CN206366756U - Full-automatic pipe feeding, device for discharging - Google Patents
Full-automatic pipe feeding, device for discharging Download PDFInfo
- Publication number
- CN206366756U CN206366756U CN201621451731.9U CN201621451731U CN206366756U CN 206366756 U CN206366756 U CN 206366756U CN 201621451731 U CN201621451731 U CN 201621451731U CN 206366756 U CN206366756 U CN 206366756U
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- tubing
- discharging
- slope
- upper flitch
- drive
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Abstract
The utility model discloses a kind of full-automatic pipe feeding, device for discharging, including bin and tubing gear frame, several tubing are equipped with bin, the end of bin, which is provided with tubing limiting plate, tubing gear frame, to be sequentially provided with:Feed mechanism includes upper flitch, and upper flitch connects transmission device, and drives upper flitch to be rotated in the horizontal direction to vertical direction;Transport mechanism includes tubing drive, tubing drive is driven by driving belt component and rotated, and send the qualified tubing transmitted from upper flitch to station, shedding mechanism includes stripper, stripper is articulated and connected the piston rod of stripper cylinder by fixed strip, piston rod is flexible to drive stripper to rotate, by the unidirectional discharging of underproof tubing.The utility model, sets gradually feed mechanism, transport mechanism and shedding mechanism on tubing gear frame, and the functions such as automatic charging, transmission and unidirectional discharging can be realized as needed, automatically tubular object extruding is realized, vdiverse in function, automaticity is high, and control is accurate, efficiency high.
Description
Technical field
The utility model is related to tubular object extruding technical field, and in particular to full-automatic pipe feeding, device for discharging.
Background technology
The current existing feeding device of tubular object extruding can not all meet the processing request of automation, typically all using artificial or
Tubing is put into the mode of station by feeding or discharging one by one for driving etc., it is so not only time-consuming take a lot of work, inefficiency, labor intensity
Greatly and artificial fluctuation of service is also dangerous, process velocity when serious restriction tubular object extruding is as welded or cutting, while
Do not possess feeding and discharging dual-use function.
Therefore, there is inefficiency, there is relatively large deviation, function in existing tubing cutting processing.
Utility model content
Technical problem to be solved in the utility model be existing tubing cutting processing exist inefficiency, exist compared with
Large deviation, the problems such as function is single.
In order to solve the above-mentioned technical problem, the technical scheme that the utility model is used is to provide on a kind of full-automatic pipe
Several tubing are equipped with material, device for discharging, including bin and tubing gear frame, the bin, the end of the bin is leaned on
Be provided with the nearly tubing gear frame on tubing limiting plate, the tubing gear frame be sequentially provided with some groups it is spaced:
Feed mechanism, including upper flitch, the upper flitch connection transmission device are simultaneously driven on described by the transmission device
Flitch is rotated to vertical direction in the horizontal direction,
Transport mechanism, including tubing drive, the tubing drive are driven by driving belt component and rotated, and will be from institute
State the qualified tubing that flitch transmits and send station to,
Shedding mechanism, including stripper, the stripper are articulated and connected the piston rod of stripper cylinder, institute by fixed strip
State the flexible drive stripper of piston rod to rotate, by the unidirectional discharging of underproof tubing.
In such scheme, the transmission device includes upper flitch power transmission shaft and driving crank, and the upper flitch, which is rotated, to be set
Put on described on flitch power transmission shaft, one end of the driving crank is connected with the upper flitch power transmission shaft, the other end passes through even
Connect post and connect total drive link, total drive link is driven by upper flitch cylinder.
In such scheme, the driving belt component includes drive pulley and several the driven skins being mutually matched therewith
Band, the upper belt pulley of each follower belt is coaxially disposed with the corresponding tubing drive.
In such scheme, the belt pulley of one end of the drive pulley is driven by motor, the belt pulley of the other end with it is right
The bottom pulley of the follower belt is answered to overlap, the bottom pulley spacer sleeve of remaining follower belt is mounted in the drive pulley
Inner side simultaneously drives rotation by the drive pulley.
In such scheme, the output end on the tubing gear frame positioned at each transport mechanism is provided with one group of use
The channel space being adapted with the tubing is formed between the locating wheel for limiting tubing direction, locating wheel described in two.
In such scheme, the upper flitch includes plate body and the installation portion positioned at the plate body bottom, the installation portion
It is connected with the upper flitch drive axis, the upper surface infolding of the plate body forms two-sided ramp structure.
In such scheme, the two-sided ramp structure of the plate body is included close to the first slope of the tubing and right therewith
The second slope connect, the length of the first slope is more than the length on second slope.
In such scheme, the upper surface infolding of the stripper forms two-sided ramp structure, the two-sided ramp structure bag
Include close to the 3rd slope of the tubing and the 4th slope being mated with, the length on the 3rd slope is oblique less than the described 4th
The length on slope.
In such scheme, the outer end on the 3rd slope and the 4th slope is equipped with level and accepts table top.
In such scheme, when the upper flitch is horizontally oriented, its one end is stretched out the tubing gear frame and is located at
The bottom of the hithermost tubing.
The utility model, sets gradually feed mechanism, transport mechanism and shedding mechanism on tubing gear frame, can basis
Need to realize the functions such as automatic charging, transmission and unidirectional discharging, tubular object extruding, vdiverse in function, automaticity are realized automatically
Height, control is accurate, efficiency high.
Brief description of the drawings
Fig. 1 is top view of the present utility model;
Fig. 2 is front view of the present utility model;
Fig. 3 is Fig. 1 along the sectional view before the feeding of A-A directions;
Fig. 4 is Fig. 1 along the sectional view after the feeding of A-A directions;
Fig. 5 is Fig. 2 along the sectional view before the discharging of B-B directions;
Fig. 6 is sectional views of the Fig. 2 along B-B directions just in discharging.
Embodiment
The utility model is described in detail with reference to Figure of description.
As shown in Figure 1 and Figure 2, the utility model provides a kind of full-automatic pipe feeding, device for discharging, including the He of bin 1
Tubing gear frame 2, bin 1 includes the bin basis of bottom and laying is fixed on the bin plate 12 of the basic upper surface of bin, bin
Several tubing 8 are equipped with plate 12, tubing 8, which glides, for convenience carries out feeding, and bin plate 12 is driven from outer end towards tubing
Frame 2 tilts down setting.The end of bin 1 is provided with tubing limiting plate 11 at tubing gear frame 2, and tubing limiting plate 22 is higher by
The segment distance of 12 upper surface of bin plate one so that tubing 8 can not drop automatically when reaching tubing limiting plate 22.
With reference to Fig. 3, some groups of spaced feed mechanisms, transport mechanism and discharging are sequentially provided with tubing gear frame 2
Mechanism, one unit of every three groups of said mechanisms formation, feed mechanism includes upper flitch 3, and upper flitch 3 connects transmission device and by passing
Dynamic device drives feeding plate 3 to be rotated in the horizontal direction to vertical direction.When upper flitch 3 is horizontally oriented, tubing biography is laid in
In moving frame 2, the bottom of tubing gear frame 2 and a tubing 8 being located most closely to is stretched out in one end of upper flitch 3, when upper flitch 3 from
During horizontal direction is rotated to vertical direction, that hithermost root tubing 8 can be driven to enter feeding is carried out in feed mechanism
Work.
Specifically, transmission device includes upper flitch power transmission shaft 4 and driving crank 41, upper flitch 3 is rotatably arranged on flitch
On power transmission shaft 4, and it can be rotated with upper flitch power transmission shaft 4, one end of driving crank 41 is connected with one end of upper flitch power transmission shaft 4,
The other end of driving crank 41 connects total drive link 42 by connecting pole, and total drive link 42 is driven by upper flitch cylinder 43.Feeding
The other end of plate power transmission shaft 4 is arranged on tubing gear frame 2 by upper flitch drive bearing 44.Upper flitch cylinder 43 starts work
When, promote total drive link 42 to move back and forth, the driving crank 41 on now each group of feed mechanism is driven by total drive link 42,
Upper flitch power transmission shaft 4 is synchronized with the movement, and above flitch 3 is rotated for drive, it is rotated in the horizontal direction to vertical direction.
More specific, with reference to Fig. 4, upper flitch 3 includes plate body 31 and the installation portion 32 positioned at the bottom of plate body 31, installation portion
32 are connected with the rotation of upper flitch power transmission shaft 4, and the upper surface infolding of plate body 31 forms two-sided ramp structure.The two-sided slope of plate body 31
Structure includes the first slope 311 and the second slope 312 for being mated with close to tubing 8, and the length of first slope 311 is more than the
The length on two slopes 312, therefore the gradient of the gradient less than the second slope 312 of first slope 311.When feeding, feeding
When plate 3 is horizontal, the outer end of first gradient 311 extends to the lower end of a tubing 8, and upper flitch 3 is rotated, tubing 8 with
First gradient 311 to be elevated, and as first gradient 311 is slid into plate body 31, realize feeding, due to second gradient 312
Compare steep, tubing 8 is not easy to drop out of plate body 31.
With reference to Fig. 1, Fig. 2, transport mechanism includes tubing drive 5, and tubing drive 5 is driven by driving belt component to be turned
It is dynamic, and send the qualified tubing 8 transmitted from upper flitch 3 to station.Driving belt component includes drive pulley 7 and mutual therewith
Several follower belts 72 of matching, the belt pulley of one end of drive pulley 7 drives by motor 74, the belt pulley of the other end with it is right
The bottom pulley 71 of follower belt 72 is answered to overlap, the upper belt pulley 73 of each follower belt 72 and corresponding tubing drive 5
It is coaxially disposed.The spacer sleeve of bottom pulley 71 of remaining follower belt 72 mounted in the inner side of drive pulley 7 and drives rotation by drive pulley 7
Turn.During drive pulley 7, the rotational motion of follower belt 72, the upper belt pulley 73 of follower belt 72 drives tubing drive 5
Synchronous axial system.The qualified tubing 8 transmitted from upper flitch 3 is transmitted along the rotation direction of tubing drive 5.
In transmit process, in order to ensure that crooked variation, tubing gear frame 2 do not occur for the direction in transmit process of tubing 8
The upper output end positioned at each transport mechanism provided with one group of locating wheel 51 for being used to limit the direction of tubing 8, two locating wheels 51 it
Between form the channel space that is adapted with tubing 8.The setting of locating wheel 51 effectively prevent tubing 8 and be tilted in transmit process.
With reference to Fig. 1, Fig. 2, shedding mechanism includes stripper 6, and stripper 6 connects stripper cylinder 61 by fixed strip 62,
One end of the piston rod 611 and fixed strip 62 of stripper cylinder 61 is hinged, the other end of fixed strip 62 and the bottom one of stripper 6
End is hinged, and piston rod 611 is flexible to drive stripper 6 to rotate, by the unidirectional discharging of underproof tubing 8.
Specifically, with reference to Fig. 5, Fig. 6, the upper surface infolding of stripper 6 forms two-sided ramp structure, the two-sided ramp structure
It is less than the 4th including the length close to the 3rd slope 601 of tubing 8 and the 4th slope 602 being mated with, the 3rd slope 601 oblique
The length on slope 602, therefore the gradient of the gradient more than the 4th slope 602 on the 3rd slope 601, it is steeper than the 4th slope 602.3rd is oblique
The outer end on the slope 602 of slope 601 and the 4th is equipped with level and accepts table top 603.When discharging is needed, tubing 8 passes through level
Accept table top 603 and enter stripper 6, because the 3rd slope 601 is relatively steeper, tubing 8 can slide to stripper 6 quickly, discharging
Plate cylinder 61 driving piston rod 611 extend, drive stripper 6 tilt turnover so that tubing 8 along the direction of the 4th slope 602 very
Fast is laid down.
The utility model, sets gradually feed mechanism, transport mechanism and shedding mechanism on tubing gear frame, can basis
Need to realize the functions such as automatic charging, transmission and unidirectional discharging, tubular object extruding, vdiverse in function, automaticity are realized automatically
Height, control is accurate, efficiency high.
The utility model is not limited to above-mentioned preferred forms, and anyone should learn that under enlightenment of the present utility model
The structure change made, it is every that there is same or like technical scheme with the utility model, each fall within guarantor of the present utility model
Within the scope of shield.
Claims (10)
1. several pipes are equipped with full-automatic pipe feeding, device for discharging, including bin and tubing gear frame, the bin
Material, it is characterised in that the end of the bin is provided with tubing limiting plate, the tubing gear frame at the tubing gear frame
On be sequentially provided with some groups it is spaced:
Feed mechanism, including upper flitch, the upper flitch connection transmission device simultaneously drive the upper flitch by the transmission device
Rotated in the horizontal direction to vertical direction,
Transport mechanism, including tubing drive, the tubing drive are driven by driving belt component and rotated, and will be from described
The qualified tubing that flitch is transmitted sends station to,
Shedding mechanism, including stripper, the stripper are articulated and connected the piston rod of stripper cylinder, the work by fixed strip
Stopper rod is flexible to drive the stripper to rotate, by the unidirectional discharging of underproof tubing.
2. full-automatic pipe feeding as claimed in claim 1, device for discharging, it is characterised in that the transmission device includes upper
Flitch power transmission shaft and driving crank, the upper flitch are rotatably arranged on the upper flitch power transmission shaft, and the one of the driving crank
End is connected with the upper flitch power transmission shaft, and the other end connects total drive link by connecting pole, and total drive link is by upper flitch gas
Cylinder drives.
3. full-automatic pipe feeding as claimed in claim 1, device for discharging, it is characterised in that the driving belt component bag
Several follower belts for including drive pulley and being mutually matched therewith, the upper belt pulley of each follower belt with it is corresponding
The tubing drive is coaxially disposed.
4. full-automatic pipe feeding as claimed in claim 3, device for discharging, it is characterised in that one end of the drive pulley
Belt pulley driven by motor, the bottom pulley of the belt pulley of the other end and the corresponding follower belt is overlapped, remaining it is described from
The bottom pulley spacer sleeve of dynamic belt on the inside of the drive pulley and drives rotation by the drive pulley.
5. full-automatic pipe feeding as claimed in claim 1, device for discharging, it is characterised in that the tubing gear frame is upper
It is provided with the output end of each transport mechanism between one group of locating wheel for being used to limit tubing direction, locating wheel described in two
Form the channel space being adapted with the tubing.
6. full-automatic pipe feeding as claimed in claim 1, device for discharging, it is characterised in that the upper flitch includes plate body
With the installation portion positioned at the plate body bottom, the installation portion is connected with the upper flitch drive axis, the plate body it is upper
End face infolding forms two-sided ramp structure.
7. full-automatic pipe feeding as claimed in claim 6, device for discharging, it is characterised in that the two-sided slope of the plate body
Structure includes the first slope and the second slope being mated with close to the tubing, and the length of the first slope is more than described
The length on the second slope.
8. full-automatic pipe feeding as claimed in claim 1, device for discharging, it is characterised in that the upper surface of the stripper
Infolding forms two-sided ramp structure, and the two-sided ramp structure is included close to the 3rd slope of the tubing and the 4th be mated with
Slope, the length on the 3rd slope is less than the length on the 4th slope.
9. full-automatic pipe feeding as claimed in claim 8, device for discharging, it is characterised in that the 3rd slope and described
The outer end on the 4th slope is equipped with level and accepts table top.
10. full-automatic pipe feeding as claimed in claim 1, device for discharging, it is characterised in that the upper flitch is in level
During direction, its one end stretches out the bottom of the tubing gear frame and the tubing being located most closely to.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201621451731.9U CN206366756U (en) | 2016-12-27 | 2016-12-27 | Full-automatic pipe feeding, device for discharging |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201621451731.9U CN206366756U (en) | 2016-12-27 | 2016-12-27 | Full-automatic pipe feeding, device for discharging |
Publications (1)
Publication Number | Publication Date |
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CN206366756U true CN206366756U (en) | 2017-08-01 |
Family
ID=59392717
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201621451731.9U Active CN206366756U (en) | 2016-12-27 | 2016-12-27 | Full-automatic pipe feeding, device for discharging |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106736074A (en) * | 2016-12-27 | 2017-05-31 | 张远见 | Full-automatic pipe feeding, device for discharging |
CN109465493A (en) * | 2018-12-21 | 2019-03-15 | 亚星(镇江)系泊链有限公司 | Big specification anchor chain bar discharging production line and feeding method |
-
2016
- 2016-12-27 CN CN201621451731.9U patent/CN206366756U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106736074A (en) * | 2016-12-27 | 2017-05-31 | 张远见 | Full-automatic pipe feeding, device for discharging |
CN106736074B (en) * | 2016-12-27 | 2019-05-14 | 张远见 | Full-automatic pipe feeding, device for discharging |
CN109465493A (en) * | 2018-12-21 | 2019-03-15 | 亚星(镇江)系泊链有限公司 | Big specification anchor chain bar discharging production line and feeding method |
CN109465493B (en) * | 2018-12-21 | 2020-07-28 | 亚星(镇江)系泊链有限公司 | Large-specification anchor chain bar blanking production line and feeding method |
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