CN212855879U - Automatic conveyor of phosphor powder - Google Patents

Automatic conveyor of phosphor powder Download PDF

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Publication number
CN212855879U
CN212855879U CN202021450653.7U CN202021450653U CN212855879U CN 212855879 U CN212855879 U CN 212855879U CN 202021450653 U CN202021450653 U CN 202021450653U CN 212855879 U CN212855879 U CN 212855879U
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China
Prior art keywords
phosphor powder
conveyer belt
push rod
placing
bucket
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CN202021450653.7U
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Chinese (zh)
Inventor
戚振技
刘志刚
吴昭儒
文齐羽
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Guangzhou Zhujiang Photoelectric New Materials Co ltd
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Guangzhou Zhujiang Photoelectric New Materials Co ltd
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Abstract

The utility model provides an automatic conveyor of phosphor powder belongs to phosphor powder and handles equipment technical field. Among this conveyer, leading push rod swing joint is in placing the fore bay, the conveyer belt is installed in the discharge gate department of placing the fore bay, leading push rod is used for placing the phosphor powder piece propelling movement to conveyer belt of fore bay, leading push rod carries out the propelling movement through pneumatic valve control, it is located the conveyer belt and keeps away from the one end of placing the fore bay to carry the material subassembly, a phosphor powder piece for carrying the conveyer belt and coming promotes to hubei shui broken machine and carries out the breakage, the propelling movement through the leading push rod of first infrared inductor control, the conveying action of second infrared inductor control conveyer belt, realize whole automatic transport of phosphor powder, and the production efficiency is greatly improved.

Description

Automatic conveyor of phosphor powder
Technical Field
The utility model belongs to the technical field of phosphor powder processing equipment, a phosphor powder automatic conveying device is related to.
Background
The existing fluorescent powder processing technology needs crushing time in the middle, manual feeding and feeding amount control are needed in material conveying at the front end of processing, too much and too fast feeding amount can exist, material blocking from the middle end to the rear end is caused in processing, machine faults are caused, or too little or too slow feeding amount is caused, production efficiency is low, and a large amount of production time and cost are wasted.
Disclosure of Invention
The utility model discloses to the above-mentioned problem that prior art exists, provide an automatic conveyor of phosphor powder, the utility model aims to solve the technical problem that: how to realize the automatic conveying of the fluorescence conveying block and improve the production efficiency.
The purpose of the utility model can be realized by the following technical proposal:
the utility model provides an automatic conveyor of phosphor powder, is including placing preceding groove, leading push rod, conveyer belt and carrying the material subassembly, leading push rod swing joint in place the front groove, the conveyer belt install in place the discharge gate department of preceding groove, carry the material subassembly to be located the conveyer belt is kept away from the one end of placing the preceding groove, the one end of conveyer belt is provided with the transmitter of first infrared inductor, and the other end of conveyer belt is provided with the receiver of first infrared inductor, first infrared inductor with leading push rod electric connection, one side that the conveyer belt is close to carrying the material subassembly is provided with the transmitter of second infrared inductor, and the opposite side that the conveyer belt is close to carrying the material subassembly is provided with the receiver of second infrared inductor, the second infrared inductor with the driving motor electric connection of conveyer belt.
In this conveyer, leading push rod swing joint is in placing the front groove, and the conveyer belt is installed in the discharge gate department of placing the front groove, and leading push rod is used for placing the phosphor powder piece propelling movement to conveyer belt in the front groove, and leading push rod includes the pneumatic valve, carries out the propelling movement through pneumatic valve control, carries the material subassembly to be located the conveyer belt and keeps away from the one end of placing the front groove for carry the phosphor powder piece of coming with the conveyer belt and promote to hubei province broken machine and carry out the breakage. During operation, the phosphor powder piece propelling movement of leading push rod in will placing the front groove is carried on to the conveyer belt, because the both ends of conveyer belt are provided with transmitter and the inductor of first infrared inductor, the phosphor powder piece blocks the infrared ray that first infrared inductor sent, because first infrared inductor and leading push rod electric connection, phosphor powder piece propelling movement is to leading push rod stop work behind on the conveyer belt, when the phosphor powder piece is carried to being close to and is carried the material subassembly, the phosphor powder piece blocks the infrared ray that sends of second infrared inductor, the driving motor electric connection of second infrared inductor and conveyer belt, conveyer belt stop work, at this moment, the phosphor powder piece falls on the promotion subassembly from the conveyer belt, the phosphor powder piece rethread promotes the subassembly and carries and carry out the breakage in transporting to hubei province brokenly machine, accomplish the whole automatic transport of fluorescence piece, production efficiency is greatly improved.
In the above automatic phosphor powder conveying device, the material lifting assembly comprises a turnover bucket and an elevator bucket, wherein the elevator bucket is provided with a vertical rod, the turnover bucket is movably connected to the vertical rod, and the horizontal height of the turnover bucket is lower than that of the conveyor belt.
In the above automatic phosphor powder conveying device, one side of the elevator bucket is provided with the emitter of the third infrared sensor, the other side of the elevator bucket is provided with the receiver of the third infrared sensor, and the third infrared sensor is electrically connected with the driving motor of the conveyor belt.
In the above automatic phosphor powder conveying device, one side of the elevator bucket is further provided with a transmitter of a fourth infrared sensor, the other side of the elevator bucket is provided with a receiver of the fourth infrared sensor, and the fourth infrared sensor is electrically connected with the driving motor of the elevator bucket, the driving motor of the conveyor belt and the front push rod.
In the above automatic phosphor powder conveying device, a baffle is disposed on a side of the conveyor belt away from the front placement groove.
Compared with the prior art, the utility model has the advantages as follows:
1. in this conveyer, through the propelling movement action of leading push rod of first infrared inductor control, the conveying action of second infrared inductor control conveyer belt realizes whole automatic transport of phosphor powder, has improved production efficiency greatly.
2. And the third infrared sensor controls the conveying action of the conveying belt, so that the conveying belt can continuously convey the fluorescent powder blocks.
3. The fourth infrared sensor controls the actions of the lifting bucket, the conveyor belt and the front push rod, so that an alarm function is realized, and the fluorescent powder block is prevented from being blocked and damaging equipment.
Drawings
Fig. 1 is a schematic structural view of the automatic conveying apparatus.
In the figure, 1, a front groove is placed; 2. a front push rod; 3. a conveyor belt; 4. a material lifting component; 5. a first infrared sensor; 6. a second infrared sensor; 7. erecting a rod; 8. turning over the bucket; 9. a lift bucket; 10. a third infrared sensor; 11. a fourth infrared sensor; 12. and a baffle plate.
Detailed Description
The following are specific embodiments of the present invention, and the technical solutions of the present invention will be further described with reference to the accompanying drawings, but the present invention is not limited to these embodiments.
As shown in fig. 1, this automatic conveyor of phosphor powder, including placing fore-groove 1, leading push rod 2, conveyer belt 3 and material lifting component 4, 2 swing joint of leading push rod are in placing fore-groove 1, conveyer belt 3 installs in the discharge gate department of placing fore-groove 1, material lifting component 4 is located conveyer belt 3 and keeps away from the one end of placing fore-groove 1, the one end of conveyer belt 3 is provided with the transmitter of first infrared inductor 5, the other end of conveyer belt 3 is provided with the receiver of first infrared inductor 5, first infrared inductor 5 and 2 electric connection of leading push rod, one side that conveyer belt 3 is close to material lifting component 4 is provided with the transmitter of second infrared inductor 6, the opposite side that conveyer belt 3 is close to material lifting component 4 is provided with the receiver of second infrared inductor 6, the driving motor electric connection of second infrared inductor 6 and conveyer belt 3.
Among this conveyer, 2 swing joint of leading push rod are in placing fore bay 1, conveyer belt 3 is installed in the discharge gate department of placing fore bay 1, leading push rod 2 is used for placing the phosphor powder piece propelling movement to conveyer belt 3 in the fore bay 1, leading push rod 2 includes the pneumatic valve, carry out the propelling movement through pneumatic valve control, carry material subassembly 4 to be located conveyer belt 3 and keep away from the one end of placing fore bay 1 for the phosphor powder piece that comes is carried with conveyer belt 3 promotes to hubei province breaker and carries out the breakage. When in work, the front push rod 2 pushes the fluorescent powder block placed in the front groove 1 to the conveyor belt 3 for conveying, because the emitter and the inductor of the first infrared inductor 5 are arranged at the two ends of the conveyor belt 3, the fluorescent powder blocks block the infrared rays emitted by the first infrared inductor 5, because the first infrared sensor 5 is electrically connected with the front push rod 2, the fluorescent powder block is pushed to the conveyor belt 3, and then the front push rod 2 stops working, when the phosphor powder piece was carried to being close to and is carried material subassembly 4, the phosphor powder piece blockked the infrared ray that sends of second infrared inductor 6, second infrared inductor 6 and conveyer belt 3's driving motor electric connection, conveyer belt 3 stop work, at this moment, the phosphor powder piece drops on promoting the subassembly from conveyer belt 3, the phosphor powder piece rethread promotes the subassembly and carries to broken in hubei province brokenly the machine, accomplish fluorescence and send whole automatic transport of piece, improved production efficiency greatly.
As shown in fig. 1, in this embodiment, the lifting assembly 4 includes a tipping bucket 8 and an elevator bucket 9, an upright rod 7 is disposed on the elevator bucket 9, the tipping bucket 8 is movably connected to the upright rod 7, the level of the tipping bucket 8 is lower than that of the conveyor belt 3, and the same side of the tipping bucket 8 and the same side of the conveyor belt 3 are located on the same vertical plane. The turnover bucket 8 realizes turnover action on the stand column through motor drive, when the fluorescent powder block on the conveyor belt 3 drops on the turnover bucket 8, the turnover bucket 8 is driven to turn over through the motor, the fluorescent powder block on the turnover bucket 8 is turned over to the lifting bucket 9, and the structure can prevent the fluorescent powder block from directly dropping on the lifting bucket 9 from the conveyor belt 3, so that dust is prevented from being raised.
As shown in fig. 1, in this embodiment, a transmitter of a third infrared sensor 10 is disposed on one side of the elevator bucket 9, a receiver of the third infrared sensor 10 is disposed on the other side of the elevator bucket 9, and the third infrared sensor 10 is electrically connected to a driving motor of the conveyor belt 3. In this structure, through set up third infrared inductor 10 on lift bucket 9, the driving motor electric connection of third infrared inductor 10 and conveyer belt 3, when third infrared inductor 10 sensed that there is the phosphor powder piece to pass through on lift bucket 9, start conveyer belt 3, realize conveyer belt 3 and transport the phosphor powder piece in succession.
As shown in fig. 1, in this embodiment, a transmitter of a fourth infrared sensor 11 is further disposed on one side of the elevator bucket 9, a receiver of the fourth infrared sensor 11 is disposed on the other side of the elevator bucket 9, the fourth infrared sensor 11 is electrically connected to a driving motor of the elevator bucket 9, a driving motor of the conveyor belt 3, and the front push rod 2, the fourth infrared sensor 11 is mounted at the upper end of the elevator bucket 9, and the fourth infrared sensor 11 is connected to an alarm. In this structure, the equal electric connection of fourth infrared inductor 11 and lift bucket 9's driving motor, conveyer belt 3's driving motor and leading push rod 2 to install in the upper end of lift bucket 9, when the position that the phosphor powder piece promoted is too high, be connected with the alarm through fourth infrared inductor 11, start the alarm, stop lift bucket 9, conveyer belt 3 and leading push rod 2's transmission action simultaneously, prevent to cause the phosphor powder piece to block up.
As shown in fig. 1, in the present embodiment, a baffle 12 is provided on the side of the conveyor belt 3 away from the front chute 1. Through setting up baffle 12 in the one side that keeps away from placing preceding groove 1 at conveyer belt 3 in this structure, baffle 12 prevents effectively that leading push rod 2 from dropping when propelling movement phosphor powder piece to conveyer belt 3.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (5)

1. The automatic conveying device for the fluorescent powder is characterized by comprising a placing front groove (1), a front push rod (2), a conveying belt (3) and a material lifting assembly (4), wherein the front push rod (2) is movably connected into the placing front groove (1), the conveying belt (3) is installed at a discharge port of the placing front groove (1), the material lifting assembly (4) is located at one end, far away from the placing front groove (1), of the conveying belt (3), a transmitter of a first infrared inductor (5) is arranged at one end of the conveying belt (3), a receiver of the first infrared inductor (5) is arranged at the other end of the conveying belt (3), the first infrared inductor (5) is electrically connected with the front push rod (2), a transmitter of a second infrared inductor (6) is arranged at one side, close to the material lifting assembly (4), of the conveying belt (3), the other side of the conveyor belt (3) close to the material lifting assembly (4) is provided with a receiver of a second infrared sensor (6), and the second infrared sensor (6) is electrically connected with a driving motor of the conveyor belt (3).
2. The automatic conveying device for fluorescent powder as claimed in claim 1, wherein the lifting assembly (4) comprises a turnover bucket (8) and an elevator bucket (9), the elevator bucket (9) is provided with an upright rod (7), the turnover bucket (8) is movably connected to the upright rod (7), and the level of the turnover bucket (8) is lower than that of the conveyor belt (3).
3. The automatic phosphor powder conveying device according to claim 2, wherein an emitter of the third infrared sensor (10) is disposed on one side of the elevator bucket (9), a receiver of the third infrared sensor (10) is disposed on the other side of the elevator bucket (9), and the third infrared sensor (10) is electrically connected to the driving motor of the conveyor belt (3).
4. The automatic phosphor powder conveying device according to claim 2, wherein a transmitter of a fourth infrared sensor (11) is further disposed on one side of the elevator (9), a receiver of the fourth infrared sensor (11) is disposed on the other side of the elevator (9), and the fourth infrared sensor (11) is electrically connected to the driving motor of the elevator (9), the driving motor of the conveyor belt (3), and the front push rod (2).
5. The automatic phosphor powder conveying device according to any one of claims 1 to 4, wherein a baffle (12) is provided on a side of the conveyor belt (3) away from the placing front groove (1).
CN202021450653.7U 2020-07-21 2020-07-21 Automatic conveyor of phosphor powder Active CN212855879U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021450653.7U CN212855879U (en) 2020-07-21 2020-07-21 Automatic conveyor of phosphor powder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021450653.7U CN212855879U (en) 2020-07-21 2020-07-21 Automatic conveyor of phosphor powder

Publications (1)

Publication Number Publication Date
CN212855879U true CN212855879U (en) 2021-04-02

Family

ID=75215880

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021450653.7U Active CN212855879U (en) 2020-07-21 2020-07-21 Automatic conveyor of phosphor powder

Country Status (1)

Country Link
CN (1) CN212855879U (en)

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