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CN214878117U - A rapid conveying device for vibrating disc - Google Patents

A rapid conveying device for vibrating disc Download PDF

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Publication number
CN214878117U
CN214878117U CN202121258981.1U CN202121258981U CN214878117U CN 214878117 U CN214878117 U CN 214878117U CN 202121258981 U CN202121258981 U CN 202121258981U CN 214878117 U CN214878117 U CN 214878117U
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conveying
rail
frame
rapid
vibrating
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CN202121258981.1U
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Chinese (zh)
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彭高
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Dongguan Yuanhui Electric Appliance Co ltd
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Dongguan Yuanhui Electric Appliance Co ltd
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Abstract

本实用新型涉及振动盘技术领域,公开了一种振动盘用快速输送装置,为了提高振动盘输送物料的高效快速性,所述振动筛盘的排料端固定有第一输送轨道,所述第一输送轨道的一侧配套设置有第一输送机构,且第一输送轨道的排料端固定有第二输送轨道,所述第二输送轨道的一侧配套设置有第二输送机构。本实用新型通过第一输送机构与第一输送轨道的装配组合,以及第二输送机构与第二输送轨道的装配组合,取代了传统通过振动盘本身振动输送的形式,不仅提高物料的输送效率,同时能够加强物料输送的稳定性,避免物料在输送过程中出现卡住、堵塞的情况,有效的提高了振动盘对物料的快速输送性能,提高振动盘的实用性能。

Figure 202121258981

The utility model relates to the technical field of vibrating discs, and discloses a rapid conveying device for vibrating discs. One side of a conveying track is matched with a first conveying mechanism, and a discharge end of the first conveying track is fixed with a second conveying track, and one side of the second conveying track is matched with a second conveying mechanism. Through the assembly and combination of the first conveying mechanism and the first conveying track, and the assembly and combination of the second conveying mechanism and the second conveying track, the utility model replaces the traditional form of vibrating conveying through the vibrating plate itself, which not only improves the conveying efficiency of materials, but also improves the conveying efficiency of materials. At the same time, it can strengthen the stability of material conveying, avoid material jamming and blockage in the conveying process, effectively improve the rapid conveying performance of the vibrating plate for materials, and improve the practical performance of the vibrating plate.

Figure 202121258981

Description

Quick conveyor is used to vibration dish
Technical Field
The utility model relates to a vibration dish technical field specifically is a vibration dish is with quick conveyor.
Background
The vibrating disc is one auxiliary feeding equipment for automatic assembling and machining machine, and has one pulse electromagnet below the hopper to make the hopper vibrate vertically, one inclined spring leaf to drive the hopper to vibrate around its vertical shaft, and the parts inside the hopper to ascend along the spiral track and to enter the assembling or machining position automatically in the same state via the screening or posture change of the tracks.
However, the conveying device of the vibration disc in the market at present has some defects, the traditional conveying device carries out intermittent conveying through vibration generated by the vibration disc body, and the conveying is unstable and the situation of blocking is easily caused in the conveying process. Accordingly, those skilled in the art have provided a rapid conveyor for a vibratory pan to solve the problems set forth in the background art described above.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a vibration dish is with quick conveyor to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a quick conveying device for a vibrating tray comprises the vibrating tray, wherein a first conveying rail is fixed at the discharging end of the vibrating tray, a first conveying mechanism is arranged on one side of the first conveying rail in a matched mode, a second conveying rail is fixed at the discharging end of the first conveying rail, and a second conveying mechanism is arranged on one side of the second conveying rail in a matched mode;
the first conveying mechanism comprises a first conveying frame fixed on one side of a first conveying track, a first conveying motor is arranged at one end position above the first conveying frame, pushing wheels are symmetrically embedded and connected to the inner side of the first conveying frame, a transmission gear is arranged at the tail end of each pushing wheel, and the transmission gear is meshed and connected with a synchronous gear;
the second conveying mechanism comprises a second conveying frame fixed on one side of a second conveying track, the inner side of the second conveying frame is located at one end position and is connected with a driving rotating shaft in a rotating mode, the inner side of the second conveying frame is located at the other end position and is connected with a driven rotating shaft in a rotating mode, the driving rotating shaft and the outer side of the driven rotating shaft are connected with a conveying belt, anti-skidding sawteeth are symmetrically arranged on the outer side of the conveying belt, and a second conveying motor is arranged on one end position of the upper portion of the second conveying frame.
As a further aspect of the present invention: the first conveying rail and the first conveying frame are both arc-shaped structures, and a first conveying channel is arranged between the first conveying rail and the first conveying frame at intervals.
As a further aspect of the present invention: thirty groups of pushing wheels are not less than in number, the spacing distances among the pushing wheels are the same, and the pushing wheels are uniformly and symmetrically arranged relative to the arc center of the first conveying frame.
As a further aspect of the present invention: the transmission gear and the synchronous gear are the same in size, and the pushing wheel and the synchronous gear rotate synchronously through the transmission gear.
As a further aspect of the present invention: the second conveying rail and the second conveying frame are both linear mechanisms, and a second conveying channel is arranged between the second conveying rail and the second conveying frame at intervals.
As a further aspect of the present invention: the anti-slip saw teeth are of an oblique structure, and the oblique direction of the anti-slip saw teeth is the same as the feeding direction of the second conveying rail.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a first conveying mechanism and first delivery track's assembly combination to and second conveying mechanism and second delivery track's assembly combination, replaced the tradition form of passing through vibration dish vibration transport itself, not only improve the transport efficiency of material, can strengthen the stability that the material was carried simultaneously, avoid the material to appear blocking, the condition of jam in transportation process.
Drawings
FIG. 1 is a schematic structural view of a rapid conveyor for a vibratory pan;
FIG. 2 is a schematic structural view of a first conveying mechanism in the rapid conveying apparatus for the vibration plate;
fig. 3 is a schematic structural view of a second conveying mechanism in the rapid conveying apparatus for the vibration plate.
In the figure: 1. a vibrating screen tray; 2. a first conveying motor; 3. a first carriage; 4. a first conveying rail; 5. a second conveying track; 6. a second carriage; 7. a second conveying motor; 8. a push wheel; 9. a transmission gear; 10. a synchronizing gear; 11. a driving rotating shaft; 12. a conveyor belt; 13. anti-skid sawteeth; 14. a driven shaft.
Detailed Description
Referring to fig. 1 to 3, in an embodiment of the present invention, a fast conveying device for a vibrating tray includes a vibrating tray 1, a first conveying rail 4 is fixed to a discharge end of the vibrating tray 1, a first conveying mechanism is provided on one side of the first conveying rail 4, the first conveying mechanism includes a first conveying frame 3 fixed to one side of the first conveying rail 4, a first conveying motor 2 is provided at one end position above the first conveying frame 3, a pushing wheel 8 is symmetrically embedded and connected to an inner side of the first conveying frame 3, a transmission gear 9 is provided at a tail end of the pushing wheel 8, the transmission gear 9 is engaged and connected to a synchronizing gear 10, the number of the pushing wheels 8 is not less than thirty groups, and the spacing distance between the pushing wheels 8 is the same, the pushing wheels 8 are uniformly and symmetrically arranged relative to an arc center of the first conveying frame 3, the size of the transmission gear 9 is the same as that of the synchronizing gear 10, propelling movement wheel 8 rotates through drive gear 9 and synchronous gear 10 synchronization, in the use to the vibration dish, shale shaker dish 1 is with the material in it spiral vibration transport in proper order to the arc passageway of first carriage 3 and first delivery track 4 constitution, and then first conveyor motor 2 work, drive gear 9 of propelling movement wheel 8 one end and rotate, through the meshing of drive gear 9 and synchronous gear 10 tooth, drive multiunit propelling movement wheel 8 and rotate, carry out active propelling movement processing to the material in the arc passageway, with the incessant propelling movement of material circulation to the second carriage 6 and the straight line track of second delivery track 5 constitution in.
A second conveying rail 5 is fixed at the discharge end of the first conveying rail 4, a second conveying mechanism is arranged on one side of the second conveying rail 5 in a matched manner, the second conveying mechanism comprises a second conveying frame 6 fixed on one side of the second conveying rail 5, the first conveying rail 4 and the first conveying frame 3 are both of arc structures, a first conveying channel is arranged between the first conveying rail 4 and the first conveying frame 3 at a spacing interval, the second conveying rail 5 and the second conveying frame 6 are both of linear mechanisms, a second conveying channel is arranged between the second conveying rail 5 and the second conveying frame 6 at a spacing interval, when the conveying device is used, the materials can be actively conveyed and processed through the arc channel formed by the first conveying frame 3 and the first conveying rail 4 in the first conveying mechanism and the linear channel formed by the second conveying frame 6 and the second conveying rail 5 in the second conveying mechanism, the vibration plate has the advantages that the traditional vibration conveying mode through the vibration plate is replaced, the conveying efficiency of materials is improved, meanwhile, the stability of material conveying can be enhanced, and the situation that the materials are clamped and blocked in the conveying process is avoided.
The inner side of the second conveying frame 6 is rotatably connected with a driving rotating shaft 11 at one end position, the inner side of the second conveying frame 6 is rotatably connected with a driven rotating shaft 14 at the other end position, the outer sides of the driving rotating shaft 11 and the driven rotating shaft 14 are both connected with a conveying belt 12, the outer sides of the conveying belts 12 are symmetrically provided with anti-skidding sawteeth 13, a second conveying motor 7 is arranged at one end position above the second conveying frame 6, the anti-skidding sawteeth 13 are of an oblique structure, the inclination direction of the anti-skidding sawteeth 13 is the same as the feeding direction of the second conveying track 5, when materials are conveyed into a linear track formed by the second conveying frame 6 and the second conveying track 5, the second conveying motor 7 works to drive the driving rotating shaft 11 to rotate, the conveying belt 12 is driven to rotate through the transfer transmission of the driven rotating shaft 14, and the materials are linearly conveyed through the anti-skidding sawteeth 13 on the conveying belt 12, and circularly and actively conveying the materials out.
The utility model discloses a theory of operation is: when the vibrating tray is used, the vibrating screen tray 1 sequentially and spirally conveys materials in the vibrating screen tray into an arc-shaped channel formed by a first conveying frame 3 and a first conveying track 4 in a vibrating mode, then a first conveying motor 2 works to drive a transmission gear 9 at one end of a pushing wheel 8 to rotate, a plurality of groups of pushing wheels 8 are driven to rotate through the meshing of the transmission gear 9 and teeth of a synchronous gear 10, the materials in the arc-shaped channel are actively pushed and conveyed, the materials are circularly and uninterruptedly pushed into a linear track formed by a second conveying frame 6 and a second conveying track 5, when the materials are conveyed into the linear track formed by the second conveying frame 6 and the second conveying track 5, a second conveying motor 7 works to drive a driving rotating shaft 11 to rotate, a conveying belt 12 is driven to rotate through the transfer transmission of a driven rotating shaft 14, and the materials are linearly conveyed through anti-skid sawteeth 13 on the conveying belt 12, and circularly and actively conveying the materials out.
The above-mentioned, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. A quick conveying device for a vibrating tray comprises the vibrating tray (1) and is characterized in that a first conveying rail (4) is fixed at the discharge end of the vibrating tray (1), a first conveying mechanism is arranged on one side of the first conveying rail (4) in a matched mode, a second conveying rail (5) is fixed at the discharge end of the first conveying rail (4), and a second conveying mechanism is arranged on one side of the second conveying rail (5) in a matched mode;
the first conveying mechanism comprises a first conveying frame (3) fixed on one side of a first conveying track (4), a first conveying motor (2) is arranged at one end position above the first conveying frame (3), pushing wheels (8) are symmetrically embedded and connected into the inner side of the first conveying frame (3), a transmission gear (9) is arranged at the tail end of each pushing wheel (8), and the transmission gear (9) is meshed and connected with a synchronous gear (10);
second conveying mechanism is including fixing second carriage (6) in second delivery track (5) one side, the inboard of second carriage (6) is located one end position department and rotates and is connected with initiative pivot (11), and the inboard of second carriage (6) is located other end position department and rotates and be connected with driven spindle (14), the outside of initiative pivot (11) and driven spindle (14) all is connected with conveyer belt (12), the outside symmetry of conveyer belt (12) is provided with anti-skidding sawtooth (13), the top of second carriage (6) is located one end position department and is provided with second conveying motor (7).
2. The rapid conveying device for the vibrating disk according to claim 1, wherein the first conveying rail (4) and the first conveying frame (3) are both arc-shaped structures, and a first conveying channel is arranged between the first conveying rail (4) and the first conveying frame (3).
3. The rapid conveying device for the vibrating disk is characterized in that the number of the pushing wheels (8) is not less than thirty groups, the spacing distances among the pushing wheels (8) are the same, and the pushing wheels (8) are uniformly and symmetrically arranged relative to the arc center of the first conveying frame (3).
4. The rapid conveying device for the vibrating disk is characterized in that the transmission gear (9) and the synchronous gear (10) are the same in size, and the pushing wheel (8) rotates synchronously through the transmission gear (9) and the synchronous gear (10).
5. The rapid conveying device for the vibrating disk according to claim 1, wherein the second conveying rail (5) and the second conveying frame (6) are both linear mechanisms, and a second conveying channel is arranged between the second conveying rail (5) and the second conveying frame (6).
6. The rapid conveyor for the vibrating disk as claimed in claim 1, wherein the anti-slip saw teeth (13) are of a slanted structure, and the slanted direction of the anti-slip saw teeth (13) is the same as the feeding direction of the second conveying rail (5).
CN202121258981.1U 2021-06-07 2021-06-07 A rapid conveying device for vibrating disc Active CN214878117U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121258981.1U CN214878117U (en) 2021-06-07 2021-06-07 A rapid conveying device for vibrating disc

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121258981.1U CN214878117U (en) 2021-06-07 2021-06-07 A rapid conveying device for vibrating disc

Publications (1)

Publication Number Publication Date
CN214878117U true CN214878117U (en) 2021-11-26

Family

ID=78934631

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121258981.1U Active CN214878117U (en) 2021-06-07 2021-06-07 A rapid conveying device for vibrating disc

Country Status (1)

Country Link
CN (1) CN214878117U (en)

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