CN209663226U - A kind of granulator of automatic feed back - Google Patents
A kind of granulator of automatic feed back Download PDFInfo
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- CN209663226U CN209663226U CN201821819071.4U CN201821819071U CN209663226U CN 209663226 U CN209663226 U CN 209663226U CN 201821819071 U CN201821819071 U CN 201821819071U CN 209663226 U CN209663226 U CN 209663226U
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- sieve
- partition
- feed back
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Abstract
The utility model relates to a kind of granulators of automatic feed back; including granulation device and screening plant; the top of screening plant is arranged in granulation device; granulating chamber is separated into modulation storehouse and granulation storehouse by first partition from top to bottom; the first opening that connection modulation storehouse and storehouse of pelletizing are offered in first partition, modulates and is equipped with rabbling mechanism and spraying mechanism in storehouse, modulate and be equipped with heating interlayer in the side wall in storehouse; the inner wall for modulating storehouse is equipped with hygronom, horizontal in storehouse of pelletizing to be equipped with granulation mechanism;Screening plant includes sieve compartment and classifying screen, sieve compartment is separated into left chamber and right chamber by the second partition being vertically arranged from left to right, left chamber is separated into epicoele and cavity of resorption by horizontally disposed third partition, there are gaps between second partition and the roof of sieve compartment, the lower end of face sieve is connected with the upper end of second partition, and the lower end of bottom sieve passes through second and is open and extends to down intracavitary;Granulation storehouse is connected to by discharge nozzle with classifying screen.The utility model has the beneficial effects that granulating efficiency is good.
Description
Technical field
The utility model relates to feed granulating equipment technical fields, and in particular to a kind of granulator of automatic feed back.
Background technique
Present feed industry is the development with animal-breeding and forage science and the industry risen, reform and opening-up
Since, I is crossed feed industry and is grown rapidly every year with average 20% speed, most important from the production of handicraft workshop to the world
One of Feed Manufacturing state, the fast development of feed industry necessarily causes the demand of feed manufacturing machine increasing, it is desirable that also gets over
Come higher.
Important link in granulation in Feed Manufacturing process, conventional feed granulation generally use granulator system
Grain, can satisfy production requirement to a certain extent.But granulator in the prior art still has following problems: 1, dividing
The grey powder that obtains after sieve needs manually to send to pelletizing again in granulating chamber, and labor intensity is big, and production efficiency is low;2, it pelletizes
The humidity of raw material can not be precisely controlled in the process, and when raw material humidity is excessively high, the viscosity of raw material is larger, easily adhere to mechanical inner wall
On, cause wastage of material;When raw material humidity is too low, the viscosity of raw material is smaller, is unfavorable for pelletizing.
Utility model content
The technical problem to be solved by the utility model is to provide a kind of granulators of automatic feed back, can precisely adjust raw material
Humidity, granulating efficiency is preferable;Meanwhile time powder of sub-sieve acquisition can be recycled in granulating chamber automatically and pelletize again, artificial labor
Fatigue resistance is low, high production efficiency.
The technical solution that the utility model solves above-mentioned technical problem is as follows:
A kind of granulator of automatic feed back, including granulation device and screening plant, the granulation device are arranged in the sieve
The top of separating device, the granulation device include granulating chamber, and the granulating chamber is separated into modulation storehouse by first partition from top to bottom
With granulation storehouse, first opening in the connection modulation storehouse and the granulation storehouse is offered in the first partition, described first opens
It is equipped with solenoid valve at mouthful, rabbling mechanism and spraying mechanism, the first motor at the top in the modulation storehouse are equipped in the modulation storehouse
Output shaft pass through it is described modulation storehouse roof after connect with the rabbling mechanism, it is described modulation storehouse side wall in be equipped with heating press from both sides
Layer, the heating interlayer is interior to be equipped with heating device, and the inner wall in the modulation storehouse is equipped with hygronom, and level is set in the granulation storehouse
There is granulation mechanism;
The screening plant includes sieve compartment and classifying screen, the sieve compartment by the second partition that is vertically arranged from left to right
Be separated into left chamber and right chamber, the left chamber is separated into epicoele and cavity of resorption by horizontally disposed third partition, the second partition with
There are gap between the roof of the sieve compartment, the top of the second partition offers the second opening, and the classifying screen includes
The lower end of face sieve and bottom sieve, the face sieve is connected with the upper end of the second partition, and the lower end of the bottom sieve passes through described second
Be open and extend to it is described under it is intracavitary;
The bottom in the granulation storehouse is equipped with discharge port, and the discharge port is connected to the upper end of discharge nozzle, the discharge nozzle
Lower end is connected to the classifying screen.
The beneficial effects of the utility model are: by those of ordinary skill in the art's thinkable all modes of institute by raw material
It send to modulation storehouse, the humidity of thermometer detection raw material simultaneously will send controller to induction signal;When the humidity value of raw material is too small
When, start water pump, spraying mechanism is sprayed water to raw material, while first motor driving rabbling mechanism is stirred raw material, until former
When the humidity value of material is fallen in setting moistness value range, stop watering;When the humidity of raw material is excessive, heating device carries out raw material
Heating, removal partial moisture to humidity value are fallen in setting humidity range;The solenoid valve for opening the first opening, the original modulated
Material is fallen in granulation storehouse, and granulation mechanism pelletizes;The feed that granulation is completed is fallen in classifying screen by discharge nozzle, face sieve
The coarse fodder stopped be stored in it is intracavitary, the finished product that bottom sieve stops be stored in down it is intracavitary, by bottom sieve return powder be stored in right chamber
It is interior.
Based on the above technical solution, the utility model can also do following improvement.
Further, the lower part of the cavity of resorption is equipped with sieve, and the screening level is arranged, the company of offering on the second partition
Lead to the third opening of the cavity of resorption and the right chamber, the third opening is located at the lower section of the sieve.
Beneficial effect using above-mentioned further scheme is that sieve may filter that the powder being adhered on finished product, powder storage
In the bottom of cavity of resorption, powder is recyclable to pelletize again, saves raw material.
Further, the granulation mechanism includes balling disk(-sc), compression assemblies and cutting assembly, and the balling disk(-sc) is horizontally disposed,
The compression assemblies include screw rod, sliding block, the second motor, third motor and compression roller, and the compression roller is arranged in the system
The top of grain disk, the compression roller are set in shaft, and the side wall in one end of the shaft and the granulation storehouse is rotatablely connected, separately
One end is fixedly connected with the output shaft of the third motor, and the third motor is fixedly connected with the side of the sliding block, described
Slipper screw is sequentially connected on the screw rod, and the side wall in one end of the screw rod and the granulation storehouse is rotatablely connected, the other end
It is fixedly connected after the side wall in the granulation storehouse with the output shaft of second motor, is squeezed described in the third motor driven
Roller rotates, and sliding block described in second motor driven and the third motor and the compression roller are in the top of the balling disk(-sc)
It rolls to squeeze powder;The cutting assembly includes chipping and cylinder, and the chipping is horizontally disposed and is located at the balling disk(-sc)
Lower section, the cylinder are arranged on the outer wall in the granulation storehouse, and the telescopic end of the telescopic rod of the cylinder passes through the granulation storehouse
Side wall after be fixedly connected with the centre of the chipping, the cylinder drives the chipping to move along horizontal direction to cut
Cut formed feed.
Beneficial effect using above-mentioned further scheme is by third motor driven sliding block and third motor and extruding
Roller is slided in the top of balling disk(-sc), and in sliding block sliding process, the second motor driven compression roller is rolled to squeeze powder molding, is wiped and is made
Simplicity, molding are fast.
Further, the heating device includes heating tube, and the heating tube is arranged in the heating interlayer.
Beneficial effect using above-mentioned further scheme is heated by heating tube, and heat transfer is to the original in modulation storehouse
Material is adhered on the side wall in modulation storehouse with preventing that raw material humidity is excessively high, is wasted raw material.
Further, the heating tube is waveform heating tube.
Beneficial effect using above-mentioned further scheme is that heating effect is good, and heating efficiency is higher.
Further, the spraying mechanism includes water feeding tank, spray tube, water pump and multiple spray heads, and the spray tube setting exists
The top in the modulation storehouse and one end be connected to the water feeding tank, water pump setting on the spray tube, it is multiple described in
Spray head is connected to the spray tube, and the water in the water feeding tank is sprayed to the tune by spray head described in Arnold by the water pump
In storehouse processed.
Beneficial effect using above-mentioned further scheme is to be sprayed the water in water feeding tank in the feed by water pump, is adjusted
The humidity of raw material facilitates granulation.
Further, the rabbling mechanism includes agitating shaft and multiple mixing blade, and the agitating shaft is vertically arranged, described to stir
The upper end for mixing axis is fixedly connected after the roof in the modulation storehouse with the output shaft of the first motor, multiple stirring blades
Piece is arranged along the axially spaced-apart of the agitating shaft, and the first motor drives the agitating shaft and multiple mixing blade to turn
It is dynamic, to stir evenly powder.
Beneficial effect using above-mentioned further scheme is that agitating shaft and multiple mixing blade is driven to turn by first motor
Dynamic, so that the raw material modulated in storehouse be stirred evenly, mixing effect is preferable.
Further, the side of the sieve compartment is equipped with material return mechanism, and the material return mechanism includes feed back pipe and vacuum handling
The lower end of machine, the feed back pipe is connected to the right chamber, and the upper end of the feed back pipe is connected to the granulation storehouse, and the upper end
Positioned at the top of the balling disk(-sc), the suction conveyor is arranged on the feed back pipe.
Beneficial effect using above-mentioned further scheme is to be sent the powder that returns in sieve compartment right chamber by suction conveyor
It pelletizes again in granulation storehouse, saves raw material.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the structural schematic diagram of compression assemblies in the utility model;
Fig. 3 is the structural schematic diagram of cutting assembly in the utility model.
In attached drawing, parts list represented by the reference numerals are as follows:
1, first partition, 2, modulation storehouse, 3, granulation storehouse, 4, first motor, 5, heating interlayer, 6, hygronom, 7, second every
Plate, 8, third partition, 9, face sieve, 10, bottom sieve, 11, discharge nozzle, 12, sieve, 13, balling disk(-sc), 14, screw rod, 15, sliding block, 16,
Second motor, 17, compression roller, 18, chipping, 19, cylinder, 20, heating tube, 21, spray head, 22, agitating shaft, 23, mixing blade,
24, feed back pipe, 25, suction conveyor.
Specific embodiment
The principles of the present invention and feature are described below in conjunction with attached drawing, example is served only for explaining that this is practical
It is novel, it is not intended to limit the scope of the utility model.
As shown in Figure 1 to Figure 3, the utility model provides a kind of granulator of automatic feed back, including granulation device and screening
Device, granulation device are arranged in the top of screening plant, and granulation device includes granulating chamber, granulating chamber by first partition 1 from up to
Under be separated into modulation storehouse 2 and granulation storehouse 3, the top in modulation storehouse 2 offers feed inlet, is equipped with hopper at feed inlet, hopper and adjusts
Storehouse 2 processed is integrally formed, and required raw material of pelletizing carries out feeding by the thinkable all modes of those of ordinary skill in the art institute;
First opening in connection modulation storehouse 2 and storehouse 3 of pelletizing is offered in first partition 1, the first opening is equipped with solenoid valve, modulates storehouse 2
It is interior to be equipped with rabbling mechanism and spraying mechanism, the output shaft of the first motor 4 at the top in storehouse 2 is modulated after the roof in modulation storehouse 2
It is connect with rabbling mechanism, modulates and be equipped with heating interlayer 5 in the side wall in storehouse 2, heating device is equipped in heating interlayer 5, modulation storehouse 2
Inner wall is equipped with hygronom 6, horizontal in storehouse 3 of pelletizing to be equipped with granulation mechanism;When the humidity value of raw material is too small, start water pump, spray
It drenches mechanism to spray water to raw material, while first motor 4 drives rabbling mechanism to be stirred raw material, until the humidity value of raw material is fallen in
When setting in moistness value range, stop watering;When the humidity of raw material is excessive, heating device heats raw material, removes part
Moisture to humidity value is fallen in setting humidity range;The solenoid valve for opening the first opening, the raw material modulated fall to granulation
In storehouse 3, granulation mechanism pelletizes.
In addition, screening plant includes sieve compartment and classifying screen, classifying screen uses the prior art, and sieve compartment is by being vertically arranged
Second partition 7 is separated into left chamber and right chamber from left to right, and left chamber is separated into epicoele and cavity of resorption by horizontally disposed third partition 8,
There are gap between second partition 7 and the roof of sieve compartment, the top of second partition 7 offers the second opening, and classifying screen includes
The lower end of face sieve 9 and bottom sieve 10, face sieve 9 is connected with the upper end of second partition 7, and the lower end of bottom sieve 10 passes through second and is open and extends
It is intracavitary under;The feed that granulation is completed is fallen in classifying screen by discharge nozzle 11, and the coarse fodder that face sieve 9 stops is stored in epicoele
Interior, coarse fodder is sent by the thinkable all mechanical systems of artificial or those of ordinary skill in the art institute to being crushed in pulverizer again
It utilizes;The finished product that bottom sieve 10 stops be stored in down it is intracavitary, by bottom sieve 10 return powder be stored in right chamber.The bottom in granulation storehouse 3
Portion is equipped with discharge port, and discharge port is connected to the upper end of discharge nozzle 11, and the lower end of discharge nozzle 11 is connected to classifying screen.
It should be noted that first partition 1 and granulating chamber side wall and second partition 7, third partition 8 and corresponding position
Between be fixedly connected and be fixed using the thinkable all modes of those of ordinary skill in the art institute.
Preferably, in the utility model, the lower part of cavity of resorption is equipped with sieve 12, and sieve 12 is horizontally disposed, the both ends of sieve 12
It is bolted respectively with the corresponding position of sieve compartment side wall and second partition 7, connection cavity of resorption and the right side is offered on second partition 7
The third of chamber is open, and third opening is located at the lower section of sieve 12.In screening process, finished product is carried or the powder of adherency passes through sieve
12 fall to the bottom of cavity of resorption, further recycle powder, avoid wasting, economize on resources.
In the utility model, granulation mechanism includes balling disk(-sc) 13, compression assemblies and cutting assembly, and 13 level of balling disk(-sc) is set
It sets, compression assemblies include screw rod 14, sliding block 15, the second motor 16, third motor and compression roller 17, and the setting of compression roller 17 is being made
The top of grain disk 13, compression roller 17 is set in shaft, and one end of shaft and the side wall in granulation storehouse 3 are rotatablely connected, the other end with
The output shaft of third motor 6 is fixedly connected, and third motor is fixedly connected (welding) with the side of sliding block 15, convenient for disassembly and assembly, sliding block
15 worm drive are connected on screw rod 14, are offered on sliding block 15 and the matched screw hole of screw rod 14, one end of screw rod 14 and granulation
The side wall in storehouse 3 is rotatablely connected, and the other end is fixedly connected with (weldering after the side wall in granulation storehouse 3 with the output shaft of the second motor 16
Connect), convenient for disassembly and assembly, third motor driven compression roller 17 rotates, and the second motor 16 drives sliding block 15 and third motor and extruding
Roller 17 is rolled in the top of balling disk(-sc) 13 to squeeze powder, so as to powder molding;Cutting assembly includes chipping 18 and cylinder 19, is cut
Bar 18 is horizontally disposed and is located at the lower section of balling disk(-sc) 13, and cylinder 19 is arranged on the outer wall in granulation storehouse 3, the telescopic rod of cylinder 19
Telescopic end pass through granulation storehouse 3 side wall after be fixedly connected with the centre of chipping 18 (welding), convenient for disassembly and assembly, 19 band of cylinder
Dynamic chipping 18 moves the feed with excision forming along horizontal direction.
In the utility model, heating device includes heating tube 20, and heating tube 20 is arranged in heating interlayer 5, heating tube 20
Waveform heating tube or spiral ring heating tube are preferentially used, heating tube 20 (model DRG) uses the prior art, heating tube 20
It is electrically connected with controller (model TC-SCR), the control circuit between controller and heating tube 20 is the prior art.
In the utility model, spraying mechanism includes water feeding tank, spray tube, water pump and multiple spray heads 21, and spray tube setting exists
The top and one end for modulating storehouse 2 are connected to water feeding tank, and water pump is arranged on spray tube, and multiple spray heads 21 connect with spray tube
Logical, the water in water feeding tank is sprayed in modulation storehouse 2 by water pump by several spray heads 21.
In the utility model, rabbling mechanism includes agitating shaft 22 and multiple mixing blade 23, and agitating shaft 22 is vertically arranged,
The upper end of agitating shaft 22 is fixedly connected (welding) after passing through the roof for modulating storehouse 2 with the output shaft of first motor 4, convenient for disassembly and assembly,
Multiple mixing blade 23 are arranged along the axially spaced-apart of agitating shaft 22, and first motor 4 drives agitating shaft 22 and multiple mixing blade
23 rotations, to stir evenly powder.Herein it should be noted that each mixing blade 23 includes left blade and right blade, left blade
With the two sides that agitating shaft 22 is arranged in of right blade symmetry.
In the utility model, the side of sieve compartment is equipped with material return mechanism, and material return mechanism includes feed back pipe 24 and vacuum handling
The lower end of machine 25, feed back pipe 24 is connected to right chamber and extends in right chamber, and the feed end of feed back pipe 24 is set close to the bottom of right chamber
It sets, the upper end of feed back pipe 24 is connected to granulation storehouse 3, and the upper end is located at the top of balling disk(-sc) 13, and suction conveyor 25 is arranged
On feed back pipe 24.
The working principle of the utility model is as follows:
Raw material is sent in modulation storehouse 2, and thermometer 5 detects the humidity of raw material, and sends moisture signal to controller, is controlled
Device processed receives corresponding moisture signal and handles analysis;When the humidity value of raw material is excessive, khaki heating tube 20, heating tube 20 is produced
Raw heat transfer is to the raw material in modulation storehouse 2, so that the partial moisture in raw material is evaporated to humidity value in setting humidity range
After interior, heating tube 20 is closed;When the humidity of raw material is too small, start water pump, water pump sprays the water in water feeding tank by spray head 21
It spills in the feed, when the humidity value that hygronom 6 detects is in setting humidity range, switches off the pump;Adjust raw material humidity
In the process, first motor 4 drives agitating shaft 22 and the rotation of mixing blade 23 to stir evenly the raw material modulated in storehouse 2;Open the
The solenoid valve of one opening, raw material are fallen on balling disk(-sc) 13, and third motor 16 drives sliding block 15 and third motor 16 and squeezes
Pressure roller 17 is rolled in the top of balling disk(-sc) 13 to squeeze powder molding;Cylinder 19 drives chipping 18 to move along horizontal direction to cut
Cut molding feed;Feed after classifying screen sieves, finished product be stored in down it is intracavitary, coarse fodder be stored in it is intracavitary, return powder storage
There are in right chamber;Suction conveyor 25 is vacuumized, and the negative pressure formed using it is sent the powder that returns in right chamber to granulation storehouse 3
Inside pelletize again.
Need to illustrate when, all motors (model GW31ZY), solenoid valve (model are arrived involved in the utility model
ZCT), cylinder 19 (model SC80) and suction conveyor 25 (model KZ-ZK010) are all made of the prior art, and all parts are equal
It is electrically connected with the controller, the connection circuit between controller and all parts is the prior art.
The above is only the preferred embodiment of the present invention, is not intended to limit the utility model, all practical at this
Within novel spirit and principle, any modification, equivalent replacement, improvement and so on should be included in the guarantor of the utility model
Within the scope of shield.
Claims (8)
1. a kind of granulator of automatic feed back, it is characterised in that: including granulation device and screening plant, the granulation device setting
In the top of the screening plant, the granulation device includes granulating chamber, and the granulating chamber is divided from top to bottom by first partition (1)
It is divided into modulation storehouse (2) and granulation storehouse (3), is offered on the first partition (1) and is connected to the modulation storehouse (2) and the granulation storehouse
(3) the first opening, first opening are equipped with solenoid valve, are equipped with rabbling mechanism and spraying mechanism in the modulation storehouse (2),
It is described modulation storehouse (2) top first motor (4) output shaft pass through it is described modulation storehouse (2) roof after with the blender
Structure connection, the side wall of modulation storehouse (2) is interior to be equipped with heating interlayer (5), and heating device, institute are equipped in the heating interlayer (5)
The inner wall for stating modulation storehouse (2) is equipped with hygronom (6), horizontal in the granulation storehouse (3) to be equipped with granulation mechanism;
The screening plant includes sieve compartment and classifying screen, the sieve compartment by the second partition (7) that is vertically arranged from left to right
It is separated into left chamber and right chamber, the left chamber is separated into epicoele and cavity of resorption, the second partition by horizontally disposed third partition (8)
(7) there are gap between the roof of the sieve compartment, the top of the second partition (7) offers the second opening, and described point
Grade sieve includes face sieve (9) and bottom sieve (10), and the lower end of the face sieve (9) is connected with the upper end of the second partition (7), the bottom
Sieve (10) lower end pass through it is described second be open and extend to it is described under it is intracavitary;
The bottom of granulation storehouse (3) is equipped with discharge port, and the discharge port is connected to the upper end of discharge nozzle (11), the discharge nozzle
(11) lower end is connected to the classifying screen.
2. a kind of granulator of automatic feed back according to claim 1, it is characterised in that: the lower part of the cavity of resorption is equipped with sieve
Net (12), the sieve (12) are horizontally disposed, offer on the second partition (7) and are connected to the of the cavity of resorption and the right chamber
Three openings, the third opening are located at the lower section of the sieve (12).
3. a kind of granulator of automatic feed back according to claim 1, it is characterised in that: the granulation mechanism includes granulation
Disk (13), compression assemblies and cutting assembly, the balling disk(-sc) (13) is horizontally disposed, and the compression assemblies include screw rod (14), slide
Block (15), the second motor (16), third motor and compression roller (17), the compression roller (17) are arranged in the balling disk(-sc) (13)
Top, the compression roller (17) is set in shaft, and the side wall of one end of the shaft and granulation storehouse (3), which rotates, to be connected
It connects, the other end is fixedly connected with the output shaft of the third motor, and the side of the third motor and the sliding block (15) is fixed
Connection, sliding block (15) worm drive are connected on the screw rod (14), one end and the granulation storehouse of the screw rod (14)
(3) side wall rotation connection, the other end are solid with the output shaft of second motor (16) after the side wall of granulation storehouse (3)
Fixed connection, compression roller (17) rotation described in the third motor driven, second motor (16) drive the sliding block (15) with
And the third motor and the compression roller (17) are rolled in the top of the balling disk(-sc) (13) to squeeze powder;The cutting group
Part includes chipping (18) and cylinder (19), and the chipping (18) is horizontally disposed and is located at the lower section of the balling disk(-sc) (13), described
On the outer wall of granulation storehouse (3), the telescopic end of the telescopic rod of the cylinder (19) passes through the granulation for cylinder (19) setting
It is fixedly connected after the side wall in storehouse (3) with the centre of the chipping (18), the cylinder (19) drives chipping (18) edge
Horizontal direction it is mobile with excision forming feed.
4. a kind of granulator of automatic feed back according to claim 1, it is characterised in that: the heating device includes heating
It manages (20), heating tube (20) setting is in the heating interlayer (5).
5. a kind of granulator of automatic feed back according to claim 4, it is characterised in that: the heating tube (20) is wave
Shape heating tube.
6. a kind of granulator of automatic feed back according to claim 1, it is characterised in that: the spraying mechanism includes supplying water
Case, spray tube, water pump and multiple spray heads (21), the spray tube setting is in the top for modulating storehouse (2) and one end and institute
Water feeding tank connection is stated, the water pump is arranged on the spray tube, and multiple spray heads (21) are connected to the spray tube, institute
It states water pump and is sprayed to the water in the water feeding tank in the modulation storehouse (2) by spray head (21) described in Arnold.
7. a kind of granulator of automatic feed back according to claim 1, it is characterised in that: the rabbling mechanism includes stirring
Axis (22) and multiple mixing blade (23), the agitating shaft (22) are vertically arranged, and the upper end of the agitating shaft (22) passes through described
It is fixedly connected after modulating the roof of storehouse (2) with the output shaft of the first motor (4), multiple mixing blade (23) are along described
The axially spaced-apart of agitating shaft (22) is arranged, and the first motor (4) drives the agitating shaft (22) and multiple stirring blades
Piece (23) rotation, to stir evenly powder.
8. a kind of granulator of automatic feed back according to claim 3, it is characterised in that: the side of the sieve compartment is equipped with
Material return mechanism, the material return mechanism include feed back pipe (24) and suction conveyor (25), the lower end of the feed back pipe (24) and institute
Right chamber connection is stated, the upper end of the feed back pipe (24) is connected to the granulation storehouse (3), and the upper end is located at the balling disk(-sc)
(13) top, the suction conveyor (25) are arranged on the feed back pipe (24).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821819071.4U CN209663226U (en) | 2018-11-06 | 2018-11-06 | A kind of granulator of automatic feed back |
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CN201821819071.4U CN209663226U (en) | 2018-11-06 | 2018-11-06 | A kind of granulator of automatic feed back |
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CN209663226U true CN209663226U (en) | 2019-11-22 |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111111532A (en) * | 2019-12-31 | 2020-05-08 | 宿州市富家饲料有限公司 | Chicken feed preparation device and chicken feed preparation method |
CN114703329A (en) * | 2022-03-28 | 2022-07-05 | 西峡县创新炉料有限公司 | Device and method for preparing molten iron heat-preservation slagging agent for iron making |
-
2018
- 2018-11-06 CN CN201821819071.4U patent/CN209663226U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111111532A (en) * | 2019-12-31 | 2020-05-08 | 宿州市富家饲料有限公司 | Chicken feed preparation device and chicken feed preparation method |
CN114703329A (en) * | 2022-03-28 | 2022-07-05 | 西峡县创新炉料有限公司 | Device and method for preparing molten iron heat-preservation slagging agent for iron making |
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