Drilling equipment for machining T-shaped pipe

By designing automated drilling equipment for processing T-tubes, the problem of manual operation of T-tube drilling in the prior art is solved, an efficient and automated processing process is achieved, and the processing rate and efficiency of the factory is improved.

CN120095195AInactive Publication Date: 2025-06-06ZHONGSHAN YOUBU METAL PROD CO LTD
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Patent Information

Application Number
CN202510372890.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, the drilling of T-tubes requires manual operation, which increases the workload of staff and reduces processing efficiency.

Method used

A drilling equipment for processing T-type tubes is designed, including feeding components, clamping mechanisms, rotating discs, fixed blocks, drilling mechanisms and material collection mechanisms. The feeding, clamping, rotating, drilling and collecting of T-type tubes is carried out in an automated manner to realize automated processing.

Benefits of technology

The processing of T-type tubes is automated, which reduces the workload of staff, improves processing efficiency, and can achieve uninterrupted processing, which improves the processing rate of the factory.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of T-shaped pipe machining equipment, and discloses drilling equipment for machining a T-shaped pipe. According to the technical scheme, the drilling equipment for machining the T-shaped pipe comprises a rack and a feeding assembly, and the feeding assembly is arranged on one side of the rack; the clamping and taking mechanism is arranged on the rack, and the clamping and taking mechanism is used for clamping and taking the T-shaped pipe on the feeding assembly in an automatic mode; the rotating disc is arranged on the machine frame, and a first driving assembly is arranged on the bottom face of the machine frame; the plurality of fixed blocks are rotationally connected to the rotating disc; the drilling mechanism is arranged on the machine frame; and the material taking mechanism is arranged on the machine frame. According to the T-shaped pipe drilling device, drilling treatment is conducted on a T-shaped pipe in an automatic mode, manual operation of workers is not needed, the workload of the workers is reduced, and meanwhile the drilling efficiency is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of T-tube processing equipment, in particular to a drilling equipment used for processing T-tubes. Background Art

[0002] In mechanical design, T-tubes are used to fix or connect mechanical parts. T-tubes have the characteristics of stability and durability, and are widely used in various mechanical connection scenarios. Usually, the T-tube is usually made of magnetically attractive metal materials. When using T-tubes, they need to be rotated.

[0003] However, in the prior art, the drilling of the T-tube needs to be done manually by the workers, which will increase the workload of the workers and reduce the processing efficiency of the factory. This needs to be further improved.

[0004] Therefore, based on the above technical problems, it is necessary for technicians in this field to develop a drilling device for processing T-tubes. Summary of the invention

[0005] The object of the present invention is to provide a drilling device for processing T-tubes to solve the problems raised in the above background technology.

[0006] To achieve the above object, the present invention provides the following technical solutions:

[0007] A technical solution for drilling equipment for processing T-tubes, comprising a frame and a loading assembly, wherein the loading assembly is arranged on one side of the frame;

[0008] A clamping mechanism, the clamping mechanism is arranged on the frame, and the clamping mechanism clamps the T-shaped tube on the feeding assembly in an automated manner;

[0009] A rotating disk, the rotating disk is arranged on the frame, and a driving assembly 1 is arranged on the bottom surface of the frame;

[0010] A plurality of fixed blocks, wherein the plurality of fixed blocks are rotatably connected to the rotating disk, a through hole 1 is vertically opened on the top surface of the plurality of fixed blocks, a limiting groove 1 connected to the through hole 1 is vertically opened on the top surface of the plurality of fixed blocks, and a driving component 2 for driving the fixed blocks to rotate is arranged on the frame;

[0011] A drilling mechanism, wherein the drilling mechanism is arranged on the frame;

[0012] A material taking mechanism is arranged on the frame.

[0013] As a preferred technical solution, the feeding assembly includes a fixed plate, which is horizontally installed on one side of the frame, a vibration disk is provided on the top surface of the fixed plate, a vibrator is installed on the top surface of the frame, and two guide plates are symmetrically installed on the top surface of the vibrator.

[0014] As a preferred technical solution, the clamping mechanism includes a fixed frame, which is installed on the top surface of the frame, a cylinder ten is horizontally installed on one side of the fixed frame, a moving block is installed on the piston rod of the cylinder ten, a cylinder one is vertically installed on one side of the moving block, a round block is installed on the piston rod of the cylinder one, and an electromagnet is installed on the bottom surface of the round block.

[0015] As a preferred technical solution, the driving component 2 includes a long strip block, which is vertically installed on the top surface of the rotating disk. A rotating shaft is rotatably connected to the long strip block, and both ends of the rotating shaft extend out of the long strip block. One end of the rotating shaft is fixed to the fixed block, and a motor 1 is horizontally installed on one side of the long strip block, a gear 1 is installed on the output shaft of the motor 1, and a gear 2 meshing with the gear 1 is installed on the rotating shaft.

[0016] As a preferred technical solution, the driving component 1 includes a motor 2, which is vertically mounted on the bottom surface of the frame. A rotating rod is rotatably connected to the frame, the top of the rotating rod is fixed to the rotating disk, a gear 3 is installed on the bottom end of the rotating rod, and a gear 4 meshing with the gear 3 is installed on the output shaft of the motor 2.

[0017] As a preferred technical solution, the drilling mechanism includes a mounting frame, which is vertically mounted on the top surface of the frame, and a cylinder 2 is vertically mounted on the top surface of the mounting frame, a mounting block 1 is horizontally mounted on the piston rod of the cylinder 2, an electric push rod is vertically mounted on the bottom surface of the mounting block 1, a mounting block 2 is mounted on the output shaft of the electric push rod, a motor 4 is vertically mounted on the bottom surface of the mounting block 2, and a drill bit is mounted on the output shaft of the motor 4.

[0018] As a preferred technical solution, the material picking mechanism includes a rotating rod, which is vertically arranged on the frame, a connecting rod is horizontally installed on one side of the rotating rod, a supporting block is horizontally installed on one end of the connecting rod, a receiving box is arranged on the top surface of the supporting block, a screen is arranged in the receiving box, and a driving component three is arranged on the top surface of the frame.

[0019] As a preferred technical solution, the driving component three includes a motor five, which is vertically mounted on the top surface of the frame, a gear five is mounted on the output shaft of the motor five, and a gear six meshing with the gear five is mounted on the rotating rod.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] (1) The present invention is a drilling device for processing T-tubes, which is provided with a feeding mechanism. When feeding the T-tube is required, the staff puts the T-tube to be processed into the vibration plate in advance, starts the vibration plate, and the T-tube enters the channels in turn. Then the vibrator is started, and the T-tube is transported in turn along the length direction of the channel, thereby realizing feeding in an automated manner without the participation of staff, saving time and effort.

[0022] (2) The present invention is a drilling device for processing T-tubes. The drilling mechanism is provided, and the drill bit can drill the T-tubes in an automated manner without the need for manual work by workers. This reduces the workload of workers and improves the efficiency of drilling. Moreover, the processing can be carried out uninterruptedly, replacing manual work, greatly improving the rate of processing T-tubes in the factory. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 A front view of a drilling device for processing T-tubes.

[0024] Figure 2 for Figure 1 A partial enlarged view of point A in the middle.

[0025] Figure 3 for Figure 1 A partial enlarged view of point B in the middle.

[0026] Figure 4 for Figure 1 A partial enlarged view of point C in the middle.

[0027] Figure 5 The present invention is a front view of a material taking mechanism in a drilling device for processing T-shaped pipes.

[0028] In the accompanying drawings: 1, frame; 2, rotating disk; 3, fixed block; 4, through hole 1; 5, limiting groove 1; 6, fixed plate; 8, vibration disk; 9, vibrator; 10, guide plate; 11, fixed frame; 12, cylinder 10; 13, moving block; 14, cylinder 1; 15, round block; 16, electromagnet; 17, long strip block; 18, rotating shaft; 19, motor 1; 20, gear 1; 21, gear 2; 22, motor 2; 23, rotating rod; 24, gear 3; 25, gear 4; 26, mounting frame; 27, cylinder 2; 28, electric push rod; 29, motor 4; 30, drill bit; 31, rotating rod; 32, connecting rod; 33, support block; 34, receiving box; 35, screen; 36, motor 5; 37, gear 5; 38, gear 6. DETAILED DESCRIPTION

[0029] The features and exemplary embodiments of various aspects of the present invention will be described in detail below. In order to make the purpose, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments. For those skilled in the art, the present invention can be implemented without the need for some of these specific details. The following description of the embodiments is only intended to provide a better understanding of the present invention by illustrating examples of the present invention.

[0030] like Figure 1-5 As shown, the present invention provides a technical solution for drilling equipment for processing T-tubes: it includes a frame 1, on which a loading assembly is arranged, and a worker puts the T-tubes to be processed into the loading assembly in a centralized manner, and the loading assembly transports the T-tubes to pre-set positions in sequence.

[0031] In this embodiment, the loading assembly includes a fixed plate 6, which is in the shape of a rectangular parallelepiped and is horizontally installed on one side of the frame 1. A vibration plate 8 is provided on the top surface of the fixed plate 6. The T-tube to be transported is placed in the vibration plate 8. A vibrator 9 is installed on the top surface of the frame 1. Two guide plates 10 are symmetrically installed on the top surface of the vibrator 9. The two guide plates 10 form a channel for the movement of the T-tube.

[0032] When it is necessary to feed the T-tube, the staff puts the T-tube to be processed into the vibration plate 8 in advance, starts the vibration plate 8, and the T-tube enters the channels in turn. Then the vibrator 9 is started, and the T-tube is transported in turn along the length direction of the channel, realizing feeding in an automated manner without the participation of staff, saving time and effort.

[0033] In this embodiment, a clamping mechanism is provided on the frame 1, and the clamping mechanism clamps the T-tube in the channel to the next processing step, wherein the clamping mechanism includes a fixed frame 11, and the fixed frame 11 is installed on the top surface of the frame 1, and a cylinder 12 is horizontally installed on one side of the fixed frame 11, and a moving block 13 is installed on the piston rod of the cylinder 12, and a cylinder 14 is vertically installed on one side of the moving block 13, and the piston rod of the cylinder 14 moves downward, and a round block 15 is installed on the piston rod of the cylinder 14, and an electromagnet 16 is installed on the bottom surface of the round block 15.

[0034] Start the cylinder 12, the piston rod of the cylinder 12 drives the moving block 13 to move horizontally to the top of the T-tube, start the cylinder 14, the cylinder 14 drives the round block 15 to move vertically, the round block 15 drives the electromagnet 16 to move vertically, the electromagnet 16 contacts the top surface of the T-tube, after the electromagnet 16 is energized, the electromagnet 16 sucks up the T-tube, and then, repeats the above actions to realize the automatic transportation of the T-tube.

[0035] In this embodiment, a rotating disk 2 is rotatably arranged on the frame 1, and a driving component 1 is arranged on the bottom surface of the frame 1. The driving component 1 drives the rotating disk 2 to rotate in an automated manner, wherein the driving component 1 includes a motor 22, and the motor 22 is vertically installed on the bottom surface of the frame 1. A rotating rod 23 is rotatably connected to the frame 1, and the top end of the rotating rod 23 is fixed to the rotating disk 2. A gear 3 24 is installed at the bottom end of the rotating rod 23, and a gear 4 25 meshing with the gear 3 24 is installed on the output shaft of the motor 22.

[0036] Start the motor 22, the output shaft of the motor 22 drives the gear 4 25 to rotate, the gear 3 24 meshes with the gear 4 25, the gear 3 24 drives the rotating rod 23 to rotate, and the rotating rod 23 drives the rotating disk 2 to rotate in an automated manner.

[0037] In this embodiment, multiple groups of drive components 2 are arranged on the top surface of the rotating disk 2, and the multiple groups of drive components 2 are arranged along the circumferential direction of the rotating disk 2, wherein the drive component 2 includes a long strip block 17, the long strip block 17 is vertically installed on the top surface of the rotating disk 2, a rotating shaft 18 is rotatably connected to the long strip block 17, the rotating shaft 18 is horizontally arranged, and the long strip blocks 17 are extended from both ends of the rotating shaft 18, a fixed block 3 is installed at one end of the rotating shaft 18, and the rotating shaft 18 is rotated to drive the fixed block 3 to rotate, a motor 19 is horizontally installed on one side of the long strip block 17, a gear 20 is installed on the output shaft of the motor 19, and a gear 21 meshing with the gear 20 is installed on the rotating shaft 18.

[0038] Start the motor 19, the output shaft of the motor 19 drives the gear 1 20 to rotate, the gear 1 20 is meshed with the gear 2 21, the gear 2 21 drives the rotating shaft 18 to rotate, and the rotating shaft 18 drives the fixed block 3 to rotate.

[0039] In this embodiment, a through hole 4 is vertically opened on the top surface of the plurality of fixed blocks 3, and a limiting groove 5 connected with the through hole 4 is vertically opened on the top surface of the plurality of fixed blocks 3. The T-tube clamped by the clamping mechanism is transported to the through hole 4 and the limiting groove 5, and as the rotating disk 2 rotates, the T-tube is transported to the next processing step.

[0040] In this embodiment, a drilling mechanism is arranged on the frame 1, wherein the drilling mechanism includes a mounting frame 26, the mounting frame 26 is vertically mounted on the top surface of the frame 1, a cylinder 27 is horizontally mounted on the top surface of the mounting frame 26, the piston rod of the cylinder 27 is arranged downward, a mounting block 1 is horizontally mounted on the piston rod of the cylinder 27, an electric push rod 28 is vertically mounted on the bottom surface of the mounting block 1, a mounting block 2 is mounted on the output shaft of the electric push rod 28, a motor 4 29 is vertically mounted on the bottom surface of the mounting block 2, and a drill bit 30 is mounted on the output shaft of the motor 4 29.

[0041] After the fixing block 3 moves to the drilling mechanism, the cylinder 2 27 is started, and the piston rod of the cylinder 2 27 drives the mounting block 1 to move horizontally. The mounting block 1 moves to the top of the T-sleeve, and the electric push rod is started. The electric push rod drives the mounting block 2 to move vertically. The mounting block 2 drives the motor 4 29 to move vertically, and the drill bit 30 moves to the top of the T-tube where the hole needs to be drilled. The motor 4 29 is started, and the motor 4 29 drives the drill bit 30 to rotate. At the same time, the electric push rod drives the mounting block 2 to continue to move downward, and the drill bit 30 drills the T-tube in an automated manner, without the need for manual work by the staff. While reducing the workload of the staff, the drilling efficiency is improved. Moreover, the processing can be carried out uninterruptedly, replacing manual labor, which greatly improves the efficiency of factory processing of T-sleeves.

[0042] In this embodiment, a material picking mechanism is provided on the frame 1, and the T-tube after processing is removed from the fixed block 3 through the material picking mechanism. The material picking mechanism includes a rotating rod 31, and the rotating rod 31 is vertically arranged on the frame 1. A connecting rod 32 is horizontally installed on one side of the rotating rod 31, and a supporting block 33 is horizontally installed at one end of the connecting rod 32. A receiving box 34 is provided on the top surface of the supporting block 33, and a screen 35 is provided in the receiving box 34. A driving component three is provided on the top surface of the frame 1.

[0043] Among them, the driving component three includes a motor five 36, which is vertically installed on the top surface of the frame 1, and a gear five 37 is installed on the output shaft of the motor five 36, and a gear six 38 meshing with the gear five 37 is installed on the rotating rod 31. When the motor five 36 is started, the output shaft of the motor five 36 drives the gear five 37 to rotate, the gear five 37 meshes with the gear six 38, the gear six 38 drives the rotating rod 31 to rotate, the rotating rod 31 drives the connecting rod 32 to rotate, the connecting rod 32 drives the supporting block 33 to rotate, the supporting block 33 drives the containing box 34 to move to the bottom of the fixed block, and then, the fixed block is rotated, the T-shaped sleeve falls from the fixed block onto the screen 35, and the collection of the T-shaped tube is completed.

[0044] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

[0045] In the description of the present invention, it is necessary to understand that the terms "coaxial", "bottom", "one end", "top", "middle", "the other end", "upper", "one side", "top", "inside", "front", "center", "both ends" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.

[0046] In the present invention, unless otherwise clearly stipulated and limited, the terms such as "installation", "setting", "connection", "fixation" and "screw-on" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral one; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal connection of two elements or the interaction relationship between two elements. Unless otherwise clearly defined, ordinary technicians in this field can understand the specific meanings of the above terms in the present invention according to the specific circumstances.

[0047] According to the embodiments of the present invention as described above, these embodiments do not describe all the details in detail, nor do they limit the invention to specific embodiments. Obviously, many modifications and changes can be made based on the above description. This specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the present invention, so that those skilled in the art can make good use of the present invention and the modified use based on the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A drilling device for processing T-tubes, characterized in that: It comprises a frame (1) and a loading assembly, wherein the loading assembly is arranged on one side of the frame (1); A clamping mechanism, the clamping mechanism being arranged on the frame (1), and the clamping mechanism clamps the T-shaped tube on the feeding assembly in an automated manner; A rotating disk (2), the rotating disk (2) being arranged on the frame (1), and a driving component 1 being arranged on the bottom surface of the frame (1); A plurality of fixed blocks (3), the plurality of fixed blocks (3) being rotatably connected to the rotating disk (2), the top surfaces of the plurality of fixed blocks (3) being vertically provided with a through hole (4), the top surfaces of the plurality of fixed blocks (3) being vertically provided with a limiting groove (5) connected to the through hole (4), and the frame (1) being provided with a driving component (2) for driving the fixed blocks (3) to rotate; A drilling mechanism, the drilling mechanism being arranged on the frame (1); A material taking mechanism, wherein the material taking mechanism is arranged on the frame (1).

2. The drilling device for processing T-tubes according to claim 1, characterized in that: The loading assembly comprises a fixing plate (6), the fixing plate (6) being horizontally mounted on one side of the frame (1), a vibration plate (8) being arranged on the top surface of the fixing plate (6), a vibrator (9) being mounted on the top surface of the frame (1), and two guide plates (10) being symmetrically mounted on the top surface of the vibrator (9).

3. The drilling device for processing T-tubes according to claim 1, characterized in that: The clamping mechanism comprises a fixed frame (11), the fixed frame (11) is mounted on the top surface of the frame (1), a cylinder ten (12) is horizontally mounted on one side of the fixed frame (11), a moving block (13) is mounted on the piston rod of the cylinder ten (12), a cylinder one (14) is vertically mounted on one side of the moving block (13), a round block (15) is mounted on the piston rod of the cylinder one (14), and an electromagnet (16) is mounted on the bottom surface of the round block (15).

4. The drilling device for processing T-tubes according to claim 1, characterized in that: The driving assembly 2 comprises a long strip block (17), the long strip block (17) is vertically mounted on the top surface of the rotating disk (2), a rotating shaft (18) is rotatably connected to the long strip block (17), both ends of the rotating shaft (18) extend out of the long strip block (17), one end of the rotating shaft (18) is fixed to the fixed block (3), a motor 1 (19) is horizontally mounted on one side of the long strip block (17), a gear 1 (20) is mounted on the output shaft of the motor 1 (19), and a gear 2 (21) meshing with the gear 1 (20) is mounted on the rotating shaft (18).

5. The drilling device for processing T-tubes according to claim 1, characterized in that: The driving assembly 1 comprises a motor 2 (22), the motor 2 (22) being vertically mounted on the bottom surface of the frame (1), a rotating rod (23) being rotatably connected to the frame (1), the top end of the rotating rod (23) being fixed to the rotating disk (2), a gear 3 (24) being mounted on the bottom end of the rotating rod (23), and a gear 4 (25) being mounted on the output shaft of the motor 2 (22) and meshing with the gear 3 (24).

6. The drilling device for processing T-tubes according to claim 1, characterized in that: The drilling mechanism comprises a mounting frame (26), wherein the mounting frame (26) is vertically mounted on the top surface of the frame (1), a second cylinder (27) is horizontally mounted on the top surface of the mounting frame (26), a first mounting block is horizontally mounted on the piston rod of the second cylinder (27), an electric push rod (28) is vertically mounted on the bottom surface of the first mounting block, a second mounting block is mounted on the output shaft of the electric push rod (28), a fourth motor (29) is vertically mounted on the bottom surface of the second mounting block, and a drill bit (30) is mounted on the output shaft of the fourth motor (29).

7. The drilling device for processing T-tubes according to claim 1, characterized in that: The material taking mechanism comprises a rotating rod (31), the rotating rod (31) is vertically arranged on the frame (1), a connecting rod (32) is horizontally installed on one side of the rotating rod (31), a supporting block (33) is horizontally installed on one end of the connecting rod (32), a receiving box (34) is arranged on the top surface of the supporting block (33), a screen (35) is arranged in the receiving box (34), and a driving component three is arranged on the top surface of the frame (1).

8. The drilling device for processing T-tubes according to claim 7, characterized in that: The driving assembly three comprises a motor five (36), the motor five (36) being vertically mounted on the top surface of the frame (1), a gear five (37) being mounted on the output shaft of the motor five (36), and a gear six (38) being mounted on the rotating rod (31) and meshing with the gear five (37).