CN212449491U - Material distributing device - Google Patents

Material distributing device Download PDF

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Publication number
CN212449491U
CN212449491U CN202020751163.4U CN202020751163U CN212449491U CN 212449491 U CN212449491 U CN 212449491U CN 202020751163 U CN202020751163 U CN 202020751163U CN 212449491 U CN212449491 U CN 212449491U
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CN
China
Prior art keywords
push pedal
hold
range
sensor
feeding
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Application number
CN202020751163.4U
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Chinese (zh)
Inventor
熊卫兵
张琪
王洪
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Shenzhen Bolinxin Industry Co ltd
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Shenzhen Bolinxin Industry Co ltd
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Priority to CN202020751163.4U priority Critical patent/CN212449491U/en
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Abstract

The utility model provides a feed divider, include: the conveying device comprises a rack and a conveying belt arranged on the rack; the top of transmission band is equipped with along material moving direction in proper order: the feeding guide assembly, the material distribution assembly and the material waiting groove are arranged; pan feeding direction subassembly includes: the guide strips and the guide grooves are arranged at the front ends of the guide grooves to form a feeding port, the two guide strips are arranged in a splayed shape, and the feeding port gradually shrinks from front to back; divide the material subassembly to include: motor and hold-in range, the width direction setting of transmission band is followed to the hold-in range, the motor is connected with synchronous belt drive, be equipped with first branch material push pedal and second branch material push pedal on the hold-in range, first branch material push pedal is located the hold-in range towards one side of supplied materials direction, the second divides the material push pedal to be located the hold-in range and keeps away from one side of supplied materials direction, first branch material push pedal and second divide the material push pedal all to set up along transmission band length direction. The utility model provides a feed divider can fall into a multiseriate with a material automatically, need not dispose the vacuum pump, simple structure, low cost.

Description

Material distributing device
Technical Field
The utility model belongs to a material conveying field, in particular to material distributing device.
Background
Along with the progress of science and technology, the production efficiency promotes rapidly, and the equipment allows multiseriate feeding simultaneously, through dividing the material equipment, falls into the multiseriate with the material to satisfy the equipment demand. When the existing material distribution equipment distributes the materials to the plate-shaped materials, the sucking discs are mostly adopted to grab and move, a vacuum pump needs to be configured, and the equipment is complex and high in cost.
SUMMERY OF THE UTILITY MODEL
To the defect among the prior art, the utility model provides a distributing device can fall into a multiseriate with a material automatically, need not dispose the vacuum pump, simple structure, low cost.
The utility model provides a feed divider, include: the conveying device comprises a rack and a conveying belt arranged on the rack;
the top of transmission band is equipped with along material moving direction in proper order: pan feeding direction subassembly, branch material subassembly and treat the silo.
Pan feeding direction subassembly includes: the guide strip and the guide way, the guide strip is two, sets up at the guide way front end, forms the pan feeding mouth, two the guide strip is the splayed setting, and the pan feeding mouth is by preceding shrink gradually after to.
The material distributing assembly comprises: motor and hold-in range, the hold-in range is followed the width direction of transmission band sets up, the motor with synchronous belt drive connects, be equipped with first branch material push pedal and second branch material push pedal on the hold-in range, first branch material push pedal is located the hold-in range is towards the one side of coming the material direction, the second divides the material push pedal to be located the hold-in range is kept away from one side of coming the material direction, first branch material push pedal with the second divides the material push pedal all to follow transmission band length direction sets up.
Treat the silo and be a plurality of, follow transmission band width direction sets up side by side, treat that the entry of silo sets up towards the supplied materials direction.
The utility model provides a feed divider's theory of operation as follows: the materials move along with the conveying belt, are positioned through the guide groove of the material guide assembly and enter the guide groove, when the materials reach the classification assembly, the motor can drive the synchronous belt to act, so that the first classification push plate and the second classification push plate are driven to move, and the synchronous belt is arranged along the express direction of the conveying belt, so that the first classification push plate and the second classification push plate move along the width direction of the conveying belt, and the materials are moved transversely; the first material distributing push plate is positioned on one side of the synchronous belt facing the material feeding direction, and the second material distributing push plate is positioned on one side of the synchronous belt far away from the material feeding direction, so that when the synchronous belt acts, the first material distributing push plate and the second material distributing push plate act in opposite directions, two adjacent materials are pushed to different directions at the same time, and the two materials are distributed; the material waiting groove is a plurality of, and the material that divides gets into along with the transmission band and waits to get into next process in the material waiting groove.
The utility model provides a feed divider passes through motor and hold-in range and drives first branch material push pedal and the action of second branch material push pedal, divides the material, relative sucking disc feed divider, simple structure, and is with low costs.
According to the utility model provides an embodiment, the bottom of treating the silo is equipped with first baffle. According to the utility model provides an embodiment, treat that the pan feeding mouth of silo is by preceding shrink gradually after to.
According to the utility model provides an embodiment, arbitrary adjacent two treat that it separates through the baffle between the silo, the baffle is the wedge towards the one end of supplied materials direction.
According to the utility model provides an embodiment, the both ends of conveying belt along width direction are equipped with the second baffle. Prevent through the second baffle that the material from dropping from the transmission band both ends.
According to the utility model provides an embodiment, the gib block passes through the bracing piece setting and is in the upper surface of second baffle.
According to the utility model provides an embodiment, every treat all to be equipped with a first sensor that is used for detecting the material in the silo.
According to the utility model provides an embodiment, the top of transmission band still is equipped with second sensor and third sensor, the second sensor is located divide the place ahead of material subassembly, the third sensor is located divide the rear of material subassembly.
According to the utility model provides an embodiment, the upper surface of second baffle is equipped with the mounting bracket, the second sensor with the third sensor is all located on the mounting bracket.
According to the utility model provides an embodiment, divide the material subassembly to set up the upper surface of second baffle.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below. Throughout the drawings, like elements or portions are generally identified by like reference numerals. In the drawings, elements or portions are not necessarily drawn to scale.
Fig. 1 is a schematic structural diagram of a material separating device according to an embodiment;
fig. 2 is a partial schematic view of a material separating device according to an embodiment.
Description of the reference numerals
10-frame
11-first baffle
12-second baffle
13-support rod
14-mounting rack
20-conveying belt
30-feeding guide assembly
31-guide strip
32-guide groove
40-material distributing assembly
41-electric machine
42-synchronous belt
431-first material distribution push plate
432-second material separating push plate
50-waiting trough
51-baffle
61-first sensor
62-second sensor
63-third sensor
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and therefore are only examples, and the protection scope of the present invention is not limited thereby.
It is to be noted that unless otherwise specified, technical or scientific terms used herein shall have the ordinary meaning as understood by those skilled in the art to which the present invention belongs.
Referring to fig. 1 and 2, the material separating device provided in this embodiment includes: a frame 10 and a conveyor belt 20 disposed on the frame 10.
The top of transmission band 20 is equipped with along material moving direction in proper order: a feeding guide assembly 30, a material distributing assembly 40 and a material waiting groove 50.
The feeding guide assembly 30 includes: the guide strips 31 and the guide grooves 32, the number of the guide strips 31 is two, the guide strips are arranged at the front ends of the guide grooves 32 to form a feeding port, the two guide strips 31 are arranged in a splayed mode, and the feeding port is gradually contracted from front to back.
The material distributing assembly 40 includes: the automatic feeding device comprises a motor 41 and a synchronous belt 42, wherein the synchronous belt 42 is arranged along the width direction of the conveying belt 20, the motor 41 is in transmission connection with the synchronous belt 42, the synchronous belt 42 is provided with a first material distribution push plate 431 and a second material distribution push plate 432, the first material distribution push plate 431 is positioned on one side, facing the feeding direction, of the synchronous belt 42, the second material distribution push plate 432 is positioned on one side, away from the feeding direction, of the synchronous belt 42, and the first material distribution push plate 431 and the second material distribution push plate 432 are both arranged along the length direction of;
the plurality of waiting troughs 50 are arranged in parallel along the width direction of the conveying belt 20, and the inlets of the waiting troughs 50 are arranged towards the feeding direction.
The materials move along with the conveying belt 20, are positioned through the guide groove 32 of the material guide assembly and enter the guide groove 32, when the materials reach the classification assembly, the motor 41 can drive the synchronous belt 42 to act, so that the first classification push plate and the second classification push plate are driven to move, and as the synchronous belt 42 is arranged along the express direction of the conveying belt 20, the first classification push plate and the second classification push plate 432 move along the width direction of the conveying belt 20, so that the materials are moved transversely; the first material distributing push plate 431 is positioned on one side of the synchronous belt 42 facing the material feeding direction, and the second material distributing push plate 432 is positioned on one side of the synchronous belt 42 far away from the material feeding direction, so that when the synchronous belt 42 acts, the acting directions of the first material distributing push plate 431 and the second material distributing push plate 432 are opposite, two adjacent materials are pushed to different directions simultaneously, and the two materials are distributed simultaneously; the material waiting groove 50 is a plurality of, and the divided material enters the material waiting groove 50 along with the transmission belt 20 and waits for entering the next procedure.
The feed divider that this embodiment provided drives first branch material push pedal 431 and the action of second branch material push pedal 432 through motor 41 and hold-in range 42, divides the material, relative sucking disc feed divider, simple structure, it is with low costs.
Specifically, the bottom of the material waiting tank 50 is provided with a first baffle plate 11. After the material enters the material waiting groove 50, the material abuts against the first baffle plate 11, so that the material stops moving to be convenient for the next procedure to take the material.
More specifically, the feeding opening of the material waiting tank 50 is gradually contracted from front to back. The pan feeding mouth front end is wide the rear end is narrow, forms loudspeaker form, prevents that the card from dying in the entry of treating silo 50 behind the material skew, carries out transverse orientation to the material simultaneously.
More specifically, any two adjacent material waiting tanks 50 are separated by a partition plate 51, and one end of the partition plate 51 facing the material feeding direction is wedge-shaped. The inlet of the material waiting groove 50 is formed into a structure with wide front and narrow back by the wedge at the front end of the partition plate 51, the equipment structure is simple, and the installation is convenient. The partition plate 51 is arranged into a detachable structure and transversely positioned and installed again according to different material widths, so that the partition plate is suitable for various materials.
More specifically, both ends of the conveying belt in the width direction are provided with second fences 12. The material is prevented from falling off from both ends of the conveyor belt 20 by the second shutter 12.
More specifically, the guide bar 31 is disposed on the upper surface of the second shutter 12 through the support rod 13. The guide strip 31 is arranged on the second shutter 12 in a fixed position.
More specifically, each of the material receiving tanks 50 is provided therein with a first sensor 61 for detecting the material. The presence of material in the chute 50 is detected by the first sensor 61.
More specifically, a second sensor 62 and a third sensor 63 are further disposed above the conveyor belt 20, the second sensor 62 is located in front of the feed-dividing assembly 40, and the third sensor 63 is located behind the feed-dividing assembly 40. The presence of material at the current location is detected by the second sensor 62 and the third sensor 63.
More specifically, the upper surface of the second barrier 12 is provided with a mounting bracket 14, and the second sensor 62 and the third sensor 63 are both provided on the mounting bracket 14.
More specifically, the dispensing assembly 40 is disposed on an upper surface of the second baffle 12.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the scope of the embodiments of the present invention, and are intended to be covered by the claims and the specification.

Claims (10)

1. Feed divider, its characterized in that includes: the device comprises a rack (10) and a conveying belt (20) arranged on the rack (10);
the top of transmission band (20) is equipped with along material moving direction in proper order: the feeding guide assembly (30), the material distribution assembly (40) and the material waiting groove (50);
the feeding guide assembly (30) comprises: the feeding device comprises guide strips (31) and guide grooves (32), wherein the two guide strips (31) are arranged at the front ends of the guide grooves (32) to form a feeding port, the two guide strips (31) are arranged in a splayed shape, and the feeding port is gradually contracted from front to back;
the dispensing assembly (40) includes: motor (41) and hold-in range (42), hold-in range (42) are followed the width direction setting of transmission band (20), motor (41) with hold-in range (42) transmission is connected, be equipped with first branch material push pedal (431) and second branch material push pedal (432) on hold-in range (42), first branch material push pedal (431) are located hold-in range (42) are towards the one side of supplied materials direction, second branch material push pedal (432) are located hold-in range (42) are kept away from the one side of supplied materials direction, first branch material push pedal (431) and second branch material push pedal (432) all follow transmission band (20) length direction sets up;
treat silo (50) and be a plurality of, along transmission band (20) width direction sets up side by side, treat the entry of silo (50) and set up towards the supplied materials direction.
2. The dividing device according to claim 1, characterized in that the bottom of the trough (50) is provided with a first baffle (11).
3. The material distributing device according to claim 1, characterized in that the feeding opening of the material waiting tank (50) is gradually contracted from front to back.
4. The material distributing device according to claim 3, characterized in that any two adjacent material waiting tanks (50) are separated by a partition plate (51), and one end of the partition plate (51) facing to the material feeding direction is wedge-shaped.
5. The dividing device of claim 1, wherein the two ends of the conveying belt in the width direction are provided with second baffles (12).
6. The dividing device of claim 5, wherein the guide strip (31) is arranged on the upper surface of the second baffle plate (12) through a support rod (13).
7. The distributing device according to claim 1, characterised in that each of the waiting tanks (50) is provided with a first sensor (61) for detecting the material.
8. The feed divider of claim 1, wherein a second sensor (62) and a third sensor (63) are further disposed above the conveyor belt (20), the second sensor (62) is located in front of the feed divider assembly (40), and the third sensor (63) is located behind the feed divider assembly (40).
9. The feed divider of claim 8, characterized in that the upper surface of the second apron (12) is provided with a mounting frame (14), and the second sensor (62) and the third sensor (63) are both provided on the mounting frame (14).
10. The feed divider of claim 6, wherein the feed divider assembly (40) is disposed on an upper surface of the second baffle (12).
CN202020751163.4U 2020-05-09 2020-05-09 Material distributing device Active CN212449491U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020751163.4U CN212449491U (en) 2020-05-09 2020-05-09 Material distributing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020751163.4U CN212449491U (en) 2020-05-09 2020-05-09 Material distributing device

Publications (1)

Publication Number Publication Date
CN212449491U true CN212449491U (en) 2021-02-02

Family

ID=74464635

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020751163.4U Active CN212449491U (en) 2020-05-09 2020-05-09 Material distributing device

Country Status (1)

Country Link
CN (1) CN212449491U (en)

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