Concrete detection placing table with scrap collecting structure

By designing a debris collection structure on the concrete testing platform and using a motor and electromagnet scraper to remove debris, the problem of debris entering and affecting clamping was solved, thus achieving stable operation and efficient cleaning of the equipment.

CN223856933UActive Publication Date: 2026-01-30JIANGSU TESTING CENT FOR QUALITY OF CONSTR ENG
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Patent Information

Application Number
CN202520201796.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-30
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

During the crushing process, existing concrete testing benches sometimes allow debris to enter the chute or slot, affecting the rotation of the threaded rod and causing the clamping plate to be unable to adjust its position, thus impacting equipment operation.

Method used

Design a concrete testing platform with a debris collection structure. The test block is held by a clamping plate driven by a motor through a bidirectional threaded rod. The debris is removed by an electromagnet and a scraper. The unified collection and cleaning of debris is achieved by combining a support frame and a bearing roller.

Benefits of technology

It effectively prevents debris from entering and affecting equipment operation, improves clamping stability and cleaning efficiency, reduces the need for manual cleaning, and enhances the stability and convenience of the testing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of concrete detection placing tables, and particularly relates to a concrete detection placing table with a scrap collecting structure, which aims at solving the problem that the work is influenced by the scraps of the existing crushed materials, and adopts the following scheme: the concrete detection placing table comprises an operation table, and a closed shell is fixedly arranged at the top end of the operation table; under the driving of the motor and the two-way threaded rod, the sliding block drives the clamping plate to clamp a test block, the stability of the sliding process is improved through the supporting rod and the limiting frame, and the situation that the operation of the whole equipment is affected due to the fact that the sliding groove is located on the operation table, and chippings enter the operation table to affect the rotation of the two-way threaded rod is avoided; after the test block is unloaded, the two clamping plates continue to move and fit, the push plate with the same magnetic pole is pushed through cooperation of the electromagnet, the penetrating block abuts against the scraping plate on the operation table, the clamping plates are reset through work of the motor, and therefore chippings, residues and the like are scraped and enter the discharging groove, it is avoided that workers need to clean the chippings and the residues independently, and the work efficiency is improved. Or the chippings are too scattered and inconvenient to collect and clean.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a concrete detection placing table, in particular to a concrete detection placing table with scrap collecting structure belongs to concrete detection placing table technical field. BACKGROUND

[0002] The concrete detection placing table is mainly used for placing concrete test blocks, and cooperates with a pressure testing machine to exert pressure on the concrete test blocks to detect the compressive strength of the concrete. Generally, the table top is required to be flat, smooth, have high hardness and wear resistance, and be able to withstand large pressure.

[0003] In the prior art, such as the anti-splashing concrete quality detection table disclosed in the announcement No. CN221572173U, first, the concrete block is placed into the top end of the quality detection workbench. At this time, the quality detection workbench is started and under the action of the threaded connection, the threaded sleeve further drives the clamping plate to move inward synchronously to clamp and fix the two sides of the concrete block. After fixing, the electric push rod is started to drive the pressure sensor and the conical crushing head to descend and impact the concrete block. According to the data of the pressure sensor, it is known whether the compressive strength of the concrete is qualified.

[0004] However, in the implementation of the related technology, it is found that the above-mentioned anti-splashing concrete quality detection table has the following problems: in the prior art, the material is clamped by the clamping plate. However, in the actual use process, since the threaded sleeve moves along the quality detection workbench, there will be the form of sliding groove or clamping groove. In the process of crushing the material, the scraps may enter, which affects the rotation of the threaded rod and cannot adjust the position, resulting in that the clamping plate cannot be used. In view of this, a concrete detection placing table with scrap collecting structure is provided to overcome the above-mentioned defects. UTILITY MODEL CONTENTS

[0005] The utility model provides a concrete detection placing table with scrap collecting structure to solve the technical problem that since the threaded sleeve moves along the quality detection workbench, there will be the form of sliding groove or clamping groove, in the process of crushing the material, the scraps may enter, which affects the rotation of the threaded rod and cannot adjust the position, resulting in that the clamping plate cannot be used.

[0006] The utility model realizes the above-mentioned purpose through the following technical scheme: a concrete detection placing table with scrap collecting structure, comprising an operation table, a closed shell is fixedly installed at the top end of the operation table, a power end is embedded at the top end of the closed shell, an installation shell is embedded outside the closed shell, and a clamping mechanism is arranged in the installation shell.

[0007] The clamping mechanism comprises a motor, the motor is embedded on one side of the outer wall of the mounting shell, a power output end of the motor is fixedly provided with a bidirectional threaded rod, one end of the bidirectional threaded rod penetrates into the outer wall of the mounting shell and is slidably connected with a sliding block, one end of the sliding block penetrates into the closed shell and is fixedly provided with a clamping plate, and a sliding groove is formed in the closed shell corresponding to the position of the sliding block.

[0008] As a further scheme of the utility model: the inside of the clamping plate is embedded with an electromagnet, and the bottom end of the penetrating block penetrates out.

[0009] As a further scheme of the utility model: the penetrating block is fixedly provided with a push plate at one end in the inside of the clamping plate, and the bottom end of the penetrating block is embedded with a scraper, and the push plate is embedded with a damping spring on one side of the top end electromagnet.

[0010] As a further scheme of the utility model: the outer wall of the clamping plate is embedded with a pressure sensor on one side, and a discharging groove is formed on one side of the top end of the operation table.

[0011] As a further scheme of the utility model: the top end of the clamping plate is fixedly provided with a limiting frame, and the inside of the clamping plate penetrates out a supporting rod.

[0012] As a further scheme of the utility model: the front end of the operation table is provided with a supporting mechanism, the supporting mechanism comprises a supporting frame, the supporting frame is fixedly installed at the front end of the operation table, and a bearing roller is rotatably connected between the two supporting frames.

[0013] As a further scheme of the utility model: a receiving groove is formed in the operation table corresponding to the position of the discharging groove, a supporting table is fixedly installed on one side of the receiving groove, a receiving shell penetrates out of the inside of the receiving groove, and a fixed plate is fixedly installed at the front end of the receiving shell.

[0014] The utility model discloses the beneficial effect is: the sliding block drives the clamping plate to clamp the test block under the drive of the motor and the bidirectional threaded rod, improves the stability of sliding process through the supporting rod and the limiting frame, avoids the sliding groove on the operation table, causes the rotation of bidirectional threaded rod to be influenced by the debris, thereby causing the operation of whole equipment to be influenced, when the test block is unloaded, two clamping plates continue to move and adhere, through electromagnet cooperation, the penetrating block is in contact with the scraper on the operation table through the motor work and makes the clamping plate reset, thereby scraping the debris residue and the like into the discharging groove, avoids the staff needing to clean up separately, or the debris is too scattered and is inconvenient to collect and clean up.

[0015] Through the cooperation of the supporting frame and the bearing roller, the test block is conveniently pushed into the closed shell, the debris entering the discharge chute is collected in the storage shell, the supporting table on one side is used for stably supporting the operation table, the stability of the test block detection process is improved, the storage shell is driven to pass through the storage groove through the pulling of the fixed plate, and the collected debris is conveniently and quickly cleaned. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole structure schematic view of the utility model;

[0017] Figure 2 It is a closed shell internal structure schematic view of the utility model;

[0018] Figure 3 It is a sliding block structure schematic view of the utility model;

[0019] Figure 4 It is a clamping plate internal structure schematic view of the utility model;

[0020] Figure 5 It is a supporting table structure schematic view of the utility model.

[0021] In the drawing: 1, operation table; 2, closed shell; 3, power end; 4, installation shell; 5, clamping mechanism; 501, motor; 502, bidirectional screw rod; 503, sliding block; 504, sliding groove; 505, clamping plate; 506, electromagnet; 507, push plate; 508, passing-out block; 509, scraper; 510, damping spring; 511, pressure sensor; 512, discharge chute; 6, supporting rod; 7, limiting frame; 8, supporting mechanism; 801, supporting frame; 802, bearing roller; 803, fixed plate; 804, storage shell; 805, storage groove; 806, supporting table. DETAILED DESCRIPTION

[0022] The technical scheme in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model. EMBODIMENT

[0023] As Figures 1 to 5As shown, a concrete detection placement table with debris collection structure, including operation table 1, the top of operation table 1 is fixedly installed with closed shell 2, the top of closed shell 2 is embedded with power end 3, the outside of closed shell 2 is embedded with installation shell 4, the inside of installation shell 4 is provided with clamping mechanism 5; clamping mechanism 5 includes motor 501, motor 501 is embedded on one side of the outer wall of installation shell 4, the power output end of motor 501 is fixedly installed with bidirectional threaded rod 502, one end of bidirectional threaded rod 502 penetrating into installation shell 4 is slidingly connected with sliding block 503, one end of sliding block 503 penetrating into closed shell 2 is fixedly installed with clamping plate 505, the position corresponding to sliding block 503 in the inside of closed shell 2 is provided with sliding groove 504, the inside of clamping plate 505 is embedded with electromagnet 506, the bottom end of clamping plate 505 penetrates out with penetrating block 508, one end of penetrating block 508 fixedly installed in the inside of clamping plate 505 is electromagnet 506, the bottom end of penetrating block 508 is embedded with scraper 509, the top end of electromagnet 506 on one side of pushing plate 507 is embedded with damping spring 510, the outer wall of clamping plate 505 on one side is embedded with pressure sensor 511, the top of operation table 1 on one side is provided with discharge chute 512, the top of clamping plate 505 is fixedly installed with limiting frame 7, the inside of clamping plate 505 penetrates out with supporting rod 6; under the driving of motor 501 and bidirectional threaded rod 502, let sliding block 503 drive clamping plate 505 to clamp test block, improve the stability of sliding process through supporting rod 6 and limiting frame 7, and avoid letting sliding groove 504 be located on operation table 1, causing debris to enter and affect the rotation of bidirectional threaded rod 502, thereby causing the operation of the entire equipment to be affected, after the two clamping plates 505 continue to move and adhere after the test block is unloaded, cooperate through electromagnet 506, push the same magnetic pole pushing plate 507, let penetrating block 508 abut against scraper 509 on operation table 1, reset clamping plate 505 through the work of motor 501, thereby scraping off debris residues and the like into discharge chute 512, avoiding the need for workers to clean up separately, or the debris is too scattered and inconvenient to collect and clean up. Embodiment

[0024] The embodiment includes all the technical features in embodiment one, and further includes that the front end of the operation table 1 is provided with a supporting mechanism 8, the supporting mechanism 8 includes supporting frames 801 fixedly installed at the front end of the operation table 1, and a bearing roller 802 is rotatably connected between the two supporting frames 801, a receiving groove 805 is formed in the operation table 1 corresponding to the position of the discharge chute 512, a supporting table 806 is fixedly installed on one side of the receiving groove 805, a receiving shell 804 penetrates through the inside of the receiving groove 805, and a fixed plate 803 is fixedly installed at the front end of the receiving shell 804.

[0025] Working principle: the operation table 1, the closed shell 2 and the power end 3 constitute a conventional compression resistance detection mechanism, and a control system, a sensing system and other components are arranged, and the power end 3 cooperates with the crushing head to perform crushing operation, which is a conventional technology and will not be described in detail here. The hinge facilitates the opening and closing of the closed shell 2, the supporting mechanism 801 and the bearing roller 802 facilitate the pushing of the test block into the closed shell 2 and the operation table 1, the supporting table 806 improves the bearing capacity, the motor 501 embedded in the installation shell 4 drives the bidirectional threaded rod 502 to make the sliding block 503 slide along the sliding groove 504, and the two clamping plates 505 clamp the test block. The sliding groove 504 avoids being located on the operation table 1, which causes the debris to enter and affect the rotation of the bidirectional threaded rod 502. The clamping plate 505 is supported by the supporting rod 6 and slides along the closed shell 2 top end clamping, so that the clamping plate 505 keeps stable sliding. When the clamping is completed and the test block is taken down, the bidirectional threaded rod 502 continues to rotate to make the two clamping plates 505 adhere. When the pressure sensor 511 senses the pressure, the signal is transmitted to the control system of the equipment to start the electromagnet 506, so as to drive the push plate 507 made of the same magnetic pole permanent magnetic material, and the penetrating block 508 drives the scraper 509 to press the operation table 1. The motor 501 drives the bidirectional threaded rod 502 to reset the clamping plate 505, so as to scrape off the debris and push it to the discharge chute 512, avoiding manual cleaning of the operation table 1. The falling debris enters the receiving shell 804 in the receiving groove 805, which facilitates the later pulling of the fixed plate 803 to drive the receiving shell 804 to collect and clean uniformly. After cleaning, the electromagnet 506 is closed, and the scraper 509 is reset by the elastic contraction of the damping spring 510.

[0026] It is apparent for a person skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary and non-limiting, the scope of the present application being defined by the claims appended hereto rather than by the above description, and all the changes which fall within the meaning and the scope of the equivalent elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.

[0027] Furthermore, it should be understood that although the present specification describes exemplary embodiments, not every embodiment contains only one independent technical solution, and the present specification is described in this way only for the sake of clarity, and a person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that a person skilled in the art can understand.

Claims

1. A concrete testing placement table with a debris collection structure, comprising a worktable (1), characterized in that: The top of the operating table (1) is fixedly installed with a closed shell (2), and the top of the closed shell (2) is fitted with a power end (3). The outside of the closed shell (2) is fitted with a mounting shell (4), and the inside of the mounting shell (4) is provided with a clamping mechanism (5). The clamping mechanism (5) includes a motor (501), which is embedded in one side of the outer wall of the mounting shell (4). A bidirectional threaded rod (502) is fixedly installed at the power output end of the motor (501). A slider (503) is slidably connected to one end of the bidirectional threaded rod (502) that passes through the outer wall of the mounting shell (4). A clamping plate (505) is fixedly installed at one end of the slider (503) that passes through the closed shell (2). A groove (504) is provided inside the closed shell (2) at the position corresponding to the slider (503).

2. The concrete testing placement table having a debris collection structure of claim 1, wherein: An electromagnet (506) is embedded inside the clamping plate (505), and a protruding block (508) extends out from the bottom end of the clamping plate (505).

3. The concrete testing placement table having a debris collection structure of claim 2, wherein: The protruding block (508) is located inside the clamping plate (505) and a push plate (507) is fixedly installed at one end. A scraper (509) is embedded at the bottom end of the protruding block (508). A damping spring (510) is embedded on one side of the electromagnet (506) at the top of the push plate (507).

4. The concrete testing placement table having a debris collection structure of claim 2, wherein: A pressure sensor (511) is embedded on one side of the outer wall of the clamping plate (505), and a discharge chute (512) is provided on one side of the top of the operating table (1).

5. The concrete testing placement table having a debris collection structure of claim 2, wherein: A limit frame (7) is fixedly installed at the top of the clamping plate (505), and a support rod (6) extends through the inside of the clamping plate (505).

6. The concrete testing placement table having a debris collection structure of claim 1, wherein: The front end of the operating table (1) is provided with a support mechanism (8), which includes a support frame (801). The support frame (801) is fixedly installed at the front end of the operating table (1), and a bearing roller (802) is rotatably connected between the two support frames (801).

7. The concrete testing placement table having a debris collection structure of claim 4, wherein: The operating table (1) has a storage slot (805) at the position corresponding to the discharge slot (512), and a support platform (806) is fixedly installed on one side of the storage slot (805). A storage shell (804) extends out from the inside of the storage slot (805), and a fixing plate (803) is fixedly installed at the front end of the storage shell (804).

Citation Information

Patent Citations

  • Anti-splashing concrete quality detection table

    CN221572173U