CN220761177U - Pipe shearing and stacking device - Google Patents

Pipe shearing and stacking device Download PDF

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Publication number
CN220761177U
CN220761177U CN202322037401.1U CN202322037401U CN220761177U CN 220761177 U CN220761177 U CN 220761177U CN 202322037401 U CN202322037401 U CN 202322037401U CN 220761177 U CN220761177 U CN 220761177U
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China
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traction
pipe
motor
mounting
fixed mounting
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CN202322037401.1U
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Chinese (zh)
Inventor
李镇银
侯雪萍
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Xiamen Unionta Industrial Co ltd
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Xiamen Unionta Industrial Co ltd
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Priority to CN202322037401.1U priority Critical patent/CN220761177U/en
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Abstract

The utility model belongs to the field of pipe fitting production and processing, in particular to a pipe fitting shearing and stacking device which comprises a supporting frame, wherein the supporting frame is provided with a conveying frame, the conveying frame is provided with a supporting plate, the supporting plate is provided with a fixing rod, the fixing rod is provided with a top plate, the fixing rod is provided with a counter, the counter is provided with an assembling pipe, the counter is provided with an installing pipe, the fixing rod is provided with a traction block, the traction block is provided with a rotating groove, the traction block is provided with a driving motor, the driving motor is provided with a driving roller, the driving roller is assembled with the rotating groove, the top plate is provided with an adjusting bolt, the traction block is provided with a rotating cavity, the adjusting bolt is provided with a connecting rod, the connecting rod is provided with a rotating disc, and the rotating disc is assembled with the rotating cavity.

Description

Pipe shearing and stacking device
Technical Field
The utility model relates to the field of pipe fitting production and processing, in particular to a pipe fitting shearing and stacking device.
Background
The pipe fittings are the common names of parts with the functions of connection, control, diversion, sealing, support and the like in the pipeline system, and the steel pipe fittings are pressure-bearing pipe fittings. According to different processing technologies, the welding type pipe fitting is divided into four types, namely butt welding type pipe fitting (two types of welding lines and non-welding lines), socket welding type pipe fitting, threaded pipe fitting and flange pipe fitting.
The current pipe fitting needs the manual work to cut the pipe fitting through cutting equipment when processing, but current pipe fitting still has following problem in the in-process of using:
when the existing pipe fitting cuts the multistage, the pipe fitting needs to be pushed manually and repeatedly to move, so that the labor cost is increased, the operation is time-consuming and labor-consuming, and the pipe fitting production efficiency is affected, so that the pipe fitting shearing and stacking device is necessary to be used in the existing pipe fitting production and processing field.
Disclosure of Invention
In order to overcome the defects of the prior art, when the existing pipe fitting is used for cutting multiple sections, the pipe fitting needs to be pushed manually and repeatedly to move, so that the labor cost is increased, the time and the labor are consumed in operation, and the production efficiency of the pipe fitting is affected.
The technical scheme adopted for solving the technical problems is as follows: the pipe fitting shearing and stacking device comprises a supporting frame, a conveying frame is fixedly assembled on the supporting frame, a supporting plate is fixedly assembled at one end of the conveying frame, a plurality of fixing rods are fixedly assembled on the supporting plate, a top plate is fixedly assembled at the top of the plurality of fixing rods, a counter is fixedly assembled on the fixing rods, an assembling pipe is fixedly assembled on the counter, an installing pipe is fixedly assembled on the counter, a traction block is movably assembled on the fixing rods, the traction block is positioned between the installing pipe and the top plate, a rotating groove is formed in the bottom of the traction block, the rotating groove is positioned between the assembling pipe and the installing pipe, a driving motor is fixedly assembled at the side face of the traction block, the output end of the driving motor movably penetrates through the traction block into the rotating groove, a driving roller is fixedly assembled at the output end of the driving motor, and the driving roller and the rotating groove are movably assembled.
Preferably, the screw thread is equipped with adjusting bolt on the roof, and the inside of traction block is provided with the rotation chamber, and adjusting bolt's one end fixed mounting has the connecting rod, and the connecting rod activity runs through in the rotation chamber to the one end fixed mounting of connecting rod has the rolling disc, and the rolling disc carries out movable mounting with the rotation chamber.
Preferably, the control box is fixedly assembled on the support plate, the connecting pipe is fixedly assembled on the control box, the traction pipe is fixedly assembled on the control box, the cutting motor is fixedly assembled on the control box, the output end of the cutting motor movably penetrates through the control box, the cutting blade is fixedly assembled at the output end of the cutting motor, the cutting blade is positioned between the traction pipe and the connecting pipe, and the sensor is fixedly assembled on the inner wall of the control box.
Preferably, the traction tube, the connecting tube, the assembly tube and the installation tube are on the same line.
Preferably, a plurality of conveying rollers are assembled on the conveying frame, two power rollers are assembled on the conveying frame, the power rollers are located on two sides of the conveying rollers, one ends of the two power rollers movably penetrate through the conveying frame, one ends of the power rollers are fixedly provided with chain wheels, chains are wound on the two chain wheels, a mounting frame is fixedly assembled on the conveying frame, a traction motor is fixedly assembled on the mounting frame, an output end of the traction motor movably penetrates through the mounting frame, an output end of the traction motor is fixedly assembled with one of the chain wheels, a transmission belt is wound on the power rollers and the conveying rollers, and the transmission belt is located below the traction tube.
Preferably, the conveying frame is fixedly provided with a limiting shell, the conveying belt is located on the inner side of the limiting shell, the side faces of the limiting shell are symmetrically provided with traction openings, the conveying frame is symmetrically and fixedly provided with a fixing frame, the fixing frame is fixedly provided with an air cylinder, the output end of the air cylinder is fixedly provided with a piston rod, one end of the piston rod is fixedly provided with a push plate, the push plate and the traction openings are movably assembled, the side faces of the limiting shell are symmetrically provided with discharge openings, the discharge openings and the traction openings are symmetrically arranged on two symmetrical side faces of the limiting shell, the discharge openings and the traction openings are respectively communicated with the inner portion of the limiting shell, a stacking box is fixedly assembled on the supporting frame, and the stacking box is located below the discharge openings.
The utility model has the advantages that:
according to the utility model, a pipe fitting is inserted from an installation pipe, then the pipe fitting is inserted from the installation pipe, a movable adjusting bolt is rotated on a top plate, a rotating disc rotates in a rotating cavity, a traction block moves on a fixed rod until a driving roller is attached to the pipe fitting, a driving motor is started, the driving roller drives the pipe fitting to move in rotation, the pipe fitting is respectively conveyed on the traction pipe, a connecting pipe, the installation pipe and the installation pipe, a cutting motor is started, a cutting blade is used for cutting the pipe fitting between the traction pipe and the connecting pipe, the pipe fitting is convenient to segment, the abrasion of the cutting blade can be fed back through a sensor, the traction motor is started, two chain wheels are driven by a chain to rotate in the same direction, the segmented pipe fitting is convenient to be transported by a transmission belt, a cylinder is respectively started, a piston rod drives a push plate to move on a traction port, the pipe fitting on a transmission belt is pushed out, the pipe fitting is pushed out from a discharge port, and falls into a stacking box to be stacked.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic perspective view of a pipe shearing and stacking device according to the present utility model;
FIG. 2 is a schematic view of the structure of FIG. 1 in partial cross section of the present utility model;
FIG. 3 is a schematic perspective view of a pipe shearing and stacking device according to the present utility model;
fig. 4 is a schematic perspective view of a pipe shearing and stacking device according to the present utility model.
In the figure:
10. a support frame; 11. a carriage; 12. a support plate; 13. an operation box;
20. a connecting pipe; 21. a fixed rod; 22. a counter; 23. assembling a pipe;
30. installing a pipe; 31. a top plate; 32. a traction block; 33. an adjusting bolt;
40. a conveying roller; 41. a power roller; 42. a conveyor belt; 43. a sprocket;
50. a chain; 51. a mounting frame; 52. a traction motor; 53. a fixing frame;
60. a cylinder; 61. a limit shell; 62. a traction port; 63. a piston rod;
70. a push plate; 71. a stacking box; 72. a rotating groove; 73. a driving roller;
80. a rotating chamber; 81. a connecting rod; 82. a rotating disc; 83. a driving motor;
90. a discharge port; 91. a traction tube; 92. a cutting motor; 93. a cutting blade; 94. a sensor.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1 to 4, a pipe fitting shearing and stacking apparatus includes a supporting frame 10, a transporting frame 11 fixedly mounted on the supporting frame 10, a supporting plate 12 fixedly mounted at one end of the transporting frame 11, a plurality of fixing rods 21 fixedly mounted on the supporting plate 12, a top plate 31 fixedly mounted at the top of the plurality of fixing rods 21, a counter 22 fixedly mounted on the fixing rods 21, a mounting pipe 23 fixedly mounted on the counter 22, a mounting pipe 30 fixedly mounted on the counter 22, a traction block 32 movably mounted on the fixing rods 21, the traction block 32 located between the mounting pipe 30 and the top plate 31, a rotating groove 72 provided at the bottom of the traction block 32, the rotating groove 72 located between the mounting pipe 23 and the mounting pipe 30, a driving motor 83 fixedly mounted at the side of the traction block 32, a driving roller 73 movably penetrating the traction block 32 into the rotating groove 72, and fixedly mounted at the output end of the driving motor 83, a driving roller 73 rotating in the rotating groove 72, an adjusting bolt 33 screw-mounted on the top plate 31, a rotating cavity 80 provided inside the traction block 32, one end fixedly mounted with a connecting rod 81 movably mounted in the rotating cavity 80, and a connecting rod 81 movably mounted in the rotating cavity 80.
During operation, the pipe fitting is inserted from the mounting pipe 30, then the mounting pipe 23 is inserted, the adjusting bolt 33 is rotated on the top plate 31 to move, the rotating disc 82 rotates in the rotating cavity 80, the traction block 32 moves on the fixed rod 21 until the driving roller 73 is attached to the pipe fitting, and the driving motor 83 is started to drive the driving roller 73 to move the pipe fitting in rotation.
Further, the operation box 13 is fixedly assembled on the support plate 12, the connecting pipe 20 is fixedly assembled on the operation box 13, the traction pipe 91, the connecting pipe 20, the assembling pipe 23 and the mounting pipe 30 are fixedly assembled on the same line, the cutting motor 92 is fixedly assembled on the operation box 13, the output end of the cutting motor 92 movably penetrates into the operation box 13, the cutting blade 93 is fixedly assembled at the output end of the cutting motor 92, the cutting blade 93 is positioned between the traction pipe 91 and the connecting pipe 20, and the sensor 94 is fixedly assembled on the inner wall of the operation box 13.
During operation, the driving motor 83 is started to enable the pipe fitting to be conveyed on the traction pipe 91, the connecting pipe 20, the assembling pipe 23 and the mounting pipe 30 respectively, the cutting motor 92 is started to enable the cutting blade 93 to cut the pipe fitting between the traction pipe 91 and the connecting pipe 20, the pipe fitting is convenient to segment, and the abrasion of the cutting blade 93 can be fed back through the sensor 94.
Further, a plurality of conveying rollers 40 are assembled on the conveying frame 11, two power rollers 41 are assembled on the conveying frame 11, the power rollers 41 are located on two sides of the conveying rollers 40, one ends of the two power rollers 41 movably penetrate through the conveying frame 11, chain wheels 43 are fixedly assembled at one ends of the power rollers 41, chains 50 are wound on the two chain wheels 43, a mounting frame 51 is fixedly assembled on the conveying frame 11, a traction motor 52 is fixedly assembled on the mounting frame 51, an output end of the traction motor 52 movably penetrates through the mounting frame 51, an output end of the traction motor 52 is fixedly assembled with one of the chain wheels 43, a transmission belt 42 is wound on the power rollers 41 and the conveying rollers 40, and the transmission belt 42 is located below the traction tube 91.
In operation, the traction motor 52 is activated to cause the two sprockets 43 to rotate in the same direction under the drive of the chain 50, facilitating transport of the segmented tubular by the conveyor belt 42.
Further, a limiting shell 61 is fixedly assembled on the conveying frame 11, the conveying belt 42 is located on the inner side of the limiting shell 61, traction ports 62 are symmetrically arranged on the side face of the limiting shell 61, a fixing frame 53 is symmetrically and fixedly assembled on the conveying frame 11, air cylinders 60 are fixedly assembled on the fixing frame 53, piston rods 63 are fixedly assembled at the output ends of the air cylinders 60, push plates 70 moving at the traction ports 62 are fixedly assembled at one ends of the piston rods 63, discharge ports 90 are symmetrically arranged on the side face of the limiting shell 61, the discharge ports 90 and the traction ports 62 are symmetrically arranged on the two symmetrical side faces of the limiting shell 61, the discharge ports 90 and the traction ports 62 are respectively communicated with the inner portion of the limiting shell 61, a stacking box 71 is fixedly assembled on the supporting frame 10, and the stacking box 71 is located below the discharge ports 90.
In operation, the segmented pipe fitting moves on the conveyor belt 42, the cylinders 60 are respectively activated, so that the piston rods 63 drive the push plates 70 to move on the traction ports 62, the pipe fitting on the conveyor belt 42 is pushed out, the pipe fitting is pushed out from the discharge ports 90, and the pipe fitting falls into the stacking boxes 71 for stacking.
Working principle: the pipe fitting is inserted from the mounting pipe 30, the mounting pipe 23 is inserted out, the adjusting bolt 33 is moved on the top plate 31 in a rotating way, the rotating disc 82 is rotated in the rotating cavity 80, the traction block 32 is moved on the fixed rod 21 until the driving roller 73 is attached to the pipe fitting, the driving motor 83 is started, the driving roller 73 drives the pipe fitting to move in rotation, the pipe fitting is respectively conveyed on the traction pipe 91, the connecting pipe 20, the mounting pipe 23 and the mounting pipe 30, the cutting motor 92 is started, the cutting blade 93 cuts the pipe fitting between the traction pipe 91 and the connecting pipe 20, the pipe fitting is convenient to segment, the abrasion of the cutting blade 93 can be fed back through the sensor 94, the traction motor 52 is started, the two chain wheels 43 are driven by the chain 50 to rotate in the same direction, the transmission belt 42 is convenient to transport the segmented pipe fitting, the air cylinders 60 are started respectively, the piston rods 63 drive the push plates 70 to move on the traction ports 62, the pipe fitting on the transmission belt 42 is pushed out, the pipe fitting is pushed out from the discharge ports 90, and the pile box 71 is dropped for stacking.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims.

Claims (6)

1. The utility model provides a pipe fitting cuts and buttress material device which characterized in that: including support frame (10) and carriage (11), fixedly mounted with carriage (11) on support frame (10), the one end fixed mounting of carriage (11) has backup pad (12), fixedly mounted with a plurality of dead levers (21) on backup pad (12), the top of a plurality of dead levers (21) is fixed to be equipped with roof (31), fixedly mounted with counter (22) on dead lever (21), fixedly mounted with dress pipe (23) on counter (22), fixedly mounted with install tube (30) on counter (22), movable mounting has traction block (32) on dead lever (21), traction block (32) are located between install tube (30) and roof (31), the bottom of traction block (32) is provided with rotation groove (72), rotation groove (72) are located between dress pipe (23) and install tube (30), the fixed driving motor (83) that is equipped with in the side of traction block (32), the output activity of driving motor (83) runs through traction block (32) to rotation groove (72), and the output of driving motor (83) is fixed to be equipped with drive roller (73), carry out movable assembly with drive roller (73).
2. A pipe shearing and stacking apparatus as defined in claim 1 wherein: the screw thread is equipped with adjusting bolt (33) on roof (31), and the inside of traction block (32) is provided with rotation chamber (80), and one end fixed mounting of adjusting bolt (33) has connecting rod (81), and connecting rod (81) activity runs through in rotation chamber (80) to the one end fixed mounting of connecting rod (81) has rolling disc (82), and rolling disc (82) carries out movable mounting with rotation chamber (80).
3. A pipe shearing and stacking apparatus as defined in claim 2 wherein: the utility model discloses a motor, including backup pad (12) and fixed mounting, fixed mounting has control box (13) on backup pad (12), fixed mounting has connecting pipe (20) on control box (13), fixed mounting has traction tube (91) on control box (13), fixed mounting has cutting motor (92) on control box (13), the inside to control box (13) is run through to the activity of the output of cutting motor (92) to the fixed mounting of output of cutting motor (92) has cutting blade (93), cutting blade (93) are located between traction tube (91) and connecting pipe (20), the fixed sensor (94) that is equipped with of inner wall of control box (13).
4. A pipe shearing and stacking apparatus as defined in claim 3 wherein: the traction pipe (91), the connecting pipe (20), the assembling pipe (23) and the mounting pipe (30) are positioned on the same line.
5. A pipe shearing and stacking apparatus as defined in claim 3 wherein: be equipped with a plurality of conveying rollers (40) on carriage (11), be equipped with two power roller (41) on carriage (11), power roller (41) are located the both sides of conveying roller (40), the one end of two power roller (41) all movably runs through carriage (11), and the one end of power roller (41) all fixedly equipped with sprocket (43), the winding has chain (50) on two sprocket (43), fixedly equipped with mounting bracket (51) on carriage (11), fixedly equipped with traction motor (52) on mounting bracket (51), the output activity of traction motor (52) runs through mounting bracket (51) and the output of traction motor (52) carries out fixed assembly with one of them sprocket (43), the winding has conveyer belt (42) on power roller (41) and conveying roller (40), conveyer belt (42) are located the below of traction tube (91).
6. A pipe shearing and stacking apparatus as defined in claim 5 wherein: the conveying frame is characterized in that a limiting shell (61) is fixedly assembled on the conveying frame (11), the conveying belt (42) is located on the inner side of the limiting shell (61), traction ports (62) are symmetrically arranged on the side faces of the limiting shell (61), a fixing frame (53) is symmetrically and fixedly assembled on the conveying frame (11), an air cylinder (60) is fixedly assembled on the fixing frame (53), a piston rod (63) is fixedly assembled at the output end of the air cylinder (60), a push plate (70) is fixedly assembled at one end of the piston rod (63), the push plate (70) and the traction ports (62) are movably assembled, discharge ports (90) are symmetrically arranged on the side faces of the limiting shell (61), the discharge ports (90) and the traction ports (62) are symmetrically arranged on two side faces of the limiting shell (61), the discharge ports (90) and the traction ports (62) are respectively communicated with the inner side of the limiting shell (61), a stacking box (71) is fixedly assembled on the supporting frame (10), and the stacking box (71) is located below the discharge ports (90).
CN202322037401.1U 2023-08-01 2023-08-01 Pipe shearing and stacking device Active CN220761177U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322037401.1U CN220761177U (en) 2023-08-01 2023-08-01 Pipe shearing and stacking device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322037401.1U CN220761177U (en) 2023-08-01 2023-08-01 Pipe shearing and stacking device

Publications (1)

Publication Number Publication Date
CN220761177U true CN220761177U (en) 2024-04-12

Family

ID=90598914

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322037401.1U Active CN220761177U (en) 2023-08-01 2023-08-01 Pipe shearing and stacking device

Country Status (1)

Country Link
CN (1) CN220761177U (en)

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