Anti-corrosion adhesive tape production detection device and use method thereof

By designing a multi-angle static and dynamic combined anti-corrosion tape peel strength testing device, and utilizing components such as servo motors and rectangular lead screws to achieve multi-angle adjustment, the problem of existing equipment being unable to flexibly adjust the peel angle is solved, thus improving the testing accuracy and adaptability.

CN121899007APending Publication Date: 2026-04-21SUZHOU QIANGGU PIPELINE ANTICORROSION MATERIAL CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SUZHOU QIANGGU PIPELINE ANTICORROSION MATERIAL CO LTD
Filing Date
2026-01-28
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing anti-corrosion tape peel strength testing equipment cannot flexibly adjust the peel angle, resulting in insufficient testing accuracy.

Method used

A production and testing device for anti-corrosion tape, comprising a locking assembly, a pulling assembly, and a guiding assembly, was designed. The device utilizes components such as a servo motor and a rectangular lead screw to achieve multi-angle static and dynamic peel strength testing. The peel angle is adjusted by the meshing of the servo motor three with the internal gear ring, and dynamic angle peeling is performed by the cooperation of the servo motor two with the rectangular lead screw two.

Benefits of technology

It improves the accuracy and adaptability of anti-corrosion tape peel strength testing, achieves multi-angle stability and convenient dynamic angle adjustment, and enhances the testing adaptability of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121899007A_ABST
    Figure CN121899007A_ABST
Patent Text Reader

Abstract

The invention relates to the field of anti-corrosion adhesive tape detection equipment, in particular to an anti-corrosion adhesive tape production detection device which comprises a locking assembly used for supporting and direction adjusting, aluminum profile columns fixedly arranged at the four corners of the upper portion of the locking assembly, square tubes fixedly arranged on the upper portions of the two sets of aluminum profile columns on the same side and arc-shaped guide seats fixedly arranged on the upper portions of the two sets of square tubes. According to the multi-angle static and dynamic combined type anti-corrosion adhesive tape peeling strength detection mechanism, a third servo motor can quickly and stably adjust the peeling angle of an adhesive tape clamp to an anti-corrosion adhesive tape through meshing of a transmission gear and an inner gear ring, and meanwhile, dynamic angle peeling operation can be carried out after the anti-corrosion adhesive tape is locked by the adhesive tape clamp; the adaptability and the stability of the equipment for stripping the anti-corrosion adhesive tape at different angles are effectively improved, so that the precision of the equipment for comprehensively detecting the stripping strength of the anti-corrosion adhesive tape is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the technical field of anti-corrosion tape testing equipment, specifically to an anti-corrosion tape production testing device and its usage method. Background Technology

[0002] Anti-corrosion tape is widely used in anti-corrosion engineering fields such as oil and gas pipelines, municipal water supply and drainage pipelines, and steel structural components. It can effectively improve the service life of various pipelines. The peel strength testing equipment for anti-corrosion tape is mainly used to accurately determine the peel adhesion performance between anti-corrosion tape and metal substrate, and between the various composite layers of anti-corrosion tape. It provides quantitative data support for the quality control of anti-corrosion tape products, the verification of the rationality of construction process, and the reliability assessment of engineering anti-corrosion system.

[0003] Although existing anti-corrosion tape peel strength testing equipment can perform peel testing on anti-corrosion tape, most of the existing anti-corrosion tape peel strength testing equipment is fixed, which is not convenient for adjusting the peel angle in different directions according to needs, nor is it convenient for dynamic peel angle testing. This reduces the accuracy of the equipment in testing the anti-corrosion tape produced. Therefore, there is a need for an anti-corrosion tape production testing device and its usage method to solve the problems mentioned above. Summary of the Invention

[0004] The purpose of this invention is to provide a production and testing device for anti-corrosion tape and its usage method, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a production and testing device for anti-corrosion tape, comprising a locking assembly for support and orientation adjustment, aluminum profile columns fixedly disposed at the four corners of the upper part of the locking assembly, square tubes fixedly disposed on the upper part of two sets of aluminum profile columns on the same side, and arc-shaped guide seats fixedly disposed on the upper part of the two sets of square tubes.

[0006] An internal toothed ring is fixedly engaged with the inner end face of an arc-shaped guide seat, and positioning grooves are provided on both sides of the arc-shaped guide seat.

[0007] A guide assembly is slidably engaged with an internal toothed ring and then attached to the outside of an arc-shaped guide seat. The guide assembly is used for circumferential adjustment inside the arc-shaped guide seat.

[0008] A tensioning assembly is fixedly installed on the lower end face of the guide assembly. The tensioning assembly is used to tension and inspect the anti-corrosion tape.

[0009] Specifically, the locking assembly includes a support base for support, a servo motor fixedly installed at the rear of the support base, and a rectangular lead screw fixedly installed at the output end of the servo motor. The support base is internally connected to a support guide seat via the rectangular lead screw, and a threaded guide seat is provided at the center of the lower end face of the support guide seat. Locking clamps are symmetrically arranged on the upper end face of the support guide seat. A thin cylinder is fixedly installed at the rear of each of the two sets of locking clamps, and a positioning rod is provided at the output end of the thin cylinder. Anti-corrosion tape rollers are fixedly engaged inside the two sets of locking clamps via the positioning rods.

[0010] Specifically, the traction assembly includes a fixed bracket, a fixed base fixedly disposed at the bottom of the fixed bracket, a second servo motor fixedly disposed at the upper part of the inner end face of the fixed bracket, and a second rectangular lead screw fixedly disposed at the power output end of the second servo motor. The inner end face of the fixed base is symmetrically provided with two sets of linear slide rails. The inner end face of the fixed base is threadedly connected to a detection component through the second rectangular lead screw, and two sets of linear sliders are symmetrically fixedly clamped to the outside of the detection component.

[0011] Specifically, the detection component includes a cylinder holder, two sets of tension sensors symmetrically fixed on the upper part of the cylinder holder, and a threaded guide seat two fixed on the upper part of the tension sensor via a locking shaft. A gripper cylinder is fixedly engaged on the inner end face of the cylinder holder, and a tape clamp is provided at both clamping ends of the gripper cylinder.

[0012] Specifically, the guide assembly includes a positioning slide, an arc-shaped slider symmetrically fixed on the upper part of the inner end face of the positioning slide, and a servo motor three fixed on the rear part of the positioning slide via a motor seat. The inner end face of the positioning slide is fixedly connected to a transmission gear via two sets of bearing seats, and the power output end of the servo motor three is fixedly connected to the transmission gear via a coupling.

[0013] Specifically, the servo motor drives the transmission gear to mesh with the bottom of the internal gear ring, and the positioning slide is adapted to the positioning groove through the arc-shaped slider and then slidably engaged with the outside of the arc-shaped guide seat, which can improve the stability and accuracy of the subsequent sliding of the positioning slide outside the arc-shaped guide seat.

[0014] Specifically, the servo motor is adapted to the threaded guide seat via a rectangular lead screw to drive the support guide seat to move back and forth on the upper part of the support base. The thin cylinder drives the anti-corrosion tape roller to be fixedly clamped inside the two sets of locking clamps via a positioning rod. This facilitates the subsequent dynamic displacement of the anti-corrosion tape roller by the support guide seat or adjustment of the position of the anti-corrosion tape roller, thereby cooperating with the peeling operation of the tape clamp.

[0015] Specifically, the cylinder holder is threadedly connected to the fixed base by the threaded guide seat two and the rectangular lead screw two, and the linear slider and the linear slide rail. The gripper cylinder clamps and locks the anti-corrosion tape through two sets of tape clamps, which can improve the stability of the subsequent tape clamps locking the anti-corrosion tape.

[0016] A method for using a production and testing device for anti-corrosion tape includes the following steps:

[0017] S1: Preparation: The anti-corrosion tape to be tested must be wound around the outside of the anti-corrosion tape roller and left to stand for 24 hours.

[0018] S2: Material clamping. The PLC in the touch screen module starts the solenoid valves corresponding to the two sets of thin cylinders. Then the thin cylinders can lock the anti-corrosion tape roller inside the locking fixture through the positioning rod to complete the locking.

[0019] S3: Adjust the peeling angle. The servo motor can drive the transmission gear to mesh with the internal gear ring through the coupling, thereby adjusting the position of the positioning slide outside the arc-shaped guide seat.

[0020] S4: Peeling Detection. Servo motor 2 drives screw 2 to gradually lift threaded guide seat 2. Simultaneously, the tape clamp peels the anti-corrosion tape from the anti-corrosion tape roller. At this time, four sets of tension sensors synchronously sense and detect the tension of the tape clamp until the tape clamp peels the anti-corrosion tape to a preset length, completing the detection operation.

[0021] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0022] 1. This invention is a multi-angle static and dynamic combined anti-corrosion tape peel strength testing mechanism. The servo motor can quickly and stably adjust the peel angle of the tape clamp on the anti-corrosion tape through the meshing of the transmission gear and the internal gear ring. At the same time, it can also perform dynamic angle peeling operation after the tape clamp locks the anti-corrosion tape, which effectively improves the adaptability and stability of the equipment to peel the anti-corrosion tape at different angles, thereby improving the accuracy of the equipment to perform all-round testing of the peel strength of the anti-corrosion tape.

[0023] 2. This invention is a dynamically adjustable feeding mechanism. Two sets of thin cylinders can quickly and easily lock the anti-corrosion tape roller through positioning rods, effectively improving the convenience of feeding and locking the anti-corrosion tape roller. At the same time, a servo motor can be threadedly connected to a threaded guide seat through a rectangular lead screw, thereby cooperating with the peeling and pulling of the tape clamp to quickly and accurately adjust the position of the anti-corrosion tape roller, effectively improving the adaptability of the equipment when inspecting anti-corrosion tape. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 This is a schematic diagram of the main body of the present invention;

[0026] Figure 2 This is a side view of the main body of the invention;

[0027] Figure 3 This is a schematic diagram of the locking assembly of the present invention;

[0028] Figure 4 This is a side view of the locking assembly of the present invention;

[0029] Figure 5 This is a schematic diagram of the traction assembly of the present invention;

[0030] Figure 6 This is a side view of the traction component of the present invention;

[0031] Figure 7 This is a schematic diagram of the detection component of the present invention;

[0032] Figure 8 This is a schematic diagram of the structure of the guide component of the present invention.

[0033] In the diagram: 1-Aluminum profile column, 2-Locking assembly, 3-Pull assembly, 4-Guide assembly, 5-Square tube, 6-Arc-shaped guide seat, 7-Positioning slide groove, 8-Internal toothed ring, 21-Servo motor one, 22-Rectangular lead screw one, 23-Support guide seat, 24-Positioning rod, 25-Locking clamp, 26-Support base, 27-Thin cylinder, 28-Anti-corrosion tape roller, 29-Threaded guide seat one, 31-Servo motor two, 32-Detection Components, 33-Rectangular lead screw II, 34-Linear slide rail, 35-Linear slider, 36-Fixed base, 37-Fixed bracket, 321-Threaded guide seat II, 322-Cylinder bracket, 323-Tape clamp, 324-Grip cylinder, 325-Tension sensor, 326-Locking shaft, 41-Servo motor III, 42-Motor base, 43-Arc slider, 44-Positioning slide, 45-Bearing seat, 46-Transmission gear. Detailed Implementation

[0034] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0035] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this application described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0036] The invention will be further described below with reference to the accompanying drawings.

[0037] Example 1

[0038] Please see Figure 1-2 One embodiment of the present invention provides a production and testing device for anti-corrosion tape, comprising a locking assembly 2 for support and orientation, aluminum profile columns 1 fixedly disposed at the four corners of the upper part of the locking assembly 2, square tubes 5 fixedly disposed on the upper part of two sets of aluminum profile columns 1 on the same side, and arc-shaped guide seats 6 fixedly disposed on the upper part of the two sets of square tubes 5.

[0039] The internal toothed ring 8 is fixedly engaged with the inner end face of the arc-shaped guide seat 6, and positioning grooves 7 are provided on both sides of the arc-shaped guide seat 6.

[0040] The guide component 4 is slidably engaged with the internal toothed ring 8 and attached to the outside of the arc-shaped guide seat 6. The guide component 4 is used for circumferential adjustment inside the arc-shaped guide seat 6.

[0041] The tensioning component 3 is fixedly installed on the lower end face of the guide component 4. The tensioning component 3 is used to tension and test the anti-corrosion tape.

[0042] like Figure 3 and Figure 4The locking assembly 2 includes a support base 26 for support, a servo motor 21 fixedly disposed at the rear of the support base 26, and a rectangular lead screw 22 fixedly disposed at the output end of the servo motor 21. The support base 26 is internally connected to a support guide 23 by the rectangular lead screw 22, and a threaded guide 29 is disposed at the center of the lower end face of the support guide 23. The model of the servo motor 21 is 60ST-M00630.

[0043] A locking clamp 25 is symmetrically arranged on the upper end face of the support guide seat 23. The upper part of the locking clamp 25 has a U-shaped slot, which is used to lock and position the shaft on the side of the anti-corrosion tape roller 28.

[0044] Both sets of locking clamps 25 are fixedly equipped with thin cylinders 27 at their rear. The model of the thin cylinders 27 is CCUJB4-15DM. The thin cylinders 27 can be connected to an external solenoid valve through a vent pipe and can be controlled by the PLC in the touch screen module.

[0045] A positioning rod 24 is provided at the output end of the thin cylinder 27, and two sets of locking clamps 25 are fixedly connected to the anti-corrosion tape roller 28 through the positioning rod 24. The anti-corrosion tape is wrapped around the outside of the anti-corrosion tape roller 28. At the same time, the anti-corrosion tape to be tested has been placed for 24 hours, which can improve the adhesion stability.

[0046] like Figure 5 and Figure 6 The traction assembly 3 includes a fixed bracket 37, a fixed base 36 fixedly disposed at the bottom of the fixed bracket 37, a second servo motor 31 fixedly disposed at the upper part of the inner end face of the fixed bracket 37, and a second rectangular lead screw 33 fixedly disposed at the power output end of the second servo motor 31. The model of the second servo motor 31 is 60ST-M00630. The second servo motor 31 is controlled by a PLC integrated in the external touch screen module.

[0047] The inner end face of the fixed base 36 is symmetrically provided with two sets of linear slide rails 34. The inner end face of the fixed base 36 is threadedly connected to the detection component 32 through a rectangular lead screw 33, and two sets of linear sliders 35 are symmetrically fixed and snapped on the outside of the detection component 32.

[0048] like Figure 7 The detection component 32 includes a cylinder holder 322, two sets of tension sensors 325 symmetrically fixed on the upper part of the cylinder holder 322, and a threaded guide seat 321 fixed on the upper part of the tension sensor 325 via a locking shaft 326. A gripper cylinder 324 is fixedly engaged on the inner end face of the cylinder holder 322. The gripper cylinder 324 is a parallel opening and closing pneumatic gripper, model CMHZ2-6D3. The solenoid valve connected to the gripper cylinder 324 is controlled by the PLC integrated in the external touch screen module.

[0049] Both clamping ends of the gripper cylinder 324 are equipped with tape clamps 323. The two sets of tape clamps 323 are equipped with locking teeth and locking tooth grooves, which can conveniently lock and limit the anti-corrosion tape.

[0050] like Figure 8 The guide assembly 4 includes a positioning slide 44, an arc-shaped slider 43 symmetrically fixed on the upper part of the inner end face of the positioning slide 44, and a servo motor 41 fixed on the rear of the positioning slide 44 via a motor base 42. The model of the servo motor 41 is ZNH02-020-N.

[0051] The inner end face of the positioning slide 44 is fixedly connected to the transmission gear 46 by two sets of bearing seats 45, and the power output end of the servo motor 41 is fixedly connected to the transmission gear 46 by a coupling.

[0052] like Figure 1 and Figure 8 Servo motor 41 drives transmission gear 46 to mesh with the bottom of internal gear ring 8, and positioning slide 44 is adapted to positioning slide groove 7 through arc slider 43 and thus slides and engages with the outside of arc guide seat 6. The sliding adaptation of arc slider 43 and positioning slide groove 7 can improve the stability of positioning slide 44 sliding outside arc guide seat 6. At the same time, the meshing of transmission gear 46 and internal gear ring 8 can improve the stability and accuracy of subsequent sliding of positioning slide 44 outside arc guide seat 6.

[0053] like Figure 4 Servo motor 21 is adapted to threaded guide seat 29 via rectangular lead screw 22, thereby driving support guide seat 23 to move back and forth on the support base 26. This facilitates the subsequent dynamic displacement of anti-corrosion tape roller 28 by support guide seat 23 or adjustment of the position of anti-corrosion tape roller 28, thereby cooperating with the peeling operation of tape clamp 323.

[0054] Furthermore, the thin cylinder 27 drives the anti-corrosion tape roller 28 to be fixedly engaged inside the two sets of locking clamps 25 through the positioning rod 24, which can effectively improve the convenience of subsequent installation and disassembly of the anti-corrosion tape roller 28.

[0055] like Figure 5 and Figure 7 The cylinder holder 322 is threadedly connected to the fixed base 36 via a threaded guide seat 321 that is compatible with a rectangular lead screw 33, and a linear slider 35 that is compatible with a linear slide rail 34. The threaded connection between the threaded guide seat 321 and the rectangular lead screw 33 effectively improves the accuracy and stability of the threaded guide seat 321 in uniformly pulling the anti-corrosion tape through the tape clamp 323, thereby improving the accuracy of the inspection.

[0056] The gripper cylinder 324 clamps and locks the anti-corrosion tape through two sets of tape clamps 323, which can improve the stability of the subsequent clamping of the anti-corrosion tape by the tape clamps 323.

[0057] A method for using a production and testing device for anti-corrosion tape includes the following steps:

[0058] S1: Preparation: The anti-corrosion tape to be tested needs to be wound around the outside of the anti-corrosion tape roller 28 and left to stand for 24 hours.

[0059] S2: Material clamping. The PLC in the touch screen module starts the solenoid valves corresponding to the two sets of thin cylinders 27. Then the thin cylinders 27 can lock the anti-corrosion tape roller 28 inside the locking fixture 25 through the positioning rod 24 to complete the locking.

[0060] S3: Adjust the peeling angle. Servo motor 41 can drive transmission gear 46 to mesh with internal gear ring 8 through coupling, thereby adjusting the position of positioning slide 44 outside arc guide seat 6.

[0061] S4: Peeling detection. Servo motor 2 31 can drive the threaded guide seat 2 321 to gradually lift through rectangular lead screw 2 33. At the same time, the tape clamp 323 can peel the anti-corrosion tape from the anti-corrosion tape roller 28. At this time, four sets of tension sensors 325 can synchronously sense and detect the pulling strength of the tape clamp 323 until the tape clamp 323 peels the anti-corrosion tape to a preset length, completing the detection operation.

[0062] Working principle: Before testing, the anti-corrosion tape to be tested must be wound around the outside of the anti-corrosion tape roller 28 and left to stand for 24 hours.

[0063] When inspecting the anti-corrosion tape, the operator can position the required anti-corrosion tape roller 28 inside the locking clamp 25. Then, the PLC in the touchscreen module activates the solenoid valves corresponding to the two sets of thin cylinders 27. The thin cylinders 27 then lock the anti-corrosion tape roller 28 inside the locking clamp 25 via the positioning rod 24. After locking, the operator can then pull the anti-corrosion tape through the tool pull section to be clamped, and then... Figure 5The servo motor 31 can be started via the PLC in the external touchscreen module. The servo motor 31 drives the threaded guide 321 downwards via the rectangular lead screw 33 until the threaded guide 321, in turn, positions the gripper cylinder 324 and the tape clamp 323 to the section of the anti-corrosion tape to be clamped. At this point, the external PLC module can control the solenoid valve of the gripper cylinder 324 to start, allowing the gripper cylinder 324 to clamp and lock the anti-corrosion tape via the tape clamp 323. Then, the servo motor 31 reverses direction, driving the threaded guide 321 to gradually rise via the rectangular lead screw 33. Simultaneously, the tape clamp 323 performs a peeling operation between the anti-corrosion tape and the anti-corrosion tape roller 28. At this time, the four sets of tension sensors 325... The tension of the tape clamp 323 is synchronously sensed and detected until the tape clamp 323 peels off the anti-corrosion tape to a preset length, completing the detection operation. At the same time, the tension sensor 325 can transmit the peeling strength. If peeling is required from different angles or dynamic peeling at different angles, the servo motor 341 can drive the transmission gear 46 to mesh with the internal gear ring 8 through the coupling, thereby adjusting the position of the positioning slide 44 outside the arc-shaped guide 6. After the tape clamp 323 locks the tape, the servo motor 341 can drive the positioning slide 44 to move circumferentially outside the arc-shaped guide 6 through the transmission gear 46, thus facilitating dynamic peeling from different angles and improving the accuracy of detection.

[0064] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A production and testing device for anti-corrosion tape, comprising a locking assembly (2) for support and orientation adjustment, aluminum profile columns (1) fixedly disposed at the four corners of the upper part of the locking assembly (2), square tubes (5) fixedly disposed on the upper part of two sets of aluminum profile columns (1) on the same side, and arc-shaped guide seats (6) fixedly disposed on the upper part of the two sets of square tubes (5), characterized in that: The internal toothed ring (8) is fixedly snapped onto the inner end face of the arc-shaped guide seat (6), and positioning grooves (7) are provided on both sides of the arc-shaped guide seat (6). The guide assembly (4) is slidably engaged with the internal toothed ring (8) and then engaged with the outside of the arc-shaped guide seat (6). The guide assembly (4) is used for circumferential adjustment inside the arc-shaped guide seat (6). The tensioning assembly (3) is fixedly installed on the lower end face of the guide assembly (4). The tensioning assembly (3) is used to tension and test the anti-corrosion tape.

2. The anti-corrosion tape production and testing device according to claim 1, characterized in that: The locking assembly (2) includes a support base (26) for support, a servo motor (21) fixedly installed at the rear of the support base (26), and a rectangular lead screw (22) fixedly installed at the output end of the servo motor (21). The support base (26) is threadedly connected to a support guide (23) through the rectangular lead screw (22), and a threaded guide (29) is provided at the center of the lower end face of the support guide (23). Locking clamps (25) are symmetrically provided at the upper end face of the support guide (23). A thin cylinder (27) is fixedly installed at the rear of both sets of locking clamps (25). A positioning rod (24) is provided at the output end of the thin cylinder (27), and an anti-corrosion tape roller (28) is fixedly clamped inside the two sets of locking clamps (25) through the positioning rod (24).

3. The anti-corrosion tape production and testing device according to claim 2, characterized in that: The traction assembly (3) includes a fixed bracket (37), a fixed base (36) fixedly disposed at the bottom of the fixed bracket (37), a servo motor (31) fixedly disposed at the upper part of the inner end face of the fixed bracket (37), and a rectangular lead screw (33) fixedly disposed at the power output end of the servo motor (31). The inner end face of the fixed base (36) is symmetrically provided with two sets of linear slide rails (34). The inner end face of the fixed base (36) is threadedly connected to the detection assembly (32) through the rectangular lead screw (33), and two sets of linear sliders (35) are symmetrically fixedly attached to the outside of the detection assembly (32).

4. The anti-corrosion tape production and testing device according to claim 3, characterized in that: The detection component (32) includes a cylinder holder (322), two sets of tension sensors (325) symmetrically fixed on the upper part of the cylinder holder (322), and a threaded guide seat (321) fixed on the upper part of the tension sensor (325) by a locking shaft (326). A gripper cylinder (324) is fixedly engaged on the inner end face of the cylinder holder (322), and a tape clamp (323) is provided at both clamping ends of the gripper cylinder (324).

5. The anti-corrosion tape production and testing device according to claim 4, characterized in that: The guide assembly (4) includes a positioning slide (44), an arc-shaped slider (43) symmetrically fixed on the upper part of the inner end face of the positioning slide (44), and a servo motor three (41) fixed on the rear part of the positioning slide (44) through a motor seat (42). The inner end face of the positioning slide (44) is fixedly connected to a transmission gear (46) through two sets of bearing seats (45), and the power output end of the servo motor three (41) is fixedly connected to the transmission gear (46) through a coupling.

6. The anti-corrosion tape production and testing device according to claim 5, characterized in that: The servo motor (41) drives the transmission gear (46) to mesh with the bottom of the internal gear ring (8), and the positioning slide (44) is adapted to the positioning slide groove (7) through the arc-shaped slider (43) and then slides and is engaged with the outside of the arc-shaped guide seat (6).

7. The anti-corrosion tape production and testing device according to claim 5, characterized in that: The servo motor (21) is adapted to the threaded guide seat (29) via the rectangular lead screw (22) to drive the support guide seat (23) to move back and forth on the upper part of the support base (26), and the thin cylinder (27) drives the anti-corrosion tape roller (28) to be fixedly clamped inside the two sets of locking clamps (25) via the positioning rod (24).

8. The anti-corrosion tape production and testing device according to claim 5, characterized in that: The cylinder holder (322) is adapted to the rectangular lead screw (33) through the threaded guide seat (321) and the linear slider (35) is adapted to the linear slide rail (34) and thus threadedly connected to the fixed base (36). The gripper cylinder (324) clamps and locks the anti-corrosion tape through two sets of tape clamps (323).

9. The method of using the anti-corrosion tape production and testing device according to claim 8, characterized in that: Includes the following steps: S1: Preparation: The anti-corrosion tape to be tested needs to be wrapped around the outside of the anti-corrosion tape roller (28) and left to stand still for 24 hours. S2: Loading and clamping. The PLC in the touch screen module starts the solenoid valves corresponding to the two sets of thin cylinders (27). Then the thin cylinders (27) can lock the anti-corrosion tape roller (28) inside the locking fixture (25) through the positioning rod (24) to complete the locking. S3: Adjust the peeling angle. Servo motor three (41) can drive the transmission gear (46) to mesh with the internal gear ring (8) through the coupling, thereby adjusting the position of the positioning slide (44) outside the arc guide seat (6); S4: Peeling detection. Servo motor 2 (31) can drive threaded guide seat 2 (321) to gradually lift through rectangular lead screw 2 (33). At the same time, tape clamp (323) can peel the anti-corrosion tape from the anti-corrosion tape roller (28). At this time, four sets of tension sensors (325) can synchronously sense and detect the pulling strength of tape clamp (323) until the tape clamp (323) peels the anti-corrosion tape to the preset length, and the detection operation is completed.