Concrete strength detection device for construction
By introducing clamping and reinforcement components into the concrete strength testing device, the problem of concrete block displacement during testing was solved, the accuracy of testing information and automated debris removal were achieved, and the effectiveness of the device was improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHAANXI YUANQUAN ENG MANAGEMENT CONSULTING CO LTD
- Filing Date
- 2025-05-19
- Publication Date
- 2026-05-01
AI Technical Summary
Existing concrete strength testing devices for construction are prone to concrete block displacement during testing, leading to inaccurate test information and reducing the effectiveness of the device.
The system employs clamping and reinforcing components, including clamping plates, support rods, push blocks, electric push rods, and hydraulic cylinders. The clamping components secure the concrete blocks to prevent displacement, while the hydraulic cylinders and pressure sensors detect movement. Combined with an electric telescopic column and a collection hopper, the system automatically cleans up debris.
It effectively fixes concrete blocks, improves the accuracy of test information, facilitates the use of strength testing devices, and enables automated debris cleaning.
Smart Images

Figure CN224189764U_ABST
Abstract
Description
A concrete strength testing device for construction Technical Field
[0001] This utility model relates to the field of building construction technology, and in particular to a concrete strength testing device for construction. Background Technology
[0002] Construction refers to the production activities during the implementation phase of a project. It is the process of building various types of buildings, or the process of turning the lines on the design drawings into physical objects at a designated location. Concrete is often used in construction, and the quality of concrete determines the quality and service life of the building. Before construction, the strength of the concrete blocks needs to be tested, and concrete testing requires the use of concrete quality testing equipment.
[0003] Chinese Patent No. CN222599372U discloses a concrete strength testing device for construction, including a support base. Two supports are fixed to the top of the support base, and a support plate is fixed to the top of each support. This invention, through the arrangement of a support base, supports, support plate, through hole, rotating shaft, placement plate, receiving hopper assembly, and reinforcing support assembly, allows for efficient testing. After the concrete block placed on the placement plate has been tested, the rotating shaft causes the placement plate to flip, and the crushed concrete block automatically falls into the receiving hopper assembly. This eliminates the need for manual cleaning of the testing platform. The receiving hopper assembly can then be moved to the support base for cleaning of the collected concrete block. The auxiliary support assembly further supports the placement plate, enhancing its stability during concrete block testing.
[0004] Existing concrete strength testing devices for construction use place the concrete block to be tested on a placement plate, and then cooperate with the testing device to test the concrete block. However, it is inconvenient to clamp the concrete block, which causes the concrete block to shift during the testing process, resulting in inaccurate test information and reducing the effectiveness of the strength testing device. Summary of the Invention
[0005] To address the problems existing in the background technology, a concrete strength testing device for construction is proposed.
[0006] This utility model proposes a concrete strength testing device for construction, comprising: a support base, a shell, a clamping assembly, a support frame, a hydraulic cylinder, and a reinforcement assembly;
[0007] The outer casing is connected to the support base;
[0008] The outer casing has an internal connecting plate and openings on both sides;
[0009] The clamping assembly is provided in two sets, and the two sets of clamping assemblies are connected to the support base; the two sets of clamping assemblies respectively include a clamping plate, a support rod, a push block, an electric push rod a and a base;
[0010] The clamp plate is connected to the support rod, the support rod is connected to the push block, the push block is connected to the drive end of the electric push rod a, the electric push rod a is connected to the base, and the base is connected to the support seat.
[0011] There are two support frames, which are connected to the support base.
[0012] The hydraulic cylinder is connected to the support frame;
[0013] And reinforcement components are connected to the bottom of the support base.
[0014] Preferably, a motor is connected to the outer wall of the housing, and a rotating shaft is connected to the motor drive end. The rotating shaft passes through the housing and is connected to the placement plate.
[0015] Preferably, the outer shell is hollow inside, with openings at both ends connecting to the outside, and the lower opening and the circular through hole are opposite each other, with the circular through hole located on the support base.
[0016] Preferably, the hydraulic cylinder drive end passes through the support frame and is connected to the mounting plate. The mounting plate is connected to the pressure plate, the pressure plate is connected to the pressure sensor, the pressure sensor is electrically connected to the display, and the display is connected to the support base.
[0017] Preferably, the reinforcement components include a side plate, a mounting base, an electric push rod b, a connecting base, an electric telescopic column, a top plate, a telescopic rod, and a bottom plate;
[0018] There are two side plates, which are connected to the support base below. The two side plates are connected to the mounting base, which is connected to the electric push rod b. The drive end of the electric push rod b is connected to the connecting seat, which is connected to the electric telescopic column. The drive end of the electric telescopic column is connected to the top plate, which is connected to the bottom of the placement plate.
[0019] One end of the telescopic rod is connected to the connecting seat, and the base plate is connected to the bottom of the side plate.
[0020] Preferably, one end of the telescopic rod is connected to the mounting base, the side plate is connected to the collection hopper, and the collection hopper is connected below the circular opening.
[0021] Compared with the prior art, the present invention has the following beneficial technical effects:
[0022] This utility model features openings on both sides of the outer casing, each corresponding to a clamping assembly. The clamping assembly includes a clamping plate, a support rod, a push block, an electric push rod a, and a base. The support rod is connected to the push block, the push block to the clamping plate, and the push block to the drive end of the electric push rod a. Activating the electric push rod a moves the push block, which in turn moves the support rod, which in turn moves the clamping plate. The clamping plate passes through the opening and connects to the inner wall of the outer casing, thus clamping the concrete block placed on the outer casing's mounting plate. This facilitates the clamping and fixing of the concrete block, preventing displacement during testing, and improving the accuracy of concrete block strength testing information, thereby enhancing the effectiveness of the strength testing device. Attached Figure Description
[0023] Figure 1 is a schematic diagram of the overall structure of this utility model;
[0024] Figure 2 is a schematic diagram of the pressure sensor structure in this utility model;
[0025] Figure 3 is a schematic diagram of the clamping component structure in this utility model;
[0026] Figure 4 is a schematic diagram of the reinforcement structure in this utility model.
[0027] Reference numerals: 1. Support base; 2. Housing; 201. Placement plate; 202. Rotary shaft; 3. Clamping assembly; 301. Clamping plate; 302. Support rod; 303. Push block; 304. Electric push rod a; 305. Base; 4. Support frame; 5. Hydraulic cylinder; 501. Mounting plate; 502. Pressure plate; 503. Pressure sensor; 6. Side plate; 601. Mounting base; 602. Electric push rod b; 603. Connecting seat; 604. Electric telescopic column; 605. Top plate; 606. Telescopic rod; 607. Base plate; 7. Display. Detailed Implementation
[0028] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.
[0029] Example 1
[0030] As shown in Figures 1-4, the present invention proposes a concrete strength testing device for construction, comprising: a support base 1, a shell 2, clamping components 3, a support frame 4, a hydraulic cylinder 5, and a reinforcement component; the shell 2 is connected to the support base 1; the shell 2 has a placement plate 201 connected inside and openings on both sides; two sets of clamping components 3 are provided, and the two sets of clamping components 3 are connected to the support base 1; the two sets of clamping components 3 respectively include a clamping plate 301, a support rod 302, a push block 303, an electric push rod a 304, and a base 305; the clamping plate 301 is connected to the support rod 302, the support rod 302 is connected to the push block 303, the push block 303 is connected to the drive end of the electric push rod a 304, the electric push rod a 304 is connected to the base 305, and the base 305 is connected to the support base 1; two support frames 4 are provided, and the two support frames 4 are connected to the support base 1; the hydraulic cylinder 5 is connected to the support frame 4; the reinforcement component is connected below the support base 1. The concrete block is clamped and fixed by the clamping component 3, which prevents the concrete block from shifting during the testing process, thus improving the accuracy of the concrete block strength testing information and enhancing the effectiveness of the strength testing device.
[0031] Further explanation: The reinforcement components include side plates 6, mounting bases 601, electric push rods b602, connecting bases 603, electric telescopic columns 604, top plates 605, telescopic rods 606, and bottom plates 607. Two side plates 6 are provided, connected below the support base 1. Each side plate 6 is connected to the mounting base 601. The mounting base 601 is connected to the electric push rods b602. The driving end of the electric push rods b602 is connected to the connecting base 603. The connecting base 603 is connected to the electric telescopic column 604. The driving end of the electric telescopic column 604 is connected to the top plate 605, which is located below the placement plate 201. One end of the telescopic rod 606 is connected to the connecting base 603, and the bottom plate 607 is connected below the side plates 6. One end of the telescopic rod 606 is connected to the mounting base 601, and the side plates 6 are connected to a collection hopper, which is located below the circular opening. The top plate 605 can be adjusted in position by electric push rod b602 and electric telescopic column 604, so that it can be adjusted to be connected below the placement plate 201 or to both sides of the support base 1 according to the needs of the construction concrete strength testing device. This avoids affecting the movement of the collection bucket to the support base 1 and the circular through hole, and facilitates the use of the reinforcement component and the construction concrete strength testing device in conjunction with other components.
[0032] Example 2
[0033] As shown in Figures 1 and 2, this utility model proposes a concrete strength testing device for construction. Based on the above embodiments, this embodiment also details the specific components of the outer shell 2 and the hydraulic cylinder 5, as well as their cooperation method.
[0034] To further explain, a motor is connected to the outer wall of the outer casing 2, and the motor drive end is connected to a rotating shaft 202. The rotating shaft 202 passes through the outer casing 2 and connects to the placement plate 201. The interior of the outer casing 2 is hollow, with openings at both ends connecting to the outside. The lower opening and the circular through hole are opposite each other, and the circular through hole is located on the support base 1. The inner diameter of the outer casing 2 is larger than that of the pressure plate 502, allowing the pressure plate 502 to move into the outer casing 2 to compress and test the concrete block. This facilitates the use of the concrete strength testing device in conjunction with the structure.
[0035] To further explain, the drive end of the hydraulic cylinder 5 passes through the support frame 4 and connects to the mounting plate 501. The mounting plate 501 connects to the pressure plate 502, and the pressure plate 502 connects to the pressure sensor 503. The pressure sensor 503 is electrically connected to the display 7, which is connected to the support base 1. Movable rods are connected to both ends of the mounting plate 501. These movable rods pass through the support frame 4 and connect to the fixed rods, making the movable and fixed rods telescopic structures. This facilitates the downward or upward movement of the mounting plate 501, increasing the stability of the pressure plate 502 and the pressure sensor 503, and improving the performance of concrete block detection.
[0036] The working principle of this utility model is as follows: When using the concrete strength testing device for construction, the worker places the concrete block to be tested on the placement plate 201, activates the electric push rod a304, and the driving end of the electric push rod a304 moves the push block 303 toward the concrete block. The push block 303 drives the support rod 302, and the support rod 302 drives the clamping plate 301. The clamping plate 301 moves to the outer wall of the concrete block and clamps and fixes the concrete block on the placement plate 201. Activate the hydraulic cylinder 5, and the driving end of the hydraulic cylinder 5 moves the mounting plate 501 downward. The mounting plate 501 drives the pressure plate 502, and the pressure plate 502 moves downward into the outer shell 2 and squeezes the concrete block. At the same time, the pressure sensor 503 moves synchronously and connects with the concrete block, enabling the concrete block to be tested. The test information is transmitted to the display 7, which allows the worker to observe the test data. Furthermore, during the strength test, the crushed concrete block is first moved upward by the hydraulic cylinder 5, causing the pressure plate 502 and the pressure sensor 503 to move upward. The device is reset, and then the electric telescopic column 604 is activated. The electric telescopic column 604 moves the top plate 605 downward, below the support base 1. Then the electric push rod b602 is activated. The drive end of the electric push rod b602 moves the connecting seat 603. The connecting seat 603 drives the electric telescopic column 604 and the top plate 605 to move to both sides. Then the collection bucket moves to below the circular through hole. The motor is activated, and the motor makes the rotating shaft 202 rotate. The rotating shaft 202 drives the placement plate 201 to rotate, so that concrete debris falls into the collection bucket. After the concrete debris is collected and processed, the collection bucket is pushed out from below the support base 1. Then the motor is operated to reset the placement plate 201 in the outer shell 2. The reinforcement component structure is operated so that the top plate 605 is adjusted below the placement plate 201. Then the concrete block to be tested is placed on the placement plate 201, which is used for the strength testing of new concrete blocks. This device is convenient for construction and construction.
[0037] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.
Claims
1. A concrete strength testing device for construction, characterized in that, include: Support base (1); outer shell (2), connected to the support base (1); the outer shell (2) has a placement plate (201) inside and openings on both sides; clamping assembly (3), two sets are provided, and the two sets of clamping assemblies (3) are connected to the support base (1); the two sets of clamping assemblies (3) respectively include a clamping plate (301), a support rod (302), a push block (303), an electric push rod a (304) and a base (305); the clamping plate (301) is connected to the support rod ( 302), the support rod (302) is connected to the push block (303), the push block (303) is connected to the drive end of the electric push rod a (304), the electric push rod a (304) is connected to the base (305), the base (305) is connected to the support seat (1); support frame (4), there are two, the two support frames (4) are connected to the support seat (1); hydraulic cylinder (5), connected to the support frame (4); and reinforcement components, connected to the bottom of the support seat (1).
2. The concrete strength testing device for construction according to claim 1, characterized in that, The outer wall of the outer casing (2) is connected to a motor, and the motor drive end is connected to a rotating shaft (202). The rotating shaft (202) passes through the outer casing (2) and is connected to the placement plate (201).
3. The concrete strength testing device for construction according to claim 2, characterized in that, The outer shell (2) is hollow inside, with openings at both ends connecting to the outside, and the lower opening and the circular through hole are opposite each other. The circular through hole is set on the support base (1).
4. The concrete strength testing device for construction according to claim 3, characterized in that, The hydraulic cylinder (5) drives through the support frame (4) and connects to the mounting plate (501). The mounting plate (501) connects to the pressure plate (502). The pressure plate (502) connects to the pressure sensor (503). The pressure sensor (503) is electrically connected to the display (7). The display (7) is connected to the support base (1).
5. The concrete strength testing device for construction according to claim 4, characterized in that, The reinforcement components include a side plate (6) mounting base (601), an electric push rod b (602), a connecting base (603), an electric telescopic column (604), a top plate (605), a telescopic rod (606), and a bottom plate (607). There are two side plates (6), which are connected to the support base (1) below. The two side plates (6) are respectively connected to the mounting base (601). The mounting base (601) is connected to the electric push rod b (602). The driving end of the electric push rod b (602) is connected to the connecting base (603). The connecting base (603) is connected to the electric telescopic column (604). The driving end of the electric telescopic column (604) is connected to the top plate (605). The top plate (605) is connected to the bottom plate (201). One end of the telescopic rod (606) is connected to the connecting base (603), and the bottom plate (607) is connected to the bottom plate (6).
6. The concrete strength testing device for construction according to claim 5, characterized in that, One end of the telescopic rod (606) is connected to the mounting base (601), and the side plate (6) is connected to the collection hopper, which is connected below the circular opening.
Citation Information
Patent Citations
Concrete strength detection device for building construction
CN222599372U