigger the machining content and machining sequence of the gate structure at the corresponding node based on the machining logic;

[0044] Machine the incoming parts based on the machining content and machining sequence;

[0045] Collect the machining trajectory of the incoming parts, and collect the machining surface of the incoming parts along the machining trajectory;

[0046] Construct a surface set based on multiple machining surfaces, and define the surface effect level according to the surface set;

[0047] If the surface effect level is lower than the preset surface effect level, trigger the optimization logic of the corresponding machining surface based on the level difference between the preset surface effect level and the surface effect level.

[0048] Optionally, collect the machining precision levels of each process node, construct a machining precision level set, and define the repair level of the gate structure according to the machining precision level set and the shape type of the gate structure, including:

[0049] Collect the machining precision levels of each process node;

[0050] Construct a machining precision level set based on the machining precision levels of each process node;

[0051] Collect the environmental parameters of the gate structure during machining, and define the environmental level according to the environmental parameters;

[0052] Collect the shape type of the gate structure;

[0053] Associate the set of machining precision grades and the shape type of the door structure;

[0054] Define the repair grade of the door structure according to the set of machining precision grades and the shape type of the door structure. At the same time, associate the environmental grade and the repair grade;

[0055] Match the repair logic that conforms to the current environment based on the environmental grade and the repair grade.

[0056] Optionally, trigger the repair logic based on the repair grade and the preliminary shape of the door structure, and collect the precision of the door structure in real time in the repair logic to control the precision of the door structure in real time until the precision of the door structure meets the preset precision, including:

[0057] Freeze the repair grade and the preliminary shape of the door structure;

[0058] Associate the repair grade and the preliminary shape of the door structure;

[0059] Match the repair table based on the repair grade and the preliminary shape of the door structure, and match the mapping relationship of the repair table for the repair grade and the preliminary shape of the door structure;

[0060] Output the repair logic based on the matching of the repair table and trigger the repair logic.

[0061] Optionally, trigger the repair logic based on the repair grade and the preliminary shape of the door structure, and collect the precision of the door structure in real time in the repair logic to control the precision of the door structure in real time until the precision of the door structure meets the preset precision, further including:

[0062] Trigger the repair work of the door structure based on the repair logic and monitor the repair work of the door structure;

[0063] Collect the precision of the door structure in real time and construct a precision change diagram of the door structure during the repair work;

[0064] Control the precision change rate based on the precision change diagram and control the precision of the door structure in real time until the precision of the door structure meets the preset precision.

[0065] In addition, an embodiment of the present invention also provides a production precision control device for a door structure. The production precision control device for the door structure includes:

[0066] A drawing module, configured to collect the production model of the door structure and match the corresponding production drawing of the door structure according to the production model of the door structure;

[0067] A shape module, configured to determine the shape and production process of the door structure according to the production drawing of the door structure, and define the standard shape output by each process node for each process node in the shape and production process of the door structure;

[0068] A modification level module, which is used to compare the outer shapes based on the standard outer shape and the actual outer shapes output by each process node, and define the corresponding outer shape difference amount; meanwhile, define the modification amount of the next process node according to the outer shape difference amount, and define the modification level according to the modification amount of the next process node;

[0069] A machining precision level module, which is used to define the machining precision level of the next process node according to the modification level and the machining level of the next process node;

[0070] A machining module, which is used to match the corresponding machining logic according to the machining precision level of the next process node, machine the incoming parts under this machining logic, and control the machining effect of the incoming parts at this process node;

[0071] A repair module, which is used to collect the machining precision levels of each process node, construct a machining precision level set, and define the repair level of the door structure according to the machining precision level set and the outer shape type of the door structure;

[0072] A real-time control module, which is used to trigger the repair logic based on the repair level and the preliminary outer shape of the door structure, and collect the precision of the door structure in real time in the repair logic to control the precision of the door structure in real time until the precision of the door structure meets the preset precision.

[0073] In an embodiment of the present invention, through the method in the embodiment of the present invention, the production model of the door structure is collected, and the production drawing of the corresponding door structure is matched according to the production model of the door structure; the outer shape and production process of the door structure are determined according to the production drawing of the door structure, and the standard outer shape output by each process node is defined for each process node in the outer shape and production process of the door structure, thereby introducing the standard outer shape of each process node to facilitate the comparison of the outer shape between the standard outer shape and the actual outer shape, and then defining the corresponding outer shape difference amount. At the same time, the modification amount of the next process node is defined according to the outer shape difference amount, and the modification level is defined according to the modification amount of the next process node to facilitate the corresponding modification at the next process node, so as to timely and real-time control the processing of the door structure. Therefore, the processing accuracy level of the next process node is defined according to the modification level and the processing level of the next process node; the corresponding processing logic is matched according to the processing accuracy level of the next process node, and the incoming parts are processed under this processing logic, and the processing effect of the incoming parts at this process node is controlled; in addition, the processing accuracy levels of each process node are collected, and a set of processing accuracy levels is constructed, and the repair level of the door structure is defined according to the set of processing accuracy levels and the outer shape type of the door structure; based on the repair level and the preliminary outer shape of the door structure, the repair logic is triggered, and the accuracy of the door structure is collected in real time in the repair logic to real-time control the accuracy of the door structure until the accuracy of the door structure meets the preset accuracy. Description of the Drawings

[0074] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention, and those of ordinary skill in the art can obtain other drawings without creative efforts based on these drawings.

[0075] Figure 1 It is a flowchart of the production accuracy control method for the door structure in the embodiment of the present invention;

[0076] Figure 2 It is a flowchart of S11 in the production accuracy control method for the door structure in the embodiment of the present invention;

[0077] Figure 3 It is a flowchart of S12 in the production accuracy control method for the door structure in the embodiment of the present invention;

[0078] Figure 4 It is a flowchart of S13 in the production accuracy control method for the door structure in the embodiment of the present invention;

[0079] Figure 5It is a schematic flowchart of S14 in the production precision control method of the door structure in the embodiment of the present invention;

[0080] Figure 6 It is a schematic flowchart of S15 in the production precision control method of the door structure in the embodiment of the present invention;

[0081] Figure 7 It is a schematic flowchart of S16 in the production precision control method of the door structure in the embodiment of the present invention;

[0082] Figure 8 It is a schematic flowchart of S17 in the production precision control method of the door structure in the embodiment of the present invention;

[0083] Figure 9 It is a schematic diagram of the structural composition of the production precision control device of the door structure in the embodiment of the present invention;

[0084] Figure 10 It is a schematic diagram of a production precision control device for a door structure shown according to an exemplary embodiment. Detailed implementation manners

[0085] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0086] Embodiment

[0087] Please refer to Figures 1 to 10 , a production precision control method for a door structure, which is applied to the production scenario of the door structure; the production precision control method for the door structure includes:

[0088] Step S11: Collect the production model of the door structure, and match the corresponding production drawing of the door structure according to the production model of the door structure;

[0089] Step S12: Determine the outer shape and production process of the door structure according to the production drawing of the door structure, and define the standard outer shape output by each process node for each process node in the outer shape and production process of the door structure;

[0090] Step S13: Perform an outer shape comparison based on the standard outer shape and the actual outer shape output by each process node, and define the corresponding outer shape difference amount; at the same time, define the modification amount of the next process node according to the outer shape difference amount, and define the modification level according to the modification amount of the next process node;

[0091] Step S14: Define the machining precision level of the next process node according to the modification level and the machining level of the next process node;

[0092] Step S15: Match the corresponding machining logic according to the machining precision level of the next process node, machine the incoming parts under this machining logic, and control the machining effect of the incoming parts at this process node;

[0093] Step S16: Collect the machining precision levels of each process node, construct a machining precision level set, and define the repair level of the door structure according to the machining precision level set and the shape type of the door structure;

[0094] Step S17: Trigger the repair logic based on the repair level and the preliminary shape of the door structure, and collect the precision of the door structure in real time in the repair logic to control the precision of the door structure in real time until the precision of the door structure meets the preset precision.

[0095] In the embodiment of the present invention, through the method in the embodiment of the present invention, collect the production model of the door structure, and match the corresponding production drawing of the door structure according to the production model of the door structure; determine the shape and production process of the door structure according to the production drawing of the door structure, and define the standard shape output by each process node for each process node in the shape and production process of the door structure, thereby introducing the standard shape of each process node to facilitate the shape comparison between the standard shape and the actual shape, and then define the corresponding shape difference amount. At the same time, define the modification amount of the next process node according to the shape difference amount, and define the modification level according to the modification amount of the next process node to facilitate the corresponding modification at the next process node, so as to timely control the machining of the door structure in real time. Therefore, define the machining precision level of the next process node according to the modification level and the machining level of the next process node; match the corresponding machining logic according to the machining precision level of the next process node, machine the incoming parts under this machining logic, and control the machining effect of the incoming parts at this process node; in addition, collect the machining precision levels of each process node, construct a machining precision level set, and define the repair level of the door structure according to the machining precision level set and the shape type of the door structure; trigger the repair logic based on the repair level and the preliminary shape of the door structure, and collect the precision of the door structure in real time in the repair logic to control the precision of the door structure in real time until the precision of the door structure meets the preset precision.

[0096] In step S11, collect the production model of the door structure, and match the corresponding production drawing of the door structure according to the production model of the door structure;

[0097] In the specific implementation process of the present invention, the specific steps may be:

[0098] S111: Collect the production model of the door structure;

[0099] S112: Match the information database of the door structure based on the production model of the door structure;

[0100] S113: Define the core information of the door structure according to the information database and the production model of the door structure;

[0101] S114: Match the corresponding production drawings of the door structure according to the core information of the door structure. At this time, the production drawings include the appearance of the door structure, the machining accuracy requirements of the door structure, and the machining process nodes of the door structure.

[0102] In the embodiment of the present application, the production model of the door structure is collected to facilitate finding information based on the production model of the door structure, so as to match the information database of the door structure based on the production model of the door structure, and then define the core information of the door structure according to the information database and the production model of the door structure, so as to freeze the core information of the door structure, realizing the information matching of the production model of the door structure and making full use of the interaction between the information database and the production model of the door structure.

[0103] Furthermore, match the corresponding production drawings of the door structure according to the core information of the door structure to facilitate the introduction of the production drawings of the door structure, so as to control the production drawings of the door structure, and then extract relevant information from the production drawings of the door structure. At this time, the production drawings include the appearance of the door structure, the machining accuracy requirements of the door structure, and the machining process nodes of the door structure.

[0104] In step S12, determine the appearance and production process of the door structure according to the production drawings of the door structure, and define the standard appearance output by each process node for each process node in the appearance and production process of the door structure;

[0105] In the specific implementation process of the present invention, the specific steps may be:

[0106] S121: Freeze the production drawings of the door structure;

[0107] S122: Divide different feature regions based on the production drawings of the door structure;

[0108] S123: Determine the appearance region and production process region based on the recognition of each feature region;

[0109] S124: Determine the appearance of the door structure based on the appearance region, and at the same time, determine the production process of the door structure based on the production process region;

[0110] S125: Divide multiple process nodes according to the production process of the door structure and define the process types of multiple process nodes;

[0111] S126: Associate the process type and the door structure, and output a first reference shape according to the process type and the door structure;

[0112] S127: Collect the shape of the door structure, and associate the first reference shape and the shape of the door structure;

[0113] S128: Define a standard shape based on the combination of the first reference shape and the shape of the door structure, so as to clarify the standard shape output by each process node.

[0114] In the embodiments of the present application, freeze the production drawings of the door structure to facilitate the control of the production drawings of the door structure, so as to divide different feature regions based on the production drawings of the door structure, so as to facilitate the regional identification of each feature region. Optionally, the identification of each feature region is performed synchronously.

[0115] At this time, determine the shape region and the production process region based on the identification of each feature region; determine the shape of the door structure based on the shape region, and at the same time, determine the production process of the door structure based on the production process region, so as to freeze the shape of the door structure and the production process of the door structure, so as to facilitate the association of the shape of the door structure and the production process of the door structure.

[0116] Furthermore, divide a plurality of process nodes according to the production process of the door structure, and define the process types of the plurality of process nodes, so as to facilitate the detailed division of the production process of the door structure, thereby associating the process type and the door structure, and outputting a first reference shape according to the process type and the door structure. Therefore, collect the shape of the door structure, and associate the first reference shape and the shape of the door structure; define a standard shape based on the combination of the first reference shape and the shape of the door structure, so as to clarify the standard shape output by each process node, so as to clarify the standard shape output by each process node, so as to facilitate the comparison of the actual shape and the standard shape at each process node.

[0117] In step S13, perform a shape comparison based on the standard shape and the actual shape output by each process node, and define the corresponding shape difference amount; at the same time, define the modification amount of the next process node according to the shape difference amount, and define the modification level according to the modification amount of the next process node;

[0118] In the specific implementation process of the present invention, the specific steps may be:

[0119] S131: Collect the standard shape and the actual shape output by each process node;

[0120] S132: Associate the standard shape and the actual shape output by each process node, and perform a shape comparison based on the standard shape and the actual shape output by each process node;

[0121] S133: Define the corresponding amount of shape difference based on the comparison between the standard shape and the actual shape output at each process node.

[0122] S134: Define the shape difference level according to the amount of shape difference and the accuracy level of the corresponding process node.

[0123] S135: Define the modification amount for the next process node according to the amount of shape difference.

[0124] S136: Associate the modification amount of the next process node with the accuracy level of the next process node.

[0125] S137: Define the modification level based on the modification amount of the next process node, the accuracy level of the next process node, and the shape difference level.

[0126] In the embodiment of the present application, the standard shape and the actual shape output at each process node are collected. In order to introduce the actual shape, the actual shape and the standard shape are compared in terms of shape. At this time, the standard shape and the actual shape output at each process node are associated, and the shape comparison is performed based on the standard shape and the actual shape output at each process node, so as to define the corresponding amount of shape difference based on the shape comparison between the standard shape and the actual shape output at each process node, and present the degree of shape difference at this process node through the amount of shape difference.

[0127] Furthermore, the shape difference level is defined according to the amount of shape difference and the accuracy level of the corresponding process node, so as to consider the compatibility of the amount of shape difference and the accuracy level of the corresponding process node, and define the shape difference level, so as to define the modification amount for the next process node according to the amount of shape difference, and then use the next process node for modification, and adjust the amount of shape difference brought by the previous process node.

[0128] Furthermore, the modification amount of the next process node is associated with the accuracy level of the next process node; the modification level is defined based on the modification amount of the next process node, the accuracy level of the next process node, and the shape difference level. At this time, the modification amount of the next process node, the accuracy level of the next process node, and the shape difference level are introduced, and the modification amount of the next process node, the accuracy level of the next process node, and the shape difference level are overall controlled, so as to define the modification level, and then the degree of modification is presented.

[0129] Therefore, collect the production model of the acquisition door structure, and match the corresponding production drawings of the door structure according to the production model of the door structure; determine the outer shape and production process of the door structure according to the production drawings of the door structure, and define the standard outer shape output by each process node for each process node in the outer shape and production process of the door structure, thereby introducing the standard outer shape of each process node to facilitate the comparison of the outer shape between the standard outer shape and the actual outer shape, and then defining the corresponding outer shape difference amount. At the same time, define the modification amount of the next process node according to the outer shape difference amount, and define the modification level according to the modification amount of the next process node to facilitate the corresponding modification at the next process node, so as to timely control the processing of the door structure in real time.

[0130] S14: Define the processing accuracy level of the next process node according to the modification level and the processing level of the next process node;

[0131] In the specific implementation process of the present invention, the specific steps can be:

[0132] S141: Collect the modification level of the next process node;

[0133] S142: Associate the modification level of the next process node and the processing level of the next process node, and construct a level combination for the modification level and the processing level;

[0134] S143: Define the processing accuracy level of the next process node based on the level combination and the combination table. At this time, define a correlation coefficient in the level combination, and output the processing accuracy level of the process node based on the correlation coefficient and the mapping relationship in the combination table.

[0135] In the embodiment of the present application, collect the modification level of the next process node to facilitate the control of the modification level of the next process node, thereby associate the modification level of the next process node and the processing level of the next process node, and construct a level combination for the modification level and the processing level. At this time, introduce the level combination and conduct overall control over the modification level and the processing level.

[0136] At the same time, define the processing accuracy level of the next process node based on the level combination and the combination table. At this time, define a correlation coefficient in the level combination, and output the processing accuracy level of the process node based on the correlation coefficient and the mapping relationship in the combination table, and then control the processing accuracy level of each process node.

[0137] S15: Match the corresponding processing logic according to the processing accuracy level of the next process node, process the incoming parts under this processing logic, and control the processing effect of the incoming parts at this process node;

[0138] In the specific implementation process of the present invention, the specific steps can be:

[0139] S151: Freeze the processing accuracy level of the next process node;

[0140] S152: Define the processing type and processing accuracy of the next process node according to the processing accuracy level of the next process node;

[0141] S153: Match the corresponding processing logic based on the processing type and processing accuracy of the next process node. At this time, the processing logic matches the processing accuracy level of the next process node;

[0142] S154: Trigger the processing content and processing sequence of the gate structure at the corresponding node based on the processing logic;

[0143] S155: Process the incoming workpiece based on the processing content and processing sequence;

[0144] S156: Collect the processing trajectory of the incoming workpiece and collect the processing surface of the incoming workpiece along the processing trajectory;

[0145] S157: Construct a surface set based on multiple processing surfaces and define the surface effect level according to the surface set;

[0146] S158: If the surface effect level is lower than the preset surface effect level, trigger the optimization logic of the corresponding processing surface based on the level difference between the preset surface effect level and the surface effect level.

[0147] In the embodiment of the present application, freeze the processing accuracy level of the next process node, so as to define the processing type and processing accuracy of the next process node according to the processing accuracy level of the next process node, so as to overall control the processing type and processing accuracy of the next process node, so as to match the corresponding processing logic based on the processing type and processing accuracy of the next process node. At this time, the processing logic matches the processing accuracy level of the next process node.

[0148] Further, trigger the processing content and processing sequence of the gate structure at the corresponding node based on the processing logic, so as to control the processing content and processing sequence of the gate structure at the corresponding node, so as to process the incoming workpiece based on the processing content and processing sequence, and then realize the automatic processing of the incoming workpiece for the processing content and processing sequence, and deeply control the processing of the incoming workpiece.

[0149] Meanwhile, collect the processing trajectories of the incoming parts, and collect the processing surfaces of the incoming parts along the processing trajectories; construct a surface set based on multiple processing surfaces, and define the surface effect level according to the surface set; if the surface effect level is lower than the preset surface effect level, trigger the optimization logic of the corresponding processing surface based on the level difference between the preset surface effect level and the surface effect level, and then control the processing surface to facilitate real-time optimization during the processing of the incoming parts.

[0150] S16: Collect the processing accuracy levels of each process node, construct a processing accuracy level set, and define the repair level of the door structure according to the processing accuracy level set and the shape type of the door structure;

[0151] In the specific implementation process of the present invention, the specific steps may be:

[0152] S161: Collect the processing accuracy levels of each process node;

[0153] S162: Construct a processing accuracy level set based on the processing accuracy levels of each process node;

[0154] S163: Collect the environmental parameters during the processing of the door structure, and define the environmental level according to the environmental parameters;

[0155] S164: Collect the shape type of the door structure;

[0156] S165: Associate the processing accuracy level set and the shape type of the door structure;

[0157] S166: Define the repair level of the door structure according to the processing accuracy level set and the shape type of the door structure. Meanwhile, associate the environmental level and the repair level;

[0158] S167: Match the repair logic that conforms to the current environment based on the environmental level and the repair level.

[0159] At this time, collect the processing accuracy levels of each process node to facilitate the introduction of the processing accuracy levels of each process node, thereby constructing a processing accuracy level set based on the processing accuracy levels of each process node, and then presenting the processing accuracy level set as a whole.

[0160] Furthermore, collect the environmental parameters during the processing of the door structure, and define the environmental level according to the environmental parameters; collect the shape type of the door structure; associate the processing accuracy level set and the shape type of the door structure; to facilitate defining the repair level of the door structure according to the processing accuracy level set and the shape type of the door structure, and presenting the repair degree of the door structure through the repair level of the door structure to facilitate controlling the repair steps of the door structure.

[0161] Meanwhile, associate the environmental level and the repair level; match the repair logic that conforms to the current environment based on the environmental level and the repair level, so as to introduce the environmental level and be compatible with the control of the processing environment. Furthermore, match the repair logic that conforms to the current environment based on the environmental level and the repair level, achieving the adaptability of the repair logic to different processing environments.

[0162] S17: Trigger the repair logic based on the repair level and the preliminary shape of the door structure, and collect the accuracy of the door structure in real time in the repair logic to control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy.

[0163] In the specific implementation process of the present invention, the specific steps can be as follows:

[0164] S171: Freeze the repair level and the preliminary shape of the door structure.

[0165] S172: Associate the repair level and the preliminary shape of the door structure.

[0166] S173: Match the repair table based on the repair level and the preliminary shape of the door structure, and map the relationship between the repair level and the preliminary shape of the door structure to the repair table.

[0167] S174: Output the repair logic based on the matching of the repair table and trigger the repair logic.

[0168] S175: Collect the accuracy of the door structure in real time and construct a graph of the accuracy change of the door structure during the repair process.

[0169] S176: Control the accuracy change rate based on the accuracy change graph and control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy.

[0170] At this time, define the processing accuracy level of the next process node according to the modification level and the processing level of the next process node; match the corresponding processing logic according to the processing accuracy level of the next process node, and process the incoming parts under this processing logic, and control the processing effect of the incoming parts at this process node; in addition, collect the processing accuracy levels of each process node, and construct a set of processing accuracy levels, and define the repair level of the door structure according to the set of processing accuracy levels and the shape type of the door structure; trigger the repair logic based on the repair level and the preliminary shape of the door structure, and collect the accuracy of the door structure in real time in the repair logic to control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy.

[0171] Further, freeze the repair level and the preliminary shape of the door structure; associate the repair level with the preliminary shape of the door structure; match the repair table based on the repair level and the preliminary shape of the door structure, and aim at the mapping relationship of the repair table for the repair level and the preliminary shape of the door structure, so as to make full use of the repair table and be compatible with the overall consideration of the repair level and the preliminary shape of the door structure.

[0172] At this time, output the repair logic based on the matching of the repair table and trigger the repair logic; collect the accuracy of the door structure in real time and construct a graph of the accuracy change of the door structure during the repair process; control the accuracy change rate based on the accuracy change graph and control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy, so as to control the last checkpoint for the door structure during the repair stage, so as to follow up the change of the processing progress in real time for the accuracy change graph, and thus control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy, ultimately ensuring the accuracy of the door structure.

[0173] Therefore, collect the production model of the door structure and match the corresponding production drawings of the door structure according to the production model of the door structure; determine the shape and production process of the door structure according to the production drawings of the door structure, and define the standard shape output by each process node for each process node in the shape and production process of the door structure, so as to introduce the standard shape of each process node, so as to compare the standard shape with the actual shape, and then define the corresponding shape difference amount. At the same time, define the modification amount of the next process node according to the shape difference amount, and define the modification level according to the modification amount of the next process node, so as to make the corresponding modification at the next process node, so as to timely control the processing of the door structure in real time. Therefore, define the processing accuracy level of the next process node according to the modification level and the processing level of the next process node; match the corresponding processing logic according to the processing accuracy level of the next process node, process the incoming parts under this processing logic, and control the processing effect of the incoming parts at this process node; in addition, collect the processing accuracy levels of each process node and construct a set of processing accuracy levels, and define the repair level of the door structure according to the set of processing accuracy levels and the shape type of the door structure; trigger the repair logic based on the repair level and the preliminary shape of the door structure, and collect the accuracy of the door structure in real time in the repair logic to control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy.

[0174] Embodiment

[0175] Please refer to Figure 9 , Figure 9 which is a schematic diagram of the structural composition of the production accuracy control device for the door structure in the embodiment of the present invention.

[0176] As shown in Figure 9As shown in the figure, a production precision control device for a door structure, the production precision control device for the door structure includes:

[0177] A drawing module 21, configured to collect the production model of the door structure and match the corresponding production drawing of the door structure according to the production model of the door structure;

[0178] An outer shape module 22, configured to determine the outer shape and production process of the door structure according to the production drawing of the door structure, and define the standard outer shape output by each process node for each process node in the outer shape and production process of the door structure;

[0179] A modification level module 23, configured to perform an outer shape comparison based on the standard outer shape and the actual outer shape output by each process node, and define the corresponding outer shape difference amount; at the same time, define the modification amount of the next process node according to the outer shape difference amount, and define the modification level according to the modification amount of the next process node;

[0180] A data set module 24, configured to define the processing precision level of the next process node according to the modification level and the processing level of the next process node;

[0181] A processing module 25, configured to match the corresponding processing logic according to the processing precision level of the next process node, process the incoming parts under this processing logic, and control the processing effect of the incoming parts at this process node;

[0182] A repair module 26, configured to collect the processing precision levels of each process node, construct a set of processing precision levels, and define the repair level of the door structure according to the set of processing precision levels and the outer shape type of the door structure;

[0183] A real-time control module 27, configured to trigger a repair logic based on the repair level and the preliminary outer shape of the door structure, and collect the precision of the door structure in real time in the repair logic to perform real-time control on the precision of the door structure until the precision of the door structure meets the preset precision.

[0184] Embodiment

[0185] A computer-readable storage medium provided by an embodiment of the present invention has a computer program stored thereon. When the program is executed by a processor, it implements the production precision control method of the gate structure in any one of the above embodiments. Among them, the computer-readable storage medium includes, but is not limited to, any type of disk (including floppy disks, hard disks, optical disks, CD-ROMs, and magneto-optical disks), ROM (Read-Only Memory), RAM (Random Access Memory), EPROM (Erasable Programmable Read-Only Memory), EEPROM (Electrically Erasable Programmable Read-Only Memory), flash memory, magnetic cards, or optical cards. That is, the storage device includes any medium that can store or transmit information in a readable form by a device (such as a computer, mobile phone), and can be a read-only memory, a magnetic disk, or an optical disk, etc.

[0186] An embodiment of the present invention also provides a computer application program that runs on a computer and is used to execute the production precision control method of the gate structure in any one of the above embodiments.

[0187] In addition, Figure 10 is a schematic structural diagram of the production precision control device for the gate structure in an embodiment of the present invention.

[0188] An embodiment of the present invention also provides a production precision control device for a gate structure, as Figure 10 shown. The treatment device includes devices such as a processor 302, a memory 303, an input unit 304, and a display unit 305. Those skilled in the art can understand that Figure 3The production precision control device structure components of the shown door structure do not constitute a limitation to all devices, and may include more or fewer components than shown, or combine certain components. The memory 303 can be used to store the application program 301 and each functional module. The processor 302 runs the application program 301 stored in the memory 303, so as to execute various functional applications and data processing of the device. The memory can be an internal memory or an external memory, or include both an internal memory and an external memory. The internal memory can include a read-only memory (ROM), a programmable ROM (PROM), an electrically programmable ROM (EPROM), an electrically erasable programmable ROM (EEPROM), a flash memory, or a random access memory. The external memory can include a hard disk, a floppy disk, a ZIP disk, a USB flash drive, a magnetic tape, etc. The memory disclosed in the present invention includes but is not limited to these types of memories. The memory disclosed in the present invention is only an example rather than a limitation.

[0189] The input unit 304 is used for receiving signal input and receiving keywords input by the user. The input unit 304 can include a touch panel and other input devices. The touch panel can collect touch operations of the user on or near it (such as operations of the user using any suitable object or accessory such as a finger, a stylus, etc. on or near the touch panel), and drive the corresponding connection device according to a pre-set program; other input devices can include but are not limited to one or more of a physical keyboard, function keys (such as play control keys, switch keys, etc.), a trackball, a mouse, a joystick, etc. The display unit 305 can be used to display information input by the user or information provided to the user and various menus of the terminal device. The display unit 305 can be in the form of a liquid crystal display, an organic light-emitting diode, etc. The processor 302 is the control center of the terminal device, connects various parts of the whole device by using various interfaces and lines, and executes various functions and processes data by running or executing software programs and / or modules stored in the memory 303, and calling data stored in the memory.

[0190] As an embodiment, the production precision control device of the door structure includes: one or more processors 302, a memory 303, one or more application programs 301, wherein the one or more application programs 301 are stored in the memory 303 and are configured to be executed by the one or more processors 302, and the one or more application programs 301 are configured to execute the production precision control method of the door structure in any one of the above embodiments.

[0191] In addition, the method for controlling the production precision of the door structure provided by the embodiments of the present invention and related devices have been introduced in detail above. Specific examples should have been used in this article to elaborate on the principle and implementation manner of the present invention. The description of the above embodiments is only used to help understand the method and its core idea of the present invention. At the same time, for those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present invention.

Claims

1. A method for controlling the production accuracy of a door structure, characterized in that: Applied to the production scenario of door structure; The production precision control method of the door structure comprises: Collect the production model of the door structure, and match the corresponding production drawing of the door structure according to the production model of the door structure; Determine the shape of the door structure and the production process according to the production drawing of the door structure, and define the standard shape output by each process node according to the shape of the door structure and each process node in the production process; Perform appearance comparison based on the standard appearance and the actual appearance output by each process node, and define the corresponding appearance difference; at the same time, define the modification amount of the next process node according to the appearance difference, and define the modification level according to the modification amount of the next process node; Define the machining accuracy level of the next process node according to the modification level and the machining level of the next process node; Match the corresponding processing logic according to the processing accuracy level of the next process node, process the incoming parts under the processing logic, and control the processing effect of the incoming parts at the process node; Collect the machining accuracy level of each process node, build a machining accuracy level set, and define the repair level of the door structure according to the machining accuracy level set and the shape type of the door structure; The repair logic is triggered based on the repair level and the preliminary appearance of the door structure, and the accuracy of the door structure is collected in real time in the repair logic to control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy; The corresponding processing logic is matched according to the processing accuracy level of the next process node, and the incoming parts are processed under the processing logic, and the processing effect of the incoming parts at the process node is controlled, including: Determine the machining accuracy level of the next process node; Define the processing type and processing accuracy of the next process node according to the processing accuracy level of the next process node; The corresponding processing logic is matched based on the processing type and processing accuracy of the next process node. At this time, the processing logic matches the processing accuracy level of the next process node; The processing content and processing sequence of the gate structure at the corresponding node based on the processing logic; Process incoming parts based on processing content and processing sequence; Collect the processing trajectory of the incoming parts, and collect the processing surface of the incoming parts along the processing trajectory; Building a surface set based on multiple machined surfaces, and defining a surface effect level according to the surface set; If the surface effect level is lower than the preset surface effect level, the optimization logic of the corresponding processed surface is triggered based on the level difference between the preset surface effect level and the surface effect level.

2. The method for controlling the production accuracy of a door structure according to claim 1, characterized in that: The process of determining the shape of the door structure and the production process according to the production drawing of the door structure, and defining the standard shape output by each process node according to the shape of the door structure and each process node in the production process, includes: Production drawings of fixed door structures; Divide different feature areas based on the production drawings of the door structure; Determine the shape area and the production process area based on the recognition of each characteristic area; Determine the shape of the door structure based on the shape area, and at the same time, determine the production process of the door structure based on the production process area; Divide multiple process nodes according to the production process of the door structure, and define the process types of multiple process nodes; Associating the process type and the door structure, and outputting a first reference shape according to the process type and the door structure; Collecting the shape of the door structure and associating the first reference shape with the shape of the door structure; The standard shape is defined based on the synthesis of the first reference shape and the shape of the door structure to clarify the standard shape output by each process node.

3. The method for controlling the production accuracy of a door structure according to claim 1, characterized in that: The method of comparing the standard shape with the actual shape outputted by each process node and defining the corresponding shape difference; at the same time, defining the modification amount of the next process node according to the shape difference, and defining the modification level according to the modification amount of the next process node, includes: Collect standard shapes and actual shapes output by each process node; Associating the standard shape with the actual shape outputted by each process node, and performing shape comparison based on the standard shape and the actual shape outputted by each process node; Defining a corresponding shape difference amount based on shape comparison between a standard shape and an actual shape outputted by each process node; Defining the shape difference level according to the shape difference amount and the corresponding process node accuracy level; Define the modification amount of the next process node according to the difference in appearance; Associate the modification amount of the next process node and the accuracy level of the next process node; The modification level is defined based on the modification amount of the next process node, the accuracy level of the next process node, and the appearance difference level.

4. The method for controlling the production accuracy of a door structure according to claim 1, characterized in that: The collecting of the processing accuracy level of each process node and constructing a processing accuracy level set, and defining the repair level of the door structure according to the processing accuracy level set and the shape type of the door structure, include: Collect the machining accuracy level of each process node; Construct a machining accuracy level set based on the machining accuracy level of each process node; Collect environmental parameters of the door structure during processing and define environmental levels based on the environmental parameters; Gather the appearance type of the door structure; Associating a set of machining accuracy levels and the shape type of the door structure; Define the repair level of the door structure according to the processing accuracy level set and the shape type of the door structure, and at the same time, associate the environmental level and the repair level; The repair logic that matches the current environment is matched based on the environment level and the repair level.

5. The method for controlling the production accuracy of a door structure according to claim 4, characterized in that: The repair logic is triggered based on the repair level and the preliminary appearance of the door structure, and the accuracy of the door structure is collected in real time in the repair logic to control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy, including: Determine the repair level and preliminary appearance of the door structure; Correlate the level of repair and the preliminary appearance of the door structure; Matching the repair table based on the repair level and the preliminary appearance of the door structure, and matching the mapping relationship of the repair table with respect to the repair level and the preliminary appearance of the door structure; The repair logic is output based on the match of the repair table and is triggered.

6. The method for controlling the production accuracy of a door structure according to claim 5, characterized in that: The repair logic is triggered based on the repair level and the preliminary appearance of the door structure, and the accuracy of the door structure is collected in real time in the repair logic to control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy, and further includes: Triggering the repair work of the door structure based on the repair logic and monitoring the repair work of the door structure; Collect the accuracy of the door structure in real time and build a diagram of the accuracy change of the door structure during the repair process; The accuracy change rate is controlled based on the accuracy change graph, and the accuracy of the door structure is controlled in real time until the accuracy of the door structure meets the preset accuracy.

7. A production precision control device for a door structure, characterized in that: The production precision control device of the door structure is applied to the production precision control method of the door structure as claimed in any one of claims 1 to 6, and the production precision control device of the door structure comprises: A drawing module is used to collect the production model of the door structure and match the corresponding production drawing of the door structure according to the production model of the door structure; The appearance module is used to determine the appearance of the door structure and the production process according to the production drawing of the door structure, and define the standard appearance output by each process node according to the appearance of the door structure and each process node in the production process; The modification level module is used to compare the appearance based on the standard appearance and the actual appearance output by each process node, and define the corresponding appearance difference; at the same time, define the modification amount of the next process node according to the appearance difference, and define the modification level according to the modification amount of the next process node; A machining accuracy level module is used to define the machining accuracy level of the next process node according to the modification level and the machining level of the next process node; The processing module is used to match the corresponding processing logic according to the processing accuracy level of the next process node, process the incoming parts under the processing logic, and control the processing effect of the incoming parts at the process node; A repair module is used to collect the machining accuracy level of each process node and construct a machining accuracy level set, and define the repair level of the door structure according to the machining accuracy level set and the shape type of the door structure; A real-time control module is used to trigger the repair logic based on the repair level and the preliminary appearance of the door structure, and collect the accuracy of the door structure in real time in the repair logic to control the accuracy of the door structure in real time until the accuracy of the door structure meets the preset accuracy; The method matches the corresponding processing logic according to the processing accuracy level of the next process node, processes the incoming parts under the processing logic, and controls the processing effect of the incoming parts at the process node, including: freezing the processing accuracy level of the next process node; defining the processing type and processing accuracy of the next process node according to the processing accuracy level of the next process node; matching the corresponding processing logic based on the processing type and processing accuracy of the next process node, at this time, the processing logic matches the processing accuracy level of the next process node; triggering the processing content and processing sequence of the gate structure at the corresponding node based on the processing logic; processing the incoming parts based on the processing content and processing sequence; collecting the processing trajectory of the incoming parts, and collecting the processing surface of the incoming parts along the processing trajectory; constructing a surface set based on multiple processing surfaces, and defining the surface effect level according to the surface set; if the surface effect level is lower than the preset surface effect level, triggering the corresponding processing surface optimization logic based on the level difference between the preset surface effect level and the surface effect level.

8. An electronic device comprising a processor and a memory, characterized in that: The processor runs the computer program or code stored in the memory to implement the production accuracy control method of the door structure according to any one of claims 1 to 6.

9. A computer-readable storage medium for storing a computer program or code, characterized in that: When the computer program or code is executed by a processor, the production accuracy control method of the door structure according to any one of claims 1 to 6 is implemented.

Citation Information

Patent Citations

  • Processing on-line measuring method of water turbine blades

    CN110465831A

  • Wooden door multi-process automatic integrated processing production line detection method and system

    CN117314262A

  • Dynamic control method and system for whole blanking forming process

    CN117348550A