Rapid detection device for content of chloride ions in concrete mixture
By designing automated lifting and sliding components, the problem of cumbersome operation of the detection device in the prior art is solved, and efficient continuity of the detection process and reduced equipment maintenance costs are achieved.
Patent Information
- Application Number
- CN202421629933.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-10
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-10
AI Technical Summary
The existing rapid detection device for chloride ion content of concrete mixture is cumbersome during use, time-consuming and affects the continuity and efficiency of detection, increasing the cost of equipment maintenance.
A detection device including a detector body, a lifting assembly and a sliding assembly is designed. The lifting assembly realizes automatic lifting and collection of electrodes and reagent conveying pipes through supporting plates, sliding plates and motors. The sliding assembly realizes convenient sliding and stable support of the beaker through fixing grooves, sliding grooves and rollers.
Through automated lifting and sliding operations, the manual operation time during the inspection process is significantly reduced, the continuous and efficiency of inspection is improved, and the equipment maintenance cost is reduced.
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Figure CN222926654U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sand and gravel chloride ion detection, in particular to a rapid detection device for the chloride ion content of concrete mixtures. Background Art
[0002] The rapid detection device for the chloride ion content of concrete mixtures is mainly used for real-time monitoring of the chloride ion content to ensure that its concentration meets the engineering standards, prevent the corrosion of steel bars and the decline of concrete durability caused by exceeding the standard. This device is crucial for ensuring the safety of concrete structures and extending their service life.
[0003] In actual work, the existing rapid detection device for the chloride ion content of concrete mixtures can basically meet the requirements for concrete detection, but there are still the following problems:
[0004] The existing rapid detection device for the chloride ion content of concrete mixtures has obvious disadvantages. During use, the electrode and the reagent delivery tube are usually fixed on the top of the beaker. After the detection is completed, the electrode and the reagent delivery tube must be removed first before the beaker can be taken out. This operation method is extremely cumbersome, consuming a lot of time and manpower. The steps of fixing and removing need to be repeated for each detection, seriously affecting the continuity and efficiency of the detection and increasing the equipment maintenance cost.
[0005] Therefore, the utility model provides a rapid detection device for the chloride ion content of concrete mixtures. Content of the Utility Model
[0006] The purpose of the utility model is to solve the disadvantages existing in the prior art and provide a rapid detection device for the chloride ion content of concrete mixtures.
[0007] To achieve the above purpose, the utility model adopts the following technical scheme: a rapid detection device for the chloride ion content of concrete mixtures, including a detector body, a top plate is arranged on the top of the detector body, and a lifting component is arranged on the top of the top plate;
[0008] The lifting component includes a support plate, a support plate slot is opened on the support plate, a second sliding plate is arranged between the support plate slots, a slot is opened on the second sliding plate, a motor is arranged on the second sliding plate through the slot, a rotating shaft is arranged at the bottom of the motor, a stirring wheel is arranged at the bottom of the rotating shaft, a second handle is arranged on the top of the second sliding plate, and a fixing plate is arranged on one side of the second sliding plate.
[0009] As a preferred implementation manner, an operation panel is arranged on one side of the detector body, a ticket outlet is arranged on the side of the detector body away from the operation panel, and a sliding component is arranged on the top of the detector body away from the ticket outlet.
[0010] The technical effect of adopting the above technical solution is: in the structural design of the detector body, the operation panel arranged on one side facilitates the operation and control by personnel, and the ticket outlet arranged on the side away from the operation panel can output the detection result ticket in time.
[0011] As a preferred embodiment, the sliding assembly includes a fixed groove, sliding grooves are opened on both sides of the fixed groove, a sliding plate 1 is arranged on the sliding groove, rollers are arranged at both ends of the sliding plate 1, a limiting block is arranged on the side of the sliding plate 1 away from the roller, a beaker is arranged on the top of the sliding plate 1, and a handle 1 is arranged on one side of the sliding plate 1.
[0012] The technical effect of adopting the above technical scheme is: the fixed groove provides basic support for the overall structure, the sliding grooves opened on both sides provide tracks for the movement of the sliding plate one, the rollers at both ends of the sliding plate one make the sliding smoother and more labor-saving, the handle one facilitates the user to push and pull the sliding plate one, the beaker on the top is used to place the material to be tested, and the limit block limits the movement range of the sliding plate one to prevent it from excessive sliding, thereby ensuring the stability and safety of the entire sliding assembly, thereby achieving a convenient, flexible and orderly sliding operation effect.
[0013] As a preferred embodiment, a top plate groove is provided on a side of the top plate away from the lifting assembly, an electrode is provided in the top plate groove, and a reagent delivery tube is provided on a side of the top plate groove away from the electrode.
[0014] The technical effect of adopting the above technical solution is: through the grooves on the top plate, the used electrodes and reagent delivery tubes can be collected. This collection method is accurate and orderly, so that the used electrodes and reagent delivery tubes can be properly placed.
[0015] Compared with the prior art, the advantages and positive effects of the utility model are:
[0016] By arranging a support plate, a second sliding plate, a support plate slot, a motor, a second handle, a fixed plate, a rotating shaft and a stirring wheel, the second sliding plate can be controlled to slide on the support plate slot through the support plate, so that when the equipment is not in use, the second sliding plate can be lifted to take out the beaker, and the slot arranged on the second sliding plate can make the motor and the rotating shaft slide on the second sliding plate, so as to facilitate stirring of beakers of different sizes, the second sliding plate can be raised and lowered through the second handle, and the reagent delivery tube and the electrode can be driven to rise and fall through the fixed plate, so there is no need to dismantle the entire detector in order to take out the test tube, thereby improving the utilization efficiency of the detector and making the detector easier to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the structure of a rapid detection device for chloride ion content in concrete mixtures provided by the utility model;
[0018] Figure 2 Schematic diagram of the lifting component structure of the rapid chloride ion content detection device for concrete mixture provided by the present utility model;
[0019] Figure 3 Schematic diagram of the structure of the top plate slotting of the rapid chloride ion content detection device for concrete mixture provided by the present utility model;
[0020] Figure 4 Schematic diagram of the sliding component structure of the rapid chloride ion content detection device for concrete mixture provided by the present utility model.
[0021] Legend description:
[0022] 1. Detector body;
[0023] 2. Sliding component; 21. Fixed groove; 22. Sliding groove; 23. First sliding plate; 24. Roller; 25. First handle; 26. Beaker; 27. Limit block;
[0024] 3. Operation board; 4. Ticket outlet;
[0025] 5. Lifting component; 51. Support plate; 52. Second sliding plate; 53. Support plate slotting; 54. Motor; 55. Second handle; 56. Fixed plate; 57. Rotating shaft; 58. Stirring wheel;
[0026] 6. Top plate; 7. Top plate opening; 8. Electrode connector; 9. Reagent delivery pipe; 10. Electrode; 11. Top plate slotting; 12. Reagent connector. Specific implementation mode
[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0028] As Figure 2 shown, this embodiment provides a technical solution: a rapid chloride ion content detection device for concrete mixture, including a detector body 1, a top plate 6 is arranged on the top of the detector body 1, and a lifting component 5 is arranged on the top of the top plate 6;
[0029] The lifting assembly 5 includes a support plate 51. A support plate slot 53 is formed on the support plate 51. A second sliding plate 52 is arranged between the support plate slots 53. A slot is formed on the second sliding plate 52. The second sliding plate 52 is provided with a motor 54 through the slot. A rotating shaft 57 is arranged at the bottom of the motor 54. A stirring wheel 58 is arranged at the bottom of the rotating shaft 57. A second handle 55 is arranged at the top of the second sliding plate 52. A fixing plate 56 is arranged on one side of the second sliding plate 52. The support plate 51 plays a key role. Through the support plate 51, the second sliding plate 52 can be controlled to slide on the support plate slot 53. When the device is not in use, the second sliding plate 52 can be lifted, thus facilitating the removal of the beaker 26. The slot formed on the second sliding plate 52 enables the motor 54 and the rotating shaft 57 to slide thereon, facilitating the stirring of beakers 26 of different sizes. The electrode connector 8 of the sliding assembly 2 can make the stirring effect better. The existence of the second handle 55 enables the second sliding plate 52 to be easily lifted and lowered. The fixing plate 56 can drive the reagent delivery pipe 9 and the electrode 10 to move up and down, thereby optimizing the functions and usability of the detection device and solving the technical problem of difficult installation of the device during use.
[0030] Furthermore, as shown in Figure 4: The sliding assembly 2 includes a fixing slot 21. Sliding slots 22 are formed on both sides of the fixing slot 21. A first sliding plate 23 is arranged on the sliding slots 22. Rollers 24 are arranged at both ends of the first sliding plate 23. A limiting block 27 is arranged on the side of the first sliding plate 23 away from the roller 24. A beaker 26 is arranged at the top of the first sliding plate 23. A first handle 25 is arranged on one side of the first sliding plate 23. The fixing slot 21 plays an important role in the whole structure, providing a solid foundation support for the overall structure. The sliding slots 22 formed on both sides thereof accurately provide a stable track for the movement of the first sliding plate 23. The rollers 24 equipped at both ends of the first sliding plate 23 greatly reduce the resistance during sliding, making the sliding smoother and more labor-saving. The design of the first handle 25 is considerate and practical, facilitating the user to easily push and pull the first sliding plate 23. The beaker 26 at the top is specially used for placing the materials to be detected. The existence of the limiting block 27 is even more crucial. It strictly limits the movement range of the first sliding plate 23, effectively preventing it from sliding excessively, and strongly ensuring the stability and safety of the whole sliding assembly 2. These components work together to successfully achieve the convenient, flexible and orderly sliding operation effect.
[0031] When the above device is not in use, it cannot be stored, as Figure 3As shown: In this solution, a top plate slot 11 is provided on the side of the top plate 6 away from the lifting assembly 5. An electrode 10 is arranged in the top plate slot 11, and a reagent delivery tube 9 is arranged on the side of the top plate slot 11 away from the electrode 10. Through the top plate slot 11, the used electrode 10 and the reagent delivery tube 9 can be collected. This collection method is precise and orderly, ensuring that the used electrode 10 and the reagent delivery tube 9 are properly placed, facilitating subsequent searching and reuse, and improving work efficiency.
[0032] Working principle:
[0033] As Figure 1 - Figure 4 shown:
[0034] During use: The top plate slot 11 can precisely and orderly collect the used electrode 10 and the reagent delivery tube 9, properly placing them. The operation panel 3 on one side of the detector body 1 facilitates personnel operation and control. The ticket outlet 4 on the other side can promptly output the detection result ticket. The fixed slot 21 provides basic support for the whole. The sliding slot 22 provides a track for the movement of the first sliding plate 23. The rollers 24 make the sliding smoother and more labor-saving. The first handle 25 facilitates pushing and pulling. The beaker 26 at the top places the detection material. The limiting block 27 ensures the stable and safe sliding of the sliding assembly 2, realizing a convenient, flexible and orderly sliding operation. In addition, the support plate 51 can control the sliding of the second sliding plate 52 on the slot. When the device is not in use, the second sliding plate 52 can be lifted to take out the beaker 26. The slot on the second sliding plate 52 facilitates the sliding of the motor 54 and the rotating shaft 57 to adapt to the stirring of beakers 26 of different sizes. The second handle 55 can lift and lower the second sliding plate 52. The fixing plate 56 can drive the reagent delivery tube 9 and the electrode 10 to lift in the top plate opening 7. The reagent delivery tube 9 and the electrode 10 can be used through the electrode connector 8 and the reagent connector 12.
[0035] The above is only a preferred embodiment of the present invention, and it is not a limitation of the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention.
Claims
1. A rapid detection device for the chloride ion content of concrete mixtures, comprising a detector body (1), characterized in that, a top plate (6) is provided on the top of the detector body (1), and a lifting component (5) is provided on the top of the top plate (6); the lifting component (5) includes a support plate (51), a support plate slot (53) is formed on the support plate (51), a second sliding plate (52) is arranged between the support plate slots (53), a slot is formed on the second sliding plate (52), the second sliding plate (52) is arranged with a motor (54) through the slot, a rotating shaft (57) is provided at the bottom of the motor (54), a stirring wheel (58) is provided at the bottom of the rotating shaft (57), a second handle (55) is provided on the top of the second sliding plate (52), and a fixing plate (56) is arranged on one side of the second sliding plate (52).
2. The rapid detection device for the chloride ion content of concrete mixtures according to claim 1, characterized in that: an operation panel (3) is arranged on one side of the detector body (1), a ticket outlet (4) is arranged on the side of the detector body (1) away from the operation panel (3), and a sliding component (2) is provided on the top of the detector body (1) away from the ticket outlet (4).
3. The rapid detection device for the chloride ion content of concrete mixtures according to claim 2, characterized in that: the sliding component (2) includes a fixing groove (21), sliding grooves (22) are formed on both sides of the fixing groove (21), a first sliding plate (23) is arranged on the sliding grooves (22), rollers (24) are arranged at both ends of the first sliding plate (23), a limiting block (27) is arranged on the side of the first sliding plate (23) away from the rollers (24), a beaker (26) is arranged on the top of the first sliding plate (23), and a first handle (25) is arranged on one side of the first sliding plate (23).
4. The rapid detection device for the chloride ion content of concrete mixtures according to claim 1, characterized in that: a top plate slot (11) is formed on the side of the top plate (6) away from the lifting component (5), an electrode (10) is arranged in the top plate slot (11), and a reagent delivery pipe (9) is arranged on the side of the top plate slot (11) away from the electrode (10).
5. The rapid detection device for the chloride ion content of concrete mixtures according to claim 1, characterized in that: a top plate hole (7) is formed on the side of the top plate (6) away from the lifting component (5).
6. The rapid detection device for the chloride ion content of concrete mixtures according to claim 1, characterized in that: an electrode connector (8) is arranged on the side of the top plate (6) away from the top plate slot (11), and a reagent connector (12) is arranged on the side of the top plate (6) away from the electrode connector (8).