Limiting mechanism for cutting corrugated pipe network sleeve
Through the combination of the X-axis moving mechanism, the corrugated pipe clamping mechanism and the oblique limiting mechanism, the problem of low limit accuracy and efficiency in the cutting of the corrugated pipe mesh is solved, and efficient and accurate cutting effect is achieved.
Patent Information
- Application Number
- CN202422523581.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-18
AI Technical Summary
During the cutting process of existing bellows pipe mesh, the limit processing accuracy is low, the efficiency is low, and there are deviations in manual operation, making it difficult to meet the needs of high accuracy and high efficiency.
The X-axis moving mechanism, corrugated pipe clamping mechanism, mesh sleeve clamping mechanism and oblique limiting mechanism are adopted to accurately and long cutting of corrugated pipe mesh sleeve through clamping and limiting, and the three-jaw chuck mechanism and drive cylinder are used to achieve stable clamping of corrugated pipe. The oblique limiting mechanism limits the mesh sleeve sideways to improve cutting accuracy and efficiency.
It realizes efficient and precise cutting of corrugated pipe mesh sleeves, is easy to operate, improves cutting efficiency and accuracy, and reduces deviations in manual operation.
Smart Images

Figure CN223222593U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bellows mesh sleeve cutting, in particular to a limiting mechanism for bellows mesh sleeve cutting. Background Art
[0002] Wire mesh metal bellows are widely used in the fields of industry, civil, aerospace, etc. After the metal bellows are formed, the outer layer of the bellows needs to be woven with a wire mesh. The existing bellows mesh is mainly cut by manual control and an angle grinder is used for cutting. The feed rate mainly depends on manual operation, which has low precision and efficiency. In addition, the bellows needs to be manually rotated during operation, which has certain deviations and poor limiting processing effect.
[0003] In view of the above situation, it is necessary to improve the existing cutting and limiting method of the bellows mesh sleeve so that it can adapt to the current need for cutting and limiting the bellows mesh sleeve. Utility Model Content
[0004] To achieve the above-mentioned purpose, the technical solution of the present invention is as follows: a limiting mechanism for bellows mesh sleeve cutting includes an X-axis moving mechanism, a mounting frame arranged on the X-axis moving mechanism, a bellows clamping mechanism arranged on the mounting frame, a bellows arranged on the bellows clamping mechanism, a mesh sleeve clamping mechanism arranged on one side of the mounting frame, and an oblique limiting mechanism arranged on one side of the X-axis moving mechanism; the mounting frame is connected to the X-axis moving mechanism, the bellows clamping mechanism is fixedly mounted on the mounting frame, and the mesh sleeve clamping mechanism is fixedly mounted on the mounting frame.
[0005] As a further supplement to the present technical solution, the bellows clamping mechanism is a three-jaw chuck mechanism.
[0006] As a further supplement to the present technical solution, the mesh sleeve clamping mechanism is mounted on the bellows clamping mechanism via a plurality of fixed shafts.
[0007] As a further supplement to the present technical solution, the mesh clamping mechanism includes a fixing frame, and a clamping device arranged on one side of the fixing frame and symmetrically arranged up and down. The fixing frame is fixedly connected to the bellows clamping mechanism via a fixed shaft.
[0008] As a further supplement to the present technical solution, the clamping device includes a driving cylinder, a moving block connected to the driving cylinder, and a clamping block arranged on one side of the moving block. The driving cylinder is fixedly mounted on a fixed frame, and the clamping block is fixedly mounted on one side of the moving block.
[0009] As a further supplement to the present technical solution, a longitudinal slide rail is provided on the fixed frame on one side of the moving block, and a slider is provided on the side of the moving block close to the longitudinal slide rail. The slider is fixedly mounted on the moving block, and the slider is slidably mounted on the longitudinal slide rail.
[0010] As a further supplement to the present technical solution, the oblique limiting mechanism includes a support frame, a vertical frame arranged on the support frame, a control cylinder arranged on the vertical frame, and a clamping block connected to the control cylinder. The support frame is fixedly installed on the X-axis moving mechanism, the vertical frame is fixedly installed on the support frame, the control cylinder is arranged at an angle, and the clamping block is arranged on one side of the clamping device.
[0011] As a further supplement to the present technical solution, the clamping block is arranged in a V shape on one side close to the clamping device.
[0012] Its beneficial effect is that the mesh sleeve can be well limited by the bellows, and after being installed to a certain length, the mesh sleeve is clamped, which is convenient for subsequent cutting mechanism to cut the mesh sleeve, with high efficiency and easy operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0014] Figure 2 This is a schematic diagram of the structure of the utility model without the bellows installed;
[0015] In the figure, 1. X-axis moving mechanism; 2. Mounting frame; 3. Bellows clamping mechanism; 4. Bellows; 5. Net clamping mechanism; 51. Fixed frame; 52. Clamping device; 521. Driving cylinder; 522. Moving block; 523. Clamping block; 524. Longitudinal slide rail; 525. Slider; 6. Oblique limiting mechanism; 61. Support frame; 62. Vertical frame; 63. Control cylinder; 64. Clamping block; 7. Fixed axis. DETAILED DESCRIPTION
[0016] In order to make the technical solution more clear to those skilled in the art, Figure 1 -2 Detailed description of the technical solution of this utility model:
[0017] The limiting mechanism for cutting the bellows mesh sleeve comprises an X-axis moving mechanism 1, a mounting frame 2 arranged on the X-axis moving mechanism 1, a bellows 4 clamping mechanism 3 arranged on the mounting frame 2, a bellows 4 arranged on the bellows 4 clamping mechanism 3, a mesh sleeve clamping mechanism 5 arranged on one side of the mounting frame 2, and an oblique limiting mechanism 6 arranged on one side of the X-axis moving mechanism 1. The mounting frame 2 is connected to the X-axis moving mechanism 1, the bellows 4 clamping mechanism 3 is fixedly installed on the mounting frame 2, and the mesh sleeve clamping mechanism 5 is fixedly installed. On the mounting frame 2; the bellows 4 clamping mechanism 3 can clamp the bellows 4, so that the mesh sleeve can be subsequently mounted on the bellows 4. Among them, the setting of the X-axis moving mechanism 1 can control the bellows 4 clamping mechanism 3 and the mesh sleeve clamping mechanism 5 to move as a whole in the X direction, so that the mesh sleeve can be better installed on the bellows 4 and fixed-length cutting can be achieved. The mesh sleeve clamping mechanism 5 can clamp the mesh sleeve mounted on the bellows 4, so that the mesh sleeve can be subsequently cut. The oblique limiting mechanism 6 can also limit the mesh sleeve.
[0018] Preferably, the bellows 4 clamping mechanism 3 is a three-jaw chuck mechanism, which can well clamp the bellows 4 and facilitate the subsequent installation of the net sleeve thereon.
[0019] Among them, the net sleeve clamping mechanism 5 is installed on the bellows 4 clamping mechanism 3 through multiple fixed shafts 7; the net sleeve clamping mechanism 5 includes a fixing frame 51, a clamping device 52 arranged on one side of the fixing frame 51 and symmetrically arranged up and down, the fixing frame 51 is fixedly connected to the bellows 4 clamping mechanism 3 through the fixed shaft 7, the fixing frame 51 can support the clamping device 52, and the clamping device 52 can clamp and limit the net sleeve. In detail, the clamping device 52 includes a driving cylinder 521, a driving cylinder 522 and a driving cylinder 523. The moving block 522 connected to the driving cylinder 521 and the clamping block 523 arranged on one side of the moving block 522, the driving cylinder 521 is fixedly installed on the fixed frame 51, and the clamping block 523 is fixedly installed on one side of the moving block 522, the driving cylinder 521 can control the moving block 522 to move up and down, the moving block 522 can control the clamping block 523 to move up and down, the clamping blocks 523 on the upper and lower sides can realize the clamping operation of the mesh sleeve, which is convenient for the subsequent cutting operation of the mesh sleeve.
[0020] In order to make the movement of the moving block 522 more stable, a longitudinal slide rail 524 is provided on the fixed frame 51 on one side of the moving block 522, and a slider 525 is provided on the side of the moving block 522 close to the longitudinal slide rail 524. The slider 525 is fixedly installed on the moving block 522, and the slider 525 is slidably installed on the longitudinal slide rail 524. When the driving cylinder 521 controls the moving block 522 to move up and down, the setting of the slider 525 and the longitudinal slide rail 524 can make the moving block 522 move axially stably, and the clamping effect of the net sleeve is good.
[0021] The structure of the oblique limiting mechanism 6 will be explained in detail below. The oblique limiting mechanism 6 includes a support frame 61, a vertical frame 62 arranged on the support frame 61, a control cylinder 63 arranged on the vertical frame 62, and a clamping block 64 connected to the control cylinder 63. The support frame 61 is fixedly installed on the X-axis moving mechanism 1, the vertical frame 62 is fixedly installed on the support frame 61, the control cylinder 63 is tilted, and the clamping block 64 is arranged on one side of the clamping device 52, wherein the clamping block 64 is arranged in a V shape close to the side of the clamping device 52; when working, the control cylinder 63 can control the movement of the clamping block 64, thereby limiting the side of the mesh sleeve, so that the subsequent cutting mechanism can better cut the mesh sleeve.
[0022] The above technical solutions only reflect the preferred technical solutions of the present utility model. Any changes that may be made to certain parts thereof by technicians in this technical field all reflect the principles of the present utility model and fall within the scope of protection of the present utility model.
Claims
1. The limiting mechanism for cutting the bellows mesh sleeve is characterized by: The invention comprises an X-axis moving mechanism (1), a mounting frame (2) arranged on the X-axis moving mechanism (1), a bellows (4) clamping mechanism (3) arranged on the mounting frame (2), a bellows (4) arranged on the bellows (4) clamping mechanism (3), a net sleeve clamping mechanism (5) arranged on one side of the mounting frame (2), and an oblique limiting mechanism (6) arranged on one side of the X-axis moving mechanism (1); the mounting frame (2) is connected to the X-axis moving mechanism (1), the bellows (4) clamping mechanism (3) is fixedly mounted on the mounting frame (2), and the net sleeve clamping mechanism (5) is fixedly mounted on the mounting frame (2).
2. The limiting mechanism for cutting the corrugated pipe mesh sleeve according to claim 1, characterized in that: The bellows (4) clamping mechanism (3) is a three-jaw chuck mechanism.
3. The limiting mechanism for cutting the corrugated pipe mesh sleeve according to claim 2, characterized in that: The mesh sleeve clamping mechanism (5) is mounted on the bellows (4) clamping mechanism (3) via a plurality of fixed shafts (7).
4. The limiting mechanism for cutting the corrugated pipe mesh sleeve according to claim 3, characterized in that: The net sleeve clamping mechanism (5) comprises a fixing frame (51) and a clamping device (52) arranged on one side of the fixing frame (51) and symmetrically arranged up and down. The fixing frame (51) is fixedly connected to the bellows (4) clamping mechanism (3) via a fixed shaft (7).
5. The limiting mechanism for cutting the corrugated pipe mesh sleeve according to claim 4, characterized in that: The clamping device (52) comprises a driving cylinder (521), a moving block (522) connected to the driving cylinder (521), and a clamping block (523) arranged on one side of the moving block (522); the driving cylinder (521) is fixedly mounted on a fixed frame (51), and the clamping block (523) is fixedly mounted on one side of the moving block (522).
6. The limiting mechanism for cutting the corrugated pipe mesh sleeve according to claim 5, characterized in that: A longitudinal slide rail (524) is provided on the fixed frame (51) at one side of the moving block (522); a slider (525) is provided on the side of the moving block (522) close to the longitudinal slide rail (524); the slider (525) is fixedly mounted on the moving block (522); and the slider (525) is slidably mounted on the longitudinal slide rail (524).
7. The limiting mechanism for cutting the corrugated pipe mesh sleeve according to claim 5, characterized in that: The oblique limiting mechanism (6) comprises a support frame (61), a stand frame (62) arranged on the support frame (61), a control cylinder (63) arranged on the stand frame (62), and a clamping block (64) connected to the control cylinder (63); the support frame (61) is fixedly mounted on the X-axis moving mechanism (1); the stand frame (62) is fixedly mounted on the support frame (61); the control cylinder (63) is arranged obliquely; and the clamping block (64) is arranged on one side of the clamping device (52).
8. The limiting mechanism for cutting the corrugated pipe mesh sleeve according to claim 7, characterized in that: The clamping block (64) is arranged in a V shape on one side close to the clamping device (52).