A batch pipe cutting device with automatic film wrapping

Through the batch pipe cutting equipment of automatic film wrapping, the combination of the film wrapping module and the segmentation compression module is used to solve the instability problem during the pipe cutting process, and an efficient and uniform cutting effect is achieved.

CN120422294BActive Publication Date: 2025-08-29苏州众捷汽车零部件股份有限公司
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Patent Information

Application Number
CN202510934426.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-08
Publication Date
2025-08-29
Estimated Expiration
2045-07-08

AI Technical Summary

Technical Problem

During batch cutting of existing pipeline cutting equipment, vibrations are prone to occur between the pipelines, resulting in uneven cutting and uneven cutting, affecting the cutting quality and efficiency.

Method used

The batch pipe cutting equipment that uses automatic film wrapping is used to cooperate with the continuous film wrapping feeding mechanism and the cutting module, and the film wrapping module is automatically wrapped, and the film is synchronously divided and compacting module is used to cut and clamp the film. Combined with the side compression module, fixed pad plate and vertical compression module, etc., the stability of the pipe during the cutting process is ensured.

Benefits of technology

Maintain the stability of multiple pipes during the cutting process, avoid vibration, improve cutting efficiency and quality, ensure the uniformity of the cut, and achieve a continuous processing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an automatic film-wrapping batch pipe cutting device, which belongs to the field of pipe cutting technology and includes a conveying mechanism, a cutting and pressing mechanism, a cutting module, and a chassis. It also includes a continuous film-wrapping feeding mechanism and a cutting support platform. The continuous film-wrapping feeding mechanism includes multiple groups of stacking delivery modules distributed in parallel front and back, multiple groups of inclined transfer modules distributed in parallel front and back, a horizontal linear module, a film-wrapping module, and a synchronous cutting and pressing module. The mobile end of the horizontal linear module is equipped with a film-wrapping module for wrapping film on the pipe, and the film-wrapping module is equipped with a synchronous cutting and pressing module for cutting the film and pressing the end of the film. The conveying mechanism includes a synchronous conveyor and a material blocking module. The material blocking module is located between the two groups of synchronous conveyors on the right. Two groups of cutting support platforms are provided, and the two groups of cutting support platforms are located between the two groups of synchronous conveyors on the left. Through the above method, cutting efficiency is improved while ensuring cutting quality.
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Description

Technical Field

[0001] The invention relates to the technical field of pipe cutting, and in particular to automatic film wrapping batch pipe cutting equipment. Background Art

[0002] After the pipeline is produced, it will be cut into the required length by cutting equipment according to usage requirements; the cutter used for cutting often uses a high-speed rotating disc blade, which cuts the pipeline through the high-speed rotating blade.

[0003] For example, Chinese patent publication number CN219703672U discloses a device for cutting pipes in batches. The device drives multiple pipes to move through a feeding mechanism, fixes the pipes through a clamping mechanism, and then cuts the pipes through a sawing machine, thereby achieving batch cutting of pipes.

[0004] However, it is difficult for the device as a whole to ensure the overall stability of the pipeline. In actual cutting, when the pipelines are cut in batches, vibrations are likely to occur between the pipelines, which seriously interferes with the cutting operation, making the incisions uneven after cutting and affecting the cutting quality. There are many burrs on the pipelines after cutting, which require subsequent deburring, affecting production efficiency.

[0005] Based on this, the present invention designs an automatic film-wrapping batch pipe cutting device to solve the above problems. Summary of the Invention

[0006] In view of the above-mentioned shortcomings of the prior art, the present invention provides an automatic film-wrapping batch pipe cutting device.

[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions:

[0008] An automatic film wrapping batch pipe cutting device, comprising a conveying mechanism, a cutting material pressing mechanism, a cutting module and a chassis, and also comprising a continuous film wrapping feeding mechanism and a cutting material support table;

[0009] The continuous film wrapping feeding mechanism includes multiple groups of stacking delivery modules distributed in parallel front and back, multiple groups of inclined transfer modules distributed in parallel front and back, horizontal linear modules, film wrapping modules and synchronous cutting and pressing modules. The stacking delivery modules, horizontal linear modules, inclined transfer modules and chassis are arranged in sequence from left to right. The moving end of the horizontal linear module is equipped with a film wrapping module for wrapping the film on the pipe, and the film wrapping module is equipped with a synchronous cutting and pressing module for cutting the film and pressing the end of the film; the conveying mechanism, cutting support platform, cutting and pressing mechanism and cutting module are located in the chassis;

[0010] The conveying mechanism includes a synchronous conveyor and a material blocking module. The three groups of synchronous conveyors are distributed from left to right. The synchronous conveyor is used to transport the pipe wrapped with film on the inclined transfer module to the right; the material blocking module for positioning the right end of the pipe is located between the two groups of synchronous conveyors on the right; there are two groups of cutting support platforms, and the two groups of cutting support platforms are located between the two groups of synchronous conveyors on the left; the cutting pressing mechanisms for pressing the pipe are symmetrically distributed on both sides of the cutting support platforms; the cutting module for cutting the pipe is located between the two groups of cutting support platforms.

[0011] Furthermore, the cutting material pressing mechanism includes a diagonal support module, a vertical pressing module and a side pressing module. The diagonal support module is located between the synchronous conveyor and the cutting material support table, the vertical pressing module is installed on the inner top of the chassis, and the vertical pressing module is aligned with the cutting material support table; the side pressing module is located on the front side of the cutting material support table and the synchronous conveyor.

[0012] Furthermore, side baffles are fixedly installed on the rear side of the cutting support platform and the rear side of the synchronous conveyor, and fixed pads are fixedly installed on the front side of the side baffles.

[0013] Furthermore, the stacking delivery module includes a horizontal support frame, a conveyor 1 and side limiting rollers, and multiple groups of conveyors 1 are fixedly installed on the horizontal support frame; side limiting rollers are evenly installed on both sides of the conveyor 1 on the horizontal support frame at equal intervals and rotate evenly.

[0014] Furthermore, the inclined transfer module includes an inclined support frame, conveyor 2 and side guide rollers. Conveyor 2 is fixedly installed on the inclined support frame, and the inclined support frame is inclined downward from front to back; the front side of the front inclined support frame and the rear side of the rear inclined support frame are evenly rotated and installed with side guide rollers at equal intervals.

[0015] Furthermore, the film wrapping module includes a film wrapping assembly and a film wrapping drive assembly. The film wrapping assembly is installed at the moving end of the horizontal linear module, and the film wrapping drive assembly is installed on the film wrapping assembly.

[0016] Furthermore, the film wrapping assembly includes a film wrapping mounting frame, an annular rotating frame, a film disc mounting seat and a film disc. The film wrapping mounting frame is fixedly mounted on the moving end of the horizontal linear module, the annular rotating frame is rotatably mounted on the film wrapping mounting frame, and the film disc mounting seat is fixedly mounted on the annular rotating frame; the film disc mounting seat is rotatably mounted on the film disc.

[0017] Furthermore, the wrapping drive assembly includes a wrapping drive motor, a ring gear, a driving gear and a driven gear. The wrapping drive motor is fixedly mounted on the wrapping mounting frame; the ring gear is fixedly mounted on the outside of the annular rotating frame; the driving gear and multiple driven gears are mounted on the wrapping mounting frame in a circular array with equal spacing and are evenly rotated; the driving gear is fixedly connected to the output end of the wrapping drive motor; and the driving gear and the driven gear are both meshed with the ring gear.

[0018] Furthermore, the synchronous cutting and pressing module includes a pressing and dividing material mounting plate, an adjusting cylinder, a fixed pressure plate, a movable pressure plate and a film cutter. The pressing and dividing material mounting plate is fixedly mounted on the upper side of the film wrapping mounting frame, the right side of the pressing and dividing material mounting plate is fixedly mounted with an adjusting cylinder, and the left side of the pressing and dividing material mounting plate is fixedly mounted with a fixed pressure plate; the output end of the adjusting cylinder passes through the pressing and dividing material mounting plate and the fixed pressure plate and is fixedly connected to the movable pressure plate; the right side of the movable pressure plate and the left side of the fixed pressure plate are fixedly mounted with film cutters.

[0019] Furthermore, the diagonal support module includes a diagonal support mounting platform, a diagonal support hydraulic cylinder, a diagonal support guide rod, a diagonal support support frame and a rotating diagonal support roller. The diagonal support mounting platform is fixedly mounted with a diagonal support hydraulic cylinder, and the output end of the diagonal support hydraulic cylinder is fixedly mounted with a diagonal support support frame; the diagonal support guide rod is symmetrically fixedly mounted on the diagonal support frame; the diagonal support guide rod is limitedly and slidably connected to the diagonal support mounting platform; the rotating diagonal support roller is rotatably mounted on the diagonal support frame; the rotating diagonal support roller is tilted, and the end of the rotating diagonal support roller close to the fixed pad is lower than the other end.

[0020] Compared with the prior art, the present invention has the following beneficial effects: multiple pipes are placed on a group of stacking delivery modules, and the stacking delivery module drives the stacked pipes to be transported to the right, so that the stacked pipes pass through the film wrapping module; the film on the film wrapping module is automatically wound on the stacked pipes through the cooperation of the film wrapping module and the synchronous cutting and pressing module; after the pipes are completely moved to the inclined transfer module, the film is cut by the synchronous cutting and pressing module, and the end of the film connected to the film wrapping module is clamped at the same time to facilitate subsequent winding; the pipes are kept stable through the cooperation of the side pressing module, the fixed pad, the vertical pressing module, the cutting support platform and the film wrapped outside the pipes; by wrapping the film outside multiple pipes, the film keeps the multiple pipes stable during the cutting process, and the pipes are kept stable during the cutting process. Cutting multiple pipes improves cutting efficiency while avoiding instability between multiple pipes, which causes vibration of the pipes during the cutting process and ultimately leads to uneven incisions; thereby significantly improving cutting efficiency while ensuring cutting quality; after cutting, the material blocking module is reset, and the synchronous conveyor drives the cut pipe to move to the right; the material blocking module is lifted, and at the same time, the inclined transfer module and the synchronous conveyor cooperate to drive the pipe on the left to continue to move to the right; repeat this operation until the pipe is completely cut; and during the cutting process, the new pipes to be cut can continue to be stacked, wrapped with film and conveyed through the stacking delivery module, inclined transfer module, horizontal linear module, wrapping module and synchronous cutting and pressing module, so that the processing can be carried out continuously, further improving the cutting efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.

[0022] Figure 1 A three-dimensional diagram of an automatic film-wrapping batch pipe cutting device according to the present invention;

[0023] Figure 2 It is a front view of an automatic film wrapping batch pipe cutting device of the present invention;

[0024] Figure 3 This is a three-dimensional image of the present invention after removing the cover of the chassis;

[0025] Figure 4 This is a schematic diagram of the relevant internal structure of the chassis;

[0026] Figure 5 Schematic diagram of the movable pad and its connection structure;

[0027] Figure 6 Schematic diagram of the cutting disc and its connection structure;

[0028] Figure 7 Schematic diagram of the annular turret and its connection structure;

[0029] Figure 8 Schematic diagram of the gear ring and its connection structure.

[0030] The numbers in the figure represent:

[0031] 1. Continuous film wrapping feeding mechanism; 11. Stacking delivery module; 111. Horizontal support frame; 112. Conveyor 1; 113. Side limit roller; 12. Inclined transfer module; 121. Inclined support frame; 122. Conveyor 2; 123. Side guide roller; 13. Horizontal linear module; 14. Film wrapping module; 141. Film wrapping mounting frame; 142. Annular rotating frame; 143. Film disc mounting seat; 144. Film disc; 145. Film wrapping drive motor; 146. Ring gear; 147. Driving gear; 148. Driven gear; 15. Synchronous cutting and pressing module; 151. Pressing and dividing material mounting plate; 152. Adjusting cylinder; 153. Fixed pressing plate; 154. Moving pressing plate; 155. Film cutter; 2. Conveying mechanism; 21. Synchronous conveyor; 22. Material blocking module; 221. Material blocking mounting platform ; 222, material blocking cylinder; 223, material blocking guide rod; 224, end baffle; 3, cutting support platform; 31, side baffle; 32, fixed pad; 4, cutting pressing mechanism; 41, diagonal support module; 411, diagonal support mounting platform; 412, diagonal support hydraulic cylinder; 413, diagonal support guide rod; 414, diagonal support support frame; 415, rotating diagonal support roller; 42, vertical pressing module; 421, pressing support Support frame; 422, material pressing hydraulic cylinder 1; 423, material pressing guide rod 1; 424, vertical pressure plate; 425, vertical pad; 43, side clamping module; 431, material pressing mounting frame; 432, material pressing hydraulic cylinder 2; 433, movable plate; 434, movable pad; 5, cutting module; 51, movable linear module; 52, cutting mounting frame; 53, cutting motor; 54, cutting disc; 6, chassis. DETAILED DESCRIPTION

[0032] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments 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 any creative efforts shall fall within the scope of protection of the present invention.

[0033] The terms “left,” “right,” “front,” “back,” “up,” and “down” mentioned in the following description are oriented in the viewing direction of the front view.

[0034] Example 1: In some embodiments, please refer to the accompanying drawings of the specification. Figures 1-4 , an automatic film wrapping batch pipe cutting equipment, including a conveying mechanism 2, a cutting material pressing mechanism 4, a cutting module 5 and a chassis 6; also including a continuous film wrapping feeding mechanism 1 and a cutting material support table 3;

[0035] like Figure 2As shown, the continuous film wrapping feeding mechanism 1 includes multiple groups of stacking and delivering modules 11 arranged in parallel front and back, multiple groups of inclined transfer modules 12 arranged in parallel front and back, horizontal linear modules 13, film wrapping modules 14 and synchronous cutting and pressing modules 15. The stacking and delivering modules 11, horizontal linear modules 13, inclined transfer modules 12 and chassis 6 are arranged in sequence from left to right. The film wrapping module 14 for wrapping film around the pipe is installed at the movable end of the horizontal linear module 13. The synchronous cutting and pressing module 15 for cutting the film and pressing the end of the film is installed on the film wrapping module 14; the conveying mechanism 2, the cutting support table 3, the cutting and pressing mechanism 4 and the cutting module 5 are located in the chassis 6;

[0036] like Figure 2 As shown, the conveying mechanism 2 includes a synchronous conveyor 21 and a material blocking module 22. The three groups of synchronous conveyors 21 are distributed in sequence from left to right. The synchronous conveyor 21 is used to transport the pipe wrapped on the inclined transfer module 12 to the right; the material blocking module 22 for positioning the right end of the pipe is located between the two groups of synchronous conveyors 21 on the right; there are two groups of cutting support platforms 3, and the two groups of cutting support platforms 3 are located between the two groups of synchronous conveyors 21 on the left; the cutting pressing mechanism 4 for pressing the pipe is symmetrically distributed on both sides of the cutting support platform 3; the cutting module 5 for cutting the pipe is located between the two groups of cutting support platforms 3.

[0037] like Figure 4 As shown, the cutting material pressing mechanism 4 includes a diagonal support module 41, a vertical pressing module 42 and a side pressing module 43. The diagonal support module 41 is located between the synchronous conveyor 21 and the cutting material support platform 3, and the vertical pressing module 42 is installed on the inner top of the chassis 6. The vertical pressing module 42 is aligned with the cutting material support platform 3; the side pressing module 43 is located on the front side of the cutting material support platform 3 and the synchronous conveyor 21.

[0038] like Figure 4 As shown, side baffles 31 are fixedly installed on the rear side of the cutting support platform 3 and the rear side of the synchronous conveyor 21 , and fixed pads 32 are fixedly installed on the front side of the side baffles 31 .

[0039] In this embodiment, when the automatic film wrapping batch pipe cutting equipment is working normally, multiple pipes are placed on a set of stacking delivery modules 11, and the stacking delivery modules 11 limit the multiple pipes so that the multiple pipes are stacked together; then the stacking delivery module 11 drives the stacked pipes to be transported to the right; the stacked pipes pass through the film wrapping module 14; through the cooperation of the film wrapping module 14 and the synchronous cutting and pressing module 15, the film on the film wrapping module 14 is automatically wrapped around the stacked pipes; then the synchronous cutting and pressing module 15 loosens the end of the film; the stacking delivery module 11 drives the pipes to be transported to the right to the inclined transfer module 12, and the film is continuously wrapped around the pipes by the film wrapping module 14; so that the stacked pipes are transported to the right to the inclined transfer module 12. The film is wound into a whole; the inclined setting of the inclined transfer module 12 causes the pipe to move closer to the rear side during the process of moving onto the inclined transfer module 12; after the pipe is completely moved onto the inclined transfer module 12, the film is cut by the synchronous cutting and pressing module 15, and the end of the film connected to the film wrapping module 14 is clamped to facilitate subsequent winding; in this process, multiple pipes can be placed on another set of stacking and delivery modules 11, so that the pipes are stacked on the other set of stacking and delivery modules 11; then the horizontal linear module 13 drives the film wrapping module 14 and the synchronous cutting and pressing module 15 to move horizontally, so that the film wrapping module 14 is aligned with the other set of stacking and delivery modules 11; the above operation is repeated until multiple sets of inclined transfer modules 12 support pipes wrapped with film;

[0040] The inclined transfer module 12 and the synchronous conveyor 21 cooperate to drive the multiple groups of pipes wrapped with film to move to the right until the ends of the pipes are blocked by the material blocking module 22; the multiple groups of pipes wrapped with film are lifted by the diagonal support module 41, and then the side clamping module 43 pushes the pipes to move backward. After the side clamping module 43 and the fixed pad 32 clamp the pipes, the diagonal support module 41 is reset; the vertical clamping module 42 presses the pipes against the cutting support platform 3 from the upper side, thereby ensuring the stability of the pipes;

[0041] The pipe is cut by the cutting module 5. During this process, the pipe is kept stable by the cooperation of the side pressing module 43, the fixed pad 32, the vertical pressing module 42, the cutting support platform 3 and the film wrapped around the pipe. By wrapping the film around the pipes, the film keeps the pipes stable during the cutting process, and while achieving the cutting of the pipes and improving the cutting efficiency, it avoids the instability between the pipes, which causes the pipes to vibrate during the cutting process and eventually leads to uneven cuts. Thus, the cutting efficiency is significantly improved while the cutting quality is guaranteed.

[0042] After the cutting is completed, the blocking module 22 is reset, and the synchronous conveyor 21 drives the cut pipe to move to the right; the blocking module 22 is lifted, and at the same time, the inclined transfer module 12 and the synchronous conveyor 21 cooperate to drive the pipe on the left to continue to move to the right; repeat this operation until the pipe is completely cut; and during the cutting process, the new pipes to be cut can continue to be stacked, wrapped with film and transported through the stacking delivery module 11, the inclined transfer module 12, the horizontal linear module 13, the film wrapping module 14 and the synchronous cutting and pressing module 15, so that the processing can be carried out continuously, further improving the cutting efficiency.

[0043] Embodiment 2: In some embodiments, as a preferred embodiment of the present invention, as Figure 3 、 Figure 7 and Figure 8 As shown, the stacking and delivering module 11 includes a horizontal support frame 111, a conveyor 112 and side limiting rollers 113. The horizontal support frame 111 is fixedly mounted with multiple sets of conveyors 112; the horizontal support frame 111 is evenly and evenly mounted with side limiting rollers 113 on both sides of the conveyor 112 at equal intervals.

[0044] The inclined transfer module 12 includes an inclined support frame 121, a second conveyor 122 and side guide rollers 123. The second conveyor 122 is fixedly installed on the inclined support frame 121, and the inclined support frame 121 is tilted downward from front to back; the front side of the front inclined support frame 121 and the rear side of the rear inclined support frame 121 are evenly and evenly rotated and installed with side guide rollers 123;

[0045] The conveyor 1 112 and the conveyor 2 122 are both roller conveyors, which are mature equipment available on the market in this field.

[0046] The film wrapping module 14 includes a film wrapping assembly and a film wrapping drive assembly. The film wrapping assembly is installed at the moving end of the horizontal linear module 13, and the film wrapping drive assembly is installed on the film wrapping assembly.

[0047] The film wrapping assembly includes a film wrapping mounting frame 141, an annular rotating frame 142, a film disc mounting seat 143, and a film disc 144. The film wrapping mounting frame 141 is fixedly mounted on the moving end of the horizontal linear module 13. The annular rotating frame 142 is rotatably mounted on the film wrapping mounting frame 141. The film disc mounting seat 143 is fixedly mounted on the annular rotating frame 142. The film disc 144 is rotatably mounted on the film disc mounting seat 143.

[0048] A tension controller for controlling the tension of the film on the film disc 144 is installed in the film disc mounting seat 143;

[0049] The film wrapping drive assembly includes a film wrapping drive motor 145, a ring gear 146, a driving gear 147, and a driven gear 148. The film wrapping drive motor 145 is fixedly mounted on the film wrapping mounting frame 141; the ring gear 146 is fixedly mounted on the outside of the annular rotating frame 142; the driving gear 147 and multiple driven gears 148 are uniformly mounted and rotatably mounted in a circular array with equal spacing on the film wrapping mounting frame 141; the driving gear 147 is fixedly connected to the output end of the film wrapping drive motor 145; and the driving gear 147 and the driven gear 148 are both meshed with the ring gear 146.

[0050] The synchronous cutting and pressing module 15 includes a pressing and dividing material mounting plate 151, an adjusting cylinder 152, a fixed pressing plate 153, a movable pressing plate 154 and a film cutter 155. The pressing and dividing material mounting plate 151 is fixedly mounted on the upper side of the film wrapping mounting frame 141. The adjusting cylinder 152 is fixedly mounted on the right side of the pressing and dividing material mounting plate 151, and the fixed pressing plate 153 is fixedly mounted on the left side of the pressing and dividing material mounting plate 151; the output end of the adjusting cylinder 152 passes through the pressing and dividing material mounting plate 151 and the fixed pressing plate 153 and is fixedly connected to the movable pressing plate 154; the right side of the movable pressing plate 154 and the left side of the fixed pressing plate 153 are both fixedly mounted with film cutters 155.

[0051] like Figure 5 As shown, the synchronous conveyor 21 is configured as a belt conveyor;

[0052] The material blocking module 22 includes a material blocking mounting platform 221, a material blocking cylinder 222, a material blocking guide rod 223 and an end baffle 224. The material blocking cylinder 222 is fixedly installed on the material blocking mounting platform 221, and the output end of the material blocking cylinder 222 is fixedly connected to the end baffle 224. The material blocking guide rod 223 is symmetrically fixedly installed on the lower side of the end baffle 224; the material blocking guide rod 223 is limitedly slidably connected to the material blocking mounting platform 221.

[0053] In this embodiment, when the continuous film wrapping feeding mechanism 1 and the conveying mechanism 2 are operating normally, multiple pipes are placed on the conveyor 112 on the horizontal support frame 111; the side limiting rollers 113 on both sides of the conveyor 112 limit the sides of the multiple pipes, so that the multiple pipes can be stably stacked between the conveyor 112 and the side limiting rollers 113; the conveyor 112 drives the pipes to move to the right until the ends of the pipes move to the middle of the annular rotating frame 142;

[0054] The film on the film disc 144 is clamped by the fixed pressure plate 153 and the movable pressure plate 154; the film wrapping drive motor 145 drives the active gear 147 to rotate, and the active gear 147 drives the ring gear 146 to rotate stably through the cooperation of the driven gear 148; the rotation of the ring gear 146 drives the annular rotating frame 142 to rotate; thereby driving the film disc mounting seat 143 and the film disc 144 on the annular rotating frame 142 to rotate around the pipe; so that the film end on the film disc 144 is clamped by the fixed pressure plate 153 and the movable pressure plate 154, and the film disc 144 rotates while rotating with the annular rotating frame 142, so that the film on the film disc 144 is wound on the stacked pipe; after the film is wound, the regulating cylinder 152 drives the movable pressure plate 154 to disengage from the fixed pressure plate 153, and no longer clamps the end of the film; conveyor 112 drives the pipe to move right to conveyor 2 122; through the cooperation of conveyor 112 and conveyor 2 122, the pipe continues to move right; during this process During the film wrapping process, the film wrapping drive motor 145 continuously drives the annular rotating frame 142 to rotate through the driving gear 147 and the ring gear 146, and the annular rotating frame 142 drives the film disc mounting seat 143 and the film disc 144 to rotate so that the film on the film disc 144 is wrapped around the pipe; after the pipe is completely moved to the conveyor 2 122; the regulating cylinder 152 drives the movable pressure plate 154 to move so that the movable pressure plate 154 contacts the fixed pressure plate 153, and the film is clamped by the fixed pressure plate 153 and the movable pressure plate 154. At the same time, the film cutter 155 between the fixed pressure plate 153 and the movable pressure plate 154 cuts the film connected to the pipe; in this process, pipes can be stacked between another group of conveyor 112 and the side limiting roller 113; after completing the film wrapping of one group of pipes, the horizontal linear module 13 drives the film wrapping mounting frame 141 and the annular rotating frame 142 to move to a position aligned with another group of stacked pipes; repeat this operation to achieve continuous film wrapping of multiple groups of stacked pipes;

[0055] Then the blocking cylinder 222 drives the end baffle 224 to move upward under the limiting action of the blocking guide rod 223 to continue positioning the pipe end on the left.

[0056] Embodiment 3: In some embodiments, as a preferred embodiment of the present invention, as Figure 5 and Figure 6 As shown, the diagonal support module 41 includes a diagonal support mounting platform 411, a diagonal support hydraulic cylinder 412, a diagonal support guide rod 413, a diagonal support frame 414 and a rotating diagonal support roller 415. The diagonal support mounting platform 411 is fixedly mounted with a diagonal support hydraulic cylinder 412, and the output end of the diagonal support hydraulic cylinder 412 is fixedly mounted with a diagonal support frame 414; the diagonal support guide rod 413 is symmetrically fixedly mounted on the diagonal support frame 414; the diagonal support guide rod 413 is limitedly slidably connected to the diagonal support mounting platform 411; a rotating diagonal support roller 415 is rotatably mounted on the diagonal support frame 414; the rotating diagonal support roller 415 is tilted, and one end of the rotating diagonal support roller 415 close to the fixed pad 32 is lower than the other end;

[0057] The vertical pressing module 42 includes a pressing support frame 421, a pressing hydraulic cylinder 422, a pressing guide rod 423, a vertical pressing plate 424 and a vertical pad 425. The pressing support frame 421 is fixedly mounted on the inner top of the chassis 6. A pressing hydraulic cylinder 422 is fixedly mounted on the pressing support frame 421. A vertical pressing plate 424 is fixedly mounted on the output end of the pressing hydraulic cylinder 422. A pressing guide rod 423 is symmetrically fixedly mounted on the vertical pressing plate 424. The pressing guide rod 423 is limitedly slidably connected to the pressing support frame 421. A vertical pad 425 is fixedly mounted on the lower side of the vertical pressing plate 424. The vertical pad 425 is used to press the pipe against the cutting support table 3.

[0058] The side clamping module 43 includes a material pressing mounting frame 431, a material pressing hydraulic cylinder 2 432, a movable plate 433 and a movable pad 434. The material pressing mounting frame 431 is located at the front side of the synchronous conveyor 21 and the cutting support platform 3. The material pressing hydraulic cylinder 2 432 is fixedly installed on the material pressing mounting frame 431. The movable end of the material pressing hydraulic cylinder 2 432 is fixedly installed with a movable plate 433. The rear side of the movable plate 433 is fixedly installed with a movable pad 434; the movable pad 434 is used to press the pipeline onto the fixed pad 32.

[0059] like Figure 6 As shown, the cutting module 5 includes a movable linear module 51, a cutting mounting frame 52, a cutting motor 53 and a cutting disk 54. The movable linear module 51 is located on the lower side between the two sets of cutting support platforms 3. The movable end of the movable linear module 51 is fixedly mounted with a cutting mounting frame 52, and the cutting motor 53 is fixedly mounted on the cutting mounting frame 52. The cutting disk 54 for cutting the pipe is rotatably mounted on the cutting mounting frame 52; the output end of the cutting motor 53 is fixedly connected to the cutting disk 54;

[0060] In this embodiment, when the cutting and pressing mechanism 4 and the cutting module 5 are working normally, after the pipe wrapped with the film is transported to the right by the synchronous conveyor 21 and is blocked by the end baffle 224, the diagonal support hydraulic cylinder 412 drives the diagonal support frame 414 and the rotating diagonal support roller 415 to move upward under the limiting action of the diagonal support guide rod 413, and assists in lifting the pipe by rotating the diagonal support roller 415; then the material pressing hydraulic cylinder 2 432 drives the moving plate 433 and the moving pad 434 to move backward, thereby pushing the pipe to press the fixed pad 32; then the diagonal support hydraulic cylinder 432 drives the moving plate 433 and the moving pad 434 to move backward, thereby pushing the pipe to press the fixed pad 32; The pressure cylinder 412 drives the diagonal support frame 414 and the rotating diagonal support roller 415 to reset; the pipeline is supported by the cutting support platform 3 under the action of gravity; the pressing hydraulic cylinder 422 drives the vertical pressure plate 424 and the vertical pad 425 to move vertically downward under the limiting action of the pressing guide rod 423, thereby pressing the pipeline tightly on the cutting support platform 3, so that the pipeline remains stable; then the moving linear module 51 drives the cutting mounting frame 52 to move horizontally, and during the movement, the cutting motor 53 drives the cutting disk 54 to rotate, and the pipeline is cut by the cutting disk 54.

[0061] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. An automatic film-wrapped batch pipe cutting device, comprising a conveying mechanism (2), a cutting material pressing mechanism (4), a cutting module (5) and a chassis (6), characterized in that: It also includes a continuous film wrapping feeding mechanism (1) and a cutting support table (3); The continuous film wrapping feeding mechanism (1) comprises a plurality of stacking delivery modules (11) arranged in parallel front and back, a plurality of inclined transfer modules (12) arranged in parallel front and back, a horizontal linear module (13), a film wrapping module (14) and a synchronous cutting and pressing module (15), wherein the stacking delivery module (11), the horizontal linear module (13), the inclined transfer module (12) and the chassis (6) are arranged in sequence from left to right, the film wrapping module (14) for wrapping a film on a pipe is installed at the movable end of the horizontal linear module (13), and the synchronous cutting and pressing module (15) for cutting the film and pressing the end of the film is installed on the film wrapping module (14); the conveying mechanism (2), the cutting support platform (3), the cutting and pressing mechanism (4) and the cutting module (5) are located in the chassis (6); The conveying mechanism (2) includes a synchronous conveyor (21) and a material blocking module (22), and the three groups of synchronous conveyors (21) are distributed from left to right. The synchronous conveyor (21) is used to transport the pipe wrapped with film on the inclined transfer module (12) to the right; the material blocking module (22) for positioning the right end of the pipe is located between the two groups of synchronous conveyors (21) on the right; two groups of cutting support platforms (3) are provided, and the two groups of cutting support platforms (3) are located between the two groups of synchronous conveyors (21) on the left; the cutting pressing mechanism (4) for pressing the pipe is symmetrically distributed on both sides of the cutting support platform (3); the cutting module (5) for cutting the pipe is located between the two groups of cutting support platforms (3); The cutting material pressing mechanism (4) includes an oblique support module (41), a vertical pressing module (42) and a side pressing module (43), wherein the oblique support module (41) is located between the synchronous conveyor (21) and the cutting material support platform (3), the vertical pressing module (42) is installed on the inner top of the chassis (6), and the vertical pressing module (42) is aligned with the cutting material support platform (3); the side pressing module (43) is located in front of the cutting material support platform (3) and the synchronous conveyor (21); Side baffles (31) are fixedly mounted on the rear side of the cutting support platform (3) and the rear side of the synchronous conveyor (21), and fixed pads (32) are fixedly mounted on the front side of the side baffles (31); The diagonal support module (41) comprises a diagonal support mounting platform (411), a diagonal support hydraulic cylinder (412), a diagonal support guide rod (413), a diagonal support frame (414) and a rotating diagonal support roller (415). The diagonal support mounting platform (411) is fixedly mounted with the diagonal support hydraulic cylinder (412), and the output end of the diagonal support hydraulic cylinder (412) is fixedly mounted with the diagonal support frame (414); the diagonal support guide rod (413) is symmetrically fixedly mounted on the diagonal support frame (414); the diagonal support guide rod (413) is limitedly slidably connected to the diagonal support mounting platform (411); the rotating diagonal support roller (415) is rotatably mounted on the diagonal support frame (414); the rotating diagonal support roller (415) is tilted, and one end of the rotating diagonal support roller (415) close to the fixed pad (32) is lower than the other end.

2. The automatic film wrapping batch pipe cutting equipment according to claim 1 is characterized in that: The stacking delivery module (11) comprises a horizontal support frame (111), a conveyor 1 (112) and side limiting rollers (113), wherein a plurality of groups of conveyors 1 (112) are fixedly mounted on the horizontal support frame (111); and side limiting rollers (113) are evenly and rotatably mounted on both sides of the conveyor 1 (112) on the horizontal support frame (111) at equal intervals.

3. The automatic film wrapping batch pipe cutting equipment according to claim 1 is characterized in that: The inclined transfer module (12) comprises an inclined support frame (121), a second conveyor (122) and a side guide roller (123). The second conveyor (122) is fixedly mounted on the inclined support frame (121). The inclined support frame (121) is inclined downward from front to back. The side guide rollers (123) are evenly rotated and mounted at equal intervals on the front side of the front inclined support frame (121) and the rear side of the rear inclined support frame (121).

4. The automatic film wrapping batch pipe cutting equipment according to claim 1 is characterized in that: The film wrapping module (14) comprises a film wrapping assembly and a film wrapping drive assembly. The film wrapping assembly is mounted on the moving end of the horizontal linear module (13), and the film wrapping drive assembly is mounted on the film wrapping assembly.

5. The automatic film wrapping batch pipe cutting equipment according to claim 4 is characterized in that: The film wrapping assembly includes a film wrapping mounting frame (141), an annular rotating frame (142), a film disc mounting seat (143) and a film disc (144). The film wrapping mounting frame (141) is fixedly mounted on the movable end of the horizontal linear module (13). The annular rotating frame (142) is rotatably mounted on the film wrapping mounting frame (141). The film disc mounting seat (143) is fixedly mounted on the annular rotating frame (142); and the film disc (144) is rotatably mounted on the film disc mounting seat (143).

6. The automatic film wrapping batch pipe cutting equipment according to claim 5 is characterized in that: The film wrapping drive assembly includes a film wrapping drive motor (145), a ring gear (146), a driving gear (147) and a driven gear (148), wherein the film wrapping drive motor (145) is fixedly mounted on the film wrapping mounting frame (141); the ring gear (146) is fixedly mounted on the outside of the annular rotating frame (142); the driving gear (147) and a plurality of driven gears (148) are mounted on the film wrapping mounting frame (141) in a circular array with equal spacing and are rotated uniformly; the driving gear (147) is fixedly connected to the output end of the film wrapping drive motor (145); and the driving gear (147) and the driven gear (148) are both meshed and connected with the ring gear (146).

7. The automatic film wrapping batch pipe cutting equipment according to claim 5 is characterized in that: The synchronous cutting and pressing module (15) comprises a pressing and dividing material installation plate (151), an adjusting cylinder (152), a fixed pressing plate (153), a movable pressing plate (154) and a film cutter (155). The pressing and dividing material installation plate (151) is fixedly installed on the upper side of the film wrapping installation frame (141). The adjusting cylinder (152) is fixedly installed on the right side of the pressing and dividing material installation plate (151), and the fixed pressing plate (153) is fixedly installed on the left side of the pressing and dividing material installation plate (151). The output end of the adjusting cylinder (152) passes through the pressing and dividing material installation plate (151) and the fixed pressing plate (153) and is fixedly connected to the movable pressing plate (154). The film cutter (155) is fixedly installed on the right side of the movable pressing plate (154) and the left side of the fixed pressing plate (153).

Citation Information

Patent Citations

  • Batch segmented cutting device for pipelines

    CN219703672U

  • Automatic workpiece cutting device for gantry machining center

    CN117428251A

  • Bundling type one-time cutting mechanism for multiple stainless steel pipes

    CN218362402U