CN210648839U - Automatic change barrel cut edge, throat machine - Google Patents

Automatic change barrel cut edge, throat machine Download PDF

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Publication number
CN210648839U
CN210648839U CN201921721786.0U CN201921721786U CN210648839U CN 210648839 U CN210648839 U CN 210648839U CN 201921721786 U CN201921721786 U CN 201921721786U CN 210648839 U CN210648839 U CN 210648839U
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China
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cylinder
phase asynchronous
mold
asynchronous motor
die
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CN201921721786.0U
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Chinese (zh)
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何汉超
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Yuyao Chaocheng Machinery Manufacturing Co ltd
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Yuyao Chaocheng Machinery Manufacturing Co ltd
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Abstract

The utility model discloses an automatic barrel edge-cutting and necking machine, which comprises a frame, an oil tank, a first three-phase asynchronous motor, a gear pump, a control box, a material pusher, a first cylinder, a second cylinder, a material-pushing mold, a first mold, a second mold, a tool rest, an operation screen, a third cylinder and a second three-phase asynchronous motor, wherein the control box is arranged in the right side of the frame, the oil tank is arranged beside the left side of the control box, the first three-phase asynchronous motor is arranged on the oil tank and connected with the gear pump, the material pusher is arranged above the frame, a base is arranged on the right side of the material pusher, the first cylinder is arranged on the base, the first mold is arranged on the output end of the first cylinder, the second mold is arranged on the left side of the material pusher, the material-pushing mold is arranged outside the second mold, the utility model has simple structure, the mode of horizontal edge-cutting is arranged, the excess material cut by matching the cylinder, the automatic unloading of product realizes unmanned, and automation mechanized operation to improve work efficiency, improve its security.

Description

Automatic change barrel cut edge, throat machine
Technical Field
The utility model relates to a tensile fire extinguisher production facility technical field, concretely relates to change barrel cut edge, throat machine.
Background
The fire extinguisher is a portable fire extinguishing tool. Chemical substances are placed in the fire extinguisher for saving and extinguishing fire. The fire extinguisher is one of common fire-proof facilities, is stored in public places or places where fire disasters may happen, and different fire extinguishers of different types are filled with different components and are specially designed for different fires. Care must be taken in use to avoid adverse effects and risks.
The original edge cutting machine is a traditional vertical edge cutting machine, the edge cutting machine is operated purely manually, a worker sleeves a cylinder into a die, the die is started by pressing down, a cutter head starts to rotate, a cutter head cuts off excess materials and then automatically stops, and the worker takes out a product. The disadvantages are as follows: the traditional manual operation mode has low production efficiency, is not suitable for the existing automation environment, and can not realize automation.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects of the prior art, and provides an automatic barrel edge cutting and necking machine which comprises a frame, an oil tank, a first three-phase asynchronous motor, a gear pump, a control box, a material pushing device, a first air cylinder, a second air cylinder, a material pushing mold, a first mold, a second mold, a tool rest, an operation screen, a third air cylinder and a second three-phase asynchronous motor, wherein the control box is arranged in the right side of the frame, the oil tank is arranged beside the left side of the control box, the first three-phase asynchronous motor is arranged on the oil tank and connected with the gear pump, the material pushing device is arranged above the frame, a base is arranged on the right side of the material pushing device, the first air cylinder is arranged on the base, the first mold is arranged on the output end of the first air cylinder, the second mold is arranged on the left side of the material pushing device, the material pushing mold is arranged outside the second mold, the mold is connected with, set up the knife rest above the second mould, the knife rest sets up on first linear guide, and on first linear guide was fixed in the frame, on the other operation screen that sets up in knife rest one side was fixed in the frame, set up the flow valve other on the operation screen right side, on the other third cylinder that sets up in operation screen one side was fixed in the frame, the third cylinder passed through the connecting rod and was connected with the transfer line, third cylinder below sets up second three-phase asynchronous machine, and second three-phase asynchronous machine output passes through the belt and is connected with the drive wheel, and the drive wheel sets up and serves in second mould.
Preferably, the second three-phase asynchronous motor is fixedly arranged beside the left side of the rack through a motor supporting plate; the top end of the connecting rod is connected with the second linear guide rail, the bottom end of the connecting rod is connected with one end of the transmission rod, and the other end of the transmission rod is connected with the push plate arranged outside the left end of the second die.
Preferably, the top of the tool rest is provided with an oil pipe connected with the first three-phase asynchronous motor and the gear pump, and the gear pump is connected with the oil tank.
Preferably, the material pusher is arranged on a third linear guide rail, the third linear guide rail is fixedly arranged on the rack, and the bottom of the material pusher is connected with a fourth cylinder; and a blanking guide plate is arranged on the rack at the opposite surface of the pusher and is obliquely arranged.
Preferably, the first three-phase asynchronous motor, the gear pump, the first cylinder, the second cylinder, the operation panel, the third cylinder, the second three-phase asynchronous motor, the flow valve and the fourth cylinder are all electrically connected with the control box.
The utility model has the advantages that: simple structure, convenient operation, the mode setting of horizontal formula cut edge, cooperation cylinder can be released automatically with the clout that pushes away the material mould and cut off, and the automatic unloading of product realizes unmanned, automated operation to improve work efficiency, improve its security.
Drawings
The invention will now be described, by way of example, with reference to the accompanying drawings, in which:
fig. 1 is a schematic front view of the present invention;
fig. 2 is a schematic perspective view of the present invention;
fig. 3 is a schematic top view of the present invention.
In the figure: 1. a frame; 2. an oil tank; 3. a first three-phase asynchronous motor; 4. a gear pump; 5. an oil tank; 6. a pusher; 7. a first cylinder; 8. a second cylinder; 9. a material pushing mold; 10. a second mold; 11. a first mold; 12. a tool holder; 13. an operation screen; 14. a third cylinder; 15. a second three-phase asynchronous motor; 16. a base; 17. a blade; 18. a first linear guide rail; 19. a flow valve; 20. a second linear guide; 21. a connecting rod; 22. a transmission rod; 23. a driving wheel; 24. a motor support plate; 25. a blanking guide plate; 26. a belt; 27. a third linear guide rail; 28. and a fourth cylinder.
Detailed Description
Any feature disclosed in this specification may be replaced by alternative features serving equivalent or similar purposes, unless expressly stated otherwise. That is, unless expressly stated otherwise, each feature is only an example of a generic series of equivalent or similar features.
An automatic cylinder body edge cutting and necking machine shown in figures 1-3 comprises a frame 1, an oil tank 2, a first three-phase asynchronous motor 3, a gear pump 4, a control box 5, a material pushing device 6, a first air cylinder 7, a second air cylinder 8, a material pushing mold 9, a first mold 11, a second mold 10, a tool rest 12, an operation screen 13, a third air cylinder 14 and a second three-phase asynchronous motor 15, wherein the control box 5 is arranged in the right side of the frame 1, the oil tank 2 is arranged beside the left side of the control box 5, the first three-phase asynchronous motor 3 is arranged on the oil tank 2 and connected with the gear pump 4, the material pushing device 6 is arranged above the frame 1, a base 16 is arranged on the right side of the material pushing device 6, the first air cylinder 7 is arranged on the base 16, the first mold 11 is arranged on the output end of the first air cylinder 7, the second mold 10 is arranged on the left side of the material pushing device 6, the material pushing device 9 is, the material pushing die 9 is connected with a second cylinder 8, the second cylinder 8 is fixed on the frame 1, a knife rest 12 is arranged above a second die 10, the knife rest 12 is arranged on a first linear guide rail 18, the first linear guide rail 18 is fixed on the frame 1, an operation screen 13 is arranged beside one side of the knife rest 12 and fixed on the frame 1, a flow valve 19 is arranged beside the right side of the operation screen 13, a third cylinder 14 is arranged beside one side of the operation screen 13 and fixed on the frame 1, the third cylinder 14 is connected with a transmission rod 22 through a connecting rod 21, a second three-phase asynchronous motor 15 is arranged below the third cylinder 14, the output end of the second three-phase asynchronous motor 15 is connected with a transmission wheel 23 through a belt 26, and the transmission wheel 23 is arranged at one end of the second die 10. The second three-phase asynchronous motor 15 is fixedly arranged beside the left side of the rack 1 through a motor supporting plate 24; the top end of the connecting rod 21 is connected with the second linear guide rail 20, the bottom end of the connecting rod 21 is connected with one end of the transmission rod 22, and the other end of the transmission rod 22 is connected with the push plate arranged outside the left end of the second die 10. The top of the tool rest 12 is provided with an oil pipe connected with the first three-phase asynchronous motor 3 and the gear pump 4, and the gear pump 4 is connected with the oil tank 2. The material pushing device 6 is arranged on a third linear guide rail 27, the third linear guide rail 27 is fixedly arranged on the rack 1, and the bottom of the material pushing device 6 is connected with a fourth cylinder 28; a blanking guide plate 25 is arranged on the opposite surface of the pusher 6 on the frame 1, and the blanking guide plate 25 is obliquely arranged. The first three-phase asynchronous motor 3, the gear pump 4, the first cylinder 7, the second cylinder 8, the operation screen 13, the third cylinder 14, the second three-phase asynchronous motor 15, the flow valve 19 and the fourth cylinder 28 are all electrically connected with the control box 5. The flow valve 19 is used for adjusting the oil pressure flow of the gear pump 4, so that the moving speed of the tool rest 12 is adjusted. The second mold 10 is on the same center line as the first mold 11.
The working principle of the specific embodiment is as follows: firstly, an operator or a mechanical handle places a product on the material pusher 6, after the product is sensed by the inductive switch, the fourth cylinder 28 works and cooperates with the third linear guide rail 27 to automatically feed the product to a processing part, the first cylinder 7 tightly pushes two ends of the cylinder body against the first die 11 and the second die 10 respectively, and the material pusher 6 returns to the original position; the second three-phase asynchronous motor 15 is driven to cooperate with the belt 26 and the transmission wheel 23 to drive the spindle to rotate, so that the product starts to rotate; the cutter rest 12 moves downwards on the first linear guide rail 18 in a linear motion by matching the gear pump 4 and the oil tank 2 through the first three-phase asynchronous motor 3, the cutter blade 17 starts to rotate and cut downwards, the cutter blade 17 exits after cutting is finished, the cutter rest 12 returns to the initial position, the product stops rotating, the first air cylinder 7 is loosened, the second air cylinder 8 is matched with the material pushing mold 9 to work, so that the product automatically rolls down to the blanking guide plate 25, the push plate outside the left end of the second mold 10 is matched with the third air cylinder 14, the connecting rod 21 and the transmission rod 22 to push out excess materials, and the excess materials automatically roll down.
The present invention is not limited to the foregoing embodiments. The invention extends to any novel feature or any novel combination of features disclosed in this specification, and to any novel method or process steps or any novel combination of features disclosed.

Claims (5)

1. The utility model provides an automatic change barrel cut edge, throat machine, includes frame (1), oil tank (2), first three-phase asynchronous machine (3), gear pump (4), control box (5), stoker (6), first cylinder (7), second cylinder (8), pushes away material mould (9), first mould (11), second mould (10), knife rest (12), operation screen (13), third cylinder (14) and second three-phase asynchronous machine (15), its characterized in that: the automatic feeding device is characterized in that a control box (5) is arranged in the right side of a rack (1), an oil tank (2) is arranged beside the left side of the control box (5), a first three-phase asynchronous motor (3) is arranged on the oil tank (2) and connected with a gear pump (4), a material pusher (6) is arranged above the rack (1), a base (16) is arranged on the right side of the material pusher (6), a first air cylinder (7) is arranged on the base (16), a first die (11) is arranged on the output end of the first air cylinder (7), a second die (10) is arranged on the left side of the material pusher (6), a material pushing die (9) is arranged outside the second die (10), the material pushing die (9) is connected with the second air cylinder (8), the second air cylinder (8) is fixed on the rack (1), a knife rest (12) is arranged above the second die (10), the knife rest (12) is arranged on a first linear guide rail (18), and the first linear guide rail (18) is, on knife rest (12) one side is other to set up operation screen (13) and is fixed in frame (1), set up flow valve (19) on operation screen (13) right side is other, operation screen (13) one side is other to set up third cylinder (14) and is fixed in frame (1), and third cylinder (14) are connected with transfer line (22) through connecting rod (21), third cylinder (14) below sets up second three-phase asynchronous machine (15), and second three-phase asynchronous machine (15) output passes through belt (26) and is connected with drive wheel (23), and drive wheel (23) set up in second mould (10) one end.
2. An automated barrel edging and necking machine according to claim 1, wherein: the second three-phase asynchronous motor (15) is fixedly arranged beside the left side of the rack (1) through a motor supporting plate (24); the top end of the connecting rod (21) is connected with the second linear guide rail (20), the bottom end of the connecting rod (21) is connected with one end of the transmission rod (22), and the other end of the transmission rod (22) is connected with the push plate arranged outside the left end of the second die (10).
3. An automated barrel edging and necking machine according to claim 1, wherein: the top of the tool rest (12) is provided with an oil pipe connected with the first three-phase asynchronous motor (3) and the gear pump (4), and the gear pump (4) is connected with the oil tank (2).
4. An automated barrel edging and necking machine according to claim 1, wherein: the material pushing device (6) is arranged on a third linear guide rail (27), the third linear guide rail (27) is fixedly arranged on the rack (1), and the bottom of the material pushing device (6) is connected with a fourth cylinder (28); a blanking guide plate (25) is arranged on the opposite surface of the pusher (6) on the frame (1), and the blanking guide plate (25) is obliquely arranged.
5. An automated barrel edging, necking machine according to any one of claims 1 to 4, wherein: the hydraulic control system is characterized in that the first three-phase asynchronous motor (3), the gear pump (4), the first cylinder (7), the second cylinder (8), the operation screen (13), the third cylinder (14), the second three-phase asynchronous motor (15), the flow valve (19) and the fourth cylinder (28) are all electrically connected with the control box (5).
CN201921721786.0U 2019-10-15 2019-10-15 Automatic change barrel cut edge, throat machine Active CN210648839U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921721786.0U CN210648839U (en) 2019-10-15 2019-10-15 Automatic change barrel cut edge, throat machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921721786.0U CN210648839U (en) 2019-10-15 2019-10-15 Automatic change barrel cut edge, throat machine

Publications (1)

Publication Number Publication Date
CN210648839U true CN210648839U (en) 2020-06-02

Family

ID=70814593

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921721786.0U Active CN210648839U (en) 2019-10-15 2019-10-15 Automatic change barrel cut edge, throat machine

Country Status (1)

Country Link
CN (1) CN210648839U (en)

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