CN215100404U - Multi-rail feeding device - Google Patents

Multi-rail feeding device Download PDF

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Publication number
CN215100404U
CN215100404U CN202120877347.XU CN202120877347U CN215100404U CN 215100404 U CN215100404 U CN 215100404U CN 202120877347 U CN202120877347 U CN 202120877347U CN 215100404 U CN215100404 U CN 215100404U
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feeding device
conveyor belt
disposed
feeding
assembly
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李彬才
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Shenzhen Yongfengying Electronic Co ltd
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Shenzhen Yongfengying Electronic Co ltd
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Abstract

The utility model discloses a multi-rail feeding device, wherein the multi-rail feeding device comprises a workbench, a first conveyor belt and a second conveyor belt, and the first conveyor belt and the second conveyor belt are respectively arranged on the workbench; the conveying assembly and the material stirring assembly are movably arranged on the workbench and reciprocate in the direction close to or far away from the feeding port of the conveyor belt, the conveying assembly is provided with a material channel and a material stirring notch communicated with the material channel, the material stirring assembly is matched with the material stirring notch, and the material carried by the material channel is conveyed into the first conveyor belt through the material stirring notch when the material stirring assembly is close to the feeding port of the conveyor belt; and the second feeding piece is the same as the first feeding piece in structure and is close to the second conveying belt and arranged on the workbench. The utility model discloses technical scheme realizes the production efficiency of multi-rail pay-off, improvement product.

Description

Multi-rail feeding device
Technical Field
The utility model relates to an industrial automation field, in particular to multitrack feed arrangement.
Background
In the past, in order to facilitate manual detection, only one track is usually arranged for production and detection of products, so that feeding equipment is also a single track.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a multi-rail feeding device, the single track production line who aims at solving current product can not satisfy current production demand's problem.
In order to achieve the above object, the present invention provides a multi-track feeding device, which comprises a worktable, a first conveyor belt and a second conveyor belt, wherein the first conveyor belt and the second conveyor belt are respectively disposed on the surface of the worktable; the conveying assembly and the material stirring assembly are movably arranged on the workbench and reciprocate in the direction close to or far away from the feeding port of the conveyor belt, the conveying assembly is provided with a material channel and a material stirring notch communicated with the material channel, the material stirring assembly is matched with the material stirring notch, and the material stirring assembly penetrates through the material stirring notch to feed the material carried by the material channel into the first conveyor belt when being close to the feeding port of the conveyor belt; and the second feeding piece is the same as the first feeding piece in structure and is arranged on the workbench close to the second conveying belt.
Optionally, the material pulling assembly comprises a material pulling block, a pulling plate and a first telescopic rod, the pulling plate is connected to one end of the first telescopic rod, the first telescopic rod is telescopically connected to the workbench, and the material pulling block is matched with the material pulling notch and arranged on the pulling plate.
Optionally, one side of the drawing plate is provided with a connecting groove, and the material shifting block is arranged in the connecting groove and connected with the drawing plate through the connecting groove.
Optionally, the material stirring block is provided with a plurality of material stirring blocks, the drawing plate is further provided with a plurality of connecting grooves matched with the material stirring blocks, the connecting grooves are arranged at intervals, and the material stirring blocks are arranged in the connecting grooves.
Optionally, the material stirring block comprises a connecting portion and a stirring portion, the connecting portion is fixedly connected to the connecting groove, the stirring portion is arranged on one side of the connecting portion and protrudes out of the connecting groove, and the stirring portion is matched with the material stirring notch.
Optionally, the transportation assembly further includes a material placing groove and a second telescopic rod, the multi-rail feeding device further includes an orientation rail, the material channel and the material shifting gap are disposed in the material placing groove, the material placing groove is connected to one end of the second telescopic rod, the orientation rail is fixedly disposed on the workbench and extends toward the material inlet of the conveyor belt, and the second telescopic rod is movably disposed on the orientation rail.
Optionally, the material placing groove includes a clamping front portion and a clamping rear portion, the clamping front portion and the clamping rear portion are respectively provided with a groove, the clamping rear portion is connected to the second telescopic rod, a side wall of the clamping front portion is connected to a side wall of the clamping rear portion, and the groove of the clamping front portion and the groove of the clamping rear portion enclose each other to form the material channel and the material shifting notch.
Optionally, the multi-rail feeding device further comprises a sliding block, the second telescopic rod is connected to the sliding block, and the sliding block is slidably disposed on the orientation rail and moves along the orientation rail.
Optionally, the multi-rail feeding device further includes a first limiting member disposed on the working table, the first limiting member is disposed in a direction in which the transportation assembly is close to the feeding port of the first conveyor belt, and the first limiting member and the transportation assembly are disposed on two sides of the first conveyor belt respectively.
Optionally, the multi-rail feeding device further includes a second limiting member, the second limiting member is disposed on the working table, and the second limiting member is disposed on one side of the transportation assembly.
Optionally, one end of the first limiting part is provided with a buffer part, and the buffer part faces the material placing groove.
Optionally, one end of the second limiting member extends into one side of the material member channel.
Optionally, the multi-rail feeding device further comprises a third conveyor belt and a third feeding piece, the third conveyor belt is arranged on the workbench, and the third feeding piece is matched with the third conveyor belt and arranged on the workbench.
The utility model discloses technical scheme transports the material piece to first conveyer belt through adopting the transportation subassembly, and the conveyer belt is sent into with the material piece to the rethread group material subassembly, and wherein, in the material piece passageway was arranged in to the material piece, owing to dial material breach and material piece passageway intercommunication, dial the material subassembly and be close to the pan feeding mouth of conveyer belt passes when removing and dials the material breach, sends into first conveyer belt with the material piece that carries in the material piece passageway, through transportation subassembly and with dial the material subassembly constantly be close to or keep away from the in-process that the conveyer belt enters the mouth, can constantly send into first conveyer belt with the material piece, and is the same, and second conveyer belt is sent into the material piece through the pay-off structure the same with first pay-off piece to the material piece to the second pay-off, so, locate the first pay-off piece and the second pay-off of workstation simultaneously and to the conveyer belt pay-off, has improved the pay-off efficiency to the conveyer belt.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the structures shown in the drawings without creative efforts.
FIG. 1 is a schematic structural view of the multi-rail feeding device of the present invention;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
FIG. 3 is a schematic structural view of the multi-rail feeding device of the present invention at another viewing angle;
fig. 4 is a schematic structural diagram of the material stirring assembly in the multi-rail feeding device of the present invention.
The reference numbers illustrate:
Figure BDA0003040085410000031
Figure BDA0003040085410000041
the objects, features and advantages of the present invention will be further described with reference to the accompanying drawings.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that, if directional indications (such as upper, lower, left, right, front and rear … …) are involved in the embodiment of the present invention, the directional indications are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indications are changed accordingly.
In addition, if there is a description of an embodiment of the present invention referring to the "", "" or the like, the description of the "", "" or the like is for descriptive purposes only and is not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "" an "" can explicitly or implicitly include at least one of the feature. In addition, the technical solutions in the embodiments may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
The utility model provides a multi-rail feeding device.
In the embodiment of the present invention, as shown in fig. 1, the multi-track feeding device 1000 includes a workbench 300, a first conveyor 400 and a second conveyor, and the first conveyor 400 and the second conveyor are respectively disposed on the workbench 300; the first feeding part 100 comprises a conveying assembly 110 and a material shifting assembly 120, the conveying assembly 110 and the material shifting assembly 120 are movably arranged on the workbench 300 and reciprocate in a direction close to or far away from a feeding port of the conveyor belt, the conveying assembly 110 is provided with a material channel 112 and a material shifting notch communicated with the material channel 112, and the material shifting assembly 120 is matched with the material shifting notch and feeds materials carried by the material channel 112 into the first conveyor belt 400 through the material shifting notch when being close to the feeding port of the conveyor belt; and a second feeding member 200, wherein the second feeding member 200 has the same structure as the first feeding member 100 and is arranged on the workbench 300 close to the second conveyor belt.
Specifically, in the production process, the material enters the material channel 112 of the transportation assembly 110, and is conveyed to the material inlet of the first conveyor belt through the transportation assembly 110, further, the material poking assembly 120 passes through the material poking notch when moving close to the material inlet of the conveyor belt, and conveys the material carried by the material channel 112 to the first conveyor belt 400 to complete the conveying of the material, and further, the transportation assembly 110 and the material poking assembly 120 reciprocate in the direction close to or far from the inlet of the conveyor belt 400, and the material is continuously conveyed to the first conveyor belt 400.
It should be noted that, the second feeding member 200 is the same as the first feeding member 100 in structure, that is, the second feeding member 200 can feed the material into the second conveyor belt in the same way, in this embodiment, two conveyor belts and two feeding rails are provided, which correspond to the first feeding member 100 and the second feeding member 200, so that the feeding efficiency is improved by feeding the first conveyor belt and the second conveyor belt respectively through the first feeding member 100 and the second feeding member 200, and therefore, the subsequent production, processing and detection efficiency of the material is improved, and further the production efficiency of the material is improved.
Further, referring to fig. 2 to 4, the material pulling assembly 120 includes a material pulling block 121, a pulling plate 122 and a first telescopic rod 123, the pulling plate 122 is connected to one end of the first telescopic rod 123, the first telescopic rod 123 is telescopically connected to the workbench 300, and the material pulling block 121 is arranged in cooperation with the material pulling gap and is disposed on the pulling plate 122.
Specifically, connect in workstation 300 through first telescopic link 123 telescopic, can make the pull board 122 flexible removal of being connected with first telescopic link 123, and then, realize the flexible removal of kickoff block 121 that is connected with the telescopic link, realize kickoff block 121 and move in the direction of being close to or keeping away from first conveyer belt 400, when kickoff block 121 passes through the kickoff breach, produce the effort to the material spare in the material spare passageway 112 to make the material spare take place to remove, accomplish the feeding process.
Certainly, the connection manner of the drawing plate 122 connected to the first telescopic rod 123 is not limited, in this embodiment, the drawing plate 122 is clamped by the clamp 124, and the clamp 124 is connected to the first telescopic rod 123, so that the first telescopic rod 123 drives the drawing plate 122 to move, in other embodiments, the first telescopic rod 123 and the drawing plate 122 may be integrated into a whole, and the like.
Furthermore, a connecting groove 1221 is disposed on one side of the drawing plate 122, and the material pulling block 121 is disposed in the connecting groove 1221 and connected to the drawing plate 122 through the connecting groove 1221.
It can be understood that the volume of the drawing plate 122 connected with the material shifting block 121 can be reduced through the connecting groove 1221, so that the equipment occupies less space, saves the field and reduces the production cost.
Further, the material stirring block 121 includes a connecting portion 1211 and a stirring portion 1212, the connecting portion 1211 is fixedly connected to the connecting groove 1221, the stirring portion 1212 is disposed at one side of the connecting portion 1211 and protrudes out of the connecting groove 1221, and the stirring portion 1212 is adapted to the material stirring notch.
It can be understood that, connecting portion 1211 is used for fixed material piece 121 and the reciprocating motion of pull board 122 of dialling, and stirring portion 1212 protrusion in connecting groove 1221 and then can be through dialling the material breach, in this embodiment, the structure of dialling the material portion is triangular structure, and a apex angle protrusion in triangle-shaped is in connecting groove 1221 and can pass in and out and dial the material breach to accomplish and dial the material action, certainly, do not do the restriction to the structure of dialling the material portion, like in other embodiments, can set up the stirring portion of other structures, like cylinder type, rectangle etc. to realize the effect of dialling the material.
Further, the material stirring blocks 121 are provided with a plurality of material stirring blocks, the drawing plate 122 is further provided with a plurality of connecting grooves 1221 matched with the material stirring blocks 121, the connecting grooves 1221 are arranged at intervals, and the material stirring blocks 121 are arranged in the connecting grooves 1221.
It can be understood that, through setting up a plurality of material pieces 121 in pull board 122, can be in the round trip motion in-process of dialling material subassembly 120, carry more material pieces, improve the efficiency of pay-off, and a plurality of connecting grooves 1221 interval sets up, can do the restriction to the quantity of material piece, if the interval size through setting up a plurality of connecting grooves 1221, can divide a plurality of material pieces (if three material piece is a set of, five material pieces are a set of etc.), can avoid the material piece to block up on conveyer belt 400, and be convenient for subsequent detection, production processes such as collection, also be convenient for count the material piece.
Further, the multi-rail feeding device 1000 further includes a first feeding rail 500, the first feeding rail 500 is disposed on the working table 300 near the first feeding member 100, the transporting assembly 110 has an initial position far away from the feeding port of the first conveyor belt, at the initial position, the transporting assembly 110 is connected to the first feeding rail 500, and an outlet end of the first feeding rail is communicated with the material member channel 112.
It can be understood that the outlet end of the first feeding track is communicated with the material channel 112, that is, the first feeding track 500 conveys the material to the material channel 112 of the transportation assembly 110, the transportation assembly 110 reciprocates in a direction close to or far away from the material inlet of the conveyor belt, that is, the material channel 112 reciprocates between the outlet end of the first feeding track and the material inlet end of the first conveyor belt, and the material is conveyed to the first conveyor belt 400 from the first feeding track 500 by matching with the material shifting notch and the material shifting block.
Similarly, the multi-rail feeding device 1000 further includes a second feeding rail, and the second feeding rail is disposed on the working table 300 near the second feeding member 200.
It can be understood that, since the function of the second feeding rail with respect to the second feeding member 200 is the same as that of the first feeding rail 500 with respect to the first feeding member 100, the description thereof is omitted.
Further, the transportation assembly 110 further includes a material placement groove 111 and a second telescopic rod 114, the multi-rail feeding device 1000 further includes an orientation rail 113, the material passage 112 and the material ejecting notch are disposed in the material placement groove 111, the material placement groove 111 is connected to one end of the second telescopic rod 114, the orientation rail 113 is fixedly disposed on the working platform 300 and extends toward the material inlet of the conveyor belt 400, and the second telescopic rod 114 is movably disposed on the orientation rail 113.
Specifically, the second telescopic rod 114 is movably arranged on the orientation rail 113, so that the material placing groove 111 can be close to or far away from the inlet of the first conveyor belt 400, wherein the orientation rail 113 limits the moving direction of the second telescopic rod 114, and therefore the material carried in the material channel 112 is conveyed to the inlet of the first conveyor belt 400.
Of course, the structure of the material placing groove 111 is not limited, and the material placing groove 111 should be configured with the material to complete the transportation of the material.
Further, the material placing groove 111 comprises a clamping front portion 1111 and a clamping rear portion 1112, the clamping front portion 1111 and the clamping rear portion 1112 are respectively provided with a groove, the clamping rear portion 1112 is connected to the second telescopic rod 114, a side wall of the clamping front portion 1111 is connected to a side wall of the clamping rear portion 1112, and the groove of the clamping front portion and the groove of the clamping rear portion mutually enclose to form the material channel 112 and the material ejecting notch.
It is understood that the material placing groove 111 in this embodiment is formed by connecting the clamping front portion 1111 and the clamping rear portion 1112, but in other embodiments, the clamping front portion 1111 and the clamping rear portion 1112 are separately provided for easy detachment and replacement to transport products with different sizes.
Further, the multi-rail feeding device 1000 further includes a sliding block, the second telescopic rod 114 is connected to the sliding block, and the sliding block is slidably disposed on the orientation rail 113 and moves along the orientation rail 113, so as to complete the reciprocating movement of the second telescopic rod 114 at the entrance close to or far from the first conveyor belt 400.
Further, the multi-rail feeding device 1000 further includes a first limiting member 600 disposed on the working table 300, the first limiting member 600 is disposed on the transportation assembly 110 in a direction close to the feeding port of the first conveyor belt, and the first limiting member 600 and the transportation assembly 110 are respectively disposed on two sides of the first conveyor belt 400 to limit the material placement groove 111 of the transportation assembly 110.
Specifically, in this embodiment, one end of the first limiting part 600 is provided with a buffering part 610, the buffering part 610 faces the material placing groove 111 to buffer the acting force of the first telescopic rod 123 during the moving process, so as to prevent the material placing groove 111 from colliding with the first limiting part 600.
Of course, the structure and the form of the buffer member 610 are not limited, and in this embodiment, a rubber plug is disposed on one side of the first limiting member 600 to buffer the transportation assembly 110.
Further, the multi-rail feeding device 1000 further includes a second limiting member 700, the second limiting member 700 is disposed on the working platform 300, the second limiting member 700 is disposed on one side of the transportation assembly 110, specifically, the limiting member in this embodiment is disposed on one side of the discharge hole close to the material placing groove 111, so as to limit the material when the material enters the material channel 112, and prevent the material from dropping.
Further, in this embodiment, one end of the second limiting member 700 extends into one side of the material passage 112, and has a further limiting effect on the material in the material passage 112.
It should be noted that the second feeding member 200 has the same structure as the first feeding member 100 and is disposed close to the second conveyor belt, so that the embodiments of the second feeding member 200 can refer to all the embodiments of the first feeding member 100 and the first conveyor belt 400, and thus, the description thereof will not be repeated.
Optionally, the multi-rail feeding device 1000 further includes a third conveyor belt and a third feeding member, the third conveyor belt is disposed on the working table 300, and the third feeding member is disposed on the working table 300 in cooperation with the third conveyor belt.
Similarly, the third conveyor belt and the third feeding member can be implemented by referring to all the examples of the first conveyor belt 400 and the first feeding member 100, and thus, they will not be repeated.
It can be understood that in the actual production process, through setting up third conveyer belt and third pay-off piece, can further improvement pay-off efficiency, of course, in other embodiments, can increase and decrease conveyer belt and pay-off piece complex structure according to actual need to reach the production needs.
The above only is the preferred embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structure changes made by the contents of the specification and the drawings under the inventive concept of the present invention, or the direct/indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims (10)

1. A multiple track feeding device for a material, the multiple track feeding device comprising:
the conveying device comprises a workbench, a first conveying belt and a second conveying belt, wherein the first conveying belt and the second conveying belt are respectively arranged on the surface of the workbench;
the conveying assembly and the material stirring assembly are movably arranged on the workbench and reciprocate in the direction close to or far away from the feeding port of the conveyor belt, the conveying assembly is provided with a material channel and a material stirring notch communicated with the material channel, the material stirring assembly is matched with the material stirring notch, and the material stirring assembly penetrates through the material stirring notch to feed the material carried by the material channel into the first conveyor belt when being close to the feeding port of the conveyor belt;
and the second feeding piece is the same as the first feeding piece in structure and is arranged on the workbench close to the second conveyor belt.
2. The multi-track feeding device as claimed in claim 1, wherein the material-pulling assembly comprises a material-pulling block, a pulling plate and a first telescopic rod, the pulling plate is connected to one end of the first telescopic rod, the first telescopic rod is telescopically connected to the working table, and the material-pulling block is arranged in cooperation with the material-pulling gap and is disposed on the pulling plate.
3. The multi-rail feeding device as claimed in claim 2, wherein a connection groove is formed at one side of the drawing plate, and the kicker block is disposed in the connection groove and connected to the drawing plate through the connection groove.
4. The multi-track feeding device as claimed in claim 3, wherein the plurality of material-pulling blocks are provided, the drawing plate is further provided with a plurality of connecting grooves adapted to the plurality of material-pulling blocks, the plurality of connecting grooves are arranged at intervals, and the plurality of material-pulling blocks are correspondingly arranged in the plurality of connecting grooves.
5. The multi-track feeding device as claimed in claim 3, wherein the material-stirring block comprises a connecting portion and a stirring portion, the connecting portion is fixedly connected to the connecting groove, the stirring portion is disposed at one side of the connecting portion and protrudes out of the connecting groove, and the stirring portion is adapted to the material-stirring notch.
6. The multi-track feeding device as claimed in claim 1, wherein the transporting assembly further comprises a material placing groove and a second telescopic rod, the multi-track feeding device further comprises an orientation track, the material passage and the material ejecting notch are disposed on the material placing groove, the material placing groove is connected to one end of the second telescopic rod, the orientation track is fixedly disposed on the worktable and extends towards the feeding port of the conveyor belt, and the second telescopic rod is movably disposed on the orientation track.
7. The multiple track feeding device according to claim 6, wherein the material placement groove comprises a front clamping portion and a rear clamping portion, the front clamping portion and the rear clamping portion are respectively provided with a groove, the rear clamping portion is connected to the second telescopic rod, a side wall of the front clamping portion is connected to a side wall of the rear clamping portion, and the groove of the front clamping portion and the groove of the rear clamping portion mutually enclose the material passage and the material ejecting notch.
8. The multiple track feeding device of claim 6, further comprising a sliding block, wherein said second telescoping rod is connected to said sliding block, and said sliding block is slidably disposed on and movable along said guide track.
9. The multi-rail feeding device according to any one of claims 1 to 8, further comprising a first limiting member disposed on the working table, wherein the first limiting member is disposed in a direction in which the transporting assembly approaches the feeding port of the first conveyor belt, and the first limiting member and the transporting assembly are disposed on two sides of the first conveyor belt respectively; and/or the presence of a gas in the gas,
the multi-rail feeding device further comprises a second limiting part, the second limiting part is arranged on the workbench, and the second limiting part is arranged on one side of the transportation assembly.
10. The multiple track feeding device according to claim 9, wherein a buffer member is provided at one end of said first limiting member, said buffer member being disposed toward said material placing groove; and/or the presence of a gas in the gas,
one end of the second limiting piece extends into one side of the material piece channel; and/or the presence of a gas in the gas,
the multi-rail feeding device further comprises a third conveying belt and a third feeding piece, the third conveying belt is arranged on the workbench, and the third feeding piece is matched with the third conveying belt and arranged on the workbench.
CN202120877347.XU 2021-04-26 2021-04-26 Multi-rail feeding device Active CN215100404U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115891031A (en) * 2023-01-06 2023-04-04 福建鼎珂光电科技有限公司 Continuous injection molding and bending automatic production line and process for LED support

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115891031A (en) * 2023-01-06 2023-04-04 福建鼎珂光电科技有限公司 Continuous injection molding and bending automatic production line and process for LED support

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