Steel wire wheel propelling device of pipe end anti-corrosion adhesive tape beveling machine
By designing a wire wheel propulsion device including a load bearing mechanism, a clamping mechanism and a bevel mechanism, the problem of shaking or offset of the pipe during processing is solved, and the flatness and efficient processing of the bevel surface of the anti-corrosion tape are achieved.
Patent Information
- Application Number
- CN202422087684.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-27
AI Technical Summary
During use, the wire wheel propulsion device of the existing pipe end anti-corrosion tape beveling machine is difficult to effectively fix the pipe, resulting in shaking or offsetting during processing, affecting the flatness and angle control of the bevel surface.
A wire wheel propulsion device including a load bearing mechanism, a clamping mechanism and a bevel mechanism is designed. The load bearing mechanism uses a telescopic rod and a support plate to achieve stable fixation of the pipe. The clamping mechanism uses internal thread blocks and double-headed screws to perform pipeline clamping. The bevel mechanism realizes precise movement of the wire wheel through the motor, gears and cylinders.
This device can effectively prevent the pipe from shaking or offsetting during the bevel grinding process, ensure the flatness of the bevel surface of the anti-corrosion tape, improve processing efficiency, and reduce the frequency of manual adjustment.
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Figure CN222971750U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of beveling machines, and particularly relates to a wire wheel propulsion device for a pipe-end anti-corrosion tape beveling machine. Background Technique
[0002] The wire wheel propulsion device of the pipe-end anti-corrosion tape beveling machine plays a key role in the treatment of pipeline anti-corrosion tape. Through precise mechanical structures and transmission systems, it realizes precise control and propulsion of the position of the wire wheel, ensuring the processing accuracy of the anti-corrosion tape bevel. Precise bevel processing can not only ensure good sealing between the anti-corrosion tape and the pipeline, reducing the risk of bubbles and leakage, but also enable the anti-corrosion tape to better fit on the pipeline to improve the firmness of the connection of the anti-corrosion tape between pipelines.
[0003] During the use of some wire wheel propulsion devices of existing pipe-end anti-corrosion tape beveling machines, there may be problems in effectively fixing the pipeline. If the pipeline is not fixed firmly, it is prone to shaking or deviation during the processing, resulting in inaccurate control of the flatness and angle of the bevel surface, making the processed bevel size inconsistent with the expectation, and thus affecting the subsequent fitting effect of the anti-corrosion tape. Content of the Utility Model
[0004] The purpose of the utility model is to provide a wire wheel propulsion device for a pipe-end anti-corrosion tape beveling machine, aiming to solve the problems put forward in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solutions:
[0006] A wire wheel propulsion device for a pipe-end anti-corrosion tape beveling machine, including a bearing mechanism, including a bottom plate, a support plate is arranged directly above the bottom plate, and telescopic rods are fixedly connected between the top surface of the bottom plate and the bottom surface of the support plate, and the output of the telescopic rods is three;
[0007] A clamping mechanism, including an installation box fixedly installed on the top surface of the bottom plate, and an installation frame is fixedly connected to the inner surface of the installation box;
[0008] A beveling mechanism, including a first motor adaptively installed on the bottom surface of the support plate, and the output end of the first motor penetrates to the top surface of the support plate.
[0009] As a preferred scheme of the utility model, inner threaded blocks are slidably connected to the inner wall surface of the installation frame, the number of the inner threaded blocks is two, and the inner surfaces of the two inner threaded blocks are threadedly connected to the same double-headed screw.
[0010] As a preferred embodiment of the present utility model, the clamping mechanism further includes pipe clamps, the number of the pipe clamps is two, and the two pipe clamps are respectively fixedly installed on the top surfaces of the two internal thread blocks, and one side surface of the inner surface of the installation box is rotatably connected with a turntable.
[0011] As a preferred embodiment of the present utility model, the output end of the first motor is fixedly connected with a gear, and a slide rail is fixedly installed on the top surface of the support plate.
[0012] As a preferred embodiment of the present utility model, a toothed disc is slidably connected to the inner surface of the slide rail, and a support disc is fixedly connected to one side surface of the toothed disc.
[0013] As a preferred embodiment of the present utility model, a cylinder is adaptively installed on the top surface of the support disc, and the output end of the cylinder is fixedly connected with a connecting block.
[0014] As a preferred embodiment of the present utility model, the beveling mechanism further includes a second motor adaptively installed on the top surface of the connecting block, and a wire wheel fixedly connected to the output end of the second motor.
[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: The firmly fixed pipe can avoid shaking or offset during the bevel grinding process. This firm fixing ability can not only ensure the flatness of the bevel surface of the anti-corrosion tape, but also avoid potential safety hazards caused by the pipe falling off to the operators, so as to provide a safer working environment; Through the cooperation of the telescopic rod and the cylinder, the wire wheel can be moved to a suitable position, so that the beveling machine can adapt to anti-corrosion tapes of different pipe end sizes. The mechanized operation mode can ensure that the bevel shape, size and angle of each grinding are highly consistent, and there is no need for frequent manual adjustment, so as to achieve the effect of greatly improving the bevel processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for the description of the embodiments will be briefly introduced below. Obviously, the following drawings 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. Among them:
[0017] Figure 1 is the overall structural schematic diagram of the present utility model;
[0018] Figure 2 is the present utility model Figure 1 partial enlarged schematic diagram at A in;
[0019] Figure 3This is a schematic cross-sectional view of a partial structure of the break opening mechanism in the present utility model;
[0020] Figure 4 For the present utility model Figure 3 A partial enlarged view of part B in it.
[0021] In the figure: 100, a bearing mechanism; 101, a bottom plate; 102, a support plate; 103, a telescopic rod; 200, a clamping mechanism; 201, an installation box; 202, an installation frame; 203, an internal thread block; 204, a double-headed screw; 205, a pipe clamp; 206, a turntable; 300, a beveling mechanism; 301, a first motor; 302, a gear; 303, a slide rail; 304, a toothed disc; 305, a support disc; 306, a cylinder; 307, a connecting block; 308, a second motor; 309, a wire wheel. Specific embodiments
[0022] To make the above objects, features and advantages of the present utility model more obvious and understandable, the specific embodiments of the present utility model will be described in detail below with reference to the accompanying drawings of the specification.
[0023] In the following description, many specific details are set forth in order to fully understand the present utility model, but the present utility model can also be implemented in other ways different from those described herein. Those skilled in the art can make similar generalizations without departing from the connotation of the present utility model. Therefore, the present utility model is not limited by the specific embodiments disclosed below.
[0024] Secondly, the so-called "one embodiment" or "embodiment" herein refers to a specific feature, structure or characteristic that can be included in at least one implementation manner of the present utility model. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment that excludes other embodiments.
[0025] Embodiment 1
[0026] Referring to Figure 1 and Figure 2 , this is the first embodiment of the present utility model. This embodiment provides a wire wheel propulsion device for a pipe end anti-corrosion tape beveling machine, including
[0027] A bearing mechanism 100, including a bottom plate 101, a support plate 102 is arranged directly above the bottom plate 101, and a telescopic rod 103 is fixedly connected between the top surface of the bottom plate 101 and the bottom surface of the support plate 102. The output of the telescopic rod 103 is three;
[0028] Among them, the operator can adjust the telescopic rod 103 to lift the support plate 102 to an appropriate height.
[0029] The clamping mechanism 200 includes a mounting box 201 fixedly installed on the top surface of the bottom plate 101, and a mounting frame 202 is fixedly connected to the inner surface of the mounting box 201;
[0030] Among them, the bottom plate 101 is used to support the mounting box 201, so that the mounting box 201 ensures that the various components in the clamping mechanism 200 are stable, so that the clamping mechanism 200 can firmly fix the anticorrosive tape during groove grinding.
[0031] The grooving mechanism 300 includes a first motor 301 adaptively installed on the bottom surface of the support plate 102, and the output end of the first motor 301 penetrates to the top surface of the support plate 102.
[0032] Among them, the support plate 102 is used to support the grooving mechanism 300, so that the various components in the grooving mechanism 300 can cooperate with each other to groove and grind the anticorrosive tape.
[0033] Specifically, an internally threaded block 203 is slidably connected to the inner wall surface of the mounting frame 202. The number of the internally threaded blocks 203 is two, and the inner surfaces of the two internally threaded blocks 203 are threadedly connected to the same double-headed screw 204.
[0034] Among them, the mounting frame 202 is used to limit the two internally threaded blocks 203. One end of the double-headed screw 204 is fixedly installed on one side surface of the inner wall of the mounting frame 202 through a bearing, and the two internally threaded blocks 203 are respectively threadedly connected to the two threaded surfaces of the double-headed screw 204.
[0035] Furthermore, the clamping mechanism 200 further includes two pipe clamps 205. The two pipe clamps 205 are respectively fixedly installed on the top of the outer surfaces of the two internally threaded blocks 203, and a turntable 206 is rotatably connected to one side of the inner surface of the mounting box 201.
[0036] Among them, the pipe clamp 205 is made of aluminum alloy with relatively light weight and good corrosion resistance. One end of the turntable 206 is fixedly connected to the other end of the double-headed screw 204. Rotating the turntable 206 can drive the double-headed screw 204 to rotate. Through the limitation of the two internally threaded blocks 203 by the mounting frame 202, the two internally threaded blocks 203 can move towards each other through the rotation of the double-headed screw 204.
[0037] During use, insert the pipeline into the inner surface of the support plate 102, place one end of the pipeline on the top surface of the installation box 201, rotate the turntable 206 to drive the double-headed screw 204 to rotate. Through the limitation of the two internal thread blocks 203 by the mounting frame 202, the two internal thread blocks 203 move towards each other by the rotation of the double-headed screw 204, so that the two internal thread blocks 203 respectively drive the two pipeline clamps 205 to move towards the pipeline at the same time, thereby clamping and fixing the pipeline. Adjust the telescopic rod 103 to lift the support plate 102 to an appropriate height, and then the support plate 102 drives the beveling mechanism 300 to move to an appropriate position to start the subsequent bevel grinding of the anti-corrosion tape.
[0038] In summary, a stable and fixed pipeline can prevent it from shaking or shifting during the bevel grinding process. This stable fixing ability can not only ensure the flatness of the bevel surface of the anti-corrosion tape, but also avoid potential safety hazards to operators caused by the pipeline falling off, so as to provide a safer working environment.
[0039] Embodiment 2
[0040] Referring to Figure 1 、 Figure 3 and Figure 4 This is the second embodiment of the present invention. Different from the previous embodiment, this embodiment provides a beveling mechanism 300 that can adapt to anti-corrosion tapes with different pipe end sizes and perform precise bevel grinding on them.
[0041] Specifically, the output end of the first motor 301 is fixedly connected with a gear 302, and a slide rail 303 is fixedly installed on the top surface of the support plate 102.
[0042] Among them, when the output end of the first motor 301 rotates, it can drive the gear 302 to rotate synchronously, and the support plate 102 is used to support the slide rail 303.
[0043] Furthermore, a toothed disk 304 is slidably connected to the inner surface of the slide rail 303, and a support disk 305 is fixedly connected to one side surface of the toothed disk 304.
[0044] Among them, the slide rail 303 is used to limit the position of the toothed disk 304 to prevent the position of the toothed disk 304 from shifting. The teeth of the gear 302 mesh with the teeth of the toothed disk 304. When the gear 302 rotates, it can drive the toothed disk 304 to slide within the slide rail 303, so that the toothed disk 304 drives the support disk 305 to rotate.
[0045] Preferably, a cylinder 306 is adaptively installed on the top surface of the support disk 305, and the output end of the cylinder 306 is fixedly connected with a connecting block 307.
[0046] Among them, the connecting block 307 is slidably connected to the top surface of the support disk 305, and the operator can control the air cylinder 306 to drive the connecting block 307 to perform a linear motion.
[0047] Furthermore, the beveling mechanism 300 further includes a second motor 308 adaptively installed on the top surface of the connecting block 307, and a wire wheel 309 fixedly connected to the output end of the second motor 308.
[0048] Among them, when the output end of the second motor 308 rotates, it can drive the wire wheel 309 to rotate synchronously, so that the wire wheel 309 grinds the bevel of the anticorrosive tape.
[0049] During use, control the air cylinder 306 to drive the connecting block 307 to perform a linear motion, so that the connecting block 307 drives the wire wheel 309 to move to a position where it fits the surface of the anticorrosive tape. At the same time, turn on the first motor 301 and the second motor 308, so that the first motor 301 drives the gear 302 to rotate synchronously, and then the gear 302 drives the tooth disk 304 to slide in the slide rail 303, so that the tooth disk 304 drives the support disk 305 to rotate, and the support disk 305 drives the wire wheel 309 to perform a circular motion around the anticorrosive tape. At the same time, drive the wire wheel 309 to rotate through the second motor 308, so as to achieve the effect of continuously grinding the bevel of the anticorrosive tape by the wire wheel 309.
[0050] In summary, through the cooperation of the telescopic rod 103 and the air cylinder 306, the wire wheel 309 can be moved to a suitable position, so that the beveling machine can adapt to the anticorrosive tapes of different sizes at the pipe ends. The mechanized operation mode can ensure that the bevel shape, size and angle of each grinding are highly consistent, and there is no need for frequent manual adjustment, so as to achieve the effect of greatly improving the bevel processing efficiency.
[0051] Importantly, it should be noted that the construction and arrangement of the present application shown in multiple different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who refer to this disclosure should easily understand that many modifications are possible without substantially departing from the novel teachings and advantages of the subject matter described in this application (for example, the dimensions, scales, structures, shapes and proportions of various elements, and parameter values (such as temperature, pressure, etc.), installation arrangements, use of materials, color, orientation changes, etc.). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of the element may be inverted or otherwise changed, and the nature, number or position of discrete elements may be altered or changed. Therefore, all such modifications are intended to be included within the scope of the present utility model. The order or sequence of any process or method steps may be changed or reordered according to alternative embodiments. In the claims, any "means plus function" clause is intended to cover the structures that perform the recited function herein, and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes and omissions may be made in the design, operating conditions and arrangement of the exemplary embodiments without departing from the scope of the present utility model. Therefore, the present utility model is not limited to a specific embodiment, but extends to various modifications that still fall within the scope of the appended claims.
[0052] In addition, in order to provide a concise description of the exemplary embodiments, all features of the actual embodiments may not be described (i.e., those features that are not relevant to the currently considered best mode of implementing the present utility model or those features that are not relevant to the implementation of the present utility model).
[0053] It should be understood that in the development of any actual implementation, as in any engineering or design project, a large number of specific implementation decisions may be made. Such development efforts may be complex and time-consuming, but for those of ordinary skill in the art who benefit from this disclosure, without excessive experimentation, such development efforts will be a routine task of design, manufacturing and production.
[0054] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present utility model and not to limit them. Although the present utility model has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present utility model can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present utility model, and they should all be covered within the scope of the claims of the present utility model.
Claims
1. A wire wheel propulsion device for a pipe end anti-corrosion tape beveling machine, characterized in that: include, The bearing mechanism (100) comprises a bottom plate (101), a support plate (102) is arranged directly above the bottom plate (101), a telescopic rod (103) is fixedly connected between the top surface of the bottom plate (101) and the bottom surface of the support plate (102), and the telescopic rod (103) has three outputs; The clamping mechanism (200) comprises a mounting box (201) fixedly mounted on the top surface of the base plate (101), wherein the inner surface of the mounting box (201) is fixedly connected to a mounting frame (202); The groove mechanism (300) comprises a first motor (301) adapted to be mounted on the bottom surface of the support plate (102), wherein the output end of the first motor (301) penetrates to the top surface of the support plate (102).
2. The wire wheel propulsion device of the pipe end anti-corrosion tape beveling machine according to claim 1, characterized in that: The inner wall surface of the mounting frame (202) is slidably connected to an internal thread block (203), the number of the internal thread blocks (203) is two, and the inner surfaces of the two internal thread blocks (203) are threadedly connected to the same double-headed screw (204).
3. The wire wheel propulsion device of the pipe end anti-corrosion tape beveling machine according to claim 2, characterized in that: The clamping mechanism (200) further comprises a pipe clamp (205), the number of the pipe clamps (205) being two, the two pipe clamps (205) being respectively fixedly mounted on the top of the outer surfaces of the two internal thread blocks (203), and a turntable (206) is rotatably connected to one side of the inner surface of the installation box (201).
4. The wire wheel propulsion device of the pipe end anti-corrosion tape beveling machine according to claim 3, characterized in that: The output end of the first motor (301) is fixedly connected to a gear (302), and the top surface of the support plate (102) is fixedly mounted with a slide rail (303).
5. The wire wheel propulsion device of the pipe end anti-corrosion tape beveling machine according to claim 4, characterized in that: The inner surface of the slide rail (303) is slidably connected to a toothed disc (304), and a side surface of the toothed disc (304) is fixedly connected to a support disc (305).
6. The wire wheel propulsion device of the pipe end anti-corrosion tape beveling machine according to claim 5, characterized in that: A cylinder (306) is adapted to be mounted on the top surface of the support plate (305), and a connecting block (307) is fixedly connected to the output end of the cylinder (306).
7. The wire wheel propulsion device of the pipe end anti-corrosion tape beveling machine according to claim 6, characterized in that: The groove mechanism (300) further comprises a second motor (308) adapted to be mounted on the top surface of the connection block (307), and a wire wheel (309) fixedly connected to the output end of the second motor (308).
Citation Information
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