CN202181080U - Resin vibration feeding device - Google Patents

Resin vibration feeding device Download PDF

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Publication number
CN202181080U
CN202181080U CN201120272425XU CN201120272425U CN202181080U CN 202181080 U CN202181080 U CN 202181080U CN 201120272425X U CN201120272425X U CN 201120272425XU CN 201120272425 U CN201120272425 U CN 201120272425U CN 202181080 U CN202181080 U CN 202181080U
Authority
CN
China
Prior art keywords
slideway
resin
vibration
feed bin
funnel
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201120272425XU
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Chinese (zh)
Inventor
陈昌太
赵仁家
班友根
刘星星
刘永
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.)
Tongling Trinity Fushi Machine Co Ltd
Original Assignee
Tongling Trinity Fushi Machine Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tongling Trinity Fushi Machine Co Ltd filed Critical Tongling Trinity Fushi Machine Co Ltd
Priority to CN201120272425XU priority Critical patent/CN202181080U/en
Application granted granted Critical
Publication of CN202181080U publication Critical patent/CN202181080U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model provides a resin vibration feeding device belonging to the field of automatic orientation and ordering feeding equipment, and especially relates to the resin vibration feeding device which can automatically, orderly and orientedly arrange resins in alignment through vibrations and can accurately convey the resins to a next process. The feeding device comprises a bunker and a bunker vibration mechanism used for driving the bunker to vibrate in order to convey the resins; wherein a lower side of the bunker is provided with a funnel vibration box used for receiving the resins conveyed by the bunker and conveying the resins to a slideway mechanism, the funnel vibration box is connected with a funnel vibration mechanism; and a discharge hole of the slideway mechanism is connected with a downstream process, and a side of the slideway mechanism is provided with a slideway vibration mechanism used for driving the slideway mechanism to vibrate in order to perform the feeding. When the number of the resins in a slideway vibration disc is much less, the bunker can vibrate to supply the resins, and at the same time, a phenomenon that the bunker supplies much more resins in the slideway vibration disc can be avoided, thereby greatly reducing the phenomena that the resins are stuck in the slideway vibration disc and so on; and the slideway vibration disc also can quickly discharge the resins in the slideway vibration disc through the discharge hole thereof.

Description

A kind of resin oscillation feed gear
Technical field
The utility model belongs to the feeder equipment field of self-orientation ordering, is specifically related to a kind of resin oscillation feed gear that through vibration resin is aligned neatly and is transported to exactly next procedure automatically in order.
Background technology
The resin vibrating mechanism is through vibration it to be delivered to the integrated package apparatus for sealing to resin; It is the impulse mgnet below the hopper of vibrating disk; Hopper is vertically vibrated, because the inclination of spring leaf makes hopper do around its vertical axis and rocks vibration; Helical orbit rises resin in the hopper in the effect lower edge of above-mentioned vibration, up to resin is delivered to discharging opening.The shortcoming of this resin vibrating mechanism is: get stuck easily in the feeding process, the resin number needs is an amount of in the hopper, thereby has reduced the functional reliability of resin vibration feeding.
Summary of the invention
The purpose of the utility model provides a kind of resin oscillation feed gear, and this resin oscillation feed gear has functional reliability height and degree of automation advantages of higher.
For realizing the foregoing invention purpose, the technical scheme that the utility model adopted is: a kind of resin oscillation feed gear, this pay-off comprise feed bin and drive the feed bin vibration to carry the feed bin vibrating mechanism of resin; The downside of said feed bin is provided with and is used to receive resin that feed bin transports and with the funnel vibration box of resin transfer to slideway mechanism, said funnel vibration box links to each other with the funnel vibrating mechanism; The discharging opening of slideway mechanism is connected with lower procedure mutually, and the side of said slideway mechanism is provided with the slideway vibrating mechanism of driving slideway mechanism vibration with feeding.
The utility model is abandoned the feeding style that traditional promotion resin rises along its helical orbit; But make that with the vibration of control feed bin resin is able to from feed bin, fall constantly; And through in the funnel vibration box entering slideway mechanism; Under the vibration of vibrator, resin progressively rolls forward and until the discharging opening place in slideway mechanism.
Simultaneously, the utility model can also be able to further realization through following technical measures:
Said feed bin vibrating mechanism is flat first vibrator that shakes of direct drive feed bin.
Said funnel vibrating mechanism is for driving second vibrator of funnel vibration box vibration feeding.
Said slideway mechanism comprises the slideway vibrating disk; Said slideway vibrating disk is provided with material acceptance division, first slideway and second slideway that links to each other successively; Said material acceptance division is connected with the discharging opening of funnel vibration box mutually, and the discharging opening of second slideway is connected with lower procedure mutually.
Said first slideway is set to bevelled linear ramp from top to bottom, and the last side opening of first slideway is connected with the exit of material acceptance division.
Be provided with the interconnecting gangway that connects the two between said first slideway and second slideway, the interconnecting gangway place is provided with leakage hawk, leaks the hawk place and is provided with the ash discharging hole towards the waste material box, and said waste material box is arranged on the downside of slideway vibrating disk.
The groove that said second slideway is set to linearly extend, and the width of said groove with wait to carry the particle diameter of resin to match.
Said slideway vibrating mechanism is for driving the 3rd vibrator that the slideway vibrating disk directly shakes.
Be provided with the first sensor that detects resin quantity in the said feed bin, said first sensor is electrically connected with controller, and controller is electrically connected with the feed bin vibrating mechanism.
Preferably, said slideway vibrating disk is provided with second sensor that detects resin quantity at the second slideway place, and second sensor is electrically connected with controller, and controller is electrically connected with feed bin vibrating mechanism, funnel vibrating mechanism and sliding vibration mechanism
The beneficial effect of the utility model is:
1, this pay-off is provided with second sensor that detects resin quantity on the slideway vibrating disk; When the resin in the slideway vibrating disk is very few; The feed bin vibration is to supply with resin; Simultaneously also avoid feed bin in the slideway vibrating disk, to put into too much resin, therefore reduced phenomenons such as resin occurs getting stuck greatly in the slideway vibrating disk, and said slideway vibrating disk can have been discharged the resin in the slideway vibrating disk rapidly through its discharging opening;
2, also be provided with ash discharging hole on the said slideway vibrating disk, thereby can be discharged to the dust that accumulates in the slideway vibrating disk in the waste material box through ash discharging hole, help guaranteeing the work of feed mechanism efficient stable towards the waste material box;
3, be provided with three vibrators in this pay-off altogether, so that operation and maintenance is got up is convenient.
Description of drawings
Fig. 1 is the structural representation of the utility model;
Fig. 2 is the structural representation of slideway mechanism;
Fig. 3 is the front elevation of Fig. 2.
The implication of mark is following among the figure:
10-feed bin, 20-funnel vibration box, 30-slideway vibrating disk
31-material acceptance division, 32-the first slideway, 33-interconnecting gangway
34-the second slideway 35-leakage hawk 40-waste material box 50-the three vibrator
60-base plate, 70-resin, 80-the second sensor adapter plate.
The specific embodiment
Shown in Fig. 1~3, a kind of resin oscillation feed gear, this pay-off comprise feed bin 10 and drive feed bin 10 vibrations to carry the feed bin vibrating mechanism of resin; The downside of said feed bin 10 is provided with and is used to receive resin that feed bin 10 transports and with the funnel vibration box 20 of resin transfer to slideway mechanism, said funnel vibration box 20 links to each other with the funnel vibrating mechanism; The discharging opening of slideway mechanism is connected with lower procedure mutually, and the side of said slideway mechanism is provided with the slideway vibrating mechanism of driving slideway mechanism vibration with feeding.
Preferably, said feed bin vibrating mechanism is direct drive feed bin 10 flat first vibrators that shake.
Said funnel vibrating mechanism is for driving second vibrator of funnel vibration box 20 vibration feedings.
As shown in Figure 2; Said slideway mechanism comprises slideway vibrating disk 30; Said slideway vibrating disk 30 is provided with material acceptance division 31, first slideway 32 and second slideway 34 that links to each other successively; Said material acceptance division 31 is connected with the discharging opening of funnel vibration box 20 mutually, and the discharging opening of second slideway 34 is connected with lower procedure mutually.
The setting of said funnel vibration box 20 is in order materials such as resin to be transported to exactly material acceptance division 31 places of slideway vibrating disk 30; Said material acceptance division 31 can have multiple implementation, such as adopting collection such as dash receiver and gathering resin.
Further, as shown in Figure 2, said first slideway 32 is set to bevelled linear ramp from top to bottom, and the last side opening of first slideway 32 is connected with the exit of material acceptance division 31, to help the automatic orderly and directed arrangement of materials such as resin.
Be provided with the interconnecting gangway 33 that connects the two between said first slideway 32 and second slideway 34; Interconnecting gangway 33 places are provided with Lou hawk 35; Leak hawk 35 places and be provided with ash discharging hole towards waste material box 40; Said waste material box 40 is arranged on the downside of slideway vibrating disk 30, to help the getting rid of laying dust in the slideway vibrating disk 30 fast, guarantees efficiently feeding neatly.
Further, as shown in Figure 2, the groove that said second slideway 34 is set to linearly extend, and the width of said groove with wait to carry the particle diameter of resin match, to guarantee that resin is automatically in order and align and lead to discharging opening after neat.
As shown in Figure 1, said slideway vibrating mechanism is for driving the 3rd vibrator 50 that slideway vibrating disk 30 directly shakes.
Be provided with the first sensor that detects resin quantity in the said feed bin 10; Said first sensor is electrically connected with controller; Controller is electrically connected with the feed bin vibrating mechanism, and then when not having resin in the feed bin 10, controller gives the alarm with charging to operating personal on the one hand; Stop the action of feed bin vibrating mechanism on the other hand, to guarantee the feed of feed bin safety and stability.
Further; Said slideway vibrating disk 30 is provided with second sensor that detects resin quantity at second slideway, 34 places; Second sensor is electrically connected with controller, and controller is electrically connected with feed bin vibrating mechanism, funnel vibrating mechanism and sliding vibration mechanism, and said second sensor is arranged on the slideway vibrating disk 30 through the second sensor adapter plate 80; Then the resin in the slideway vibrating disk 30 more after a little while, controller starts the feed bin vibrating mechanism with feeding; And the resin in slideway vibrating disk 30 more for a long time; Controller makes feed bin vibrating mechanism and funnel vibrating mechanism stop action; When the resin quantity in the slideway vibrating disk 30 reaches the suitable number of setting; Controller is restarted feed bin vibrating mechanism and funnel vibrating mechanism with feeding, thereby has prevented the phenomenon that gets stuck effectively, works efficiently and stably to guarantee this pay-off.
Working process below in conjunction with Fig. 1~3 pair the utility model further specifies:
As shown in Figure 1, said pay-off is arranged on the base plate 60.
Comprise and base plate 3 is installed and is fixed in the resin vibrating mechanism of installing on the base plate 3.
What be in the top is feed bin 10, and feed bin 10 adopts the drawer type material loading, also is that feed bin 10 adopts the mode of extracting charging out, and the feed bin 10 that installs material is put back to control position, and this charging method is convenient to operation.Funnel vibration box 20 is equipped with in the below of feed bin 10; Funnel vibration box 20 is connected with second vibrator, the amount of resin in slideway vibrating disk 30 more after a little while, first vibrator and first vibrator all vibrate; First vibrator drives feed bin 10 and supplies with resin; Resin falls into material acceptance division 31 places of slideway vibrating disk 30 exactly through funnel vibration box 20, and the slideway part of slideway vibrating disk 30 mainly is made up of first slideway 32, interconnecting gangway 33, second slideway 34, and said first slideway 32, interconnecting gangway 33, second slideway 34 constitute a hemi-closure space; Resin in the slideway vibrating disk 30 drives through the 3rd vibrator 50; To automatically in order and align neatly, and and roll forward exactly, the discharging opening that always arrives slideway vibrating disk 30 is sentenced with next procedure and is connected mutually.

Claims (10)

1. resin oscillation feed gear is characterized in that: this pay-off comprises feed bin (10) and drives feed bin (10) vibration to carry the feed bin vibrating mechanism of resin; The downside of said feed bin (10) is provided with and is used to receive resin that feed bin (10) transports and with the funnel vibration box (20) of resin transfer to slideway mechanism, said funnel vibration box (20) links to each other with the funnel vibrating mechanism; The discharging opening of slideway mechanism is connected with lower procedure mutually, and the side of said slideway mechanism is provided with the slideway vibrating mechanism of driving slideway mechanism vibration with feeding.
2. resin oscillation feed gear according to claim 1 is characterized in that: said feed bin vibrating mechanism is flat first vibrator that shakes of direct drive feed bin (10).
3. resin oscillation feed gear according to claim 2 is characterized in that: said funnel vibrating mechanism is for driving second vibrator of funnel vibration box (20) vibration feeding.
4. resin oscillation feed gear according to claim 3; It is characterized in that: said slideway mechanism comprises slideway vibrating disk (30); Said slideway vibrating disk (30) is provided with material acceptance division (31), first slideway (32) and second slideway (34) that links to each other successively; Said material acceptance division (31) is connected with the discharging opening of funnel vibration box (20) mutually, and the discharging opening of second slideway (34) is connected with lower procedure mutually.
5. resin oscillation feed gear according to claim 4 is characterized in that: said first slideway (32) is set to bevelled linear ramp from top to bottom, and the last side opening of first slideway (32) is connected with the exit of material acceptance division (31).
6. resin oscillation feed gear according to claim 5; It is characterized in that: be provided with the interconnecting gangway (33) that connects the two between said first slideway (32) and second slideway (34); Interconnecting gangway (33) locates to be provided with Lou hawk (35); Leak hawk (35) and locate to be provided with the ash discharging hole towards waste material box (40), said waste material box (40) is arranged on the downside of slideway vibrating disk (30).
7. resin oscillation feed gear according to claim 6 is characterized in that: the groove that said second slideway (34) is set to linearly extend, and the width of said groove with wait to carry the particle diameter of resin to match.
8. resin oscillation feed gear according to claim 7 is characterized in that: said slideway vibrating mechanism is for driving the 3rd vibrator (50) that slideway vibrating disk (30) directly shakes.
9. according to each described resin oscillation feed gear of claim 1~8; It is characterized in that: be provided with the first sensor that detects resin quantity in the said feed bin (10); Said first sensor is electrically connected with controller, and controller is electrically connected with the feed bin vibrating mechanism.
10. according to each described resin oscillation feed gear of claim 1~8; It is characterized in that: said slideway vibrating disk (30) locates to be provided with second sensor that detects resin quantity at second slideway (34); Second sensor is electrically connected with controller, and controller is electrically connected with feed bin vibrating mechanism, funnel vibrating mechanism and sliding vibration mechanism.
CN201120272425XU 2011-07-29 2011-07-29 Resin vibration feeding device Withdrawn - After Issue CN202181080U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201120272425XU CN202181080U (en) 2011-07-29 2011-07-29 Resin vibration feeding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201120272425XU CN202181080U (en) 2011-07-29 2011-07-29 Resin vibration feeding device

Publications (1)

Publication Number Publication Date
CN202181080U true CN202181080U (en) 2012-04-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201120272425XU Withdrawn - After Issue CN202181080U (en) 2011-07-29 2011-07-29 Resin vibration feeding device

Country Status (1)

Country Link
CN (1) CN202181080U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102390668A (en) * 2011-07-29 2012-03-28 铜陵富仕三佳机械有限公司 Resin vibration feeding device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102390668A (en) * 2011-07-29 2012-03-28 铜陵富仕三佳机械有限公司 Resin vibration feeding device

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20120404

Effective date of abandoning: 20130807

RGAV Abandon patent right to avoid regrant