CN210475707U - Online pipe cutting, material guiding and feeding system - Google Patents

Online pipe cutting, material guiding and feeding system Download PDF

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Publication number
CN210475707U
CN210475707U CN201921026125.6U CN201921026125U CN210475707U CN 210475707 U CN210475707 U CN 210475707U CN 201921026125 U CN201921026125 U CN 201921026125U CN 210475707 U CN210475707 U CN 210475707U
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China
Prior art keywords
pipe
block
guide
shaped
fixed seat
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CN201921026125.6U
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Chinese (zh)
Inventor
张小容
田明
白刚
冷琪
张华平
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Jingda Jingzhou Automotive Co ltd
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Jingda Jingzhou Automotive Co ltd
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Priority to CN201921026125.6U priority Critical patent/CN210475707U/en
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Abstract

The utility model relates to a pipe online cutting and material guiding and feeding system, which comprises a saw car, a pipe mechanism and a V-shaped feeding block which are arranged in sequence along the running direction of the pipe, wherein the saw car is provided with a conical guide block with a pipe advancing channel, and the pipe is provided with a conical opening matched with the conical guide block; the guide pipe mechanism consists of a fixed seat, a guide pipe which penetrates through the fixed seat and is connected with the fixed seat in a sliding fit manner, and a compression spring sleeved on the guide pipe, wherein a spring stop block is arranged on the guide pipe, and the compression spring is positioned between the fixed seat and the spring stop block; the V-shaped feeding block is formed by splicing a first block body with an inclined surface and a second block body, wherein the inclined surface of the first block body and the inclined surface of the second block body form a V-shaped feeding groove, a first driving mechanism for driving the first block body and the second block body to be separated or spliced is connected onto the first block body, and the pipe advancing channel, the guide pipe and the V-shaped feeding groove are located on a pipe running track. The utility model discloses can solve cutting off, autoloading, the operation of blanking integral type of tubular product.

Description

Online pipe cutting, material guiding and feeding system
Technical Field
The utility model relates to a tubular product cuts and guide feeding system on line.
Background
The length of the brake pipe for the automobile is required to be cut off according to the position in the manufacturing process, and the continuous automatic cutting, feeding and blanking operation can be realized in the production of the pipe along with the continuous lifting of the technology. But at present, the cutting of the pipe is stopped at automatic cutting, the feeding and the taking are operated in an artificial intermittent mode, the production efficiency is low, and the labor intensity of workers is high.
Disclosure of Invention
An object of the utility model is to provide a tubular product cuts and guide feeding system on line, this system are used for tubular product to cut and the guide pay-off on line, can solve cutting off, autoloading, the operation of blanking integral type of tubular product.
The utility model provides a technical scheme as follows: a pipe online cutting and material guiding and feeding system comprises a saw car, a guide pipe mechanism and a V-shaped feeding block which are sequentially arranged along the running direction of a pipe, wherein the guide pipe mechanism consists of a fixed seat, a guide pipe which penetrates through the fixed seat and is connected with the fixed seat in a sliding fit manner and a compression spring sleeved on the guide pipe; the saw machine is provided with a conical guide block, the guide pipe is provided with a conical opening matched with the conical guide block, and a pipe advancing channel is arranged in the conical guide block; the V-shaped feeding block is formed by splicing two first blocks with inclined planes and a second block, wherein the inclined planes of the first blocks and the inclined planes of the second blocks are combined to form a V-shaped feeding groove, the first blocks are connected with a first driving mechanism for driving the first blocks and the second blocks to be separated or spliced, and the pipe advancing channel, the guide pipe and the V-shaped feeding groove are positioned on a pipe running track.
The first driving mechanism consists of a cylinder, a fixed shaft and a connecting rod movably connected to the fixed shaft; the connecting rod is L-shaped; one end of the connecting rod is provided with a strip-shaped groove hole and a pin shaft movably connected in the strip-shaped groove hole, and the connecting rod is connected with a piston rod of the air cylinder through the pin shaft; the other end of the connecting rod is fixedly connected with the first block.
The lower extreme of second block is the arcwall face, and the second block passes through the arcwall face to be connected with first block contact.
A conveying belt feeding mechanism is arranged below the V-shaped feeding block.
The lower part of the saw car is provided with a linear guide rail parallel to the running direction of the pipe for the saw car to run and a second driving mechanism for driving the saw car to reciprocate along the linear guide rail.
The utility model discloses can solve cutting off, autoloading, the operation of blanking integral type of tubular product. The production efficiency is improved, and the labor intensity of workers is reduced.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is the connecting structure schematic diagram of the V-shaped feeding block and the first driving mechanism in the closed state of the V-shaped feeding block.
Fig. 3 is a schematic view of the connection structure of the V-shaped feeding block and the first driving mechanism when the V-shaped feeding block is in the open state.
Detailed Description
As shown in fig. 1 to 3, the utility model comprises a saw car 1, a conduit mechanism 3 and a V-shaped feeding block 7 which are arranged in sequence along the running direction of a pipe 6, wherein the saw car 1 is provided with a conical guide block 2, and the conduit mechanism 3 is provided with a conical opening 10 matched with the conical guide block 2; a pipe advancing channel 11 is arranged in the conical guide block 2; the guide pipe mechanism 3 consists of a fixed seat 5, a guide pipe 6 which penetrates through the fixed seat 5 and is connected with the fixed seat 5 in a sliding fit manner, and a compression spring 4 sleeved on the guide pipe 6, wherein a spring stop block 9 is arranged on the guide pipe 6, and the compression spring 4 is positioned between the fixed seat 5 and the spring stop block 9; the V-shaped feeding block 7 is formed by splicing two first blocks 7.1 with inclined planes and two second blocks 7.2, wherein the inclined planes of the first blocks 7.1 and the inclined planes of the second blocks 7.2 are combined to form a V-shaped feeding groove, the first blocks 7.1 are connected with first driving mechanisms 8, 17 and 18 for driving the first blocks 7.1 and the second blocks 7.2 to be separated or spliced, and the pipe advancing channel 11, the guide pipe 6 and the V-shaped feeding groove are positioned on a pipe running track.
The first driving mechanism is composed of an air cylinder 8, a fixed shaft 17 and a connecting rod 18 movably connected to the fixed shaft 17 through a bearing, the connecting rod 18 is L-shaped, one end of the connecting rod 18 is provided with a strip-shaped groove hole 19 and a pin shaft 20 movably connected in the strip-shaped groove hole 19 and connected with a piston rod of the air cylinder 8 through the pin shaft 20, and the other end of the connecting rod 18 is fixedly connected with the first block 7.1. As shown in fig. 2 and 3, when the piston rod of the cylinder 8 moves horizontally, since the connecting rod 18 is limited by the fixed shaft 17 to rotate only around the fixed shaft, the pin 20 connected with the piston rod moves in the slotted hole 19, and simultaneously, the connecting rod 18 is pushed to rotate around the fixed shaft 17, so that the V-shaped feeding block is closed (the state shown in fig. 2) or opened (the state shown in fig. 3).
The lower extreme of second block 7.2 is the arcwall face, and second block 7.2 is connected with first block contact through arcwall face (convex surface). The lower extreme of second block 7.2 is the arcwall face, can avoid first block 7.1 to rotate when leaving second block 7.2, and second block 7.2 is to the fish tail of whereabouts tubular product.
A conveying belt feeding mechanism 15 is arranged below the V-shaped feeding block 7.
A linear guide rail parallel to the running direction of the pipe and used for the running of the co-sawing machine and second driving mechanisms 12, 13 and 14 for driving the sawing machine to reciprocate along the linear guide rail are arranged below the sawing machine 1. The second driving mechanism is a screw nut pair or a ball screw mechanism 12 driven by a servo motor 13 through a synchronous belt 14.
The sawing machine and the transmission structure thereof of the utility model can adopt the prior art such as the device disclosed in CN207642406U, the sawing machine is provided with a flying saw seat and a first servo motor for driving the flying saw seat to reciprocate along the direction vertical to the linear guide rail, the first servo motor is fixed on the sawing machine, and the flying saw seat is in transmission connection with the first servo motor through a first transmission mechanism; the flying saw seat is provided with a flying saw and a second servo motor, the second servo motor is fixed on the flying saw seat, the flying saw is movably connected with the flying saw seat through a bearing, and the second servo motor is in transmission connection with the flying saw through a second transmission mechanism; the saw is equipped with on the saw and embraces mould mechanism (fixture), it includes mould, lower mould and drives actuating cylinder to embrace mould mechanism, and the lower mould is fixed respectively on the saw with driving actuating cylinder, goes up the mould and drives actuating cylinder's piston fixed connection.
The above structure is adopted in the utility model, install at tubular product production line rear portion during the use to make saw car, pipe mechanism and V-arrangement pay-off piece distribute in tubular product walking line according to front and back order, the tubular product that the system is good passes the V-arrangement chute that toper guide block made the tubular product of toper guide block passageway, pipe and V-arrangement pay-off piece of marcing in proper order. The utility model discloses the during operation, the saw car is along with tubular product syntropy, when being close to pipe mechanism, the cone of the toper guide block of saw car inserts the pipe the bell, spring force and compression spring are overcome along with the saw car and are advanced to V-arrangement feed block direction to the pipe under the saw car impetus, when the saw car speed of advancing is unanimous with tubular product speed of advancing, embrace the mould mechanism and hold tubular product tightly, fly to saw the action and cut off tubular product and return, it unclamps tubular product to embrace the mould mechanism, the saw car is retreated, the cone of toper guide block separates with the bell of pipe, the normal position is replied to the pipe under the effect of spring. After the pipe is cut off, the latter tube pushes the former tube to move forward in the conduit. After the cut-off fixed length pipe reaches the V-shaped feeding block, the air cylinder (a first driving mechanism) pushes the connecting rod to rotate along the fixed shaft through the piston rod, the connecting rod drives the left V-shaped block (a first block) to separate the left V-shaped block/the right V-shaped block (the first block/a second block), and the fixed length pipe falls on the conveying belt and is conveyed to the next station.

Claims (5)

1. The utility model provides a tubular product cuts and guide feeding system on line which characterized in that: the pipe cutting machine comprises a saw car, a pipe mechanism and a V-shaped feeding block which are sequentially arranged along the running direction of a pipe, wherein a conical guide block is arranged on the saw car, and a conical opening matched with the conical guide block is arranged on the pipe; a pipe advancing channel is arranged in the conical guide block; the guide pipe mechanism consists of a fixed seat, a guide pipe which penetrates through the fixed seat and is connected with the fixed seat in a sliding fit manner, and a compression spring sleeved on the guide pipe, wherein a spring stop block is arranged on the guide pipe, and the compression spring is positioned between the fixed seat and the spring stop block; the V-shaped feeding block is formed by splicing two first blocks with inclined planes and a second block, wherein the inclined planes of the first blocks and the inclined planes of the second blocks are combined to form a V-shaped feeding groove, the first blocks are connected with a first driving mechanism for driving the first blocks and the second blocks to be separated or spliced, and the pipe advancing channel, the guide pipe and the V-shaped feeding groove are positioned on a pipe running track.
2. The pipe on-line cutting, material guiding and feeding system as claimed in claim 1, wherein: the first driving mechanism consists of a cylinder, a fixed shaft and a connecting rod movably connected to the fixed shaft; the connecting rod is L-shaped; one end of the connecting rod is provided with a strip-shaped groove hole and a pin shaft movably connected in the strip-shaped groove hole, and the connecting rod is connected with a piston rod of the air cylinder through the pin shaft; the other end of the connecting rod is fixedly connected with the first block.
3. The pipe on-line cutting, material guiding and feeding system as claimed in claim 1 or 2, wherein: the lower extreme of second block is the arcwall face, and the second block passes through the arcwall face to be connected with first block contact.
4. The pipe on-line cutting, material guiding and feeding system as claimed in claim 1 or 2, wherein: a conveying belt feeding mechanism is arranged below the V-shaped feeding block.
5. The pipe on-line cutting, material guiding and feeding system as claimed in claim 1 or 2, wherein: a linear guide rail parallel to the running direction of the pipe and running together with the sawing machine and a second driving mechanism for driving the sawing machine to reciprocate along the linear guide rail are arranged below the sawing machine.
CN201921026125.6U 2019-07-03 2019-07-03 Online pipe cutting, material guiding and feeding system Active CN210475707U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921026125.6U CN210475707U (en) 2019-07-03 2019-07-03 Online pipe cutting, material guiding and feeding system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921026125.6U CN210475707U (en) 2019-07-03 2019-07-03 Online pipe cutting, material guiding and feeding system

Publications (1)

Publication Number Publication Date
CN210475707U true CN210475707U (en) 2020-05-08

Family

ID=70531320

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921026125.6U Active CN210475707U (en) 2019-07-03 2019-07-03 Online pipe cutting, material guiding and feeding system

Country Status (1)

Country Link
CN (1) CN210475707U (en)

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Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: Online pipe cutting and guiding feeding system

Effective date of registration: 20230802

Granted publication date: 20200508

Pledgee: China Everbright Bank Co.,Ltd. Jingzhou Branch

Pledgor: JINGDA (JINGZHOU) AUTOMOTIVE CO.,LTD.

Registration number: Y2023980050596