Reinforced cement chuck

By designing reinforced cement chucks, including fixed disks for reinforced structures and horizontal measuring frames for inclination detection, the shortcomings of existing cement chucks in structural strength and fixed disk design are solved, and the inclination status of the telephone poles are detected and warned in a timely manner, improving the stability and safety of the telephone poles.

CN223003841UActive Publication Date: 2025-06-20QINGDAO XINRUIHUI CEMENT PRODUCTS CO LTD
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Patent Information

Application Number
CN202421322777.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-12
Publication Date
2025-06-20
Estimated Expiration
2034-06-12

AI Technical Summary

Technical Problem

The existing cement chucks are insufficient in structural strength, the fixed disk design lacks an effective connection mechanism, and the tilt detection mechanism, which poses a threat to the stability of the telephone pole.

Method used

A reinforced cement chuck is designed, including a first fixing disk, a second fixing disk, a iron plate, a connecting frame, a horizontal measuring frame and a control box. The structural strength of the fixed disk is enhanced by the setting of the connecting frame and the iron plate; the horizontal measuring frame and liquid level sensor are used to detect tilt and send an early warning signal through the control box.

Benefits of technology

It effectively avoids the chipping phenomenon of the contact position between the pole and the cement chuck, enhances the clamping force on the pole, promptly detects and warns the inclined state of the pole, and improves the stability and safety of the pole.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223003841U_ABST
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Abstract

The utility model provides a reinforced cement chuck which comprises a first fixing disc, a second fixing disc, first iron plates, a connecting frame, a second iron plate, a horizontal measuring frame and a control box. A connecting frame is installed between the first iron plate on the first fixing disc and the first iron plate on the second fixing disc in a sliding mode. Second iron plates are fixed to the outer side faces of the first fixing disc and the second fixing disc respectively, horizontal measuring frames are fixed to the first fixing disc and the second fixing disc respectively, and the horizontal measuring frames are connected with the control box through data lines. Through the arrangement of the second iron plate, the connecting frame and the horizontal measuring frame, the situation that clamping force is weakened due to water and soil loss can be avoided when the telegraph pole is used, and then early warning can be conducted when the telegraph pole inclines.
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Description

Technical Field

[0001] The utility model belongs to the technical field of cement chucks, and particularly relates to a reinforced cement chuck. Background Technique

[0002] During the power transmission process, the stability of the utility pole is crucial for ensuring the continuity and safety of power supply. To ensure the stability of the utility pole and prevent it from toppling, a cement chuck is often used to fix the bottom of the utility pole. As a precast cement product, the design purpose of the cement chuck is to withstand the overturning force generated by the utility pole, but there are some problems in actual applications.

[0003] First of all, there are certain deficiencies in the structural strength of the existing cement chucks. Due to the weight of the utility pole and the influence of external environmental factors (such as wind force, temperature change, etc.), the position where the utility pole contacts the cement chuck is prone to cracking. This not only reduces the service life of the cement chuck but also may pose a threat to the stability of the utility pole.

[0004] Secondly, there are defects in the design of the fixing plates inside the existing cement chucks. The fixing plates are usually set independently, and there is a lack of an effective connection mechanism between them. When natural phenomena such as soil erosion occur, the fixing plates are prone to shift, resulting in a weakened clamping force on the utility pole. The weakening of the clamping force makes the utility pole more vulnerable to the external environment, thus increasing the risk of the utility pole toppling.

[0005] In addition, the existing cement chucks also lack an effective tilt detection mechanism. During the use of the utility pole, due to factors such as unstable foundation, soil erosion, and wind force, the utility pole may tilt. However, the existing cement chucks cannot automatically detect and warn of the tilted state of the utility pole, but rely on manual inspections. This method is not only inefficient but also difficult to detect and solve problems such as the tilt of the utility pole in a timely manner, which is likely to cause potential safety hazards.

[0006] Therefore, it is very necessary to invent a reinforced cement chuck. Content of the Utility Model

[0007] The purpose of the utility model is to provide a reinforced cement chuck to solve the problems mentioned in the background technique.

[0008] To solve the above technical problems, the utility model is realized through the following technical solutions:

[0009] The utility model relates to a reinforced cement chuck, which comprises a first fixing plate, a second fixing plate, a first iron plate, a connecting frame, a second iron plate, a horizontal measuring frame and a control box. The two ends of the first fixing plate and the second fixing plate are respectively fixed with a first iron plate, and a connecting frame is slidably installed between the first iron plates on the first fixing plate and the second fixing plate; the first fixing plate and the second fixing plate have the same shape and are symmetrically arranged; the outer sides of the first fixing plate and the second fixing plate are respectively fixed with a second iron plate, and the second iron plates are respectively attached to the outer side of the electric pole; the first fixing plate and the second fixing plate are respectively fixed with a horizontal measuring frame through bolts, and the horizontal measuring frames are respectively connected to the control box through data lines, and the control box is fixed to the outer side of one of the horizontal measuring frames through bolts.

[0010] Further, the connecting frame comprises a first slider, a stud, a sleeve and a second slider. The first slider is slidably installed on the first iron plate of the first fixing plate, and a stud is fixed to the outer side of the first slider by welding; the outer side of the stud is installed with a sleeve through thread engagement, and the other end of the sleeve is rotatably connected to the second slider through a support bearing; the second slider is slidably installed on the first iron plate of the second fixing plate. Such a setting can make the first fixing plate and the second fixing plate form a whole.

[0011] Further, the horizontal measuring frame comprises a housing, a sealing cover, an inner tube and a liquid level sensor. The housing is fixed to the upper side of the first fixing plate or the second fixing plate through bolts, and the upper end of the housing is fixed with a sealing cover through thread engagement; an inner tube is fixed to the inside of the housing by welding, and a liquid level sensor is arranged outside the inner tube. The liquid level sensor is fixed to the inner wall of the housing through bolts and is connected to the control box through a data line; the inside of the inner tube is filled with liquid. Such a setting can detect whether the first fixing plate and the second fixing plate are tilted.

[0012] Further, a controller and a wireless transmission module are respectively fixed inside the control box, and the controller is respectively connected to the liquid level sensor and the wireless transmission module through data lines. Such a setting can transmit the signal detected by the liquid level transmission module to the power terminal for early warning to remind the staff that there is a problem with the electric pole at this position.

[0013] Compared with the prior art, the utility model has the following beneficial effects:

[0014] With the setting of the second iron plate of the utility model, during use, it can support between the first fixing plate and the second fixing plate and the electric pole, thus avoiding the phenomenon of fragmentation at the position where the electric pole contacts the cement chuck.

[0015] The setting of the connecting frame of the present utility model can, by rotating the sleeve, make the distance between the first slider and the second slider adapt to the distance between the first fixed plate and the second fixed plate, and then slide the first slider and the second slider onto the corresponding first iron plates respectively, so that the first fixed plate and the second fixed plate form a whole, thereby avoiding the loss of the clamping force of the first fixed plate and the second fixed plate on the electric pole due to soil and water loss.

[0016] The setting of the horizontal measurement frame of the present utility model is such that during use, when the first fixed plate and the second fixed plate are tilted due to soil and water loss, the horizontal measurement frame will tilt accordingly. As the tilt angle increases, the liquid inside the inner tube will gradually flow to the outside of the inner tube and come into contact with the liquid level sensor. At this time, the liquid level sensor will transmit a signal to the control box, and then the control box will send this signal to the power terminal for early warning to remind the staff that there is a problem with the electric pole at this position. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for describing the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0018] Figure 1 is a schematic structural diagram of the present utility model.

[0019] Figure 2 is a schematic structural diagram of the second iron plate of the present utility model.

[0020] Figure 3 is a schematic structural diagram of the connecting frame of the present utility model.

[0021] Figure 4 is a schematic structural diagram of the horizontal measurement frame of the present utility model.

[0022] In the figure:

[0023] 1 - first fixed plate, 2 - second fixed plate, 3 - first iron plate, 4 - connecting frame, 41 - first slider, 42 - stud, 43 - sleeve, 44 - second slider, 5 - second iron plate, 6 - horizontal measurement frame, 61 - outer shell, 62 - sealing cover, 63 - inner tube, 64 - liquid level sensor, 7 - control box. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] 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. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0025] In the description of the present utility model, it should be understood that the terms "upper", "middle", "outer", "inner", "around", etc. indicating the orientation or positional relationship are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the components or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model.

[0026] Please refer to Figure 1 and Figure 2 As shown, the present utility model is a reinforced cement chuck, including a first fixed plate 1, a second fixed plate 2, a first iron plate 3, a connecting frame 4, a second iron plate 5, a horizontal measuring frame 6 and a control box 7. First iron plates 3 are respectively fixed at both ends of the first fixed plate 1 and the second fixed plate 2. Among them, a connecting frame 4 is slidably installed between the first iron plate 3 on the first fixed plate 1 and the first iron plate 3 on the second fixed plate 2; the first fixed plate 1 and the second fixed plate 2 have the same shape, and the first fixed plate 1 and the second fixed plate 2 are symmetrically arranged; second iron plates 5 are respectively fixed on the outer sides of the first fixed plate 1 and the second fixed plate 2, and the second iron plates 5 are respectively in contact with the outer side of the electric pole; horizontal measuring frames 6 are respectively fixed on the first fixed plate 1 and the second fixed plate 2 by bolts. Among them, the horizontal measuring frames 6 are respectively connected to the control box 7 through data lines, and the control box 7 is fixed on the outer side of one of the horizontal measuring frames 6 by bolts.

[0027] As Figure 3As shown in the figure, the connecting frame 4 includes a first slider 41, a stud 42, a sleeve 43 and a second slider 44. The first slider 41 is slidably mounted on the first iron plate 3 on the first fixed disk 1, and a stud 42 is fixedly welded to the outer side surface of the first slider 41. The outer side surface of the stud 42 is threadedly engaged with a sleeve 43, wherein the other end of the sleeve 43 is rotatably connected to the second slider 44 through a support bearing. The second slider 44 is slidably mounted on the first iron plate 3 on the second fixed disk 2. After the first fixed disk 1 and the second fixed disk 2 are respectively placed in corresponding positions, the distance between the first slider 41 and the second slider 44 can be adjusted to be suitable for the distance between the first fixed disk 1 and the second fixed disk 2 by rotating the sleeve 43, and then the first slider 41 and the second slider 44 are respectively slidably mounted on the corresponding first iron plates 3, so that the first fixed disk 1 and the second fixed disk 2 form an integral body, thereby preventing the first fixed disk 1 and the second fixed disk 2 from losing the clamping force on the electric pole due to soil and water loss.

[0028] As Figure 4 shown in the figure, the horizontal measurement frame 6 includes a housing 61, a sealing cover 62, an inner tube 63 and a liquid level sensor 64. The housing 61 is fixedly bolted to the upper side surface of the first fixed disk 1 or the second fixed disk 2, and a sealing cover 62 is threadedly engaged and fixed to the upper end of the housing 61. The inner tube 63 is fixedly welded inside the housing 61, wherein a liquid level sensor 64 is arranged outside the inner tube 63. The liquid level sensor 64 is fixedly bolted to the inner wall of the housing 61, and the liquid level sensor 64 is connected to the control box 7 through a data line. The inside of the inner tube 63 is filled with liquid. During use, when the first fixed disk 1 and the second fixed disk 2 are tilted due to soil and water loss, the horizontal measurement frame 6 will tilt accordingly. As the tilt angle increases, the liquid inside the inner tube 63 will gradually flow outside the inner tube 63 and come into contact with the liquid level sensor 64. At this time, the liquid level sensor 64 will transmit a signal to the control box 7.

[0029] Specifically, a controller and a wireless transmission module are respectively fixed inside the control box 7. The controller is respectively connected to the liquid level sensor 64 and the wireless transmission module through data lines. During use, when the liquid level transmission module 64 detects a signal, the signal can be transmitted to the controller, and then the controller sends the signal to the power terminal through the wireless transmission module, so as to give an early warning and remind the staff that there is a problem with the electric pole at this position.

[0030] Please refer to Figures 1-4As shown in the figure, the utility model is a reinforced cement chuck, and its working principle is as follows: when in use, first place the first fixed plate 1 and the second fixed plate 2 in their corresponding positions, so that the first fixed plate 1 and the second fixed plate 2 clamp the electric pole, then connect the first fixed plate 1 and the second fixed plate 2 together through the connecting frame 4, and finally fix the horizontal measuring frame 6 on the corresponding first fixed plate 1 and second fixed plate 2.

[0031] In the description of this specification, the description with reference to terms such as "one embodiment", "example", "specific example", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0032] The preferred embodiments of the utility model disclosed above are only used to help illustrate the utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the utility model to the specific embodiments described. Obviously, many modifications and changes can be made according to the content of this specification. These embodiments are selected and specifically described in this specification in order to better explain the principle and practical application of the utility model, so that those skilled in the art in the relevant technical field can well understand and utilize the utility model. The utility model is only limited by the claims and their full scope and equivalents.

Claims

1. A reinforced cement chuck, comprising a first fixed plate (1), a second fixed plate (2), a first iron plate (3), a connecting frame (4), a second iron plate (5), a horizontal measuring frame (6) and a control box (7), characterized in that: A first iron plate (3) is fixed to both ends of the first fixing plate (1) and the second fixing plate (2), wherein a connecting frame (4) is slidably mounted between the first iron plate (3) on the first fixing plate (1) and the first iron plate (3) on the second fixing plate (2); the first fixing plate (1) and the second fixing plate (2) have the same shape, and the first fixing plate (1) and the second fixing plate (2) are symmetrically arranged; second iron plates (5) are fixed to the outer side surfaces of the first fixing plate (1) and the second fixing plate (2), wherein the second iron plates (5) are arranged to fit the outer side surfaces of the electric poles; and a horizontal measuring frame (6) is fixed to the first fixing plate (1) and the second fixing plate (2), wherein the horizontal measuring frame (6) is connected to a control box (7) via a data cable, and the control box (7) is fixed to the outer side surface of one of the horizontal measuring frames (6).

2. A reinforced cement chuck as claimed in claim 1, characterized in that: The connecting frame (4) comprises a first slider (41), a stud (42), a sleeve (43) and a second slider (44); the first slider (41) is slidably mounted on a first iron plate (3) on a first fixed disk (1), and a stud (42) is fixed to an outer side surface of the first slider (41); a sleeve (43) is mounted on an outer side surface of the stud (42) through threaded engagement, wherein the other end of the sleeve (43) is rotatably connected to the second slider (44) through a support bearing; and the second slider (44) is slidably mounted on the first iron plate (3) on a second fixed disk (2).

3. A reinforced cement chuck as claimed in claim 1, characterized in that: The horizontal measuring frame (6) comprises an outer shell (61), a sealing cover (62), an inner tube (63) and a liquid level sensor (64); the outer shell (61) is fixed to the upper side of the first fixed disk (1) or the second fixed disk (2), and the sealing cover (62) is fixed to the upper end of the outer shell (61) by threaded engagement; the inner tube (63) is fixed inside the outer shell (61), wherein the outer side of the inner tube (63) is provided with a liquid level sensor (64), the liquid level sensor (64) is fixed to the inner wall of the outer shell (61), and the liquid level sensor (64) is connected to the control box (7) via a data line; the inner tube (63) is filled with liquid.

4. A reinforced cement chuck as claimed in claim 3, characterized in that: A controller and a wireless transmission module are respectively fixed inside the control box (7), wherein the controller is connected to the liquid level sensor (64) and the wireless transmission module via data cables.