CN215438291U - Rubber particle vibrating disk - Google Patents

Rubber particle vibrating disk Download PDF

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Publication number
CN215438291U
CN215438291U CN202120815635.2U CN202120815635U CN215438291U CN 215438291 U CN215438291 U CN 215438291U CN 202120815635 U CN202120815635 U CN 202120815635U CN 215438291 U CN215438291 U CN 215438291U
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track
screening
groove
rubber
row
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CN202120815635.2U
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马小野
高乾
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Suzhou Qianmao Intelligent Equipment Co ltd
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Suzhou Qianmao Intelligent Equipment Co ltd
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Abstract

The utility model discloses a rubber particle vibrating disc which comprises a circular vibrator, a straight vibrator and a vibrating disc, wherein the circular vibrator is arranged at the bottom of the vibrating disc, a vibrating track is arranged in the vibrating disc and at least comprises a smooth track, a single-row screening track, a first single screening track, a detection track and a straightening track which are sequentially connected end to end, the straight vibrator is arranged at the bottom of the detection track, and a first air blowing groove is arranged at part of the single-row screening track; the first single screening track can only supply single rubber particle to loop through, and its afterbody with the single row screening track is crisscross to be set up, and crisscross position department forms crosses the cab apron, and just can hold a granule, crosses the cab apron top and is provided with the subassembly of blowing, and one side of first single screening track is provided with the defective work groove, and the subassembly of blowing aims at the defective work groove, is provided with the second groove of blowing on the first single screening track. The utility model is beneficial to feeding rubber particles and preventing the rubber particles from being adhered.

Description

Rubber particle vibrating disk
Technical Field
The utility model relates to a rubber particle vibrating disk.
Background
The vibration disc is an auxiliary feeding device, is applied to automatic assembling equipment or automatic processing machinery, replaces manual feeding, and improves feeding efficiency. At present, for feeding of square rubber particles, when the rubber particles are fed by using a vibration disc, the rubber particles and the rubber particles are easy to stack, and the rubber particles are not easy to separate due to the material characteristics of the rubber particles, so that inconvenience is brought to feeding.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects, the utility model aims to provide the rubber particle vibrating disc which is beneficial to feeding of rubber particles and prevents the rubber particles from being adhered.
In order to achieve the above purposes, the utility model adopts the technical scheme that: the utility model provides a rubber granule vibration dish, includes that the circle shakes, directly shakes, the vibration dish, the circle shakes and sets up in vibration dish bottom and drive vibration dish vibration, set up round involute spiral rising shake the material track in the vibration dish, shake the material track and lean out, shake the material track and include smooth track, single screening track, first single screening track, detection track, the track of putting right of end to end in proper order at least, single screening track, first single screening track, detection track's passageway bottom all are the V-arrangement, the orbital passageway bottom of putting right is square, directly shake and set up in detection track bottom, directly shake and set up in detection track below, single screening track only can hold one row of rubber granule, single screening track's partial position is provided with first air-blowing groove; the first single screening track can only allow single rubber particles to sequentially pass through, the first single screening track and the tail of the single row of screening tracks are arranged in a staggered mode, a transition plate capable of accommodating only one particle is formed at the staggered position, an air blowing assembly is arranged above the transition plate, an unqualified product groove is formed in one side of the first single screening track, the air blowing assembly is aligned to the unqualified product groove, and a second air blowing groove is formed in the first single screening track.
The rubber particle vibration disc has the advantages that the single-row screening tracks and the single screening tracks are adopted, rubber particles do not enter the detection tracks and are arranged side by side or overlapped side by side, the possibility of overlapping or side by side of the rubber particles is reduced, the air blowing assembly can blow the rubber particles larger than the preset size or overlapped above into the unqualified product grooves, the rubber particles are scattered for the second time through the arrangement of the first air blowing groove and the second air blowing groove, the possibility of mutual adhesion of the rubber particles is reduced through twice elimination, the problem that the rubber particles are not easy to separate is solved, and the using effect of feeding the single particles into the butting machine table is achieved.
Preferably, the single-row screening track comprises a first single-row screening groove and a second single-row screening groove which are connected end to end, and an arc-shaped screening groove which is higher than the bottom of the screening groove and can only contain one row of rubber particles is arranged in the first single-row screening groove; the inboard in second single row screening groove is provided with first landing groove, is provided with the second single row screening groove of first landing groove department only can hold one row of rubber granule and be provided with the third hole of blowing, the distance between third hole of blowing and the second single row screening groove tank bottom only can hold a rubber granule, first groove setting of blowing is on the cell wall in second single row screening groove. Arc screening groove makes rubber granules arrange in order side by side for the first time, recycle the second and singly arrange the screening groove and realize on the basis of singly arranging rubber granules, cooperation third air blow hole, can blow down the rubber granules of stack in rubber granules top to the vibration dish in from first landing groove, or blow down the rubber granules that the size is big to the vibration dish, consequently adopt two at least singly arrange the screening groove and realize singly arranging the screening, guarantee to carry to first singly sieve orbital granule and be one row of setting, and tentatively filter the stack or be the great rubber granules of size.
Preferably, the arcuate screen slots start at the tail of the smooth track and end at the head of the second single row of screen slots.
Preferably, the first sliding-down chute starts at the middle of the second single-row screening chute and ends at the head end of the first single screening track. The first slide-down chute starts in the middle of the second single row of screening chutes and does not start at the head end because the large V-shaped chute at the head end of the second single row of screening chutes plays a transitional role.
Preferably, first single screening track includes first screening groove, the second screening groove that staggers in proper order and only hold a row of rubber granule from beginning to end, the crossing department of first screening groove and second screening groove also is provided with the subassembly of blowing, the second gas blow groove sets up on first screening groove, second screening groove, set up the outside at first screening groove on the defective work groove, the inboard of second screening groove is provided with the second and slides down the groove, be provided with first gas blow hole on the second screening groove, the distance between first gas blow hole and the second screening groove tank bottom is greater than the height of rubber granule. And removing the rubber particles or rubber particles with larger sizes which are superposed above by utilizing at least two times of air blowing assemblies.
Preferably, the unqualified product groove is provided with a first notch, the first notch is provided with a first material receiving barrel for collecting waste materials, a scattering device for scattering rubber particles is arranged in the first material receiving barrel, and the scattered rubber particles can be thrown into the vibration disc again.
Preferably, a second single screening track is arranged between the first single screening track and the detection track, the second single screening track is a semi-closed channel, the shape of the second single screening track is matched with that of a single rubber particle, only the single rubber particle can pass through the second single screening track in sequence, and a third air blowing groove is formed in the channel of the second single screening track. The orbital setting of single screening of second guarantees that single rubber granule is not from top to bottom left and right sides and glues other rubber granules, and the setting of third air blowing groove can prevent that rubber granule from gluing in the orbital passageway of single screening of second.
Preferably, the detection track is an open track, a tawny acrylic baffle is fixed above the detection track, so that the state of the material can be observed conveniently, the tawny acrylic baffle is positioned behind the optical fiber detection sensor, and the distance between the tawny acrylic baffle and the open track can only allow single rubber particles to pass through. The distance between the tawny ya keli baffle and the open track can only be used for single rubber granule to loop through, and it is only single rubber granule to guarantee to pass through.
Preferably, the inside of the one end that detects the track and meet with the pendulum track is provided with inboard inclined plane, with the outside that inboard inclined plane corresponds is the outside inclined plane that detects the track afterbody and the square groove of pendulum track head end respectively, the outside inclined plane is provided with the second hole of blowing, inboard inclined plane top is provided with the second breach that corresponds with the second hole of blowing, the below of second breach is provided with the second and receives the storage bucket. So as to prevent the rubber particles from being adhered again when the rubber particles travel in the detection track.
Preferably, an optical fiber detection sensor is arranged on the detection track.
Drawings
FIG. 1 is a perspective view of a first angle of the present embodiment;
FIG. 2 is a perspective view of a second angle of the present embodiment;
FIG. 3 is a partial enlarged view of the single screening track row and the first single screening track in this embodiment;
FIG. 4 is a perspective view of the second single screening track, the inspection track, and the alignment track in this embodiment;
FIG. 5 is a perspective view of a second single screening track in this embodiment;
fig. 6 is a perspective view of the connection between the detection rail and the rectification rail in this embodiment.
Detailed Description
The following detailed description of the preferred embodiments of the present invention, taken in conjunction with the accompanying drawings, will make the advantages and features of the utility model easier to understand by those skilled in the art, and thus will clearly and clearly define the scope of the utility model.
Referring to fig. 1-4, the rubber particle vibration disk of this embodiment includes a circular vibration disk 1, a straight vibration disk 2, the circular vibration disk 1 is disposed at the bottom of the vibration disk 2 and drives the vibration disk 2 to vibrate, the vibration disk 2 can rotate in a clockwise or counterclockwise vibration mode through the circular vibration disk 1, a circle of involute spiral ascending vibration track is disposed in the vibration disk 2, the circular vibration disk 1 in this embodiment drives the rubber particles in the vibration disk 2 to be sequentially discharged from the vibration track, the vibration track in this embodiment inclines outward, so that the rubber particles incline to lean on the vibration track one by one.
In order to make the rubber granule can sort in proper order, discharge and shake the material track, then shake the material track and include the smooth track 3 of end to end in proper order at least, single row screening track 4, first single screening track 5, the single screening track 8 of second, detect track 6, and the track 7 of just putting, directly shake the setting in detecting track 6 bottom, wherein, single row screening track 4, first single screening track 5, the passageway bottom that detects track 6 all is the V-arrangement, the passageway bottom that just puts track 7 is square, directly shake the setting in detecting track 6 below.
The smooth rail 3 is used for guiding the rubber particles in the vibration disk 2 to the single-row screening rail 4, the single-row screening rail 4 can only contain one row of rubber particles, and a first blowing groove 42 is arranged at a part of the position of the single-row screening rail 4.
In order to ensure that the rubber particles are conveyed in a single row as much as possible so as to reduce the side adhesion of other rubber particles to the single row of rubber particles, the single row screening track 4 comprises a first single row screening groove 4a and a second single row screening groove 4b which are connected end to end. Be provided with in the first single row screening groove 4a in this embodiment and be higher than this tank bottom and only can hold the arc screening groove 4c of a row of rubber granule, and is same, arc screening groove 4c also wholly leans out, make rubber granule can not drop from arc screening groove 4c, during the vibration, rubber granule arranges along smooth track 3 to the arc screening groove 4c of first single row screening groove 4a, arc screening groove 4c can only hold a row of rubber granule, unnecessary rubber granule drops to first single row screening groove 4a, finally drop to inside the vibration dish 2, realize the screening of first single row rubber granule.
Then, the rubber particles conveyed from the first single-row screening groove 4a are driven to a second single-row screening groove 4b by the circular vibration 1, the second single-row screening groove 4b is also obliquely conveyed, a first sliding groove 41 is arranged on the inner side of the second single-row screening groove 4b, the second single-row screening groove 4b provided with the first sliding groove 41 can only accommodate one row of rubber particles, a third air blowing hole 43 is arranged on the outer side of the second single-row screening groove, the distance between the third air blowing hole 43 and the bottom of the second single-row screening groove 4b can only accommodate one rubber particle, the third air blowing hole 43 is normally opened, when the rubber particles in the second single-row screening groove 4b are overlapped, then, higher than the third blowing holes 43, the rubber particles above the third blowing holes are blown down into the first falling groove 41, finally reach the inside of the vibration plate 2, and the rubber granule of below can be spacing owing to sit in the second single row screening groove 4b that is the V-arrangement, can not be along with the rubber granule of top in the flying to vibration dish 2. If the rubber particles are large in size, they are blown down into the vibration plate 2. To realize the second screening of the single-row rubber particles, in order to prevent the rubber particles from adhering to the second single-row screening groove, the groove wall of the second single-row screening groove 4b in this embodiment is provided with a first blowing groove 42.
For better transport of the single row of particles, the arcuate screen chute 4c in this embodiment starts at the end of the smooth track 3 and ends at the head of the second single row of screen chutes 4 b. The first chute 41 starts in the middle of the second single row of screening slots 4b and ends at the head end of the first single screening track 5.
Through twice screening of single-row rubber particles, after the rubber particles on the side surface are removed, the rubber particles stacked above or particles with larger size need to be removed. In order to achieve the effect, the first single screening track 5 in this embodiment can only allow a single rubber particle to pass through, the first single screening track and the tail of the single screening track 4 are arranged in a staggered manner, a transition plate 51 is formed at the staggered position, the transition plate 51 is also inclined and can only accommodate one particle, an air blowing assembly 52 is arranged above the transition plate 51, when the air blowing assembly 52 blows air, the lowermost rubber particle is supported by the transition plate 51 and cannot be blown down, but the air blowing assembly 52 can blow the rubber particle larger than a predetermined size or superposed above into the defective product groove 53 on one side of the first single screening track 5, a second air blowing groove 54 is arranged on the first single screening track 5, and the second air blowing groove 54 can prevent the rubber particle from being adhered to the second air blowing groove 54.
In this embodiment, the first single screening track 5 includes a first screening slot 5a and a second screening slot 5b which are sequentially staggered from end to end and only accommodate a row of rubber particles, the first screening slot 5a and the second screening slot 5b are also provided with the air blowing assembly for removing the rubber particles stacked above, the first screening slot 5a and the second screening slot 5b are both provided with the second air blowing slot 54 for preventing the rubber particles from being adhered, the defective product slot 53 is arranged outside the first screening slot 5a, when the air blowing assembly 52 between the single screening track 4 and the first single screening track 5 blows the overlapped rubber particles to the defective product slot 53, the defective product slot 53 is provided with a first gap 57, the first receiving bucket 55 is arranged at the first gap 57, the first receiving bucket 55 is provided with a scattering device for scattering the rubber particles, and after scattering, it is then poured into the vibrating pan 2.
In addition, the outside of second screening groove 5b is provided with first blowing hole 58, first blowing hole 58 is normally open, the distance between first blowing hole 58 and the second screening groove 5b tank bottom is greater than the height of rubber granule, only can hold a rubber granule between first blowing hole 58 and the second screening groove 5b tank bottom promptly, the inboard of second screening groove 5b is provided with second landing groove 56, if there is superimposed rubber granule or the great rubber granule of size, then must block first blowing hole 58, normally open first blowing hole 58 blows in second landing groove 56 with the rubber granule, finally fall inside to vibration dish 2.
After twice single screening, basically, each rubber particle can be ensured not to be attached to other rubber particles, and then the rubber particles pass through the second single screening track 8, the second single screening track 8 is a semi-closed channel, the shape of the second single screening track is matched with that of the single rubber particle, as shown in fig. 5, only the single rubber particle can pass through the semi-closed channel, a third air blowing groove 81 is arranged in the channel of the second single screening track 8, and the rubber particles are also prevented from being adhered in the channel of the second single screening track 8.
The rubber particles discharged from the channel of the second single screening track 8 are conveyed to the detection track 6, the detection track 6 is an open track, an optical fiber detection sensor 61 is arranged on the detection track 6 and used for detecting whether the rubber particles are full, a tawny acrylic baffle 62 is fixed above the detection track 6, the tawny acrylic baffle 62 is located behind the optical fiber detection sensor 61, the distance between the tawny acrylic baffle 62 and the open track can only allow single rubber particles to sequentially pass through, and only single rubber particles are guaranteed to pass through.
In order to prevent the rubber particles traveling on the open track of the detection track 6 from adhering together, the present embodiment is configured to remove the adhered rubber particles. The concrete structure is as follows:
as shown in fig. 6, an inner inclined surface 66 is provided on the inner side of one end of the detection rail 6, which is connected to the aligning rail 7, an outer inclined surface 67 on the tail portion of the detection rail 6 and a rectangular groove 68 on the head portion of the aligning rail 7 are provided on the outer side corresponding to the inner inclined surface 66, a second air blowing hole 65 is provided on the outer inclined surface 67, a second notch 63 corresponding to the second air blowing hole 65 is provided above the inner inclined surface 66, and a second material receiving barrel 64 is provided below the second notch 63. When the rubber particles travel in the detection track 6, if the rubber particles are not adhered, the rubber particles vibrate from the outer inclined surface 67 to the inner inclined surface 66, and then fall from the inner inclined surface 66 to the square groove 71 to be conveyed to the aligning track 7; if the rubber particles are adhered when walking in the detection track 6, the rubber particles cannot fall from the inner side inclined surface 66 to the square groove 71, at the moment, the second air blowing hole 65 blows air, and the adhered rubber particles are blown away again, so that the rubber particles can be conveyed out without being adhered.
The above embodiments are merely illustrative of the technical concept and features of the present invention, and the present invention is not limited thereto, and any equivalent changes or modifications made according to the spirit of the present invention should be included in the scope of the present invention.

Claims (10)

1. The utility model provides a rubber granule vibration dish, includes that the circle shakes (1), directly shakes, vibration dish (2), the circle shakes (1) and sets up in vibration dish (2) bottom and drive vibration dish (2) vibration, set up round involute spiral shell screwing in rose's material track that shakes in vibration dish (2), its characterized in that: the material vibrating track at least comprises a smooth track (3), a single-row screening track (4), a first single screening track (5), a detection track (6) and a straightening track (7) which are sequentially connected end to end, the bottoms of the channels of the single-row screening track (4), the first single screening track (5) and the detection track (6) are all in a V shape, the bottom of the channel of the straightening track (7) is square, and the straight vibration is arranged below the detection track (6);
the single-row screening track (4) can only contain one row of rubber particles, and a first blowing groove (42) is formed in part of the position of the single-row screening track (4);
the first single screening track (5) can only be used for single rubber particles to pass through, and the tail of the first single screening track (5) is arranged in a staggered mode, a transition plate (51) which can only contain one particle is formed at the staggered position, an air blowing assembly (52) is arranged above the transition plate (51), one side of the first single screening track (5) is provided with a defective product groove (53), the air blowing assembly (52) is aligned to the defective product groove (53), and a second air blowing groove (54) is formed in the first single screening track (5).
2. The rubber pellet vibratory pan of claim 1, wherein: the single-row screening track (4) comprises a first single-row screening groove (4a) and a second single-row screening groove (4b) which are connected end to end, and an arc-shaped screening groove (4c) which is higher than the bottom of the screening groove and can only contain one row of rubber particles is arranged in the first single-row screening groove (4 a); the inboard of second single row screening groove (4b) is provided with first landing groove (41), is provided with second single row screening groove (4b) of first landing groove (41) department only can hold a row of rubber granule and its outside is provided with third gas hole (43), the distance between third gas hole (43) and second single row screening groove (4b) tank bottom only can hold a rubber granule, first gas groove (42) set up on the cell wall of second single row screening groove (4 b).
3. The rubber pellet vibratory pan of claim 2, wherein: the arc-shaped screening grooves (4c) start from the tail part of the smooth track (3) and end at the head end of the second single-row screening groove (4 b).
4. The rubber pellet vibratory pan of claim 2, wherein: the first slide-down slot (41) starts in the middle of the second single-row screening slot (4b) and ends at the head end of the first single screening track (5).
5. The rubber pellet vibratory pan of claim 1, wherein: first single screening track (5) are including crisscross first screening groove (5a), the second screening groove (5b) that just holds a row of rubber granule in proper order from beginning to end, the crossing of first screening groove (5a) and second screening groove (5b) also is provided with subassembly (52) of blowing, second air blowing groove (54) set up on first screening groove (5a), second screening groove (5b), set up the outside at first screening groove (5a) on defective work groove (53), the inboard of second screening groove (5b) is provided with second landing groove (56), be provided with first air blowing hole (58) on second screening groove (5b), the distance between first air blowing hole (58) and second screening groove (5b) tank bottom is greater than the height of rubber granule.
6. The rubber particle vibratory pan of claim 5, wherein: the rubber particle scattering device is characterized in that a first notch (57) is formed in the unqualified product groove (53), a first receiving barrel (55) is arranged at the first notch (57), and a scattering device for scattering rubber particles is arranged in the first receiving barrel (55).
7. The rubber pellet vibratory pan of claim 1, wherein: be provided with single screening track of second (8) between first single screening track (5), detection track (6), single screening track of second (8) are semi-enclosed passageway and shape and single rubber particle shape matching, only can supply single rubber particle to loop through, be provided with third air blow groove (81) in the passageway of single screening track of second (8).
8. The rubber pellet vibratory pan of claim 7, wherein: detect track (6) and be the open-type track, the top of detecting track (6) is fixed with tawny ya keli baffle (62), tawny yakeli baffle (62) are located optical fiber detection sensor's (61) rear, the distance between tawny yakeli baffle (62) and the open-type track only can supply single rubber particle to loop through.
9. The rubber pellet vibratory pan of claim 8, wherein: the inside of the one end that detects track (6) and pendulum just track (7) and meet is provided with inboard inclined plane (66), with the outside that inboard inclined plane (66) correspond is square groove (71) of outside inclined plane (67) and pendulum just track (7) head end of detecting track (6) afterbody respectively, outside inclined plane (67) are provided with second gas hole (65), inboard inclined plane (66) top is provided with second breach (63) that correspond with second gas hole (65), the below of second breach (63) is provided with second receipts storage bucket (64).
10. The rubber pellet vibratory pan of claim 1, wherein: and an optical fiber detection sensor (61) is arranged on the detection track (6).
CN202120815635.2U 2021-04-21 2021-04-21 Rubber particle vibrating disk Active CN215438291U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120815635.2U CN215438291U (en) 2021-04-21 2021-04-21 Rubber particle vibrating disk

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120815635.2U CN215438291U (en) 2021-04-21 2021-04-21 Rubber particle vibrating disk

Publications (1)

Publication Number Publication Date
CN215438291U true CN215438291U (en) 2022-01-07

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Application Number Title Priority Date Filing Date
CN202120815635.2U Active CN215438291U (en) 2021-04-21 2021-04-21 Rubber particle vibrating disk

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115318679A (en) * 2022-10-17 2022-11-11 赫比(苏州)通讯科技有限公司 Scissors foot detection device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115318679A (en) * 2022-10-17 2022-11-11 赫比(苏州)通讯科技有限公司 Scissors foot detection device

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