Sleeve grouting fullness observation device

Through the design of the sleeve grouting full observation device, the movable ring and brush are used to remove impurities on the surface of the endoscope, which solves the problem of reduced clarity caused by the need to insert the observation device multiple times, and achieves a clear field of view and efficient observation.

CN223362058UActive Publication Date: 2025-09-19ANHUI UNIVERSITY OF ARCHITECTURE
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Patent Information

Application Number
CN202422555842.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-09-19
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

Existing observation devices need to be inserted into the sleeve multiple times for observation, which causes impurities or dust to accumulate on the surface of the detection head, reduces the clarity of observation, and affects the accurate judgment of the grouting fullness.

Method used

A sleeve grouting fullness observation device was designed. A movable ring combined with a brush was used to remove residues on the surface of the endoscope, and a connecting rod was fixed with a pin to avoid shaking, providing a clear field of view and precise measurement to meet different observation needs.

Benefits of technology

It can effectively remove residues on the surface of the endoscope, extend its service life, provide a clear field of view, improve observation quality and accuracy, adapt to various observation needs, and improve construction efficiency.

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Abstract

The utility model relates to the field of observation devices, in particular to a sleeve grouting fullness observation device which comprises an observation panel and an adjusting observation assembly. The outer end of the observation panel is provided with an adjusting observation assembly used for carrying out adaptive adjustment according to different observation conditions, the adjusting observation assembly comprises a transmission cable, a butt joint ring, a plug pin, a connecting rod, an endoscope, a movable ring, a joining ring and an adjusting plate, the connecting rod is located on the outer side of the observation panel, and the outer end of the connecting rod is sleeved with the movable ring; multiple groups of brushes are laid on the inner wall of the movable ring, and a pull rod is arranged at the outer end of the movable ring; according to the utility model, the movable ring is combined with the paved brush to clean and brush after observation of the endoscope, so that residues on the surface of the endoscope are effectively removed, abrasion between a lens of the endoscope and impurities is reduced, the service life of the endoscope is prolonged, the surface of the endoscope is cleaned in time, a clearer visual field can be provided, and the service life of the endoscope is prolonged. And the subsequent endoscope observation quality is improved.
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Description

Technical Field

[0001] The utility model relates to the field of observation devices, in particular to a sleeve grouting fullness observation device. Background Art

[0002] Sleeve grouting is a steel bar connection technology used in prefabricated concrete structures. It involves inserting ribbed steel bars into a metal sleeve and injecting a special grouting material. The grouting material hardens to form a whole and realize the force-transmitting steel bar butt connection. After the sleeve grouting, it is necessary to use an observation device to observe and monitor the fullness of the sleeve grouting to observe whether the grouting material in the steel bar sleeve grouting connection is fully filled, helping construction personnel to ensure that the grouting material is evenly distributed in the sleeve, thereby ensuring the safety and reliability of the structure.

[0003] During use, the existing observation device usually needs to be inserted into the sleeve multiple times for observation and detection, resulting in a large amount of impurities or dust on the surface of the detection head, reducing the clarity of observation and affecting the accurate judgment of the grouting fullness.

[0004] Therefore, for the above-mentioned existing observation devices, it is usually necessary to insert the device into the sleeve multiple times for observation and detection, which causes a large amount of impurities or dust to appear on the surface of the detection head, reducing the clarity of observation and affecting the accurate judgment of the grouting fullness. A sleeve grouting fullness observation device can be designed to effectively remove residues on the surface of the endoscope, reduce the wear between the endoscope lens and impurities, provide a clearer field of view, and improve the quality of subsequent endoscopic observations. Utility Model Content

[0005] In order to overcome the problem of existing observation devices, it is usually necessary to insert the device into the sleeve multiple times for observation and detection, resulting in a large amount of impurities or dust on the surface of the detection head, reducing the clarity of observation and affecting the accurate judgment of the grouting fullness.

[0006] The technical solution of the utility model is: a sleeve grouting fullness observation device, the sleeve grouting fullness observation device includes an observation surface and an adjustment observation component; the outer end of the observation panel is installed with an adjustment observation component for adapting and adjusting according to different observation conditions, the adjustment observation component includes a transmission cable, a docking ring, a pin, a connecting rod, an endoscope, a movable ring, a connecting ring, and an adjustment plate. The connecting rod is located on the outside of the observation panel, the outer end of the connecting rod is provided with a movable ring, the inner wall of the movable ring is covered with multiple groups of brushes, and the outer end of the movable ring is provided with a pull rod.

[0007] Preferably, by using a movable ring combined with a laid brush to perform cleaning after endoscopic observation, residues on the surface of the endoscope can be effectively removed, the wear between the endoscope lens and impurities can be reduced, the service life of the endoscope can be extended, and the surface of the endoscope can be cleaned in time, which can provide a clearer field of view and improve the quality of subsequent endoscopic observations; according to different observation and detection needs, different endoscopes can be replaced with connectors, and different endoscopes may have different functions and characteristics, which can adapt to different observation and detection needs, provide clearer images and more accurate measurements, and improve the applicability and observation effect of the device. After the connecting rod is replaced, two sets of pins are used to plug and fix it to avoid shaking and falling off during the observation process, reduce observation errors caused by shaking, and improve the accuracy of observation results. The use of pins for plugging and fixing makes the installation and disassembly of the connecting rod simple and quick, and quickly adapts to different observation and detection needs, thereby improving construction efficiency.

[0008] Preferably, two sets of endoscopes are provided at the outer end of the connecting rod, a docking joint is provided at one end of the connecting rod, a transmission cable is provided on the outside of the connecting rod, a transmission hole for accommodating the docking joint is opened at one end of the transmission cable, and the connecting rod is docked and fixed to the transmission cable through the docking joint.

[0009] Preferably, the docking ring is located at the connection between the transmission cable and the connecting rod, and two groups of pins are provided at the outer end of the docking ring, and the connecting rod is fixedly connected to the docking ring through the pins.

[0010] Preferably, an adjustment plate is provided at the outer end of the observation panel, and a plurality of adjustment buttons are provided on the surface of the adjustment plate.

[0011] Preferably, a soft pad is provided at one end of the adjustment plate away from the observation panel, and a connecting ring is provided at one end of the soft pad, and the transmission cable is electrically connected to the observation panel through the connecting ring.

[0012] Preferably, the soft pad extends through the adjustment plate to the interior, and insulating glue is coated between the soft pad and the adjustment plate.

[0013] Preferably, auxiliary rings are symmetrically provided at the outer end of the observation panel, and the auxiliary rings are fixedly connected to the observation panel.

[0014] Beneficial effects of the utility model:

[0015] 1. Compared with traditional observation devices, the movable ring combined with the laid brush is used to clean the endoscope after observation, which effectively removes residues on the surface of the endoscope, reduces the wear between the endoscope lens and impurities, and extends the service life of the endoscope. The timely cleaning of the endoscope surface can provide a clearer field of view and improve the quality of subsequent endoscopic observations. According to different observation and detection needs, different endoscopes can be replaced with connectors. Different endoscopes may have different functions and characteristics, which can adapt to different observation and detection needs, provide clearer images and more accurate measurements, and improve the scope of application and observation effects of the device. After the connecting rod is replaced, two sets of pins are used to plug and fix it to avoid shaking and falling off during the observation process, reduce observation errors caused by shaking, and improve the accuracy of observation results. The use of pins for plugging and fixing makes the installation and disassembly of the connecting rod simple and quick, quickly adapting to different observation and detection needs, and improving construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 Shown is a schematic diagram of the overall structure of the observation device of the present utility model;

[0017] Figure 2 Shown is a schematic diagram of the movable ring structure of the observation device of the present utility model;

[0018] Figure 3 Shown is a schematic diagram of the connecting rod structure of the observation device of the present invention;

[0019] Figure 4 Shown is a schematic diagram of the docking ring structure of the observation device of the present invention.

[0020] Explanation of the accompanying reference numerals: 1. Observation panel; 201. Transmission cable; 202. Docking ring; 203. Pin; 204. Connecting rod; 205. Endoscope; 206. Movable ring; 207. Brush; 208. Pull rod; 209. Docking joint; 210. Connecting ring; 211. Cushion; 212. Adjustment plate; 213. Auxiliary ring. DETAILED DESCRIPTION

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] See also Figures 1-4The utility model provides an embodiment: a sleeve grouting fullness observation device, comprising an observation surface and an adjustment observation component; the outer end of the observation panel 1 is installed with an adjustment observation component for adapting and adjusting according to different observation conditions, and the adjustment observation component includes a transmission cable 201, a docking ring 202, a pin 203, a connecting rod 204, an endoscope 205, a movable ring 206, a connecting ring 210, and an adjustment plate 212. The connecting rod 204 is located on the outside of the observation panel 1, and the outer end of the connecting rod 204 is provided with a movable ring 206. The inner wall of the movable ring 206 is covered with multiple groups of brushes 207, and the outer end of the movable ring 206 is provided with a pull rod 208.

[0023] See also Figure 1-Figure 2 In this embodiment, two groups of endoscopes 205 are provided at the outer end of the connecting rod 204, a docking joint 209 is provided at one end of the connecting rod 204, a transmission cable 201 is provided on the outer side of the connecting rod 204, and a transmission hole for accommodating the docking joint 209 is opened at one end of the transmission cable 201. The connecting rod 204 is docked and fixed with the transmission cable 201 through the docking joint 209. Different endoscopes 205 can be replaced with the connecting head according to different observation and detection needs. Different endoscopes 205 may have different functions and characteristics, which can adapt to different observation and detection needs, provide clearer images and more accurate measurements, and improve the device. The scope of application and observation effect of the device, the docking ring 202 is located at the connection between the transmission cable 201 and the connecting rod 204, and two groups of pins 203 are provided at the outer end of the docking ring 202. The connecting rod 204 is fixedly connected to the docking ring 202 through the pins 203. After the connecting rod 204 is replaced, it is plugged and fixed with the two groups of pins 203 to avoid shaking and falling off during the observation process, reduce the observation error caused by shaking, and improve the accuracy of the observation results. The use of the pins 203 for plugging and fixing makes the installation and disassembly of the connecting rod 204 simple and quick, and it can quickly adapt to different observation and detection needs, thereby improving construction efficiency.

[0024] See also Figure 1-Figure 3 In this embodiment, an adjustment plate 212 is provided at the outer end of the observation panel 1, and a plurality of adjustment buttons are provided on the surface of the adjustment plate 212. By using the adjustment plate 212 in combination with the adjustment buttons to press the adjustment device according to the observation needs, the observation angle and position can be accurately adjusted so as to more clearly observe the grouting condition inside the sleeve and improve the observation efficiency and accuracy. A soft pad 211 is provided at the end of the adjustment plate 212 away from the observation panel 1, and a connecting ring 210 is provided at one end of the soft pad 211. The transmission cable 201 is electrically connected to the observation panel 1 through the connecting ring 210. The transmission cable 201 is fixed by the connecting ring 210 to transmit information, thereby preventing the cable from being accidentally pulled or damaged during operation, reducing signal interruption caused by loose or falling cables, ensuring stable data transmission, and improving overall safety.

[0025] See also Figure 2-Figure 4 In this embodiment, the soft pad 211 extends to the inside through the adjustment plate 212, and insulating glue is coated between the soft pad 211 and the adjustment plate 212. The use of the soft pad 211 can protect the bending degree of the transmission cable 201, reduce the direct friction between the cable and the hard surface during the bending process, reduce wear, and extend the service life of the cable. Auxiliary rings 213 are symmetrically provided at the outer end of the observation panel 1. The auxiliary rings 213 are fixedly connected to the observation panel 1. The use of two sets of auxiliary rings 213 can assist in the grip of the device and provide additional support points, so that the operator can be more stable when gripping and reduce the risk of accidental slippage.

[0026] When working, first, according to different observation and detection needs, different endoscopes 205 are replaced by connecting heads. Different endoscopes 205 may have different functions and characteristics, which can adapt to different observation and detection needs and provide clearer images. After the connecting rod 204 is replaced, two sets of pins 203 are inserted into the docking ring 202 to assist in the connection and fixation of the connecting rod 204 and the transmission cable 201, so as to avoid shaking and falling off during the observation process and reduce the observation error caused by shaking. The pins 203 are used for plugging and fixing, so that the installation and removal of the connecting rod 204 becomes simple and quick, and it can quickly adapt to different observation and detection needs. When it is necessary to observe the fullness, the connecting rod 204 is inserted into the sleeve and the adjustment is used. The node plate 212 is combined with the adjustment button to press the adjustment device according to the observation needs to accurately adjust the observation angle and position so as to observe the grouting situation inside the sleeve more clearly. The observation panel 1 is used to observe the images fed back by the two groups of endoscopes 205 to judge the internal situation of the sleeve. After observing and detecting the inside of the sleeve, the pull rod 208 is manually grasped to pull the movable ring 206 to slide along the outer wall of the connecting rod 204, so that the movable ring 206 is combined with the laid brush 207 to brush after observation with the endoscope 205, effectively removing the residue on the surface of the endoscope 205, reducing the wear between the endoscope 205 lens and impurities, and timely cleaning the surface of the endoscope 205 to provide a clearer field of view and facilitate the quality of subsequent secondary observations with the endoscope 205.

[0027] Through the above steps, by using the movable ring 206 in combination with the laid brush 207 to clean the endoscope 205 after observation, the residue on the surface of the endoscope 205 is effectively removed, the wear between the endoscope 205 lens and impurities is reduced, the service life of the endoscope 205 is extended, and the surface of the endoscope 205 is cleaned in time, which can provide a clearer field of view and improve the quality of subsequent endoscopic 205 observations; according to different observation and detection needs, different endoscopes 205 are replaced by the connector. Different endoscopes 205 may have different functions and characteristics, which can adapt to different observation and detection needs, provide clearer images and more accurate measurements, and improve the applicability and observation effect of the device. After the connecting rod 204 is replaced, it is plugged and fixed with two sets of pins 203 to avoid shaking and falling off during the observation process, reduce observation errors caused by shaking, and improve the accuracy of the observation results. The use of the pins 203 for plugging and fixing makes the installation and disassembly of the connecting rod 204 simple and quick, quickly adapting to different observation and detection needs, and improving construction efficiency.

Claims

1. A sleeve grouting fullness observation device, comprising an observation panel (1); characterized in that: The invention also includes an adjustment observation component; the outer end of the observation panel (1) is installed with an adjustment observation component for adapting and adjusting according to different observation conditions, and the adjustment observation component includes a transmission cable (201), a docking ring (202), a latch (203), a connecting rod (204), an endoscope (205), a movable ring (206), a connecting ring (210), and an adjustment plate (212); the connecting rod (204) is located on the outer side of the observation panel (1); the outer end of the connecting rod (204) is provided with a movable ring (206); the inner wall of the movable ring (206) is paved with multiple groups of brushes (207); and the outer end of the movable ring (206) is provided with a pull rod (208).

2. The sleeve grouting fullness observation device according to claim 1, characterized in that: Two groups of endoscopes (205) are provided at the outer end of the connecting rod (204), a docking joint (209) is provided at one end of the connecting rod (204), a transmission cable (201) is provided at the outer side of the connecting rod (204), a transmission hole for accommodating the docking joint (209) is provided at one end of the transmission cable (201), and the connecting rod (204) is docked and fixed with the transmission cable (201) via the docking joint (209).

3. The sleeve grouting fullness observation device according to claim 2, characterized in that: The docking ring (202) is located at the connection between the transmission cable (201) and the connecting rod (204). Two groups of latches (203) are provided at the outer end of the docking ring (202). The connecting rod (204) is fixedly connected to the docking ring (202) through the latches (203).

4. The sleeve grouting fullness observation device according to claim 3, characterized in that: An adjustment plate (212) is provided at the outer end of the observation panel (1), and a plurality of adjustment buttons are provided on the surface of the adjustment plate (212).

5. The sleeve grouting fullness observation device according to claim 4, characterized in that: A soft pad (211) is provided at one end of the adjustment plate (212) away from the observation panel (1), and a connecting ring (210) is provided at one end of the soft pad (211). The transmission cable (201) is electrically connected to the observation panel (1) via the connecting ring (210).

6. The sleeve grouting fullness observation device according to claim 5, characterized in that: The soft pad (211) passes through the adjustment plate (212) and extends to the inside. Insulation glue is coated between the soft pad (211) and the adjustment plate (212).

7. The sleeve grouting fullness observation device according to claim 4, characterized in that: An auxiliary ring (213) is symmetrically provided at the outer end of the observation panel (1), and the auxiliary ring (213) is fixedly connected to the observation panel (1).