CN206599219U - The remover that gets stuck of direct-insert SMD tracks - Google Patents
The remover that gets stuck of direct-insert SMD tracks Download PDFInfo
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- CN206599219U CN206599219U CN201720082623.7U CN201720082623U CN206599219U CN 206599219 U CN206599219 U CN 206599219U CN 201720082623 U CN201720082623 U CN 201720082623U CN 206599219 U CN206599219 U CN 206599219U
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- Prior art keywords
- smd
- tracks
- direct
- stuck
- insert
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- 239000000463 material Substances 0.000 claims abstract description 62
- 230000007717 exclusion Effects 0.000 claims description 2
- 238000004519 manufacturing process Methods 0.000 abstract description 16
- 238000000034 method Methods 0.000 abstract description 8
- 239000013307 optical fiber Substances 0.000 description 5
- 238000007664 blowing Methods 0.000 description 4
- 238000001514 detection method Methods 0.000 description 4
- 238000010586 diagram Methods 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 239000000428 dust Substances 0.000 description 1
- 239000012634 fragment Substances 0.000 description 1
- 238000012856 packing Methods 0.000 description 1
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Abstract
The utility model discloses a kind of remover that gets stuck of direct-insert SMD tracks.The device includes:Movable slider and spring;The side of the track body tip is provided with deep-slotted chip breaker;Movable slider is slidably disposed in deep-slotted chip breaker, and is acted on and stretched out by spring.Technical solutions of the utility model are employed to get stuck the direct-insert SMD tracks of remover, due to its can not by manipulator directly by SMD material supplies to station turnplate, so can not only save equipment cost, equipment dependability is improved, it is important to production capacity can also be improved.The production capacity of general SMD equipment per hour, after direct-insert SMD tracks of the present utility model, coordinates the station turnplate of more multistation for 40K, it is easy to by production capacity be promoted to 60 K per hour more than.Whole process is not shut down, not stopped, not reporting an error, thus greatly improves the stability of complete machine, it is ensured that production capacity, which is not got stuck, to be influenceed.
Description
Technical field
The utility model is related to SMD equipment technical fields, and in particular to the SMD tracks included in a kind of SMD equipment, especially
It is related to a kind of remover that gets stuck of direct-insert SMD tracks.
Background technology
SMD(Surface Mounted Devices, mean:Surface mount device, it is one kind in SMT components)
SMD tracks, such as light splitting machine, braider are generally used in equipment(Packing machine)Deng.Existing SMD tracks are usually such as Fig. 1
To the SMD tracks 2 of the catch 21 in place of the band shown in 4, SMD tracks 2 are divided into piezoelectric type and directly shaken body 3.The vibrating disk 1 of feed will
SMD materials are supplied to SMD tracks 2 one by one.SMD materials piezoelectric type directly shake body 3 effect of vibration under, on SMD tracks 2
Arrange, and move forward., can not be straight but in existing SMD tracks 2, SMD materials are moved to behind the end of SMD tracks 2
Tap into station turnplate 4, but need to use manipulator 5.As shown in figure 4, SMD materials be moved to the ends of SMD tracks 2 by
After position catch 21 is blocked, optical fiber 22 can detect most previous SMD material 61 and move into place in place, then notify manipulator 5 will
After most previous SMD material 61 is picked up, the corresponding station being moved on station turnplate 4.
Existing SMD equipment will use manipulator 5 because SMD tracks 2 can not be fed directly to station turnplate 4, and
Manipulator 5 is not only complicated, and also needs to the software of complexity and control, so can not only cause complete machine cost significantly on
Rise, uncontrollable factor increases;Most importantly, such a mode can cause the production capacity critical constraints of SMD equipment complete machines, thus need
Improve.
The content of the invention
Technical problem to be solved in the utility model is to provide a kind of remover that gets stuck of direct-insert SMD tracks, its
It can not be directly fed by manipulator to station turnplate, solve existing SMD device structures complexity, cost is higher, and production capacity
The problem of limited, and it can automatically exclude and get stuck when direct-insert SMD tracks get stuck, it is ensured that production capacity.
In order to solve the above technical problems, the utility model is adopted the following technical scheme that:
The remover that gets stuck of direct-insert SMD tracks, direct-insert SMD tracks are used to be directly connected to station turnplate,
SMD materials are supplied to station turnplate one by one, the remover that gets stuck is used to that feeding can not to be succeeded to station turnplate in SMD materials
And when getting stuck, automatically exclude the SMD materials, the direct-insert SMD tracks include track body, it is characterised in that the card
Material remover is arranged on the side of track body tip, including:Movable slider and spring;The side of the track body tip
It is provided with deep-slotted chip breaker;The movable slider is slidably disposed in deep-slotted chip breaker, and is acted on and stretched out by the spring, from
And the SMD materials not got stuck by accurately feeding station turnplate can be acted on.
It is preferred that technical scheme in, the remover that gets stuck also includes:Cover plate, the cover plate is by movable slider and spring
It is sealed in deep-slotted chip breaker.
The beneficial effects of the utility model are:
Employ technical solutions of the utility model to get stuck the direct-insert SMD tracks of remover, because it can not pass through
Manipulator and directly by SMD material supplies to station turnplate, so can not only save equipment cost, improve equipment dependability,
Key is can also to improve production capacity.The production capacity of general SMD equipment for 40K per hour, using direct-insert SMD rails of the present utility model
Behind road, coordinate more multistation station turnplate, it is easy to by production capacity be promoted to 60 K per hour more than.Whole process do not shut down,
Do not stop, do not report an error, thus greatly improve the stability of complete machine, it is ensured that production capacity, which is not got stuck, to be influenceed.
The utility model is described in further detail below in conjunction with the accompanying drawings.
Brief description of the drawings
Fig. 1 is the existing band structural representation that the SMD tracks of catch and vibrating disk and station turnplate etc. are connected in place(Overlook
Direction);
Fig. 2 is the existing band structural representation that the SMD tracks of catch and station turnplate etc. are connected in place(Main view direction);
Fig. 3 is the partial enlarged drawing of A parts in Fig. 1;
Fig. 4 is the partial enlarged drawing of B parts in Fig. 2;
Fig. 5 is the structure that the utility model embodiment direct-insert SMD tracks are connected with vibrating disk and station turnplate
Schematic diagram(Overlook direction, and do not install material separator additional also);
Fig. 6 is the structural representation that the utility model embodiment direct-insert SMD tracks are connected with station turnplate(Bow
Apparent direction, and do not install material separator additional also);
Fig. 7 is the partial enlarged drawing of C parts in Fig. 5;
Fig. 8 is the partial enlarged drawing of D parts in Fig. 6;
Fig. 9 is the structure that the utility model embodiment direct-insert SMD tracks are connected with vibrating disk and station turnplate
Schematic diagram(Overlook direction);
Figure 10 is the structural representation that the utility model embodiment direct-insert SMD tracks are connected with station turnplate
(Overlook direction);
Figure 11 is the partial enlarged drawing of E parts in Fig. 9;
Figure 12 is the partial enlarged drawing of F parts in Figure 10;
Figure 13 is that structure when remover work is got stuck in the utility model embodiment direct-insert SMD tracks is shown
It is intended to;
Figure 14 is the front view of side shield in the utility model embodiment direct-insert SMD tracks;
Figure 15 is the top view of side shield in the utility model embodiment direct-insert SMD tracks.
Embodiment
The direct-insert SMD tracks that present embodiment is provided are as shown in Fig. 5 to 8, and it is used for direct with station turnplate 4
Connection, station turnplate 4 is supplied to by SMD materials one by one, and the change maximum compared to existing SMD tracks is that do not have as seen from the figure
Manipulator 5 but be directly connected with station turnplate 4, also eliminate baffle plate 21 in place of SMD track ends in addition.Certainly it is actual
Direct-insert SMD tracks as shown in Fig. 9 to 12, the direct-insert SMD tracks include track body 20, in addition to will most previous
When SMD materials 61 are supplied to station turnplate 4, second follow-up SMD material 62 and most previous SMD material 61 are isolated
Material separator 7, the material separator 7 is arranged on the end of track body 20.
The method of feeding of corresponding direct-insert SMD tracks, it is based on foregoing direct-insert SMD tracks, directly by SMD materials
Material is supplied to station turnplate 4 one by one, and this method is by its material separator 7 by second SMD material 62 and most previous SMD
Material 61 is isolated, and most previous SMD material 61 is supplied directly into station turnplate 4.It should be noted that as shown in figure 1,
Prior art is typically using the station turnplate 4 of 12 stations, and present embodiment employs the station turnplate of 36 stations
4。
The direct-insert SMD tracks of the utility model embodiment technical scheme method of feeding are employed, because it can
With not by manipulator 5 directly by SMD material supplies to station turnplate 4, so can not only save equipment cost, raising is set
Standby reliability, it is important to production capacity can also be improved.The production capacity of general SMD equipment for 40K per hour, using of the present utility model straight
Enter after formula SMD tracks, coordinate the station turnplate 4 of more multistation, it is easy to production capacity is promoted to 60 K per hour, even more high.
It is preferred that technical scheme in, the material separator 7 as shown in Fig. 9 to 12, including:Electromagnetism push-and-pull pin 73, blow
Valve 71, in place detection unit 74 and vacuum slot 72;The electromagnetism push-and-pull pin 73 is arranged on the extreme ends of track body 20;
The oblique forward direction of the blowing nozzle 71 is set against most previous SMD material 61;Most previous SMD of the correspondence of detection unit in place 74
Material 61 is set;Second SMD material 62 of the correspondence of vacuum slot 72 is set.Methods described specifically includes following steps:Arrive
Position detection unit 74 is detected after most previous SMD material 61 move into place so that vacuum slot 72 holds second SMD material
62, then electromagnetism push-and-pull pin 73 leave behind, most previous SMD material 61 is blown into station turnplate 4 by blowing nozzle 71, and by station turnplate
Station vacuum slot on 4 is held.Then electromagnetism push-and-pull pin 71 is risen, then unclamps vacuum slot 72, until second SMD material
Material 62 is moved to be blocked by electromagnetism push-and-pull pin 71, as next most previous SMD material 61, is just completed one action and is followed
Ring.It is such a simple in construction effective, and key is quick, thus production capacity can be effectively improved.
In further preferred technical scheme, the detection unit in place 74 is optical fiber in place.Further preferred technology
In scheme, the vacuum slot 72 has two, respectively corresponds to the first vacuum slot that second bottom of SMD materials 62 is set
722, and the second vacuum slot 721 that second sidepiece of SMD materials 62 of correspondence is set, it so can preferably ensure second
SMD materials 62 are held, and are unlikely to be blown when blowing nozzle 71 is blown into station turnplate 4 in most previous SMD material 61 and are affected.
Certain most previous SMD material 61 is blown blowing nozzle 71 and is blown into after station turnplate 4, can be set on station turnplate 4 on corresponding station
The vacuum slot put holds and keeps stable.
In further preferred technical scheme, the direct-insert SMD tracks also include the remover 8 that gets stuck, described to get stuck
Remover 8 is arranged on the side of the end of track body 20, certainly positioned at the side at direction of rotation rear;In methods described also
Including get stuck exclude the step of, SMD materials can not succeed feeding got stuck to station turnplate 4 when, pass through the exclusion that gets stuck
Device 8 automatically excludes the SMD materials.
In technical scheme still more preferably, the remover 8 that gets stuck includes:Movable slider 82 and spring 81;Institute
The side for stating the end of track body 20 is provided with deep-slotted chip breaker 201;The movable slider 82 is slidably disposed in deep-slotted chip breaker
201, and stretched out by the elastic reaction of spring 81, do not got stuck most by accurately feeding station turnplate so as to act on
Previous SMD material 61;When most previous SMD material 61 can not succeed feeding to station turnplate 4, with station turnplate 4
Rotation, the SMD materials will necessarily act on the movable slider 82 so that movable slider 82 overcomes the elastic reaction of spring 81 to exist
While sliding and retract in deep-slotted chip breaker 201 so that collective effect of the SMD materials 61 in movable slider 82 He itself centrifugal force
Come off down, then movable slider 82 can reset in the presence of spring 81 again.
In normal feed, as shown in figure 13, material flows into station turnplate 4 along direct-insert SMD tracks, when optical fiber in place
74 first SMD material 61 of sensing notify station turnplate 4 to rotate to next station afterwards in place, but the feeding speed of present complete machine is non-
It is often fast, up to 17pcs/ seconds(60K/H)Cause occur many uncontrollable situations during feed, than first SMD material as shown in figure 13
Expect the situation of 61 failure to feeds;The situation, which is primarily due to optical fiber 74 in place, to be influenceed and judges by accident by dust, material fragment etc., is caused
Optical fiber does not provide signal in place and notifies station turnplate 4 to rotate first SMD material 61 in place and in place, at this moment first SMD material
A part for material 61 come into station turnplate 4 and another part also in direct-insert SMD tracks, station turnplate 4 continues to rotate
Just occur and get stuck.There is such situation remover 8 that gets stuck and begin to work:Movable slider 82 because by not in place
The extruding of one SMD material 61 and compression spring 81 deflects, until first SMD material 61 be in centrifugal force and movable slider
Come off in the presence of 82.Whole process is not shut down, not stopped, not reporting an error, thus greatly improves the stability of complete machine, it is ensured that production
Can not be got stuck influences.
In addition, in order to ensure that movable slider 82 and spring 81 will not be deviate from from deep-slotted chip breaker 201, cover plate can be set up(In figure
It is not shown)If be not provided with that cover plate would like to live movable slider 82 and spring 81 will not be deviate from from deep-slotted chip breaker 201 again, processing and install must
It is so very complicated.
Finally, in order to more easily set the first vacuum slot 722, side block as shown in Figure 14 and Figure 15 has been fabricated separately
Plate 75, the first vacuum slot 722 is arranged in side shield 75.
Above content is to combine specific preferred embodiment further detailed description of the utility model, it is impossible to
Assert that specific implementation of the present utility model is confined to these explanations.For the ordinary skill of the utility model art
For personnel, without departing from the concept of the premise utility, some simple deduction or replace can also be made, should all be regarded
To belong to protection domain of the present utility model.
Claims (2)
1. the remover that gets stuck of direct-insert SMD tracks, direct-insert SMD tracks are used to be directly connected to station turnplate, will
SMD materials are supplied to station turnplate one by one, and the remover that gets stuck is used to that feeding can not to be succeeded to station turnplate in SMD materials
When getting stuck, the SMD materials are excluded automatically, the direct-insert SMD tracks include track body, it is characterised in that described to get stuck
Remover is arranged on the side of track body tip, including:Movable slider and spring;The side of the track body tip is set
It is equipped with deep-slotted chip breaker;The movable slider is slidably disposed in deep-slotted chip breaker, and is acted on and stretched out by the spring, so that
The SMD materials not got stuck by accurately feeding station turnplate can be acted on.
2. the remover that gets stuck of direct-insert SMD tracks as claimed in claim 1, it is characterised in that the exclusion dress that gets stuck
Putting also includes:Movable slider and spring are sealed in deep-slotted chip breaker by cover plate, the cover plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720082623.7U CN206599219U (en) | 2017-01-20 | 2017-01-20 | The remover that gets stuck of direct-insert SMD tracks |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720082623.7U CN206599219U (en) | 2017-01-20 | 2017-01-20 | The remover that gets stuck of direct-insert SMD tracks |
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Publication Number | Publication Date |
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CN206599219U true CN206599219U (en) | 2017-10-31 |
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CN201720082623.7U Expired - Fee Related CN206599219U (en) | 2017-01-20 | 2017-01-20 | The remover that gets stuck of direct-insert SMD tracks |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106829400A (en) * | 2017-01-20 | 2017-06-13 | 深圳市辉睿达科技有限公司 | Get stuck remover and its method for removing that gets stuck of direct-insert SMD tracks |
CN111717460A (en) * | 2019-03-20 | 2020-09-29 | 东莞市凯立锐智能科技有限公司 | Novel automatic unloading package device |
-
2017
- 2017-01-20 CN CN201720082623.7U patent/CN206599219U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106829400A (en) * | 2017-01-20 | 2017-06-13 | 深圳市辉睿达科技有限公司 | Get stuck remover and its method for removing that gets stuck of direct-insert SMD tracks |
CN111717460A (en) * | 2019-03-20 | 2020-09-29 | 东莞市凯立锐智能科技有限公司 | Novel automatic unloading package device |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20171031 |
|
CF01 | Termination of patent right due to non-payment of annual fee |