CN215206888U - Vibration disc structure - Google Patents
Vibration disc structure Download PDFInfo
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- CN215206888U CN215206888U CN202022300838.6U CN202022300838U CN215206888U CN 215206888 U CN215206888 U CN 215206888U CN 202022300838 U CN202022300838 U CN 202022300838U CN 215206888 U CN215206888 U CN 215206888U
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Abstract
The utility model discloses a vibration dish structure, which comprises a disc body, be provided with vibration track and flat conveying track on the disk body, the vibration track is spiral rising structure, vibration track upper end is joined in the flat conveying track, be provided with the screening mouth on the flat conveying track, the screening mouth sets up along flat conveying track extending direction. Through set up the screening mouth on the vibration track at the disk body, reject the product of different forms of placing in the vibration transportation. Not only the product screening function of the vibration plate is supplemented, but also the labor cost is effectively reduced. The peripheral protection side wall of disk body is used for the bearing to be rejected by the screening opening electric capacity product to this electric capacity except just putting the state is collected.
Description
Technical Field
The utility model belongs to the technical field of condenser production facility technique and specifically relates to a vibration dish structure is related to.
Background
The vibrating disc is an auxiliary feeding device of an automatic assembly or automatic processing machine, and in the production and processing process of the capacitor, the capacitor needs to be fed by using the vibrating disc because the capacitor is small in size and large in quantity; however, due to the fact that the positive pins and the negative pins of the capacitor exist, the positive pins and the negative pins need to be judged in the feeding process, the common vibration disc is only responsible for feeding the capacitor, the positive pin and the negative pin do not have the function of judging the polarity of the positive pins and the negative pin, and the capacitor which is subjected to polarity separation cannot be sorted and fed according to the set positive and negative directions, so that other machines or workers are needed to perform polarity separation on the capacitor after the feeding is completed by using the common vibration disc, the production and processing speed of the capacitor is influenced, and the production efficiency is reduced.
For example, "a electric capacity vibration dish" that discloses on chinese patent literature, its bulletin number "CN 210126845U", including protection casing, second drawing piece and hinder the material piece, the base is installed to the bottom of protection casing, and is swing joint between protection casing and the base, the bottom of base is provided with the callus on the sole, one side middle part that the base is close to the protection casing is connected with the power mouth, and is swing joint between power mouth and the protection casing, the base is close to the opposite side mid-mounting of protection casing and is equipped with the screw hasp, and is threaded connection between protection casing and the screw hasp, the inside middle part of protection casing is fixed with the electro-magnet, and the axis is crossing between protection casing and the electro-magnet. Although the vibration disc can realize the transportation and arrangement of products, the screening or adjustment of the capacitors in different angles and different placement forms is lacked in the transportation process, so that the capacitors which are not in a arranged state still need to be manually removed.
Disclosure of Invention
Lack the problem to product screening function to vibration dish among the prior art, the utility model discloses a vibration dish structure is through setting up the screening mouth on the vibration track of disk body, rejects the product of form to the difference in the vibration transportation. Not only the product screening function of the vibration plate is supplemented, but also the labor cost is effectively reduced.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a vibration dish structure, includes the disk body, be provided with vibration track and flatly send the track on the disk body, the vibration track is spiral rising structure, vibration track upper end is joined in flatly sending the track, be provided with the screening mouth on the flatly sending the track, the screening mouth sets up along flatly sending track extending direction. The vibration track is used for conveying the capacitor products into the flat conveying track from bottom to top, and the spiral ascending type vibration track is used for simultaneously arranging and arranging the products when the capacitor products are conveyed, so that the products can be sequentially arranged and conveyed. The capacitor screening device is used for an operator to screen an upright capacitor through the vibrating disc, when the capacitor on the vibrating track is in an inclined state or an inverted state and passes through the screening opening, the gravity center position of the capacitor deviates from the upright state of the capacitor, so that the capacitor cannot fall through the screening opening, and the upright capacitor is distinguished and separated from capacitors in other position forms.
Preferably, the vibration track is arranged in the middle of the tray body, and the tray body comprises a protection side wall. The peripheral protection side wall of disk body is used for the bearing to be rejected by the screening opening electric capacity product to this is collected the electric capacity except just putting the state.
Preferably, the screening opening is an arc-shaped notch. The screening mouth is the arc structure that corresponds spiral vibration track for the screening of passing through the screening mouth on the transport route of electric capacity product on vibration track.
Preferably, the vibration track comprises a bottom and a side part, the bottom is of an inclined structure, and one side of the bottom, which is close to the center of the tray body, is higher than one side of the bottom, which is far away from the center of the tray body. The bottom of the vibration track with the inner high and the outer low is used for ensuring that the capacitors are accidentally dropped from the inner side of the vibration track due to pushing each other in the transportation process of the vibration track.
Preferably, the side part is arranged on one side of the bottom part far away from the center of the tray body, and the side part is longitudinally arranged. The lateral part is used for carrying out outside protection and spacing to the electric capacity product on the bottom, and the lateral part guarantees jointly with the bottom that the slope set up that electric capacity product can not drop by accident at the vibration dish in the continuous vibration process.
Preferably, the vibration track is provided with a limiting strip, one end of the limiting strip is arranged on the side portion, the limiting strip is arranged along the extension direction of the vibration track, one end, far away from the side portion, of the limiting strip is a free end, and the free end is close to the center of the tray body and is bent. Because the capacitance gravity center of the side-mounted state does not have larger deviation compared with the capacitance of the front-mounted state, and the side-mounted state cannot be screened by the screening opening in the mode of reducing the width of the vibration track, the limiting strip is used for removing the capacitance products in the side-mounted state. Because of the electric capacity height of side's state is greater than just putting, the electric capacity of inversion and tilt state, consequently can be blocked and fall into the disk body by spacing strip check, reject the electric capacity that the side state just can't be screened by the screening opening from this.
Preferably, the bottom of the tray body is provided with a driving mechanism, the driving mechanism comprises a motor and a contact tray, the contact tray is abutted against the lower end of the vibration track, and the motor is connected to the contact tray. The motor of the driving mechanism is a pulse type motor and is used for providing continuous pulse type vibration for the vibration track of the vibration disc and realizing the work of the vibration disc.
Therefore, the utility model discloses following beneficial effect has: (1) through set up the screening mouth on the vibration track at the disk body, reject the product of different forms of placing in the vibration transportation. Not only is the product screening function of the vibrating disc supplemented, but also the labor cost is effectively reduced; (2) the protective side wall at the periphery of the tray body is used for supporting the capacitor products rejected by the screening port so as to collect the capacitors except in the positive state; (3) the bottom of the vibration track with the high inside and the low outside is used for ensuring that the capacitors accidentally fall from the inner side of the vibration track due to mutual pushing in the transportation process of the vibration track, and the side part and the obliquely arranged bottom jointly ensure that the capacitor products cannot accidentally fall off in the continuous vibration process of the vibration disk; (4) the limiting strips are used for removing the capacitor products in the side-mounted state.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a side view of the present invention.
Fig. 3 is a cross-sectional view taken at a-a in fig. 2.
Fig. 4 is a plan view of the present invention.
In the figure: 1. disk body, 11, protection side wall, 2, vibration track, 21, bottom, 22, lateral part, 3, flatly sending track, 4, screening mouth, 5, spacing strip, 51, free end, 6, actuating mechanism, 61, contact dish.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description.
Example 1
As shown in fig. 1 and 3, the vibrating plate structure comprises a plate body 1, wherein a vibrating track 2 and a flat conveying track 3 are arranged on the plate body, the vibrating track is of a spiral ascending structure, the upper end of the vibrating track is connected with the flat conveying track, a screening opening 4 is arranged on the flat conveying track, and the screening opening is arranged along the extending direction of the flat conveying track. The vibration track is used for conveying the capacitor products into the flat conveying track from bottom to top, and the spiral ascending type vibration track is used for simultaneously arranging and arranging the products when the capacitor products are conveyed, so that the products can be sequentially arranged and conveyed. A electric capacity product that is used for operating personnel to need vibration dish screening to put, when electric capacity is the tilt state or invert the state and passes through the screening opening on the vibration track, because electric capacity focus position has some deviations compared in its positive state, consequently can't fall through the screening opening to this realizes that positive state electric capacity and the electric capacity of other position forms carry out difference and separation.
The vibration track is arranged in the middle of the tray body, and the tray body comprises a protection side wall 11. The screening opening is the arc breach. The vibration track comprises a bottom 21 and a side 22, the bottom is of an inclined structure, and one side of the bottom close to the center of the tray body is higher than one side of the bottom far away from the center of the tray body. The peripheral protection side wall of disk body is used for the bearing to be rejected by the screening opening electric capacity product to this is collected the electric capacity except just putting the state. The screening mouth is the arc structure that corresponds spiral vibration track for the screening of passing through the screening mouth on the transport route of electric capacity product on vibration track. The bottom of the vibration track with the inner high and the outer low is used for ensuring that the capacitors are accidentally dropped from the inner side of the vibration track due to pushing each other in the transportation process of the vibration track.
As shown in fig. 4, the side portion is provided on a side of the bottom portion away from the center of the tray body, and the side portion is provided longitudinally. Be provided with spacing 5 on the vibration track, spacing one end sets up in the lateral part, spacing sets up along vibration track extending direction, the one end that the lateral part was kept away from to spacing is free end 51, the free end is close to the crooked setting in disk body center. The lateral part is used for carrying out outside protection and spacing to the electric capacity product on the bottom, and the lateral part guarantees jointly with the bottom that the slope set up that electric capacity product can not drop by accident at the vibration dish in the continuous vibration process. Because the capacitance gravity center of the side-mounted state does not have larger deviation compared with the capacitance of the front-mounted state, and the side-mounted state cannot be screened by the screening opening in the mode of reducing the width of the vibration track, the limiting strip is used for removing the capacitance products in the side-mounted state. Because of the electric capacity height of side's state is greater than just putting, the electric capacity of inversion and tilt state, consequently can be blocked and fall into the disk body by spacing strip check, reject the electric capacity that the side state just can't be screened by the screening opening from this.
As shown in fig. 2, a driving mechanism 6 is arranged at the bottom of the tray body, the driving mechanism comprises a motor and a contact tray 61, the contact tray abuts against the lower end of the vibration track, and the motor is connected to the contact tray. The motor of the driving mechanism is a pulse type motor and is used for providing continuous pulse type vibration for the vibration track of the vibration disc and realizing the work of the vibration disc.
When the vibration disk disclosed by the embodiment works, the capacitor product enters the vibration track from the bottom end of the vibration track, spirals upwards through the vibration track along with the continuous vibration of the vibration disk and enters the flat conveying track. And the position form when the electric capacity product gets into the vibration track is not unified, therefore electric capacity product when the screening opening is being passed through to electric capacity product, and the electric capacity product of inversion or tilt state can be fallen into in the dish by the screening opening, and the electric capacity product of side-set state can be kept off by spacing strip and fall into in the dish, and the electric capacity product of just putting the state can progressively get into the flatly sending track at the continuous vibration in-process of vibration dish and carry out the product output.
In addition to the above embodiments, the technical features of the present invention can be re-selected and combined to form new embodiments within the scope of the claims and the specification of the present invention, which are all realized by those skilled in the art without creative efforts, and thus, the embodiments of the present invention which are not described in detail should be regarded as the specific embodiments of the present invention and are within the protection scope of the present invention.
Claims (5)
1. A vibration disc structure comprises a disc body, wherein a vibration track and a flat conveying track are arranged on the disc body, and the vibration disc structure is characterized in that the vibration track is of a spiral ascending structure, the upper end of the vibration track is connected with the flat conveying track, a screening opening is formed in the flat conveying track, and the screening opening is arranged along the extension direction of the flat conveying track; the vibration track comprises a bottom and a lateral part, the bottom is of an inclined structure, one side, close to the center of the tray body, of the bottom is higher than one side, far away from the center of the tray body, of the bottom, the lateral part is arranged on one side, far away from the center of the tray body, of the bottom, and the lateral part is longitudinally arranged.
2. The vibrating plate structure of claim 1 wherein said vibrating track is disposed in the middle of the plate body, said plate body including a protective skirt.
3. A vibratory pan structure as set forth in claim 1 wherein said screening openings are arcuate notches.
4. The vibrating disk structure as claimed in claim 1, wherein the vibrating track is provided with a limiting strip, one end of the limiting strip is arranged on the side part, the limiting strip is arranged along the extending direction of the vibrating track, the end of the limiting strip far away from the side part is a free end, and the free end is arranged in a bending way near the center of the disk body.
5. A vibrating disk structure as claimed in any one of claims 1 to 4, wherein a drive mechanism is provided at the bottom of the disk body, the drive mechanism comprising a motor and a contact disk, the contact disk abutting against the lower end of the vibrating track, the motor being connected to the contact disk.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022300838.6U CN215206888U (en) | 2020-10-15 | 2020-10-15 | Vibration disc structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022300838.6U CN215206888U (en) | 2020-10-15 | 2020-10-15 | Vibration disc structure |
Publications (1)
Publication Number | Publication Date |
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CN215206888U true CN215206888U (en) | 2021-12-17 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202022300838.6U Active CN215206888U (en) | 2020-10-15 | 2020-10-15 | Vibration disc structure |
Country Status (1)
Country | Link |
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CN (1) | CN215206888U (en) |
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2020
- 2020-10-15 CN CN202022300838.6U patent/CN215206888U/en active Active
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