Bar pipe coiling machine

By designing the coiling support, coiling mechanism, tube conveying mechanism, and cutting mechanism of the bar coiling machine, the problem of low efficiency in tube segment packaging in the existing technology has been solved, realizing automated tube segment packaging, improving processing efficiency and reducing costs.

CN223646046UActive Publication Date: 2025-12-09NINGBO SANKUI ABRASIVE MATERIAL CO LTD
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Patent Information

Application Number
CN202520063183.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-12-09
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

Existing pipe wrapping machines cannot meet the needs of segmented pipe packaging, requiring manual cutting, which affects processing efficiency and increases production costs.

Method used

A bar stock coiling machine was designed, comprising a coiling support, a coiling mechanism, a tube conveying mechanism, a cutting mechanism, and a clamping assembly. It achieves segmented packaging of tube stock through automated conveying and cutting, thereby improving processing efficiency.

Benefits of technology

It enables automated segmentation and packaging of pipes, improving processing efficiency, reducing the need for manual cutting, and lowering production costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223646046U_ABST
Patent Text Reader

Abstract

The utility model relates to a bar pipe coiling machine. The technical problem that existing pipe machining efficiency is low is solved. Comprising a machine base, the machine base is provided with a material rolling supporting base capable of supporting axial running of pipe materials, the material rolling supporting base is provided with a material rolling mechanism capable of rotating on the circumferential outer side of the pipe materials, and the machine base is provided with a pipe material conveying mechanism capable of driving the pipe materials to be conveyed towards the end away from the material rolling supporting base. The machine base is provided with an extending base extending towards the end away from the coil stock supporting base, and the extending base is provided with a pipe cutting mechanism. The pipe cutting device has the advantages that the pipe conveying mechanism can drive the pipe to be conveyed in the direction of the pipe cutting mechanism, and the pipe cutting efficiency is improved. The material rolling mechanism conducts rotary material rolling through the material rolling driving assembly, the pipe materials can be automatically rolled in the conveying process, the material rolling efficiency is improved, and the material rolling effect is guaranteed. And the pipe can be clamped through the pipe clamping assembly, the stability of the pipe in the cutting process is guaranteed, and the pipe cutting effect is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to pipe material packaging equipment technical field, concretely relates to a bar material pipe winding machine. BACKGROUND

[0002] In the storage, transportation and handling process of pipe material, the winding packaging film can play the buffering effect, prevent the pipe material from directly colliding, rubbing with other objects, avoid the scratch, the pit, the rupture etc. of pipe material surface damage, thereby guarantee the integrity and appearance quality of pipe material, pipe material packaging mainly relies on manual use simple material such as sack, rope etc. and is wrapped and bound, and the efficiency is low and the packaging quality is uneven, for this reason, the pipe material winding packaging machine appears on the market, can carry out automatic winding packaging to pipe material, improves the packaging efficiency, but the existing pipe material winding packaging machine mostly can only carry out whole winding packaging to pipe material, cannot satisfy the pipe material segmented packaging demand, needs to carry out artificial cutting segmentation to pipe material, influences the processing efficiency of pipe material, improves production cost. SUMMARY

[0003] The utility model aims at above -mentioned problem provides a bar material pipe winding machine.

[0004] To achieve the above object, the utility model adopts the following technical scheme: the bar material pipe winding machine, including the base, the base is equipped with the ability support pipe material axial operation and wind material support seat, the wind material support seat is equipped with the ability and rotates in the pipe material circumferential outside and wind material mechanism, the base is equipped with the pipe material transmission mechanism that can drive pipe material towards the conveyance setting of the end away from wind material support seat, and the base is equipped with the extension seat that extends towards the end away from wind material support seat, the extension seat is equipped with pipe material cutting mechanism, through pipe material transmission mechanism can conveniently transmit the pipe material after winding towards pipe material cutting mechanism, and through pipe material cutting mechanism can cut pipe material, improve pipe material processing efficiency.

[0005] In the above rod material pipe winding machine, the winding support seat is provided with a driving mounting hole, and the winding driving assembly capable of driving the winding mechanism to rotate is arranged in the driving mounting hole.

[0006] In the above rod material pipe winding machine, the winding mechanism includes a winding disc fixedly arranged on the rotating disc, the winding disc is sleeved on the outer side of the mounting pipe sleeve in the middle, and a plurality of winding seats are arranged on the side away from the rotating disc of the winding disc.

[0007] In the above rod material pipe winding machine, the pipe material transmission mechanism includes a transmission support seat arranged on the machine base, the transmission support seat is provided with an upper transmission assembly and a lower transmission assembly, a transmission channel for transmitting the pipe material is arranged between the upper transmission assembly and the lower transmission assembly, and lifting locking mechanisms are arranged between the transmission support seat and the upper transmission assembly and the lower transmission assembly, respectively.

[0008] In the above-described bar coiling machine, the upper transmission assembly comprises an upper transmission housing, one side of the upper transmission housing is provided with an opening, and the upper transmission housing has an upper transmission belt extending to the opening, the upper transmission belt is rotationally arranged in the upper transmission housing, and the side edge of the upper transmission belt is provided with an upper arc-shaped guide rail, the lower transmission assembly comprises a lower transmission housing, one side of the lower transmission housing is provided with an opening, and the lower transmission housing has a lower transmission belt extending to the opening, the lower transmission belt is rotationally arranged in the lower transmission housing, and the side edge of the upper transmission belt is provided with a lower arc-shaped guide rail, the upper arc-shaped guide rail and the lower arc-shaped guide rail form the transmission channel, the upper transmission housing can conveniently place the upper transmission belt, the lower transmission housing can conveniently place the lower transmission belt, and the upper arc-shaped guide rail and the lower arc-shaped guide rail can increase the contact area with the pipe material to ensure the conveying effect of the pipe material.

[0009] In the above-described bar coiling machine, the transmission drive assembly comprises a transmission motor arranged on the same side of the upper transmission housing and the lower transmission housing, respectively, a plurality of transmission gears meshed and connected are arranged in the upper transmission belt and the lower transmission belt, the transmission motor is connected with the transmission gear close to one end of the pipe material supporting seat, the transmission gears can drive the upper transmission belt and the lower transmission belt to rotate, and the transmission motor can drive the transmission gears to rotate, so that the upper transmission belt and the lower transmission belt drive the pipe material to be axially conveyed, and the pipe material processing efficiency is improved.

[0010] In the above rod pipe winding machine, the lifting locking mechanism includes lifting guide assemblies arranged on both sides of the upper transmission housing and the lower transmission housing respectively, the transmission support seat has a transmission support top cover and a transmission support base, the transmission support top cover and the transmission support base are fixedly connected through the lifting guide assemblies, the transmission support top cover is provided with an upper locking screw threadedly connected with the transmission support top cover, one end of the upper locking screw is fixedly connected with the upper transmission housing through an upper locking block, the other end of the upper locking screw is provided with a locking handle, the transmission support base is threadedly connected with the lower transmission housing through a lower locking screw, the lifting guide assembly includes a plurality of lifting guide rails, at least two lifting guide rails are arranged on one side of the transmission support seat, one end of each lifting guide rail is connected with the transmission support top cover, and the other end of each lifting guide rail is connected with the transmission support base, and the lifting guide rails are provided with connecting sliding blocks fixedly connected with the upper transmission housing and the lower transmission housing respectively, the distance between the upper transmission housing and the transmission support top cover can be adjusted through the upper locking screw and the locking handle, the height of the upper transmission housing can be adjusted, the distance between the lower transmission housing and the transmission support base can be adjusted through the lower locking screw, the height of the lower transmission housing can be adjusted, the height of the transmission channel is suitable for the pipe material, the connection and support stability between the transmission support top cover and the transmission support base can be ensured through the lifting guide rails, and the upper transmission housing and the lower transmission housing can be guided during lifting through the connecting sliding blocks.

[0011] In the above rod pipe winding machine, the pipe cutting mechanism includes a cutting seat arranged on the extension seat, a sliding rail assembly is arranged between the cutting seat and the extension seat, the cutting seat is axially slidably arranged on the extension seat through the sliding rail assembly, one end of the cutting seat is provided with a cutting arm, a rotary motor capable of controlling the cutting arm to rotate is arranged in the middle of the cutting arm, a cutting saw blade is arranged at one end of the cutting arm, a driving motor capable of driving the cutting saw blade is arranged at the other end of the cutting arm, a guide clamping portion is horizontally arranged on one side of the cutting seat, a clamping hole is arranged at one end of the guide clamping portion, one end of the pipe material is arranged in the clamping hole, the guide clamping portion is arranged on one side of the cutting saw blade, a chip removal pipe corresponding to the cutting saw blade is arranged on one side of the guide clamping portion, and a pipe clamping assembly is arranged on the other side of the cutting saw blade on the cutting seat, the distance between the cutting seat and the pipe material transmission mechanism can be adjusted through the sliding rail assembly, the cutting arm can be rotated and lifted through the rotary motor, the pipe material can be cut through the driving motor, the pipe material can be supported and guided through the guide clamping portion and the clamping hole, the pipe material can be guided to the pipe clamping assembly, and the pipe material can be clamped through the pipe clamping assembly to ensure the cutting effect of the pipe material during cutting.

[0012] In the above bar pipe winding machine, the pipe clamping assembly comprises a clamping seat arranged on one side of the cutting seat, a clamping movable cavity is arranged in the clamping seat, two horizontally arranged clamping movable rods are arranged in the clamping movable cavity, a clamping motor capable of driving the clamping movable rods to rotate is arranged on the clamping seat, clamping portions are arranged at both ends of the clamping movable rods, the clamping portions are scissors-shaped, each clamping portion has two clamping halves, the adjacent clamping halves are connected in meshing mode, one end of each clamping half is fixedly connected with the clamping movable rod, and the other end of each clamping half is provided with an arc-shaped clamping groove, the adjacent arc-shaped clamping grooves form a clamping channel, the clamping channel is arranged in correspondence with the clamping hole, the clamping motor can drive the clamping movable rods to rotate, the clamping portions can rotate with the clamping movable rods to clamp and loosen the pipe, the pipe can be placed through the clamping channel, the pipe clamping effect is ensured, and the clamping portions can be conveniently installed through the clamping halves, and the installation efficiency is improved.

[0013] In the above bar pipe winding machine, the machine base is provided with a controller capable of controlling the winding material driving assembly, the pipe cutting mechanism, the pipe clamping assembly and the pipe conveying mechanism, and a waste cart is arranged on one side of the machine base, the waste cart is arranged below the chip removal pipe, the controller can be used for conveniently controlling the equipment by the user, and the waste cart can be used for conveniently collecting and cleaning the chippings.

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] 1. The pipe conveying mechanism can drive the pipe to move towards the pipe cutting mechanism, the pipe cutting mechanism cuts the pipe, and the pipe cutting efficiency is improved.

[0016] 2. The winding mechanism is rotated by the winding material driving assembly, and the pipe can be automatically wound during conveying, the winding efficiency is improved, and the winding effect is ensured.

[0017] 3. The pipe clamping assembly can clamp the pipe, ensure the stability of the pipe during cutting, and ensure the pipe cutting effect. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the structure schematic diagram of the utility model.

[0019] Figure 2 It is the structure explosion drawing of the winding material supporting seat in the utility model.

[0020] Figure 3 It is the structure schematic diagram of the winding material conveying mechanism in the utility model.

[0021] Figure 4It is the structure explosion map of the upper transmission assembly in the utility model.

[0022] Figure 5 It is the structure schematic view of the pipe material cutting mechanism in the utility model.

[0023] Figure 6 It is the structure schematic view of the pipe material clamping assembly in the utility model.

[0024] In the drawing: base 1, material roll support seat 11, drive mounting hole 111, extension seat 12, controller 13, waste cart 14, pipe material 2, material roll mechanism 3, material roll disc 31, material roll seat 32, pipe material film 33, pipe material transmission mechanism 4, transmission support seat 41, transmission support top cover 411, transmission support base 412, upper transmission assembly 42, upper transmission shell 421, upper transmission belt 422, upper arc-shaped guide rail 423, lower transmission assembly 43, lower transmission shell 431, lower transmission belt 432, lower arc-shaped guide rail 433, transmission channel 44, pipe material cutting mechanism 5, cutting seat 51, slide rail assembly 52, cutting arm 53, rotary motor 54, cutting saw blade 55, drive motor 56, guide clamping part 57, clamping hole 571, chip removal pipe 58, material roll drive assembly 6, material roll drive motor 61, motor mounting base 62, rotary disc 63, mounting pipe sleeve 64, lifting locking mechanism 7, lifting guide assembly 71, lifting guide rail 711, connecting slide block 712, upper locking screw 72, upper locking block 73, locking handle 74, lower locking screw 75, transmission drive assembly 8, transmission motor 81, transmission gear 82, pipe material clamping assembly 9, clamping seat 91, clamping movable cavity 92, clamping movable rod 93, clamping motor 94, clamping part 95, clamping half body 96, arc-shaped clamping groove 97, clamping channel 98. DETAILED DESCRIPTION

[0025] The utility model will be made further detailed explanation in combination with the specific embodiment and the drawing.

[0026] As Figure 1 , Figure 2As shown, the present rod material winding machine comprises a machine base 1, the machine base 1 is provided with a winding material support seat 11 capable of supporting the axial operation of the pipe material 2, the pipe material 2 can be supported through the winding material support seat 11, the winding material support seat 11 is provided with a winding material mechanism 3 capable of rotating on the circumferential outer side of the pipe material 2, the circumferential outer side of the pipe material 2 can be automatically wound through the winding material mechanism 3, the winding efficiency is improved, the machine base 1 is provided with a pipe material transmission mechanism 4 capable of conveying the pipe material 2 away from one end of the winding material support seat 11, and the machine base 1 is provided with an extension seat 12 extending away from one end of the winding material support seat 11, the extension seat 12 is fixedly arranged on the machine base 1, the extension seat 12 is provided with a pipe material cutting mechanism 5, the pipe material 2 after winding can be conveniently conveyed to the pipe material cutting mechanism 5 through the pipe material transmission mechanism 4, and the pipe material 2 can be cut through the pipe material cutting mechanism 5, thereby improving the processing efficiency of the pipe material 2.

[0027] Specifically, the winding material support seat 11 is provided with a driving mounting hole 111, the driving mounting hole 111 is provided with a winding material driving assembly 6 capable of driving the winding material mechanism 3 to rotate, the winding material driving assembly 6 can be conveniently mounted on the winding material support seat 11 through the driving mounting hole 111, the winding material driving assembly 6 comprises a winding material driving motor 61 arranged in the driving mounting hole 111, one end of the winding material driving motor 61 is provided with a motor mounting seat 62 fixedly connected with the winding material support seat 11, one side of the motor mounting seat 62 is provided with a rotating disc 63 fixedly connected with the winding material mechanism 3, and the motor mounting seat 62 is provided with an installation pipe sleeve 64 horizontally penetrating through the motor mounting seat 62 and the winding material support seat 11, the pipe material 2 is arranged in the installation pipe sleeve 64, the installation pipe sleeve 64 is correspondingly arranged with the pipe material transmission mechanism 4, the pipe material 2 can be prevented from rotating synchronously with the rotating disc 63 through the installation pipe sleeve 64, the pipe material 2 is arranged in the installation pipe sleeve 64 and can be guided to the pipe material transmission mechanism 4 for transmission, the same specification winding material driving motor 61 can drive the rotating disc 63 to rotate, and the rotating disc 63 drives the winding material mechanism 3 to automatically wind the pipe material 2 during the conveying process, thereby improving the winding efficiency of the pipe material.

[0028] The winding material mechanism 3 comprises a winding disc 31 fixedly arranged on the rotating disc 63, the winding disc 31 is arranged on the circumferential outer side of the installation pipe sleeve 64, and the winding disc 31 is provided with a plurality of winding seats 32 away from the rotating disc 63, one end of the winding seat 32 is threadedly connected with the winding disc 31, and the winding seat 32 is provided with a pipe material film 33 on the axial outer side, the pipe material 2 is arranged between adjacent winding seats 32, and the pipe material film 33 is arranged at equal intervals on the pipe material 2, the winding seat 32 is fixedly connected with the winding disc 31 to make the winding seat 32 rotate synchronously with the winding disc 31, and the pipe material film 33 can be wound on the pipe material 2 during the rotating process, thereby ensuring the winding effect of the pipe material film 33 on the pipe material 2.

[0029] As Figure 1 ,Figure 3 , Figure 4 As shown, the pipe material transfer mechanism 4 includes a transfer support base 41 mounted on the machine base 1. The transfer support base 41 contains an upper transfer component 42 and a lower transfer component 43. A transfer channel 44 for transferring the pipe material 2 is provided between the upper transfer component 42 and the lower transfer component 43. A lifting and locking mechanism 7 is provided between the transfer support base 41 and the upper transfer component 42 and the lower transfer component 43, respectively. A transfer drive component 8 is provided on one side of both the upper transfer component 42 and the lower transfer component 43. The transfer support base 41 can easily support the upper transfer component 42 and the lower transfer component 43. The lifting and locking mechanism 7 can easily adjust the distance between the upper transfer component 42 and the lower transfer component 43 so that the height of the transfer channel 44 is suitable for the pipe material 2. The transfer drive component 8 can drive the pipe material 2 in the transfer channel 44 to be transferred towards the pipe material cutting mechanism 5, thereby improving processing efficiency.

[0030] Further, the upper transmission assembly 42 includes an upper transmission housing 421, with an opening on one side, and an upper transmission belt 422 extending into the opening inside the upper transmission housing 421. The upper transmission belt 422 is rotatably disposed within the upper transmission housing 421, and an upper arc-shaped guide rail 423 is provided on the side of the upper transmission belt 422. The lower transmission assembly 43 includes a lower transmission housing 431, with an opening on one side, and a lower transmission belt 432 extending into the opening inside the lower transmission housing 431. The conveyor belt 432 is rotatably mounted inside the lower conveyor housing 431, and the upper conveyor belt 422 has a lower arc-shaped guide rail 433 on its side. The upper arc-shaped guide rail 423 and the lower arc-shaped guide rail 433 form the aforementioned conveying channel 44. The upper conveyor housing 421 facilitates the placement of the upper conveyor belt 422, and the lower conveyor housing 431 facilitates the placement of the lower conveyor belt 432. The upper arc-shaped guide rail 423 and the lower arc-shaped guide rail 433 can increase the contact area with the pipe material 2, ensuring the conveying effect of the pipe material 2.

[0031] The transmission drive assembly 8 includes a transmission motor 81 respectively disposed on the same side of the upper transmission housing 421 and the lower transmission housing 431. The upper transmission belt 422 and the lower transmission belt 432 are each provided with a plurality of meshing transmission gears 82. The transmission motor 81 is controlled and connected to the transmission gear 82 near the end of the coil support seat 11. The transmission gear 82 can drive the upper transmission belt 422 and the lower transmission belt 432 to rotate, and the transmission motor 81 can drive the transmission gear 82 to rotate, thereby causing the upper transmission belt 422 and the lower transmission belt 432 to drive the tube 2 to be axially transported, thereby improving the processing efficiency of the tube 2.

[0032] Combination Figure 3 , Figure 4 , Figure 5 , Figure 6As shown, the lifting and locking mechanism 7 includes lifting guide components 71 respectively disposed on both sides of the upper transmission housing 421 and the lower transmission housing 431. The transmission support base 41 has a transmission support top cover 411 and a transmission support base 412. The transmission support top cover 411 and the transmission support base 412 are fixedly connected by the lifting guide components 71. The transmission support top cover 411 is provided with an upper locking screw 72 threadedly connected to the transmission support top cover 411. One end of the upper locking screw 72 is fixedly connected to the upper transmission housing 421 through an upper locking block 73, and the other end of the upper locking screw 72 is provided with a locking handle 74. The transmission support base 412 and the lower transmission housing 431 are threadedly connected by a lower locking screw 75. The lifting guide components 71 include a plurality of lifting guide rails 711. At least two lifting guide rails 711 are provided on one side of the transmission support base 41, and one end of the lifting guide rail 711 is connected to the transmission support top cover 411. The lifting guide rail 711 is connected to the transmission support base 412 at one end. The lifting guide rail 711 is provided with connecting sliders 712 that are fixedly connected to the upper transmission housing 421 and the lower transmission housing 431 respectively. The upper locking screw 72 can be used to lock the handle 74 and adjust the distance between the upper transmission housing 421 and the transmission support top cover 411 through the upper locking block 73, so as to adjust the height of the upper transmission housing 421. The lower locking screw 75 can be used to adjust the distance between the lower transmission housing 431 and the transmission support base 412, so as to adjust the height of the lower transmission housing 431, ensuring that the height of the transmission channel 4 is suitable for the pipe 2. The lifting guide rail 711 can ensure the connection support stability between the transmission support top cover 411 and the transmission support base 412, and the connecting sliders 712 can guide the upper transmission housing 421 and the lower transmission housing 431 during the lifting process.

[0033] The pipe cutting mechanism 5 includes a cutting seat 51 mounted on an extension seat 12. A slide rail assembly 52 is provided between the cutting seat 51 and the extension seat 12, and the cutting seat 51 is axially slidably mounted on the extension seat 12 via the slide rail assembly 52. ​​One end of the cutting seat 51 is provided with a cutting arm 53, and a rotary motor 54 capable of controlling the rotation of the cutting arm 53 is provided in the middle of the cutting arm 53. One end of the cutting arm 53 is provided with a cutting saw blade 55, and the other end of the cutting arm 53 is provided with a drive motor 56 capable of driving the cutting saw blade 55. The cutting seat 51 extends horizontally to one side and is provided with a guide clamping part 57. One end of the guide clamping part 57 is provided with a clamping hole 571, and one end of the pipe 2 extends into the clamping hole 571. The guide clamping part 57 is located on one side of the cutting saw blade 55. 7. A chip removal pipe 58 is provided on one side, corresponding to the cutting saw blade 55. The chip removal pipe 58 can facilitate the discharge of chips during the cutting of the pipe material 2, ensuring the cutting effect. The cutting seat 51 has a pipe material clamping assembly 9 on the other side of the cutting saw blade 55. The distance between the cutting seat 51 and the pipe material transmission mechanism 4 can be adjusted by the slide rail assembly 52. ​​The rotary motor 54 can drive the cutting arm 53 to rotate and lift. The drive motor 56 can drive the cutting saw blade 55 to cut the pipe material 2. The guide clamping part 57 and the clamping hole 571 can support and guide the pipe material 2, making it easy to guide the pipe material 2 to the pipe material clamping assembly 9. The pipe material clamping assembly 9 can clamp the pipe material 2, ensuring the cutting effect of the pipe material 2 during the cutting process.

[0034] Specifically, the pipe clamping assembly 9 includes a clamping seat 91 disposed on one side of the cutting seat 51. The clamping seat 91 has a clamping movable cavity 92, and two horizontally arranged clamping movable rods 93 are disposed within the clamping movable cavity 92. The clamping seat 91 is equipped with a clamping motor 94 capable of driving the clamping movable rods 93 to rotate. Both ends of the clamping movable rods 93 are provided with clamping portions 95, which are scissor-shaped and have two clamping halves 96. Adjacent clamping halves 96 are meshed and connected, and one end of each clamping half 96 is fixed to the clamping movable rod 93. The clamping half 96 is fixedly connected, and the other end of the clamping half 96 is provided with an arc-shaped clamping groove 97. A clamping channel 98 is formed between adjacent arc-shaped clamping grooves 97. The clamping channel 98 is correspondingly set with the clamping hole 571. The clamping motor 94 can drive the clamping movable rod 93 to rotate, and the clamping part 95 can perform clamping and loosening operations on the pipe 2 as the clamping movable rod 93 rotates. The pipe 2 can be placed through the clamping channel 98 to ensure the clamping effect on the pipe. The clamping half 96 facilitates the installation of the clamping part 95 and improves the installation efficiency.

[0035] Combination Figure 1 , Figure 5As shown, the base 1 is equipped with a controller 13 that can control the roll material drive assembly 6, the tube cutting mechanism 5, the tube clamping assembly 9 and the tube conveying mechanism 4. A waste trolley 14 is provided on one side of the base 1. The waste trolley 14 is located at the lower end of the chip discharge pipe 58. The controller 13 allows the user to easily control the equipment, and the waste trolley 14 allows the user to easily collect and clean up the debris.

[0036] The principle of this embodiment is as follows: one end of the tube 2 is set in the coil support 11 and the coil drive assembly 6 and the coil mechanism 3 are used to coil the tube 2, and the other end of the tube 2 extends into the tube transmission mechanism 4 and is transmitted to the tube clamping assembly 9 through the tube transmission mechanism 4. The tube 2 is clamped by the tube clamping assembly 9 and cut by the tube cutting mechanism 5.

[0037] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

[0038] Although this paper extensively uses components such as base 1, coil support 11, drive mounting hole 111, extension seat 12, controller 13, waste trolley 14, pipe 2, coil mechanism 3, coil reel 31, coil seat 32, pipe film 33, pipe conveying mechanism 4, conveying support 41, conveying support top cover 411, conveying support base 412, upper conveying assembly 42, upper conveying housing 421, upper conveying belt 422, upper arc guide rail 423, lower conveying assembly 43, lower conveying housing 431, lower conveying belt 432, lower arc guide rail 433, conveying channel 44, pipe cutting mechanism 5, cutting seat 51, slide rail assembly 52, cutting arm 53, rotary motor 54, cutting saw blade 55, drive The terminology used includes motor 56, guide clamping part 57, clamping hole 571, chip removal pipe 58, coil drive assembly 6, coil drive motor 61, motor mounting base 62, rotary disk 63, mounting sleeve 64, lifting and locking mechanism 7, lifting guide assembly 71, lifting guide rail 711, connecting slider 712, upper locking screw 72, upper locking block 73, locking handle 74, lower locking screw 75, transmission drive assembly 8, transmission motor 81, transmission gear 82, tube clamping assembly 9, clamping seat 91, clamping movable cavity 92, clamping movable rod 93, clamping motor 94, clamping part 95, clamping half 96, arc-shaped clamping groove 97, clamping channel 98, etc., but the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.

Claims

1. A bar stock coiling machine, comprising a base (1), wherein the base (1) is provided with a coiling support seat (11) capable of supporting the axial movement of a tube stock (2), and the coiling support seat (11) is provided with a coiling mechanism (3) capable of rotating outward around the tube stock (2), characterized in that, The machine base (1) is provided with a pipe material conveying mechanism (4) that can drive the pipe material (2) to be conveyed toward the end away from the coil support (11), and the machine base (1) is provided with an extension seat (12) that extends toward the end away from the coil support (11), and the extension seat (12) is provided with a pipe material cutting mechanism (5).

2. The bar stock coiling machine according to claim 1, characterized in that, The coil support base (11) is provided with a drive mounting hole (111). The drive mounting hole (111) is provided with a coil drive assembly (6) that can drive the coil mechanism (3) to rotate. The coil drive assembly (6) includes a coil drive motor (61) provided in the drive mounting hole (111). One end of the coil drive motor (61) is provided with a motor mounting base (62) that is fixedly connected to the coil support base (11). One side of the motor mounting base (62) is provided with a rotating disk (63) that is fixedly connected to the coil mechanism (3). The motor mounting base (62) is provided with a mounting sleeve (64) that is horizontally penetrating the motor mounting base (62) and the coil support base (11). The tube (2) is provided in the mounting sleeve (64). The mounting sleeve (64) is correspondingly provided with the tube transmission mechanism (4).

3. The bar stock coiling machine according to claim 2, characterized in that, The winding mechanism (3) includes a winding reel (31) fixedly mounted on a rotating disk (63). The winding reel (31) is sleeved around the outer side of the mounting sleeve (64) in the middle. The winding reel (31) is provided with a plurality of winding seats (32) on the side away from the rotating disk (63). One end of the winding seat (32) is threadedly connected to the winding reel (31). The winding seat (32) is sleeved with a tube film (33) on the outer side of the axial direction. The tube (2) is arranged between adjacent winding seats (32). The tube films (33) are all equidistantly arranged on the tube (2).

4. The bar stock coiling machine according to claim 1, characterized in that, The pipe material transfer mechanism (4) includes a transfer support base (41) set on the machine base (1). The transfer support base (41) is provided with an upper transfer component (42) and a lower transfer component (43). A transfer channel (44) for the transfer of pipe material (2) is provided between the upper transfer component (42) and the lower transfer component (43). A lifting and locking mechanism (7) is provided between the transfer support base (41) and the upper transfer component (42) and the lower transfer component (43). A transfer drive component (8) is provided on one side of both the upper transfer component (42) and the lower transfer component (43).

5. The bar stock coiling machine according to claim 4, characterized in that, The upper transmission assembly (42) includes an upper transmission housing (421), an opening on one side of the upper transmission housing (421), and an upper transmission belt (422) extending to the opening inside the upper transmission housing (421). The upper transmission belt (422) is rotatably disposed inside the upper transmission housing (421), and an upper arc-shaped guide rail (423) is provided on the side of the upper transmission belt (422). The lower transmission assembly (43) includes a lower transmission housing (431), an opening on one side of the lower transmission housing (431), and a lower transmission belt (432) extending to the opening inside the lower transmission housing (431). The lower transmission belt (432) is rotatably disposed inside the lower transmission housing (431), and a lower arc-shaped guide rail (433) is provided on the side of the upper transmission belt (422). The transmission channel (44) is formed between the upper arc-shaped guide rail (423) and the lower arc-shaped guide rail (433).

6. The bar stock coiling machine according to claim 5, characterized in that, The transmission drive assembly (8) includes a transmission motor (81) respectively disposed on the same side of the upper transmission housing (421) and the lower transmission housing (431). The upper transmission belt (422) and the lower transmission belt (432) are each provided with a plurality of meshing transmission gears (82). The transmission motor (81) is controlled and connected to the transmission gear (82) near the end of the coil support base (11).

7. The bar stock coiling machine according to claim 5, characterized in that, The lifting and locking mechanism (7) includes lifting guide components (71) respectively disposed on both sides of the upper transmission housing (421) and the lower transmission housing (431). The transmission support base (41) has a transmission support top cover (411) and a transmission support base (412). The transmission support top cover (411) and the transmission support base (412) are fixedly connected by the lifting guide components (71). The transmission support top cover (411) is provided with an upper locking screw (72) that is threadedly connected to the transmission support top cover (411). One end of the upper locking screw (72) is fixedly connected to the upper transmission housing (421) through an upper locking block (73). (72) The other end is provided with a locking handle (74), and the transmission support base (412) and the lower transmission housing (431) are threadedly connected by a lower locking screw (75). The lifting guide assembly (71) includes several lifting guide rails (711). At least two lifting guide rails (711) are provided on one side of the transmission support base (41), and one end of the lifting guide rail (711) is connected to the transmission support top cover (411), and the other end of the lifting guide rail (711) is connected to the transmission support base (412). The lifting guide rail (711) is provided with connecting sliders (712) that are fixedly connected to the upper transmission housing (421) and the lower transmission housing (431) respectively.

8. The bar stock coiling machine according to claim 2, characterized in that, The pipe cutting mechanism (5) includes a cutting seat (51) mounted on an extension seat (12). A slide rail assembly (52) is provided between the cutting seat (51) and the extension seat (12). The cutting seat (51) is axially slidably mounted on the extension seat (12) via the slide rail assembly (52). One end of the cutting seat (51) is provided with a cutting arm (53). A rotary motor (54) capable of controlling the rotation of the cutting arm (53) is provided in the middle of the cutting arm (53). One end of the cutting arm (53) is provided with a cutting saw blade (55), and the other end of the cutting arm (53) is provided with a cutting saw blade (55). A drive motor (56) drives the cutting saw blade (55), and the cutting seat (51) extends horizontally to one side and is provided with a guide clamping part (57). One end of the guide clamping part (57) is provided with a clamping hole (571). One end of the pipe (2) extends into the clamping hole (571). The guide clamping part (57) is provided on one side of the cutting saw blade (55), and the guide clamping part (57) is provided on one side with a chip discharge pipe (58) corresponding to the cutting saw blade (55). The cutting seat (51) has a pipe clamping assembly (9) provided on the other side of the cutting saw blade (55).

9. The bar stock coiling machine according to claim 8, characterized in that, The pipe clamping assembly (9) includes a clamping seat (91) disposed on one side of the cutting seat (51). The clamping seat (91) has a clamping movable cavity (92) inside, and two horizontally arranged clamping movable rods (93) are disposed within the clamping movable cavity (92). The clamping seat (91) is equipped with a clamping motor (94) capable of driving the clamping movable rods (93) to rotate. Both ends of the clamping movable rods (93) are provided with clamping portions (95). The clamping part (95) is scissor-shaped and has two clamping halves (96). The adjacent clamping halves (96) are meshed and connected. One end of each clamping half (96) is fixedly connected to the clamping movable rod (93), and the other end of each clamping half (96) is provided with an arc-shaped clamping groove (97). A clamping channel (98) is formed between adjacent arc-shaped clamping grooves (97). The clamping channel (98) is correspondingly provided with the clamping hole (571).

10. The bar stock coiling machine according to claim 8, characterized in that, The machine base (1) is equipped with a controller (13) that can control the roll material drive assembly (6), the tube cutting mechanism (5), the tube clamping assembly (9) and the tube conveying mechanism (4), and a waste trolley (14) is provided on one side of the machine base (1), and the waste trolley (14) is located at the lower end of the chip discharge pipe (58).