Reinforced concrete anti-corrosion testing device
Patent Information
- Application Number
- CN202421994242.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-08-16
Smart Images

Figure CN223284084U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of concrete testing, and in particular relates to a reinforced concrete anti-corrosion testing device. Background Art
[0002] Concrete is a general term for engineering composite materials that are made by cementing aggregates into a whole. The term concrete usually refers to cement as the cementing material, sand and stone as aggregates; mixed with water (which may contain admixtures and additives) in a certain proportion and then mixed to obtain cement concrete, also known as ordinary concrete. It is widely used in civil engineering. Since concrete is used for infrastructure construction, its performance needs to be tested before use.
[0003] Upon investigation, the publication (announcement) number: CN215263061U discloses a construction concrete corrosion test device. This technology discloses "a construction concrete corrosion test device, including an end cover, a box and a base, an observation window fixedly installed on the surface of the box, a controller fixedly installed on one side of the observation window, an extrusion platform fixedly installed on the other side of the electric push rod inside the inner cavity, a heating element fixedly installed inside the box at the lower end of the inner cavity, and a feeding port fixedly installed on the top of the end cover, and discloses that the construction concrete corrosion test device uses the electric push rod to drive the extrusion platform to perform an extrusion test on the concrete during use. The overall sealing of the device is strong and the exhaust gas generated during the test can be centrally exhausted during use, thereby optimizing the use process and other technical effects."
[0004] Although this design can solve the problem of no centralized treatment of waste gas generated during the test, in actual use, the internal residue is not cleaned thoroughly after the building concrete test, which will affect the next test of reinforced concrete blocks, resulting in deviations in the secondary test results and affecting the test results.
[0005] In order to solve the above problems, this application proposes a reinforced concrete corrosion protection testing device. Utility Model Content
[0006] In order to solve the problems raised in the above background technology, the utility model provides a reinforced concrete corrosion test device, which has the characteristics of convenient and thorough cleaning of residues and good cleaning effect, thereby improving the accuracy of secondary testing.
[0007] To achieve the above-mentioned object, the present invention provides the following technical solution: a reinforced concrete corrosion test device, comprising a base, a test container mounted on the surface of the base, an observation window mounted on the surface of the test container, and a cleaning assembly mounted on the surface of the base;
[0008] The cleaning brush is installed on the bottom of the cleaning plate and the cleaning brush is installed on the bottom of the cleaning plate. The cleaning brush is installed on the bottom of the cleaning plate. The cleaning brush is installed on the bottom of the cleaning plate. The cleaning brush is installed on the bottom of the cleaning plate.
[0009] As a preferred embodiment of the reinforced concrete corrosion protection testing device of the present invention, reset springs are installed at both ends of the baffle.
[0010] As a preferred embodiment of the reinforced concrete corrosion protection testing device of the present invention, a push block with a triangular block structure is installed on the surface of the cleaning push plate.
[0011] As a preferred embodiment of the reinforced concrete corrosion protection testing device of the present invention, a mounting block b is installed on the surface of the test containing box at the discharge port position.
[0012] As a preferred embodiment of the reinforced concrete corrosion protection testing device of the present invention, the mounting block b is arranged in a triangular block structure.
[0013] As a preferred reinforced concrete corrosion protection testing device of the present invention, it also includes a rotating component arranged on the surface of the fixed plate, the rotating component includes fixed blocks symmetrically installed on the bottom surface of the fixed plate, a cleaning roller is arranged between the two fixed blocks, a rotating rod is arranged in the fixed block, a roller is installed on the surface of the rotating rod, a bevel gear a is installed at one end of the rotating rod, both ends of the central axis of the cleaning roller pass through the fixed block and are connected to the bevel gear b arranged in the blind groove of the fixed block, and the bevel gear a and the bevel gear b are meshed and connected.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] A cleaning assembly is provided on this device. When in use, moving blocks are installed on both sides of the cleaning push plate. One end of the moving block is inserted into the groove opened by the installation block a. By starting the servo motor to drive the screw to rotate, the moving block is driven to move, and the cleaning push plate is driven to move in the test holding box, so that the baffle is opened and closed to clean and push the concrete debris. A fixed plate is installed on the surface of the cleaning push plate, and a cleaning plate and a cleaning brush are arranged under the fixed plate. A guide rod is installed on the surface of the cleaning plate, and a limit plate is installed at one end of the guide rod. Under the contraction force of the spring, the cleaning plate is moved in the cleaning process. The cleaning is carried out in the test chamber, and the cleaning effect is cleaner, ensuring that the internal environment is clean during the secondary test, avoiding deviations during the test process, and improving the accuracy of the test values. In conjunction with the rotating assembly, a fixed block is installed on the surface of the fixed plate, and a rotating rod and a roller are arranged in the fixed block. During the movement of the fixed plate, the roller rotates with friction with the test containing box, driving the bevel gear a at one end of the rotating rod to rotate, and meshing with the bevel gears b at both ends of the cleaning roller, thereby achieving further cleaning of the bottom surface of the test containing box during the moving cleaning process, and having a good cleaning effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0018] Figure 2 This is a cross-sectional structural diagram of the installation block a in the present utility model;
[0019] Figure 3 This is a schematic diagram of the structure of the cleaning component in the present utility model;
[0020] Figure 4 This is an enlarged view of the structure of point A in the utility model;
[0021] Figure 5 This is a schematic diagram of the internal structure of the fixed block of the utility model;
[0022] In the figure: 1, base; 11, test container; 12, observation window;
[0023] 2. Cleaning assembly; 21. Storage box; 22. Cleaning push plate; 23. Push block; 24. Fixed plate; 25. Guide rod; 251. Cleaning plate; 26. Limit plate; 27. Spring; 28. Cleaning brush; 29. Moving block; 210. Mounting block a; 211. Servo motor; 212. Screw; 213. Baffle; 214. Mounting block b;
[0024] 3. Rotating assembly; 31. Fixed block; 32. Cleaning roller; 33. Rotating rod; 34. Roller; 35. Bevel gear a; 36. Bevel gear b. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0026] Example 1
[0027] like Figure 1-Figure 5 As shown;
[0028] A reinforced concrete corrosion test device comprises a base 1, a test containing box 11 installed on the surface of the base 1, and an observation window 12 installed on the surface of the test containing box 11.
[0029] In this embodiment: After investigation, the public (announcement) number: CN215263061U discloses a building concrete corrosion test device. This technology discloses "a building concrete corrosion test device, including an end cover, a box and a base, an observation window is fixedly installed on the surface of the box, a controller is fixedly installed on one side of the observation window, an electric push rod inside the inner cavity is fixedly installed on the other side of the extrusion platform, a heating element is fixedly installed inside the box at the lower end of the inner cavity, and a feeding port is fixedly installed on the top of the end cover, etc., and discloses the building concrete corrosion test device, which uses the electric push rod to drive the extrusion platform to perform extrusion test on the concrete during use. , the overall sealing of the device is strong and the exhaust gas generated during the test can be centrally exhausted when in use, and the use process is optimized. "Although this design can solve the problem of no centralized treatment of the exhaust gas generated during the test, this design is not thorough enough in cleaning the internal residue after the building concrete test in actual use, which will affect the next test of the reinforced concrete block, resulting in deviation in the secondary test result, affecting the test result, etc. Combined with actual use, this problem is obviously a real problem that exists and is difficult to solve. Therefore, in order to solve this technical problem, a cleaning component 2 and a rotating component 3 are added to this application document.
[0030] More specifically:
[0031] like Figure 1 、 Figure 2 、 Figure 3 and Figure 4 As shown;
[0032] In combination with the above content, it also includes a cleaning component 2 installed on the surface of the base 1, the cleaning component 2 includes a storage box 21 installed on the surface of the base 1, a cleaning push plate 22 arranged in the storage box 21, and a fixed plate 24 installed on the surface of the cleaning push plate 22. A cleaning plate 251 is provided below the fixed plate 24, and a cleaning brush 28 is installed on the bottom surface of the cleaning plate 251. A guide rod 25 is symmetrically installed on the surface of the cleaning plate 251. One end of the guide rod 25 passes through the fixed plate 24 and is connected to a limit plate 26 arranged on the surface of the fixed plate 24. A spring 27 is provided on the surface of the guide rod 25. The two ends of the spring 27 are respectively connected to the limit plate 26 and the fixed plate 24. The surface of the base 1 is symmetrically installed with a mounting block a210. The servo motor 211 is installed in the groove opened inside the mounting block a210. The output shaft of the servo motor 211 is installed with a screw 212. The end of the screw 212 away from the servo motor 211 is rotatably connected to the mounting block a210. The surface of the screw 212 is slidably provided with an L-shaped moving block 29. The two moving blocks 29 pass through the test containing box 11 and are connected to the cleaning push plate 22. The surface of the test containing box 11 is hinged with a baffle 213.
[0033] In this embodiment: by setting a cleaning component 2, when in use, by installing moving blocks 29 on both sides of the cleaning push plate 22, one end of the moving block 29 is inserted into the groove opened by the mounting block a210, and by starting the servo motor 211 to drive the screw 212 to rotate, thereby driving the moving block 29 to move, driving the cleaning push plate 22 to move in the test holding box 11, so that the baffle 213 is opened and closed to push the concrete debris, and by installing a fixed plate 24 on the surface of the cleaning push plate 22, and arranging a cleaning plate 251 and a cleaning brush 28 under the fixed plate 24, a guide rod 25 is installed on the surface of the cleaning plate 251, and a limit plate 26 is installed at one end of the guide rod 25, so that the cleaning plate 251 cleans during the cleaning process under the contraction force of the spring 27, and the cleaning effect is cleaner, ensuring that the internal environment is clean during the secondary test, avoiding deviations during the test process, and improving the accuracy of the test values.
[0034] It should be noted that return springs are installed at both ends of the baffle 213 .
[0035] In an optional embodiment, a push block 23 with a triangular block structure is installed on the surface of the cleaning push plate 22.
[0036] In this embodiment, by arranging the cleaning push plate 22 in a triangular block structure, the concrete debris in the test holding box 11 can be conveniently piled together, and the cleaning effect is good.
[0037] In an optional embodiment, a mounting block b214 is installed on the surface of the test containing box 11 at the discharge port.
[0038] In this embodiment, the installation block b214 is provided to facilitate pushing out the concrete debris in the test container 11 and allowing it to slide down to the ground via the inclined surface.
[0039] It should be noted that the mounting block b214 is arranged in a triangular block structure.
[0040] Going further:
[0041] like Figure 1 、 Figure 3 、 Figure 4 and Figure 5 As shown;
[0042] In combination with the above content, it also includes a rotating component 3 arranged on the surface of the fixed plate 24, and the rotating component 3 includes a fixed block 31 symmetrically installed on the bottom surface of the fixed plate 24, a cleaning roller 32 is arranged between the two fixed blocks 31, and a rotating rod 33 is arranged in the fixed block 31. A roller 34 is installed on the surface of the rotating rod 33, and a bevel gear a35 is installed at one end of the rotating rod 33. Both ends of the central axis of the cleaning roller 32 pass through the fixed block 31 and are connected to the bevel gear b36 set in the blind groove of the fixed block 31. The bevel gear a35 and the bevel gear b36 are meshed.
[0043] In this embodiment, in conjunction with the rotating assembly 3, a fixed block 31 is installed on the surface of the fixed plate 24, and a rotating rod 33 and a roller 34 are provided in the fixed block 31. During the movement of the fixed plate 24, the roller 34 rotates by friction with the test containing box 11, driving the bevel gear a35 at one end of the rotating rod 33 to rotate and meshing with the bevel gears b36 at both ends of the cleaning roller 32, thereby achieving further cleaning of the bottom surface of the test containing box 11 during the moving and cleaning process, and achieving a good cleaning effect.
[0044] The working principle and use process of the present invention are as follows: by setting a cleaning component 2, when in use, by installing moving blocks 29 on both sides of the cleaning push plate 22, one end of the moving block 29 is inserted into the groove opened by the mounting block a210, by starting the servo motor 211 to drive the screw 212 to rotate, thereby driving the moving block 29 to move, driving the cleaning push plate 22 to move in the test container 11, so that the baffle 213 is opened and closed to clean the concrete debris, and by installing a fixed plate 24 on the surface of the cleaning push plate 22, and setting a cleaning plate 251 and a cleaning brush 28 under the fixed plate 24, installing a guide rod 25 on the surface of the cleaning plate 251, and installing a limit plate 26 on one end of the guide rod 25, and a spring 27 Under the contraction force, the cleaning plate 251 cleans during the cleaning process, and the cleaning effect is cleaner, ensuring that the internal environment is clean during the secondary test, avoiding deviations during the test process, and improving the accuracy of the test values. In conjunction with the rotating component 3, a fixed block 31 is installed on the surface of the fixed plate 24, and a rotating rod 33 and a roller 34 are arranged in the fixed block 31. During the movement of the fixed plate 24, the roller 34 rotates with friction with the test containing box 11, driving the bevel gear a35 at one end of the rotating rod 33 to rotate, and meshing with the bevel gears b36 at both ends of the cleaning roller 32, thereby achieving further cleaning of the bottom surface of the test containing box 11 during the moving cleaning process, and achieving good cleaning effect.
[0045] Finally, it should be noted that the above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein with equivalents. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A reinforced concrete corrosion test device, comprising a base (1), a test container (11) mounted on a surface of the base (1), and an observation window (12) mounted on a surface of the test container (11), characterized in that: It also includes a cleaning component (2) installed on the surface of the base (1); The cleaning assembly (2) comprises a storage box (21) mounted on the surface of the base (1), a cleaning push plate (22) arranged in the storage box (21), and a fixed plate (24) mounted on the surface of the cleaning push plate (22); a cleaning plate (251) is arranged below the fixed plate (24); a cleaning brush (28) is installed on the bottom surface of the cleaning plate (251); a guide rod (25) is symmetrically installed on the surface of the cleaning plate (251); one end of the guide rod (25) passes through the fixed plate (24) and is connected to a limit plate (26) arranged on the surface of the fixed plate (24); a spring (27) is arranged on the surface of the guide rod (25); the two ends of the spring (27) are respectively connected to the The limiting plate (26) is connected to the fixing plate (24), and a mounting block a (210) is symmetrically installed on the surface of the base (1). A servo motor (211) is installed in a groove opened inside the mounting block a (210), and a screw (212) is installed on the output shaft of the servo motor (211). The end of the screw (212) away from the servo motor (211) is rotatably connected to the mounting block a (210). A moving block (29) with an L-shaped structure is slidably provided on the surface of the screw (212), and two moving blocks (29) pass through the test holding box (11) and are connected to the cleaning push plate (22). A baffle (213) is hinged on the surface of the test holding box (11).
2. The concrete anti-corrosion testing device according to claim 1, characterized in that: Reset springs are installed at both ends of the baffle (212).
3. The reinforced concrete anti-corrosion testing device according to claim 1, characterized in that: A push block (23) having a triangular block structure is installed on the surface of the cleaning push plate (22).
4. The reinforced concrete anti-corrosion testing device according to claim 1, characterized in that: A mounting block b (214) is installed on the surface of the test containing box (11) at the discharge port.
5. The reinforced concrete anti-corrosion testing device according to claim 4, characterized in that: The mounting block b (214) is arranged in a triangular block structure.
6. The reinforced concrete anti-corrosion testing device according to claim 1, characterized in that: The invention also includes a rotating assembly (3) arranged on the surface of the fixed plate (24), the rotating assembly (3) including a fixed block (31) symmetrically mounted on the bottom surface of the fixed plate (24), a cleaning roller (32) being arranged between the two fixed blocks (31), a rotating rod (33) being arranged in the fixed block (31), a roller (34) being mounted on the surface of the rotating rod (33), a bevel gear a (35) being mounted on one end of the rotating rod (33), both ends of the central axis of the cleaning roller (32) passing through the fixed block (31) and being connected to a bevel gear b (36) arranged in a blind groove of the fixed block (31), and the bevel gear a (35) and the bevel gear b (36) being meshed and connected.