Automatic pipe cutting equipment capable of conducting section machining

The motor-driven double-headed screw and pressure plate limiting mechanism solves the problems of uneven cross-section and debris splashing after pipe cutting in automatic pipe cutting equipment, and achieves neat cross-section and debris collection.

CN223368339UActive Publication Date: 2025-09-23SHENYANG FORTUNE PRECISION EQUIP CO LTD
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Patent Information

Application Number
CN202423054914.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-09-23
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

When cutting pipes, existing automatic pipe cutting equipment does not limit the cut pipes, causing them to fall due to gravity, resulting in uneven cross-sections.

Method used

The double-headed screw driven by the motor drives the inclined column and the curved column, cooperates with the pressure plate to limit the cut pipe, and prevents debris from splashing through the blocking component.

Benefits of technology

The cross section of the cut pipe is made neat, which prevents debris from flying everywhere and solves the problems of uneven cross section and debris flying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic pipe cutting equipment that can carry out fracture surface processing, including the work bench, the surface of work bench is fixedly connected with a first support and a second support respectively, the upper part of work bench is provided with a cutting assembly, the outer wall of work bench is fixedly connected with a housing, the housing is provided with a first support and a second support. The inner wall of the second support is rotationally connected with a rotating wheel, and a limiting mechanism is arranged in the shell. The utility model relates to the technical field of pipe cutting equipment, and in the automatic pipe cutting equipment capable of processing the fracture surface, the motor, the double-thread screw, the threaded block, the vertical block, the inclined column, the curved column and the pressing plate are matched, so that a cut pipe is limited, and the problem that when the existing automatic pipe cutting equipment is used for cutting the pipe, the cutting efficiency is high is solved. The problem that the section of the cut-off pipe is uneven due to the fact that the cut-off pipe is not limited and the cut-off pipe can fall off through gravity at the moment is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of pipe cutting equipment, in particular to an automatic pipe cutting equipment capable of performing cross-section processing. Background Art

[0002] Automatic pipe cutting equipment is a cutting device that automatically cuts pipes into specified lengths during the pipe production process.

[0003] When the existing automatic pipe cutting equipment is in use, the pipe is moved by the rotating wheel, and the pipe is moved to the bottom of the cutting machine, and the pipe is cut by the cutting machine;

[0004] However, when the existing automatic pipe cutting equipment cuts the pipe, it does not limit the cut pipe. As a result, when the pipe is almost cut, the connection between the cut pipe and the entire pipe becomes less. At this time, the cut pipe will fall down due to gravity, resulting in an uneven cross-section of the cut pipe. Utility Model Content

[0005] In response to the shortcomings of the existing technology, the utility model provides an automatic pipe cutting device that can perform cross-section processing, which solves the problem that when the existing automatic pipe cutting equipment cuts the pipe, the cut pipe will fall down due to gravity, resulting in an uneven cross-section of the cut pipe, because there is no limit on the cut pipe.

[0006] To achieve the above-mentioned purpose, the present invention is implemented through the following technical solutions: an automatic pipe cutting device capable of cross-section processing, comprising a workbench, the surface of which is fixedly connected to a first bracket and a second bracket, a cutting assembly is provided above the workbench, the outer wall of the workbench is fixedly connected to a shell, the inner wall of the second bracket is rotatably connected to a rotating wheel, a limiting mechanism is provided inside the shell, and the limiting mechanism comprises: a motor, fixedly connected to the outer wall of the shell; a double-headed screw, fixedly connected to the output shaft of the motor and rotatably connected to the inner wall of the shell through a bearing; a threaded block, threadedly connected to the double-headed screw The outer wall of the body is slidably engaged with the inner wall of the shell; the vertical block is fixedly connected to the outer wall of the threaded block; the inclined column is rotatably connected to the inner wall of the vertical block by a pin; the curved column is rotatably connected to the inner wall of the inclined column by a pin, and passes through the inner wall of the workbench and is movably connected to the workbench; the pressure plate is fixedly connected to the end of the curved column; the blocking assembly is arranged on the outside of the workbench; wherein, the double-headed screw is driven by the motor to make the inclined columns on both sides drive the curved column to move, thereby driving the pressure plate to limit the cut pipe, making the cross section neat, and blocking the debris generated during cutting.

[0007] Preferably, the blocking assembly includes: a first cover body, which is attached to the surface of the workbench; a second cover body, which is attached to the surface of the workbench and to the outer wall of the first cover body; a threaded column, which is threadedly connected to the inner wall of the first bracket and is respectively threadedly connected to the inner wall of the first cover body and the inner wall of the second cover body; a handle, which is fixedly connected to the end of the threaded column; wherein the first cover body and the second cover body are fixed to the workbench by the threaded column to block the debris generated during cutting and prevent the debris from flying everywhere.

[0008] Preferably, a cutting table is fixedly connected to the surface of the workbench.

[0009] Preferably, an electric telescopic rod is fixedly connected to the surface of the first bracket, and the cutting assembly is installed at the output end of the electric telescopic rod.

[0010] Preferably, the second bracket is fixedly connected to the connecting bracket via a spring, the inner wall of the connecting bracket is rotatably connected to a pressure wheel, the outer wall of the connecting bracket is fixedly connected to a slider, and the outer wall of the slider is slidably engaged with the inner wall of the second bracket. Beneficial effects

[0011] The utility model provides an automatic pipe cutting device capable of cross-section processing. The device has the following beneficial effects: The automatic pipe cutting device capable of cross-section processing achieves position limiting of the cut pipe material through the coordination of a motor, a double-headed screw, a threaded block, a vertical block, an inclined column, a curved column, and a pressure plate. This solves the problem of existing automatic pipe cutting devices, in which the cut pipe material falls due to gravity during cutting due to the lack of position limiting, resulting in an uneven cross-section of the cut pipe material.

[0012] Through the cooperation between the first cover body, the second cover body, the handle and the threaded column, the debris generated during cutting is blocked to prevent the debris from flying everywhere, thereby solving the problem that when cutting the pipe, some debris will be generated and the cutting component will cause the debris to fly everywhere. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a structural diagram of the utility model;

[0014] Figure 2 for Figure 1 Schematic diagram of the appearance;

[0015] Figure 3 for Figure 1 Schematic diagram of the structure of the cutting assembly, workbench and shell;

[0016] Figure 4 for Figure 1 Schematic diagram of the structure of the middle motor, inclined column and curved column;

[0017] Figure 5 for Figure 1 Schematic diagram of the structure of the first bracket, the first cover and the threaded column.

[0018] In the figure: 1. workbench; 2. shell; 3. first bracket; 4. cutting assembly; 41. electric telescopic rod; 42. cutting table; 5. limit mechanism; 51. motor; 52. double-headed screw; 53. threaded block; 54. vertical block; 55. inclined column; 56. curved column; 57. pressure plate; 58. blocking assembly; 581. first cover; 582. second cover; 583. handle; 584. threaded column; 6. second bracket; 7. rotating wheel; 8. pressure wheel; 81. connecting frame; 82. spring; 83. slider. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0020] When existing automatic pipe cutting equipment cuts pipes, since there is no position limit on the cut pipes, the cut pipes will fall down due to gravity, resulting in uneven cross-section of the cut pipes.

[0021] In view of this, the utility model provides an automatic pipe cutting device that can perform cross-section processing. Through the cooperation between the motor, double-headed screw, threaded block, vertical block, inclined column, curved column and pressure plate, the cut pipe is limited, which solves the problem that the existing automatic pipe cutting equipment does not limit the cut pipe when cutting the pipe, and the cut pipe will fall down due to gravity, resulting in an uneven cross-section of the cut pipe.

[0022] By those skilled in the art, the components in this case are connected in sequence. For the specific connection and operation sequence, reference should be made to the following working principle. The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process.

[0023] Example 1, by Figure 1-5It can be seen that an automatic pipe cutting device capable of cross-section processing in this case includes a workbench 1. The surface of the workbench 1 is fixedly connected to a first bracket 3 and a second bracket 6. A cutting assembly 4 is provided above the workbench 1. When the cutting assembly 4 is started, the pipe is automatically cut. The cutting assembly 4 includes a fixed plate, a cutting motor and a cutting blade. The cutting motor model is selected according to actual needs and can meet the work requirements. The outer wall of the fixed plate is fixedly connected to the cutting motor through a motor sleeve. The output shaft of the cutting motor is fixedly connected to the cutting blade. When the cutting motor is started, the cutting motor drives the cutting blade to rotate. The outer wall of the workbench 1 is fixedly connected to the shell 2, and the inner wall of the second bracket 6 is rotatably connected to the rotating wheel 7. The staff puts the pipe on the rotating wheel 7 and starts the external motor of the rotating wheel 7 to rotate the rotating wheel 7. The rotating wheel 7 drives the pipe to move and moves the pipe cutting position to the bottom of the cutting assembly 4. A limiting mechanism 5 is set inside the shell 2. The limiting mechanism 5 includes: a motor 51 model selected according to actual needs to meet the work, a motor 51, fixedly connected to the outer wall of the shell 2, a double-headed screw 52, ​​fixedly connected to the output shaft of the motor 51, and a motor 5 1 drives the double-headed screw 52 to rotate, and is rotatably connected to the inner wall of the housing 2 through the bearing. The threaded block 53 is threadedly connected to the outer wall of the double-headed screw 52. The double-headed screw 52 drives the threaded block 53 to move and is slidably engaged with the inner wall of the housing 2. The threaded block 53 slides on the transverse groove in the inner wall of the housing 2. The vertical block 54 is fixedly connected to the outer wall of the threaded block 53. The threaded block 53 drives the vertical block 54 to move. The inclined column 55 is rotatably connected to the inner wall of the vertical block 54 through a pin shaft. The vertical block 54 drives the inclined column 55 to rotate. The curved column 56 is rotatably connected to the inner wall of the inclined column 55 through a pin shaft. The inclined column 55 drives the curved column 56 to move, and passes through the inner wall of the workbench 1 and is movably connected to the workbench 1. The curved column 56 moves in the workbench 1. The pressure plate 57 is fixedly connected to the end of the curved column 56. The curved column 56 drives the pressure plate 57 to descend and contact the surface of the pipe. The blocking component 58 is arranged on the outside of the workbench 1. Among them, the double-headed screw 52 is driven by the motor 51 to make the inclined columns 55 on both sides drive the curved column 56 to move, thereby driving the pressure plate 57 to limit the cut pipe to make the cross section neat, and the debris generated during cutting is blocked by the blocking component 58;

[0024] During the specific implementation process, it is worth noting that the motor 51 model is selected according to actual needs and can meet the work requirements. The cutting component 4 includes a fixed plate, a cutting motor and a cutting disc. The cutting motor model is selected according to actual needs and can meet the work requirements. The outer wall of the fixed plate is fixedly connected to the cutting motor through the motor sleeve. The output shaft of the cutting motor is fixedly connected to the cutting disc. The cutting motor is started, and the cutting motor drives the cutting disc to rotate. The staff puts the pipe on the rotating wheel 7 and starts the external motor of the rotating wheel 7, so that the rotating wheel 7 rotates. The rotating wheel 7 drives the pipe to move, and moves the pipe cutting position to the bottom of the cutting component 4. The cutting component 4 is started to automatically cut the pipe. Cutting, start the motors 51 on both sides at the same time, the motor 51 drives the double-headed screw 52 to rotate, the double-headed screw 52 drives the threaded block 53 to move, the threaded block 53 slides on the transverse groove in the inner wall of the shell 2, the threaded block 53 drives the vertical block 54 to move, the vertical block 54 drives the inclined column 55 to rotate, the inclined column 55 drives the curved column 56 to move, the curved column 56 moves in the workbench 1, the curved column 56 drives the pressing plate 57 to descend, contact with the surface of the pipe, and limit the pipe. After completion, stop the motors 51 on both sides at the same time. When the cutting is completed, rotate the motors 51 on both sides in the opposite direction at the same time, thereby driving the pressing plate 57 to rise back to the initial position, thereby limiting the obliquely cut pipe and making the cross-section neat;

[0025] Furthermore, the blocking assembly 58 includes: a first cover body 581, which is attached to the surface of the workbench 1, and a second cover body 582, which is attached to the surface of the workbench 1 and to the outer wall of the first cover body 581. The staff puts the first cover body 581 and the second cover body 582 on the workbench 1 so that the first cover body 581 and the second cover body 582 are attached together, and the threaded column 584 is threadedly connected to the inner wall of the first bracket 3. The staff rotates the handles 583 on both sides in turn, and the handles 583 drive the threaded column 584 to move. The threaded column 584 rotates into the first cover body 581 and the second cover body 582, and is respectively threadedly connected to the inner wall of the first cover body 581 and the inner wall of the second cover body 582. The handle 583 is fixedly connected to the end of the threaded column 584, wherein the first cover body 581 and the second cover body 582 are fixed to the workbench 1 by the threaded column 584, so as to block the debris generated during cutting and prevent the debris from flying around.

[0026] During the specific implementation process, it is worth noting that the staff puts the first cover 581 and the second cover 582 on the workbench 1 so that the first cover 581 and the second cover 582 fit together. Then the staff turns the handles 583 on both sides in turn. The handles 583 drive the threaded posts 584 to move. The threaded posts 584 rotate into the first cover 581 and the second cover 582, fixing the first cover 581 and the second cover 582 to the workbench 1, thereby blocking the debris generated during cutting and preventing the debris from flying everywhere.

[0027] Furthermore, a cutting table 42 is fixedly connected to the surface of the workbench 1, and the rotating wheel 7 moves the pipe to the cutting table 42, where the pipe is cut;

[0028] In the specific implementation process, it is worth noting that the rotating wheel 7 moves the pipe to the cutting table 42, where the pipe is cut;

[0029] Furthermore, an electric telescopic rod 41 is fixedly connected to the surface of the first bracket 3. The model of the electric telescopic rod 41 is selected according to actual needs and can meet the work requirements. The cutting assembly 4 is installed at the output end of the electric telescopic rod 41. When the electric telescopic rod 41 is started, the electric telescopic rod 41 drives the cutting assembly 4 to descend and cut the pipe. After the cutting is completed, the electric telescopic rod 41 drives the cutting assembly 4 to rise back to the initial position, and the electric telescopic rod 41 and the cutting assembly 4 are stopped.

[0030] In the specific implementation process, it is worth noting that the model of the electric telescopic rod 41 is selected according to actual needs and can meet the work requirements. When the electric telescopic rod 41 is started, the electric telescopic rod 41 drives the cutting assembly 4 to descend and cut the pipe. After the cutting is completed, the electric telescopic rod 41 drives the cutting assembly 4 to rise back to the initial position, and the electric telescopic rod 41 and the cutting assembly 4 are stopped.

[0031] Of course, the electric telescopic rod 41 can be replaced by a hydraulic cylinder. The specific model is not limited, as long as it meets the technical solution recorded in this embodiment, or other feasible means can be used to drive the cutting assembly 4 to move.

[0032] Specifically, first, the staff puts the first cover body 581 and the second cover body 582 on the workbench 1 so that the first cover body 581 and the second cover body 582 fit together, and then the staff turns the handles 583 on both sides in turn, and the handles 583 drive the threaded column 584 to move, and the threaded column 584 rotates into the first cover body 581 and the second cover body 582, and fixes the first cover body 581 and the second cover body 582 to the workbench 1, and then the staff puts the pipe on the rotating wheel 7, starts the external motor of the rotating wheel 7, so that the rotating wheel 7 rotates, and the rotating wheel 7 drives the pipe to move, and the pipe is moved to the cutting table 42, and the pipe cutting position is moved to the bottom of the cutting assembly 4, and the external motor of the rotating wheel 7 is stopped, and the motors 51 on both sides are started at the same time, and the motor 51 drives the double-headed screw 52 to move. The double-headed screw 52 drives the threaded block 53 to move, and the threaded block 53 slides on the transverse groove in the inner wall of the shell 2, and the threaded block 53 drives the vertical block 54 to move, and the vertical block 54 drives the inclined column 55 to rotate, and the inclined column 55 drives the curved column 56 to move, and the curved column 56 moves in the workbench 1, and the curved column 56 drives the pressing plate 57 to descend and contact the surface of the pipe to limit the pipe. After completion, the motors 51 on both sides are stopped at the same time. After completion, the electric telescopic rod 41 is started, and the cutting assembly 4 is started. The electric telescopic rod 41 drives the cutting assembly 4 to descend and cut the pipe. After cutting is completed, the electric telescopic rod 41 drives the cutting assembly 4 to rise back to the initial position, stop the electric telescopic rod 41 and the cutting assembly 4, and rotate the motors 51 on both sides in the opposite direction at the same time, thereby driving the pressing plate 57 to rise back to the initial position.

[0033] Example 2, by Figure 2 and 3 It can be seen that the second bracket 6 is fixedly connected to the connecting bracket 81 through the spring 82. The connecting bracket 81 compresses the spring 82. The material of the spring 82 is carbon spring steel. The elastic coefficient of the spring 82 is selected according to actual needs and can meet the work. The inner wall of the connecting bracket 81 is rotatably connected to the pressure wheel 8. At this time, the pipe 7 drives the pressure wheel 8 to rise, and the pressure wheel 8 moves the connecting bracket 81. The outer wall of the connecting bracket 81 is fixedly connected to the slider 83. The connecting bracket 81 drives the slider 83 to slide on the vertical groove on the inner wall of the second bracket 6. The outer wall of the slider 83 slides and is engaged with the inner wall of the second bracket 6.

[0034] In the specific implementation process, it is worth noting that the material of the spring 82 is carbon spring steel, and the elastic coefficient of the spring 82 is selected according to actual needs to meet the work. When the staff puts the pipe on the rotating wheel 7, the pipe 7 drives the pressure wheel 8 to rise, and the pressure wheel 8 moves the connecting frame 81. The connecting frame 81 compresses the spring 82, and the connecting frame 81 drives the slider 83 to slide on the vertical groove on the inner wall of the second bracket 6, thereby fixing the pipe during movement;

[0035] Specifically, when the staff places the pipe on the rotating wheel 7, the pipe 7 drives the pressure wheel 8 to rise, the connecting frame 81 of the pressure wheel 8 moves, the connecting frame 81 compresses the spring 82, and the connecting frame 81 drives the slider 83 to slide on the vertical groove on the inner wall of the second bracket 6, thereby fixing the pipe during the movement.

[0036] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include," "comprise," or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device that includes a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations. The phrase "includes an element defined by..." does not exclude the presence of other identical elements in the process, method, article, or device that includes the element.

[0037] In the present invention, unless otherwise clearly stipulated and limited, the terms "install", "set", "connect", "fix", "screw" and the like should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integrated connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal connection of two elements or the interaction relationship between two elements. Unless otherwise clearly defined, ordinary technicians in this field can understand the specific meanings of the above terms in the present invention according to the specific circumstances.

[0038] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An automatic pipe cutting device capable of performing cross-section processing, comprising a workbench (1), characterized in that: The surface of the workbench (1) is fixedly connected to a first bracket (3) and a second bracket (6), a cutting assembly (4) is provided above the workbench (1), an outer wall of the workbench (1) is fixedly connected to a shell (2), an inner wall of the second bracket (6) is rotatably connected to a rotating wheel (7), and a limiting mechanism (5) is provided inside the shell (2), the limiting mechanism (5) comprising: A motor (51) fixedly connected to the outer wall of the housing (2); A double-headed screw (52) is fixedly connected to the output shaft of the motor (51) and is rotatably connected to the inner wall of the housing (2) via a bearing; A threaded block (53) is threadedly connected to the outer wall of the double-headed screw (52) and is slidably engaged with the inner wall of the housing (2); A vertical block (54) fixedly connected to the outer wall of the threaded block (53); An inclined column (55) is rotatably connected to the inner wall of the vertical block (54) via a pin; A curved column (56) is rotatably connected to the inner wall of the inclined column (55) via a pin, passes through the inner wall of the workbench (1), and is movably connected to the workbench (1); A pressure plate (57) fixedly connected to the end of the curved column (56); A blocking assembly (58) is arranged outside the workbench (1); The double-headed screw (52) is driven by the motor (51) to move the inclined columns (55) on both sides to drive the curved columns (56), thereby driving the pressing plate (57) to limit the cut pipe to make the cross section neat, and the blocking component (58) blocks the debris generated during cutting.

2. The automatic pipe cutting device capable of cross-section processing according to claim 1, characterized in that: The blocking assembly (58) comprises: A first cover (581) is attached to the surface of the workbench (1); A second cover (582) is attached to the surface of the workbench (1) and to the outer wall of the first cover (581); A threaded column (584) is threadedly connected to the inner wall of the first bracket (3), and is threadedly connected to the inner wall of the first cover (581) and the inner wall of the second cover (582); A handle (583) fixedly connected to the end of the threaded column (584); The first cover body (581) and the second cover body (582) are fixed to the workbench (1) via the threaded column (584), thereby blocking debris generated during cutting and preventing the debris from splashing around.

3. The automatic pipe cutting device capable of cross-section processing according to claim 1, characterized in that: A cutting table (42) is fixedly connected to the surface of the workbench (1).

4. The automatic pipe cutting device capable of cross-section processing according to claim 1, characterized in that: An electric telescopic rod (41) is fixedly connected to the surface of the first bracket (3), and the cutting assembly (4) is installed at the output end of the electric telescopic rod (41).

5. The automatic pipe cutting device capable of cross-section processing according to claim 1, characterized in that: The second bracket (6) is fixedly connected to the connecting bracket (81) via a spring (82); the inner wall of the connecting bracket (81) is rotatably connected to the pressure wheel (8); the outer wall of the connecting bracket (81) is fixedly connected to the slider (83); the outer wall of the slider (83) is slidably engaged with the inner wall of the second bracket (6).