Tire mold side plate production detection device

The tire mold side plate production inspection device, which integrates material picking, inspection and processing stations, solves the problem of cumbersome processing and inspection in the existing technology. It realizes roundness inspection and flipping operation before and after processing, improves the adaptability and accuracy of inspection, and reduces the operation hazard.

CN223512732UActive Publication Date: 2025-11-04南通众辰模具有限公司
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Patent Information

Application Number
CN202423105765.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-04
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

In the existing technology, the production process of tire mold side plates is complicated and requires manual assistance in clamping and flipping. The inspection equipment is also complex and cannot be carried out in a concentrated manner before and after processing, which leads to troublesome intermediate transfer.

Method used

Design a tire mold side plate production inspection device that integrates material picking, inspection and processing stations. It adopts an inspection structure and a flipping part to realize roundness inspection before and after processing. It is compatible with molds of different sizes and performs inner and outer wall inspection and flipping operations through inspection legs and a flipping table.

Benefits of technology

This centralized processing and testing, reduced manual handling, improved the adaptability and accuracy of testing, ensured processing quality, and reduced operational risks.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223512732U_ABST
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Abstract

The utility model relates to the technical field of tire molds, in particular to a tire mold side plate production detection device, aims to solve the technical problem of overcoming the defects of processing detection in the prior art, and is mainly realized through the following technical scheme: the tire mold side plate production detection device comprises a workbench and a processing device, a material taking station, a detection station and a processing station are sequentially arranged on the working table, the detection structure comprises a lifting column, an operation disc, a plurality of detection supporting legs, a plurality of connecting rods and a fixing disc, the processing overturning piece is arranged on the processing station, and the processing overturning piece comprises an overturning table, two overturning rollers and two overturning driving pieces. The machining procedure and the detection procedure are concentrated, detection is conducted before and after machining, the machining quality of the side edges of the tire molds is ensured, the machining and detection processes are matched with the tire molds of different sizes, the tire molds are transferred through an intermediate machine, and the complexity of manual transfer is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to tire mould technical field, concretely relates to a tire mould side plate production detection device. BACKGROUND

[0002] Tire is a cylindrical elastic rubber product installed on the wheel hub of vehicle, which is composed of inner tire, outer tire and tire tread. It is the only contact point between vehicle and ground, and bears important functions such as supporting vehicle, shock absorption, providing traction and handling performance. Tire mould is commonly used in the production process of manufacturing tire. In order to ensure the production quality of tire, the side plate of tire mould needs to be punched for heat dissipation and the roundness of tire mould needs to be detected.

[0003] In the prior art, the roundness detection of tire mould side plate is carried out after the whole production is completed. The production process is relatively complicated and needs manual assistance for clamping and turning. The subsequent roundness detection is complicated and needs to detect different position heights of tire mould. The device control is complex and needs to replace the detection device according to the size of different tire mould. Therefore, a production device capable of detecting before side plate production and retesting after processing is needed to concentrate processing and detection and reduce the trouble of intermediate transfer. UTILITY MODEL CONTENT

[0004] Therefore, the technical problem to be solved by the utility model is to overcome the defects of processing and detection in the prior art, so as to provide a tire mould side plate production detection device.

[0005] The above technical purpose of the utility model is realized by the following technical scheme:

[0006] A tire mould side plate production detection device, comprising a workbench and a processing device, the workbench is sequentially provided with a material taking station, a detection station and a processing station, the material taking station and the detection station are both provided with a feeding track penetrating through, the processing device is arranged above the processing station, further comprising a detection structure and a processing turnover piece, the detection structure is arranged above the detection station, the detection structure comprises a lifting column, an operation disc, a plurality of detection feet, a plurality of connecting rods and a fixed disc, the fixed disc is installed at the bottom of the lifting column, the operation disc is slidingly arranged on the lifting column and close to the top of the lifting column, the detection feet are arranged in an array along the circumference of the operation disc and connected to the outer side wall of the operation disc at the top end, the connecting rods are of telescopic structure and hinged at both ends to the outer side wall of the fixed disc and the detection feet close to the bottom; the processing turnover piece is arranged on the processing station, the processing turnover piece comprises a turnover table, two turnover rollers and two turnover driving pieces, the turnover rollers are rotationally installed at both ends of the turnover table, the axis of the turnover roller is arranged along the width direction of the workbench, and the turnover driving pieces control the movement of the turnover table and are arranged on the front and back sides of the turnover table.

[0007] By adopting the above technical scheme, the side plate is hoisted to the material taking station, placed on the feeding piece, clamped around, fed along the feeding track by the feeding piece, sent to the detection station for roundness detection before processing by the detection structure, and directly discharged for rework if the roundness detection is unqualified, sent to the turnover table after the roundness detection is qualified, fixed, and then subjected to side plate punching operation, the turnover table can be tilted left and right under the control of the turnover driving piece, facilitating punching operation, the punched side plate is pushed to the feeding piece again and subjected to roundness detection again to detect whether the roundness is affected during processing, and finally discharged according to the detection structure; the processing procedure and the detection procedure are centrally arranged and detected before and after processing to ensure the processing quality of the side of the tire mold, manual transfer is reduced, and the processing and detection procedure are suitable for different sizes of tire molds, and the adaptability is high.

[0008] Further, the feeding track is slidably provided with a feeding piece, the feeding piece comprises a feeding seat, a movable plate and a pushing driving piece, the feeding seat is slidably arranged on the feeding track, the movable plate and the pushing driving piece are both mounted on the feeding seat, and the movable plate is transversely slidably arranged on the feeding seat in a clamped manner with the feeding seat and controlled by the pushing driving piece.

[0009] By adopting the above technical scheme, the tire mold is fed from the material taking station and placed on the movable plate, the feeding seat drives the movable plate to slide on the feeding track and send it to the detection station, and after detection, the movable plate is slid to the end of the feeding track and pushed by the pushing driving piece to convey the whole movable plate to the turnover table for subsequent processing.

[0010] Further, a plurality of clamping pieces are further arranged on the movable plate, the clamping pieces are arranged at the four corners of the movable plate and oppositely slide along the diagonal lines of the movable plate, the clamping piece comprises a clamping frame, a clamping slide rod and a clamping turnover control motor, the clamping slide rod is arranged along the diagonal line of the movable plate and near the four corners of the movable plate, the clamping frame is arc-shaped and has a clamping block extending from the bottom and threadedly connected with the clamping slide rod, and the clamping driving motor controls the rotation of the clamping slide rod.

[0011] By adopting the above technical scheme, the clamping driving motor controls the rotation of the clamping slide rod to drive the clamping frame to move along the diagonal line to clamp the tire mold on the movable plate, the clamping at the four corners ensures that the tire mold is stably installed and the whole tire mold is in the center position, and then the whole movable plate and the tire mold are transferred to the turnover table.

[0012] Further, each detection leg comprises a fixed plate, an expansion plate and a detection plate, the fixed plate is arranged radially along the operation disc and connected and fixed with the outer wall of the operation disc, the top of the expansion plate is hingedly connected with the fixed plate, the bottom of the expansion plate extends vertically, and the inner side and the outer side of the detection plate are both provided with a pressure sensor.

[0013] By adopting the above technical scheme, the fixed plate at the top of the detection leg changes the angle of the expansion plate after sliding up and down on the operation disc, so as to change the diameter of the detection plate to match the tire mold of different sizes. The pressure sensors inside and outside the detection plate contact the inner and outer sides of the tire mold. Subsequently, the detection structure is rotated to detect the pressure change of the inner and outer sides of the tire mold, so as to feedback the roundness change of the inner and outer sides of the tire mold. The inner pressure sensor is used to contact the outer wall of the tire mold, and the outer pressure sensor is used to contact the inner wall of the tire mold.

[0014] Further, the detection structure further comprises a lifting driving member and a control driving member, the control driving member is installed on the lifting column and drives the operation disc to vertically slide, the lifting driving member is arranged at the top of the lifting column and drives the lifting column to lift relative to the workbench, and the workbench further extends a detection frame corresponding to the detection structure, the detection structure is installed on the detection frame and the lifting column is arranged at the top of the detection frame.

[0015] By adopting the above technical scheme, the control driving member drives the operation disc to vertically slide to change the diameter of the detection leg, so as to adapt to the inner and outer walls of the tire mold of different sizes; the lifting driving member drives the lifting column to lift to control the height of the detection leg, so as to realize comprehensive detection of the tire mold.

[0016] Further, the processing station further extends a processing rack corresponding to the processing turnover member, the turnover table is arranged to slide relative to the processing rack, the processing rack comprises a support frame body and two sliding frame bodies, the sliding frame bodies are arranged on the front and back sides of the support frame body and located on both sides of the width direction of the workbench, the sliding frame bodies are provided with clamping grooves accommodating the turnover rollers at both ends, and the support frame body is fixed at the bottom of the sliding frame body and connected with the two sliding frame bodies. The processing station further comprises a receiving rack receiving the turnover driving member.

[0017] By adopting the above technical scheme, the turnover driving member drives the turnover table to move on the processing rack, and the sliding frame body provides horizontal support and turnover limitation for the turnover table.

[0018] Further, each side of the turnover driving member comprises a turnover control motor, a driving conveyor belt, a sliding frame plate and a connecting plate, the turnover control motor controls the driving conveyor belt to move horizontally and reciprocally, the sliding frame plate is fixed on the driving conveyor belt and moves with the driving conveyor belt, the workbench further extends a limiting frame for the sliding frame plate to slide, the sliding frame plate is arranged to slide in the limiting frame, the connecting plate is arranged to slide on the sliding frame plate, the sliding frame plate extends a vertical sliding groove on the side close to the connecting plate, a turnover wheel is rotationally installed at the top end of the connecting plate, and the bottom end of the connecting plate is fixed with the middle part of the side edge of the turnover table.

[0019] By adopting the above technical scheme, the overturning control motor rotates to drive the driving conveying belt to move, so that the sliding frame plate moves and drives the connecting plate to slide in the sliding groove, thereby controlling the left-right overturning and tilting of the overturning table, achieving the tilting of the tire mold on the overturning table, and facilitating the machining operation.

[0020] Further, a plurality of through positioning holes are formed in the movable plate in the circumferential direction, and fixing holes corresponding to the positioning holes are arranged on the overturning table.

[0021] By adopting the above technical scheme, after the movable plate is pushed onto the overturning table by the pushing driving member, the movable plate is fixed by being screwed through the positioning holes and the fixing holes, and when overturning, the movable plate clamping the tire mold moves together with the overturning table, reducing the movement of the tire mold caused by overturning.

[0022] To sum up, the technical scheme of the utility model has the following advantages:

[0023] 1. The tire mold side plate production detection device provided by the utility model has the advantages that the machining process and the detection process are arranged together and detection is performed before and after machining to ensure the machining quality of the tire mold side, and the intermediate mechanical transfer of the workpiece reduces the complexity of manual transfer.

[0024] 2. The tire mold side plate production detection device provided by the utility model has the advantages that the detection process is adapted to different sizes of tire molds through the detection structure, has high adaptability, and can detect the roundness of the inner and outer sidewalls of the tire mold, has high detection accuracy, and is comprehensive in detection.

[0025] 3. The tire mold side plate production detection device provided by the utility model has the advantages that the movable plate is fixed after being transferred to the overturning table, and the movable plate and the overturning table are driven to overturn by the overturning driving member, so that clamping is maintained during the overturning and tilting process, movement during machining is avoided, machining quality is improved, and the danger of tilting operation during machining is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the specific embodiments of the utility model or the technical scheme in the prior art, the following will briefly introduce the drawings needed to be used in the specific embodiments or the prior art description. Obviously, the drawings described below are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating any creative labor.

[0027] Figure 1 The overall structure schematic diagram of a tire mold side plate production detection device provided in an embodiment of the utility model is shown in the figure.

[0028] Figure 2 Part structure diagram of the feeding piece provided in an embodiment of the utility model;

[0029] Figure 3 Structure schematic view of the detection structure provided in an embodiment of the utility model;

[0030] Figure 4 Structure schematic view of the processing turnover piece provided in an embodiment of the utility model.

[0031] Explanation of reference signs:

[0032] 1, workbench; 11, material taking station; 12, detection station; 121, detection frame; 13, processing station; 131, processing frame; 1311, support frame body; 1312, sliding frame body; 13121, clamping groove; 132, limiting frame; 133, bearing frame; 14, feeding track; 15, feeding piece; 151, feeding seat; 152, movable plate; 1521, positioning hole; 153, pushing driving piece; 16, clamping piece; 161, clamping frame; 162, clamping sliding rod; 163, clamping driving motor; 2, processing device; 3, detection structure; 31, lifting column; 32, operation disc; 33, detection supporting leg; 331, fixed plate; 332, expansion plate; 333, detection plate; 3331, pressure sensor; 34, connecting rod; 35, fixed disc; 36, lifting driving piece; 37, control driving piece; 4, processing turnover piece; 41, turnover table; 411, fixed hole; 412, pushing motor; 42, turnover roller; 43, turnover driving piece; 431, turnover control motor; 432, driving conveyor belt; 433, sliding frame plate; 4331, sliding groove; 434, connecting plate; 4341, turnover wheel. Specific implementation

[0033] The utility model is further specifically explained in connection with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.

[0034] A tire mold side plate production detection device, such as Figure 1 , Figure 2 and Figure 4As shown, it comprises a workbench 1 and a machining device 2, the workbench 1 is sequentially provided with a material taking station 11, a detection station 12 and a machining station 13 from left to right, the material taking station 11 and the detection station 12 are both provided with a feeding track 14 penetratingly, the machining device 2 is arranged above the machining station 13, further comprising a detection structure 3 and a machining turnover piece 4, the detection structure 3 is arranged above the detection station 12, and the machining turnover piece 4 is arranged on the machining station 13, the machining process and the detection process are concentratedly arranged and detected before and after the machining to ensure the machining quality of the side edge of the tire mold, and the intermediate mechanical transfer of the workpiece reduces the tediousness of manual transfer; the machining and detection process is suitable for different sizes of tire molds, and the adaptability is high.

[0035] As shown in Figure 1 , Figure 2 and Figure 4 , the feeding track 14 is slidably provided with a feeding piece 15, the feeding piece 15 comprises a feeding seat 151, a movable plate 152 and a pushing driving piece 153, the feeding seat 151 is slidably arranged on the feeding track 14, the movable plate 152 and the pushing driving piece 153 are both mounted on the feeding seat 151, and the movable plate 152 is transversely slidably arranged on the feeding seat 151 by the pushing driving piece 153. The side of the turnover table 41 away from the detection station 12 is also provided with a pushing motor 412. The tire mold is fed by the material taking station 11 and placed on the movable plate 152, the feeding seat 151 drives the movable plate 152 to slide on the feeding track 14 and is sent to the detection station 12, and after detection in the detection station 12, it slides to the end of the feeding track 14 and the movable plate 152 is integrally conveyed to the turnover table 41 by the pushing driving piece 153 for subsequent machining. After the machining is completed, the pushing motor 412 pushes the movable plate 152 to the feeding seat 151 and then conveys it to the detection station 12 for detection.

[0036] The movable plate 152 is also provided with a clamping piece 16, which is arranged at the four corners of the movable plate 152 and is oppositely slidably arranged along the diagonal line of the movable plate 152. Each clamping piece 16 comprises a clamping frame 161, a clamping slide rod 162 and a clamping driving motor 163, the clamping slide rod 162 is arranged along the diagonal line of the movable plate 152 and is arranged near the four corners of the movable plate 152, the clamping frame 161 is arc-shaped and extends a clamping block at the bottom to be threadedly connected with the clamping slide rod 162, and the clamping driving motor 163 controls the rotation of the clamping slide rod 162. The clamping driving motor 163 controls the rotation of the clamping slide rod 162 to drive the clamping frame 161 to move along the diagonal line to clamp the tire mold on the movable plate 152, and the clamping at the four corners ensures that the tire mold is stably installed and the whole tire mold is easily centered.

[0037] As shown in Figure 1 , Figure 2 and Figure 4As shown, the movable plate 152 is provided with a plurality of through positioning holes 1521 in the circumferential direction, and the turnover table 41 is provided with fixing holes 411 corresponding to the positioning holes 1521. After the movable plate 152 is pushed to the turnover table 41 by the pushing driving member 153, it is fixed by bolts passing through the positioning holes 1521 and the fixing holes 411. During turnover, the turnover table 41 drives the movable plate 152 clamping the tire mold to move together, reducing the movement of the tire mold caused by turnover.

[0038] As shown in Figure 1 and Figure 3 The detection structure 3 includes a lifting column 31, an operation disc 32, a plurality of detection legs 33, a plurality of connecting rods 34 and a fixed disc 35. The fixed disc 35 is installed at the bottom of the lifting column 31, the operation disc 32 is slidingly arranged on the lifting column 31 and is arranged close to the top of the lifting column 31, the detection legs 33 are arranged in an array along the circumference of the operation disc 32 and the top ends are connected to the outer wall of the operation disc 32, and the connecting rods 34 are telescopic structures and are hingedly connected to the outer wall of the fixed disc 35 and the bottom part of the detection legs 33 respectively.

[0039] Each detection leg 33 includes a fixed plate 331, an expansion plate 332 and a detection plate 333. The fixed plate 331 is arranged radially along the operation disc 32 and is connected and fixed to the outer wall of the operation disc 32, the top of the expansion plate 332 is hingedly connected to the fixed plate 331, and the bottom of the expansion plate 332 extends a vertical detection plate 333, and the inner side and the outer side of the detection plate 333 are provided with pressure sensors 3331. The fixed plate 331 at the top of the detection leg 33 drives the expansion plate 332 to change the angle when the operation disc 32 slides up and down, so as to change the diameter of the detection plate 333 to match tire molds of different sizes. The pressure sensors 3331 inside and outside the detection plate 333 are in contact with the inner and outer sides of the tire mold, and the subsequent rotation of the detection structure 3 detects the pressure change of the inner and outer sides of the tire mold to feedback the roundness change of the inner and outer sides of the tire mold. The inner side pressure sensor 3331 is used to contact the outer wall of the tire mold, and the outer side pressure sensor 3331 is used to contact the inner wall of the tire mold.

[0040] The detection structure 3 further includes a lifting driving member 36 and a control driving member 37. The control driving member 37 is installed on the lifting column 31 and drives the operation disc 32 to vertically slide relative to the lifting column 31, and the lifting driving member 36 is arranged at the top of the lifting column 31 and drives the lifting column 31 to lift relative to the workbench 1. The workbench 1 is further provided with a detection frame 121 corresponding to the extension of the detection structure 3, and the detection structure 3 is installed on the detection frame 121 and the lifting column 31 is slidingly arranged at the top of the detection frame 121. The control driving member 37 drives the operation disc 32 to vertically slide to change the diameter of the detection leg 33, so as to adapt to the inner and outer walls of tire molds of different sizes. The lifting driving member 36 drives the lifting column 31 to lift to control the height of the detection leg 33, so as to realize comprehensive detection of the tire mold.

[0041] As shown in Figure 1 and Figure 4 , the processing turnover part 4 includes a turnover table 41, two turnover rollers 42 and two turnover driving parts 43, the turnover rollers 42 are rotationally installed at both ends of the turnover table 41, the axis of the turnover roller 42 is arranged along the width direction of the workbench 1, and the turnover driving part 43 controls the movement of the turnover table 41 and is arranged on the front and back sides of the turnover table 41. The processing rack 131 corresponding to the processing turnover part 4 is also extended on the processing station 13, and the turnover table 41 is also slidingly arranged relative to the processing rack 131. The processing rack 131 includes a support frame body 1311 and two sliding frame bodies 1312. The sliding frame body 1312 is arranged on the front and back sides of the support frame body 1311 and located on both sides of the width direction of the workbench 1. The sliding frame body 1312 is provided with a clamping groove 13121 on the left and right ends to accommodate the turnover roller 42. The support frame body 1311 is fixed to the bottom of the sliding frame body 1312 and connects the two sliding frame bodies 1312. The receiving rack 133 for receiving the turnover driving part 43 is also arranged on the processing station 13.

[0042] Each side turnover driving part 43 includes a turnover control motor 431, a drive conveyor belt 432, a sliding frame plate 433 and a connecting plate 434. The turnover control motor 431 controls the transverse reciprocating movement of the drive conveyor belt 432. The sliding frame plate 433 is fixed on the drive conveyor belt 432 and moves with the drive conveyor belt 432. The workbench 1 also extends a limiting rack 132 for the sliding of the sliding frame plate 433. The sliding frame plate 433 is slidingly arranged in the limiting rack 132. The connecting plate 434 is slidingly arranged on the sliding frame plate 433. The sliding frame plate 433 extends a vertical sliding groove 4331 on the side close to the connecting plate 434. The connecting plate 434 is rotationally installed with a turnover wheel 4341 at the top end. The bottom end of the connecting plate 434 is fixed to the middle part of the side of the turnover table 41. The turnover control motor 431 rotates to drive the drive conveyor belt 432 to move, so that the sliding frame plate 433 moves and drives the connecting plate 434 to slide in the sliding groove 4331, thereby controlling the left and right turnover inclination of the turnover table 41, achieving the inclination of the tire mold on the turnover table 41, and facilitating the processing operation.

[0043] Taking the horizontal position as the initial position, the turnover control motor 431 rotates to drive the drive conveyor belt 432 to move to the left, so that the sliding frame plate 433 moves to the left and drives the connecting plate 434 to slide upward in the sliding groove 4331, so that the turnover table 41 first moves to the left to the clamping groove 13121 at the left end, and then the turnover table 41 is turned upward with the left turnover roller 42 as the rotation axis, so that the right side of the turnover table 41 is lifted up; conversely, the turnover control motor 431 rotates to drive the drive conveyor belt 432 to move to the right, and the turnover table 41 is turned upward with the right turnover roller 42 as the rotation axis, so that the left side of the turnover table 41 is lifted up, achieving a maximum of 90 degrees of left and right turnover inclination.

[0044] The working principle and use method of the tire mold side plate production detection device are as follows: the side plate is hoisted to the material taking station 11, placed on the feeding piece 15, clamped around, fed along the feeding track 14 by the feeding piece 15, sent to the detection station 12 by the detection structure 3 for roundness detection before machining, and directly discharged for rework if the roundness detection is unqualified, sent to the turnover table 41 after the roundness detection is qualified, fixed, and subjected to side plate punching operation, the turnover table 41 can be tilted left and right under the control of the turnover driving piece 43, the punched side plate is pushed to the feeding piece 15 again and subjected to roundness detection again, whether the roundness is affected in the detection and machining process, and finally discharged according to the detection result of the detection structure 3.

[0045] The above description shows and describes the preferred embodiments of the utility model, as described above, it should be understood that the utility model is not limited to the form disclosed herein, should not be considered as excluding other embodiments, but can be used in various other combinations, modifications and environments, and can be changed within the scope of the utility model conceived in the description, by the above teaching or related technical or knowledge. The changes and variations made by the person skilled in the art do not deviate from the spirit and scope of the utility model, and should be within the protection scope of the claims attached to the utility model.

Claims

1. A tire mold side plate production detection device, comprising a workbench (1) and a processing device (2), a material taking station (11), a detection station (12) and a processing station (13) are sequentially arranged on the workbench (1), a feeding track (14) is arranged through the material taking station (11) and the detection station (12), and the processing device (2) is arranged above the processing station (13), characterized in that, Also include detection structure (3) and processing turnover piece (4), the detection structure (3) is arranged above the detection station (12), the detection structure (3) includes lifting column (31), operating disc (32), multiple detection feet (33), multiple connecting rods (34) and fixed disc (35), the fixed disc (35) is installed at the bottom of lifting column (31), the operating disc (32) is slidably arranged on the lifting column (31) and is arranged close to the top of the lifting column (31), the detection feet (33) are arranged in the circumferential array of operating disc (32) and the top is connected with the outside wall of operating disc (32), the connecting rod (34) is a telescopic structure and is hinged at both ends with the outside wall of fixed disc (35) and the detection feet (33) close to the bottom, the processing turnover piece (4) is arranged on the processing station (13), the processing turnover piece (4) includes turnover table (41), two turnover rollers (42) and two turnover driving members (43), the turnover rollers (42) are pivotally installed at both ends of the turnover table (41), the axis of the turnover roller (42) is arranged along the width direction of the workbench (1), and the turnover driving member (43) controls the movement of the turnover table (41) and is arranged on the front and rear sides of the turnover table (41).

2. The apparatus for detecting production of a tire mold side plate according to claim 1, wherein The feeding track (14) is slidably provided with a feeding member (15), the feeding member (15) includes a feeding seat (151), a movable plate (152) and a pushing driving member (153), the feeding seat (151) is slidably arranged on the feeding track (14), the movable plate (152) and the pushing driving member (153) are both installed on the feeding seat (151), and the movable plate (152) is in clamped connection with the feeding seat (151) and is controlled by the pushing driving member (153) to be transversely slidably arranged on the feeding seat (151).

3. The apparatus for detecting production of a tire mold side plate according to claim 2, wherein A plurality of clamping members (16) are further arranged on the movable plate (152), the clamping members (16) are arranged at the four corners of the movable plate (152) and are oppositely slidably arranged along the diagonal lines of the movable plate (152), the clamping member (16) includes a clamping frame (161), a clamping sliding rod (162) and a clamping driving motor (163), the clamping sliding rod (162) is arranged along the diagonal line of the movable plate (152) and is arranged close to the four corners of the movable plate (152), the clamping frame (161) is arc-shaped and extends a clamping block at the bottom in threaded connection with the clamping sliding rod (162), and the clamping driving motor (163) controls the rotation of the clamping sliding rod (162).

4. The apparatus for detecting production of a tire mold side plate according to claim 1, wherein Each detection foot (33) includes a fixed plate (331), an expansion plate (332) and a detection plate (333), the fixed plate (331) is arranged along the radial direction of the operating disc (32) and is connected and fixed with the outer wall of the operating disc (32), the expansion plate (332) is hinged at the top with the fixed plate (331), and the expansion plate (332) extends a vertical detection plate (333) at the bottom, and the inner side and the outer side of the detection plate (333) are both provided with a pressure sensor (3331).

5. A device for detecting the production of a tire mold side plate according to claim 4, characterized in that, The detection structure (3) further comprises a lifting driving element (36) and a control driving element (37), the control driving element (37) is installed on the lifting column (31) and drives the operation disc (32) to vertically slide, the lifting driving element (36) is arranged at the top of the lifting column (31) and drives the lifting column (31) to lift relative to the workbench (1), the workbench (1) further extends a detection frame (121) corresponding to the detection structure (3), the detection structure (3) is installed on the detection frame (121) and the lifting column (31) is slidably arranged at the top of the detection frame (121).

6. The apparatus for detecting production of a tire mold side plate according to claim 1, wherein The processing station (13) further extends a processing frame (131) corresponding to the processing turnover element (4), the turnover table (41) is further slidably arranged relative to the processing frame (131), the processing frame (131) comprises a support frame body (1311) and two sliding frame bodies (1312), the sliding frame bodies (1312) are arranged on the front and back sides of the support frame body (1311) and located on both sides of the workbench (1) in the width direction, the sliding frame bodies (1312) are provided with clamping grooves (13121) accommodating the turnover rollers (42) at both ends, and the support frame body (1311) is fixed at the bottom of the sliding frame bodies (1312) and connected with the two sliding frame bodies (1312); the processing station (13) further comprises a receiving frame (133) receiving the turnover driving element (43).

7. A device for detecting the production of a tire mold side plate according to claim 6, characterized in that, Each of the turnover driving elements (43) comprises a turnover control motor (431), a driving transmission belt (432), a sliding frame plate (433) and a connecting plate (434), the turnover control motor (431) controls the driving transmission belt (432) to reciprocate transversely, the sliding frame plate (433) is fixed on the driving transmission belt (432) and moves with the driving transmission belt (432), the workbench (1) further extends a limiting frame (132) for the sliding of the sliding frame plate (433), the sliding frame plate (433) is slidably arranged in the limiting frame (132), the connecting plate (434) is slidably arranged on the sliding frame plate (433), the sliding frame plate (433) extends a vertical sliding groove (4331) close to one side of the connecting plate (434), the turnover wheel (4341) is rotatably installed at the top end of the connecting plate (434), and the bottom end of the connecting plate (434) is fixed to the middle of the side edge of the turnover table (41).

8. The apparatus for detecting production of a tire mold side plate according to claim 2, characterized by A plurality of through positioning holes (1521) are arranged circumferentially on the movable plate (152), and the turnover table (41) is provided with a fixed hole (411) corresponding to the positioning hole (1521); the turnover table (41) further comprises a pushing motor (412) away from the detection station (12).