A data recording device for concrete impermeability test
Patent Information
- Application Number
- CN202522294685.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-10-30
AI Technical Summary
[0004]为了解决上述技术问题,本实用新型提供一种混凝土抗渗试验数据记录装置,以解决现有装置难快速适配不同加工零件、检测装置无法适配不同粗细水泥块、控制装置连接器类型单一的问题
1、本实用新型通过设置小电机、双连头与可转动的夹板,小电机驱动双连头带动夹板转动调节间距,能快速适配不同尺寸的加工零件,解决现有装置难快速适配不同加工零件的问题,提升装置通用性。
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Figure CN224772852U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of anti-permeability testing equipment, and more specifically, it relates to a concrete anti-permeability test data recording device. Background Technology
[0002] The impermeability of concrete is a key indicator for evaluating the durability of building structures and is widely used in fields such as water conservancy, bridges, and underground engineering. The accuracy and completeness of its test data directly affect engineering design and quality control. Currently, concrete impermeability testing mainly uses specialized testing instruments to simulate actual seepage environments and obtain seepage-related data of specimens under specific pressures, providing a basis for concrete mix optimization and construction quality inspection. With the increasing demands for durability in building engineering, it is necessary to acquire multi-dimensional data simultaneously during testing to support accurate analysis, while ensuring the continuity and traceability of data recording to meet the needs of modern laboratories for standardized testing procedures and standardized data management. Against this backdrop, developing a concrete impermeability test data recording device that is compatible with existing testing systems and can efficiently achieve data acquisition and recording has become an important direction for improving the concrete performance testing technology system.
[0003] Based on the above, the data recording device has limitations in adaptability, making it difficult to quickly adapt to different processed parts. When faced with cement blocks of different thicknesses, the intelligent adaptation capability of the detection device is insufficient, and the connectors provided with the control device are relatively limited in type, making it difficult to meet the adaptation requirements of different parts under diverse test scenarios, thus affecting test efficiency and applicability. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a concrete impermeability test data recording device, which solves the problems of existing devices being difficult to quickly adapt to different processed parts, testing devices being unable to adapt to cement blocks of different sizes, and control devices having a single type of connector.
[0005] This utility model discloses a concrete impermeability test data recording device, which is achieved by the following specific technical means: A concrete permeability test data recording device includes a frame, a placement ring, a clamping plate, an intelligent control recorder, a small motor, a water tank, a connecting button, a double connector, and a water pipe. The placement ring has a set of annular plates on its inner bottom side, and threaded holes are provided on the annular plates. A connecting plate is provided on one side of the small motor, and threaded holes are also provided on this connecting plate. The connecting plate on one side of the small motor is fastened to the annular plate on the inner bottom side of the placement ring by screws. A double connector is fastened to the top shaft of the small motor. The upper part of the double connector has a set of circular holes, and the lower part of the clamping plate is fastened to the circular holes at the upper part of the double connector; the upper two side connecting plates of the water tank have threaded holes, the middle two sides of the circular plate have two sets of threaded circular holes, and the upper two side connecting plates of the water tank are fastened to the middle two sides of the circular plate by screws; the lower part of the water tank has a circular hole, and a water pipe is fitted into the circular hole at the lower part of the water tank; the rear part of the intelligent control recorder is fastened to one side of the tank frame by a connecting button, and a set of control panels is provided on one side of the intelligent control recorder.
[0006] Furthermore, the upper part of the storage rack is provided with a threaded hole, and the bottom of the placement ring is fastened to the threaded hole in the upper part of the storage rack by screws. The storage rack is provided with a set of circular holes in the middle, and the lower part of the water pipe is movably connected to the circular holes in the middle of the storage rack.
[0007] Furthermore, the top of the shelf and the bottom of the ring placement area are provided with locking grooves, and sealing rings are locked and connected in the locking grooves at the top of the shelf and the bottom of the ring placement area.
[0008] Furthermore, a circular plate is clamped and connected to the bottom rotating shaft of the clamping plate, and a set of circular holes is provided in the middle of the circular plate. The circular holes in the middle of the circular plate are clamped and connected to the upper circular tube of the water tank.
[0009] Furthermore, the clamp is rotatably connected to the upper part of the inner side of the ring by a small motor.
[0010] Furthermore, the lower part of the intelligent control recorder is equipped with a USB port, a network port, and a Type-C interface.
[0011] Compared with the prior art, the present invention has the following beneficial effects: 1. This utility model, by setting a small motor, double connecting heads and a rotatable clamping plate, allows the small motor to drive the double connecting heads to rotate the clamping plate and adjust the spacing, thus quickly adapting to processing parts of different sizes. This solves the problem that existing devices are difficult to quickly adapt to different processing parts and improves the versatility of the device.
[0012] 2. This utility model, by setting an adjustable clamping plate and an internal annular structure for placing the ring, allows the clamping plate to flexibly adjust the clamping range according to the thickness of the cement block, adapting to cement blocks of different thicknesses, solving the problem that the testing device cannot adapt to cement blocks of different thicknesses, and ensuring the stability of the test.
[0013] 3. This utility model enriches the connector types by setting USB ports, network ports and Type-C interfaces on the intelligent control recorder, meets diverse data transmission needs, solves the problem of limited connector types in control devices, and improves the convenience of data interaction. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the main structure of this utility model.
[0015] Figure 2 This is a schematic diagram of the internal component structure of the main body of this utility model.
[0016] Figure 3 This is a schematic diagram of the intelligent control recorder component structure of this utility model.
[0017] Figure 4 This is a schematic diagram of the cross-sectional structure of the detection component of this utility model.
[0018] Figure 5 This is a schematic diagram of the cross-sectional structure of the intelligent control recorder component of this utility model.
[0019] In the diagram, the correspondence between component names and drawing numbers is as follows: 1. Shelf; 2. Snare placement device; 3. Clamping plate; 4. Intelligent control recorder; 5. Circular plate; 6. Small motor; 7. Water tank; 8. Sealing ring; 401. Control panel; 402. USB port; 403. Network port; 404. Type-C interface; 405. Connecting button; 501. Double connector; 701. Water pipe. Detailed Implementation
[0020] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model. Example:
[0021] As attached Figure 1 To be continued Figure 5 As shown: This utility model provides a concrete impermeability test data recording device, including a frame 1, a placement ring 2, a clamping plate 3, an intelligent control recorder 4, a small motor 6, a water tank 7, a connecting button 405, a double connector 501, and a water pipe 701. The placement ring 2 has a set of annular plates on its inner bottom side, and threaded holes are provided on the annular plates on its inner bottom side. A connecting plate is provided on one side of the small motor 6, and threaded holes are also provided on this connecting plate. The connecting plate on one side of the small motor 6 is fastened to the annular plate on the inner bottom side of the placement ring 2 by screws. A double connector 501 is fastened to the top shaft of the small motor 6. 01. The upper part of the double connector 501 is provided with a set of circular holes, and the lower part of the clamping plate 3 is fastened to the upper part of the circular holes in the double connector 501; the upper two sides of the water tank 7 are provided with threaded holes, the middle two sides of the circular plate 5 are provided with two sets of threaded circular holes, and the upper two sides of the water tank 7 are fastened to the middle two sides of the circular plate 5 by screws. The lower part of the water tank 7 is provided with a circular hole, and a water pipe 701 is inserted into the circular hole at the lower part of the water tank 7. The rear part of the intelligent control recorder 4 is fastened to one side of the tank frame 1 by a connecting button 405, and a set of control panels 401 is provided on one side of the intelligent control recorder 4.
[0022] The upper part of the frame 1 is provided with a threaded hole, and the bottom of the ring 2 is fastened to the threaded hole in the upper part of the frame 1 by screws. The frame 1 has a set of circular holes in the middle, and the lower part of the water pipe 701 is movably connected to the circular holes in the middle of the frame 1. This connection method can not only ensure the stable assembly of the frame 1 and the ring 2 by screw fastening, and prevent the parts from shifting during the test, but also allow the water pipe 701 to flexibly pass through the frame 1, ensuring smooth water flow and providing support for stable water supply for the anti-seepage test.
[0023] The top of the storage rack 1 and the bottom of the placement ring 2 are provided with a locking groove, and a sealing ring 8 is locked and connected in the locking groove of the top of the storage rack 1 and the bottom of the placement ring 2. The locking groove provides precise installation positioning for the sealing ring 8 and prevents the sealing ring 8 from shifting. The sealing ring 8 can fill the connection gap between the storage rack 1 and the placement ring 2, prevent water leakage during the test, ensure the airtightness of the test environment, and ensure the accuracy of the anti-seepage data measurement.
[0024] Among them, a circular plate 5 is clamped and connected to the bottom rotating shaft of the clamping plate 3, and a set of circular holes is provided in the middle of the circular plate 5. The circular holes in the middle of the circular plate 5 are clamped and connected to the upper circular tube of the water tank 7. The circular plate 5 is linked with the clamping plate 3 through clamping and can be adjusted and positioned synchronously with the clamping plate 3. Its circular holes can accurately fix the upper circular tube of the water tank 7, ensuring the stability of the position of the water tank 7 and ensuring accurate connection of the test water supply to the cement block.
[0025] The clamping plate 3 is rotatably connected to the upper inner side of the placement ring 2 via a small motor 6. The small motor 6 can drive the clamping plate 3 to rotate flexibly, realize the quick adjustment of the clamping distance, and adapt to cement blocks of different thicknesses. At the same time, it can stably fix the clamping plate 3 inside the placement ring 2, prevent the cement blocks from shifting during the test, and ensure the reliability of the test clamping.
[0026] The intelligent control recorder 4 is equipped with a USB port 402, an Ethernet port 403, and a Type-C interface 404 at the bottom. These multiple interfaces can meet different data transmission needs. The USB port 402 and the Type-C interface 404 facilitate local data export, while the Ethernet port 403 supports network transmission. The rich interface types enhance the flexibility of data interaction and help to efficiently store and share experimental data.
[0027] The specific usage and function of this embodiment are as follows: In this invention, the bottom of the placement ring 2 is fastened to the threaded hole on the upper part of the silo frame 1 with screws. Simultaneously, the top of the silo frame 1 is secured to the sealing ring 8 in the groove at the bottom of the placement ring 2, ensuring a tight seal and preventing water leakage. A concrete block is placed inside the placement ring 2, and the small motor 6 is started. The top shaft of the small motor 6 drives the double connector 501 to rotate, causing the lower shaft of the clamping plate 3 in the upper circular hole of the double connector 501 to rotate accordingly. The spacing of the clamping plates 3 is adjusted to clamp concrete blocks of different thicknesses. The circular plate 5, which is clamped to the bottom shaft of the clamping plate 3, is positioned synchronously. The central circular hole of the circular plate 5 is engaged with the upper circular pipe of the water tank 7, ensuring the stability of the water tank 7. The connecting plates on both sides of the upper part of the water tank 7 are fixed to the central sides of the circular plate 5 with screws. The water pipe 701 in the lower circular hole of the water tank 7 is movably connected to the central circular hole of the silo frame 1. The water stored in the water tank 7 is transported to the concrete block via the water pipe 701 for a seepage resistance test. The intelligent control recorder 4 is fixed to one side of the silo frame 1 by connecting button 405. The test parameters are set and the data is recorded by operating the control panel 401 on one side of the intelligent control recorder 4. The test data can be exported through the USB port 402, network port 403 or Type-C interface 404 at the bottom of the intelligent control recorder 4, so as to realize the efficient implementation and data management of concrete impermeability test.
[0028] Any aspects of this utility model not described in detail are well-known technologies to those skilled in the art.
Claims
1. A data recording device for concrete impermeability test, characterized in that: Includes a rack (1), a snare (2), a clamp (3), an intelligent control recorder (4), a small motor (6), a water tank (7), a connecting button (405), a double connector (501), and a water pipe (701); The placement ring (2) has a set of annular plates on its inner bottom side, and the placement ring (2) has a threaded hole on its inner bottom annular plate. The small motor (6) has a connecting plate on one side, and the connecting plate on the side of the small motor (6) has a threaded hole. The connecting plate on the side of the small motor (6) is fastened to the annular plate on the inner bottom side of the placement ring (2) by screws. The top shaft of the small motor (6) is fastened to a double connector (501). The upper part of the double connector (501) has a set of circular holes, and the lower shaft of the clamping plate (3) is fastened to the upper circular holes of the double connector (501). The upper two sides of the water tank (7) are provided with threaded holes. The middle two sides of the circular plate (5) are provided with two sets of threaded circular holes. The upper two sides of the water tank (7) are fastened to the middle two sides of the circular plate (5) by screws. The lower part of the water tank (7) is provided with a circular hole. A water pipe (701) is installed in the circular hole at the lower part of the water tank (7). The rear part of the intelligent control recorder (4) is fastened to one side of the tank frame (1) by a connecting button (405). A set of control screens (401) is provided on one side of the intelligent control recorder (4).
2. The concrete impermeability test data recording device as described in claim 1, characterized in that: The upper part of the rack (1) is provided with a threaded hole, and the bottom of the placement ring (2) is fastened to the threaded hole in the upper part of the rack (1) by screws. The rack (1) is provided with a set of circular holes in the middle, and the lower part of the water pipe (701) is movably connected to the circular holes in the middle of the rack (1).
3. The concrete impermeability test data recording device as described in claim 1, characterized in that: The top of the rack (1) and the bottom of the placement ring (2) are provided with a locking groove, and a sealing ring (8) is locked and connected in the locking groove of the top of the rack (1) and the bottom of the placement ring (2).
4. The concrete impermeability test data recording device as described in claim 1, characterized in that: A circular plate (5) is clamped and connected to the bottom rotating shaft of the clamping plate (3), and a set of circular holes is provided in the middle of the circular plate (5). The circular holes in the middle of the circular plate (5) are clamped and connected to the upper circular tube of the water tank (7).
5. The concrete impermeability test data recording device as described in claim 1, characterized in that: The clamp (3) is rotatably connected to the upper part of the inner side of the ring (2) by a small motor (6).
6. The concrete impermeability test data recording device as described in claim 1, characterized in that: The intelligent control recorder (4) is equipped with a USB port (402), a network port (403) and a Type-C interface (404) at the bottom.