Pipe fixing device for a beveling machine

CN224725494UActive Publication Date: 2026-09-08JICHUANG MASCH MFG WUXI CO LTD
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Patent Information

Application Number
CN202522166704.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-09-08
Estimated Expiration
2035-10-14

AI Technical Summary

Technical Problem

[0003]但是在实际使用时类似结构的管子固定装置还存在诸多缺陷,如:现有的管子固定装置不方便,同时现有的管子固定装置不方便,所以需要设计一种坡口机用管子固定装置

Benefits of technology

[0022] This invention utilizes a servo motor in the beveling cutting assembly to drive a bidirectional screw to rotate, which in turn causes the first moving seat to move linearly. This, in turn, allows the first adjusting rod to adjust its angle under the combined action of the first bearing rod and the limiting groove, thus achieving precise adjustment of the cutting edge position. This precise adjustment can meet different beveling cutting requirements, improve the accuracy of beveling cutting, reduce cutting errors, and is suitable for processing various beveling specifications. The bidirectional screw in the beveling cutting assembly rotates, driving the second moving seat in the pipe support assembly to move linearly. Through the transmission of the second bearing rod and the second adjusting rod, the support plate and the limiting roller move up and down to adapt to pipe bodies of different sizes, thereby achieving effective support for pipes of different sizes. This ensures pipe stability, prevents pipe shaking, improves cutting quality, and is compatible with processing pipes of various diameters, improving the versatility of the device.

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Abstract

The utility model relates to mechanical manufacturing technical field discloses a kind of pipe fixing device for beveling machine, including installation component, the installation component includes bottom, the top of the bottom is fixedly installed with support frame, the inside of the support frame is equipped with limit slot seat. The utility model is driven bidirectional screw rod rotation by servo motor in beveling cutting assembly, drive first mobile seat linear motion, and then make first adjusting rod angle adjustment under the synergic action of first bearing rod and limit slot, to realize the accurate adjustment of blade position, improve the precision of beveling cutting, reduce cutting error, applicable to the processing demand of a variety of different bevel specifications, by the rotation of bidirectional screw rod in beveling cutting assembly, drive second mobile seat linear motion in pipeline support assembly, by the transmission of second bearing rod and second adjusting rod, make support plate and limit roller move up and down to adapt to different size pipeline ontology, to realize the effective support to different size pipeline.
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Description

Technical Field

[0001] This utility model relates to the field of mechanical manufacturing, and in particular to a pipe fixing device for a beveling machine. Background Technology

[0002] With the development of the petrochemical industry, a large number of pipelines need to be installed and maintained, and the requirements for the beveling and welding quality of pipelines are getting higher and higher. This pipe fixing device can improve the accuracy and efficiency of beveling, ensure welding quality, and meet the needs of the industry.

[0003] However, in actual use, similar pipe fixing devices still have many defects, such as: the existing pipe fixing devices are inconvenient, so it is necessary to design a pipe fixing device for beveling machines. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides a pipe fixing device for a beveling machine.

[0005] This utility model is achieved using the following technical solution: a pipe fixing device for a beveling machine, comprising an installation assembly, the installation assembly including a bottom, a support frame fixedly installed on the top of the bottom, a limit groove being formed inside the support frame, a first fixing seat fixedly installed at the front end of the support frame via a connecting frame, and a second fixing seat fixedly installed at the rear end of the support frame via a second installation rod, further comprising:

[0006] A bevel cutting assembly includes a servo motor fixedly mounted on the outer surface of a first fixed base. The output end of the servo motor is fixedly connected to a bidirectional screw. The front end of the outer surface of the bidirectional screw is threadedly connected to a first movable base. A first adjusting rod is provided on the top of the first movable base.

[0007] A pipe support assembly, the pipe support assembly including a second movable seat threadedly connected to the front end of the outer surface of a bidirectional screw, and a support plate provided on the top of the second movable seat;

[0008] The pipe body is disposed on the outer surface of the support plate.

[0009] As a further improvement to the above solution, a connecting frame is fixedly installed at the front end of the outer surface of the support frame, a first fixing seat is fixedly installed at the top of the connecting frame, and a first mounting rod is fixedly installed at the rear end of the outer surface of the support frame.

[0010] Through the above technical solution, the structure of fixing the connecting frame at the front end of the outer surface of the support frame, fixing the first fixing seat at the top of the connecting frame, and fixing the first mounting rod at the rear end of the outer surface of the support frame, drives the first fixing seat and the first mounting rod to be stably installed on the support frame, thereby providing a stable installation foundation for the bevel cutting assembly and the pipe support assembly.

[0011] As a further improvement to the above solution, a connecting seat is fixedly installed inside the first mounting rod, the connecting seat is sleeved on the outer surface of the bidirectional screw, a second mounting rod is fixedly installed on the outer surface of the connecting seat, and a second fixing seat is fixedly installed at the rear end of the second mounting rod.

[0012] Through the above technical solution, the connecting seat is fixedly installed inside the first mounting rod, the connecting seat is sleeved on the outer surface of the bidirectional screw, the second mounting rod is fixedly installed on the outer surface of the connecting seat, and the second fixed seat is fixedly installed at the rear end of the second mounting rod. This structure ensures the stable installation of the bidirectional screw in the device and the positioning of the second fixed seat, thereby ensuring the stability of the rotation of the bidirectional screw and providing accurate support points for the pipeline support components.

[0013] As a further improvement to the above solution, a bidirectional screw is rotatably installed inside the first fixed base, and the output end of the servo motor passes through the first fixed base and is fixedly connected to the bidirectional screw.

[0014] Through the above technical solution, the servo motor serves as the power source. This connection method ensures the effective transmission of power, enabling the bidirectional screw to rotate according to the control requirements, thereby precisely controlling the movement of the first moving seat and ultimately achieving functions such as precise adjustment of the blade position.

[0015] As a further improvement to the above solution, a first bearing rod is rotatably mounted inside the first movable seat, and a first adjusting rod is rotatably mounted on the top of the first bearing rod. The first adjusting rod is rotatably mounted inside the first fixed seat.

[0016] Through the above technical solution, this structure effectively converts different forms of motion, enabling the bevel cutting component to precisely adjust the blade position as needed to meet different bevel cutting requirements.

[0017] As a further improvement to the above solution, a knife edge is provided at the rear end of the first adjusting rod, the first adjusting rod is slidably installed inside the limiting groove, and a second bearing rod is rotatably installed inside the second moving seat.

[0018] Through the above technical solution, by opening a cutting edge at the rear end of the first adjusting rod, sliding the first adjusting rod inside the limiting groove, and rotating the second bearing rod inside the second moving seat, the structure operates to drive the first adjusting rod to accurately adjust the cutting edge position under the limitation of the limiting groove, while providing a structural basis for the movement of the second moving seat, thereby improving the bevel cutting accuracy and preparing for the movement of the pipe support components.

[0019] As a further improvement to the above solution, a second adjusting rod is rotatably mounted on the top of the second bearing rod. The second adjusting rod is rotatably mounted inside the second fixed seat. A support plate is fixedly mounted on the top of the second adjusting rod, and a limit roller is rotatably mounted inside the support plate.

[0020] Through the above technical solution, the second adjusting rod is rotatably installed on the top of the second bearing rod. The second adjusting rod is rotatably installed inside the second fixed seat. The support plate is fixedly installed on the top of the second adjusting rod. The limiting roller is rotatably installed inside the support plate. The operation of the structure drives the linear motion of the second moving seat to be converted into effective support for the pipe body by the support plate and the limiting roller. This achieves effective support for pipe bodies of different diameters and ensures the stability of the pipe.

[0021] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0022] This invention utilizes a servo motor in the beveling cutting assembly to drive a bidirectional screw to rotate, which in turn causes the first moving seat to move linearly. This, in turn, allows the first adjusting rod to adjust its angle under the combined action of the first bearing rod and the limiting groove, thus achieving precise adjustment of the cutting edge position. This precise adjustment can meet different beveling cutting requirements, improve the accuracy of beveling cutting, reduce cutting errors, and is suitable for processing various beveling specifications. The bidirectional screw in the beveling cutting assembly rotates, driving the second moving seat in the pipe support assembly to move linearly. Through the transmission of the second bearing rod and the second adjusting rod, the support plate and the limiting roller move up and down to adapt to pipe bodies of different sizes, thereby achieving effective support for pipes of different sizes. This ensures pipe stability, prevents pipe shaking, improves cutting quality, and is compatible with processing pipes of various diameters, improving the versatility of the device.

[0023] This invention, through its synchronous structure, adjusts the pipe support component while simultaneously adjusting the beveling cutting component. When the blade position of the first adjusting rod in the beveling cutting component is adjusted according to the beveling cutting requirements, the pipe support component synchronously adjusts the support plate and limiting rollers to support the pipe body. This synchronous adjustment structure promotes the coordinated operation of beveling cutting and pipe support, thereby improving work efficiency and enabling faster beveling cutting. When the beveling cutting component adjusts the blade position, the pipe support component synchronously adjusts its support for the pipe, avoiding pipe shaking or displacement caused by improper support, resulting in more precise and smooth beveling cutting and reducing the occurrence of cutting defects. Attached Figure Description

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

[0025] Figure 2 This is a schematic diagram of the installation component structure of this utility model;

[0026] Figure 3 This is a schematic diagram of the internal structure of the present utility model;

[0027] Figure 4 This utility model Figure 3 Enlarged schematic diagram of the structure at point A in the middle;

[0028] Figure 5 This utility model Figure 3 Enlarged schematic diagram of the structure at point B.

[0029] Explanation of key symbols:

[0030] 1. Mounting components; 101. Bottom; 102. Support frame; 103. Limiting groove; 104. Connecting frame; 105. First fixed seat; 106. First mounting rod; 107. Connecting seat; 108. Second mounting rod; 109. Second fixed seat; 2. Bevel cutting components; 201. Servo motor; 202. Bidirectional screw; 203. First moving seat; 204. First bearing rod; 205. First adjusting rod; 3. Pipe support components; 301. Second moving seat; 302. Second bearing rod; 303. Second adjusting rod; 304. Support plate; 305. Limiting roller; 4. Pipe body. Detailed Implementation

[0031] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0032] Example:

[0033] Please combine Figure 1-5 This embodiment of a pipe fixing device for a beveling machine includes a mounting assembly 1. The mounting assembly 1 includes a bottom 101, a support frame 102 fixedly mounted on the top of the bottom 101, a limiting groove 103 formed inside the support frame 102, a first fixing seat 105 fixedly mounted on the front end of the support frame 102 via a connecting frame 104, and a second fixing seat 109 fixedly mounted on the rear end of the support frame 102 via a second mounting rod 108. It also includes:

[0034] The bevel cutting assembly 2 includes a servo motor 201 fixedly installed on the outer surface of the first fixed base 105. The output end of the servo motor 201 is fixedly connected to a bidirectional screw 202. The front end of the outer surface of the bidirectional screw 202 is threadedly connected to a first movable base 203. A first adjusting rod 205 is provided on the top of the first movable base 203.

[0035] The pipe support assembly 3 includes a second movable seat 301 threadedly connected to the front end of the outer surface of the bidirectional screw 202, and a support plate 304 is provided on the top of the second movable seat 301.

[0036] Pipe body 4 is disposed on the outer surface of support plate 304.

[0037] A connecting frame 104 is fixedly installed on the front end of the outer surface of the support frame 102, a first fixing seat 105 is fixedly installed on the top of the connecting frame 104, and a first mounting rod 106 is fixedly installed on the rear end of the outer surface of the support frame 102.

[0038] A connecting seat 107 is fixedly installed inside the first mounting rod 106. The connecting seat 107 is sleeved on the outer surface of the bidirectional screw 202. A second mounting rod 108 is fixedly installed on the outer surface of the connecting seat 107. A second fixing seat 109 is fixedly installed at the rear end of the second mounting rod 108.

[0039] The first fixing seat 105 is fixedly installed at the front end of the support frame 102 via the connecting frame 104, and the second fixing seat 109 is fixedly installed at the rear end via the first mounting rod 106, the connecting seat 107, and the second mounting rod 108. These structures together form a stable frame for installing the bevel cutting assembly 2 and the pipe support assembly 3.

[0040] A bidirectional screw 202 is rotatably mounted inside the first fixed base 105, and the output end of the servo motor 201 passes through the first fixed base 105 and is fixedly connected to the bidirectional screw 202.

[0041] A first support rod 204 is rotatably mounted inside the first movable seat 203, and a first adjusting rod 205 is rotatably mounted on the top of the first support rod 204. The first adjusting rod 205 is rotatably mounted inside the first fixed seat 105.

[0042] The linear motion of the first moving seat 203 is transmitted to the first adjusting rod 205 through the first bearing rod 204, so that the first adjusting rod 205 can be angled under the limit of the limiting groove 103, thereby adjusting the position of the cutting edge at the rear end of the first adjusting rod 205 to adapt to different bevel cutting requirements.

[0043] The rear end of the first adjusting rod 205 is provided with a knife edge. The first adjusting rod 205 is slidably installed inside the limiting groove 103. The second bearing rod 302 is rotatably installed inside the second moving seat 301.

[0044] A second adjusting rod 303 is rotatably mounted on the top of the second bearing rod 302. The second adjusting rod 303 is rotatably mounted inside the second fixed seat 109. A support plate 304 is fixedly mounted on the top of the second adjusting rod 303. A limit roller 305 is rotatably mounted inside the support plate 304.

[0045] When pipe bodies 4 of different sizes are placed on the outer surface of the support plate 304, the support plate 304 and the limiting roller 305 can support the inner wall of the pipe. As the first adjusting rod 205 in the bevel cutting assembly 2 is adjusted, the pipe support assembly 3 can be adjusted synchronously to ensure the stability of the pipe during the bevel cutting process.

[0046] The implementation principle of a pipe fixing device for a beveling machine in this application embodiment is as follows: the mounting component 1 provides a basic support structure for the entire device, the bottom 101 is the foundation of the entire device, the support frame 102 is fixed on the top of the bottom 101, the limiting groove 103 opened inside the support frame 102 provides a limiting function for the subsequent movement of the first adjusting rod 205, the front end of the support frame 102 is fixedly installed with the first fixing seat 105 through the connecting frame 104, and the rear end is fixedly installed with the second fixing seat 109 through the first mounting rod 106, the connecting seat 107, and the second mounting rod 108. These structures together construct a stable frame for installing the beveling cutting component 2 and the pipe support component 3;

[0047] In the bevel cutting assembly 2, the servo motor 201 serves as the power source. When the servo motor 201 starts, its output drives the bidirectional screw 202 to rotate. Since the front end of the outer surface of the bidirectional screw 202 is threadedly connected to the first moving seat 203, the rotation of the bidirectional screw 202 will cause the first moving seat 203 to move linearly along the bidirectional screw 202. The first moving seat 203 is rotatably mounted with a first bearing rod 204. The top of the first bearing rod 204 is rotatably mounted with a first adjusting rod 205. The first adjusting rod 205 is rotatably mounted inside the first fixed seat 105 and slidably mounted inside the limiting groove 103. The linear movement of the first moving seat 203 is transmitted to the first adjusting rod 205 through the first bearing rod 204, so that the first adjusting rod 205 can be angled under the limitation of the limiting groove 103, thereby adjusting the position of the cutting edge at the rear end of the first adjusting rod 205 to adapt to different bevel cutting requirements.

[0048] Similarly, when the bidirectional screw 202 rotates, the second movable seat 301, which is threaded to the front end of its outer surface, also moves linearly. The second bearing rod 302 is rotatably installed inside the second movable seat 301, and the second adjusting rod 303 is rotatably installed on the top of the second bearing rod 302. The second adjusting rod 303 is rotatably installed inside the second fixed seat 109. The linear movement of the second movable seat 301 is transmitted to the second adjusting rod 303 through the second bearing rod 302, causing the second adjusting rod 303 to drive the top support plate 304 to move up and down. The limit roller 305 is rotatably installed inside the support plate 304. With this structure, when pipe bodies 4 of different sizes are placed on the outer surface of the support plate 304, the support plate 304 and the limit roller 305 can support the inner wall of the pipe. Furthermore, as the first adjusting rod 205 in the beveling cutting assembly 2 is adjusted, the pipe support assembly 3 can be adjusted synchronously to ensure the stability of the pipe during the beveling cutting process.

[0049] The above embodiments are merely preferred embodiments of this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.

Claims

1. A pipe fixing device for a beveling machine, comprising an installation assembly (1), the installation assembly (1) comprising a bottom (101), a support frame (102) fixedly mounted on the top of the bottom (101), a limiting groove (103) being formed inside the support frame (102), a first fixing seat (105) fixedly mounted on the front end of the support frame (102) via a connecting frame (104), and a second fixing seat (109) fixedly mounted on the rear end of the support frame (102) via a second mounting rod (108), characterized in that, Also includes: The bevel cutting assembly (2) includes a servo motor (201) fixedly installed on the outer surface of a first fixed base (105). The output end of the servo motor (201) is fixedly connected to a bidirectional screw (202). The front end of the outer surface of the bidirectional screw (202) is threadedly connected to a first movable base (203). The top of the first movable base (203) is provided with a first adjusting rod (205). The pipe support assembly (3) includes a second movable seat (301) threaded to the front end of the outer surface of the bidirectional screw (202), and a support plate (304) is provided on the top of the second movable seat (301); Pipe body (4), which is disposed on the outer surface of support plate (304).

2. The pipe fixing device for a beveling machine as described in claim 1, characterized in that: A connecting frame (104) is fixedly installed on the front end of the outer surface of the support frame (102), a first fixing seat (105) is fixedly installed on the top of the connecting frame (104), and a first mounting rod (106) is fixedly installed on the rear end of the outer surface of the support frame (102).

3. The pipe fixing device for a beveling machine as described in claim 2, characterized in that: A connecting seat (107) is fixedly installed inside the first mounting rod (106). The connecting seat (107) is sleeved on the outer surface of the bidirectional screw (202). A second mounting rod (108) is fixedly installed on the outer surface of the connecting seat (107). A second fixing seat (109) is fixedly installed at the rear end of the second mounting rod (108).

4. The pipe fixing device for a beveling machine as described in claim 1, characterized in that: A bidirectional screw (202) is rotatably mounted inside the first fixed base (105), and the output end of the servo motor (201) passes through the first fixed base (105) and is fixedly connected to the bidirectional screw (202).

5. The pipe fixing device for a beveling machine as described in claim 4, characterized in that: A first support rod (204) is rotatably mounted inside the first movable seat (203), and a first adjusting rod (205) is rotatably mounted on the top of the first support rod (204). The first adjusting rod (205) is rotatably mounted inside the first fixed seat (105).

6. The pipe fixing device for a beveling machine as described in claim 5, characterized in that: The first adjusting rod (205) has a knife edge at its rear end. The first adjusting rod (205) is slidably installed inside the limiting groove (103). The second moving seat (301) has a second bearing rod (302) rotatably installed inside it.

7. A pipe fixing device for a beveling machine as described in claim 6, characterized in that: A second adjusting rod (303) is rotatably mounted on the top of the second bearing rod (302). The second adjusting rod (303) is rotatably mounted inside the second fixed seat (109). A support plate (304) is fixedly mounted on the top of the second adjusting rod (303). A limit roller (305) is rotatably mounted inside the support plate (304).