Anti-toppling device used after line pipe embedding

By designing a wire pipe pre-embedded anti-tilt device that includes an adjustment positioning mechanism, an adjustment locking mechanism and an anti-tilt mechanism, the problem of inconvenience of existing fixing devices when fixing multiple parallel pipelines is solved, and efficient positioning, locking and anti-tilt of embedded pipes of different specifications and spacings is achieved.

CN223049590UActive Publication Date: 2025-07-01JIANGSU DONGLIU CONSTRUCTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421470926.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-07-01
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

The existing fixing devices that position vertically embedded pipelines are inconvenient when used, especially when multiple parallel pipelines need to be fixed, multiple fixing parts need to be installed in advance, resulting in a cumbersome installation process.

Method used

A wire pipe pre-embedded anti-tilt device is designed, including supporting slide rails, adjustment frames, support frames, and locking frames. By adjusting the positioning mechanism, adjusting the locking mechanism and tightly attached to the anti-tilt mechanism, the functions of positioning, locking and anti-tilt are realized for the embedded pipes of different specifications and spacings.

Benefits of technology

The device adjusts the positioning mechanism and adjusts the locking mechanism to facilitate the staff to freely adjust the position of the device, adapt to the embedded pipes of different spacings, and improves the stability and anti-tilt effect of the embedded pipes by closely adhering to the anti-tilt mechanism.

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Abstract

The utility model discloses an anti-toppling device after line pipe embedding, which belongs to the technical field of embedded pipes and comprises a support slide rail, an adjusting frame, support frames and a locking frame, the adjusting frame is slidably arranged in front of the inside of the support slide rail through a slider, the support frames are fixedly mounted on two sides of the front of the adjusting frame, and the locking frame is slidably arranged between the front of the inside of the support frames. And an adjusting and positioning mechanism capable of positioning the parallel embedded pipes and preventing the embedded pipes from toppling is arranged on the inner side of the adjusting frame. After a damping telescopic rod B and an outer spring pop-up limiting block slide into the inner side of a groove to limit and fix a locking clamping frame and a limiting clamping frame, a worker installs other adjusting frames at designated positions in the same mode, and then a plurality of adjusting frames and locking frames are arranged on the outer sides of corresponding embedded pipes; the embedded pipes are positioned between the adjusting frame and the locking frame, so that a worker can conveniently and freely adjust the position of the adjusting frame to position the embedded pipes at different intervals, and displacement and toppling of the embedded pipes caused by impact of concrete can be avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of embedded pipes, and particularly relates to an anti-tipping device for embedded pipes after embedding. Background Art

[0002] Embedded pipes are a pipeline system pre-installed in a building structure, and it is necessary to ensure that the pipes can be firmly and safely integrated into the overall building. During the installation process, the position, depth, and angle of the embedded pipes need to strictly follow the design requirements, and effective protection measures should be taken to ensure that the pipes will not be damaged or cause pipe displacement during subsequent construction, which may affect the subsequent construction progress.

[0003] Among them, through retrieval, it is found that the application number is CN202122199048.8, which is a fixing device capable of positioning vertical embedded pipelines. This fixing device capable of positioning vertical embedded pipelines has two second mounting parts of the fixing device for vertical embedded pipelines respectively installed on two adjacent columns of reserved steel bars. The embedded pipeline fixing part can position the embedded pipeline according to construction requirements, reducing the positioning error. The embedded pipeline fixing part uses thin-walled steel pipes, which is more convenient and faster to install compared with the binding of iron wires, reducing the working time. Among them, the deficiencies are as follows:

[0004] When the staff uses this fixing device capable of positioning vertical embedded pipelines to fix the pipelines, the two second mounting parts are respectively sleeved on two adjacent columns of reserved steel bars, and the embedded pipelines are passed through the embedded pipeline fixing parts for fixing. When the pipelines are slid into the steel pipe fixing parts for fixing, since the position of the steel pipes cannot be freely adjusted, it is easy to cause that when the staff needs to fix multiple juxtaposed pipelines, multiple fixing parts need to be installed in advance to fix the multiple juxtaposed pipelines, making this fixing device capable of positioning vertical embedded pipelines slightly inconvenient to use. Content of the Utility Model

[0005] The purpose of the utility model is to provide an anti-tipping device for embedded pipes after embedding in order to solve the problem that the above-mentioned fixing device capable of positioning vertical embedded pipelines is slightly inconvenient to use.

[0006] The technical scheme adopted by the utility model is as follows: an anti-tipping device for embedded pipes after embedding, including a support slide rail, an adjustment frame, a support frame, and a locking frame. An adjustment frame is slidably arranged inside the front of the support slide rail through a slider. Support frames are fixedly installed on both sides in front of the adjustment frame. A locking frame is slidably arranged between the front parts inside the support frames. An adjustment and positioning mechanism for positioning and preventing tipping of juxtaposed embedded pipes is arranged inside the adjustment frame. An adjustment and locking mechanism for firmly locking and preventing tipping of embedded pipes of different specifications and a close-fitting anti-tipping mechanism for stably pressing and fixing the embedded pipes are respectively arranged between the adjustment frame and the locking frame.

[0007] Among them, the adjustment and positioning mechanism is composed of a limit card slot, a sliding groove, a limit card frame, a damping telescopic rod A, a locking card frame, a limit groove, a groove, a damping telescopic rod B, and a limit block. The rear of the inner wall of the adjustment frame is embedded with a sliding groove. A limit card frame is slidably arranged on the side of the inner part of the sliding groove, and one corner of the side of the limit card frame is inclined. The rear of the inner wall of the support slide rail is embedded with a limit card slot. There are several limit card slots, which are arranged in equidistant parallel, and the side of the inner wall of the limit card slot is inclined. The limit card frame is slidably arranged in a fitting manner inside the limit card slot. A damping telescopic rod A is fixedly installed between the front of the limit card frame and the rear of the inner wall of the sliding groove, and a spring is arranged in a matching manner on the outer side of the damping telescopic rod A. The locking card frame is rotatably arranged on the side of the limit card frame through a bearing. A limit groove is embedded in the rear of the inner wall of the sliding groove close to the rear of the locking card frame, and the limit groove is arc-shaped. The locking card frame is slidably arranged in a fitting manner inside the limit groove. A groove is embedded in the front of the locking card frame, and the groove is semi-circular. A damping telescopic rod B is fixedly installed in the front of the inner wall of the sliding groove close to the front of the locking card frame, and a spring is arranged in a matching manner on the outer side of the damping telescopic rod B. A limit block is fixedly installed behind the end of the damping telescopic rod B, and the limit block is semi-circular. The limit block is slidably arranged in a fitting manner inside the groove.

[0008] Among them, the adjustment and locking mechanism is composed of a limit groove, a damping telescopic rod C, and a limit block. The side of the support frame is embedded with a limit groove. There are several limit grooves, which are arranged in equidistant parallel, and the rear of the inner wall of the limit groove is inclined. Damping telescopic rods C are fixedly installed on both sides of the inner wall of the locking frame, and springs are arranged in a matching manner on the outer sides of the damping telescopic rods C. A limit block is fixedly installed on the side of the end of the damping telescopic rod C, and the rear of the limit block is inclined. The limit block is slidably arranged in a fitting manner inside the limit groove.

[0009] Among them, the close anti-tipping mechanism is composed of a rubber pressing pad and a spring. Rubber pressing pads are fixedly installed relatively on the surfaces of the adjustment frame and the locking frame, and the rubber pressing pads are arc-shaped. Springs are fixedly installed between the front sides of the rubber pressing pads and the corresponding adjustment frame and locking frame. There are several springs, which are arranged in equidistant parallel.

[0010] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present utility model are:

[0011] 1. After the pre-buried pipeline is installed, the anti-tipping device is provided with an adjustment and positioning mechanism, which enables the staff to cooperate among the limit card slot, the sliding groove, the limit card frame, the damping telescopic rod A, the locking card frame, the limit slot, the groove, the damping telescopic rod B and the limit block. By using the limit card frame to freely slide and limit inside the limit card slot through the damping telescopic rod A and the outer spring, and the limit block to freely slide and limit inside the groove through the damping telescopic rod B and the outer spring, it is convenient for the staff to freely adjust the position of the adjustment frame to position pre-buried pipes with different spacings, and it can prevent the pre-buried pipes from being displaced and toppled due to the impact of concrete.

[0012] 2. After the pre-buried pipeline is installed, the anti-tipping device is provided with an adjustment and locking mechanism, which enables the staff to cooperate among the limit groove, the damping telescopic rod C and the limit block. By using the limit block to freely slide and limit inside the limit groove through the damping telescopic rod C and the outer spring, it is convenient for the staff to lock and prevent tipping of pre-buried pipes with different specifications.

[0013] 3. After the pre-buried pipeline is installed, the anti-tipping device is provided with a close-contact anti-tipping mechanism, which enables the staff to cooperate between the rubber pressing pad and the spring. By using the rubber pressing pads on the opposite surfaces of the locking frame and the adjustment frame to contact the surface of the pre-buried pipe, and squeezing the rubber pressing pads to drive several springs to contract, the contracted springs generate a reaction force on the rubber pressing pads, so that the rubber pressing pads are closely attached to the surface of the pre-buried pipe, the effect of firmly fixing and preventing tipping between juxtaposed pre-buried pipes is improved. Brief Description of the Drawings

[0014] Figure 1 It is a top-down three-dimensional structural schematic diagram of the anti-tipping device for pre-buried pipes of the present invention;

[0015] Figure 2 It is a top-down sectional structural schematic diagram of the anti-tipping device for pre-buried pipes of the present invention in the use state;

[0016] Figure 3 It is a top-down sectional structural schematic diagram of the adjustment frame of the present invention;

[0017] Figure 4 For the present invention Figure 3 The enlarged structural schematic diagram at A in;

[0018] Figure 5 For the present invention Figure 2 The enlarged structural schematic diagram at B in;

[0019] Figure 6 For the present invention Figure 2 The enlarged structural schematic diagram of the second embodiment at B in;

[0020] Markings in the figure: 1, support slide rail; 101, limit card slot; 2, adjustment frame; 201, chute; 202, limit card frame; 203, damping telescopic rod A; 204, locking card frame; 205, limit groove; 206, groove; 207, damping telescopic rod B; 208, limit block; 3, support frame; 301, limit groove; 4, locking frame; 401, damping telescopic rod C; 402, limit card block; 403, rubber pressing pad; 404, spring. Detailed implementation mode

[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.

[0022] In the present invention:

[0023] Embodiment 1: Refer to Figures 1-5 , an anti-tipping device after pre-burying a wire pipe, including a support slide rail 1, an adjustment frame 2, a support frame 3, and a locking frame 4. The adjustment frame 2 is slidably arranged inside the front of the support slide rail 1 through a slider. The support frames 3 are fixedly installed on both sides in front of the adjustment frame 2. The locking frame 4 is slidably arranged between the fronts inside the support frames 3. An adjustment and positioning mechanism for positioning and preventing the pre-buried pipes arranged side by side from tipping over is arranged inside the adjustment frame 2. An adjustment and locking mechanism for firmly locking and preventing the pre-buried pipes of different specifications from tipping over, and a close-fitting anti-tipping mechanism for stably pressing and fixing the pre-buried pipes are respectively arranged between the adjustment frame 2 and the locking frame 4.

[0024] Refer to Figures 2-5 , further, the adjustment and positioning mechanism is composed of a limit card slot 101, a chute 201, a limit card frame 202, a damping telescopic rod A 203, a locking card frame 204, a limit groove 205, a groove 206, a damping telescopic rod B 207, and a limit block 208;

[0025] A chute 201 is embedded in the rear of the inner wall of the adjusting frame 2. A limit clamping frame 202 is slidably arranged on the side of the inner part of the chute 201, and one corner of the side of the limit clamping frame 202 is arranged in an inclined shape. A limit clamping groove 101 is embedded in the rear of the inner wall of the support slide rail 1. There are several limit clamping grooves 101, and they are arranged in an equidistant and parallel manner. The side of the inner wall of the limit clamping groove 101 is arranged in an inclined shape, and the limit clamping frame 202 is slidably arranged in a fitting manner inside the limit clamping groove 101. A damping telescopic rod A 203 is fixedly installed between the front of the limit clamping frame 202 and the rear of the inner wall of the chute 201, and a spring is arranged in a matching manner on the outer side of the damping telescopic rod A 203. A locking clamping frame 204 is rotatably arranged on the side of the limit clamping frame 202 through a bearing. A limit groove 205 is embedded in the rear of the inner wall of the chute 201 near the rear of the locking clamping frame 204, and the limit groove 205 is arranged in an arc shape, and the locking clamping frame 204 is slidably arranged in a fitting manner inside the limit groove 205. A groove 206 is embedded in the front of the locking clamping frame 204, and the groove 206 is arranged in a semi-circular shape. A damping telescopic rod B 207 is fixedly installed on the front of the inner wall of the chute 201 near the front of the locking clamping frame 204, and a spring is arranged in a matching manner on the outer side of the damping telescopic rod B 207. A limit block 208 is fixedly installed at the rear of the end of the damping telescopic rod B 207, and the limit block 208 is arranged in a semi-circular shape, and the limit block 208 is slidably arranged in a fitting manner inside the groove 206. When the staff needs to prevent the plurality of embedded pipes arranged side by side on the steel reinforcement cage from tipping over, one of the adjusting frames 2 is slid into the inner side of the support slide rail 1 through a slider, squeezing the limit clamping frame 202 to drive the damping telescopic rod A 203 and the outer spring to contract. After the adjusting frame 2 slides to the designated position, the damping telescopic rod A 203 and the outer spring pop out the limit clamping frame 202 and slide it into the inner side of the relative limit clamping groove 101. Then, the locking clamping frame 204 is rotated half a turn to slide out of the limit groove 205, and the damping telescopic rod B 207 and the outer spring are squeezed to drive the limit block 208 to contract. After driving the groove 206 to approach the limit block 208, the damping telescopic rod B 207 and the outer spring pop out the limit block 208 and slide it into the groove 206 to limit and fix the locking clamping frame 204 and the limit clamping frame 202. After that, the staff installs the other adjusting frames 2 at the designated positions in the same way. Then, the plurality of adjusting frames 2 and the locking frames 4 are placed outside the corresponding embedded pipes, and the embedded pipes are positioned between the adjusting frames 2 and the locking frames 4, which is convenient for the staff to freely adjust the position of the adjusting frames 2 to position the embedded pipes with different spacings, and can prevent the embedded pipes from being displaced and tipping over due to the impact of concrete.

[0026] Refer to Figures 1-3 , further, the adjusting and locking mechanism is composed of a limit groove 301, a damping telescopic rod C 401 and a limit block 402;

[0027] A limiting groove 301 is embedded on the side of the support frame 3. There are several limiting grooves 301, which are arranged in equidistant parallel. The rear of the inner wall of the limiting groove 301 is inclined. On both sides of the inner wall of the locking frame 4, a damping telescopic rod C401 is fixedly installed. A spring is arranged in a matching manner on the outside of the damping telescopic rod C401. A limiting block 402 is fixedly installed on the side of the end of the damping telescopic rod C401, and the rear of the limiting block 402 is inclined. The limiting block 402 is slidably arranged in the inner side of the limiting groove 301 in a fitting manner. When the staff places several adjusting frames 2 and the locking frame 4 outside the corresponding embedded pipes, the locking frame 4 is pushed to slide forward inside the support frame 3, squeezing the limiting block 402 out of the limiting groove 301, driving the damping telescopic rod C401 and the outer spring to contract. After the embedded pipe is squeezed and locked between the adjusting frame 2 and the locking frame 4, the damping telescopic rod C401 and the outer spring pop out the limiting block 402 and slide it into the inner side of the relative limiting groove 301, and then lock other embedded pipes in the same way, facilitating the staff to lock and prevent the tipping of embedded pipes of different specifications.

[0028] Refer to Figures 1-3 , further, the anti-tipping mechanism in close contact is composed of a rubber pressing pad 403 and a spring 404;

[0029] Rubber pressing pads 403 are fixedly installed on the opposite surfaces of the adjusting frame 2 and the locking frame 4, and the rubber pressing pads 403 are arc-shaped. Springs 404 are fixedly installed between the front sides of the rubber pressing pads 403 and the relative adjusting frame 2 and locking frame 4. There are several springs 404, which are arranged in equidistant parallel. When the staff pushes the locking frame 4 to slide forward inside the support frame 3, it will drive the rubber pressing pads 403 on the opposite surfaces of the locking frame 4 and the adjusting frame 2 to contact the surface of the embedded pipe, and squeeze the rubber pressing pad 403 to drive several springs 404 to contract, so that the contracted springs generate a reaction force on the rubber pressing pad 403, making the rubber pressing pad 403 closely adhere to the surface of the embedded pipe. After fixing between the adjusting frame 2 and the locking frame 4 and completing the locking and fixing of one of the embedded pipes, the staff then presses and locks other embedded pipes in the same way. When filling the foundation pit with the embedded pipe with concrete, it can avoid the tipping of the embedded pipe caused by the impact of the concrete on the embedded pipe, and improve the effect of firmly fixing and preventing the tipping between the juxtaposed embedded pipes. Embodiment

[0030] As shown in Figure 5 , Figure 6As shown in the figure, in the present utility model, a limit card holder 202 is slidably arranged on the inner side of the chute 201, and one corner of the side of the limit card holder 202 is inclined. A limit card slot 101 is embedded in the rear of the inner wall of the support slide rail 1. There are several limit card slots 101, which are arranged in equidistant parallel. The inner side of the wall of the limit card slot 101 is inclined. In addition to the embodiment in which the limit card holder 202 is slidably and fittingly arranged inside the limit card slot 101, there is another implementation mode. A limit card holder 202 is slidably arranged on the inner side of the chute 201, and the rear of the limit card holder 202 is trapezoidal. A limit card slot 101 is embedded in the rear of the inner wall of the support slide rail 1. There are several limit card slots 101, which are arranged in equidistant parallel. The inner wall of the limit card slot 101 is trapezoidal. The limit card holder 202 is slidably and fittingly arranged inside the limit card slot 101. When the staff slides one of the adjusting frames 2 into the inner side of the support slide rail 1 through the slider, the limit card holder 202 is squeezed to drive the damping telescopic rod A203 and the outer spring to contract. After the adjusting frame 2 freely slides to the designated position inside the support slide rail 1, the damping telescopic rod A203 and the outer spring pop out the limit card holder 202 and slide it into the inner side of the relative limit card slot 101, which is more convenient to adjust compared with the first implementation mode.

[0031] Working principle: First, the staff needs to prevent the several embedded pipes arranged side by side on the steel reinforcement cage from tipping over. Slide one adjusting frame 2 into the inner side of the support slide rail 1 through the slider, squeeze the limit clamping frame 202 to drive the damping telescopic rod A203 and the outer spring to contract. After the adjusting frame 2 slides to the designated position, the damping telescopic rod A203 and the outer spring pop out the limit clamping frame 202 and slide into the inner side of the relative limit clamping groove 101. Then, turn the locking clamping frame 204 half a turn to slide out of the limit groove 205, and squeeze the damping telescopic rod B207 and the outer spring to drive the limit block 208 to contract. After driving the groove 206 close to the limit block 208, the damping telescopic rod B207 and the outer spring pop out the limit block 208 and slide into the inner side of the groove 206 to limit and fix the locking clamping frame 204 and the limit clamping frame 202. After that, the staff installs the other adjusting frames 2 in the designated position in the same way. Then, place several adjusting frames 2 and the locking frame 4 outside the corresponding embedded pipes. Then, the staff pushes the locking frame 4 to slide forward inside the support frame 3, squeezes the limit clamping block 402 to slide out of the limit groove 301, drives the damping telescopic rod C401 and the outer spring to contract, squeezes and locks the embedded pipe between the adjusting frame 2 and the locking frame 4. After that, the damping telescopic rod C401 and the outer spring pop out the limit clamping block 402 and slide into the inner side of the relative limit groove 301. Finally, make the rubber gasket 403 on the opposite surfaces of the locking frame 4 and the adjusting frame 2 contact the surface of the embedded pipe, and squeeze the rubber gasket 403 to drive several springs 404 to contract, so that the contracted springs generate a reaction force on the rubber gasket 403, making the rubber gasket 403 closely adhere to the surface of the embedded pipe. After completing the locking and fixing of one embedded pipe, the staff performs the pressing and locking treatment on the other embedded pipes in the same way. When filling the foundation pit fixed with the embedded pipes with concrete, it can prevent the embedded pipes from tipping over when the concrete impacts the embedded pipes.

[0032] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A device for preventing a wire tube from tipping over after being embedded, comprising a support rail (1), an adjustment frame (2), a support frame (3), and a locking frame (4), wherein the front of the support rail (1) is provided with an adjustment frame (2) slidably arranged via a slider, the front sides of the adjustment frame (2) are fixedly provided with support frames (3), and the front of the support frame (3) is provided with a locking frame (4) slidably arranged, characterized in that: An adjusting and positioning mechanism capable of positioning and preventing the parallel embedded pipes from tipping is arranged inside the adjusting frame (2), and an adjusting and locking mechanism capable of firmly locking and preventing embedded pipes of different specifications from tipping, and a close-fitting and anti-tipping mechanism capable of stably pressing and fixing the embedded pipes, are respectively arranged between the adjusting frame (2) and the locking frame (4).

2. The anti-dumping device for pre-buried wire tube according to claim 1, characterized in that: The adjustment and positioning mechanism is composed of a limit slot (101), a slide slot (201), a limit bracket (202), a damping telescopic rod A (203), a locking bracket (204), a limit slot (205), a groove (206), a damping telescopic rod B (207) and a limit block (208); A slide groove (201) is embedded in the rear of the inner wall of the adjustment frame (2), a limit bracket (202) is slidably arranged on the side of the inner wall of the slide groove (201), a limit bracket (101) is embedded in the rear of the inner wall of the support slide rail (1), and the limit bracket (202) is slidably arranged on the inner side of the limit bracket (101), a damping telescopic rod A (203) is fixedly installed between the front of the limit bracket (202) and the rear of the inner wall of the slide groove (201), and a spring is matched with the outer side of the damping telescopic rod A (203), a locking bracket (204) is rotatably arranged on the side of the limit bracket (202) through a bearing, and the slide groove A limiting groove (205) is embedded in the rear of the inner wall (201) near the rear of the locking bracket (204), and the locking bracket (204) is slidably arranged on the inner side of the limiting groove (205), and a groove (206) is embedded in the front of the locking bracket (204), and a damping telescopic rod B (207) is fixedly installed in the front of the inner wall of the slide groove (201) near the front of the locking bracket (204), and a spring is matched with the outer side of the damping telescopic rod B (207), and a limiting block (208) is fixedly installed at the rear of the end of the damping telescopic rod B (207), and the limiting block (208) is slidably arranged on the inner side of the groove (206).

3. The anti-dumping device for pre-buried wire tubes according to claim 1, characterized in that: The adjusting and locking mechanism is composed of a limiting groove (301), a damping telescopic rod C (401) and a limiting clamping block (402); The support frame (3) is embedded with a limiting groove (301) on the side, and damping telescopic rods C (401) are fixedly installed on both sides of the inner wall of the locking frame (4), and a spring is matched with the outer side of the damping telescopic rod C (401). A limiting clamping block (402) is fixedly installed on the side of the end of the damping telescopic rod C (401), and the limiting clamping block (402) is slidably arranged on the inner side of the limiting groove (301).

4. The anti-dumping device for pre-buried wire tubes according to claim 1, characterized in that: The close-fitting anti-dumping mechanism is composed of a rubber pressure pad (403) and a spring (404); Rubber pressure pads (403) are fixedly mounted relatively to the surfaces of the adjustment frame (2) and the locking frame (4), and springs (404) are fixedly mounted on both sides in front of the rubber pressure pad (403) and between the relative adjustment frame (2) and the locking frame (4).

5. The anti-dumping device for pre-buried wire tubes according to claim 2, characterized in that: A side corner of the limiting card frame (202) is arranged in an inclined shape, a plurality of limiting card slots (101) are arranged in parallel at equal distances, and the inner wall of the limiting card slot (101) is arranged in an inclined shape, the limiting slot (205) is arranged in an arc shape, the groove (206) is arranged in a semicircular shape, and the limiting block (208) is arranged in a semicircular shape.

6. The anti-dumping device for pre-buried wire tubes according to claim 3, characterized in that: There are a plurality of the limiting grooves (301), which are arranged in parallel at equal distances, and the rear of the inner wall of the limiting groove (301) is arranged in an inclined shape, and the rear of the limiting block (402) is arranged in an inclined shape.

7. The anti-dumping device for pre-buried wire tubes according to claim 4, characterized in that: The rubber pressure pad (403) is arranged in an arc shape, and there are a plurality of springs (404) which are arranged in parallel at equal distances.

Citation Information

Patent Citations

  • Fixing device capable of positioning vertical embedded pipeline

    CN215596553U