Double-sided detection device for fixing ring

By designing a double-sided detection device with a fixed ring, automated double-sided detection is realized, which solves the problem of low detection efficiency in the prior art, improves detection efficiency and reduces manual operation.

CN223139240UActive Publication Date: 2025-07-22HUBEI BEITONG CONSTR ENG QUALITY INSPECTION CO LTD
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Patent Information

Application Number
CN202421872788.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-07-22
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

In the prior art, the hardness detection of the fixed ring can only be carried out on one side, and it needs to be manually turned and then tested again, resulting in low detection efficiency and increasing the labor of the quality inspection personnel.

Method used

A double-sided detection device for fixed ring is designed. Through the combination of push components, flip conveying components and visual detection devices, the automatic double-sided detection of fixed ring is realized, including pressure detection and visual detection, and automatic flip and transplanting of unqualified products.

Benefits of technology

It realizes automatic double-sided detection of fixed rings, improves detection efficiency, reduces manual operation, and is suitable for large-scale inspection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of building detection, in particular to a double-sided detection device for a fixing ring, which comprises an operation table, two conveying tables in butt joint are mounted on the operation table, a platform is formed at the tail end of the conveying table on the left side, and pushing assemblies are mounted on the same sides of the two conveying tables on the operation table. And the overturning conveying assembly is arranged between the two groups of pushing assemblies, and an upper frame is fixed on the overturning conveying assembly. According to the double-sided detection device for the fixing ring, the pushing assembly is matched with the conveying table, the fixing ring can be pushed to move on the conveying table, pressure detection on one side is completed through the pressure device, then the conveying assembly is turned over to drive a sample to be conveyed to the position below the visual detection device to detect whether the sample is damaged or not, and after the standard is met, detection is completed. The overturning conveying assembly drives the sample to be overturned and placed on the other conveying table, pressure detection and visual detection are conducted again, when the product is unqualified, the product can be moved out through the transplanting assembly, and therefore detection on the two faces of the product can be completed, and efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of building detection, in particular to a double-sided detection device for a fixing ring. Background Art

[0002] On a construction site, quality inspectors will take samples of the open-type fixing rings on the on-site pipelines back to the laboratory for appearance coating and damage detection. In the building's water supply and drainage system, heating system or ventilation system, the open-type fixing rings can be used to fix the pipelines, ensuring the pipelines are stable and reducing vibration. In order to avoid the quality of the open-type fixing rings not meeting the requirements, it is necessary to detect the hardness of the open-type fixing rings.

[0003] At present, quality inspectors will bring back a relatively large number of fixing rings on-site. With the cooperation of the quality inspectors, the fixing rings are transferred under the detection device, and the hardness of the fixing rings is detected by pressure and time. However, when detecting whether the hardness of the fixing rings is deformed or damaged, it can only be detected from one side, and it is necessary to manually flip the fixing rings and pass them through the detection again. When there are many samples, it will increase the labor intensity of the quality inspectors and reduce the detection efficiency at the same time. Content of the Utility Model

[0004] To achieve the above object, the utility model provides the following technical solution: A double-sided detection device for a fixing ring, including an operation table, two butt-jointed conveying tables are installed on the operation table, a platform is formed at the tail end of the left conveying table, push components are installed on the same side of the two conveying tables on the operation table, a flipping and conveying component is arranged in the middle of the two groups of push components, and an upper frame is fixed, and a pressure device, a visual detection device and a transplanting component are installed on the upper frame in series and repeated from left to right;

[0005] The flipping and conveying component includes a conveying part fixed on the operation table, a rotating cylinder is installed at the moving end of the conveying part, and a clamping cylinder II is installed at the rotating end of the rotating cylinder.

[0006] Further, the push component includes a front push cylinder and a sliding frame fixed on the operation table, a sliding plate that slides with the sliding frame is fixed at the ejecting end of the front push cylinder, an upper push cylinder is installed on the sliding plate, and columns are fixed on both sides of the upper push cylinder. An elevating plate that slides with the columns is fixed at the ejecting end of the upper push cylinder, and a plurality of dial plates are fixed on the elevating plate.

[0007] Further, the conveying part includes a support block fixed on the operation table, a lower push cylinder is fixed on the support block, a side plate is fixed on one side of the lower push cylinder, a side push cylinder and a guiding rod are installed on the side plate, the ejecting end of the side push cylinder is fixed to the rotating cylinder, and the rotating cylinder slides on the guiding rod.

[0008] Further, the transplanting assembly includes a linear module fixed on the upper frame. A push-down cylinder is installed at the moving end of the linear module, and a clamping cylinder I is fixed at the ejecting end of the push-down cylinder.

[0009] Further, a moving plate is fixed at the moving end of the linear module. The push-down cylinder is installed on the moving plate. Two guiding columns are inserted through the moving plate. A bottom plate is fixed between the bottoms of the two guiding columns. The clamping cylinder I is installed on the bottom plate.

[0010] Further, an upper plate is fixed between the tops of the two guiding columns. A buffer is installed on the upper plate opposite to the moving plate.

[0011] Compared with the prior art, the technical solution of the present application has the following beneficial effects:

[0012] In the double-sided detection device of the fixing ring, through the cooperation of the pushing assembly and the conveying table, the fixing ring can be pushed to move on the conveying table. After one-side pressure detection is completed by the pressure device, then the flipping conveying assembly drives the sample to be transferred under the vision detection device to detect whether there is damage. After meeting the standard, the flipping conveying assembly drives the sample to be placed face down on another conveying table, and then pressure detection and vision detection are carried out again. When the product is unqualified, it will be removed by the transplanting assembly, so that the two sides of the product can be detected to improve the efficiency. Description of the Drawings

[0013] Figure 1 is a schematic structural diagram of the present utility model;

[0014] Figure 2 is a three-dimensional view of the pushing assembly in the present utility model;

[0015] Figure 3 is a three-dimensional view of the flipping conveying assembly in the present utility model;

[0016] Figure 4 is a three-dimensional view of the transplanting assembly in the present utility model.

[0017] In the figure: 1, operating table; 2, conveying table; 3, upper frame; 4, pressure device; 5, vision detection device; 6, transplanting assembly; 601, linear module; 602, moving plate; 603, guiding column; 604, bottom plate; 605, clamping cylinder I; 606, push-down cylinder; 607, upper plate; 608, buffer; 7, pushing assembly; 701, front push cylinder; 702, sliding frame; 703, sliding plate; 704, upper top cylinder; 705, column; 706, lifting plate; 707, dialing plate; 8, flipping conveying assembly; 801, supporting block; 802, lower top cylinder; 803, side plate; 804, guiding rod; 805, side push cylinder; 806, rotating cylinder; 807, clamping cylinder II. Detailed Embodiments

[0018] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0019] Please refer to Figures 1-4 , a double-sided detection device for a fixing ring in this embodiment, includes an operation table 1. Two conveying platforms 2 distributed opposite to each other on the same axis are installed on the operation table 1. A platform is formed at the tail end of the left conveying platform 2. A pushing assembly 7 is fixed on the operation table 1 on the front sides of the two conveying platforms 2, and a flipping and conveying assembly 8 that moves between the two tail ends and the first sections of the two conveying platforms 2 is fixed on the operation table 1, and a mounting rack 3 is fixed. A pressure device 4, a vision detection device 5, and a transplanting assembly 6 that are located above the conveying platform 2 and are serially repeated from left to right are installed on the mounting rack 3.

[0020] In the above structure, through an external conveying device, the sample is transferred to the left conveying platform. Then, the pushing assembly pushes the sample below the first group of pressure devices for downward pressure detection. After the detection is completed, the pushing assembly pushes the sample onto the platform for placement. Then, the flipping and conveying assembly drives the product to move below the first group of vision detection devices to detect whether the sample is qualified. If it is unqualified, it is removed by the first group of transplanting assemblies. When the product is qualified, the flipping and conveying assembly drives the product to be flipped and placed on the second conveying platform, and the pressure detection, vision detection are repeated, and the unqualified products are removed through the transplanting assembly, so as to complete the double-sided detection of the product and improve the detection efficiency.

[0021] As Figure 2 , in order to realize the automatic pushing of the sample, the pushing assembly 7 includes two front pushing cylinders 701 and two sliding frames 702 fixed on the operation table 1. A sliding plate 703 that slides with the sliding frame 702 is fixed at the ejecting end of the front pushing cylinder 701. An upper pushing cylinder 704 is installed at the center of the sliding plate 703, and two columns 705 fixed on both sides of the upper pushing cylinder 704 are fixed. A lifting plate 706 that slides with the columns 705 is fixed at the ejecting end of the upper pushing cylinder 704. A plurality of baffle plates 707 arranged at equal distances above the conveying platform 2 are fixed on the lifting plate 706. The front pushing cylinder drives the sliding plate to move. The sliding plate can drive the baffle plates to push the sample for transfer. At the same time, the sliding frame can improve the stability of the sliding plate movement. Then, the upper pushing cylinder drives the lifting plate to lift, which can adjust the lifting of the baffle plates. At the same time, the columns can also improve the stability of the lifting and lowering of the lifting plate. When the baffle plates are lifted, it is convenient to drive the baffle plates to reset.

[0022] AsFigure 3 For the shown direction, in order to drive the sample to turn over, the turning and conveying assembly 8 includes a conveying part fixed to the operation table 1. A rotating cylinder 806 that can move between two conveying tables 2 is installed at the moving end of the conveying part. A second clamping cylinder 807 is installed at the rotating end of the rotating cylinder 806, and the clamping end of the second clamping cylinder 807 can be placed flat on the platform. The conveying part can drive the rotating cylinder to move back and forth between the platform of the left conveying table and the head end of the right conveying table. Then, the second clamping cylinder can drive the sample to move under the visual inspection device for inspection. When the inspection is qualified, the rotating cylinder drives the second clamping cylinder to rotate, so that the product can be turned over and placed on the second conveying table.

[0023] Among them, the conveying part includes a support block 801 fixed to the operation table 1. The support block 801 is close to the second conveying table 2. A lower pushing cylinder 802 is fixed to the support block 801. The ejecting end of the lower pushing cylinder 802 is fixed to the top of the support block 801. A side plate 803 is fixed to the front of the lower pushing cylinder 802. The side plate 803 is L-shaped. A side pushing cylinder 805 and two guiding rods 804 are installed on the convex edge of the side plate 803. The ejecting end of the side pushing cylinder 805 is fixed to the left side of the rotating cylinder 806, and the rotating cylinder 806 slides on the guiding rods 804. By operating the lower pushing cylinder, the second clamping cylinder can be driven to lift and lower through the side plate, so that the sample can be driven to perform lifting operations. At the same time, the side pushing cylinder can push the rotating cylinder to move. During the moving process, the stability can be improved through the guiding rods. Therefore, the sample can be driven to move between the tail ends and the head ends of the two conveying tables.

[0024] As Figure 4 For the shown direction, in order to facilitate the removal of unqualified products, the transplanting assembly 6 includes two linear modules 601 fixed to the upper frame 3. The left linear module 601 is located in the middle section of the second conveying table 2, and the right linear module 601 is located at the tail end of the second conveying table 2. A lower pushing cylinder 606 is installed at the moving end of the linear module 601. The ejecting end of the lower pushing cylinder 606 is fixed with a first clamping cylinder 605 above the conveying table 2. The lower pushing cylinder can drive the first clamping cylinder to descend and clamp and fix the unqualified product and lift it. At the same time, with the movement of the linear module, the unqualified product can be removed.

[0025] Among them, a moving plate 602 is fixed to the moving end of the linear module 601. The moving plate 602 is L-shaped. The lower pushing cylinder 606 is installed on the convex edge of the moving plate 602. Two guiding columns 603 are arranged on the moving plate 602 on both sides of the lower pushing cylinder 606. A bottom plate 604 is fixed between the bottoms of the two guiding columns 603, and the first clamping cylinder 605 is installed on the bottom plate 604. When the lower pushing cylinder drives the first clamping cylinder to move down, the stability during the downward movement can be improved through the guiding of the guiding columns.

[0026] In addition, an upper plate 607 is fixed between the tops of the two guide posts 603. The upper plate 607 is U-shaped, and a buffer 608 opposite to the moving plate 602 is installed on the upper plate 607. The upper plate can limit the downward movement of the clamping cylinder, and at the same time, the buffer can prevent the upper plate from colliding with the moving plate and play a buffering role.

[0027] The working principle of the above embodiment is as follows:

[0028] The product is conveyed to the left conveyor table by an external conveying device. Then, the forward push cylinder drives the push plate through the sliding plate to move the sample under the first group of pressure devices for pressure detection. Then, the upward push cylinder jacks up the push plate through the lifting plate, and the forward push cylinder retracts to its original position. After the pressure detection is completed, the operation of the pushing assembly is repeated to push the tested product onto the platform. Then, the lower push cylinder drives the clamping cylinder two to move downward to clamp the sample. The side push cylinder operates to drive the rotating cylinder to move under the first group of vision detection devices to detect the damage condition of the lower surface. When it is unqualified, the sample is directly placed on the second conveyor table and then pushed to the lower part of the first group of clamping cylinders one by the second group of pushing assemblies. The lower push cylinder drives the clamping cylinder one to move downward to clamp the sample, and then the sample can be transferred to a specified position for placement through the linear module. When the sample is qualified, the rotating cylinder rotates to drive the sample to rotate, so as to realize the turning operation and place it on the conveyor table again. Then, the product is sequentially moved under the second group of pressure devices for detection and under the vision detection device to judge whether it is qualified, and then it is decided whether the transplanting assembly moves the sample out.

[0029] In summary, it can realize the automatic detection of samples, and at the same time, it can also complete the detection of both sides, so as to effectively improve the detection efficiency and is suitable for large-scale detection.

[0030] The entire working process ends, and the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

[0031] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, the element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the said element.

[0032] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A double-sided detection device for a fixing ring, comprising an operating table (1), characterized in that: Two docking conveying platforms (2) are installed on the operation platform (1). The tail end of the left conveying platform (2) forms a platform. Pushing components (7), a flipping and conveying component (8) in the middle of the two groups of pushing components (7), and a mounting frame (3) are installed on the operation platform (1) on the same side of the two conveying platforms (2). A pressure device (4), a vision detection device (5), and a transplanting component (6) are installed on the mounting frame (3) in series and repeated from left to right. The flipping and conveying component (8) includes a conveying part fixed on the operation platform (1). A rotating cylinder (806) is installed at the moving end of the conveying part, and a clamping cylinder II (807) is installed at the rotating end of the rotating cylinder (806).

2. The double-sided detection device for a fixing ring according to claim 1, characterized in that: The pushing component (7) includes a front pushing cylinder (701) and a sliding frame (702) fixed on the operation platform (1). A sliding plate (703) that slides with the sliding frame (702) is fixed at the ejecting end of the front pushing cylinder (701). An upward pushing cylinder (704) is installed on the sliding plate (703), and columns (705) are fixed on both sides of the upward pushing cylinder (704). An elevating plate (706) that slides with the columns (705) is fixed at the ejecting end of the upward pushing cylinder (704), and a plurality of pushing plates (707) are fixed on the elevating plate (706).

3. The double-sided detection device for a fixed ring according to claim 1, wherein: The conveying part includes a supporting block (801) fixed on the operation platform (1). A downward pushing cylinder (802) is fixed on the supporting block (801). A side plate (803) is fixed on one side of the downward pushing cylinder (802). A side pushing cylinder (805) and a guiding rod (804) are installed on the side plate (803). The ejecting end of the side pushing cylinder (805) is fixed to the rotating cylinder (806), and the rotating cylinder (806) slides on the guiding rod (804).

4. The double-sided detection device for a fixing ring according to claim 1, wherein: The transplanting component (6) includes a linear module (601) fixed on the mounting frame (3). A downward pushing cylinder (606) is installed at the moving end of the linear module (601), and a clamping cylinder I (605) is fixed at the ejecting end of the downward pushing cylinder (606).

5. The double-sided detection device for a fixing ring according to claim 4, characterized in that: A moving plate (602) is fixed at the moving end of the linear module (601). The downward pushing cylinder (606) is installed on the moving plate (602). Two guiding columns (603) penetrate through the moving plate (602). A bottom plate (604) is fixed between the bottoms of the two guiding columns (603). The clamping cylinder I (605) is installed on the bottom plate (604).

6. The double-sided detection device for a fixing ring according to claim 5, characterized in that: An upper plate (607) is fixed between the tops of the two guiding columns (603). A buffer (608) opposite to the moving plate (602) is installed on the upper plate (607).