Automatic feeding, chamfering, punching and coding all-in-one machine

The integrated automatic feeding, chamfering, punching, and coding machine solves the problems of large equipment footprint and inconvenient relocation by combining transportation, feeding, chamfering, punching, and coding modules, and realizes efficient pipe processing and convenient equipment relocation.

CN223506662UActive Publication Date: 2025-11-04QUANSHUNTAI AUTOMATION EQUIPMENT (FOSHAN) CO LTD
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Patent Information

Application Number
CN202423091465.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-11-04
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Existing pipe feeding, chamfering, punching, and marking production line equipment is large in size, occupies a large area, has low versatility, and is inconvenient to relocate.

Method used

Design an automatic feeding, chamfering, punching and coding integrated machine, which integrates the transportation module, feeding module, chamfering module, punching module and coding module into one unit, reducing the footprint of the production equipment and improving the versatility and ease of transfer of the equipment.

Benefits of technology

It achieves a highly efficient pipe processing procedure, reduces the equipment footprint, and improves the equipment's versatility and ease of relocation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic feeding, chamfering, punching and coding all-in-one machine. The automatic feeding, chamfering, punching and coding all-in-one machine is applied to pipeline machining. The automatic feeding, chamfering, punching and coding all-in-one machine comprises a conveying module, a feeding module, a chamfering module, a punching module and a coding module. The coding module is located in the punching module. The feeding module comprises a containing bin used for containing a pipeline. The transportation module comprises a first guide rail; the discharging end of the containing bin is located above the initial end of the first guide rail. The chamfering modules are located on the two sides of the first guide rail. The punching module is located at the tail end of the first guide rail. The conveying module, the feeding module, the chamfering module, the punching module and the coding module are integrated, so that the occupied area of production equipment is reduced, the universality of products is improved, and transfer of the production equipment is facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of pipe processing technology, and in particular to an automatic feeding, chamfering, punching and coding integrated machine. Background Technology

[0002] Currently, the automated production methods used for pipe feeding, chamfering, punching, and marking are generally production lines. Because pipe feeding, chamfering, punching, and marking production lines are large in size and occupy a large area, they are generally used in large factories. They are less versatile for small factories. When the production line needs to be moved to other areas, the relocation work is also quite complicated. Utility Model Content

[0003] To overcome the problems existing in related technologies, this utility model provides an automatic feeding, chamfering, punching and coding integrated machine, which integrates the transportation module, feeding module, chamfering module, punching module and coding module into one unit, reducing the floor space of the production equipment, thereby improving the versatility of the product and facilitating the transfer of the production equipment.

[0004] This utility model provides an automatic feeding, chamfering, punching and coding integrated machine, which is used for processing pipes;

[0005] The automatic feeding, chamfering, punching, and coding integrated machine includes a transport module, a feeding module, a chamfering module, a punching module, and a coding module;

[0006] The coding module is located inside the punching module;

[0007] The feeding module includes a receiving chamber for accommodating the pipes;

[0008] The transport module includes a first guide rail;

[0009] The discharge end of the receiving chamber is located above the initial end of the first guide rail;

[0010] The chamfering module is located on both sides of the first guide rail;

[0011] The punching module is located at the end of the first guide rail.

[0012] Furthermore, the transport module also includes a first fixing block assembly and a second fixing block assembly;

[0013] Both the first fixing block assembly and the second fixing block assembly are used to fix the pipe;

[0014] The first fixing block assembly is located on one side of the second fixing block assembly;

[0015] Both the first fixing block assembly and the second fixing block assembly are slidably connected to the first guide rail.

[0016] Furthermore, the transport module also includes a second guide rail;

[0017] The second guide rail is located above the first guide rail.

[0018] Furthermore, the first fixing block assembly is slidably connected to the second guide rail.

[0019] Furthermore, the transport module also includes a third guide rail;

[0020] The first guide rail, the second guide rail, and the third guide rail are perpendicular to each other;

[0021] The second guide rail is provided with a first connector at its bottom;

[0022] The second guide rail is slidably connected to the third guide rail based on the first connector;

[0023] The top of the third guide rail is provided with a second connector;

[0024] The third guide rail is slidably connected to the first guide rail based on the second connector.

[0025] Furthermore, the transport module also includes a push plate and the third connector;

[0026] One end of the third connector is connected to the push plate;

[0027] The other end of the third connector is connected to the second connector;

[0028] The push plate is slidably connected to the first guide rail based on the third connector.

[0029] Furthermore, the chamfering module includes a rotating blade, a third connecting member, and a lifting and fixing member;

[0030] The third connector is located on one side of the rotating blade;

[0031] The lifting and fixing component is located above the third connecting component.

[0032] Furthermore, the punching module includes a punching assembly, a first push tube assembly, and a second push tube assembly;

[0033] The first push tube assembly is located on one side of the punching assembly;

[0034] The second push tube assembly is located on the other side of the punching assembly.

[0035] Furthermore, the first push tube assembly includes a fourth guide rail and a first push tube body;

[0036] The first push tube body is slidably connected to the fourth guide rail.

[0037] Furthermore, the punching assembly includes a punching track;

[0038] The second push tube assembly is slidably connected to the punching track.

[0039] This utility model provides an automatic feeding, chamfering, punching and coding integrated machine, which integrates the transportation module, feeding module, chamfering module, punching module and coding module into one unit, reducing the floor space of the production equipment, thereby improving the versatility of the product and facilitating the transfer of the production equipment. Attached Figure Description

[0040] The above and other objects, features and advantages of the present invention will become more apparent from the accompanying drawings, in which like reference numerals generally represent like parts.

[0041] Figure 1 This is a schematic diagram of the structure of the automatic feeding, chamfering, punching and coding integrated machine of this utility model;

[0042] Figure 2 This is another structural schematic diagram of the automatic feeding, chamfering, punching and coding integrated machine of this utility model;

[0043] Figure 3 This is a schematic diagram of the structure of the first fixing block assembly in this utility model;

[0044] Figure 4 yes Figure 3 Enlarged view of point A;

[0045] Figure 5 This is a partial structural diagram of the automatic feeding, chamfering, punching, and coding integrated machine of this utility model;

[0046] Figure 6 This is a partial structural diagram of the automatic feeding, chamfering, punching, and coding integrated machine of this utility model;

[0047] Figure 7 This is a schematic diagram of the structure of the first motor in this utility model;

[0048] Figure 8 yes Figure 7 Enlarged view of point B;

[0049] Figure 9 This is a schematic diagram of the third part of the structure of the automatic feeding, chamfering, punching and coding integrated machine of this utility model;

[0050] Transportation module 1, loading module 2, chamfering module 3,

[0051] 4. Punching module; 5. Marking module; 201. Storage compartment.

[0052] First guide rail 11, first fixing block assembly 12, second fixing block assembly 13

[0053] First fixed block body 121, second fixed block body 122

[0054] Third fixing block body 131, fourth fixing block body 132

[0055] Second guide rail 14, third guide rail 15, first connector 141

[0056] Second connector 151, connecting plate 142, push plate 16

[0057] Third connector 161, rotating blade 31, third connector 32

[0058] Lifting and fixing component 33, punching assembly 41, first push tube assembly 42

[0059] Second push tube assembly 43, first motor 34, fourth guide rail 421,

[0060] First push tube body 422, punching track 411, fifth guide rail 35. Detailed Implementation

[0061] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0062] Please refer to Figures 1 to 9 This utility model provides an automatic feeding, chamfering, punching, and coding integrated machine, which is applied to the processing of pipes. The automatic feeding, chamfering, punching, and coding integrated machine includes a transport module 1, a feeding module 2, a chamfering module 3, a punching module 4, and a coding module 5. The coding module 5 is located inside the punching module 4. The feeding module 2 includes a receiving bin 201 for accommodating pipes. The transport module 1 includes a first guide rail 11. The discharge end of the receiving bin 201 is located above the initial end of the first guide rail 11. The chamfering module 3 is located on both sides of the first guide rail 11. The punching module 4 is located at the end of the first guide rail 11.

[0063] Specifically, after the pipe falls from the discharge end of the receiving bin 201 to the first guide rail 11, the pipe is transported to the chamfering module 3 based on the first guide rail 11. Both ends of the pipe abut against the chamfering modules 3 on both sides of the first guide rail 11, so that the edges of the pipe ends are cut into a certain bevel. Then, the pipe is transported to the punching module 4 based on the first guide rail 11, where the pipe is punched and marked. Finally, the pipe is transported to the finished product storage bin of the machine based on the first guide rail 11. The whole processing is efficient and convenient. The transportation module, feeding module, chamfering module, punching module and marking module are integrated into one unit, which reduces the footprint of the production equipment, thereby improving the versatility of the product and facilitating the transfer of the production equipment.

[0064] Furthermore, the transport module 1 also includes a first fixing block assembly 12 and a second fixing block assembly 13; both the first fixing block assembly 12 and the second fixing block assembly 13 are used to fix the pipe; the first fixing block assembly 12 is located on one side of the second fixing block assembly 13; both the first fixing block assembly 12 and the second fixing block assembly 13 are slidably connected to the first guide rail 11.

[0065] Specifically, the first fixing block assembly 12 is provided with a first fixing block body 121 and a second fixing block body 122; the second fixing block assembly 13 is provided with a third fixing block body 131 and a fourth fixing block body 132; and there are two of each of the first fixing block body 121, the second fixing block body 122, the third fixing block body 131 and the fourth fixing block body 132.

[0066] When the discharge end of the receiving chamber 201 is opposite to the first fixed block body 121 and the third fixed block body 131, the pipe falls from the discharge end of the receiving chamber 201 between the first fixed block body 121 and the second fixed block body 122. One end of the pipe is located on the first fixed block body 121, and the other end of the pipe is located on the third fixed block body 131. Since the first fixed block assembly 12 and the second fixed block assembly 13 are both slidably connected to the first guide rail 11, the first fixed block body 121 and the third fixed block body 131 move to the chamfering module 3, so that the pipe is transported to the chamfering module 3 for processing.

[0067] The second fixing block body 122 is located on one side of the first fixing block body 121, and the fourth fixing block body 132 is located on one side of the third fixing block body 131. When the discharge end of the receiving chamber 201 is opposite to the first fixing block body 121 and the third fixing block body 131, the second fixing block body 122 and the fourth fixing block body 132 are opposite to the chamfering modules 3 on both sides of the first guide rail 11. After the chamfering module 3 is processed, one end of the pipe is located on the second fixing block body 122, and the other end of the pipe is located on the fourth fixing block body 132. Since the first fixing block assembly 12 and the second fixing block assembly 13 are slidably connected to the first guide rail 11, the second fixing block body 122 and the fourth fixing block body 132 move to the punching module 4. After the chamfering module 3 is processed, the pipe is transported to the punching module 4 for processing. At this time, the pipe located between the first fixing block body 121 and the third fixing block body 131 is transported to the chamfering module 3.

[0068] The first fixing block body 121, the second fixing block body 122, the third fixing block body 131 and the fourth fixing block body 132 are slidably connected to the first guide rail 11.

[0069] Furthermore, the transport module 1 also includes a second guide rail 14; the second guide rail 14 is located above the first guide rail 11.

[0070] Furthermore, the first fixing block assembly 12 is slidably connected to the second guide rail 14.

[0071] Specifically, when the pipes that the factory needs to process are long or short, the distance between the first fixed block assembly 12 and the second fixed block assembly 13 can be increased or decreased by sliding the first fixed block assembly 12 and the second guide rail 14.

[0072] Furthermore, the transport module 1 also includes a third guide rail 15;

[0073] The first guide rail 11, the second guide rail 14, and the third guide rail 15 are perpendicular to each other;

[0074] The second guide rail 14 is provided with a first connector 141 at its bottom;

[0075] The second guide rail 14 is slidably connected to the third guide rail 15 based on the first connector 141;

[0076] The third guide rail 15 is provided with a second connector 151 at its top;

[0077] The third guide rail 15 is slidably connected to the first guide rail 11 based on the second connector 151.

[0078] Specifically, since the second guide rail 14 has a connecting plate 142 at its bottom, and the first connecting piece 141 is located at the bottom of the connecting plate 142, the second guide rail 14 is slidably connected to the third guide rail 15 based on the first connecting piece 141, and the third guide rail 15 is slidably connected to the first guide rail 11 based on the second connecting piece 151, so that the second guide rail 14 and the third guide rail 15 are slidably connected to the first guide rail 11.

[0079] Since the first fixing block body 121 is slidably connected to the second guide rail 14, and the second fixing block body 122 is connected to the connecting plate 142, after the pipe is chamfered, the connecting plate 142 is slidably connected to the third guide rail 15. The connecting plate 142 moves downward, so that the second fixing block body 122 and the fourth fixing block body 132 move to the bottom of the pipe on the chamfering module 3. The connecting plate 142 then moves upward, so that the second fixing block body 122 and the fourth fixing block body 132 abut against both ends of the pipe on the chamfering module 3. The third guide rail 15 is slidably connected to the first guide rail 11 based on the second connecting piece 151. The third guide rail 15 moves towards the punching module 4 at the same time, so that the pipe on the chamfering module 3 is transported to the punching module 4.

[0080] Furthermore, the transport module 1 also includes a push plate 16 and the third connector 161; one end of the third connector 161 is connected to the push plate 16; the other end of the third connector 161 is connected to the second connector 151; the push plate 161 is slidably connected to the first guide rail 11 based on the third connector 161.

[0081] Specifically, after the pipe is punched, it falls onto the machine's track. The push plate 161 is slidably connected to the first guide rail 11 based on the third connector 161. The push plate 161 moves toward the finished product storage bin. The push plate 161 moves to the pipe on the machine track and abuts against the pipe, so that the push plate 161 pushes the pipe into the finished product storage bin.

[0082] Furthermore, the chamfering module 3 includes a rotating blade 31, a third connector 32, and a lifting and fixing member 33; the third connector 32 is located on one side of the rotating blade 31; and the lifting and fixing member 33 is located above the third connector 32.

[0083] Specifically, when the pipe is transported to the chamfering module 3 for processing, both ends of the pipe are located on the third connector 32; the lifting and fixing component 33 includes a lifting and fixing block and a lifting guide rail. The lifting and fixing block moves along the lifting guide rail towards the third connector 32, so that the lifting and fixing block abuts against the top of the pipe, thereby fixing the pipe and ensuring the normal operation of the chamfering process; the chamfering module 3 also includes a first motor 34. The output end of the first motor 34 is provided with a first gear. The rotating blade 31 is driven by the first gear belt, thereby driving the rotating blade 31 to rotate. Both ends of the pipe abut against the rotating blade 31, thereby chamfering the two ends of the pipe.

[0084] The bottom of the chamfering module 3 is provided with a fifth guide rail 35, and the chamfering module 3 is slidably connected to the fifth guide rail 35, thereby adjusting the distance between the two chamfering modules 3.

[0085] Furthermore, the punching module 4 includes a punching assembly 41, a first push tube assembly 42, and a second push tube assembly 43; the first push tube assembly 42 is located on one side of the punching assembly 4; and the second push tube assembly 43 is located on the other side of the punching assembly 4.

[0086] Furthermore, the first push tube assembly 42 includes a fourth guide rail 421 and a first push tube body 422; the first push tube body 422 is slidably connected to the fourth guide rail 421.

[0087] Furthermore, the punching assembly 41 includes a punching track 411;

[0088] The second push tube assembly 43 is slidably connected to the punching track 411.

[0089] Specifically, when the pipe on the chamfering module 3 is transported to the punching module 4, the first pusher body 422 is slidably connected to the fourth guide rail 421. The first pusher body 422 moves towards the punching track 411 and pushes the pipe into the punching track 411. The punching track has several holes, and corresponding punching posts and marking posts are provided above the holes to realize simultaneous punching and marking operations. The punching posts are connected to the hydraulic cylinder on the equipment, thereby driving the punching posts to move up and down. When the punching posts pass through the corresponding holes, they pass through the pipe in the punching track 411, thereby punching holes in the pipe. After the pipe is punched, the second pusher assembly 43 is slidably connected to the punching track 411 and pushes the pipe in the punching track 411, causing the pipe to fall onto the machine track. The pusher plate 161 moves to the pipe on the machine track and abuts against the pipe, causing the pusher plate 161 to push the pipe into the finished product storage bin.

[0090] This utility model provides an automatic feeding, chamfering, punching, and coding integrated machine. After the pipe drops from the discharge end of the receiving bin 201 to the first guide rail 11, the pipe is transported to the chamfering module 3 based on the first guide rail 11. Both ends of the pipe abut against the chamfering modules 3 on both sides of the first guide rail 11, so that the edges of the pipe ends are cut into a certain bevel. The pipe is then transported to the punching module 4 based on the first guide rail 11 for punching and coding. Finally, the pipe is transported to the finished product storage bin of the machine based on the first guide rail 11. The entire processing process is efficient and convenient. By integrating the transportation module, feeding module, chamfering module, punching module, and coding module into one unit, the footprint of the production equipment is reduced, thereby improving the versatility of the product and facilitating the transfer of the production equipment.

[0091] Furthermore, the automatic feeding, chamfering, punching, and coding integrated machine provided in the embodiments of this utility model has been described in detail above. Specific examples have been used in this article to illustrate the principle and implementation of this utility model. The description of the above embodiments is only for the purpose of helping to understand the method and core idea of ​​this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of ​​this utility model. Therefore, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. An automatic feeding, chamfering, punching, and coding integrated machine, characterized in that, The automatic feeding, chamfering, punching, and coding integrated machine is used for processing pipes; The automatic feeding, chamfering, punching, and coding integrated machine includes a transport module, a feeding module, a chamfering module, a punching module, and a coding module; The coding module is located inside the punching module; The feeding module includes a receiving chamber for accommodating the pipes; The transport module includes a first guide rail; The discharge end of the receiving chamber is located above the initial end of the first guide rail; The chamfering module is located on both sides of the first guide rail; The punching module is located at the end of the first guide rail.

2. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 1, characterized in that, The transport module also includes a first fixing block assembly and a second fixing block assembly; Both the first fixing block assembly and the second fixing block assembly are used to fix the pipe; The first fixing block assembly is located on one side of the second fixing block assembly; Both the first fixing block assembly and the second fixing block assembly are slidably connected to the first guide rail.

3. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 2, characterized in that, The transport module also includes a second guide rail; The second guide rail is located above the first guide rail.

4. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 3, characterized in that, The first fixing block assembly is slidably connected to the second guide rail.

5. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 4, characterized in that, The transport module also includes a third guide rail; The first guide rail, the second guide rail, and the third guide rail are perpendicular to each other; The second guide rail is provided with a first connector at its bottom; The second guide rail is slidably connected to the third guide rail based on the first connector; The top of the third guide rail is provided with a second connector; The third guide rail is slidably connected to the first guide rail based on the second connector.

6. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 5, characterized in that, The transport module also includes a push plate and a third connector; One end of the third connector is connected to the push plate; The other end of the third connector is connected to the second connector; The push plate is slidably connected to the first guide rail based on the third connector.

7. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 1, characterized in that, The chamfering module includes a rotating blade, a third connector, and a lifting and fixing component; The third connector is located on one side of the rotating blade; The lifting and fixing component is located above the third connecting component.

8. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 1, characterized in that, The punching module includes a punching assembly, a first push tube assembly, and a second push tube assembly. The first push tube assembly is located on one side of the punching assembly; The second push tube assembly is located on the other side of the punching assembly.

9. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 8, characterized in that, The first push tube assembly includes a fourth guide rail and a first push tube body; The first push tube body is slidably connected to the fourth guide rail.

10. The automatic feeding, chamfering, punching, and coding integrated machine according to claim 8, characterized in that, The punching assembly includes a punching track; The second push tube assembly is slidably connected to the punching track.