Laser detection device for steel rope sling

By using a laser detection device for automatic tensioning and precise measurement, the problem of large errors and low efficiency in manual measurement of steel rope rigging has been solved, achieving high-precision and high-efficiency rigging inspection.

CN120907437AActive Publication Date: 2025-11-07JIEN OFFSHORE ENGINEERING EQUIPMENT (JIANGSU) CO LTD

Patent Information

Application Number
CN202511439456.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2025-11-07
Estimated Expiration
2045-10-10

AI Technical Summary

Technical Problem

In existing technologies, the measurement of the finished length of steel rope slings relies on manual operation, which has problems such as large human error, low efficiency, and difficulty in meeting high precision requirements, especially when conducting large-scale testing, which is time-consuming and labor-intensive.

Method used

By employing a laser detection device, a tensioning assembly driven by a dual-axis motor, and a laser rangefinder, combined with multiple sets of limit rods and buffer springs, automatic tensioning and precise measurement of steel rope rigging are achieved, reducing end deformation resistance and ensuring detection accuracy and efficiency.

Benefits of technology

It significantly improves the accuracy and efficiency of steel rope rigging inspection, is suitable for high-efficiency inspection of large batches of rigging, reduces human error, and ensures the stability and reliability of measurement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a steel rope sling laser detection device, and relates to the technical field of steel rope sling detection, the steel rope sling laser detection device comprises a workbench and a tensioning assembly, one side of the workbench is provided with a driving assembly, the tensioning assembly is arranged at the top of the workbench, the tensioning assembly comprises a fixing cover, one end of the top of the workbench is provided with the fixing cover, and the other end of the workbench is provided with the driving assembly. And a first limiting rod is slidably connected to the top of the fixing cover, a first pressing plate is fixed to the top of the first limiting rod, a buffer spring abuts against one side of the middle of the driving assembly, and a sliding rod abuts against one end of the buffer spring. The double-shaft motor drives the movable cover to move through the gear reverser and the screw, a plurality of groups of fixed covers and movable covers are designed, so that a plurality of steel wire ropes can be mounted at the same time, independent tensioning is realized in cooperation with the buffer spring, and sample pieces with different lengths are kept in a straightened state during detection; the alignment design of the laser range finder and the detection plate can quickly obtain a reference value and compare deviation.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of steel rope detection, in particular to a steel rope laser detection device. BACKGROUND

[0002] Steel rope is a kind of rope made of steel wire, mainly used for lifting, traction, tension and load. Steel wire rope has the characteristics of high strength, light weight, stable work and not easy to break suddenly, and is widely used in steel, chemical industry, transportation, port and other industries.

[0003] In the production process of steel rope, the final measurement of the length of the finished product is the key link to ensure that it meets the design specifications and safety standards. At present, many production units still generally use traditional measuring rulers for single manual measurement. This method not only depends on the experience and carefulness of the operator, and is easy to introduce human reading error, but also has low measurement efficiency. Especially when dealing with large quantities of rope, a large amount of manpower and time is needed for repeated straightening, alignment, reading and recording, which is very time-consuming and laborious, and the measurement accuracy and repeatability sometimes cannot meet the high standard requirements. SUMMARY

[0004] The purpose of the present application is to provide a steel rope laser detection device to solve the problems raised in the background.

[0005] To achieve the above purpose, the present application provides the following technical scheme: a steel rope laser detection device, comprising a workbench and a tensioning assembly, one side of the workbench is provided with a driving assembly, the tensioning assembly is arranged on the top of the workbench, and the tensioning assembly comprises a fixed cover, one end of the top of the workbench is provided with the fixed cover, the top of the fixed cover is slidably connected with a first limiting rod, and the top of the first limiting rod is fixed with a first pressing plate, one side of the middle of the driving assembly is abutted with a buffer spring, one end of the buffer spring is abutted with a sliding rod, one end of the sliding rod is fixed with a connecting rod, and the outer side of one end of the connecting rod is sleeved with a movable cover, the top of the movable cover is slidably connected with a second limiting rod, and the top of the second limiting rod is fixed with a second pressing plate, and one end of the top of the movable cover is provided with a detection plate.

[0006] Further, the movable cover is slidably connected with the workbench, and the movable cover is equidistantly distributed along the top surface of the workbench.

[0007] Further, the driving assembly comprises a double-shaft motor, the middle of one side of the workbench is provided with the double-shaft motor, the output end of the double-shaft motor is connected with a gear reverser, the output end of the gear reverser is fixed with a screw rod, and the outer side of the screw rod is threadedly connected with a driving seat.

[0008] Further, the driving seat is in sliding connection with the slide rod, and the slide rod is equidistantly distributed along the length direction of the driving seat.

[0009] Further, a linear motor is arranged at the top of the driving seat, and a slide seat is arranged above the linear motor, and a laser range finder is fixed at the top of the slide seat.

[0010] Further, an adjusting assembly is arranged above the workbench, and the adjusting assembly comprises a first limiting block, one end of the connecting rod is fixed with the first limiting block, a compression spring is abutted against the inside of the first limiting block, and the compression spring is abutted against the movable cover, a first pulley seat is arranged on one side of the first limiting block, and the first pulley seat is fixedly connected with a second limiting rod.

[0011] Further, a driving rod is in sliding connection with both sides of the workbench, a return spring is sleeved on the outer side of one end of the driving rod, a synchronous plate is abutted against one side of the return spring, and the synchronous plate is fixedly connected with the driving rod, a second limiting block is arranged on one side of the synchronous plate, a second pulley seat is arranged on one side of the second limiting block, and the second pulley seat is fixedly connected with a first limiting rod.

[0012] Further, a stabilizing assembly is arranged on both sides of the slide seat, and the stabilizing assembly comprises a limiting plate, the limiting plates are symmetrically arranged on both sides of the slide seat, and guide portions are arranged at both ends of the limiting plate.

[0013] Further, a driving plate is in sliding connection with the inside of the driving seat, a roller is rotatably connected to one end of the driving plate, and a rotating plate is rotatably connected to the other end of the driving plate, a pressing block is rotatably connected to the lower end of the rotating plate, and an anti-skid pad is arranged at the bottom of the pressing block.

[0014] Further, the pressing block is in sliding connection with the driving seat, and the pressing block is T-shaped.

[0015] The steel rope rig laser detection device has the following advantages: 1、The double-shaft motor of the present application drives the movable cover to move through the gear commutator and screw, and multiple fixed covers and movable covers are designed to simultaneously install multiple steel rope rigs, cooperate with the buffer springs to realize independent tensioning, ensure that different length samples are kept in a straight state during detection, and the alignment design of the laser range finder and the detection plate can quickly obtain a reference value and compare the deviation, and the three limiting rod structures effectively reduce the end deformation resistance, compared with the traditional single hook limiting method, the straightening effect and detection precision of the steel rope rig are significantly improved, and the present application is suitable for efficient detection of a large number of rope rigs.

[0016] 2、The compound design of the driving seat linkage driving rod and the compression spring realizes the automatic lifting function of the limiting rod, facilitates the rapid sleeve connection of the steel rope rig, and can complete the synchronous compression of both ends through the gravity pressing plate, maintains the consistency of the height of both ends during the detection process, avoids the inclination error, and automatically lifts and loosens the end of the steel rope rig during the subsequent replacement of the sample, which greatly improves the operation efficiency.

[0017] 3、The mechanical linkage of the limiting plate and the roller during the movement of the sliding seat automatically adjusts the friction resistance of the pressing block to the sliding rod, automatically locks the measurement position to prevent the vibration interference of the buffer spring, and releases the locking immediately after displacement, without manual intervention throughout, thereby guaranteeing the stability and reliability of the laser ranging data. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a whole three-dimensional structure schematic diagram of the steel rope rig laser detection device. Figure 2 It is a driving assembly three-dimensional structure schematic diagram of the steel rope rig laser detection device. Figure 3 It is a fixed cover three-dimensional structure schematic diagram of the steel rope rig laser detection device. Figure 4 It is a movable cover three-dimensional structure schematic diagram of the steel rope rig laser detection device. Figure 5 It is a first limiting block three-dimensional structure schematic diagram of the steel rope rig laser detection device. Figure 6 It is a limiting plate three-dimensional structure schematic diagram of the steel rope rig laser detection device. Figure 7 It is a part of the stabilizing assembly three-dimensional structure schematic diagram of the steel rope rig laser detection device.

[0019] In the figure: 1, workbench; 2, driving assembly; 201, double-shaft motor; 202, gear reverser; 203, screw rod; 204, driving seat; 205, linear motor; 206, sliding seat; 207, laser range finder; 3, tensioning assembly; 301, fixed cover; 302, first limiting rod; 303, first pressing plate; 304, buffer spring; 305, sliding rod; 306, connecting rod; 307, movable cover; 308, second limiting rod; 309, second pressing plate; 310, detection plate; 4, adjusting assembly; 401, first limiting block; 402, compression spring; 403, first pulley seat; 404, driving rod; 405, return spring; 406, synchronous plate; 407, second limiting block; 408, second pulley seat; 5, stabilizing assembly; 501, limiting plate; 502, guide part; 503, driving plate; 504, roller; 505, rotating plate; 506, pressing block; 507, antiskid pad. DETAILED DESCRIPTION

[0020] For your reference Figures 1 to 4 The application provides the technical scheme: a steel rope rig laser detection device, including workbench 1 and tensioning assembly 3, the side of workbench 1 is disposed with drive assembly 2, drive assembly 2 includes double-shaft motor 201, the middle part of the side of workbench 1 is disposed with double-shaft motor 201, and the output end of double-shaft motor 201 is connected with gear reversing device 202, the output end of gear reversing device 202 is fixed with screw rod 203, and the outer side of screw rod 203 is threadedly connected with drive seat 204, the top of drive seat 204 is disposed with linear motor 205, and the top of linear motor 205 is provided with sliding seat 206, and the top of sliding seat 206 is fixed with laser range finder 207, tensioning assembly 3 is arranged on the top of workbench 1, and tensioning assembly 3 includes fixed cover 301, one end of the top of workbench 1 is disposed with fixed cover 301, the top of fixed cover 301 is slidably connected with first limiting rod 302, and the top of first limiting rod 302 is fixed with first pressing plate 303, the middle part of one side of drive assembly 2 is abutted with buffer spring 304, one end of buffer spring 304 is abutted with sliding rod 305, drive seat 204 is slidably connected with sliding rod 305, and sliding rod 305 is equidistantly distributed along the length direction of drive seat 204, one end of sliding rod 305 is fixed with connecting rod 306, and the outer side of one end of connecting rod 306 is sleeved with movable cover 307, movable cover 307 is slidably connected with workbench 1, and movable cover 307 is equidistantly distributed along the top surface of workbench 1, the top of movable cover 307 is slidably connected with second limiting rod 308, and the top of second limiting rod 308 is fixed with second pressing plate 309, one end of the top of movable cover 307 is provided with detection plate 310; Specific operation as follows, double shaft motor 201 through gear reversing device 202 and screw 203 drive seat 204 to fixed cover 301 moves, drive seat 204 can indirectly push the synchronous movement of movable cover 307, at this time through the setting of multiple fixed cover 301 and movable cover 307, multiple steel rope rigging can be placed simultaneously, so as to put the two ends of standard sample and multiple sample to be measured in the outside of each group first limiting rod 302 and second limiting rod 308, then through the controller makes double shaft motor 201 reverse rotation, drive seat 204 will be pulled by buffer spring 304 slide rod 305, then drive all movable cover 307 to move, straighten the steel rope rigging on its top, avoid its relaxation and affect the detection accuracy, at the same time, through the setting of multiple buffer springs 304, individual buffering can be achieved, so when the length of sample appears deviation, it can also ensure that each sample is in tension, then linear motor 205 drives slide 206 to move to make laser range finder 207 align with detection plate 310, it can quickly measure the distance between them, and take the distance as the reference, so when laser range finder 207 moves to the next detection plate 310, it can detect the deviation value of sample and standard sample, quickly judge whether the sample is qualified, so that when detecting a large number of rigging, multiple rigging can be straightened and detected quickly, improve the detection efficiency of large quantities of rigging, and the two ends of steel rope rigging are limited by three first limiting rods 302 and second limiting rods 308, which is beneficial to reduce the end deformation resistance and make the end straighten more easily, keep the shape consistent and reduce the error, compared with single hook limiting, the end steel rope can avoid too much deformation resistance due to excessive deformation at the bending part, so that it is more convenient to straighten and detect.

[0021] Please refer to Figure 1 、 Figure 3 and Figure 5 , the upper part of workbench 1 is provided with adjusting assembly 4, and adjusting assembly 4 comprises first limiting block 401, one end of connecting rod 306 is fixed with first limiting block 401, the inside of first limiting block 401 abuts against compression spring 402, and compression spring 402 abuts against movable cover 307, one side of first limiting block 401 is provided with first pulley seat 403, and first pulley seat 403 is fixedly connected with second limiting rod 308, both sides of workbench 1 are slidably connected with drive rod 404, one end of drive rod 404 is externally sleeved with return spring 405, one side of return spring 405 abuts against synchronous plate 406, and synchronous plate 406 is fixedly connected with drive rod 404, one side of synchronous plate 406 is provided with second limiting block 407, one side of second limiting block 407 is provided with second pulley seat 408, and second pulley seat 408 is fixedly connected with first limiting rod 302; Specific operation as follows, in the process of indirectly pushing the movable cover 307 to the fixed cover 301, the driving seat 204 will also contact and push the driving rod 404, so that the synchronous plate 406 drives the second limiting block 407 to extrude the second pulley seat 408, so that the first limiting rod 302 moves up, so that the steel rope rig end is sleeved outside it, and the compression spring 402 will also push the movable cover 307 under the limiting of the first limiting block 401, so that the first pulley seat 403 extrudes the first limiting block 401, and the second limiting rod 308 will also move up, and in the process of moving back of the driving seat 204, because the elastic force of the buffer spring 304 is greater than that of the compression spring 402, the compression spring 402 will be compressed first, the first limiting block 401 will move away from the first pulley seat 403, and the second pressing plate 309 will be pressed tightly on one end of the steel rope rig under the action of gravity, and then when the first limiting block 401 is attached to the inner side of the movable cover 307, the movable cover 307 can be moved together, and at the same time the driving seat 204 will be separated from the driving rod 404, and the reset spring 405 will push the synchronous plate 406 under the limiting of the workbench 1, so that the second limiting block 407 is separated from the second pulley seat 408, and the first pressing plate 303 can be pressed tightly on the other end of the steel rope rig under the action of gravity, so that in the subsequent detection process, the height of both ends is consistent, avoiding the influence of the detection precision of the steel rope rig due to the inclination of the steel rope rig in tension, and in the detection and replacement, the above operation is repeated again, so that the first pressing plate 303 and the second pressing plate 309 can automatically move up and loosen the steel rope rig, improving the convenience in replacement.

[0022] Please refer to Figure 6 and Figure 7 , the both sides of the sliding seat 206 are provided with a stabilizing assembly 5, and the stabilizing assembly 5 comprises a limiting plate 501, the both sides of the sliding seat 206 are symmetrically provided with the limiting plate 501, and the both ends of the limiting plate 501 are provided with a guide part 502, the inside of the driving seat 204 is slidably connected with a driving plate 503, one end of the driving plate 503 is rotatably connected with a roller 504, the other end of the driving plate 503 is rotatably connected with a rotating plate 505, the lower end of the rotating plate 505 is rotatably connected with a pressing block 506, the bottom of the pressing block 506 is provided with an anti-skid pad 507, the pressing block 506 is slidably connected with the driving seat 204, and the pressing block 506 is T-shaped; Specific operation as follows, in the process of sliding seat 206 drive laser range finder 207 alignment detection board 310, sliding seat 206 will also drive limit plate 501 synchronous movement, at this time the use of limit plate 501 on the guide part 502 to the roller 504 guide limit, make it drive drive plate 503 to the inside of drive seat 204 movement, and then through the rotating plate 505 to the pressure block 506 force, increase the frictional resistance between the nonslip mat 507 and slide rod 305, and when the roller 504 moves to the middle of limit plate 501, then can drive seat 204 and slide rod 305 between locking, avoid the measurement process, because the buffer spring 304 vibration leads to slide rod 305 in drive seat 204 sliding, and then in the measurement, ensure the stability between laser range finder 207 and corresponding detection board 310 spacing, and when the sliding seat 206 drive limit plate 501 and drive plate 503 separate, pressure block 506 can not exert greater pressure, so that slide rod 305 can slide in drive seat 204, can automatically remove the limit of limit plate 501, without additional operation, very convenient.

[0023] In conclusion, the steel rope rig laser detection device, in use: First, through the controller to start the double shaft motor 201, make it through the gear commutator 202 and screw rod 203 drive drive seat 204 to the fixed cover 301 movement, drive seat 204 will contact and push drive rod 404, make synchronous plate 406 drive second limit block 407 extrusion second pulley seat 408, can make the first limit rod 302 up, make its around have larger operation space, at the same time compression spring 402 will be under the limit of first limit block 401 push movable cover 307, make first pulley seat 403 extrusion first limit block 401, similarly also make the second limit rod 308 up, at this time the standard sample and a plurality of sample ends of the two respectively in each group first limit rod 302 and second limit rod 308 outside, Then, the biaxial motor 201 is reversed by the controller, and in the process of moving back to the driving seat 204, the driving seat 204 is pulled by the buffer spring 304 to pull the slide rod 305. Because the elastic force of the buffer spring 304 is greater than that of the compression spring 402, the compression spring 402 is first compressed, the connecting rod 306 pulls the first limiting block 401 to move it away from below the first pulley seat 403, and the second pressing plate 309 is pressed tightly to one end of the steel rope under the action of gravity. Then, when the first limiting block 401 is attached to the inner side of the movable cover 307, it can drive the movable cover 307 to move together, and at the same time, the driving seat 204 is separated from the driving rod 404. The reset spring 405 pushes the synchronous plate 406 under the limit of the workbench 1, so that the second limiting block 407 is separated from the second pulley seat 408. Similarly, the first pressing plate 303 can be pressed tightly to the other end of the steel rope under the action of gravity, so as to ensure that the heights of both ends are consistent in the subsequent detection process, avoid affecting the detection accuracy of the steel rope due to the inclination of the steel rope in tension, and ensure that each sample is in a tension state when the length of the sample deviates. Then, the linear motor 205 drives the slide 206 to move, and in the process of aligning the detection plate 310 with the laser range finder 207, the slide 206 also drives the limiting plate 501 to move synchronously. At this time, the guide part 502 on the limiting plate 501 guides and limits the roller 504, so that it drives the driving plate 503 to move to the inside of the driving seat 204, and then the rotating plate 505 applies force to the pressing block 506 to increase the frictional resistance between the non-slip pad 507 and the slide rod 305. When the roller 504 moves to the middle of the limiting plate 501, it can lock between the driving seat 204 and the slide rod 305 to avoid the slide rod 305 from sliding in the driving seat 204 due to the vibration of the buffer spring 304 during measurement, thereby ensuring the stability of the distance between the laser range finder 207 and the corresponding detection plate 310 during measurement, and measuring the distance between them. When the slide 206 drives the limiting plate 501 and the driving plate 503 to separate, the pressing block 506 cannot apply a large pressure, so that the slide rod 305 can slide in the driving seat 204, and the limiting of the limiting plate 501 can be automatically released without additional operation, which is very convenient. Finally, when the laser range finder 207 moves to the next detection plate 310, it can detect the deviation value of the sample and the standard part to quickly judge whether the sample is qualified, so that when a large number of ropes are detected, multiple ropes can be quickly detected to improve the detection efficiency of a large number of ropes.

[0024] It should be noted that, in this document, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0025] The principles and implementations of the present application are described herein with specific examples. The above examples are only used to help understand the method of the present application and its core idea. The above description is only the preferred embodiments of the present application. It should be noted that due to the limitation of language expression, there are infinite specific structures. For ordinary skilled persons in the art, without departing from the principles of the present application, some improvements, refinements or changes can be made, or the above technical features can be combined in a proper way. These improvements, refinements, changes or combinations, or the application of the concept and technical solution of the present application to other fields without improvement, shall be regarded as the protection scope of the present application.

Claims

1. A laser detection device for steel wire rigging, characterized in that, The utility model provides a tensioning assembly, drive assembly and adjusting assembly are arranged on the workbench, the drive assembly is connected with the tensioning assembly, and the adjusting assembly is connected with the tensioning assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the adjusting assembly, and the adjusting assembly is connected with the workbench, the tensioning assembly is connected with the drive assembly, and the drive assembly is connected with the adjusting assembly, the tensioning assembly is connected with the workbench, and the drive assembly is connected with the adjusting assembly, the tension 2. The laser detection device for a steel rope rigging according to claim 1, wherein, ​ 3. The laser detection device for a steel rope rigging according to claim 1, wherein, ​ 4. The laser detection device for a steel rope rigging according to claim 3, characterized in that, ​ 5. The laser detection device for a steel rope rigging according to claim 3, wherein, ​ 6. The laser detection device for a steel rope rigging according to claim 1, wherein, ​ 7. A laser detection device for a steel rope rigging according to claim 6, characterized in that, Both sides of the workbench (1) are slidably connected with a driving rod (404), one end of the driving rod (404) is externally sleeved with a reset spring (405), one side of the reset spring (405) is abutted with a synchronous plate (406), the synchronous plate (406) is fixedly connected with the driving rod (404), one side of the synchronous plate (406) is provided with a second limiting block (407), one side of the second limiting block (407) is provided with a second pulley seat (408), and the second pulley seat (408) is fixedly connected with the first limiting rod (302).

8. A laser detection device for a steel rope rigging according to claim 5, characterized in that, Both sides of the sliding seat (206) are provided with a stabilizing assembly (5), the stabilizing assembly (5) comprises a limiting plate (501), both sides of the sliding seat (206) are symmetrically provided with the limiting plate (501), and both ends of the limiting plate (501) are provided with a guide portion (502).

9. A laser detection device for a steel rope rigging according to claim 8, characterized in that, The inside of the driving seat (204) is slidably connected with a driving plate (503), one end of the driving plate (503) is rotatably connected with a roller (504), and the other end of the driving plate (503) is rotatably connected with a rotating plate (505), the lower end of the rotating plate (505) is rotatably connected with a pressing block (506), and the bottom of the pressing block (506) is provided with an antiskid pad (507).

10. A laser detection device for a steel rope rigging according to claim 9, characterized in that, The pressing block (506) is slidably connected with the driving seat (204), and the pressing block (506) is T-shaped.

Citation Information

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