CN212121293U - Automatic pipe coiling machine - Google Patents

Automatic pipe coiling machine Download PDF

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Publication number
CN212121293U
CN212121293U CN201922474121.0U CN201922474121U CN212121293U CN 212121293 U CN212121293 U CN 212121293U CN 201922474121 U CN201922474121 U CN 201922474121U CN 212121293 U CN212121293 U CN 212121293U
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CN
China
Prior art keywords
driving
supporting plate
shaft
pinch roller
driven
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Active
Application number
CN201922474121.0U
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Chinese (zh)
Inventor
孙增忠
侯国政
许爱华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
YANGZHOU XINGYI MACHINERY CO Ltd
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YANGZHOU XINGYI MACHINERY CO Ltd
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Priority to CN201922474121.0U priority Critical patent/CN212121293U/en
Application granted granted Critical
Publication of CN212121293U publication Critical patent/CN212121293U/en
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Abstract

The utility model discloses an automatic pipe coiling machine, include: a base; a motor is arranged on the base, a driving shaft of the motor sequentially penetrates through the first supporting plate and the second supporting plate, and a driving pressing wheel is arranged on the driving shaft; a driven shaft is arranged between the first supporting plate and the second supporting plate and above the driving pinch roller, a driven pinch roller is arranged on the driven shaft, and the driving pinch roller and the driven pinch roller are mutually pressed; a feeding platform is arranged at the pressing position of the driving pressing wheel and the driven pressing wheel; and the controller is used for controlling the operation of the electrical part. The device can carry out quick edge curling operation on the iron plate, quick coiling and quick unloading are realized, the operation is simple, the coaxiality of coiled pipe finished products is high, the surface cannot be damaged, and the pipe coiling efficiency is high; and secondly, the pressure of the coiled pipe can be flexibly adjusted according to the requirement, so that the coiled pipe is suitable for circular pipes with different specifications.

Description

Automatic pipe coiling machine
Technical Field
The utility model relates to an automation equipment especially relates to an automatic pipe coiling machine.
Background
The circular tube is rolled according to production requirements, the rolled circular tube in the current workshop is formed by manually rolling a tube part or adopting punch forming, the efficiency is extremely low, the roundness of the rolled circular tube is not accurate, the coaxiality is poor, and the surface is easy to damage; and if the rolling requirements of round pipes with other sizes are met, the pipe workpieces with different sizes need to be replaced, and the operation process is very complicated.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: in order to overcome the deficiency of the background art, the utility model discloses an automatic pipe coiling machine.
The technical scheme is as follows: the utility model discloses an automatic pipe coiling machine, include:
a base;
a motor is arranged on the base, a driving shaft of the motor sequentially penetrates through the first supporting plate and the second supporting plate, and a driving pressing wheel is arranged on the driving shaft;
a driven shaft is arranged between the first supporting plate and the second supporting plate and above the driving pinch roller, a driven pinch roller is arranged on the driven shaft, and the driving pinch roller and the driven pinch roller are mutually pressed;
a feeding platform is arranged at the pressing position of the driving pressing wheel and the driven pressing wheel;
and the controller is used for controlling the operation of the electrical part.
Furthermore, a rubber wheel is sleeved outside the driving pinch roller.
Further, the first supporting plate is higher than the second supporting plate;
the outer side wall of the second supporting plate is provided with a first connecting block and a second connecting block which is vertically connected with the first connecting block through a rotating shaft, and the second connecting block can be turned over towards the first connecting block;
and the two ends of the driven shaft are respectively connected with the first supporting plate and the second connecting block through rotating shafts.
Furthermore, the inner walls of the first supporting plate and the second supporting plate are provided with sliding grooves, sliding blocks are arranged in the sliding grooves, and the driving shaft penetrates through the sliding blocks through a rotating shaft and is arranged in the sliding grooves;
and a height adjusting assembly is arranged below the driving shaft, and the compression degree between the driving pinch roller and the driven pinch roller is adjusted through the height adjusting assembly.
Further, the height adjustment assembly includes:
the adjusting wheel is arranged below the driving pressing wheel, and two ends of the adjusting wheel are respectively fixedly connected with the sliding block;
the driving cam shaft penetrates through the first supporting plate and the second supporting plate through a rotating shaft, one end of the driving cam shaft extends to the outer side of the second supporting plate, and the other end of the driving cam shaft extends to the outer side of the first supporting plate and below the motor; the driving cam shaft is provided with a cam for lifting the motor and the adjusting wheel; the cam is a circular extrusion piece, the driving cam shaft penetrates through the non-circle center of the cam, and the extrusion of the cam on the motor and the adjusting wheel is realized through the rotation of the driving cam shaft;
and the driving device drives the driving camshaft to rotate.
Furthermore, this drive arrangement includes air pump adjusting device, air pump adjusting device's telescopic link extension end passes through connecting rod and initiative camshaft end connection, realizes the rotation of initiative camshaft through the flexible of air pump adjusting device telescopic link.
Has the advantages that: compared with the prior art, the utility model has the advantages that: the device can carry out quick edge curling operation on the iron plate, quick coiling and quick unloading are realized, the operation is simple, the coaxiality of coiled pipe finished products is high, the surface cannot be damaged, and the pipe coiling efficiency is high; and secondly, the pressure of the coiled pipe can be flexibly adjusted according to the requirement, so that the coiled pipe is suitable for circular pipes with different specifications.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
The technical solution of the present invention will be further explained with reference to the accompanying drawings and examples.
The automatic pipe coiling machine as shown in fig. 1 comprises:
a base 1;
a motor 2 is arranged on the base 1, a driving shaft 3 of the motor 2 sequentially penetrates through a first supporting plate 401 and a second supporting plate 402, a driving pinch roller 301 is arranged on the driving shaft 3, and a rubber wheel 302 is sleeved outside the driving pinch roller 301;
a driven shaft 5 is arranged between the first supporting plate 401 and the second supporting plate 402 and above the driving pinch roller 301, a driven pinch roller 501 is arranged on the driven shaft 5, and the driving pinch roller 301 and the driven pinch roller 501 are mutually pressed;
a feeding platform 6 is arranged at the pressing position of the active pinch roller 301 and the passive pinch roller 501; the iron plate with pressure is placed on the feeding platform 6 and enters from the space between the active pinch roller 301 and the passive pinch roller 501, the active pinch roller 301 rotates to press the iron plate to the passive pinch roller 501, and the coiled pipe is formed.
And the controller is used for controlling the operation of the electrical part.
Wherein the first support plate 401 is higher than the second support plate 402;
the outer side wall of the second support plate 402 is provided with a first connecting block 412 and a second connecting block 422 which is vertically connected with the first connecting block 412 through a rotating shaft, and the second connecting block 422 can be turned over towards the first connecting block 412;
two ends of the driven shaft 5 are respectively connected with the first supporting plate 401 and the second connecting block 422 through rotating shafts.
When one reel pipe is finished, the second connecting block 422 is turned over outwards, and the finished reel pipe is taken out from the side surface of the passive pressing wheel 501.
The inner walls of the first supporting plate 401 and the second supporting plate 402 are provided with sliding grooves 7, sliding blocks 701 are arranged in the sliding grooves 7, the sliding blocks 701 can slide in the sliding grooves 7 up and down, the driving shaft 3 penetrates through the sliding blocks 701 through a rotating shaft and is arranged in the sliding grooves 7, and the sliding blocks 701 can drive the driving shaft 3 to slide in the sliding grooves 7 up and down.
A height adjusting assembly is arranged below the driving shaft 3, and the compression degree between the driving pinch roller 301 and the driven pinch roller 501 is adjusted through the height adjusting assembly.
The height adjustment assembly includes:
and the adjusting wheel 8 is arranged below the driving pressing wheel 301, two ends of the adjusting wheel 8 are respectively and fixedly connected with the sliding block 701, and the relative position of the adjusting wheel 8 and the driving shaft 3 is kept unchanged.
The driving camshaft 9 penetrates through the first supporting plate 401 and the second supporting plate 402 through a rotating shaft, one end of the driving camshaft 9 extends to the outer side of the second supporting plate 402, and the other end of the driving camshaft 9 extends to the outer side of the first supporting plate 401 and below the motor 2; the driving cam shaft 9 is provided with a cam 901 for lifting the motor 2 and the adjusting wheel 8; the cam 901 is a circular extrusion piece, the driving cam shaft 9 penetrates through the non-circle center of the cam 901, and the extrusion of the cam 901 to the motor 2 and the adjusting wheel 8 at different heights is realized through the rotation of the driving cam shaft 9; when the device is arranged, the two sides below the adjusting wheel 8 are provided with the cams 901 with the same structure, the connecting piece is arranged below the motor 2, the lowest end of the connecting piece and the lowest end of the adjusting wheel 8 are positioned on the same plane, the cams 901 are also arranged below the connecting piece, and the structure of the connecting piece is also the same as that of the cams 901 below the adjusting wheel 8.
The driving device for driving the driving cam shaft 9 to rotate comprises an air pump adjusting device 10, wherein the extension end of a telescopic rod of the air pump adjusting device 10 is connected with the end part of the driving cam shaft 9 through a connecting rod 11, and the driving cam shaft 9 is driven to rotate through the telescopic rod of the air pump adjusting device 10.

Claims (6)

1. An automatic pipe coiling machine, comprising:
a base (1);
a motor (2) is arranged on the base (1), a driving shaft (3) of the motor (2) sequentially penetrates through a first supporting plate (401) and a second supporting plate (402), and a driving pressing wheel (301) is arranged on the driving shaft (3);
a driven shaft (5) is arranged between the first supporting plate (401) and the second supporting plate (402) and above the driving pinch roller (301), a driven pinch roller (501) is arranged on the driven shaft (5), and the driving pinch roller (301) and the driven pinch roller (501) are mutually pressed;
a feeding platform (6) is arranged at the pressing position of the active pressing wheel (301) and the passive pressing wheel (501);
and the controller is used for controlling the operation of the electrical part.
2. The automatic pipe coiling machine of claim 1, wherein: the driving pressure wheel (301) is sleeved with a rubber wheel (302).
3. The automatic pipe coiling machine of claim 1, wherein: the first support plate (401) is higher than the second support plate (402);
the outer side wall of the second supporting plate (402) is provided with a first connecting block (412) and a second connecting block (422) which is vertically connected with the first connecting block (412) through a rotating shaft, and the second connecting block (422) can be turned over towards the first connecting block (412);
and two ends of the driven shaft (5) are respectively connected with the first supporting plate (401) and the second connecting block (422) through rotating shafts.
4. The automatic pipe coiling machine of claim 1, wherein: the inner walls of the first supporting plate (401) and the second supporting plate (402) are provided with sliding grooves (7), sliding blocks (701) are arranged in the sliding grooves (7), and the driving shaft (3) penetrates through the sliding blocks (701) through a rotating shaft and is arranged in the sliding grooves (7);
and a height adjusting assembly is arranged below the driving shaft (3), and the compression degree between the driving pinch roller (301) and the driven pinch roller (501) is adjusted through the height adjusting assembly.
5. The automatic pipe rolling machine of claim 4, wherein the height adjustment assembly comprises:
the adjusting wheel (8) is arranged below the driving pressing wheel (301), and two ends of the adjusting wheel (8) are respectively fixedly connected with the sliding block (701);
the driving camshaft (9) penetrates through the first supporting plate (401) and the second supporting plate (402) through a rotating shaft, one end of the driving camshaft (9) extends to the outer side of the second supporting plate (402), and the other end of the driving camshaft (9) extends to the outer side of the first supporting plate (401) and below the motor (2); the driving cam shaft (9) is provided with a cam (901) used for lifting the motor (2) and the adjusting wheel (8); the cam (901) is a circular extrusion part, the driving cam shaft (9) penetrates through the non-circle center of the cam (901), and the extrusion of the cam (901) to the motor (2) and the adjusting wheel (8) is realized through the rotation of the driving cam shaft (9);
and a driving device for driving the driving camshaft (9) to rotate.
6. The automatic pipe coiling machine of claim 5, wherein: the driving device comprises an air pump adjusting device (10), the extension end of a telescopic rod of the air pump adjusting device (10) is connected with the end of the driving cam shaft (9) through a connecting rod (11), and the driving cam shaft (9) is rotated through the extension and retraction of the telescopic rod of the air pump adjusting device (10).
CN201922474121.0U 2019-12-31 2019-12-31 Automatic pipe coiling machine Active CN212121293U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922474121.0U CN212121293U (en) 2019-12-31 2019-12-31 Automatic pipe coiling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922474121.0U CN212121293U (en) 2019-12-31 2019-12-31 Automatic pipe coiling machine

Publications (1)

Publication Number Publication Date
CN212121293U true CN212121293U (en) 2020-12-11

Family

ID=73676605

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922474121.0U Active CN212121293U (en) 2019-12-31 2019-12-31 Automatic pipe coiling machine

Country Status (1)

Country Link
CN (1) CN212121293U (en)

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