CN220329242U - Small-particle semi-coke finished product processing device - Google Patents

Small-particle semi-coke finished product processing device Download PDF

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Publication number
CN220329242U
CN220329242U CN202321886946.3U CN202321886946U CN220329242U CN 220329242 U CN220329242 U CN 220329242U CN 202321886946 U CN202321886946 U CN 202321886946U CN 220329242 U CN220329242 U CN 220329242U
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China
Prior art keywords
coke
semi
box
processing device
finished product
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CN202321886946.3U
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Chinese (zh)
Inventor
董向阳
陈浩
虞振建
覃万琴
张宝宝
高洁
马英杰
娄玉庆
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Xinjiang Xinlei Chemical Co ltd
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Xinjiang Xinlei Chemical Co ltd
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Abstract

The utility model discloses a small-particle semi-coke finished product processing device, which relates to the technical field of semi-coke processing and comprises a fixedly mounted guide box, wherein a fixed box is fixedly mounted at the bottom end of the guide box, fixed frames are fixedly mounted on two inner side walls of the fixed box, side baffles are rotatably mounted at the bottom end of each fixed frame, and fixed shafts are fixedly mounted at two side ends of each side baffle; wherein. According to the small-particle semi-coke finished product processing device, semi-coke is split to two sides after being impacted to the screening plate, dust and other impurities in the semi-coke can penetrate through the surface of the screening plate under the action of gravity in the process of impacting the screening plate and enter the fixing frame, semi-coke can be primarily screened, the semi-coke screening quality is improved, and meanwhile the semi-coke flows downwards to the vibrating net at the bottom through the discharge grooves at two sides of the fixing frame to be deeply screened.

Description

Small-particle semi-coke finished product processing device
Technical Field
The utility model relates to the technical field of semi-coke processing, in particular to a small-particle semi-coke finished product processing device.
Background
In the process of production and processing of semi-coke, semi-coke particles are often required to be processed and molded, so that a user can conveniently use the semi-coke particles, and screening and processing are required to be carried out in advance in the process of semi-coke particle molding.
At present, the existing processingequipment (such as CN 218460136U) discloses a vibration screening device for semi-coke production and processing, through being provided with the guide bag in the lower extreme exit of every filtration pore, when the semi-coke particle after being screened on corresponding first granule screen cloth, first well granule screen cloth or first big granule screen cloth falls into the inside of corresponding collecting box, the semi-coke particle of downhill discharge from the filtration pore is guided the inside of corresponding collecting box by the guide bag directional accurate, prevents to be fallen the inside emergence of filter pore inside discharge semi-coke particle and to take place the unable condition emergence of corresponding collection of screening box main part.
However, in the implementation process of the technical scheme, at least the following technical problems are found: in the use, the semi-coke is required to be concentrated into the guide box, and is conveyed onto the screen through the guide box, but when the discharge opening of the guide box is open, the semi-coke in the inside can be directly and directly conveyed onto the screen, and the phenomenon of accumulation is easily formed on the surface of the screen, so that the screening operation of the screen is affected.
Disclosure of Invention
(one) solving the technical problems
Aiming at the defects of the prior art, the utility model provides a small-particle semi-coke finished product processing device, which solves the technical problems that when the discharge opening of a guide box is open, the semi-coke in the guide box is directly conveyed to a screen, the phenomenon of accumulation is easily formed on the surface of the screen, and the screening operation of the screen is affected.
(II) technical scheme
In order to achieve the above purpose, the utility model is realized by the following technical scheme:
the small-particle semi-coke finished product processing device comprises a fixedly-installed guide box, wherein a fixed box is fixedly installed at the bottom end of the guide box, fixed frames are fixedly installed on two inner side walls of the fixed box, side baffles are rotatably installed at the bottom end of each fixed frame, and fixed shafts are fixedly installed at two side ends of each side baffle;
wherein, every the side shield is deflected the back in the bottom of mount, and the side shield shelters from the inside blowpit of fixed box.
Preferably: the small-particle semi-coke finished product processing device according to claim, wherein a guide block is fixedly arranged in the guide box at one side of the side baffle plate;
after the flow guide block and the side baffle are mutually attached, the discharge chute in the fixed box is closed, and the top end of the flow guide block is fixedly provided with two screening plates;
wherein, every the screening board is put the installation to one side in the top of water conservancy diversion piece, will enter into the inside semi-coke reposition of redundant personnel of fixed incasement to both sides.
Preferably: the two inner side walls of the fixed box are provided with sliding grooves, a motor box is fixedly arranged in each sliding groove, and hydraulic rods are fixedly arranged at the two side ends of each motor box;
the side end part of each hydraulic rod is fixedly provided with a directional sliding block in a reciprocating shrinkage way in the sliding groove;
the side end parts of the directional sliding blocks are connected with the fixed shafts, and the bottom ends of the side baffles are horizontally pulled by sliding the directional sliding blocks.
(III) beneficial effects
1. Let the side shield deflect to one side under the drive of directional slider, at this moment the side shield rotates in the bottom of mount, lets the angle of side shield self take place the piece flower, and the end of side shield lets the side shield laminate with the side tip of mount mutually under the drive of two directional sliders, promotes directional slider through the hydraulic stem and carries out reciprocating motion in the inside of spout, the speed of control unloading can effectively prevent piling up of semi-coke on the vibrating screen surface, increases the convenience of use.
2. After the semi-coke is impacted to the screening plate, the semi-coke can be split to two sides, in the process of impacting the screening plate, impurities such as dust inside the semi-coke can be in the action force of gravity, the semi-coke can be screened initially through the surface of the screening plate and enter the inside of the fixing frame, the quality of semi-coke screening is improved, meanwhile, the semi-coke downwards flows to the vibrating net at the bottom through the discharge grooves at two sides of the fixing frame, and the semi-coke is screened deeply.
Drawings
The foregoing description is only an overview of the present utility model, and is intended to provide a better understanding of the present utility model, as it is embodied in the following description, with reference to the preferred embodiments of the present utility model and the accompanying drawings.
FIG. 1 is a block diagram of a guide box of the present utility model;
FIG. 2 is a block diagram of a diverter block according to the present utility model;
FIG. 3 is a block diagram of a side dam of the present utility model;
FIG. 4 is a block diagram of the directional slider of the present utility model.
Legend description: 1. a guide box; 11. a fixed box; 12. side baffles; 13. a flow guiding block; 14. a screening plate; 15. a fixing frame; 16. a fixed shaft; 17. a directional slider; 18. a hydraulic rod; 19. a motor case; 21. and a sliding groove.
Detailed Description
According to the small-particle semi-coke finished product processing device, when the discharge opening of the guide box is open, the semi-coke inside the guide box can be directly conveyed to the screen, the phenomenon of accumulation is easily formed on the surface of the screen, screening operation of the screen is affected, the side baffle is driven by the directional sliding block to deflect to one side, at this time, the side baffle rotates at the bottom end of the fixing frame, the angle of the side baffle is enabled to generate flake patterns, the tail end of the side baffle is driven by the two directional sliding blocks, the side baffle is enabled to be attached to the side end of the fixing frame, the directional sliding block is pushed to reciprocate in the chute through the hydraulic rod, the unloading speed is controlled, the accumulation of the semi-coke on the surface of the vibrating screen can be effectively prevented, and the use convenience is improved.
Examples
The technical scheme in this application embodiment is for effectively having solved the discharge opening of guide case and being the open-type, can directly carry the whole direct conveying of inside semi coke to the screen cloth on, forms the accumulational phenomenon at the surface of screen cloth easily, influences the technical problem of the screening operation of screen cloth, and the overall thinking is as follows:
aiming at the problems existing in the prior art, the utility model provides a small-particle semi-coke finished product processing device, which comprises a guide box 1 fixedly arranged, wherein a fixed box 11 is fixedly arranged at the bottom end of the guide box 1, fixed frames 15 are fixedly arranged on two inner side walls of the fixed box 11, side baffles 12 are rotatably arranged at the bottom end of each fixed frame 15, and fixed shafts 16 are fixedly arranged at two side ends of each side baffle 12; a horizontal pulling force is generated on the fixed shaft 16, the side baffle 12 is driven by the directional sliding blocks 17, the bottom end of the side baffle 12 deflects to one side, at this time, the side baffle 12 rotates at the bottom end of the fixed frame 15, the self angle of the side baffle 12 generates a flake, the tail end of the side baffle 12 is driven by the two directional sliding blocks 17, the side baffle 12 is attached to the side end of the fixed frame 15, the directional sliding blocks 17 are pushed to reciprocate in the sliding groove 21 by the hydraulic rod 18, the discharging speed is controlled,
after each side baffle 12 deflects at the bottom end of the fixing frame 15, the side baffles 12 shield the discharge chute in the fixed box 11, and a guide block 13 is fixedly arranged in the guide box 1 at one side of the side baffles 12;
wherein, after the diversion block 13 and the side baffle 12 are mutually attached, a discharge chute in the fixed box 11 closes the top end of the diversion block 13 and is fixedly provided with two screening plates 14;
wherein, each screening plate 14 is obliquely arranged at the top end of the flow guide block 13, and divides the semi-coke entering the inside of the fixed box 11 into two inner side walls of the fixed boxes 11 at two sides, and each sliding groove 21 is internally and fixedly provided with a motor box 19, and two side ends of each motor box 19 are fixedly provided with a hydraulic rod 18;
wherein, each hydraulic rod 18 reciprocates in the chute 21 to shrink the side end of each hydraulic rod 18, and the directional slide block 17 is fixedly arranged at the side end of each hydraulic rod 18;
the side end of each directional slider 17 is connected with the fixed shaft 16, and the directional sliders 17 slide to horizontally pull the bottom ends of the side baffles 12.
Working principle:
first step, during the use, carry the inside of baffle box 1 with the semi-coke, enter into the inside of fixed case 11 through the discharge opening of baffle box 1 bottom, the semi-coke can be at gravity's effort, the continuous striking screening plate 14 of semi-coke's surface, because screening plate 14 is put to one side in the top of guide block 13, after the semi-coke strikes screening plate 14, can shunt to both sides, at the in-process of striking screening plate 14, the inside impurity such as the dust of semi-coke can be at gravity's effort, see through screening plate 14's surface, enter into the inside of mount 15, can preliminary just screen to the semi-coke, increase the quality that the semi-coke was screened, simultaneously the semi-coke flows down to the vibration net of bottom through the discharge chute of mount 15 both sides, carry out the screening of degree of depth to the semi-coke.
Secondly, after the semi-coke is shunted through the fixing frame 15, the hydraulic rods 18 at two sides are driven to shrink through the motor box 19, the hydraulic rods 18 shrink in the sliding grooves 21, the top ends of the hydraulic rods 18 pull the directional sliding blocks 17 to one side, the directional sliding blocks 17 slide in the sliding grooves 21, the side end parts of the directional sliding blocks 17 are connected with the fixed shafts 16, the fixed shafts 16 rotate at the side end parts of the directional sliding blocks 17, a horizontal pulling force is generated on the fixed shafts 16, the side baffle 12 is driven by the directional sliding blocks 17, the bottom ends of the side baffle 12 deflect to one side, at the moment, the side baffle 12 rotates at the bottom end of the fixing frame 15, the angle of the side baffle 12 is enabled to generate a flake, the tail ends of the side baffle 12 are driven by the two directional sliding blocks 17, the side baffle 12 is attached to the side end parts of the fixing frame 15, the directional sliding blocks 17 are pushed by the hydraulic rods 18 to reciprocate in the sliding grooves 21, the discharging speed is controlled, the semi-coke can be effectively prevented from accumulating on the surface of the vibrating net, and convenience in use is improved.
Finally, it should be noted that: it is apparent that the above examples are only illustrative of the present utility model and are not limiting of the embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. And obvious variations or modifications thereof are contemplated as falling within the scope of the present utility model.

Claims (6)

1. The small-particle semi-coke finished product processing device is characterized by comprising a guide box (1) which is fixedly arranged, wherein a fixed box (11) is fixedly arranged at the bottom end of the guide box (1), a fixing frame (15) is fixedly arranged on two inner side walls of the fixed box (11), side baffles (12) are rotatably arranged at the bottom end of each fixing frame (15), and fixed shafts (16) are fixedly arranged at two side ends of each side baffle (12);
after each side baffle (12) deflects at the bottom end of the fixing frame (15), the side baffles (12) shield the discharge chute in the fixing box (11).
2. The small-particle semi-coke finished product processing device according to claim 1, wherein a guide block (13) is fixedly arranged in the guide box (1) at one side of the side baffle plate (12);
after the guide blocks (13) are mutually attached to the side baffles (12), the discharge chute in the fixed box (11) is closed.
3. A small-particle semi-coke finished product processing device according to claim 2, characterized in that the top end of the flow guiding block (13) is fixedly provided with two screening plates (14);
wherein, each screening plate (14) is obliquely arranged at the top end of the flow guide block (13) to split the semi-coke entering the fixed box (11) to two sides.
4. The small-particle semi-coke finished product processing device according to claim 1, wherein two inner side walls of the fixed box (11) are provided with sliding grooves (21), and a motor box (19) is fixedly arranged in each sliding groove (21).
5. A small-particle semi-coke finished product processing device according to claim 4, characterized in that hydraulic rods (18) are fixedly arranged at two side ends of each motor box (19);
wherein each hydraulic rod (18) is reciprocally contracted inside the chute (21).
6. A small-particle semi-coke finished product processing device according to claim 5, characterized in that the side end of each hydraulic rod (18) is fixedly provided with a directional slide block (17);
the side end parts of the directional sliding blocks (17) are connected with the fixed shafts (16), and the directional sliding blocks (17) slide to horizontally pull the bottom ends of the side baffles (12).
CN202321886946.3U 2023-07-17 2023-07-17 Small-particle semi-coke finished product processing device Active CN220329242U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321886946.3U CN220329242U (en) 2023-07-17 2023-07-17 Small-particle semi-coke finished product processing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321886946.3U CN220329242U (en) 2023-07-17 2023-07-17 Small-particle semi-coke finished product processing device

Publications (1)

Publication Number Publication Date
CN220329242U true CN220329242U (en) 2024-01-12

Family

ID=89446763

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321886946.3U Active CN220329242U (en) 2023-07-17 2023-07-17 Small-particle semi-coke finished product processing device

Country Status (1)

Country Link
CN (1) CN220329242U (en)

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