Sound wave unblocking device capable of being conveniently installed on pipeline

By designing the structure of the circular disc and limiting assembly in the sound wave clearing device, using the screw and screw handle to drive the connecting block to slide and adjust the position of the limiting assembly, the adaptability and installation complexity of the traditional sound wave clearing device in different pipeline systems is solved, and higher practicality and universality are achieved.

CN222856201UActive Publication Date: 2025-05-13JIANGXI WEIGUAN ELECTROMECHANICAL ENG CO LTD
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Patent Information

Application Number
CN202421715037.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-05-13
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

When facing different pipeline systems, traditional sound wave clearing devices are difficult to find matching flange interfaces, resulting in extended production cycles and high procurement costs, and the installation and disassembly process is cumbersome, which can easily lead to bolt damage or insufficient tightening force, affecting the sealing and stability of the equipment.

Method used

A sound wave clearer for easy installation on the pipe is designed, adopting a structure of a circular disk and a limiting assembly. By opening a rotating groove and a threaded bolt in the middle of the circular disk, the screw and screw handle drive the connection block to slide in the inner cavity of the moving groove, adjust the position of the limiting assembly, adapt to the connecting pipe assembly of different sizes, and enhance friction through the bumps and limiting grooves, simplifying the installation and disassembly process.

Benefits of technology

The adaptability of the acoustic plug cleaner to pipes of different sizes is achieved, the installation and disassembly process is simplified, the tools and time required for operation are reduced, the practicality and universality of the device are improved, and the production and procurement costs are reduced.

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Abstract

The utility model discloses a sound wave unblocking device convenient to install on a pipeline, which relates to the technical field of sound wave unblocking devices and comprises a sound wave unblocking device body and a connecting pipe assembly. A connecting assembly is rotationally connected to the lower portion of the sound wave unblocking device body and comprises a circular disc and a limiting assembly, a plurality of moving grooves are formed in the lower portion of the circular disc in an annular array mode, adjusting assemblies are arranged in inner cavities of the moving grooves and used for driving the limiting assembly to move, and the lower portions of the adjusting assemblies are fixedly connected with the limiting assembly. The moving grooves are formed in the lower portion of the circular disc in the annular array mode, the adjusting assemblies are arranged in the inner cavities of the moving grooves, and therefore the positions of the connecting pipe assemblies and the positions of the connecting assemblies can be limited through the limiting assemblies by adjusting the positions of the adjusting assemblies in the inner cavities of the moving grooves according to pipelines of different sizes; therefore, the connecting assembly can be connected with connecting pipe assemblies of different sizes.
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Description

Technical Field

[0001] The utility model relates to the technical field of sonic wave blockage removers, in particular to a sonic wave blockage remover that is convenient to be installed on a pipeline. Background Art

[0002] Sonic wave blockage remover is a device that uses the principle of sound waves to clear material blockages in pipelines. Its working principle is to generate sound waves of a specific frequency to weaken the adhesion between the material and the inner wall of the pipeline or the material itself, thereby preventing the adhesion and compaction of the materials. For already compacted materials, sound waves will produce an "acoustic fatigue" effect, weakening the binding force between material molecules. Under the repeated action of sound wave oscillations, the molecular stacking structure of the material is destroyed due to fatigue, and eventually breaks away from the inner wall of the pipeline under the action of gravity or airflow, achieving the purpose of clearing the blockage. Sonic wave blockage removers are widely used in dust removal, powder removal, and ash cleaning devices in metallurgy, electric power, cement, food processing and other industries, effectively solving the problem of dust accumulation and blockage in dust removal equipment.

[0003] Traditional sonic blockage removers, as an effective tool to solve pipeline blockage problems, use flange and bolt connection methods, which to a certain extent meet the basic installation and fixing requirements. However, with the continuous expansion of industrial application fields and the increasing complexity of pipeline systems, this traditional connection method has gradually revealed its inherent limitations.

[0004] For example, the flange sizes of different pipeline systems vary greatly, ranging from standard industrial flanges to various specially customized specifications. This diversity makes it difficult for traditional sonic blockage removers to find directly matching flange interfaces when facing different pipeline systems. Therefore, users often need to customize production according to the specific pipeline flange sizes, which not only increases the production cycle, but also significantly increases the procurement cost. For scenarios that require rapid response to market changes or emergency repairs, it is undoubtedly a considerable challenge. Secondly, the cumbersomeness of the installation and disassembly process is also a problem that cannot be ignored. When installing the sonic blockage remover, maintenance personnel need to carry and operate a series of professional tools, such as wrenches, screwdrivers, etc., to precisely tighten the bolts to ensure that the equipment is stable and not loose. Similarly, when the equipment needs to be disassembled or replaced, these steps also need to be performed in reverse, which is not only time-consuming, but also prone to damage to the bolts or insufficient tightening due to improper operation, thereby affecting the sealing and stability of the equipment. Utility Model Content

[0005] The utility model aims to provide a sonic blockage remover which is easy to install on a pipeline, so as to solve the problems raised in the above-mentioned background technology.

[0006] In order to solve the above technical problems, the technical solution adopted by the utility model is:

[0007] A sonic wave blockage remover that is easy to install on a pipeline comprises a sonic wave blockage remover body and a connecting pipe assembly; a connecting assembly is rotatably connected to the lower part of the sonic wave blockage remover body, the connecting assembly comprises a circular disk and a limit assembly, a plurality of movable grooves are provided in an annular array at the lower part of the circular disk, and the inner cavities of the plurality of movable grooves are all provided with adjusting assemblies, the adjusting assembly is used to drive the limit assembly to move, and the lower part of the adjusting assembly is fixedly connected to the limit assembly.

[0008] A further improvement of the technical solution of the utility model is that a rotation groove is provided in the middle of the circular disk, and a threaded bolt is threadedly connected to the upper part of the circular disk.

[0009] The above technical solution is adopted, in which a rotating groove is opened in the middle of the circular disk, so that the circular disk and the acoustic wave blockage clearing device body can be rotatably connected by the rotating groove, and a threaded bolt is threadedly connected in the middle of the circular disk, so that the position of the acoustic wave blockage clearing device body can be limited by the threaded bolt.

[0010] A further improvement of the technical solution of the utility model is that the adjustment component includes a connecting block 2, a screw is threadedly connected to the upper part of the connecting block 2, the screw is rotatably connected to the circular disk, a screw handle is fixedly connected to the side of the screw away from the connecting block 2, and a connecting block 3 is fixedly connected to one side of the lower part of the connecting block 2.

[0011] The above-mentioned technical solution is adopted, in which the connecting block 2 is threadedly connected to the connecting block 2 through a screw, so that the connecting block 2 can be driven to slide in the inner cavity of the movable groove by rotating the screw, and then the position of the connecting block 2 in the inner cavity of the movable groove can be adjusted according to the size of different connecting pipe assemblies, so that the connecting block 2 can be suitable for connecting pipe assemblies of different sizes.

[0012] A further improvement of the technical solution of the utility model is that: the limiting component includes a shell, the shell on the same side is fixedly connected to the inner cavity of the connecting block three, the inner cavity of the shell is slidably connected with a protrusion, the inner cavity of the shell is threadedly connected with a threaded block, the side of the threaded block close to the protrusion is rotatably connected to the connecting block four, and the side of the protrusion close to the threaded block and the side of the connecting block four away from the threaded block are jointly fixedly connected with a spring.

[0013] By adopting the above technical solution, the threaded block can be rotated and then the position of the threaded block in the inner cavity of the shell can be changed, so that the connecting block four and the spring and the protrusion can be pushed to move toward the connecting pipe assembly. When the protrusion moves toward the connecting pipe assembly, the friction between the protrusion and the connecting pipe assembly will be enhanced, so that the connecting assembly and the connecting pipe assembly can be connected together.

[0014] A further improvement of the technical solution of the utility model is that a plurality of anti-sliding blocks are fixedly connected to the surface of the screw handle in an annular array.

[0015] The above technical solution is adopted, in which a plurality of anti-sliding blocks are fixedly connected to the surface of the screw handle in a circular array, thereby enhancing the friction of the screw handle, and then facilitating the staff to directly rotate the screw by hand.

[0016] A further improvement of the technical solution of the utility model is that a rotating block is fixedly connected to the lower part of the sonic block clearing device body, and the outer surface of the rotating block is rotatably connected to the inner cavity of the rotating groove.

[0017] The above technical solution is adopted, in which the rotating block is rotatably connected to the rotating groove, so that the placement angle of the sonic blockage clearing device body can be adjusted according to installation requirements, thereby facilitating the installation of the device.

[0018] A further improvement of the technical solution of the utility model is that the connecting pipe assembly includes a connecting block 1, a ring array of a side of the lower part of the connecting block close to the limiting assembly is provided with a plurality of limiting grooves used in conjunction with the protrusions, and a lower end of the connecting block is fixedly connected to the pipeline body.

[0019] The above technical solution is adopted, in which a plurality of limit grooves are opened at the bottom of the connecting block, and then the protrusions are used to contact the inner cavity of the limit grooves, and then the friction between the protrusions and the limit grooves is enhanced, so that the positions of the connecting pipe assembly and the connecting assembly can be connected and fixed.

[0020] Due to the adoption of the above technical solution, the utility model has achieved the following technical progress compared with the prior art:

[0021] 1. The utility model provides an acoustic wave blockage clearer which is easy to install on a pipeline. A plurality of movable grooves are opened in an annular array at the lower part of a circular disk, and an adjusting component is arranged in the inner cavity of the movable groove. Thus, according to pipelines of different sizes, the position of the adjusting component in the inner cavity of the movable groove is adjusted, and then the limiting component is driven to move. Then, the position of the connecting pipe component and the connecting component is limited by the limiting component, so that the connecting component can be connected to connecting pipe assemblies of different sizes, thereby improving the practicability and universality of the device.

[0022] 2. The utility model provides an acoustic wave block clearer that is easy to install on a pipeline. By rotating the threaded block, the position of the threaded block in the inner cavity of the shell can be changed, thereby pushing the connecting block four, the spring and the protrusion to move in the direction of the limit groove. When the protrusion moves in the direction of the limit groove, the friction between the protrusion and the limit groove will be enhanced, thereby enabling the connecting assembly to be connected to the connecting block one. By fixing a plurality of anti-sliding blocks in an annular array on the surface of the screw handle, the friction of the screw handle can be enhanced, and then it is convenient for the staff to directly rotate the screw by hand, and then the connecting block two can be driven to move in the inner cavity of the movable groove, so that when the connecting assembly is connected to the connecting pipe assembly, the operation is simple and convenient, and the installation and disassembly of the connecting assembly can be completed without the aid of tools. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The utility model will be further described below in conjunction with the accompanying drawings.

[0024] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0025] Figure 2 It is a schematic cross-sectional diagram of the overall structure of the utility model;

[0026] Figure 3 It is a schematic diagram of the connection assembly of the utility model;

[0027] Figure 4 It is a schematic diagram of a circular disk of the utility model;

[0028] Figure 5 It is a schematic diagram of the adjustment component of the utility model;

[0029] Figure 6 It is a schematic diagram of the limit assembly of the utility model;

[0030] Figure 7 This is a schematic diagram of the main body of the sonic wave blockage clearer of the utility model;

[0031] Figure 8 It is a schematic diagram of the connection block of the utility model.

[0032] In the figure: 1. sonic wave block clearer body; 11. rotating block; 2. connecting pipe assembly; 21. connecting block one; 22. pipe body; 23. limiting groove; 3. connecting assembly; 31. circular disk; 311. moving groove; 312. rotating groove; 313. threaded bolt; 32. adjusting assembly; 321. connecting block two; 322. screw; 323. screw handle; 324. connecting block three; 33. limiting assembly; 331. housing; 332. protrusion; 333. spring; 334. connecting block four; 335. threaded block. DETAILED DESCRIPTION

[0033] The present invention is further described in detail below in conjunction with the embodiments:

[0034] Example 1

[0035] like Figure 1-8 As shown, the utility model provides an acoustic wave blockage remover that is easy to install on a pipeline, including an acoustic wave blockage remover body 1 and a connecting pipe assembly 2; the lower part of the acoustic wave blockage remover body 1 is rotatably connected with a connecting assembly 3, the connecting assembly 3 includes a circular disk 31 and a limit assembly 33, a plurality of movable grooves 311 are provided in an annular array at the lower part of the circular disk 31, and the inner cavities of the plurality of movable grooves 311 are all provided with adjusting assemblies 32, the adjusting assemblies 32 are used to drive the limit assembly 33 to move, and the lower part of the adjusting assembly 32 is fixedly connected to the limit assembly 33.

[0036] In this embodiment, the inner cavity of the connecting pipe assembly 2 can be cleared by the sonic wave blockage clearer body 1, the sonic wave blockage clearer body 1 can be connected to the connecting assembly 3 by the circular disk 31, and the position of the limiting assembly 33 can be adjusted according to the size of the connecting pipe assembly 2 by the adjusting assembly 32, so that the connecting assembly 3 can be connected to connecting pipe assemblies 2 of different sizes, and the connecting assembly 3 can be connected to the connecting pipe assembly 2 by the limiting assembly 33.

[0037] Example 2

[0038] like Figure 4 , Figure 5 As shown, on the basis of Example 1, the utility model provides a technical solution: preferably, the adjustment component 32 includes a connecting block 321, the upper part of the connecting block 321 is threadedly connected with a screw 322, the screw 322 is rotatably connected to the circular disk 31, the side of the screw 322 away from the connecting block 321 is fixedly connected with a handle 323, and the lower side of the connecting block 321 is fixedly connected with a connecting block 3 324.

[0039] In this embodiment, when it is necessary to connect the sonic wave blockage remover body 1 and the connecting pipe assembly 2 together, first, the end face of the circular disk 31 is tightly fitted with the end face of the connecting block 1 21, and then the lower part of the sonic wave blockage remover body 1 is placed in the inner cavity of the pipe body 22, and then the position of the adjusting assembly 32 in the inner cavity of the movable groove 311 needs to be adjusted according to the size of the connecting block 1 21. The staff holds the screw handle 323 and applies force to the screw handle 323 to drive the screw 322 to rotate, and then the connecting block 2 321 can be driven to move. When the connecting block 2 321 moves, it will drive the connecting block 3 324 to move together, thereby driving the connecting assembly 3 to move together.

[0040] Example 3

[0041] like Figure 6 , Figure 8 As shown, on the basis of Example 1, the utility model provides a technical solution: preferably, the limiting component 33 includes a shell 331, the shell 331 on the same side is fixedly connected to the inner cavity of the connecting block three 324, the inner cavity of the shell 331 is slidably connected with a protrusion 332, the inner cavity of the shell 331 is threadedly connected with a threaded block 335, the threaded block 335 is rotatably connected to the connecting block four 334 on the side close to the protrusion 332, the side of the protrusion 332 close to the threaded block 335 and the side of the connecting block four 334 away from the threaded block 335 are jointly fixedly connected with a spring 333, a ring array on the surface of the screw handle 323 is fixedly connected to a plurality of protective blocks, the connecting pipe assembly 2 includes a connecting block one 21, a ring array is provided on the side of the lower part of the connecting block one 21 close to the limiting component 33, and a plurality of limiting grooves 23 used in conjunction with the protrusion 332 are provided, and the lower end of the connecting block one 21 is fixedly connected to the pipeline body 22.

[0042] In this embodiment, when the connecting component 3 moves, when the connecting block 1 21 contacts the protrusion 332, a force is applied to the protrusion 332, driving the protrusion 332 to move toward the direction of the connecting block 4 334, and then driving the spring 333 to contract, so that the protrusion 332 can be pulled to move in the inner cavity of the shell 331. When the connecting component 3 moves to a suitable position, when the protrusion 332 contacts the limiting groove 23, in the absence of the pressure of the connecting block 1 21, the spring 333 itself is affected by the elastic force of the spring 333, which drives the spring 333 to stretch, and then pushes the protrusion 332 to slide in the inner cavity of the shell 331, and then pushes the protrusion 332 to move in the direction of the limiting groove 23. When the protrusion 332 contacts the inner cavity of the limiting groove 23, the staff can stop operating the rotation of the handle 323, and then the staff can change the position of the threaded block 335 in the inner cavity of the shell 331 by operating the rotation of the threaded block 335, and then drive the connecting block 334 and the spring 333 to move toward the direction of the limiting groove 23, and then the spring 333 can apply a force to the protrusion 332, thereby pushing the protrusion 332 to move toward the inner cavity of the limiting groove 23, thereby enhancing the friction between the protrusion 332 and the limiting groove 23, so that the cooperation between the protrusion 332 and the limiting groove 23 can be utilized to connect the connecting pipe assembly 2 and the connecting assembly 3 together.

[0043] Example 4

[0044] like Figure 7 As shown, on the basis of Example 1, the utility model provides a technical solution: preferably, a rotating groove 312 is opened in the middle of the circular disk 31, a threaded bolt 313 is threadedly connected to the upper part of the circular disk 31, and a rotating block 11 is fixedly connected to the lower part of the sonic wave block clearing device body 1, and the outer surface of the rotating block 11 is rotatably connected to the inner cavity of the rotating groove 312.

[0045] In this embodiment, after completing the connection between the connecting pipe assembly 2 and the connecting assembly 3, in order to facilitate the connection of the sonic wave blockage clearing device body 1 with other wire pipes, etc., the sonic wave blockage clearing device body 1 can be rotated. When the sonic wave blockage clearing device body 1 rotates, it will drive the rotating block 11 to rotate in the inner cavity of the rotating groove 312, so that the angle of the sonic wave blockage clearing device body 1 can be adjusted. After the angle of the sonic wave blockage clearing device body 1 is adjusted to a suitable position, the threaded bolt 313 is then rotated to limit the position of the rotating block 11 by using the threaded bolt 313 to prevent rotation, etc. from occurring when the sonic wave blockage clearing device body 1 is connected to other wire pipes, etc.

[0046] The following is a detailed description of the working principle of this sonic blockage remover that is easy to install on the pipeline.

[0047] like Figure 1-8 As shown, when the sonic wave blockage remover body 1 and the connecting pipe assembly 2 need to be connected together, first, the end face of the circular disk 31 is tightly fitted with the end face of the connecting block 1 21, and then the lower part of the sonic wave blockage remover body 1 is placed in the inner cavity of the pipe body 22, and then the position of the adjusting assembly 32 in the inner cavity of the moving groove 311 needs to be adjusted according to the size of the connecting block 1 21. The staff applies a force to the screw handle 323 by holding the screw handle 323 to drive the screw rod 322 to rotate, and then the connecting block 2 321 can be driven to move. When the connecting block 2 321 moves, the connecting block 3 324 will be driven to move together, so that the connecting assembly 3 can be driven to move together;

[0048] When the connecting component 3 moves, when the connecting block 21 contacts the protrusion 332, a force is applied to the protrusion 332, driving the protrusion 332 to move toward the direction of the connecting block 334, and then driving the spring 333 to contract, so that the protrusion 332 can be pulled to move in the inner cavity of the shell 331. When the connecting component 3 moves to a suitable position, when the protrusion 332 contacts the limiting groove 23, in the absence of the pressure of the connecting block 21, the spring 333 itself is acted upon to drive the spring 333 to stretch, and then push the protrusion 332 to slide in the inner cavity of the shell 331, and then push the protrusion 332 to move in the direction of the limiting groove 23. After the block 332 contacts the inner cavity of the limiting groove 23, the staff can stop operating the rotation of the screw handle 323, and then the staff can change the position of the threaded block 335 in the inner cavity of the shell 331 by operating the rotation of the threaded block 335, and then drive the connecting block 334 and the spring 333 to move toward the direction of the limiting groove 23, and then the spring 333 can apply a force to the protrusion 332, so that the protrusion 332 can be pushed to move toward the inner cavity of the limiting groove 23, so that the friction between the protrusion 332 and the limiting groove 23 can be enhanced, so that the connection pipe assembly 2 and the connection assembly 3 can be connected together by utilizing the cooperation between the protrusion 332 and the limiting groove 23;

[0049] After completing the connection of the connecting pipe assembly 2 and the connecting assembly 3, in order to facilitate the connection of the sonic wave block clearer body 1 with other wire pipes, the sonic wave block clearer body 1 can be rotated. When the sonic wave block clearer body 1 rotates, it will drive the rotating block 11 to rotate in the inner cavity of the rotating groove 312, so that the angle of the sonic wave block clearer body 1 can be adjusted. After the angle of the sonic wave block clearer body 1 is adjusted to a suitable position, the threaded bolt 313 is then rotated to limit the position of the rotating block 11 to prevent rotation when the sonic wave block clearer body 1 is connected to other wire pipes.

[0050] The above generally describes the present invention in detail, but it is obvious to a person skilled in the art that some modifications or improvements can be made to the present invention. Therefore, modifications or improvements that do not deviate from the spirit of the present invention are within the scope of protection of the present invention.

Claims

1. A sonic wave blockage remover that is easy to install on a pipeline, comprising a sonic wave blockage remover body (1) and a connecting pipe assembly (2); characterized in that: The lower part of the sonic wave blockage clearing device body (1) is rotatably connected to a connecting assembly (3), the connecting assembly (3) comprising a circular disk (31) and a limiting assembly (33), a plurality of movable grooves (311) are provided in an annular array at the lower part of the circular disk (31), the inner cavities of the plurality of movable grooves (311) are all provided with adjusting assemblies (32), the adjusting assembly (32) is used to drive the limiting assembly (33) to move, and the lower part of the adjusting assembly (32) is fixedly connected to the limiting assembly (33).

2. The sonic blockage remover that is easy to install on a pipeline according to claim 1, characterized in that: A rotation groove (312) is provided in the middle of the circular disk (31), and a threaded bolt (313) is threadedly connected to the upper portion of the circular disk (31).

3. The sonic blockage remover that is easy to install on a pipeline according to claim 1, characterized in that: The adjustment assembly (32) comprises a second connection block (321), the upper portion of the second connection block (321) being threadedly connected with a screw rod (322), the screw rod (322) being rotationally connected to the circular disk (31), a screw handle (323) being fixedly connected to a side of the screw rod (322) away from the second connection block (321), and a third connection block (324) being fixedly connected to a side of a lower portion of the second connection block (321).

4. The sonic blockage remover that is easy to install on a pipeline according to claim 1, characterized in that: The limiting assembly (33) comprises a shell (331), wherein the shell (331) on the same side is fixedly connected to the inner cavity of the connecting block three (324), the inner cavity of the shell (331) is slidably connected to a protrusion (332), the inner cavity of the shell (331) is threadedly connected to a threaded block (335), a side of the threaded block (335) close to the protrusion (332) is rotatably connected to a connecting block four (334), and a side of the protrusion (332) close to the threaded block (335) and a side of the connecting block four (334) away from the threaded block (335) are fixedly connected to a spring (333).

5. The sonic blockage remover that is easy to install on a pipeline according to claim 3 is characterized by: A plurality of protective blocks are fixedly connected in an annular array on the surface of the twisting handle (323).

6. The sonic blockage remover that is easy to install on a pipeline according to claim 1, characterized in that: A rotating block (11) is fixedly connected to the lower part of the sonic wave block clearing device body (1), and the outer surface of the rotating block (11) is rotatably connected to the inner cavity of the rotating groove (312).

7. The sonic blockage remover that is easy to install on a pipeline according to claim 4, characterized in that: The connecting pipe assembly (2) comprises a connecting block (21), a plurality of limiting grooves (23) for use with the protrusions (332) are provided in an annular array on one side of the lower part of the connecting block (21) close to the limiting assembly (33), and the lower end of the connecting block (21) is fixedly connected to the pipeline body (22).