CN206405357U - Round wires conveying mechanism - Google Patents
Round wires conveying mechanism Download PDFInfo
- Publication number
- CN206405357U CN206405357U CN201621418164.7U CN201621418164U CN206405357U CN 206405357 U CN206405357 U CN 206405357U CN 201621418164 U CN201621418164 U CN 201621418164U CN 206405357 U CN206405357 U CN 206405357U
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- CN
- China
- Prior art keywords
- guide pad
- compact heap
- round wires
- cylinder
- block
- Prior art date
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Abstract
The utility model provides round wires conveying mechanism, belong to processing auxiliary equipment field, including bottom plate, second guide pad and the second compact heap, second guide pad be oppositely arranged with second compact heap and second compact heap can relatively described second guide pad move up and down, second guide pad is one group with second compact heap has precompression to round wires to be cut, also include flat cylinder, movable plate, second solid lock block and the second cylinder, the flat cylinder solid lock is on the bottom plate, the movable plate is fixed on the movable block of the flat cylinder, second guide pad is fixed on the movable block of the flat cylinder, second compact heap driven by second cylinder and can relatively described second guide pad move up and down, the second solid lock block is fixed on the movable block of the flat cylinder and slided up and down with second compact heap and is connected.The utility model can accurately ensure the distance of round wires cutting, and efficiency high, and labor intensity is low.
Description
Technical field
The utility model belongs to processing auxiliary equipment field, more particularly to round wires conveying mechanism.
Background technology
In steel processing device field, the processing of blocking of steel pipe and steel wire is one of common process equipment, it is necessary to right
Steel pipe carries out blocking for setpoint distance, and steel wire is usually into the bent placement of coiling, elder generation is needed when it is blocked according to certain length
Stretched and positioned, then carry out blocking action again, blocking for current steel wire is more according to actual conditions, cuts using artificial by hand
It is disconnected, so cause labor intensity high, and also the size blocked differs, influence operating efficiency, some large-scale steel wire cutting devices,
Equipment cost is high, increases the equipment cost of enterprise, and it is not very big enterprise to block demand for steel wire, specially buys phase
The equipment answered, it is unfavorable to be considered in terms of cost to enterprise.
Utility model content
Problem to be solved in the utility model is to be to provide a kind of compact conformation, and the high and efficient round wires of precision convey dress
Put.
In order to solve the above technical problems, the technical solution adopted in the utility model is:Round wires conveying mechanism, including bottom plate,
Second guide pad and the second compact heap, second guide pad are oppositely arranged and second compact heap with second compact heap
Can relatively described second guide pad move up and down, second guide pad and second compact heap are one group to round wires to be cut
There are precompression, in addition to flat cylinder, movable plate, the second solid lock block and the second cylinder, the flat cylinder solid lock is in institute
State on bottom plate, the movable plate is fixed on the movable block of the flat cylinder, second guide pad is fixed on described flat
On the movable block of board-like cylinder, second compact heap is driven by second cylinder and can be above and below relatively described second guide pad
Mobile, the second solid lock block is fixed on the movable block of the flat cylinder and slides up and down company with second compact heap
Connect.
Further, one end of the flat cylinder is provided with the positioning component for having precompression to round wires to be cut.
Further, the positioning component include the first guide pad and the first compact heap, first guide pad with it is described
First compact heap be oppositely arranged and first compact heap can relatively described first guide pad move up and down, first guide pad
It is one group and to have precompression to round wires to be cut with first compact heap, second guide pad is with second compact heap
One group has precompression and dibit is on same straight line to round wires to be cut.
Further, the positioning component also includes support base, the first solid lock block and the 3rd cylinder, and the support base is fixed
On the bottom plate, first guide pad is fixed on the upper surface of the support base, and first compact heap is by the described 3rd
Cylinder driving and relatively described first guide pad move up and down, the first solid lock block installed in the support base upper surface and
Slide up and down and be connected with first compact heap.
Further, the first solid lock block is provided with the sliding groove, first gripping block and the sliding groove
Lower slider is connected.
Compared with prior art, the utility model has the advantages and positive effects of:1st, the utility model sets flat board
Formula cylinder, stroke of the movable plate on flat cylinder is fixed, so as to ensure that the distance of conveying round wires every time is consistent, it is ensured that circle
The precision of wire cutting, meanwhile, the second compact heap and the second guide pad realize the positioning and clamping to round wires, it is ensured that round wires with
Movable plate is moved together;2nd, positioning component, is realized to the clamping positions of round wires, and is had to round wires to be cut and led straight work
With by the clamping of the first compact heap and the first guide pad, it is ensured that the alignment of round wires, be conducive to the guarantor of follow-up cutting accuracy
Card.
Brief description of the drawings
Constitute a part of accompanying drawing of the present utility model to be used for providing further understanding to of the present utility model, this practicality is new
The schematic description and description of type is used to explain the utility model, does not constitute to improper restriction of the present utility model.
In accompanying drawing:
Fig. 1 is the structural representation of the utility model round wires conveying mechanism use state left and right directions;
Fig. 2 is the structural representation of another angle of the utility model round wires conveying mechanism use state;
Fig. 3 is the structural representation of the utility model cutting assembly;
Fig. 4 is the front view of the utility model cutting assembly;
Fig. 5 is the utility model Fig. 4 B-B sectional views;
Fig. 6 is the structural representation of the utility model positioning component;
Fig. 7 is the utility model Fig. 6 A-A sectional views.
Reference:
1- bottom plates;2- cutting assemblies;21- cutting cubes;211- positioning convex;The cylinders of 22- first;23- drive rods;231-U
Shape groove;24- fixed blocks;25- briquettings;251- leading grooves;26- connecting shafts;27- guide pads;271- limited blocks;272- stopper slots;
273- auxiliary positioning blocks;274- locating slots;275- bosses;276- guide cylinders;277- pilot holes;28- fixed plates;3- feeding groups
Part;The guide pads of 31- second;The compact heaps of 32- second;The flat cylinders of 33-;34- movable plates;35- the second solid lock blocks;36- and
Two cylinders;4- positioning components;The guide pads of 41- first;The compact heaps of 42- first;43- support bases;44- the first solid lock blocks;441- is slided
Dynamic groove;The cylinders of 45- the 3rd;5- round wires to be cut.
Embodiment
It should be noted that in the case where not conflicting, the feature in embodiment and embodiment in the utility model can
To be mutually combined.
In description of the present utility model, it is to be understood that term " " center ", " longitudinal direction ", " transverse direction ", " on ", " under ",
The orientation or position relationship of the instruction such as "front", "rear", "left", "right", " vertical ", " level ", " top ", " bottom ", " interior ", " outer " are
Based on orientation shown in the drawings or position relationship, it is for only for ease of description the utility model and simplifies description, rather than indicate
Or imply that the device or element of meaning must have specific orientation, with specific azimuth configuration and operation, therefore be not understood that
For to limitation of the present utility model.In addition, term " first ", " second " etc. are only used for describing purpose, and it is not intended that indicating
Or imply relative importance or the implicit quantity for indicating indicated technical characteristic.Thus, " first ", " second " etc. are defined
Feature can express or implicitly include one or more this feature.In description of the present utility model, unless separately
It is described, " multiple " are meant that two or more.
, it is necessary to which explanation, unless otherwise clearly defined and limited, term " are pacified in description of the present utility model
Dress ", " connected ", " connection " should be interpreted broadly, for example, it may be fixedly connected or be detachably connected, or integratedly
Connection;Can be mechanical connection or electrical connection;Can be joined directly together, can also be indirectly connected to by intermediary,
It can be the connection of two element internals.For the ordinary skill in the art, on being understood by concrete condition
State concrete meaning of the term in the utility model.
Specific embodiment of the utility model is elaborated below in conjunction with the accompanying drawings.
As depicted in figs. 1 and 2, the utility model is round wires conveying mechanism, including bottom plate 1 and is fixed on cutting on bottom plate 1
Disconnected component 2, feeding material component 3 and positioning component 4, feeding material component 3 are located between cutting assembly 2 and positioning component 4, positioning component 4
Including the first guide pad 41 and the first compact heap 42, the first guide pad 41 and the first compact heap 42 are oppositely arranged and the first compact heap
42 can move up and down with respect to the first guide pad 41, and feeding material component 3 includes the second guide pad 31 and the second compact heap 32, and second is oriented to
Block 31 is oppositely arranged with the second compact heap 32 and the second compact heap 32 can be moved up and down with respect to the second guide pad 31, the first guide pad
41 and first compact heap 42 is one group and has precompression to round wires 5 to be cut, the second guide pad 31 is one with the second compact heap 32
Group has precompression to round wires 5 to be cut and dibit is on same straight line, and cutting assembly 2 includes cutting cube 21, the phase of cutting cube 21
Bottom plate 1 can be moved up and down.
Preferably, as shown in Fig. 3, Fig. 4 and Fig. 5, cutting assembly 2 include the first cylinder 22, drive rod 23, fixed block 24,
Briquetting 25, connecting shaft 26 and guide pad 27, first one end of cylinder 22 away from force-output shaft are fixed on bottom plate 1, the first cylinder 22
Force-output shaft be hinged one end of drive rod 23, the other end of drive rod 23 contacts setting with connecting shaft 26, and the level of connecting shaft 26 is set
Put and be fixedly connected with the upper end of briquetting 25, the lower end of briquetting 25 is fixedly connected with the upper surface of cutting cube 21, cutting cube 21 with
Guide pad 27 is slidably connected, and guide pad 27 is fixed on bottom plate 1, and drive rod 23 is hinged on fixed block 24 close to one end of briquetting 25
On, fixed block 24 is fixedly connected by fixed plate 28 with bottom plate 1.
Preferably, drive rod 23 is provided with the U-lag 231 of outward opening close to one end of briquetting 25, and connecting shaft 26 is located at U-shaped
Groove 231 is interior and the two contact is set, and the center line of U-lag 231 is set with the diameter parallel of connecting shaft 26.
Preferably, side of the fixed plate 28 away from the first cylinder 22 is provided with the first guide groove 281, one end of the thickness of briquetting 25
It is located in the first guide groove 281 and the two slides up and down connection.
Preferably, fixed plate 28 sets the both sides of the first guide groove 281 to be provided with and is equipped with guiding block 282, and briquetting 25 is remote
The two ends of the side of fixed plate 28 are equipped with L-shaped leading groove 251, and guiding block 282 contacts setting and downslide on the two with leading groove 251
Dynamic connection.
Preferably, guide pad 27 is provided with limited block 271 close to the side of cutting cube 21, and the lower end of limited block 271 is close to cut
The side for cutting block 21 is provided with stopper slot 272, and the lower end of cutting cube 21 is provided with positioning convex 211 close to the side of limited block 271, fixed
Position projection 211 is located in stopper slot 272, in upper extreme position, the upper surface of positioning convex 211 and the upper surface of stopper slot 272
Contact is set.
Preferably, the upper end of limited block 271 is provided with auxiliary positioning block 273, auxiliary positioning block close to the side of fixed plate 28
273 are provided with locating slot 274, and the size of locating slot 274 is slightly larger than the diameter dimension of round wires 5 to be cut.
Preferably, side of the limited block 271 away from cutting cube 21 is provided with boss 275, boss 275 and is installed with guiding
Pilot hole 277 is provided with cylinder 276, guide cylinder 276, pilot hole 277 coordinates with round wires 5 to be cut for gap, the axle of pilot hole 277
Line overlaps setting with the axis of locating slot 274.
Preferably, as depicted in figs. 1 and 2, feeding material component 3 also includes flat cylinder 33, movable plate 34, the second solid lock block
35 and second cylinder 36, the flat solid lock of cylinder 33 is on bottom plate 1, and movable plate 34 is fixed on the movable block of flat cylinder 33
On, the second guide pad 31 is fixed on the movable block of flat cylinder 33, and the second compact heap 32 is driven by the second cylinder 36 and can
Moved up and down with respect to the second guide pad 31, the second solid lock block 35 is fixed on the movable block of flat cylinder 33 and compressed with second
Block 32 slides up and down connection.
Preferably, as shown in Figure 6 and Figure 7, positioning component 4 also includes support base 43, the first solid lock block 44 and the 3rd cylinder
45, support base 43 is fixed on bottom plate 1, and the first guide pad 41 is fixed on the upper surface of support base 43, and the first compact heap 42 is by
Three cylinders 45 driving and relative first guide pad 41 is moved up and down, the first solid lock block 44 be arranged on the upper surface of support base 43 and with
First compact heap 42 slides up and down connection;It is highly preferred that the first solid lock block 44 is provided with sliding groove 441, the first gripping block 42 with
Sliding groove 441 slides up and down connection, improves the up and down motion precision of the first gripping block 42.
During actual use, round wires 5 to be cut are passed through in positioning component 4, the first compact heap 42 and second
Guide pad 41, enters in the second compact heap 32 and the second guide pad 31 in feeding material component 3, eventually passes through in cutting assembly 2
Guide cylinder 276 in pilot hole 277 be placed in the locating slot 274 on auxiliary positioning block 273, now in cutting assembly 2
One cylinder 22 is moved, and force-output shaft stretches out, and drives drive rod 23 to move, and the edge of briquetting 25 is driven by the drive connection axle 26 of U-lag 231
The first guide groove 281 in fixed plate 28 is moved downward, and drives cutting cube 21 to be moved downward along guide pad 27, completes cutting
Cut-out of the block 21 to round wires 5 to be cut, after the completion of cut-out, the second compact heap 32 and the second guide pad 31 in feeding material component 3
Depart from, then under the driving of flat cylinder 33, the second compact heap 32 and the second guide pad 31 are as movable plate 34 is to positioning
The direction movement of component 4, moves into place the rear guide pad 31 of second compact heap 32 and second and round wires 5 to be cut is pressed from both sides again
Tightly, then the first compact heap 42 and the second guide pad 41 depart from release, and the second compact heap 32 and the second guide pad 31 are with movement
Plate 34 is moved to the direction of cutting assembly 2, completes the conveying of the round wires 5 of cutting, and cutting assembly 2 repeats cutting action and completed
Secondary cut, so repeatedly, completes the high accuracy of round wires 5 to be cut and efficient cutting.
One embodiment of the present utility model is described in detail above, but the content is only of the present utility model
Preferred embodiment, it is impossible to be considered as being used to limit practical range of the present utility model.It is all to be made according to present utility model application scope
Equivalent change with improve etc., all should still belong within patent covering scope of the present utility model.
Claims (5)
1. round wires conveying mechanism, it is characterised in that:It is described including bottom plate (1), the second guide pad (31) and the second compact heap (32)
Second guide pad (31) and second compact heap (32) are oppositely arranged and second compact heap (32) can relatively described second
Guide pad (31) is moved up and down, and second guide pad (31) is with second compact heap (32) for one group to round wires to be cut
(5) there are precompression, in addition to flat cylinder (33), movable plate (34), the second solid lock block (35) and the second cylinder (36), it is described
Flat cylinder (33) solid lock is on the bottom plate (1), and the movable plate (34) is fixed on the shifting of the flat cylinder (33)
On motion block, second guide pad (31) is fixed on the movable block of the flat cylinder (33), second compact heap
(32) by second cylinder (36) drive and can relatively described second guide pad (31) move up and down, the second solid lock block
(35) it is fixed on the movable block of the flat cylinder (33) and is slided up and down with second compact heap (32) and is connected.
2. round wires conveying mechanism according to claim 1, it is characterised in that:One end of the flat cylinder (33) is provided with
There is the positioning component (4) of precompression to round wires to be cut (5).
3. the round wires conveying mechanism stated according to claim 2, it is characterised in that:The positioning component (4) includes the first guide pad
(41) and the first compact heap (42), first guide pad (41) is oppositely arranged and described first with first compact heap (42)
Compact heap (42) can relatively described first guide pad (41) move up and down, first guide pad (41) and first compact heap
(42) one group and to have precompression to round wires to be cut (5), second guide pad (31) is with second compact heap (32)
One group has precompression and dibit is on same straight line to round wires to be cut (5).
4. round wires conveying mechanism according to claim 2, it is characterised in that:The positioning component (4) also includes support base
(43), the first solid lock block (44) and the 3rd cylinder (45), the support base (43) are fixed on the bottom plate (1), and described first
Guide pad (41) is fixed on the upper surface of the support base (43), and first compact heap (42) is driven by the 3rd cylinder (45)
Dynamic and relatively described first guide pad (41) moves up and down, and the first solid lock block (44) is arranged on the upper of the support base (43)
End face and being slided up and down with first compact heap (42) is connected.
5. round wires conveying mechanism according to claim 4, it is characterised in that:The first solid lock block (44) is provided with described
Sliding groove (441), first gripping block (42) slides up and down with the sliding groove (441) to be connected.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201621418164.7U CN206405357U (en) | 2016-12-22 | 2016-12-22 | Round wires conveying mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201621418164.7U CN206405357U (en) | 2016-12-22 | 2016-12-22 | Round wires conveying mechanism |
Publications (1)
Publication Number | Publication Date |
---|---|
CN206405357U true CN206405357U (en) | 2017-08-15 |
Family
ID=59550152
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201621418164.7U Expired - Fee Related CN206405357U (en) | 2016-12-22 | 2016-12-22 | Round wires conveying mechanism |
Country Status (1)
Country | Link |
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CN (1) | CN206405357U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111496143A (en) * | 2020-04-24 | 2020-08-07 | 四川艾尔法泰克科技有限公司 | Wire feeding mechanism for in-mold stamping and welding |
-
2016
- 2016-12-22 CN CN201621418164.7U patent/CN206405357U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111496143A (en) * | 2020-04-24 | 2020-08-07 | 四川艾尔法泰克科技有限公司 | Wire feeding mechanism for in-mold stamping and welding |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170815 Termination date: 20171222 |