A system for automatically generating the forming and pressing action trajectory of a radial tire blank

By designing an automated system including login module, detection module, data information database and compressed module, the compressed quality problems caused by artificial adjustment of complex parameters in the prior art are solved, and higher product stability and consistency are achieved.

CN115891246BActive Publication Date: 2025-06-17SHANDONG LINGLONG TIRE CO LTD +1

Patent Information

Application Number
CN202211416803.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-14
Publication Date
2025-06-17
Estimated Expiration
2042-11-14

AI Technical Summary

Technical Problem

Existing tire forming machines need to manually adjust complex parameters when setting the embryo compression action, resulting in difficult to ensure the quality of compression, product stability and consistency.

Method used

Design a system that automatically generates the radial tire embryo forming and pressing action trajectory, including a login module, a detection module, a data information database and a pressing module. The automatic operation of each module is realized through electrical connection, and automatically matches and pressing is carried out to reduce the need for manual debugging.

Benefits of technology

Automatic matching and compression operation are realized, which reduces manual errors, improves product stability and consistency, and simplifies the operation process of the equipment.

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    Figure CN115891246B_ABST
Patent Text Reader

Abstract

The present invention discloses a system for automatically generating the forming and pressing action trajectory of a radial tire embryo, including a pressing device. A login module is arranged in the pressing device, a detection module is arranged in the pressing device, a data information library is arranged in the pressing device, and a pressing module is arranged in the pressing device. The login module is electrically connected to the detection module, the login module is electrically connected to the data information library, the data information library is electrically connected to the detection module, the data information library is electrically connected to the pressing module, the pressing module is electrically connected to the detection module, an equipment terminal is electrically connected to the pressing device, and a probe is electrically connected to the pressing device. The present invention relates to a system for automatically generating the forming and pressing action trajectory of a radial tire embryo, which has the characteristics of being able to automatically match and perform pressing and matching data to sub-devices.
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Description

Technical Field

[0001] The present invention belongs to the technical field of tire processing, and specifically relates to a system for automatically generating the forming and pressing action trajectory of a radial tire blank. Background Art

[0002] The tire forming process mainly refers to a processing technology for tightly combining components such as the sidewall, inner liner, bead wrapper, cushion gum, bead, belt layer, and tread that meet the design and construction dimension standards into an integral green tire blank according to the processing sequence and positioning requirements of the components. At present, when setting the pressing action of the green tire blank, the forming machines produced by domestic and foreign manufacturers all adopt the method of manually adjusting parameters to set the pressing trajectories of different specifications of green tire blanks. However, the setting of the pressing action parameters of the equipment is complex, involving the setting of high and low pressures during pressing, the average speed of the pressing roller and the rotation speed of the forming drum, the position of high-low pressure conversion, the swinging position of the pressing roller, and the pause position, etc. The complex setting of pressing parameters, the large number of specifications and categories, the large number of pressing components, and the high requirements for the skill level of personnel and other factors often lead to pressing quality problems in the actual production process, resulting in potential risks in maintaining the stability and consistency of products. Summary of the Invention

[0003] The purpose of the present invention is to provide a system for automatically generating the forming and pressing action trajectory of a radial tire blank to solve the problems mentioned in the above background art.

[0004] To solve the above problems, the present invention provides a technical solution:

[0005] A system for automatically generating the forming and pressing action trajectory of a radial tire blank includes a pressing device, in which a login module is provided, a detection module is provided, a data information library is provided, and a pressing module is provided. The login module is electrically connected to the detection module, the login module is electrically connected to the data information library, the data information library is electrically connected to the detection module, the data information library is electrically connected to the pressing module, the pressing module is electrically connected to the detection module. An equipment terminal is electrically connected to the pressing device, a probe is electrically connected to the pressing device, the equipment terminal is electrically connected to a power supply through a power interface, and the power supply is electrically connected to the probe through the power interface.

[0006] Preferably, the login module includes a registration module, a parent user login module, and a sub-user login module. The registration module is used to register the parent user. The registration module is electrically connected to the parent user login module. The parent user login module is used to log in the parent user. The parent user login module is electrically connected to the sub-user login module. The sub-user login module is used to log in the sub-user. The registration module, the parent user login module, and the sub-user login module are all electrically connected to the login module.

[0007] Preferably, the detection module includes a visual detection module, a data recording module, a data reading module, and a data matching module. The visual detection module is used to read workpiece information. The visual detection module is electrically connected to the data recording module. The data recording module is used to record the detected workpiece information. The data recording module is electrically connected to the data reading module. The data reading module is used to read information from the data information library. The data reading module is electrically connected to the data matching module. The data matching module is used to compare the recorded and read information. The data matching module is electrically connected to the visual detection module. The visual detection module, the data recording module, the data reading module, and the data matching module are all electrically connected to the detection module.

[0008] Preferably, the data information library includes a sub-user information module, a material information module, a lamination parameter module, and a manual input module. The sub-user information module is used for the parent user to manage the information of the sub-users. The sub-user information module is electrically connected to the material information module. The material information module is used to store the information of the materials. The material information module is electrically connected to the lamination parameter module. The lamination parameter module can control the lamination trajectory of the equipment. The lamination parameter module is electrically connected to the manual input module. The manual input module is used to manually input lamination data. The manual input module is electrically connected to the sub-user information module. The sub-user information module, the material information module, the lamination parameter module, and the manual input module are electrically connected to the data information library.

[0009] Preferably, the lamination module includes a data receiving module, an equipment matching module, a workpiece locking module, and a driving module. The data receiving module is used to receive lamination parameters. The data receiving module is electrically connected to the equipment matching module. The equipment matching module is used to match the processing equipment. The equipment matching module is electrically connected to the workpiece locking module. The workpiece locking module is used to lock the position of the workpiece. The workpiece locking module is electrically connected to the driving module. The driving module is used to drive the equipment to operate. The driving module is electrically connected to the data receiving module. The data receiving module, the equipment matching module, the workpiece locking module, and the driving module are all electrically connected to the lamination module.

[0010] A method for using a system for automatically generating the forming and pressing action trajectory of a radial tire embryo, comprising the following steps:

[0011] Step 1: Software A is started;

[0012] Step 2: B activates the login module for logging in users;

[0013] Step 3: C activates the vision detection module for activating the probe to record information;

[0014] Step 4: D activates the data reading module for reading material information;

[0015] Step 5: E activates the data matching module for matching pressing parameters;

[0016] Step 6: F activates the equipment matching module for matching corresponding processing equipment;

[0017] Step 7: G activates the workpiece locking module for locking the workpiece position;

[0018] Step 8: H activates the driving module for starting the equipment to process the workpiece.

[0019] Step 8: I Completes the pressing. Preferably,

[0020] Preferably, the B includes B1 for activating the network connection, B2 for the parent user login module and the sub-user login module, B3 for the management sub-user information module to create and delete sub-users, and B4 for activating the manual input module to input data.

[0021] Preferably, the C includes C1 for activating the network connection, C2 for inspecting the workpiece, C3 for recording the information of the workpiece, and C4 for inputting it into the data information library.

[0022] Preferably, the F includes F1 for activating the network connection, F2 for activating the data receiving module, F3 for activating the pressing parameter module to read the parameters transmitted from the database, and F4 for matching the processing equipment according to the received parameters.

[0023] Preferably, the G includes G1 for activating the network connection, G2 for receiving the material information and the information of the required processing equipment, G3 for locking the workpiece when the workpiece reaches the position of the processing equipment, and G4 for loading the matched information.

[0024] The beneficial effects of the present invention are as follows: The present invention relates to a system for automatically generating the forming and pressing action trajectory of a radial tire embryo, which has the characteristics of automatically matching and performing pressing and matching data to sub-devices. In specific use, it has the following beneficial effects:

[0025] In the present invention, a detection module is provided, which can record and match data according to the material and specifications of the workpiece, so that the workpiece can be matched with suitable pressing parameters, and then processed by the pressing module. It is not necessary for manual debugging of data. By setting up a parent user login module and a sub-user login module, the data information of the main device can be matched to the sub-devices, that is, the specific forming construction parameters can be downloaded to the forming machine platform of the branch factory. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] For ease of explanation, the present invention will be described in detail by the following specific embodiments and the accompanying drawings.

[0027] Figure 1 It is the principle block diagram of the present invention;

[0028] Figure 2 It is the main flow chart of the present invention;

[0029] Figure 3 It is the flow chart of the logged-in user of the present invention;

[0030] Figure 4 It is the flow chart of starting the probe to record information of the present invention;

[0031] Figure 5 It is the flow chart of matching the corresponding processing equipment of the present invention;

[0032] Figure 6 It is the flow chart of locking the position of the workpiece of the present invention.

[0033] In the figure: 1, pressing equipment; 2, login module; 21, registration module; 22, parent user login module; 23, sub-user login module; 3, detection module; 31, visual detection module; 32, data recording module; 33, data reading module; 34, data matching module; 4, data information library; 41, sub-user information module; 42, material information module; 43, pressing parameter module; 44, manual input module; 5, pressing module; 51, data receiving module; 52, equipment matching module; 53, workpiece locking module; 54, driving module; 6, equipment terminal; 7, probe; 8, power supply. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0034] As Figures 1-6 shown, the following technical solutions are adopted in this specific embodiment:

[0035] Example:

[0036] A system for automatically generating the forming and pressing action trajectory of a radial tire embryo, including a pressing device 1, in which a login module 2 is provided, a detection module 3 is provided, a data information library 4 is provided, and a pressing module 5 is provided. The login module 2 is electrically connected to the detection module 3, the login module 2 is electrically connected to the data information library 4, the data information library 4 is electrically connected to the detection module 3, the data information library 4 is electrically connected to the pressing module 5, the pressing module 5 is electrically connected to the detection module 3, an equipment terminal 6 is electrically connected to the pressing device 1, a probe 7 is electrically connected to the pressing device 1, a power supply 8 is electrically connected to the equipment terminal 6 through a power interface, and the power supply 8 is electrically connected to the probe 7 through the power interface.

[0037] In this embodiment, the registration module 21 is used to register a parent user, the parent user login module 22 is used to log in the parent user, the sub-user login module 23 is used to log in the sub-user, the visual detection module 31 is used to read workpiece information, the data recording module 32 is used to record the detected workpiece information, the data reading module 33 is used to read the information in the data information library 4, the data matching module 34 is used to compare the recorded and read information, the sub-user information module 41 is used for the parent user to manage the information of the sub-user, the material information module 42 is used to store the information of the material, the pressing parameter module 43 can control the pressing trajectory of the equipment, the manual input module 44 is used to manually input the pressing data, the data receiving module 51 is used to receive the pressing parameters, the equipment matching module 52 is used to match the processing equipment, the workpiece locking module 53 is used to lock the position of the workpiece, and the driving module 54 is used to drive the equipment to operate.

[0038] Specifically, the login module 2 includes a registration module 21, a parent user login module 22, and a sub-user login module 23. The registration module 21 is used to register a parent user, the registration module 21 is electrically connected to the parent user login module 22, the parent user login module 22 is used to log in the parent user, the parent user login module 22 is electrically connected to the sub-user login module 23, the sub-user login module 23 is used to log in the sub-user, and the registration module 21, the parent user login module 22, and the sub-user login module 23 are all electrically connected to the login module 2.

[0039] In this embodiment, the registration module 21 is used to register a parent user, the parent user login module 22 is used to log in the parent user, and the sub-user login module 23 is used to log in the sub-user.

[0040] Specifically, the detection module 3 includes a visual detection module 31, a data recording module 32, a data reading module 33, and a data matching module 34. The visual detection module 31 is used to read workpiece information. The visual detection module 31 is electrically connected to the data recording module 32. The data recording module 32 is used to record the detected workpiece information. The data recording module 32 is electrically connected to the data reading module 33. The data reading module 33 is used to read the information in the data information library 4. The data reading module 33 is electrically connected to the data matching module 34. The data matching module 34 is used to compare the recorded and read information. The data matching module 34 is electrically connected to the visual detection module 31. The visual detection module 31, the data recording module 32, the data reading module 33, and the data matching module 34 are all electrically connected to the detection module 3.

[0041] In this embodiment, the visual detection module 31 is used to read workpiece information, the data recording module 32 is used to record the detected workpiece information, the data reading module 33 is used to read the information in the data information library 4, and the data matching module 34 is used to compare the recorded and read information.

[0042] Specifically, the data information library 4 includes a sub-user information module 41, a material information module 42, a pressing parameter module 43, and a manual input module 44. The sub-user information module 41 is used for the parent user to manage the information of the sub-users. The sub-user information module 41 is electrically connected to the material information module 42. The material information module 42 is used to store the information of the materials. The material information module 42 is electrically connected to the pressing parameter module 43. The pressing parameter module 43 can control the pressing trajectory of the equipment. The pressing parameter module 43 is electrically connected to the manual input module 44. The manual input module 44 is used to manually input the pressing data. The manual input module 44 is electrically connected to the sub-user information module 41. The sub-user information module 41, the material information module 42, the pressing parameter module 43, and the manual input module 44 are electrically connected to the data information library 4.

[0043] In this embodiment, the sub-user information module 41 is used for the parent user to manage the information of the sub-users, the material information module 42 is used to store the information of the materials, the pressing parameter module 43 can control the pressing trajectory of the equipment, and the manual input module 44 is used to manually input the pressing data.

[0044] Specifically, the pressing module 5 includes a data receiving module 51, a device matching module 52, a workpiece locking module 53, and a driving module 54. The data receiving module 51 is configured to receive pressing parameters. The data receiving module 51 is electrically connected to the device matching module 52. The device matching module 52 is configured to match processing devices. The device matching module 52 is electrically connected to the workpiece locking module 53. The workpiece locking module 53 is configured to lock the position of the workpiece. The workpiece locking module 53 is electrically connected to the driving module 54. The driving module 54 is configured to drive the device to operate. The driving module 54 is electrically connected to the data receiving module 51. The data receiving module 51, the device matching module 52, the workpiece locking module 53, and the driving module 54 are all electrically connected to the pressing module 5.

[0045] In this embodiment, the data receiving module 51 is configured to receive pressing parameters, the device matching module 52 is configured to match processing devices, the workpiece locking module 53 is configured to lock the position of the workpiece, and the driving module 54 is configured to drive the device to operate.

[0046] A method for using a system for automatically generating the forming and pressing action trajectory of a radial tire blank includes the following steps:

[0047] Step 1: Software A is started.

[0048] Step 2: Module B is activated for user login.

[0049] Step 3: Module C is activated for activating the probe for information recording.

[0050] Step 4: Module D is activated for reading material information.

[0051] Step 5: Module E is activated for matching pressing parameters.

[0052] Step 6: Module F is activated for matching corresponding processing devices.

[0053] Step 7: Module G is activated for locking the position of the workpiece.

[0054] Step 8: Module H is activated for starting the device to process the workpiece.

[0055] Specifically, the said B includes B1 activating network connection, B2 parent user login module and sub-user login module, B3 management sub-user information module for creating and deleting sub-users, and B4 activating the manual input module for data entry.

[0056] Specifically, the said C includes C1 activating network connection, C2 inspecting the workpiece, C3 recording the information of the workpiece, and C4 entering it into the database.

[0057] Specifically, the F includes F1 to enable network connection, F2 to enable data receiving module, F3 to enable lamination parameter module, read the parameters transmitted by the database, and F4 to match the processing equipment according to the received parameters.

[0058] Specifically, the G includes G1 to enable network connection, G2 to receive the material information and the information of the required processing equipment, G3 to lock the workpiece when the workpiece reaches the position of the processing equipment, and G4 to load the matched information.

[0059] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. A system for automatically generating the forming and pressing action trajectory of a radial tire embryo, including a pressing device (1), characterized in that: A landing module (2), a detection module (3), a data information library (4), and a pressing module (5) are provided in the pressing device (1). The landing module (2) is electrically connected to the detection module (3), the landing module (2) is electrically connected to the data information library (4), the data information library (4) is electrically connected to the detection module (3), the data information library (4) is electrically connected to the pressing module (5), and the pressing module (5) is electrically connected to the detection module (3). An equipment terminal (6) is electrically connected to the pressing device (1), and a probe (7) is electrically connected to the pressing device (1). The equipment terminal (6) is electrically connected to a power supply (8) through a power interface, and the power supply (8) is electrically connected to the probe (7) through the power interface; The data information library (4) includes a sub-user information module (41), a material information module (42), a pressing parameter module (43), and a manual input module (44). The sub-user information module (41) is used for the parent user to manage the information of the sub-users. The sub-user information module (41) is electrically connected to the material information module (42). The material information module (42) is used for storing the information of the materials. The material information module (42) is electrically connected to the pressing parameter module (43). The pressing parameter module (43) can control the pressing trajectory of the equipment. The pressing parameter module (43) is electrically connected to the manual input module (44). The manual input module (44) is used for manually inputting the pressing data. The manual input module (44) is electrically connected to the sub-user information module (41). The sub-user information module (41), the material information module (42), the pressing parameter module (43), and the manual input module (44) are all electrically connected to the data information library (4); The pressing module (5) includes a data receiving module (51), an equipment matching module (52), a workpiece locking module (53), and a driving module (54). The data receiving module (51) is used for receiving the pressing parameters. The data receiving module (51) is electrically connected to the equipment matching module (52). The equipment matching module (52) is used for matching the processing equipment. The equipment matching module (52) is electrically connected to the workpiece locking module (53). The workpiece locking module (53) is used for locking the position of the workpiece. The workpiece locking module (53) is electrically connected to the driving module (54). The driving module (54) is used for driving the equipment to operate. The driving module (54) is electrically connected to the data receiving module (51). The data receiving module (51), the equipment matching module (52), the workpiece locking module (53), and the driving module (54) are all electrically connected to the pressing module (5).

2. The system for automatically generating the forming and pressing action trajectory of a radial tire embryo according to claim 1, characterized in that: The login module (2) includes a registration module (21), a parent user login module (22), and a child user login module (23). The registration module (21) is used to register parent users. The registration module (21) is electrically connected to the parent user login module (22). The parent user login module (22) is used to log in parent users. The parent user login module (22) is electrically connected to a child user login module (23). The child user login module (23) is used to log in child users. The registration module (21), the parent user login module (22), and the child user login module (23) are all electrically connected to the login module (2).

3. The system for automatically generating the forming and pressing action trajectory of a radial tire embryo according to claim 1, characterized in that: The detection module (3) includes a visual detection module (31), a data recording module (32), a data reading module (33), and a data matching module (34). The visual detection module (31) is used to read workpiece information. The visual detection module (31) is electrically connected to the data recording module (32). The data recording module (32) is used to record the detected workpiece information. The data recording module (32) is electrically connected to the data reading module (33). The data reading module (33) is used to read information from the data information library (4). The data reading module (33) is electrically connected to the data matching module (34). The data matching module (34) is used to compare the recorded and read information. The data matching module (34) is electrically connected to the visual detection module (31). The visual detection module (31), the data recording module (32), the data reading module (33), and the data matching module (34) are all electrically connected to the detection module (3).

4. A method for using the system for automatically generating the forming and pressing action trajectory of a radial tire embryo according to any one of claims 1-3, characterized in that, It includes the following steps: Step 1: (A) Software startup; Step 2: (B) Activate the login module for logging in users; Step 3: (C) Activate the visual detection module to activate the probe for information recording; Step 4: (D) Activate the data reading module to read material information; Step 5: (E) Activate the data matching module to match lamination parameters; Step 6: (F) Activate the equipment matching module to match the corresponding processing equipment; Step 7: (G) Activate the workpiece locking module to lock the workpiece position; Step 8: (H) Activate the drive module to start the equipment to process the workpiece; Step 8: (I) Complete lamination.

5. The method for using the system for automatically generating the forming and pressing action trajectory of a radial tire embryo according to claim 4, characterized in that: The (B) includes (B1) activate network connection, (B2) parent user login module, child user login module, (B3) manage child user information module to create and delete child users, (B4) activate the manual input module to input data.

6. The method for using the system for automatically generating the forming and pressing action trajectory of a radial tire embryo according to claim 4, characterized in that: The (C) includes (C1) activate network connection, (C2) inspect the workpiece, (C3) record the information of the workpiece, (C4) input it into the data information library.

7. The method for using the system for automatically generating the forming and pressing action trajectory of a radial tire embryo according to claim 4, characterized in that: The (F) includes (F1) activate network connection, (F2) activate the data receiving module, (F3) activate the lamination parameter module to read the parameters transmitted from the database, (F4) match the processing equipment according to the received parameters.

8. The method for using the system for automatically generating the forming and pressing action trajectory of a radial tire embryo according to claim 4, characterized in that: The said (G) includes (G1) turning on the network connection, (G2) receiving the material information and the information of the required processing equipment, (G3) locking the workpiece when the workpiece reaches the position of the processing equipment, and (G4) loading the matching information.

Citation Information

Patent Citations

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    CN102294834A

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    DE102014200622A1

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